Two things a second site ran into.
The network device form asked for the map position as two raw numbers, so
placing a device meant reading coordinates off another screen and typing them
in. Machines, PCs and printers have had a "Set Location on Map" picker all
along, and the network API already accepted mapx and mapy - only the form was
missing. Same picker, same modal.
The 3D parts kiosk hardcoded 'WJ' as the prefix shown before the number box,
with a comment inviting whoever needed something else to edit the source. That
is West Jefferson's gage-lab tag format and nobody else's, so another site's
operators were told to expect letters that are not on their labels.
It is now printedparts_label_prefix, set in Settings, defaulting to EMPTY - a
site that has not set one sees no prefix rather than inheriting another site's
convention. West Jefferson sets it to WJ once. The kiosk hides the prefix
entirely when unset and falls back to no prefix if the setting cannot be read,
because a cosmetic hint must never stop a kiosk working.
Not to be confused with printedparts_code_prefix, which mints item codes like
3DP0042 and was already configurable. That is the code we generate; this is the
tag already printed on the label.
A site added two slides to the lobby display and it never changed between them.
onMounted awaited fetchSlides, which starts the slideshow itself once it has
more than one slide, and then started it AGAIN unconditionally. Two timer chains
ran, and the second assignment to slideTimer lost the handle to the first, so
nothing could ever cancel it. Both fired about ten seconds later, milliseconds
apart, and each advanced one slide.
With exactly two slides that is 0 -> 1 -> 0 every cycle: the display looked
frozen. With three or more it advanced by two and merely skipped one, which is
why this survived so long - and why adding a third slide would have appeared to
"fix" it.
onMounted no longer starts it; fetchSlides owns that. scheduleNextSlide also
cancels any pending timer before setting a new one, so a future double-call
replaces the chain rather than leaking an untracked one.
While here: the feed has always sent a per-slide duration and the display
ignored it, hardcoding ten seconds, so a slide set to hold for a minute changed
after ten. It now uses the slide's own value, and the progress bar animates over
that same duration instead of finishing early and sitting full.
Two unrelated things found while looking at blank printer types.
Selecting a filter while past page one returned an empty list. The filter asked
the server for page 5 of a result set that now had one page, and the screen said
nothing matched. useListQuery already resets the page - setSearch and setExtra
both do - but the filter dropdowns bypassed it and called the loader directly.
Nine list pages now route through applyFilter, which calls setPage(1) when it
needs to and loads directly when already on page one, so the composable's URL
watcher does not also fire and fetch twice.
scripts/retype_models.py addresses why printer types cannot be derived. The
catalog types every printer model "Printer": true, and useless, since it does not
say whether the product is a laser, a plotter or a label printer. That answer is
a property of the model - every VersaLink C405 is a laser MFP - but nothing
recorded it, so nothing could derive it. Recording it on the MODEL means the
existing backfill fills every printer by exact name match, and a printer added
later inherits the right type the moment its model is chosen.
It exports the models needing a decision to CSV with a type suggested from the
model number, a person corrects the column, and applying it is a dry run unless
given --commit. A suggested type is refused unless it already exists in that
asset class's own vocabulary, which is what keeps the later name match working.
The suggestion order matters and got this wrong first time: a generic plotter
pattern matched "Zebra ZT411" and filed a label printer as a plotter. Brands now
come before generic patterns, and the review step exists precisely because a
confident wrong guess would type every asset using that model.
Verified on the development database: 24 printer models need a decision, 22 got
a sensible suggestion, applying them let all 42 printers match a printertype by
name, and the transaction rolled back cleanly.
The machine's own type is blank for the 134 machines that came from the classic
ASP database on machinetypeid=1, a LocationOnly placeholder the import refuses
to carry across as a real subtype. The catalog model knows what those machines
are, and its type is populated, so the column reads modeltypename under a
heading that says so.
Where both values exist they are identical - all 262 machines in the development
database match exactly - so nothing is lost by showing the one that is reliably
filled in.
This does not fix the underlying gap. A null machinetypeid also excludes a
machine from the map's subtype filter and drops its marker to the default
colour, and no column heading affects that. Only populating machinetypeid does,
which is what the backfill script is for.
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.
Three faults around vendor-model photos, found while looking at why an uploaded
image did not appear.
Saving a model was blocked after uploading a photo. The Image URL field was
type="url", and an upload sets it to an application path such as
/api/models/image/model-120.png. Native url validation demands an absolute URL
with a scheme, so the browser refused to submit the form with "Please enter a
URL" for a value the page had just written itself. The field is now type="text",
which is what it always needed to be: it holds either a full web address or a
path on this server. documentationurl stays type="url".
The upload button did not appear when adding a model, only when editing one.
That was deliberate - the photo is stored as model-<id>.<ext>, so it cannot be
sent before the record has an id - but it reads as a missing feature, and the
hint explaining it was easy to miss. A photo chosen while creating is now held
and uploaded as soon as the model is saved, and it is dropped if the dialog is
cancelled, so it cannot land on the next model created in the same session.
Network devices could never show a photo. NetworkDeviceDetail.vue binds its hero
image to networkdevice.imageurl, but networkdevices carried only vendorid, with
no link to a catalog model, so nothing could populate it - a feature that looked
present and could not work. Machines, PCs and printers have carried
modelnumberid since July. This adds the same column and relationship, the
to_dict branch that exposes modelname and imageurl, the field on the API, and a
Model selector on the form so the link can actually be set.
The migration is guarded the same way employees0002photo is: on a fresh database
the tables come from the SQLAlchemy models, which already declare the column, so
an unconditional add fails with "duplicate column name". The foreign key is
created only on databases that can add one by ALTER; routing it through
batch_alter_table made Alembic's column sort raise "Circular dependency
detected" on the fresh-database test.
Deploying this needs `flask db upgrade` and `flask plugin upgrade-all` on the
server, not just a file copy.
CLIENT IP / SPOOFABILITY. docs/geenforce-api-cutover.md claimed that removing the
IIS rewrite rule made the allowlist fail closed and that it does NOT become
spoofable. The opposite is true. IIS never sets X-Forwarded-For on its own; the
rule is the only thing that does. Remove it and IIS still forwards whatever
X-Forwarded-For the CALLER sent, waitress trusts it because it arrives from
127.0.0.1, and remote_addr becomes attacker-controlled - so a token-less caller
can fetch manifests from anywhere on the network. The document and the
_trusted_client_ip docstring now say so, waitress runs with
--trusted-proxy-count=1, and stage 5 checks the rule is actually live rather than
assuming it. The wizard question is rephrased to something an operator can verify
with their network team instead of guessing at.
NON-ASCII. The style gate only ever checked .py/.vue/.js/.ts, so documentation
accumulated em-dashes, arrows and box-drawing characters against this repo's own
convention - including in files added this week. Cleaned, and the gate now uses
INCLUDES_ALL so Markdown, JSON and YAML are covered.
PLUGIN DEFAULTS. The wizard pre-ticked measuringtools and printedparts, both of
which ship default_enabled=false, so every site taking the defaults installed and
enabled them against their manifests. Inno has no JSON parser so the list must be
hardcoded, but tests/test_installer_defaults.py now fails when it drifts.
UPGRADES. The payload copy merges, so a plugin dropped from a site's profile kept
its code forever - which defeats a lean build and leaves core's optional-import
guards succeeding for a plugin the site no longer has. Stale plugin directories
are now deregistered and removed before the copy.
add-plugin used 'plugin install', which for the five default_enabled=false
plugins left them installed but DISABLED - and printed a green success line
anyway. It now goes through apply-profile, and the success line is gated on the
exit code. Invoke-Flask records its own exit status, because $LASTEXITCODE keeps
a stale value when flask.exe is missing and no native command runs.
CHARSET. The utf8mb4 compiler hook lived inline in migrations/env.py, so it
covered the CORE chain only: plugin baselines inherited the server default, which
on a latin1 server means two charsets in one database. It is now
shopdb/utils/mysql_charset.py, imported by both, and preflight reports the
database's default charset.
BACKUP HONESTY. The dump was described as 'all of your asset data'. Uploaded
branding and floor-map images live in instance\ on disk, not in the database, so
a restore from the .sql alone comes back with no map. backup now archives
instance\ alongside it and says both are needed.
VERSIONING. AppVersion was hardcoded at 0.9.0 while the product, the frontend and
the newest tag said 0.7.0 - and 0.9.0 collides with a retired contract version.
Both builders now generate version.iss from shopdb/__init__.py.
Smaller: rollback overwrites .env before deleting it, as uninstall already did;
appcmd unlocks are scoped to this site's location rather than server-wide, with
the wide unlock as a fallback; DEVELOPMENT-SETUP says Python 3.14; the README
plugin list gains printedparts; prune-schema --force is documented as
first-provisioning-only; HTTPS is documented as not-the-default with the steps to
add it; the DBA SQL is on the wizard's database page; the features page says
unticking does not remove an installed feature; and the installer README states
that bundle-lock cannot vouch for the exe itself - that needs signing or an
out-of-band hash, neither of which is wired up.
test_plugins_only_import_contract_surface has been failing on main since
9a2d0cc: the employee name resolver imported shopdb.core.models directly.
shopdb.api already exports User (contract 0.13.0), so this is the same object
reached the way ADR-001 requires.
Every asset list shows a Type column (and printers a Model, machines and
network a Vendor), but the search filters only looked at the asset number,
name, serial and hostname. Searching a type returned zero rows: 'Part Washer'
on machines, 'Standard' on PCs, 'Thermal' on printers.
Extend the search on machines, computers, printers, network devices,
measuring tools and the unified asset list to cover the type name plus the
vendor/model where the list shows them. Joins are outer joins so an asset
missing a type or vendor still matches on its own fields; the core list uses
a correlated EXISTS instead, since its type-name filter already joins
AssetType.
The old kiosk kept relaunching the dead URL from an HKLM Run value the 32-bit
Inno installer wrote - WOW64-redirected into SOFTWARE\Wow6432Node, which 64-bit
tooling (and the earlier purge) never saw. Broaden the sweep to both registry
views, every loaded user hive, Run/RunOnce/Policies-Explorer-Run, matching by
legacy name AND by any value pointing at the old URLs, plus every per-user and
common Startup folder.
The white-on-login was the old Dashboard/Lobby installer's leftover autostart
relaunching the dead old URL (404 -> white), not a network race - so the
wait-for-URL launcher solved the wrong problem. Go back to the plain direct
Edge kiosk shortcut and clean up any stale launcher file. The real fix (the
legacy HKLM Run-key + old .lnk purge) stays; it just has to be published.
At auto-login the Startup shortcut fired before the network was up, so Edge
--kiosk navigated to nothing and sat on a blank white page with no retry.
Point the shortcut at a hidden VBS launcher (wscript, no console flash) that
polls the kiosk URL until it responds (up to ~3 min) and only then launches
Edge fullscreen, so the first paint is the real page. Falls through to launch
anyway after the timeout so a display is never left dark.
Notification start/end times displayed and stored wrong by the tz offset
(a 2:34 PM entry showed 6:34 PM). Two stacked bugs: to_dict emitted stored
UTC as naive ISO (no offset) so the browser read it as local, and the form
filled the datetime-local input from toISOString() (UTC).
Fix and generalize to a configurable site timezone (multi-site):
- New setting site_timezone (default America/New_York), public, editable in
Settings > Site > Localization (common-zone dropdown).
- Backend tags datetimes UTC (_utc_iso); parse normalizes to naive UTC
(_parse_utc); daily-reset expiry uses the site zone (_next_site_time);
calendar allDay events key off the site-local day (_site_date).
- Shared frontend util datetime.js (Intl-based, DST-safe) converts between a
UTC instant and a site-zone wall clock. Notification form, list, and
calendar all render/enter in the site zone.
The old LobbyDisplay/Dashboard Inno installers planted an HKLM
...\CurrentVersion\Run value (plus a Startup .lnk). The dispatcher already
swept the stale .lnk/.url launchers but never the Run value, so a display
with our new ShopDB Kiosk.lnk still relaunched the old kiosk URL at logon
(the Run key beats the Startup shortcut). Remove the two legacy Run values
and kill any running old-URL Edge so the display self-heals to the resolved
target on the next enforce cycle.
The /printer-installer map only reads the public install-list and downloads
the install .bat - both jwt-optional endpoints - so requiring auth was an
unnecessary gate. Drop requiresAuth; it now matches the other display/kiosk
tools (public).
The Inno printer installers hand-parsed JSON in Pascal (brittle brace-counting).
Add ?format=text to install-list (one printer per line, pipe-delimited:
printerid|windowsname|vendorname|modelnumber|hostname|ipaddress|mapx|mapy) and
to pc-default (printerid|windowsname), so the installer side is a split() with
no JSON parser. The web map keeps the default JSON.
Also resolve install-list's vendorname via the model (as the batch already does),
since the import sets the model, not the printer's direct vendorid - otherwise
the installers' HP/Xerox/Brother filter drops every prod printer.
Two fixes for the printer install-batch on prod data:
1. Vendor was read only from the printer's direct vendorid, which the legacy
import never sets (it sets the model; legacy resolved vendor through the
model). Every prod printer came back vendor "unknown", so all fell into the
manual group and the universal PrinterInstaller.exe block never emitted. Now
resolve vendor via the model's vendor when the printer has no direct one, as
the classic installprinter.asp did.
2. Harden the download base URL. Behind IIS the app sees http on a loopback
port and url_root drops the /shopdb mount, giving a broken download URL when
site_base_url is unset. Fall back to https + the forwarded Host + script_root.
Test: a printer with no vendorid but an HP/Xerox model now groups universal.
Rebuilds the classic printer-installer feature: pick printers on the shopfloor
map, download a .bat that installs them.
Backend (asset_routes.py): GET /api/printers/install-batch?printerids=1,2,3
returns a .bat attachment. Groups printers the way the classic installprinter.asp
did - HP/Xerox via the universal PrinterInstaller.exe /PRINTER="a,b,c", printers
with a .exe installpath via that installer /SILENT, and anything else (no
installpath, or a .zip) listed for manual install instead of being run blindly.
Download URLs derive from the site_base_url setting + the IIS-served /installers
folder (no hardcoded host). Reuses the existing install-list query shape.
Frontend: PrinterInstallerMap.vue - full-screen Leaflet shopfloor map (reuses
mapConfig), a marker per network printer at its mapx/mapy, click to toggle-select,
sidebar with the selection + an Install button that downloads the batch. Toplevel
route /printer-installer, printersApi.installList(), and an Installer Map button
on the printers list.
Tests: install-batch grouping (universal/specific/manual) + requires-ids.
Two problems with application download/launch/doc links:
1. Stored paths like 'installers/Foo.exe' are relative, so an <a href> on
/shopdb/applications/6 resolved to /shopdb/applications/installers/Foo.exe.
New basePath.fileHref() mounts a relative path under the app base
(-> /shopdb/installers/Foo.exe) while leaving full URLs and UNC/file paths
untouched. Applied to installpath, applicationlink, and documentationpath in
the list and detail views.
2. Even the correct /shopdb/installers/Foo.exe 404s: httpPlatformHandler is
path="*", so IIS forwards it to Flask, which has no such route. Add a
web.config <location path="installers"> that clears the handler and serves
that subpath as IIS static (with .exe/.msi MIME), from a physical
APP_ROOT\installers folder.
The notes field is authored as HTML (the form says "HTML supported") but the
detail page interpolated it with {{ }}, so tags like <BR> showed as literal
text. Render via v-html through a DOMPurify sanitizer (utils/sanitizeHtml):
allow-list of formatting tags + links only, forces target=_blank
rel=noopener on links, strips scripts/handlers. Promote dompurify to a direct
dependency (was transitive via jspdf).
The KB list search matched only shortdescription + keywords, so searching a
topic (e.g. "Spotfire", the Application name) surfaced just the one article
whose title/keywords contained the word, not the others tied to it by topic.
Match the topic too via an appid IN (apps named like the term) subquery - used
instead of a join so it does not collide with the sort=topic join, and articles
with no app still match on title/keywords.
The .kb-* classes had no styles, so the KB entries rendered as bare inline
spans - shortdescription and keywords (both up to 500 chars) wrapped and mashed
into one block. Style each entry as a bordered clickable card: description as
the link title clamped to 2 lines, keywords split on whitespace into small
muted chips below.
The location option label read l.location, but the Location.to_dict() field is
locationname, so every option rendered blank - the dropdown looked empty and
"massive" (a long list of blank rows). Fixed across all five affected forms:
printers, computers, network devices, network device form, and the subnets
location filter. Other .location uses (printer-driver URL, search-result label,
report bylocation key) are legitimately different fields, left alone.
Also require a model on the printer form: asterisk + required attr, plus a JS
guard in savePrinter (the native required is skipped while the select is
disabled with no vendor picked) that points the user at the vendor first.
AuditLogs: the scoped table-layout:fixed + width:100% forced the table to fit
the settings pane, so cells ellipsis-clipped (Timestamp/User/IP fell off) rather
than scrolling. Drop it so columns size to content and the container scrolls
horizontally (global .table-container is overflow-x:auto). Only the free-form
Name/ID cell stays bounded (320px + title tooltip) so one long value cannot blow
the table width out.
EnforcementReports: the per-entry detail modal capped at 640px, too narrow for
the 5-column table. Widen to min(1000px, 92vw) and let the Message column wrap
instead of forcing horizontal scroll inside the modal.
The lobby-display and screensaver slide manager was admin-only. Add a shared
slides.manage permission so a curator can manage both surfaces without full
admin. Admins keep access via the require_permission admin bypass.
Backend:
- plugins/slides/api/routes.py: all 5 management routes require slides.manage
- plugins/slides/plugin.py: declare it via get_permissions(); nav item carries
the permission so the frontend can gate visibility
- shopdb/core/api/auth.py: login response now returns the user's permissions
(matches /me) so the frontend authStore has them on fresh login
Frontend:
- stores/auth.js: hasPermission(name) getter (admin true, else granted list)
- router/index.js: guard supports requiresPermission
- views/AppLayout.vue: hide nav items whose permission the user lacks
- plugins/slides/frontend/routes.js: slide manager gated requiresPermission
Tests: no-perm user 403, curator role with the perm 200 (+ login advertises
it), admin 200 via bypass.
Deploy: run `flask seed permissions` to create the row, then grant it to a
role in Settings > Users & Roles.
The dispatcher now derives its FQDN (F<BIOS serial>.<domain>) and asks
/api/dashboarddefaults/display-role for its role/path, so changing a display's
type/location in Settings > Dashboard Defaults takes effect with no reimage. If
there is no serial, no server mapping, or the lookup fails, it falls back to the
local display-type.txt map (offline-safe). VM-verified both paths.
Adds GET /api/computers/display-kiosks - the displays that reported in (Kiosk
type), each with its derived FQDN (F<serial>.<domain>). The Dashboard Defaults
form gets a kiosk dropdown that fills the FQDN so admins pick a display instead
of typing an IP; IP stays an optional manual field. Table shows FQDN or IP.
'Business Unit' label -> 'Location' on this page + the settings nav.
replace_scope_draft deleted old draft entries with per-object db.session.delete
but left the deleted objects in scope.entries. On a re-publish a caller
(seed_display_scope) then matched a stale deleted entry via next() and
store_inline_payload attached a payload to its dead entryid, failing the
manifestpayloads->manifestentries FK on MySQL (1452); SQLite does not enforce
it so the idempotency test passed. Clear the collection via the delete-orphan
cascade instead, and flush pending inserts before the bulk payload delete so its
autoflush cannot interleave a half-built insert. Verified publish + re-publish
x3 on MySQL 5.6.
- notifications shopfloor feed: resolve the employee name live when the stored
value is a bare SSO (WJ notifications imported as SSOs, never converted), for
both single and split-per-employee cards
- employee name resolver: after a directory miss, fall back to the shopdb User
account (firstname/lastname, keyed by SSO username) so users from other
locations still show a name
- shopfloor dashboard: employee photo falls back to the GE monogram (own asset,
independent of the site_logo setting) with a loop-guarded onerror; recognition
+ recert tiles both covered
- shopfloor dashboard: 'All Business Units' filter label -> 'All Locations'
- geenforce display dispatcher: startup sweep also matches the imaging
installers' 'GE Aerospace Dashboard/Lobby' shortcuts by name
The prior sweep only matched '--kiosk'; the imaging installers (Inno
GEAerospaceDashboardSetup / lobby) create Startup shortcuts with single-dash
'-kiosk' pointing at /shopdb/shopfloor-dashboard, so they survived. Match any
msedge/chrome Startup .lnk whose args contain -kiosk (one or two dashes) OR a
shopdb kiosk URL (tsgwp00525 / /shopdb/ / shopfloor-dashboard). Unrelated
Startup items are left untouched (VM-verified).
- Resolve-ShopdbPayloads wrote an absolute local path into the entry, and the
engine resolves it as Join-Path InstallerRoot <field>, doubling it
(C:\...\payloads\C:\...\payloads\<sha>.ps1 -> PS1 not found). Write the leaf
filename instead; the runner already sets InstallerRoot to that payloads dir.
- display dispatcher now removes leftover kiosk launchers from prior installs
(any Startup .lnk that runs Edge --kiosk, plus .url to a shopdb kiosk page),
not just its own, so two kiosks do not fight.
- allowlist auth uses remote_addr, not the spoofable first X-Forwarded-For hop
(adds _trusted_client_ip + a regression test); rate-limit path unchanged
- client psm1: fix Set-StrictMode crashes reading absent keys in Get-ShopdbConfig
(token-less mode) and Resolve-ShopdbPayloads (no-payload entries); validate
the manifest response is JSON before overwriting the last-known-good cache
- runner: pass the engine its required -InstallerRoot/-LogFile; create the log
directory so enforce logging is not silently lost on a fresh kiosk
- display scope: dispatcher writes an all-users Startup shortcut instead of
Start-Process (SYSTEM cannot show a window in session 0), resolves the base
URL from HKLM, and adds an always-on power/no-lock entry; tests updated for
the 6-entry scope
discover_share only matched 'common' and 'gea-shopfloor-*', so a display/
manifest.json on the share was silently skipped and 'flask geenforce publish
display' failed with 'No scope display/runtime'. The display scope is a
first-class HTTPS-pull target (kiosks fetch pctype=display), so accept it.
The client IP allowlist config was a tab inside the GE-Enforce section; move
it to the Settings rail via get_settings_cards (matches printedparts / zabbix /
dell). Route relocated from /geenforce/settings to /settings/geenforce; the
in-section Settings tab is removed. Card: Settings > GE-Enforce.
Get-ShopdbConfig required both BaseUrl AND ApiToken, so a token-less kiosk
(authorized by the server's IP allowlist) got a null config and never ran.
Now BaseUrl alone is a valid config; X-API-Key is sent only when a token is
present (New-ShopdbAuthHeaders), so token-authorized sites are unchanged and
vaulted-network sites need no per-PC token.
Fleet PCs on a trusted (vaulted) network can now reach the GE-Enforce client
endpoints (manifest, payload, report) without a per-PC token: the auth path
accepts a valid geenforce.fetch/report token OR a source IP in the configured
allowlist (setting geenforce_allowed_cidrs). Fail-closed; an empty allowlist
means the token stays the only path, so existing deployments are unchanged.
Rationale: the client token lives in HKLM on every kiosk, so it does not
defend against a compromised kiosk anyway - network-perimeter trust is the
same practical strength with far less provisioning + no token-rotation churn
on a DB wipe. Documented in-UI that this is perimeter trust, not per-device
identity.
- _ip_allowlisted() (ipaddress, X-Forwarded-For-aware via _client_ip)
- /geenforce/config GET/PUT extended with allowedcidrs, server-validated +
normalized (bad CIDR -> 400)
- new GE-Enforce > Settings tab (GeEnforceSettings.vue) to edit the allowlist
in admin, no SQL
- 3 regression tests (allow by IP, reject outside list, empty = token required)
The bulk /sync/dell reuse check only matched an existing warranty when its
provider was exactly 'dell'. Warranties added by hand or via import default to
provider 'manual', so re-check-all did not recognize them and created a brand
new Dell warranty for every asset - duplicating the whole set.
Broaden the reuse match to treat a warranty as Dell by any signal (provider,
matching service tag, or a 'Dell' vendor), and canonicalize the reused row to
provider 'dell' so later re-checks match by provider and never duplicate.
A geenforce.fetch token can now be pinned to specific manifest scopes so a
fleet-wide key (a display's, delivered by DSC or baked into the image) is not a
skeleton key for the whole content store. NULL binding = unrestricted, so every
existing service token keeps working.
Core:
- ApiToken.resourcescopes column + resourcescopelist property (migration
7d30_apitoken_resourcescopes; NULL = unrestricted).
- apitokens API create/update accept + persist an optional resourcescopes list
(a resource-name allowlist; not permission-catalog names).
- New contract helper authorized_service_token(scope): same check as
service_token_authorized but returns the ApiToken so a plugin can read its
binding. Contract 0.14.0 -> 0.15.0; also export SupportTeam.
GE-Enforce enforcement:
- get_manifest: a bound token requesting a scope outside its allowlist -> 403.
- get_payload: a bound token may only pull a blob its own scope(s) reference
(service.blob_referenced_by_scopes); anything else -> 404 (no hash probing).
- Decorator stashes the authorized token on g for the route to read.
Also fixes a pre-existing contract-surface violation: the printers/printedparts
alert helpers imported shopdb.core.models / shopdb.extensions directly; now
via shopdb.api (SupportTeam newly exported). Docs: GE-ENFORCE-DISPLAY.md
provisioning note, PLUGIN-HOOKS.md, CLAUDE.md.
9 new resource-binding tests; full suite 1131 passing.
Per decision: displays need none of the fleet-wide common scope's software, so
the gea-shopfloor-display scope carries everything it enforces and does not
inherit common. This avoids repackaging common's SMB-backed payloads for a
share-less display.
- Invert the client common-merge switch: -NoCommon (default-on) becomes
-IncludeCommon (default OFF). A scope now enforces alone unless opted in.
The capability stays for a future share-less non-display PC; displays omit it.
- Drop the common SMB-payload audit + inheritance sections from the display
seed comments and docs (GE-ENFORCE-DISPLAY.md); document self-sufficiency.
- GE-ENFORCE-CLIENT.md: common-scope inheritance is now opt-in.
Get GE-Enforce closer to running on credential-less Intune/Entra display PCs
that pull manifest + payloads over HTTPS instead of SMB.
Server (plugins/geenforce/api/routes.py):
- Rate-limit + 512MB served-size ceiling on GET /payload/<sha256> (reuses the
login limiter's cache pattern, config-overridable via GEENFORCE_PAYLOAD_*).
- New tests: payload hardening, manifestblobs model-vs-migration parity, and a
report-contract test locking the lowercase per-entry report keys.
PS client (plugins/geenforce/client/):
- Fix New-ShopdbReport per-entry key casing to lowercase (name/action/selfhealed/
exitcode/message) to match what the server reads; the engine emits PascalCase.
- Enforce TLS 1.2 in the network functions.
- Fetch + merge the fleet-wide common scope alongside the pctype scope
(pctype wins on conflict; -NoCommon opt-out).
- Normalize whatever the engine returns into a well-formed summary.
- Make the empty-cache fail-safe observable: event-log entry + report ping
instead of a silent exit 0.
Manifest (plugins/geenforce/seed_display_scope.py + docs/GE-ENFORCE-DISPLAY.md):
- Seed a gea-shopfloor-display scope: 4 Edge kiosk drift-heal registry entries
+ 1 data-driven dispatcher (Dashboard/Lobby/3DPrintRoom via display-type.txt).
Kiosk EXEs stay image-baked; the manifest heals policy/config drift only.
- Documents the common SMB-payload audit (entries needing http/inline before a
share-less display can inherit common).
Migration registry (shopdb/plugins/alembic_template.py + test):
- Register the pre-existing manifestblobs and the new printersupplyalerts tables
in PLUGIN_TABLE_OWNERS; update EXPECTED_HEAD_REVISION for geenforce (0002blobs),
printers (0002supplyalerts), and printedparts (0004txnrev) which had drifted.
Poll Zabbix for toner levels on a schedule and email/webhook on a downward
crossing. Warning fires at or below the warning threshold (default 5%),
critical at the critical threshold (default 0%); both thresholds are settings.
State lives in printersupplyalerts so an alert fires once per crossing and
re-arms after a refill.
Recipients mirror the printedparts pattern: plugin-scoped shopdb users +
roles + free-text emails (falling back to the site alert_recipients), and a
chosen support team's webhook (falling back to the site alert_webhook_url).
- PrinterSupplyAlert model + migration printers0002supplyalerts
- alerttier(remaining, warning, critical) + check_supplies poller
- flask printers check-toner-alerts CLI (run via scheduled task/cron)
- printers alert settings + Low-Toner Alerts settings page
- 7 tests: tier boundaries, once-per-crossing + re-arm, toner-only scope,
custom thresholds, support-team webhook routing
Support teams gain a webhookurl (migration 7d29 + API + settings-page field), so
a team is a notification target. send_webhook(url=) lets a caller override the
site default with a team's webhook. Printedparts gains a 'alert support team'
setting (printedparts_alert_supportteamid) + selector on its settings page;
low-stock alerts post to that team's webhook, falling back to the site
alert_webhook_url. Email leg unchanged. Same pattern extends to other alerting
plugins (printers low-toner next).
send_webhook(title,text) posts alerts to an optional webhook (Teams Incoming
Webhook / Workflow, or generic JSON) via alert_webhook_url + alert_webhook_format
settings; send_alert fans out to it alongside email; exposed on shopdb.api
(0.13.0->0.14.0, PLUGIN-HOOKS synced); low-stock posts on its custom-recipient
path too. Also: recent-transactions table shows the consumed print-file revision.
Kiosk now displays the scanned revision (badge, quantity, and done screens) so
the operator sees which revision they checked out - it was already recorded on
the take, just not shown. Low-stock email now uses the gage lab tag (was the
internal item code) and links to the item page when site_base_url is set (new
core setting, category email; emails have no request context to derive the URL).
Label switches from CODE128 to a QR encoding 'TAG|rev' (gage lab tag + latest
print-file revision), so a physical part carries which revision it was printed
from - short payload stays low-version + reliable at 0.5in (margin quiet zone,
EC M, no logo). Item exposes latestrevision; kiosk strips the |rev to resolve
and records the scanned revision on the take (migration 0004 adds
printeditemtransactions.revision) for traceability of which rev was consumed.
Manual entry records a null revision.
The time fields were hidden for the employee types (recognition, recert); show
them for every type. Backend already honors start/end on create and update and
only auto-fills the end when left blank (recognition = next 8 AM, recert = two
weeks), so nothing server-side changes.