# Per-Site Deployment Runbook shopdb-flask is single-tenant per ADR-004. Each adopting facility runs its own stack: own DB, own users, own enabled plugins, own secrets. This document is the runbook for a fresh site deploy. ## Prerequisites - Docker 24+ and Docker Compose v2 (or equivalent container runtime) - A reverse proxy with TLS termination (nginx, traefik, Caddy, GE corporate LB) -- the framework does not terminate TLS itself - A MySQL backup destination (offsite recommended) - Access to the GE Aerospace Gitea or a clone of the repo ## Step 1: Clone and configure ```bash git clone https://gitea.proudtech.net/ge-aerospace/shopdb-flask.git cd shopdb-flask cp .env.example .env ``` Edit `.env`: | Variable | Required | Notes | |----------|----------|-------| | `FLASK_ENV` | Yes | `production` for live sites | | `SECRET_KEY` | Yes | `python -c "import secrets; print(secrets.token_urlsafe(64))"` | | `JWT_SECRET_KEY` | Yes | Same generation, different value | | `DATABASE_URL` | Yes | `mysql+pymysql://shopdb:PASSWORD@db:3306/shopdb_flask` (matches docker-compose) | | `CORS_ORIGINS` | Yes | Comma-separated explicit origins. Wildcard rejected. | | `MYSQL_ROOT_PASSWORD` | Yes | Container only | | `MYSQL_PASSWORD` | Yes | Container only, must match `DATABASE_URL` password | | `MYSQL_PORT` | No | Default 3306 | | `API_PORT` | No | Default 5001 | | `LOG_LEVEL` | No | Default INFO | | `ZABBIX_URL`, `ZABBIX_TOKEN` | No | Only if printers plugin uses Zabbix | | `COLLECTOR_API_KEY` | No | Shared key for `/api/collector/*` ingest. Required only if unattended collectors push data. Endpoint fails closed (denies) when unset. | | `COLLECTOR_API_KEY_` | No | Per-plugin override (e.g. `COLLECTOR_API_KEY_COMPUTERS`), checked before the shared key (ADR-006) | | `EMPLOYEE_DB_HOST/USER/PASSWORD/NAME` | No | Read-only HR directory for notifications + kiosks. No safe default for the password. | ## Step 2: Bring up the stack ```bash docker compose build docker compose up -d ``` The Docker image builds the Vue frontend in a first stage and copies the compiled SPA into the API image, so `docker compose build` produces a self-contained image with the UI already built. No separate Node step is needed for a container deploy. (For a bare-metal/venv install instead, build the frontend by hand: `cd frontend && npm ci && npm run build`, which writes `frontend/dist/` for Flask to serve.) The MySQL container initializes its volume on first run. The API container waits for `db` to be healthy via `healthcheck`. Check logs: ```bash docker compose logs -f api ``` If `ProductionConfig.validate()` raises, the container exits with the offending env-var named in the log. Fix `.env` and `docker compose up -d` again. ## Step 3: Initialize the database schema ```bash docker compose exec api flask db upgrade docker compose exec api flask plugin upgrade-all ``` `flask db upgrade` applies the core Alembic chain: the baseline migration plus every later migration, which together create all core AND bundled-plugin tables through the chain head. `flask plugin upgrade-all` then stamps each bundled plugin's own migration chain (the `alembic_version_` tables) and applies any plugin-specific migrations added after the ownership cutover. Both commands are idempotent, so re-running them is safe. See ADR-008 for why plugin schema splits into per-plugin chains from the cutover forward. **Lean sites (ADR-014):** the core chain creates every bundled plugin's tables, so a site that ships only some plugins still has the others' (empty) tables. To carry only core + chosen-plugin tables, prune the rest once, at initial provisioning, after the two commands above: ```bash docker compose exec api flask plugin prune-schema # dry-run, review docker compose exec api flask plugin prune-schema --yes --force ``` It drops the tables of every plugin not installed on this site. `--force` is needed because the core chain seeds a few plugin reference tables (default access protocols, etc.); at first provisioning those hold only seeded defaults, before any site data. It refuses to drop a table that holds rows without `--force`, so it is safe to leave out of routine upgrades - run it only when provisioning a lean site or after deliberately removing a plugin. Installing a pruned plugin later recreates its tables automatically. **Charset:** the schema is utf8mb4 (`utf8mb4_unicode_ci`). The docker-compose `db` service sets `--character-set-server=utf8mb4`, so the auto-created `shopdb_flask` database is utf8mb4. If you point at an external MySQL instead of the bundled container, create the database as utf8mb4 first, or it inherits the server default (often latin1) and the schema silently drifts: ```sql CREATE DATABASE shopdb_flask CHARACTER SET utf8mb4 COLLATE utf8mb4_unicode_ci; ``` `DATABASE_URL` must keep `?charset=utf8mb4` so the connection matches. On MySQL older than 5.7 also enable `innodb_large_prefix=ON` + `innodb_file_format=Barracuda`, or the utf8mb4 indexes exceed the 767-byte prefix limit (error 1071). MySQL 5.7+ and 8.0 need no extra config. ## Step 4: Seed permissions, settings, and reference data Run all three seeders. They are idempotent, so re-running them on an existing database is safe (it adds anything missing and leaves existing rows alone). ```bash docker compose exec api flask seed permissions docker compose exec api flask seed settings docker compose exec api flask seed reference-data ``` - `seed permissions` - creates the RBAC permission rows and the default roles the app checks with `@require_permission`. Run this before anyone logs in or permission checks have nothing to match. - `seed settings` - writes the default Setting rows (branding, ServiceNow integration, floor-map placeholders, search toggles, site identity). A site overrides these later in Settings or the setup wizard. - `seed reference-data` - creates default `ModelType`, `AssetStatus`, `LocationType`, `CommunicationType`, `OperatingSystem`, `RelationshipType` rows seeded with the platform contract values (`partof`, `controls`, `connectedto`). (`Vendor`, `Location`, and `BusinessUnit` are not seeded here; they come from `seed demo`.) ## Step 5: Pick plugins to enable The image bundles thirteen plugins (computers, employees, geenforce, knowledgebase, machines, measuringtools, network, notifications, printedparts, printers, slides, usb, warranty). Only enabled plugins are loaded. ```bash docker compose exec api flask plugin list docker compose exec api flask plugin install computers docker compose exec api flask plugin install machines # ... repeat for each plugin the site tracks ``` To install a sister-site or third-party plugin (per ADR-003), drop its directory into `/plugins//` (the docker-compose mounts this read-only into the container) and run `flask plugin install `. ## Step 6: Create the first admin (setup wizard) The primary path is the first-run setup wizard. Once the stack is up and the DB is seeded, browse to the site (through the reverse proxy configured in Step 7, or directly at the API port during bring-up) and go to `/setup`. The wizard creates the first admin account and captures site identity (facility name, optional logo). It runs only while `setup_complete` is false; after it finishes the route redirects to the app. Headless alternative (no browser, e.g. automated provisioning): ```bash docker compose exec api flask seed admin --username admin --email admin@facility.example.com # Password is generated and printed once. Store in your password manager. ``` Subsequent users are managed through the UI. ## Step 7: Front the API with TLS The Flask container listens on `5001/tcp` over plain HTTP. Production exposure must go through a reverse proxy that terminates TLS: ```nginx server { listen 443 ssl; server_name shopdb.facility-a.example.com; ssl_certificate /etc/ssl/certs/shopdb.crt; ssl_certificate_key /etc/ssl/private/shopdb.key; location / { proxy_pass http://localhost:5001; proxy_set_header Host $host; proxy_set_header X-Real-IP $remote_addr; proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for; proxy_set_header X-Forwarded-Proto $scheme; } } ``` The framework reads `X-Forwarded-For` for audit logging. ## Step 8: Backups Per-site MySQL backups are the site's responsibility. Recommended: nightly `mysqldump` to offsite storage with 14-day retention. ```bash docker compose exec -T db mysqldump -u root -p"${MYSQL_ROOT_PASSWORD}" shopdb_flask | gzip > backup-$(date +%F).sql.gz ``` Verify a restore quarterly. Back up the `instance/` directory alongside the DB; it holds uploaded floor plans, branding, `plugins.json`, and tokens that are not in MySQL. See [docs/BACKUP-RESTORE.md](BACKUP-RESTORE.md) for the full backup and restore procedure. ## Step 9: Updates ```bash git pull origin main docker compose build api docker compose up -d api docker compose exec api flask db upgrade ``` The framework's `__contract_version__` may have moved. Check `docs/adr/` for any new ADRs since the last update. If an ADR introduces a breaking change, the upgrade may require coordinated work; the ADR's "Consequences" section documents it. See [docs/UPGRADE.md](UPGRADE.md) for the full upgrade procedure, including re-seeding and the v0.5+ floor-plan note. ## Common issues | Symptom | Cause | Fix | |---------|-------|-----| | `ConfigError: SECRET_KEY is required in production` | `.env` missing or blank | Set `SECRET_KEY` in `.env`, re-up | | `ConfigError: CORS_ORIGINS must be a comma-separated allowlist` | `.env` has `*` | Set explicit origins | | `PluginVersionError: requires core_version X but framework is Y` | Plugin pinned a too-narrow range | Update `manifest.json` `core_version` or pin framework version | | 500s after `flask db upgrade` | Migration ran but app cached old schema | `docker compose restart api` | | Cannot reach API after restart | Reverse proxy not pointing at the container's exposed port | Confirm `API_PORT` and proxy config | ## Health check ```bash curl -s -X POST -H "Content-Type: application/json" \ -d '{}' http://localhost:5001/api/auth/login \ | jq . # Expect: {"status": "error", "data": {"error": {"code": "VALIDATION_ERROR", ...}}} ``` If this returns a 500 or no JSON, the container is unhealthy. Check `docker compose logs api`. ## References - [docs/adr/ADR-004-deployment-topology.md](adr/ADR-004-deployment-topology.md) - per-site instances rationale - [docs/adr/ADR-003-plugin-distribution.md](adr/ADR-003-plugin-distribution.md) - bundled vs external plugins - [docs/adr/ADR-006-collector-contract.md](adr/ADR-006-collector-contract.md) - per-plugin collector endpoints - [docs/PLUGIN-QUICKSTART.md](PLUGIN-QUICKSTART.md) - building a custom plugin for your site - [docs/CONFIG.md](CONFIG.md) - every environment variable and every Setting key - [docs/UPGRADE.md](UPGRADE.md) - upgrade procedure for an existing site - [docs/BACKUP-RESTORE.md](BACKUP-RESTORE.md) - backup and restore procedure - [shopdb/config.py](../shopdb/config.py) - all the env-vars in one place