get_user_bind_and_not_in_station_evchargers is the only list the connector ever asked for, and its name says exactly what it withholds. A charger that belongs to a system is not in it. Its userBindEvChargersCount, though, counts every charger bound to the account — so an owner with two chargers in a system got "authenticated; 2 EV charger(s) bound to account" from the health probe and an empty list from the capability that is supposed to show them. A working login that finds nothing. So the capability now asks every view the cloud has and merges them by serial. The standalone list still answers for chargers standing on their own; get_site_list walks the systems and reads each one through get_scen_info, falling back to get_system_running_info where that is silent — the power-service / HES split charger-state already knows; and get_relate_and_bind_devices contributes model, firmware and the Wi-Fi flag, and discovers anything in the A519 family that the first two missed. Whichever way a charger was registered, one of the three has it. The merge is first-writer-wins per field rather than last view overwriting: the standalone record knows the name, the site record knows the live state, and neither should blank what the other established. A view that fails is a warning on the document instead of an error on the call, because one dead endpoint should not cost the chargers the other two found. Only losing all three is a failure. When nothing comes back at all the response says so in its own words and names the remaining suspect — country picks the regional server, and the wrong one authenticates happily and shows an empty account. The other half of "not showing any chargers" was that neither client ever showed a list. The serial was a text box, and the number is printed on a charger hanging on a wall. Both apps now list what the account holds — name, serial, model, site, state, an offline badge — and hand the serial to the OCPP control card instead of asking anyone to go and read it. Where control is off the list still stands on its own, as the answer to the first question an owner has after entering credentials. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
691 lines
30 KiB
Dart
691 lines
30 KiB
Dart
import "dart:convert";
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import "package:http/http.dart" as http;
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import "models.dart";
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import "servers.dart";
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/// Thrown when the API Server returns a non-2xx response.
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class ApiException implements Exception {
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final int status;
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final String message;
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ApiException(this.status, this.message);
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@override
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String toString() => message;
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}
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/// One request's destination: the server that was active when it went out, its
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/// base URL and its token. Pinning all three up front is what keeps a rejection
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/// attributable — re-reading the active server on the way back would let one
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/// server's 401 clear a different server's session when a switch lands between
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/// a call going out and its answer arriving.
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class _Target {
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final String id;
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final String base;
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final String? token;
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const _Target(this.id, this.base, this.token);
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Uri uri(String path) => Uri.parse("$base$path");
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Map<String, String> get authHeaders =>
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{if (token != null) "Authorization": "Bearer $token"};
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Map<String, String> get jsonHeaders =>
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{"Content-Type": "application/json", ...authHeaders};
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}
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/// The single client for the Car Control API Server. Which server the calls go
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/// to is [serverRegistry]'s business: the base URL and the bearer token are both
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/// read from whichever server is active, resolved fresh on every request so
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/// switching takes effect without rebuilding the client. On 401 it calls
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/// [onUnauthorized] with the server that rejected the session.
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class ApiClient {
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void Function(String serverId)? onUnauthorized;
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/// The active server's token — read by the multipart and download helpers,
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/// which build their own requests.
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String? get token => serverRegistry.activeToken;
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/// The base URL the next request will go to.
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String get baseUrl => serverRegistry.activeBase;
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_Target _target() => _Target(
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serverRegistry.activeId,
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serverRegistry.activeBase,
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serverRegistry.activeToken,
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);
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Future<dynamic> _send(String method, String path, {Object? body}) async {
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final target = _target();
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final req = http.Request(method, target.uri(path))..headers.addAll(target.jsonHeaders);
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if (body != null) req.body = jsonEncode(body);
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final streamed = await http.Client().send(req);
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final res = await http.Response.fromStream(streamed);
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if (res.statusCode == 401 && path != "/auth/login") {
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onUnauthorized?.call(target.id);
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throw ApiException(401, "Session expired — please log in again.");
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}
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if (res.statusCode == 204 || res.body.isEmpty) return null;
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final data = jsonDecode(res.body);
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if (res.statusCode < 200 || res.statusCode >= 300) {
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throw ApiException(res.statusCode, _errorMessage(data, res.reasonPhrase));
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}
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return data;
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}
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/// Digs a human-readable message out of the error shapes in play: this
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/// server's {error}, and PocketBase's {message, data:{field:{message}}} —
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/// which the user endpoints relay verbatim, so a duplicate email arrives as a
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/// per-field error rather than a flat string.
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String _errorMessage(dynamic data, String? fallback) {
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if (data is! Map) return fallback ?? "Request failed";
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if (data["error"] != null) return data["error"].toString();
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final fields = data["data"];
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if (fields is Map && fields.isNotEmpty) {
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final parts = fields.entries.map((e) {
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final v = e.value;
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final msg = v is Map && v["message"] != null ? v["message"] : v;
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return "${e.key}: $msg";
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});
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return parts.join("; ");
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}
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if (data["message"] != null) return data["message"].toString();
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return fallback ?? "Request failed";
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}
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// --- auth ---
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/// Signs in against a named base rather than the active server: the add-server
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/// sheet checks credentials against the server being added before anything
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/// switches to it, so a wrong password leaves you where you were.
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///
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/// The API Server proxies login to PocketBase and relays its response
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/// verbatim, so the user arrives under `record` (PocketBase's name) and the
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/// token is PocketBase's own — the server no longer mints its own JWT.
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Future<(String, AuthUser)> loginAt(String base, String email, String password) async {
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final res = await http.post(
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Uri.parse("$base/auth/login"),
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headers: const {"Content-Type": "application/json"},
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body: jsonEncode({"email": email, "password": password}),
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);
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final data = res.body.isEmpty ? null : _tryDecode(res.body);
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if (res.statusCode < 200 || res.statusCode >= 300) {
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throw ApiException(res.statusCode, _errorMessage(data, res.reasonPhrase));
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}
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return (data["token"] as String, AuthUser.fromJson(Map<String, dynamic>.from(data["record"])));
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}
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Future<(String, AuthUser)> login(String email, String password) =>
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loginAt(serverRegistry.activeBase, email, password);
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// --- cars ---
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Future<List<Car>> listCars() async {
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final data = await _send("GET", "/cars") as List;
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return data.map((e) => Car.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<Car> getCar(String id) async {
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final data = await _send("GET", "/cars/$id");
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return Car.fromJson(Map<String, dynamic>.from(data));
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}
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Future<Car> createCar(Map<String, dynamic> body) async {
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final data = await _send("POST", "/cars", body: body);
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return Car.fromJson(Map<String, dynamic>.from(data));
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}
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Future<Car> updateCar(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/cars/$id", body: body);
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return Car.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteCar(String id) => _send("DELETE", "/cars/$id");
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/// What this car's page shows and in which order — its own endpoint rather
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/// than part of the car PATCH, so saving the car form can never silently
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/// reveal a hidden tab or undo an arrangement. Every field is optional; only
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/// the ones passed are written.
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Future<Car> updateCarView(
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String id, {
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List<String>? hiddenTabs,
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List<String>? hiddenFields,
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List<String>? tabOrder,
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List<String>? fieldOrder,
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List<String>? metricOrder,
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List<String>? hiddenServiceColumns,
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List<String>? serviceColumnOrder,
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List<String>? hiddenServiceParts,
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}) async {
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final body = <String, dynamic>{
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if (hiddenTabs != null) "hiddenTabs": hiddenTabs,
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if (hiddenFields != null) "hiddenFields": hiddenFields,
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if (tabOrder != null) "tabOrder": tabOrder,
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if (fieldOrder != null) "fieldOrder": fieldOrder,
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if (metricOrder != null) "metricOrder": metricOrder,
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if (hiddenServiceColumns != null) "hiddenServiceColumns": hiddenServiceColumns,
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if (serviceColumnOrder != null) "serviceColumnOrder": serviceColumnOrder,
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if (hiddenServiceParts != null) "hiddenServiceParts": hiddenServiceParts,
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};
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final data = await _send("PUT", "/cars/$id/view", body: body);
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return Car.fromJson(Map<String, dynamic>.from(data));
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}
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// --- sharing (owner-only) ---
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Future<List<CarShare>> listCarShares(String carId) async {
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final data = await _send("GET", "/cars/$carId/shares") as List;
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return data.map((e) => CarShare.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<CarShare> addCarShare(String carId, String email, String permission) async {
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final data = await _send("POST", "/cars/$carId/shares",
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body: {"email": email, "permission": permission});
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return CarShare.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> removeCarShare(String carId, String userId) =>
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_send("DELETE", "/cars/$carId/shares/$userId");
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// --- user management (admin or superadmin) ---
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// Admins are scoped by the server to their own organization; superadmins see
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// everyone. Responses are enveloped ({users}/{user}).
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Future<List<AdminUser>> listUsers() async {
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final data = await _send("GET", "/users");
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final items = (data["users"] ?? []) as List;
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return items.map((e) => AdminUser.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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/// Creates a user. [organization] is the superadmin's choice of tenant — an
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/// empty string deliberately means "no organization". Omit it entirely for an
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/// admin: the server forces its own org on their members, so sending anything
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/// would be noise the server ignores.
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Future<AdminUser> createUser({
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required String email,
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required String password,
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String? name,
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String role = "user",
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String? organization,
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}) async {
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final data = await _send("POST", "/users", body: {
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"email": email,
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"password": password,
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"name": name ?? "",
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"role": role,
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if (organization != null) "organization": organization,
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});
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return AdminUser.fromJson(Map<String, dynamic>.from(data["user"]));
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}
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Future<AdminUser> updateUser(String id, {String? name, String? role}) async {
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final body = <String, dynamic>{};
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if (name != null) body["name"] = name;
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if (role != null) body["role"] = role;
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final data = await _send("PATCH", "/users/$id", body: body);
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return AdminUser.fromJson(Map<String, dynamic>.from(data["user"]));
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}
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/// Password resets are a field on the user PATCH now, not a separate endpoint.
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Future<void> setUserPassword(String id, String newPassword) =>
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_send("PATCH", "/users/$id", body: {"password": newPassword});
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Future<void> deleteUser(String id) => _send("DELETE", "/users/$id");
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// --- organizations ---
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// Listing is manager-only (an admin sees just their own org), but creating is
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// open to any user who has none — the creator becomes that org's admin in the
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// same request. Renames and deletes are scoped to the caller's own org unless
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// they are a superadmin. Responses are enveloped ({organizations}/{organization}).
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Future<List<Organization>> listOrgs() async {
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final data = await _send("GET", "/orgs");
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final items = (data["organizations"] ?? []) as List;
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return items.map((e) => Organization.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<Organization> createOrg(String name) async {
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final data = await _send("POST", "/orgs", body: {"name": name});
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return Organization.fromJson(Map<String, dynamic>.from(data["organization"]));
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}
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Future<Organization> renameOrg(String id, String name) async {
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final data = await _send("PATCH", "/orgs/$id", body: {"name": name});
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return Organization.fromJson(Map<String, dynamic>.from(data["organization"]));
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}
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Future<void> deleteOrg(String id) => _send("DELETE", "/orgs/$id");
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// --- service records ---
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Future<List<ServiceRecord>> listCarServices(String carId) async {
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final data = await _send("GET", "/cars/$carId/service-records") as List;
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return data.map((e) => ServiceRecord.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<ServiceRecord> createService(Map<String, dynamic> body) async {
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final data = await _send("POST", "/service-records", body: body);
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return ServiceRecord.fromJson(Map<String, dynamic>.from(data));
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}
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Future<ServiceRecord> updateService(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/service-records/$id", body: body);
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return ServiceRecord.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteService(String id) => _send("DELETE", "/service-records/$id");
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// --- parts ---
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Future<List<Part>> listCarParts(String carId) async {
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final data = await _send("GET", "/cars/$carId/parts") as List;
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return data.map((e) => Part.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<Part> createPart(Map<String, dynamic> body) async {
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final data = await _send("POST", "/parts", body: body);
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return Part.fromJson(Map<String, dynamic>.from(data));
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}
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Future<Part> updatePart(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/parts/$id", body: body);
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return Part.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deletePart(String id) => _send("DELETE", "/parts/$id");
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// --- technical checks ---
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Future<List<TechnicalCheck>> listCarTechnicalChecks(String carId) async {
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final data = await _send("GET", "/cars/$carId/technical-checks") as List;
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return data.map((e) => TechnicalCheck.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<TechnicalCheck> createTechnicalCheck(Map<String, dynamic> body) async {
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final data = await _send("POST", "/technical-checks", body: body);
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return TechnicalCheck.fromJson(Map<String, dynamic>.from(data));
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}
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Future<TechnicalCheck> updateTechnicalCheck(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/technical-checks/$id", body: body);
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return TechnicalCheck.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteTechnicalCheck(String id) => _send("DELETE", "/technical-checks/$id");
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// --- fuel ---
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Future<List<FuelEntry>> listCarFuelEntries(String carId) async {
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final data = await _send("GET", "/cars/$carId/fuel-entries") as List;
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return data.map((e) => FuelEntry.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<FuelStats> getCarFuelStats(String carId) async {
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final data = await _send("GET", "/cars/$carId/fuel-stats");
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return FuelStats.fromJson(Map<String, dynamic>.from(data));
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}
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Future<FuelEntry> createFuelEntry(Map<String, dynamic> body) async {
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final data = await _send("POST", "/fuel-entries", body: body);
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return FuelEntry.fromJson(Map<String, dynamic>.from(data));
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}
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Future<FuelEntry> updateFuelEntry(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/fuel-entries/$id", body: body);
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return FuelEntry.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteFuelEntry(String id) => _send("DELETE", "/fuel-entries/$id");
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// --- charging sessions ---
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// The electric counterpart of the fuel entries, on identical terms: the
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// per-car list plus the derived summary, and CRUD on the flat collection.
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Future<List<ChargingSession>> listCarChargingSessions(String carId) async {
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final data = await _send("GET", "/cars/$carId/charging-sessions") as List;
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return data.map((e) => ChargingSession.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<ChargingStats> getCarChargingStats(String carId) async {
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final data = await _send("GET", "/cars/$carId/charging-stats");
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return ChargingStats.fromJson(Map<String, dynamic>.from(data));
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}
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Future<ChargingSession> createChargingSession(Map<String, dynamic> body) async {
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final data = await _send("POST", "/charging-sessions", body: body);
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return ChargingSession.fromJson(Map<String, dynamic>.from(data));
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}
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Future<ChargingSession> updateChargingSession(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/charging-sessions/$id", body: body);
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return ChargingSession.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteChargingSession(String id) => _send("DELETE", "/charging-sessions/$id");
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// --- maintenance ---
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Future<List<MaintenanceEntry>> listCarMaintenance(String carId) async {
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final data = await _send("GET", "/cars/$carId/maintenance") as List;
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return data.map((e) => MaintenanceEntry.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<MaintenanceEntry> createMaintenance(Map<String, dynamic> body) async {
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final data = await _send("POST", "/maintenance", body: body);
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return MaintenanceEntry.fromJson(Map<String, dynamic>.from(data));
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}
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Future<MaintenanceEntry> updateMaintenance(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/maintenance/$id", body: body);
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return MaintenanceEntry.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteMaintenance(String id) => _send("DELETE", "/maintenance/$id");
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// --- documents ---
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// The path is /car-documents so it can't be mistaken for the user-facing
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// account documents other Vault services expose.
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Future<List<CarDocument>> listCarDocuments(String carId) async {
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final data = await _send("GET", "/cars/$carId/documents") as List;
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return data.map((e) => CarDocument.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<CarDocument> createDocument(Map<String, dynamic> body) async {
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final data = await _send("POST", "/car-documents", body: body);
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return CarDocument.fromJson(Map<String, dynamic>.from(data));
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}
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Future<CarDocument> updateDocument(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/car-documents/$id", body: body);
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return CarDocument.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteDocument(String id) => _send("DELETE", "/car-documents/$id");
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// --- reminders ---
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Future<List<Reminder>> listCarReminders(String carId) async {
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final data = await _send("GET", "/cars/$carId/reminders") as List;
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return data.map((e) => Reminder.fromJson(Map<String, dynamic>.from(e))).toList();
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}
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Future<Reminder> createReminder(Map<String, dynamic> body) async {
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final data = await _send("POST", "/reminders", body: body);
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return Reminder.fromJson(Map<String, dynamic>.from(data));
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}
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Future<Reminder> updateReminder(String id, Map<String, dynamic> body) async {
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final data = await _send("PATCH", "/reminders/$id", body: body);
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return Reminder.fromJson(Map<String, dynamic>.from(data));
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}
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Future<void> deleteReminder(String id) => _send("DELETE", "/reminders/$id");
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/// Completing a recurring reminder rolls its trigger forward instead of
|
|
/// closing it out; the server decides which, so the caller just re-reads.
|
|
Future<Reminder> completeReminder(String id) async {
|
|
final data = await _send("POST", "/reminders/$id/complete");
|
|
return Reminder.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
// --- attachments ---
|
|
// Every attachable collection takes a file on identical terms, so one set of
|
|
// helpers is parameterized by the collection's path rather than repeated six
|
|
// times. See the API's attachments.go.
|
|
|
|
/// Uploads (or replaces) a record's file. Returns the re-read record JSON, so
|
|
/// the caller decodes it into whichever model it owns.
|
|
Future<Map<String, dynamic>> uploadAttachment(
|
|
String path, String id, List<int> bytes, String filename) async {
|
|
final target = _target();
|
|
final req = http.MultipartRequest("POST", target.uri("$path/$id/file"))
|
|
..headers.addAll(target.authHeaders);
|
|
req.files.add(http.MultipartFile.fromBytes("file", bytes, filename: filename));
|
|
final res = await http.Response.fromStream(await req.send());
|
|
if (res.statusCode == 401) {
|
|
onUnauthorized?.call(target.id);
|
|
throw ApiException(401, "Session expired — please log in again.");
|
|
}
|
|
final data = jsonDecode(res.body);
|
|
if (res.statusCode < 200 || res.statusCode >= 300) {
|
|
throw ApiException(res.statusCode, _errorMessage(data, res.reasonPhrase));
|
|
}
|
|
return Map<String, dynamic>.from(data);
|
|
}
|
|
|
|
/// The attachment's bytes, or null when there is no file. Never a public URL —
|
|
/// the server re-checks car access on every fetch.
|
|
Future<List<int>?> getAttachmentBytes(String path, String id) async {
|
|
final target = _target();
|
|
final res = await http.get(target.uri("$path/$id/file"), headers: target.authHeaders);
|
|
if (res.statusCode == 200) return res.bodyBytes;
|
|
return null;
|
|
}
|
|
|
|
Future<void> deleteAttachment(String path, String id) => _send("DELETE", "$path/$id/file");
|
|
|
|
// --- settings: profile / account ---
|
|
Future<UserProfile> getMe() async {
|
|
final data = await _send("GET", "/me");
|
|
return UserProfile.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<UserProfile> updateMe(Map<String, dynamic> patch) async {
|
|
final data = await _send("PATCH", "/me", body: patch);
|
|
return UserProfile.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<void> changePassword(String oldPassword, String newPassword) => _send(
|
|
"POST",
|
|
"/me/password",
|
|
body: {"oldPassword": oldPassword, "newPassword": newPassword},
|
|
);
|
|
|
|
Future<void> requestVerification() => _send("POST", "/me/verify/request");
|
|
|
|
// --- settings: avatar ---
|
|
Future<UserProfile> uploadAvatar(List<int> bytes, String filename) async {
|
|
final target = _target();
|
|
final req = http.MultipartRequest("POST", target.uri("/me/avatar"))
|
|
..headers.addAll(target.authHeaders);
|
|
req.files.add(http.MultipartFile.fromBytes("avatar", bytes, filename: filename));
|
|
final res = await http.Response.fromStream(await req.send());
|
|
if (res.statusCode == 401) {
|
|
onUnauthorized?.call(target.id);
|
|
throw ApiException(401, "Session expired — please log in again.");
|
|
}
|
|
final data = jsonDecode(res.body);
|
|
if (res.statusCode < 200 || res.statusCode >= 300) {
|
|
final msg = data is Map && data["error"] != null ? data["error"].toString() : res.reasonPhrase;
|
|
throw ApiException(res.statusCode, msg ?? "Upload failed");
|
|
}
|
|
return UserProfile.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<List<int>?> getAvatarBytes() async {
|
|
final target = _target();
|
|
final res = await http.get(target.uri("/me/avatar"), headers: target.authHeaders);
|
|
if (res.statusCode == 200) return res.bodyBytes;
|
|
return null;
|
|
}
|
|
|
|
Future<void> deleteAvatar() => _send("DELETE", "/me/avatar");
|
|
|
|
// --- settings: account deletion ---
|
|
Future<DateTime?> requestAccountDeletion(String confirmEmail) async {
|
|
final data = await _send("POST", "/me/delete", body: {"confirmEmail": confirmEmail});
|
|
final at = (data is Map) ? data["eligibleAt"] : null;
|
|
return at == null ? null : DateTime.tryParse(at.toString());
|
|
}
|
|
|
|
Future<void> cancelAccountDeletion() => _send("POST", "/me/delete/cancel");
|
|
Future<void> finalizeAccountDeletion() => _send("DELETE", "/me");
|
|
|
|
// --- data export / import ---
|
|
|
|
/// The whole account as a JSON file: the profile plus every car the user owns
|
|
/// with its service records and parts. Cars merely shared with them are not
|
|
/// included. Returns the bytes and the filename the server named it, which is
|
|
/// dated — the phone has to write the file itself, so it needs both.
|
|
Future<(List<int>, String)> exportData() async {
|
|
final target = _target();
|
|
final res = await http.get(target.uri("/me/export"), headers: target.authHeaders);
|
|
if (res.statusCode == 401) {
|
|
onUnauthorized?.call(target.id);
|
|
throw ApiException(401, "Session expired — please log in again.");
|
|
}
|
|
if (res.statusCode < 200 || res.statusCode >= 300) {
|
|
throw ApiException(res.statusCode, _errorMessage(_tryDecode(res.body), res.reasonPhrase));
|
|
}
|
|
return (res.bodyBytes, _filenameFrom(res.headers["content-disposition"]));
|
|
}
|
|
|
|
/// Adds the cars in a previously exported file. Always creates new records —
|
|
/// nothing is merged with or overwritten, so importing the same file twice
|
|
/// leaves two copies rather than one updated one.
|
|
Future<ImportResult> importData(Map<String, dynamic> payload) async {
|
|
final data = await _send("POST", "/me/import", body: payload);
|
|
return ImportResult.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
static dynamic _tryDecode(String body) {
|
|
try {
|
|
return jsonDecode(body);
|
|
} catch (_) {
|
|
return null;
|
|
}
|
|
}
|
|
|
|
/// The filename out of `attachment; filename="…"`, falling back to a plain
|
|
/// name so the export is still saveable if the header is missing or unquoted.
|
|
static String _filenameFrom(String? disposition) {
|
|
if (disposition == null) return "drivervault-export.json";
|
|
final m = RegExp(r'filename="?([^";]+)"?').firstMatch(disposition);
|
|
final name = m?.group(1)?.trim() ?? "";
|
|
return name.isEmpty ? "drivervault-export.json" : name;
|
|
}
|
|
|
|
// --- vehicle providers (the connected-service tab) ---
|
|
// Every call runs server-side under *this* user's manufacturer account, so a
|
|
// car shared from someone else only shows provider data when that vehicle is
|
|
// on this user's account too. A closed gate is a 200 with `unavailable` set
|
|
// rather than an error: "we asked, and here is why there is nothing".
|
|
|
|
Future<List<VehicleProvider>> listVehicleProviders() async {
|
|
final data = await _send("GET", "/vehicle-providers");
|
|
final items = (data["providers"] ?? []) as List;
|
|
return items.map((e) => VehicleProvider.fromJson(Map<String, dynamic>.from(e))).toList();
|
|
}
|
|
|
|
Future<List<ProviderVehicle>> listProviderVehicles(String provider) async {
|
|
final data = await _send("GET", "/vehicle-providers/${Uri.encodeComponent(provider)}/vehicles");
|
|
final items = (data["vehicles"] ?? []) as List;
|
|
return items.map((e) => ProviderVehicle.fromJson(Map<String, dynamic>.from(e))).toList();
|
|
}
|
|
|
|
Future<ProviderSnapshot> getCarProvider(String carId) async {
|
|
final data = await _send("GET", "/cars/$carId/provider");
|
|
return ProviderSnapshot.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
/// Links this car to a vehicle on the caller's provider account; an empty
|
|
/// [provider] unlinks it. Returns the updated car.
|
|
Future<Car> linkCarProvider(String carId, {String provider = "", String vehicleId = ""}) async {
|
|
final data = await _send("POST", "/cars/$carId/provider",
|
|
body: {"provider": provider, "vehicleId": vehicleId});
|
|
return Car.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
/// Re-applies the provider's data to the car. [include] selects what to take
|
|
/// (identity, fuelType, dates, odometer); omitted means everything.
|
|
Future<Car> syncCarProvider(String carId, {Map<String, bool>? include}) async {
|
|
final data = await _send("POST", "/cars/$carId/provider/sync",
|
|
body: {if (include != null) "include": include});
|
|
final car = (data is Map && data["car"] != null) ? data["car"] : data;
|
|
return Car.fromJson(Map<String, dynamic>.from(car));
|
|
}
|
|
|
|
// --- integrations (per-user plugin settings, superadmin → org → user cascade) ---
|
|
// Each connector has the same trio: get… returns the resolved view
|
|
// (effective/own/locked per field, secrets and inherited values masked); save…
|
|
// writes the caller's editable layer (scope "user" by default, "org" for org
|
|
// admins); test… runs a live probe under the resolved config.
|
|
Future<IntegrationView> getToyota() async {
|
|
final data = await _send("GET", "/integrations/toyota");
|
|
return IntegrationView.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<IntegrationView> saveToyota(Map<String, dynamic> body) async {
|
|
final data = await _send("PUT", "/integrations/toyota", body: body);
|
|
return IntegrationView.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<IntegrationHealth> testToyota() async {
|
|
final data = await _send("POST", "/integrations/toyota/health");
|
|
final h = (data is Map ? data["health"] : null) ?? {};
|
|
return IntegrationHealth.fromJson(Map<String, dynamic>.from(h));
|
|
}
|
|
|
|
Future<IntegrationView> getAnkerSolix() async {
|
|
final data = await _send("GET", "/integrations/anker-solix");
|
|
return IntegrationView.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<IntegrationView> saveAnkerSolix(Map<String, dynamic> body) async {
|
|
final data = await _send("PUT", "/integrations/anker-solix", body: body);
|
|
return IntegrationView.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<IntegrationHealth> testAnkerSolix() async {
|
|
final data = await _send("POST", "/integrations/anker-solix/health");
|
|
final h = (data is Map ? data["health"] : null) ?? {};
|
|
return IntegrationHealth.fromJson(Map<String, dynamic>.from(h));
|
|
}
|
|
|
|
/// The chargers on the linked Anker account, fetched server-side under the
|
|
/// resolved credentials. A closed gate answers 200 with an empty list and the
|
|
/// reason in `detail`, so this is not an error path.
|
|
Future<AnkerChargerList> listAnkerChargers() async {
|
|
final data = await _send("GET", "/integrations/anker-solix/chargers");
|
|
if (data is! Map) return const AnkerChargerList();
|
|
return AnkerChargerList.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
// Greencell (HabuDen EV charger). Same cascade, but what resolves is an MQTT
|
|
// broker rather than a cloud account — the charger publishes to a broker the
|
|
// owner runs and the server joins it. testGreencell connects to that broker and
|
|
// broadcasts for devices, so "degraded" means reachable-but-no-charger.
|
|
Future<IntegrationView> getGreencell() async {
|
|
final data = await _send("GET", "/integrations/greencell");
|
|
return IntegrationView.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<IntegrationView> saveGreencell(Map<String, dynamic> body) async {
|
|
final data = await _send("PUT", "/integrations/greencell", body: body);
|
|
return IntegrationView.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
Future<IntegrationHealth> testGreencell() async {
|
|
final data = await _send("POST", "/integrations/greencell/health");
|
|
final h = (data is Map ? data["health"] : null) ?? {};
|
|
return IntegrationHealth.fromJson(Map<String, dynamic>.from(h));
|
|
}
|
|
|
|
// --- Anker Solix OCPP control (per charger) ---
|
|
// getAnkerControl returns the control mode, connection status, provisioning
|
|
// endpoint + token, and a live status snapshot; ankerControlToken (re)generates
|
|
// the per-charger token (returned exactly once); ankerControlRevoke deletes it;
|
|
// ankerControlAction issues one OCPP command (start/stop/limit/clear-limit/reset/…).
|
|
String _sn(String sn) => Uri.encodeComponent(sn);
|
|
|
|
Future<AnkerControl> getAnkerControl(String sn) async {
|
|
final data = await _send("GET", "/integrations/anker-solix/chargers/${_sn(sn)}/control");
|
|
return AnkerControl.fromJson(Map<String, dynamic>.from(data));
|
|
}
|
|
|
|
/// (Re)generates the per-charger control token; the plaintext token is returned
|
|
/// exactly once, so the caller must show it immediately.
|
|
Future<String> ankerControlToken(String sn) async {
|
|
final data = await _send("POST", "/integrations/anker-solix/chargers/${_sn(sn)}/control/token");
|
|
return (data is Map ? _asString(data["token"]) : "");
|
|
}
|
|
|
|
Future<void> ankerControlRevoke(String sn) =>
|
|
_send("DELETE", "/integrations/anker-solix/chargers/${_sn(sn)}/control/token");
|
|
|
|
Future<void> ankerControlAction(String sn, String action, [Map<String, dynamic> body = const {}]) =>
|
|
_send("POST", "/integrations/anker-solix/chargers/${_sn(sn)}/$action", body: body);
|
|
|
|
static String _asString(dynamic v) => v == null ? "" : v.toString();
|
|
}
|