Files
DriverVault/Phone App
tajniak81andClaude Opus 5 12ec10a797 Phone App: more than one server, and a session for each
The web app can be pointed at two DriverVault stacks and switch between them in
a click. The phone had one address and one session: reaching a second garage
meant retyping the API base in Server settings and signing in again, losing the
first server's token on the way — the same act, undone, every time you switched
back.

So lib/servers.dart is the web's servers.js ported rather than reinvented, down
to the storage keys: cc_servers holds the list, cc_active_server the one being
read, cc_session_<id> the token minted by that server and no other. The two apps
describe the same thing the same way, and the upgrade path falls out of it —
cc_token, cc_user and cc_server_url are read once at boot and folded onto the
home entry, so the build carrying this signs nobody out.

Home is the address the build ships with (kDefaultApiBase, still overridable per
device from the login screen) and cannot be removed: it is what a dropped session
falls back to. Any other server is added by address, with /api appended if the
path is left off, because a server a phone can reach is internet-facing already.

The part worth reading twice is which session a rejection ends. ApiClient no
longer holds a base or a token — it pins the active server's id, base and token
at the moment a request goes out, so a 401 arriving after a switch clears the
session of the server that actually refused it rather than whichever one is
active by then. The fallback is the web's: a remote server timing out drops its
own token, the app returns to home while home is still signed in, and only when
nothing is left to fall back to does the login screen come back. Log out still
clears every server at once, since leaving the app means leaving all of them.

Switching rebuilds the shell, keyed on the active id, because record ids belong
to the server that issued them — a garage, a charging page and a settings panel
still holding the other server's rows would each have to be told to forget them
separately. The appearance prefs come across with the profile of whoever owns
the account on the server now active.

Where the picker lives is the one place the phone cannot copy the web. There is
no app rail here, so it became the first button in the Garage header, beside the
theme toggle and log out, which is that same cluster. It names the active server
once there is a choice and goes straight to adding the second when there isn't;
the eyebrow reads GARAGE · Work for the reason the rail names it — two garages
otherwise look identical. The login screen gets its own way in, because a remote
session can expire and land you there with that server still active, and a
picker reachable only from inside the app would leave nowhere to go.

One judgment call inside the sheet: saving a connected server at a new address
saves and stops, rather than falling through to the sign-in it now needs. The
token was minted by the PocketBase behind the old address and is dropped with
it, but the credentials to replace it were never asked for, so treating the save
as a login would report an empty password as the error.

The strings are copied out of Web App/web/src/i18n/ like the rest of the shared
wording. Two are not the web's: home reads "the address this app ships with"
rather than "served with this app", since the phone has no origin to be served
from, and sameOrigin has no meaning here at all and was dropped.

Biometric sign-in stays global. It was never per-server and replays its stored
credentials against whichever server is active; making it per-server is a change
of its own, and the login screen now names the server it is about to sign into.

Nothing changes on the API Server. On Android there is no origin to allow, so
the CORS list the web app has to satisfy to reach a second server doesn't enter
into it.

Verified: flutter analyze is clean and flutter test passes, 35 tests to 46. The
new ones cover the registry — a bare origin gaining its /api, a fresh install
knowing one unnamed server on the built-in address, the legacy keys landing on
home and being cleared, two servers holding their tokens apart, a rename keeping
a session where a move drops it, removing the active server falling back to a
home that is still signed in, home refusing to be removed, and a restart reading
the list, the active id and every session back.

Not verified: none of it has been run. There is no device or emulator on this
machine and no API Server to answer, so the picker, the add sheet, a real
connect, the 401 fallback and the shell rebuild on a switch exist only as code
the analyzer is happy with — the tests reach the registry, not a screen. No APK
was built. The legacy migration was exercised against mocked SharedPreferences,
which is not a phone that had the old build on it: that is the first thing to
check on a device, since the failure mode is a silent sign-out.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-23 21:47:01 +02:00
..
2026-07-06 08:50:52 +02:00
2026-07-06 08:50:52 +02:00
2026-07-06 08:50:52 +02:00
2026-07-06 08:50:52 +02:00

DriverVault — Phone App (Flutter)

A Flutter client for the DriverVault maintenance tracker. Talks only to the API Server (same contract and auth as the web app — a PocketBase token relayed by the server, not a JWT the server mints). At full feature parity with the web app.

Project name drivervault_phone, package id com.drivervault.phoneapp. Android is the supported target — the older Flutter-web build path is deprecated.

Features

Once signed in, RootShell hosts the app behind a persistent bottom navigation bar — Garage, Charging, Settings, and Users for admins — in an IndexedStack, so each section keeps its state as you switch tabs.

  • Login — email/password against /api/auth/login, password show/hide, and a collapsible Server settings section holding the address of the server the form signs into — plus the way back to the others once more than one has been added (see More than one server).

  • Biometric / face sign-in + app lock — see the dedicated section below.

  • Garage (dashboard) — car list with next-due status badges (date + km, worst-of), a "shared" chip on cars owned by someone else, pull-to-refresh and an Add car FAB. The header carries the server picker (see below), the theme toggle and log out.

  • Car detail — all spec fields (incl. VIN and transmission / differential / brake / coolant specs), a share sheet (owner only), quick odometer update, edit car, and delete car (type-to-confirm; cascades). Actions are gated by the caller's access level (read-only vs write vs owner).

    Which tabs a car shows, and in what order, belongs to the car — the same arrangement the web app reads, so everyone it is shared with sees the same page. Edit it under the tune icon: switch tabs, Information rows, Service history columns and the parts a service can change on or off, and drag any of the first three lists by its handle to reorder it. (The parts have no order — they are a checkbox list inside one column, and their position says nothing a tab's or a column's does.) (The web rearranges by dragging the tab bar and the column headings themselves; on a touch screen those gestures belong to the tab bar and the scroll, so every arrangement is made in the picker instead.) Two things cannot be switched off: Information — a page with no tabs left would be a dead end — and the service Date, since a history with the day taken out stops being one. Both can still be moved. The tabs, in their default order:

    • Connected service — everything the manufacturer's own app knows about this car, read live under your account: headline readings (odometer, fuel or battery, range, charging state, position), the vehicle record, and one card per capability the plugin exposes, rendered from the server's flattened key/value pairs so a provider adding a field surfaces it without an app change. Offers to take the provider's odometer when it is ahead of the stored one. A car with no link yet gets a connect card instead, and the tab is hidden entirely for a user with no manufacturer account connected. Because the read runs under your own credentials, a car shared from someone else shows data here only if that vehicle is on your account too — it says so rather than failing.
    • Service history — date/odometer plus which parts were changed, with the next-due date/km derived by the server. The web lays those out as table columns; a phone has no width for a seven-column table, so a card renders the same columns as pieces — consecutive short ones share a wrapping line, and the parts, the notes and the file each take a line of their own. It reads the car's own hidden set and order, so a column switched off on either app is off on both, and the arrangement decides the grouping: move Notes between Km and Next date and the short columns split around it. Every part a service can have changed shares the one parts column — they are a growing list, and a column apiece would widen the web's table without end — and both that column and the form's Changed parts section come from lib/service_parts.dart, the twin of the web's lib/serviceParts.js. Which of them this car records is the car's own choice as well: a part switched off leaves the form's checkboxes and the cards' chips together, and nothing is written to the records, so switching it back on brings the old chips back.
    • Technical check history — the mandatory roadworthiness inspections (przegląd techniczny, MOT, TÜV). Result, cost, station, and the certificate's valid-until, which overrides the car's interval when present. A failed check derives no next date.
    • Maintenance — workshop visits and repairs outside the routine schedule: type/status, workshop, parts used, labour + parts cost, invoice number and a warranty-until badge.
    • Fuel — refills with a summary panel (average / best / worst consumption, cost per km, price per litre). Consumption is measured between full tanks, so partial fills roll into the next full one and a flagged missed fill leaves its window uncomputed rather than reporting a fictional figure.
    • Charging cost — charges with a summary panel (average / best / worst kWh/100km, cost per km, price per kWh). The electric twin of Fuel, and derived the same way: consumption is measured between full charges, so a top-up rolls into the next full one. Distinct from the Charging section in the bottom bar, which is the charger network and OCPP control.
    • Documents — insurance, registration, road tax and the rest, with a renewal badge driven by the server's expiry assessment.
    • Parts catalog — the per-car parts list.
    • Reminders — date- and/or odometer-triggered, one-off or recurring, with a Mark done action. Reminders the server derived from a document or service record are shown read-only.
  • Attachments — one optional file per service record, technical check, workshop visit, refill, charge, document and part (PDF or image, up to 10MB). Picked with file_picker, fetched back through the API Server — never a public URL — and opened with the phone's own viewer via open_filex.

  • Charging — mirrors the web Charging.vue, split into two tabs. Public is a discovery map with a demo session and nearby stations: presentational placeholders, because there is no public-charging API yet (same as the web). Home carries the one real piece — an OCPP control card that drives your own charger through the Anker Solix control endpoints, once you pick Own/Proxy CSMS under Settings → Integrations.

  • Settings — account (name / email verification / password), appearance (theme + dark mode, language, region, date format, currency, font size), profile (avatar via image_picker, bio), integrations (Toyota, Anker Solix), Security (biometric toggle), Organization (create your own — which makes you its admin — or rename/delete the one you administer), data export/import, and the account-deletion state machine. Export writes the account JSON into the app's own documents directory and offers to open it; import picks a previously exported file and always creates new records, so it asks first, with the number of cars the file actually holds. Auth relays PocketBase's own stateless tokens, so there is no per-device session list to show or revoke.

  • Users (admin) — user management tab (list / create / role / reset password / delete), shown only for the admin role. A blocked control says why rather than only greying out: long-press a locked role picker, and the overflow menu carries the reason under the action. Superadmins also choose which organization a new account lands in (or none at all); an admin gets no picker, because the server puts their members in their own organization regardless.

Sharing/ownership: Car.access drives isOwner / canWrite / isReadOnly getters that gate the UI, mirroring the server's access checks.

Language, region & currency

Language and region are two pickers over the one stored BCP-47 tag (en-US), so the pair can be mixed — English in Poland, say. Currency is display-only: nothing is converted, so changing it reinterprets existing amounts rather than recalculating them. All three lists mirror the API's (validCurrencies and the locale pattern in internal/api/me.go), with two deliberate differences from the web app:

  • Luxembourgish (lb) and Romansh (rm) are not offered. intl ships no date/number symbols for them and throws rather than falling back, which would take out every date on screen. The browser has full ICU data behind it and has no such limit, so the web app can list them.
  • Labels are hand-kept (endonyms for languages, English for regions and currencies) because Dart has no Intl.DisplayNames.

Because the server only validates a locale's shape (^[a-z]{2}-[A-Z]{2}$), a tag the phone cannot render can still arrive from the web. format.dart resolves through a supported-language check and falls back to en-US instead of throwing; test/models_format_test.dart covers it.

Every screen reads its text from the language files, and flutter test fails if a key exists in English but not in Polish or Danish. See TRANSLATIONS.md.

Biometric / face sign-in & app lock

Fingerprint and face-recognition sign-in via local_auth, with credentials kept in Android Keystorebacked secure storage (flutter_secure_storage).

  • After a successful password login the app offers to enable biometric login; the entered (known-good) credentials are stored securely.
  • The login screen then shows "Sign in with face recognition / fingerprint" buttons (labels reflect the enrolled biometric kinds) and auto-prompts once. On success the stored credentials are replayed against the normal login API, so each biometric sign-in mints a fresh session. Stale credentials (e.g. after a password change) auto-disable biometric login.
  • App lock — the token persists, so a valid session normally restores silently. When biometric login is enabled the app instead starts locked (and re-locks when backgrounded) and shows a lock screen requiring a biometric unlock. A 30-second grace period means quick app-switches don't re-lock; a full app close (process kill) always locks on next launch. "Use password instead" on the lock screen logs out and returns to the login form.
  • Manage it under Settings → Security (enabling re-confirms the password).

Android host requirements (already configured, don't revert): MainActivity extends FlutterFragmentActivity (required by local_auth), and AndroidManifest.xml declares android.permission.USE_BIOMETRIC.

More than one server

Two sites, two full DriverVault stacks — and one app. The server picker is the first button in the Garage header: it names the server you are reading right now, and switches between them in a tap. With only one server known there is nothing to pick between, so it goes straight to adding the second.

  • The home server is the address this build ships with (kDefaultApiBase, overridable per-device from the login screen's Server settings). It is always in the list and can't be removed.
  • Any other server is added by address — https://garage.example.com; the /api is appended for you if you leave the path off — and has to be reachable from wherever the phone is.
  • A session per server. Each server is its own PocketBase with its own users, so a token can't be carried across: you sign into each one once, and after that switching needs no password. Sessions live in SharedPreferences under cc_session_<id>, the list under cc_servers, the active one under cc_active_server.
  • Switching rebuilds the shell, because record ids belong to the server that issued them — the garage, the charging page and the settings all re-read from the one now active, and its owner's appearance prefs come with it.
  • An expiring remote session doesn't sign you out of the app: that server's token is dropped, the app falls back to the home server, and the entry stays in the list to sign into again. Only Log out clears every server at once.

Upgrading from a single-server build carries what was there onto the home entry — the saved session (cc_token / cc_user) and the address it was pointed at (cc_server_url) — so nobody is signed out by the update.

Configure the API endpoint

The app talks to kDefaultApiBase (see lib/config.dart), default http://localhost:8080/api. Override at build time with --dart-define, or at runtime from the login screen's Server settings, which edits the address of the active server — on a fresh install, the home one (persisted in cc_servers).

Run & build

flutter pub get

# run on a connected device against a LAN server
flutter run -d <device> --dart-define=API_BASE=http://10.2.1.101:8080/api

# build a debug APK for a real phone on the LAN
flutter build apk --debug --dart-define=API_BASE=http://10.2.1.101:8080/api
adb install -r build/app/outputs/flutter-apk/app-debug.apk
adb shell monkey -p com.drivervault.phoneapp -c android.intent.category.LAUNCHER 1

Notes:

  • android/gradle.properties sets kotlin.incremental=false — required because the project lives on drive E: while Gradle/Kotlin caches are on C: (the incremental compiler can't compute cross-root relative paths on Windows).
  • AndroidManifest.xml sets android:usesCleartextTraffic="true" because the API base is a plain-HTTP LAN URL.
  • The API Server must be running and reachable at the configured URL.

Structure

lib/
├── config.dart        # default API base URL (kDefaultApiBase)
├── models.dart        # Car (+ access getters), the record types, integrations, profile
├── api.dart           # ApiClient — the only thing that calls the API Server
├── auth.dart          # AuthService — the active server's session, app-lock flag
├── servers.dart       # ServerRegistry — the servers, their sessions, the active one
├── biometric.dart     # BiometricAuth — local_auth + secure storage; biometricAuth singleton
├── app_settings.dart  # AppSettings (theme/locale/date/font), persisted; drives MaterialApp
├── i18n.dart          # translation lookup — t("key"); en/pl/da with en fallback
├── theme.dart         # shared colours/tones (status badges, charging tiles)
├── format.dart        # date/km formatting + next-service status (worst-of date/km)
├── service_parts.dart # the parts a service can change, in one list
├── main.dart          # app root; routes Login / Lock / RootShell; lifecycle re-lock
├── widgets/
│   └── attachment_field.dart   # pick / view / clear a record's attached file
└── screens/
    ├── root_shell.dart         # bottom-nav shell: Garage, Charging, Settings, Users
    ├── login_screen.dart       lock_screen.dart        dashboard_screen.dart
    ├── car_detail_screen.dart  car_form_sheet.dart     record_form_sheets.dart
    ├── car_view_sheet.dart     # which tabs/rows/columns a car shows + the catalogues
    ├── provider_tab.dart       # the connected-service tab (MyToyota)
    ├── servers_sheet.dart      # the server picker + the add / edit / sign-in sheet
    └── charging_screen.dart    settings_screen.dart    admin_users_screen.dart