cproudlock 2d09fa3201
Some checks failed
CI / backend (push) Failing after 7m15s
CI / naming (push) Failing after 7m22s
CI / frontend (push) Failing after 7m14s
CI / migrations-mysql (push) Failing after 7m14s
Collect what bays actually have, separately from what they are told to have
ShopDB knew what a bay SHOULD have and nothing about what it DOES. Adding the
observed half makes a rollout a review instead of a typing exercise: the floor
reports itself in, you look, and you adopt.

The collection uses the mechanism that already exists rather than a new one.
POST /api/collector/printers dispatches to the printers plugin's
apply_collector_payload, the same ADR-006 hook the computers and backups plugins
implement. New client script, new plugin-owned table, no new transport and no new
credential.

OBSERVED AND ASSIGNED STAY APART, and that is the point rather than a detail. A
collector report can never write an assignment row: _reconcile_edges is the only
function that writes usesprinter/defaultprinter, it has two call sites, and both
are authenticated routes a human calls. If a drifted bay's own state were allowed
to become what it is told to install, every configuration error would become
permanent the next time that PC checked in.

Seeding an assignment from observed state is explicit -
POST /assignments/seed-from-observed - because a rollout adopts many machines at
once. It routes through the same _reconcile_edges as the editor, so there is one
write path with two doors, and a queue matching no known printer is REFUSED
rather than guessed into an assignment. That last rule is the lesson from the
measuring tools: adopting on a weak key produced 43 duplicate instruments.

Two fixes on top of what the agents built. The replace deleted a host's previous
rows by exact case-folded name while the read path treats a short name and its
FQDN as one machine, so a PC that changed spelling appeared to hold every queue
twice - which reads as drift that is not there. And the client sent 'reportedat'
where the declared schema said 'observedat'.

Also here: the legacy loader now imports machines.printerid, the classic system's
record of each machine's default printer, which it silently dropped - the
production import would have lost every one. And Set-ShopdbPrinters.ps1 finally
registers the per-user logon task, staging Apply-ShopdbDefaultPrinter.ps1 to
C:\ProgramData first because the share it lives on is mounted only during the
enforcement cycle and the task runs at logon when it is gone.

VALIDATED ON WINDOWS 11 (build 26200), not just on Linux pwsh, which parses these
scripts happily and executes none of the spooler branches.

The reporter: posts a correct payload with the X-API-Key header; resolves BaseUrl
and CollectorKey from HKLM when given no arguments; suppresses the virtual queues
by port; resolves port addresses; and reads the CONSOLE USER's default out of
HKU rather than SYSTEM's own, which is a different and usually wrong answer.

Two results matter more than the rest. With the spooler stopped, both the cmdlet
and the CIM path fail and the script posts NOTHING - verified against a capture
server that recorded zero requests, where an empty list would instead have
erased that host's observed rows and read as a bay that lost its printers. A
genuinely empty host still posts [], because that is a real and different fact.

The logon task registers as the Users group at Limited, and falls back to the
well-known SID S-1-5-32-545 when the group name will not resolve, as it will not
on localised Windows. It was then run with the source directory RENAMED AWAY, to
stand in for the share being unmounted, and it still moved the user's default -
which is the whole reason the script is staged to C:\ProgramData rather than run
from where it lives.

The guarantees against damage were re-checked rather than assumed: an empty
assignment changes nothing, an unreachable server changes nothing, -WhatIfOnly
leaves no queue, no task, no staged file and no registry value behind, and a
drifted queue is repointed IN PLACE with Set-Printer so whoever has it as their
default keeps it.

Not covered by any of this: the driver-staging path, which needs a real vendor
package rather than the class drivers a VM ships with.
2026-08-19 15:32:18 -04:00
2026-02-17 12:47:08 -05:00
2026-08-19 10:56:52 -04:00

ShopDB Flask

A modern rewrite of the classic ASP/VBScript ShopDB application using Flask (Python) and Vue 3. This application manages shop floor machines, PCs, printers, applications, and related infrastructure for manufacturing environments.

Overview

ShopDB tracks and manages:

  • Machines - CNC equipment, CMMs, inspection systems, etc.
  • PCs - Shopfloor computers, engineering workstations
  • Printers - Network printers with Zabbix supply integration
  • Network devices - Switches, routers, and the subnet browser
  • Measuring tools - Gage-lab instruments with calibration tracking
  • Applications - Software deployed across the shop floor, with per-PC install tracking
  • Employees - Directory, recognition and training notifications
  • Warranties - Coverage records with Dell warranty lookups
  • USB devices - CMMC check-in/out tracking
  • Knowledge Base - Documentation and troubleshooting guides
  • GE-Enforce manifests - Imaging/software manifest editing and fleet compliance

Tech Stack

Backend:

  • Python 3.14 with Flask
  • SQLAlchemy ORM
  • MySQL 5.7+ database (5.6 works with extra utf8mb4 config; see docs/DEPLOY.md)
  • JWT authentication
  • Plugin architecture for extensibility

Frontend:

  • Vue 3 with Composition API
  • Vue Router for navigation
  • Pinia for state management
  • Vite build system

Project Structure

shopdb-flask/
+-- shopdb/                 # Flask application
|   +-- core/
|   |   +-- api/            # REST API endpoints
|   |   +-- models/         # SQLAlchemy models
|   |   +-- schemas/        # Validation schemas
|   |   `-- services/       # Business logic
|   +-- plugins/            # Plugin system
|   `-- utils/              # Shared utilities
+-- frontend/               # Vue 3 application
|   +-- src/
|   |   +-- api/            # API client
|   |   +-- components/     # Reusable components
|   |   +-- views/          # Page components
|   |   +-- router/         # Route definitions
|   |   `-- stores/         # Pinia stores
|   `-- public/             # Static assets
+-- plugins/                # Bundled and external plugins
+-- migrations/             # Alembic migration chain (flask db upgrade)
+-- scripts/                # Import and utility scripts
`-- tests/                  # Test suite

Naming Conventions

To maintain consistency with the legacy ShopDB database and codebase, the following naming standards apply:

Database

  • Table names: Lowercase, single word, no underscores or dashes
    • Examples: assets, computers, printers, businessunits
  • Column names: Lowercase, single word, no underscores or dashes
    • Examples: assetid, assetnumber, hostname, isactive, createddate
  • Foreign keys: Referenced table name + id
    • Examples: locationid, vendorid, modelnumberid, computertypeid
  • Boolean columns: Prefixed with is or has
    • Examples: isactive, isshopfloor, iscolor, isdhcp, islicenced

Code

  • Python variables: Follow database naming where applicable (lowercase, no underscores for model fields)
  • JavaScript variables: camelCase for local variables, but match API field names from backend
  • Vue components: PascalCase for component names
  • CSS classes: Lowercase with dashes for multi-word classes

API

  • Endpoints: Lowercase, plural nouns
    • Examples: /api/machines, /api/computers, /api/locations
  • Query parameters: Lowercase, single word
    • Examples: ?locationid=5, ?isactive=true, ?assettype=computer

Style Guidelines

  • No emojis in code, comments, documentation, or UI
  • Keep UI functional and professional
  • Dark theme is the default
  • Consistent table layouts across all list views

Setup

Prerequisites

  • Python 3.14
  • Node.js 18+
  • MySQL 5.7+ (5.6 works with extra utf8mb4 config; see docs/DEPLOY.md)

ShopDB Flask uses MySQL as the canonical database. SQLite is used only for the test suite (TestingConfig in shopdb/config.py points at an in-memory SQLite). Do not run dev or production against SQLite.

Distribution

Source lives here. The Windows installer ships as a release asset rather than a file in the repository - it is around 240 MB, well past what a repository takes and well inside what a release asset does. There is no package or image registry; a site installs from that .exe or builds from source.

Fast path (Docker)

The Docker image builds the Vue frontend and serves it from the API container, so a container deploy needs no separate Node build step.

cp .env.example .env
# Edit .env: set SECRET_KEY, JWT_SECRET_KEY, DATABASE_URL, CORS_ORIGINS,
# and the MYSQL_* passwords (see docs/CONFIG.md for every variable).

docker compose up -d --build

# Create the schema and seed the platform data (idempotent, safe to re-run):
docker compose exec api flask db upgrade
docker compose exec api flask seed permissions
docker compose exec api flask seed settings
docker compose exec api flask seed reference-data

Then browse to the site and complete the first-run setup wizard at /setup (it creates the first admin account and captures site identity). To create the admin headlessly instead of using the wizard:

docker compose exec api flask seed admin --username admin --email admin@facility.example.com

Manual path (venv + Node)

# Backend
python -m venv venv
source venv/bin/activate
pip install -r requirements.txt
cp .env.example .env
# Edit .env with your database credentials and secrets.

export FLASK_APP=shopdb
flask db upgrade
flask plugin upgrade-all      # per-plugin schema (ADR-008)
flask seed permissions
flask seed settings
flask seed reference-data
flask run --port 5001         # MUST be 5001 - the frontend dev server proxies here

# Frontend (separate terminal)
cd frontend
npm install
npm run dev          # dev server on :5173
npm run build        # production build into frontend/dist (served by Flask)

Complete first-run setup at /setup, or run flask seed admin for a headless admin account. The repo ships VS Code config in .vscode/ (F5 debugs the backend; a "Dev site" task runs both servers). A fuller day-one walkthrough, including VS Code and troubleshooting, is the DEVELOPMENT-SETUP page in the project wiki.

To import a site's legacy data, use the HTTP import surface: an admin API token plus docs/IMPORT-API.md drive the whole migration through documented endpoints (X-Import-Mode preserves original timestamps). scripts/site_imports/wjf/ is the reference site's loader, kept as a worked example of the whole sequence.

Which deployment route

Target Use
Windows Server + IIS (how sister sites run) docs/INSTALL-WINDOWS.md - one installer .exe, offline, no manual IIS work. Day 2: docs/OPERATE-WINDOWS.md
Linux / Docker, air-gapped docs/DEPLOY-AIRGAP.md
Linux / Docker, connected docs/DEPLOY.md

For every environment variable and Setting key see docs/CONFIG.md.

What the Windows installer requires

The installer checks all of this before it changes anything and refuses rather than half-installing.

Minimum Notes
Windows Server 2019 (build 10.0.17763) Ships IIS 10.0, which is therefore the earliest IIS supported. Server 2016 is also IIS 10.0 but falls below the build floor and is refused.
Windows client (test boxes) 10 22H2 (build 10.0.19045) or 11 Pro or higher - Home has no IIS at all.
Architecture 64-bit The payload is cp314 win_amd64.
IIS Web Server role installed beforehand Install-WindowsFeature -Name Web-Server -IncludeManagementTools. Needs no internet.
Free disk 5 GB Refused below this. 40 GB is comfortable once uploads and config backups accumulate.
Database bundled MySQL 8.4 LTS, or your own Bring credentials if you use an existing server.

The binding constraint is the operating system rather than IIS: the payload is Python 3.14 plus HttpPlatformHandler and URL Rewrite, and the handler itself runs on older IIS. An older host is untested rather than known-broken.

If you must deploy onto something older, docs/INSTALL-WINDOWS-IIS.md is the manual procedure and has no OS gate - it even documents MySQL 5.6, which is that era of machine. The trade is stated there: it produces a server the installer will not subsequently upgrade.

Configuration

Environment variables (.env):

Variable Description
DATABASE_URL MySQL connection string
SECRET_KEY Flask secret key
JWT_SECRET_KEY JWT signing key
JWT_ACCESS_TOKEN_EXPIRES Access token TTL (seconds)
LOG_LEVEL Logging verbosity

API Documentation

The REST API follows standard conventions:

Method Endpoint Description
GET /api/machines List machines (filterable by type)
GET /api/machines/:id Get machine details
POST /api/machines Create machine
PUT /api/machines/:id Update machine
DELETE /api/machines/:id Soft delete machine

Each asset plugin exposes the same CRUD pattern on its own prefix (/api/computers, /api/printers, /api/network, /api/measuringtools), and cross-cutting asset endpoints live under /api/assets.

Query parameters for list endpoints:

  • page - Page number (default: 1)
  • perpage - Items per page
  • sort - Sort field
  • dir - Sort direction (asc/desc)
  • search - Search term
  • assettype - Filter by asset type (computer, printer, machine, networkdevice, measuringtool)

Where to start

docs/START-HERE.md routes by what you are here to do - standing up a site, deploying the shop-floor tools, writing a plugin, integrating with the API, or diagnosing something. On the published mirror the same page is the wiki's front door.

Plugin System

ShopDB supports plugins for extending functionality. See CONTRIBUTING.md for plugin development guidelines.

The image bundles these plugins; only the ones a site installs are loaded. The current count and each plugin's version and migration head are in docs/PROJECT-MAP.md, which is generated:

  • backups - Machine configuration backups (NTLARS/DNC, CMM, part marker, UDC) with revision history and diffs
  • computers - Shopfloor PCs and workstations, collector fleet ingest
  • employees - Employee directory
  • geenforce - GE-Enforce imaging/software manifests and fleet compliance
  • machines - CNC, CMM, and other shop-floor machines
  • measuringtools - Gage-lab instruments with calibration tracking
  • knowledgebase - Documentation and troubleshooting guides
  • network - Network devices and subnets
  • notifications - Shopfloor notifications and recognition feed
  • printedparts - 3D-printed part catalogue, kiosk issue tracking and stock alerts
  • printers - Extended printer management with Zabbix integration
  • slides - TV/kiosk slideshows
  • tools - Tech Tools: barcode and QR generation laid out for real label stock
  • usb - CMMC USB check-in/out tracking
  • warranty - Warranty records with Dell lookups

Legacy Migration

This project replicates functionality from the classic ASP/VBScript ShopDB site. Key mappings:

Legacy Modern
ASP/VBScript Flask/Python
Classic ADO SQLAlchemy
Server-side HTML Vue 3 SPA
Session auth JWT tokens

License

Internal use only.

Description
Shop Database Flask Application with Vue 3 Frontend
Readme 42 MiB
Languages
Python 49.5%
JavaScript 21.7%
Vue 19.9%
PowerShell 6.1%
Inno Setup 1%
Other 1.7%