Files
DriverVault/API Server
tajniak81andClaude Opus 5 358ee68f94 Cars: create a car from a manufacturer service, with a per-car data tab
A car can now be imported straight from the account its owner already has
with the manufacturer, and every reading that service exposes shows up on
the car's own tab. MyToyota is the first provider.

API Server — internal/api/vehicleproviders.go adds a generic layer over a
plugin that can enumerate vehicles and read data about them. Adding the
next manufacturer is one vehicleSource adapter plus a line in
vehicleSources(): no new endpoints, no Web App changes.

  GET  /api/vehicle-providers                     providers + connect state
  GET  /api/vehicle-providers/{p}/vehicles        the caller's vehicles
  POST /api/vehicle-providers/{p}/import          create a car from one
  GET  /api/cars/{id}/provider                    live snapshot for the tab
  POST /api/cars/{id}/provider                    link / unlink a car
  POST /api/cars/{id}/provider/sync               re-apply provider data

Two properties shape it. Credentials are always the caller's own, resolved
through the same global -> org -> user cascade as the integration settings,
so a shared car shows provider data only when that vehicle is on the
viewer's account — the owner's credentials are never borrowed. And upstream
shapes are not modelled: these are unofficial APIs, so the layer searches
payloads by key name for the readings worth promoting (odometer, fuel,
battery, range) and flattens the rest to dotted key/value pairs alongside
the raw JSON. A renamed field costs one blank value, not a broken page.

The Toyota gate and its wording now live in toyotaSource, so the older
/api/integrations/toyota/vehicles endpoint and the new ones cannot drift.

Manager.InvokeBatchWith shares one transient plugin instance across a batch
of actions. The tab pulls seven capabilities, and InvokeWith builds a fresh
instance per call — which for a connector that authenticates lazily means a
fresh OAuth login per call. Batching logs in once.

cars gains provider + provider_vehicle_id (schema.go and
setup-pocketbase.mjs both). carPayload deliberately omits them, so an
ordinary car edit can neither reassign the car nor break its link;
carProviderPayload writes the link on its own.

Web App — Dashboard grows an "import from service" button beside "add car",
shown only once an account is connected, opening CarImportModal: pick the
vehicle, choose what to pull (identity / fuel type / dates / odometer, all
on by default), import. ProviderPanel becomes the car's first tab, ahead of
Information, labelled with the service: headline readings, the vehicle
record, one card per capability with its raw response, and an offer to take
the provider's odometer when it is ahead of the stored one. On an unlinked
car the tab instead offers to link it, VIN-matched. Info stays the default
selection — landing on the provider tab would fire a login on every car
page view. Full en/pl/da translations.

Tests cover the payload walking, Toyota normalization, import-selection
defaults, and — through the real handler chain against a stand-in
PocketBase — that every route is registered and that a closed gate is soft
on a listing (200 + a reason the UI can show) but hard on a write (4xx, so
a caller cannot read the reply as a created car).

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-17 14:13:11 +02:00
..
2026-07-06 08:50:52 +02:00

DriverVault — API Server

The central API Server for the DriverVault project. Written in Go (standard library only, module drivervault/apiserver). It is the single gateway between all clients (web app, phone app, Home Assistant plugin, ESP32 device) and the PocketBase database — clients never talk to PocketBase directly. The API Server authenticates to PocketBase as a superuser and all collection access rules are left null, so data is only reachable through this server.

It also serves the superadmin web panel at the server root (/).

Layout

cmd/server/main.go        # entry point
internal/
├── api/                  # HTTP handlers + router (server.go)
│   ├── auth.go           # PocketBase token proxy + role gates
│   ├── users.go          # user management (role/org scoped)
│   ├── orgs.go           # organization management
│   ├── settings.go       # runtime PocketBase connection (pb-config)
│   ├── plugins.go        # plugin management endpoints
│   ├── status.go         # upstream health probes
│   ├── health.go  respond.go  panel.go
│   ├── cars.go  records.go  services.go  parts.go  shares.go  me.go
│   ├── technical.go  fuel.go  maintenance.go  documents.go  reminders.go
│   ├── attachments.go       # one optional file per record (shared handlers)
│   ├── integrations*.go     # per-user Toyota / Anker Solix settings + OCPP control
│   └── dist/                # built panel, embedded via go:embed
├── config/config.go      # env + .env load, .env write-back
├── models/models.go      # domain types + derived-field computation
├── ocpp/                 # OCPP 1.6J Central System (Anker Solix charging control)
├── pb/client.go          # PocketBase superuser client (runtime-retargetable)
└── plugins/              # plugin system — see plugins/README.md
    ├── plugin.go  manager.go  external.go  doc.go
    └── builtin/          # built-in connectors: toyota, ankersolix
panel/                    # Vue 3 + Tailwind panel source
scripts/                  # Node/Python maintenance scripts
bin/api-server.exe        # prebuilt binary the deployment runs

Auth & access control

Authentication is PocketBase's own. POST /api/auth/login is proxied to the PocketBase users collection and the client keeps the token PocketBase minted; this server does not issue its own JWT. Every protected request re-resolves that token against PocketBase (auth-refresh), so a role change or a deletion takes effect immediately rather than lingering until a token expires.

POST /api/auth/login   { "email": "...", "password": "..." }  -> PocketBase { token, record }
GET  /api/auth/me      (Authorization: <token>)               -> { id, email, name, role }
GET  /api/identity     (Authorization: <token>)               -> + organization

Both Authorization: Bearer <token> and a raw Authorization: <token> are accepted (PocketBase's own SDKs send the latter).

Roles

users.role is user | admin | superadmin (empty is treated as user).

Role Can
user their own cars, service records, parts, profile
admin the above, plus manage users within their own organization
superadmin everything, across all organizations, plus the PocketBase connection and plugins

Guards worth knowing: an admin cannot create or edit a superadmin, cannot move users between organizations, and nobody can change their own role or delete their own account. An organization cannot be deleted while it still has members.

Organizations

organizations is the tenant collection; users.organization is the membership. A superadmin spans all organizations; an admin is scoped by the server to their own. Users may have no organization at all.

Per-user car ownership + sharing

Cars are not a global list. cars.owner marks ownership and car_shares grants other users read or write access. Every car/service/part handler is gated by requireCarAccess:

  • read — view the car, its service records and parts.
  • write — edit the car and full service/part CRUD.
  • owner only — delete the car and manage its shares.

Data model

Collection Purpose Key fields
cars one per car name, make, model, year, registration, registrationCountry, vin, fuelType, buildDate, firstRegistrationDate, currentKm, serviceIntervalDays (365), serviceIntervalKm (15000), technicalCheckIntervalDays (365), oilSpec, transmissionOilSpec, differentialOilSpec, brakeFluidSpec, coolantSpec, owner
service_records the service log car, date, km, changed_oil, changed_engine_air_filter, changed_cabin_air_filter, notes
technical_checks roadworthiness inspections (przegląd techniczny / MOT / TÜV) car, date, result (passed | failed), cost, station, valid_until, notes
parts per-car parts catalog car, name, part_number, category, notes
fuel_entries refuelling log (efficiency derived on read) car, date, km, liters, cost, full_tank, missed_fill, station, notes
maintenance_entries workshop visits & repairs (outside routine service) car, date, km, type, status, workshop, parts_used, labor_cost, parts_cost, invoice_number, warranty_until, notes
car_documents paperwork (insurance, registration, road tax, …) car, type, title, provider, reference, issue_date, expiry_date, cost, notes
reminders date/odometer reminders (some auto-derived) car, title, type, due_date, due_km, repeat_days, repeat_km, done, done_at, notes
car_shares grants another user access to a car car, user, permission (read | write)
organizations tenants name (unique)
control_audit OCPP control-command audit trail user, charger, action, result, timestamp
users login + profile (built-in auth collection) name, email, avatar, role (user | admin | superadmin), organization, bio, theme, locale, date_format, currency, font_size, deletion_requested_at

Every record collection except car_shares / organizations / control_audit carries one optional file attachment, served only through the API Server (GET /api/{records}/{id}/file) — never a public PocketBase URL.

Spreadsheet formulas (from the original Car Service.xlsx), reproduced by the API on read:

Next Service Date = service date + serviceIntervalDays   (Excel: =A+365)
Next Service Km   = service km   + serviceIntervalKm      (Excel: =B+15000)

These come back on each service record as nextServiceDate / nextServiceKm.

Endpoints

# public
GET    /healthz
GET    /api/health
GET    /api/status                     # health of PocketBase + Web App, probed server-side
POST   /api/auth/login
GET    /api/auth/validate

# identity
GET    /api/auth/me
GET    /api/identity

# current user (profile / appearance / avatar / data / account lifecycle)
GET    /api/me                         PATCH /api/me                DELETE /api/me
POST   /api/me/password
POST   /api/me/avatar   GET /api/me/avatar   DELETE /api/me/avatar
POST   /api/me/verify/request
GET    /api/me/export                  POST /api/me/import
POST   /api/me/delete   POST /api/me/delete/cancel

# users + organizations (admin or superadmin; org writes are superadmin-only)
GET    /api/users                      POST   /api/users
PATCH  /api/users/{id}                 DELETE /api/users/{id}
GET    /api/orgs                       POST   /api/orgs
PATCH  /api/orgs/{id}                  DELETE /api/orgs/{id}

# superadmin — connection + plugin management
GET    /api/admin/pb-config            PUT    /api/admin/pb-config       POST /api/admin/pb-config/test
GET    /api/admin/webapp-config        PUT    /api/admin/webapp-config   POST /api/admin/webapp-config/test
GET    /api/admin/plugins              POST   /api/admin/plugins
GET    /api/admin/plugins/{name}       PUT    /api/admin/plugins/{name}
DELETE /api/admin/plugins/{name}       POST   /api/admin/plugins/{name}/health

# integrations (per-user plugin settings; superadmin → org admin → user cascade)
GET    /api/integrations/toyota        PUT /api/integrations/toyota      POST /api/integrations/toyota/health
GET    /api/integrations/toyota/vehicles
GET    /api/integrations/anker-solix   PUT /api/integrations/anker-solix POST /api/integrations/anker-solix/health
GET    /api/integrations/anker-solix/chargers

# Anker Solix OCPP charging control (own/proxy mode + a live CSMS session)
GET    /api/integrations/anker-solix/chargers/{sn}/control
POST   /api/integrations/anker-solix/chargers/{sn}/control/token
DELETE /api/integrations/anker-solix/chargers/{sn}/control/token
POST   /api/integrations/anker-solix/chargers/{sn}/{action}
GET    /ocpp/{serial}                  # charger dials in here (OCPP Basic auth, not bearer)

# vehicle providers — create a car from a manufacturer service; per-car provider tab
GET    /api/vehicle-providers
GET    /api/vehicle-providers/{provider}/vehicles
POST   /api/vehicle-providers/{provider}/import

# cars + sharing
GET    /api/cars                       POST /api/cars
GET    /api/cars/{id}                  PATCH /api/cars/{id}   DELETE /api/cars/{id}
GET    /api/cars/{id}/provider         POST /api/cars/{id}/provider
POST   /api/cars/{id}/provider/sync
GET    /api/cars/{id}/service-records  GET /api/cars/{id}/technical-checks
GET    /api/cars/{id}/parts            GET /api/cars/{id}/fuel-entries   GET /api/cars/{id}/fuel-stats
GET    /api/cars/{id}/maintenance      GET /api/cars/{id}/documents      GET /api/cars/{id}/reminders
GET    /api/cars/{id}/shares           POST /api/cars/{id}/shares        DELETE /api/cars/{id}/shares/{userId}

# per-record collections — each is GET(list) POST / GET PATCH DELETE {id}
/api/service-records   /api/technical-checks   /api/parts
/api/fuel-entries      /api/maintenance        /api/car-documents
/api/reminders  (+ POST /api/reminders/{id}/complete)

# attachments — one optional file per record, on every collection that takes one.
# {records} = car-documents | service-records | technical-checks | maintenance | fuel-entries | parts
POST   /api/{records}/{id}/file        GET /api/{records}/{id}/file      DELETE /api/{records}/{id}/file

GET /api/cars returns the caller's owned cars plus any shared with them, each annotated with an access field. The per-record list endpoints also accept a ?car={id} filter (e.g. GET /api/service-records?car={id}).

Gotcha: updateCar rewrites all car columns from the payload, so a PATCH /api/cars/{id} must send the full car object — omitted spec fields get blanked. (The phone's odometer quick-edit sends the whole car for this reason.) The two exceptions are owner and the provider link (provider, provider_vehicle_id), which carPayload deliberately leaves out so an ordinary edit can neither reassign the car nor break its connected service.

Vehicle providers

internal/api/vehicleproviders.go turns a manufacturer-service plugin into a car you can create from your own account with that service, plus a per-car tab showing everything the service currently knows about it. Toyota (MyToyota) is the first provider; adding the next one means writing a vehicleSource adapter and appending it to vehicleSources() — no new endpoints and no Web App changes.

Two properties shape the design:

  • Credentials are always the caller's. Every provider call resolves through the same global → org → user cascade as the integration settings, so a car shared with someone else shows them provider data only when that vehicle is on their manufacturer account. The owner's credentials are never borrowed.
  • Upstream shapes are not modelled. These are unofficial APIs. Rather than hard-coding field paths, the layer searches payloads by key name for the handful of readings worth promoting (odometer, fuel, battery, range) and flattens the rest to dotted key/value pairs, shipping the raw payload alongside. A renamed field costs one blank value instead of a broken page.

POST .../import takes {vehicleId, name?, include?}, where include selects which groups to pull (identity, fuelType, dates, odometer). Omitting it means "everything available". POST /api/cars/{id}/provider/sync takes the same selection, and only ever moves the odometer forward — a reading that appears to go backwards is a stale provider, not a car driven in reverse.

The panel (/)

A Vue 3 + Tailwind app (source in panel/, built into internal/api/dist and embedded at compile time). It is the superadmin console:

  • Overview — live health of the API Server, PocketBase and the Web App.
  • Users / Organizations — full management, scoped to the caller's role.
  • PocketBase — retarget the database connection at runtime; test before saving. Applied immediately and persisted to .env, so it survives a restart. This is the escape hatch when the configured PocketBase is wrong or unreachable — the settings endpoints deliberately do not require a working service account.
  • Plugins — enable/disable/configure integrations, run health checks, register external plugins.
  • API — the endpoint reference.

Log in with any DriverVault account; the sections you see depend on your role.

cd panel
npm install
npm run dev          # localhost:5174, proxies /api to localhost:8080
npm run build        # -> ../internal/api/dist   (then rebuild the Go binary)

Editing panel source alone does nothing to the served panel — run npm run build and then rebuild the Go binary, since dist is embedded.

Plugins

An extension system for integrating third-party services, managed by a superadmin. Two kinds share one contract: built-in (Go, compiled in) and external (any HTTP service, registered at runtime, no rebuild). State persists to plugins.json.

See internal/plugins/README.md for the full guide. Two built-in connectors ship today — Toyota Connected (toyota, read-only MyToyota vehicle data) and the Anker Solix V1 EV charger (anker-solix) — and any number of external HTTP plugins can be registered at runtime with no rebuild.

Integrations & charging control

Beyond the superadmin plugin registry, the built-in connectors are exposed per-user through /api/integrations/* under a superadmin → org admin → user cascade (each layer supplies defaults the next can override). For Anker Solix chargers the server additionally runs an OCPP 1.6J Central System (internal/ocpp): when the owner sets a control mode of own/proxy, the charger dials back in at GET /ocpp/{serial} (authenticated with OCPP Basic auth using a per-charger control token, not a bearer token) and the owner can start/stop and set charge limits, with every command rate-limited and written to a control_audit trail.

Configuration

Copy .env.example to .env and fill in. Summary:

Variable Default Purpose
API_ADDR :8080 listen address (bare port accepted)
POCKETBASE_URL http://10.2.1.10:8027 PocketBase base URL
POCKETBASE_ADMIN_EMAIL / _PASSWORD superuser service account
CORS_ALLOW_ORIGINS * comma-separated browser origins
WEBAPP_URL http://localhost:8090 probed by /api/status
AUTH_USERS_COLLECTION users PocketBase auth collection
PLUGINS_FILE plugins.json plugin state store
OCPP_REQUIRE_TLS true reject chargers that did not connect over TLS
OCPP_PUBLIC_URL canonical ws(s):// base to point chargers at
PB_BOOTSTRAP true run the on-boot schema create/reconcile
DRIVERVAULT_SUPERADMIN_EMAIL / _PASSWORD / _NAME — / — / Administrator first superadmin, created on boot when absent

PB_URL, PB_ADMIN_EMAIL, PB_ADMIN_PASSWORD, PORT and CORS_ORIGINS are still honoured for older deployments; the modern names win when both are set.

Two paths are resolved relative to the working directory: PLUGINS_FILE and the .env the panel rewrites when a superadmin retargets PocketBase. In Docker the working directory is /data, a volume, so both survive a container recreate — see Dockerfile and ../Docker.

CORS_ALLOW_ORIGINS only matters for browser clients (the web app). Native mobile apps are not subject to CORS.

The service account is optional at startup: without it the server still runs and a superadmin can log in and configure it from the panel, while management endpoints return 503.

Scripts (scripts/)

node scripts/setup-pocketbase.mjs                    # create/reconcile collections (idempotent)
node scripts/create-user.mjs <email> <pw> "Name"     # create an app login
node scripts/set-role.mjs <email> user|admin|superadmin
node scripts/backfill-car-owners.mjs                 # one-off: assign owner to legacy cars
python scripts/seed_from_excel.py "C:/Users/jania/Desktop/Car Service.xlsx"

The Node scripts read POCKETBASE_URL / POCKETBASE_ADMIN_EMAIL / POCKETBASE_ADMIN_PASSWORD (or the legacy PB_* names) from the environment.

PocketBase note: collections created by the setup script do not get automatic created/updated autodate fields in this PocketBase version — sorting on created fails unless an explicit F.autodate(...) is added. When adding a new car spec field, extend DESIRED.cars in setup-pocketbase.mjs, add it to models.Car + the record mapping in records.go, then rebuild.

Startup bootstrap: the server also runs this same create/reconcile on boot (internal/bootstrap, a Go mirror of setup-pocketbase.mjs) whenever a service account is configured, so the Docker prod stack needs no manual setup step. It is idempotent and gated by PB_BOOTSTRAP (default true; set to false to skip). With DRIVERVAULT_SUPERADMIN_EMAIL + DRIVERVAULT_SUPERADMIN_PASSWORD set it also creates the first superadmin user when absent. Keep the two schemas in sync: a change to DESIRED in the script must be mirrored in internal/bootstrap/schema.go (guarded by TestSchemaConsistency).

First-time setup

  1. Create the PocketBase collections (idempotent — safe to re-run on an existing deployment; it adds organizations, users.organization, and grows users.role to include superadmin):

    $env:POCKETBASE_URL="http://10.2.1.10:8027"
    $env:POCKETBASE_ADMIN_EMAIL="you@example.com"
    $env:POCKETBASE_ADMIN_PASSWORD="secret"
    node scripts/setup-pocketbase.mjs
    
  2. Mint the first superadmin. The panel's management screens need one, and only a superadmin can promote another — so the first has to come from the script:

    node scripts/create-user.mjs admin@example.com "a-long-password" "Admin"
    node scripts/set-role.mjs admin@example.com superadmin
    
  3. Run the servergo run ./cmd/server, or build and run the binary.

  4. Open the panel at http://localhost:8080/ and sign in.

  5. (Optional) Seed from the spreadsheet with the server running (see scripts).

Build & run

go build -o bin/api-server.exe ./cmd/server

The deployment runs the prebuilt binary bin/api-server.exe (not go run), started detached so it survives the shell:

Start-Process -FilePath ".\bin\api-server.exe" -WorkingDirectory "." `
  -WindowStyle Hidden -RedirectStandardOutput api-server.out.log `
  -RedirectStandardError api-server.err.log

Go's log package writes to stderr, so check api-server.err.log for request logs and errors. After editing any Go source, rebuild and restart the process — editing source alone does nothing until the binary is rebuilt.

Migrating from the JWT build

Earlier builds minted their own HS256 JWT and tracked a sessions collection for "active devices" / remote logout. That is gone — the server now relays PocketBase tokens. Consequences:

  • AUTH_SECRET is obsolete and ignored.
  • Login returns PocketBase's envelope{token, record}, not {token, user}.
  • GET|DELETE /api/sessions* are gone. PocketBase tokens are stateless, so there is nothing to revoke per-device. To lock every device out of an account, change its password: PocketBase rotates the user's token key, which invalidates every token already issued.
  • User management moved from /api/admin/users* to /api/users*, and the separate password-reset endpoint folded into PATCH /api/users/{id} ({"password": "..."}). Responses are enveloped: {users} / {user}.
  • Existing tokens are invalid — every client must log in once more.
  • The sessions collection is left in PocketBase rather than dropped; delete it by hand if you want it gone.

The Web App and Phone App in this repo are already updated for all of the above.