Files
DriverVault/API Server/scripts/setup-pocketbase.mjs
T
tajniak81andClaude Opus 5 5a4515978f One schedule for every charger, and a clock on the server to keep it
The charger's own cloud schedule is one window inside one box: charge
between these hours, every day, and that is the whole vocabulary. A third
tab on Charging holds a list instead — each line an action, a time, the
days it repeats on and the chargers it acts on — and one list covers the
whole account rather than each charger hiding its own.

The clock is the server's. A schedule that only fires while a tab is open
is a reminder, so a ticker sweeps every enabled task and fires whichever
minute has come. It sends by handing a synthesised request to the same
control endpoint the page's buttons use, so a scheduled command goes
through the same cascade, ownership gate, rate limit and audit trail —
what the owner cannot press by hand, the scheduler cannot send for them.

A task names its chargers, or names none, which means all of them and
keeps meaning that for a charger imported next year. Times are stored as
a wall clock plus the zone they were written in, so 23:00 stays 23:00
wherever the server sits. One action per task: a charging window is the
two tasks that open and close it, which is how it is read back, edited
and switched off.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-03 22:47:30 +02:00

669 lines
27 KiB
JavaScript

// Idempotent PocketBase schema setup for the Car Control project.
//
// Creates the collections behind the app: cars, service_records and parts (which
// match the original "Car Service.xlsx"), the sharing/tenancy tables, and the
// fuel, maintenance, document and reminder logs layered on top. Access rules are
// left admin-only (null) on purpose: every client goes through the API Server,
// which authenticates as a superuser, so the database is never exposed directly
// — including document attachments, which are proxied by the API rather than
// served as public file URLs.
//
// Usage (PowerShell):
// $env:PB_URL="http://10.2.1.10:8027"
// $env:PB_ADMIN_EMAIL="you@example.com"
// $env:PB_ADMIN_PASSWORD="secret"
// node scripts/setup-pocketbase.mjs
//
// Re-running is safe: existing collections are skipped.
const PB_URL = (process.env.PB_URL || "http://10.2.1.10:8027").replace(/\/+$/, "");
const EMAIL = process.env.PB_ADMIN_EMAIL;
const PASSWORD = process.env.PB_ADMIN_PASSWORD;
if (!EMAIL || !PASSWORD) {
console.error("Set PB_ADMIN_EMAIL and PB_ADMIN_PASSWORD environment variables.");
process.exit(1);
}
async function authenticate() {
const endpoints = [
"/api/collections/_superusers/auth-with-password",
"/api/admins/auth-with-password",
];
for (const ep of endpoints) {
const res = await fetch(PB_URL + ep, {
method: "POST",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({ identity: EMAIL, password: PASSWORD }),
});
if (res.ok) {
const data = await res.json();
return data.token;
}
}
throw new Error("Authentication failed. Check PB_ADMIN_EMAIL / PB_ADMIN_PASSWORD.");
}
async function listCollections(token) {
const res = await fetch(PB_URL + "/api/collections?perPage=200", {
headers: { Authorization: token },
});
if (!res.ok) throw new Error(`list collections failed: ${res.status} ${await res.text()}`);
const data = await res.json();
return Array.isArray(data) ? data : data.items || [];
}
// Detects whether this PocketBase version serializes fields under "fields"
// (v0.23+) or the legacy "schema" key.
function detectFormat(collections) {
for (const c of collections) {
if (Array.isArray(c.fields)) return "fields";
if (Array.isArray(c.schema)) return "schema";
}
return "fields"; // default to modern format
}
// Field builders normalized to {name,type,required,relTo}. They are rendered
// into the right wire shape per detected format.
const F = {
text: (name, required = false) => ({ name, type: "text", required }),
number: (name) => ({ name, type: "number", required: false }),
bool: (name) => ({ name, type: "bool", required: false }),
date: (name, required = false) => ({ name, type: "date", required }),
relation: (name, relTo, required = false, cascadeDelete = true) => ({ name, type: "relation", required, relTo, cascadeDelete }),
select: (name, values, required = false) => ({ name, type: "select", required, values }),
autodate: (name, onCreate = false, onUpdate = false) => ({ name, type: "autodate", required: false, onCreate, onUpdate }),
// Single-file attachment. maxSize is in bytes; mimeTypes [] means "any".
file: (name, maxSize, mimeTypes = []) => ({ name, type: "file", required: false, maxSize, mimeTypes }),
// Free-form JSON blob. maxSize is in bytes.
json: (name, maxSize = 100000) => ({ name, type: "json", required: false, maxSize }),
};
function renderField(def, format, idByName) {
if (format === "schema") {
// Legacy: options nested under "options".
const options = {};
if (def.type === "relation") {
options.collectionId = idByName[def.relTo];
options.cascadeDelete = def.cascadeDelete !== false;
options.maxSelect = 1;
options.minSelect = 0;
}
if (def.type === "select") {
options.values = def.values;
options.maxSelect = 1;
}
if (def.type === "file") {
options.maxSelect = 1;
options.maxSize = def.maxSize;
options.mimeTypes = def.mimeTypes || [];
}
if (def.type === "json") {
options.maxSize = def.maxSize;
}
return { name: def.name, type: def.type, required: def.required, options };
}
// Modern: options flattened onto the field.
const field = { name: def.name, type: def.type, required: def.required };
if (def.type === "relation") {
field.collectionId = idByName[def.relTo];
field.cascadeDelete = def.cascadeDelete !== false;
field.maxSelect = 1;
field.minSelect = 0;
}
if (def.type === "select") {
field.values = def.values;
field.maxSelect = 1;
}
if (def.type === "autodate") {
field.onCreate = def.onCreate;
field.onUpdate = def.onUpdate;
}
if (def.type === "file") {
field.maxSelect = 1;
field.maxSize = def.maxSize;
field.mimeTypes = def.mimeTypes || [];
}
if (def.type === "json") {
field.maxSize = def.maxSize;
}
return field;
}
async function createCollection(token, name, defs, format, idByName) {
const rendered = defs.map((d) => renderField(d, format, idByName));
const body = {
name,
type: "base",
[format]: rendered, // "fields" or "schema"
// Rules left null => superuser-only access (API Server is the only client).
listRule: null,
viewRule: null,
createRule: null,
updateRule: null,
deleteRule: null,
};
if (INDEXES[name]) body.indexes = INDEXES[name];
const res = await fetch(PB_URL + "/api/collections", {
method: "POST",
headers: { "Content-Type": "application/json", Authorization: token },
body: JSON.stringify(body),
});
if (!res.ok) throw new Error(`create ${name} failed: ${res.status} ${await res.text()}`);
const created = await res.json();
idByName[name] = created.id;
return created;
}
async function getCollection(token, idOrName) {
const res = await fetch(PB_URL + "/api/collections/" + idOrName, {
headers: { Authorization: token },
});
if (!res.ok) throw new Error(`get ${idOrName} failed: ${res.status} ${await res.text()}`);
return res.json();
}
// reconcileFields brings an existing collection's schema in line with the desired
// definition: it appends any missing fields AND updates relation options
// (currently cascadeDelete) and select options (the "values" list) on existing
// fields. Existing field ids/data are kept. Safe to re-run as the schema
// evolves (e.g. adding cars.current_km, enabling cascade delete, or adding a
// new select choice like a date-format option).
async function reconcileFields(token, name, defs, format, idByName) {
const col = await getCollection(token, name);
const current = col[format] || [];
const byName = new Map(current.map((f) => [f.name, f]));
const changes = [];
// Update relation cascadeDelete and select values on existing fields to match desired.
const merged = current.map((f) => {
const def = defs.find((d) => d.name === f.name);
if (def && def.type === "relation") {
const wantCascade = def.cascadeDelete !== false;
if (f.cascadeDelete !== wantCascade) {
changes.push(`${f.name}.cascadeDelete=${wantCascade}`);
return { ...f, cascadeDelete: wantCascade };
}
}
if (def && def.type === "select") {
const same =
Array.isArray(f.values) &&
f.values.length === def.values.length &&
def.values.every((v) => f.values.includes(v));
if (!same) {
changes.push(`${f.name}.values=[${def.values.join(",")}]`);
return { ...f, values: def.values };
}
}
return f;
});
// Append missing fields.
const missing = defs.filter((d) => !byName.has(d.name));
for (const d of missing) {
merged.push(renderField(d, format, idByName));
changes.push(`+${d.name}`);
}
if (changes.length === 0) {
console.log(`• ${name} — up to date`);
return;
}
const res = await fetch(PB_URL + "/api/collections/" + col.id, {
method: "PATCH",
headers: { "Content-Type": "application/json", Authorization: token },
body: JSON.stringify({ [format]: merged }),
});
if (!res.ok) throw new Error(`update ${name} failed: ${res.status} ${await res.text()}`);
console.log(`✓ ${name}${changes.join(", ")}`);
}
// The single optional attachment a record can carry — a scan, a receipt, a
// workshop invoice, a photo of a part. The 10MB cap matches maxAttachmentUpload
// in the API server, and the file is reached only via the API's own file
// endpoint, never as a public URL.
const attachment = () =>
F.file("file", 10485760, [
"application/pdf",
"image/jpeg",
"image/png",
"image/webp",
"image/heic",
]);
// Desired schema. Edit here to evolve collections; re-run the script to apply.
const DESIRED = {
cars: [
F.text("name", true),
F.text("make"),
F.text("model"),
F.number("year"),
F.text("registration"),
F.text("registration_country"),
F.text("vin"),
F.number("service_interval_days"),
F.number("service_interval_km"),
// Roadworthiness inspection cycle. Only prefills a check's next-due date —
// the legal interval changes as the car ages, so each check can override it.
F.number("technical_check_interval_days"),
F.text("oil_spec"),
F.text("transmission_oil_spec"),
F.text("differential_oil_spec"),
F.text("brake_fluid_spec"),
F.text("coolant_spec"),
F.number("current_km"),
// Bi-fuel LPG conversions are their own choice rather than a flag: the car
// runs on either tank, so "petrol + LPG" is what an owner picks it out as.
F.select("fuel_type", [
"petrol",
"petrol_lpg",
"diesel",
"diesel_lpg",
"hybrid",
"electric",
"hydrogen",
]),
F.text("build_date"), // ISO YYYY-MM-DD (date-only; VIN 10th digit ≈ model year)
F.text("first_registration_date"), // ISO YYYY-MM-DD
// Link to the manufacturer service this car came from (see
// internal/api/vehicleproviders.go): the plugin name, plus that plugin's own
// id for the vehicle (the VIN, for Toyota). Set when a car is imported from
// or linked to a connected account; blank for a hand-entered car.
F.text("provider"),
F.text("provider_vehicle_id"),
// What this car's page shows: the tabs switched off (["fuel"] on an EV) and
// the Information rows switched off (["differentialOil"]). Properties of the
// car, so everyone it is shared with sees the same page. The hidden sets,
// not the visible ones, so anything added in a later release is on by
// default. Keys are validated in internal/api/cars.go.
F.json("hidden_tabs", 2000),
F.json("hidden_fields", 2000),
// The order the tabs are laid out in, as tab keys, and the order the
// Information rows are laid out in, as field keys — the hidden ones
// included in both, so one switched back on returns to where it was. Empty
// means the page's own default order. metric_order is the same for the
// headline readings on the connected service's tab.
F.json("tab_order", 2000),
F.json("field_order", 2000),
F.json("metric_order", 2000),
// Owner of this car. Non-cascading on purpose: deleting a user must not
// wipe their cars (account deletion in me.go intentionally leaves cars).
// required:false at the DB level — the API always sets owner on create and
// existing rows are backfilled (scripts/backfill-car-owners.mjs).
F.relation("owner", "users", false, false),
],
service_records: [
F.relation("car", "cars", true),
F.date("date", true),
F.number("km"),
F.bool("changed_oil"),
F.bool("changed_engine_air_filter"),
F.bool("changed_cabin_air_filter"),
F.text("notes"),
attachment(), // the workshop receipt / stamped service-book page
],
// Mandatory roadworthiness inspections (przegląd techniczny / MOT / TÜV).
// Like service_records but time-only: a check falls due on a date whatever the
// odometer reads. valid_until is the expiry printed on the certificate; when
// blank the API derives it from the car's interval.
technical_checks: [
F.relation("car", "cars", true),
F.date("date", true),
F.select("result", ["passed", "failed"]),
F.number("cost"),
F.text("station"),
F.date("valid_until"),
F.text("notes"),
attachment(), // the certificate
],
parts: [
F.relation("car", "cars", true),
F.text("name", true),
F.text("part_number"),
F.text("category"),
F.text("notes"),
attachment(), // a photo of the box, or the part's spec sheet
],
// Fuel refills. Consumption is NOT stored — the API derives it from the whole
// history on read (models.ComputeFuelDerived), so correcting an old fill fixes
// every figure it affects with no rows to migrate.
fuel_entries: [
F.relation("car", "cars", true),
F.date("date", true),
F.number("km"), // odometer at the pump
F.number("liters"),
F.number("cost"),
// Filled to the brim — the reference point efficiency is measured between.
F.bool("full_tank"),
// A refill happened before this one without being logged, so any window
// containing it is left uncomputed rather than reported as implausibly good.
F.bool("missed_fill"),
F.text("station"),
F.text("notes"),
attachment(), // the pump receipt
],
// Charging sessions for an electric car. The EV counterpart of fuel_entries
// and deliberately the same shape: kWh where litres would be, a charge to the
// usual full point as the reference the windows are measured between, and
// consumption derived on read (models.ComputeChargingDerived).
charging_sessions: [
F.relation("car", "cars", true),
F.date("date", true),
F.number("km"), // odometer when plugging in
F.number("kwh"),
F.number("cost"),
// Charged to the car's usual full point — the reference point.
F.bool("full_charge"),
// The car was charged before this without being logged, so any window
// containing it is left uncomputed rather than reported as implausible.
F.bool("missed_session"),
F.text("location"), // "Home", "Ionity Koge"
F.text("notes"),
attachment(), // the charge point's receipt
],
// Workshop visits and repairs. Deliberately separate from service_records:
// that collection is the routine interval schedule (and drives next-service
// due), this one is unplanned/one-off garage work with a labour bill.
maintenance_entries: [
F.relation("car", "cars", true),
F.date("date", true),
F.number("km"),
F.select("type", ["repair", "inspection", "bodywork", "tyres", "diagnostics", "recall", "warranty", "other"]),
F.select("status", ["scheduled", "in_progress", "completed"]),
F.text("workshop"),
F.text("location"),
F.text("description"),
F.text("parts_used"),
F.number("labor_cost"),
F.number("parts_cost"),
F.text("invoice_number"),
F.date("warranty_until"),
F.text("notes"),
attachment(), // the workshop's invoice
],
// Insurance, pollution certificates, registration papers … The expiry date is
// the point of the record: it drives the renewal status badges and the
// auto-derived reminders. Blank expiry = never expires.
car_documents: [
F.relation("car", "cars", true),
F.select("type", ["insurance", "pollution", "registration", "inspection", "roadTax", "warranty", "other"]),
F.text("title", true),
F.text("provider"),
F.text("reference"),
F.date("issue_date"),
F.date("expiry_date"),
F.number("cost"),
F.text("notes"),
attachment(), // the scan/PDF of the paperwork itself
],
// User-set reminders. The API additionally synthesises read-only ones from
// document expiry dates and the next service due — those are derived on read
// and have no rows here.
reminders: [
F.relation("car", "cars", true),
F.text("title", true),
F.select("type", ["maintenance", "document", "service", "inspection", "other"]),
F.date("due_date"),
F.number("due_km"),
// Non-zero => recurring: completing rolls the trigger forward by this much.
F.number("repeat_days"),
F.number("repeat_km"),
F.bool("done"),
F.date("done_at"),
F.text("notes"),
],
// Per-car sharing grants. One row = "this user may access this car" at the
// given permission. Cascades on both relations so grants disappear when
// either the car or the user is deleted. (Owner access is NOT stored here —
// it's implied by cars.owner.)
car_shares: [
F.relation("car", "cars", true),
F.relation("user", "users", true),
F.select("permission", ["read", "write"], true),
F.autodate("created", true, false),
],
// Append-only audit trail for OCPP charger control (start/stop/limit/reset/
// unlock/…, token generate/revoke, and charger connects). Actor/org are stored
// as plain text ids (not relations) so the trail survives user or org deletion.
// Written best-effort by the API Server (internal/api/integrations_ankersolix_control.go);
// if this collection is absent, control still works and only the structured log
// line remains.
control_audit: [
F.text("user_id"),
F.text("org_id"),
F.text("serial"),
F.text("action", true),
F.text("result"),
F.json("params", 10000),
F.autodate("created", true, false),
],
// The chargers a user owns — their own wallbox, not the public network. A
// charger belongs to a person rather than to a car: it charges whichever car
// is plugged into it, and it outlives any of them. Created by importing from a
// connected charger service (Anker Solix, Greencell); see
// internal/api/chargerproviders.go.
home_chargers: [
F.text("name", true),
F.text("serial"),
F.text("vendor"), // "Anker Solix", "Greencell" — who makes it
F.text("model"), // "A5191"
F.text("site_name"),
F.number("power_kw"),
F.text("connector"),
// Where this charger came from: the provider id plus that provider's own id
// for it (the serial, for both providers we speak to). Blank when added by hand.
F.text("provider"),
F.text("provider_charger_id"),
// Owner. Non-cascading, like a car's: deleting a user must not wipe their records.
F.relation("owner", "users", false, false),
// A charger carries no date of its own, so the import order is the only order
// there is to list them in. PocketBase adds no created field to a collection
// defined through the API, so it is declared here like the audit trail's.
F.autodate("created", true, false),
],
// The home-charger scheduler: a user's own list of charging tasks, one list
// covering every charger they own. The charger's own cloud schedule holds one
// window per box; this holds as many tasks as they like, each naming its own
// chargers, days and action. Run by the ticker in the API Server
// (internal/api/chargingtasks_run.go).
charging_tasks: [
F.text("name", true),
// The home_chargers rows this task acts on. A list of ids rather than a
// relation because empty has to mean "every charger I own" — a standing wish
// that keeps covering chargers imported later.
F.json("chargers", 2000),
F.select("action", ["start", "stop", "limit", "boost"], true),
F.number("amps"), // the ceiling, for the "limit" action
// 24-hour "HH:MM", read in the IANA zone the task was written in.
F.text("time", true),
F.text("zone"),
F.json("days", 200), // 0=Sunday … 6=Saturday; empty means every day
F.bool("enabled"),
F.text("last_run"), // RFC3339, UTC — also the guard against a double firing
F.text("last_result"),
// Owner. Non-cascading, like a charger's.
F.relation("owner", "users", false, false),
F.autodate("created", true, false),
],
// Server-wide settings as a single record, keyed "global". Today it holds
// pluginSettings: the top (L1) layer of the integration cascade — every
// plugin's enable state, its global config, and the registration of any
// external HTTP plugin. The org and user layers below keep their own plugin
// config in a field of the same name. See internal/plugins/store.go.
app_settings: [
F.text("key", true),
F.json("pluginSettings", 200000),
],
// Tenants that users belong to. A superadmin spans all of them; an admin
// manages only their own.
organizations: [
F.text("name", true),
F.autodate("created", true, false),
// Per-organization plugin/integration config — the middle (org admin) layer
// of the integration cascade (API Server → org admin → user). Shape:
// { "<plugin>": { "config": {…}, "disabled": bool } }
// See internal/api/integrations.go. Only meaningful for plugins that expose
// a per-user cascade (today: toyota).
F.json("pluginSettings"),
],
// Custom fields layered onto the built-in "users" auth collection (which
// already ships with email/name/avatar). Settings-panel additions:
users: [
F.text("bio"),
F.select("theme", ["light", "dark", "system"]),
F.text("locale"),
F.select("date_format", ["YMD", "DMY_NUM", "DMY", "MDY"]),
// "auto" is the region's own convention. Kept in step with
// validTimeFormats in internal/api/me.go.
F.select("time_format", ["auto", "24", "12"]),
// European currencies plus the non-European ones the panel already offered.
// Kept in step with validCurrencies in internal/api/me.go and CURRENCY_CODES
// in the web app's Settings.vue.
F.select("currency", [
"EUR", "GBP", "CHF", "PLN", "CZK", "HUF", "RON", "BGN", "DKK", "SEK", "NOK",
"ISK", "ALL", "AMD", "AZN", "BAM", "BYN", "GEL", "MDL", "MKD", "RSD", "RUB",
"TRY", "UAH", "USD", "CAD", "AUD", "JPY",
]),
F.select("font_size", ["small", "medium", "large"]),
// Holds every arrangement on this user's pages still — the garage, a car's
// tabs and Information rows, the provider's readings — so reading a page
// cannot nudge its layout. Per user, like car_order.
F.bool("drag_locked"),
F.date("deletion_requested_at"),
// Access role. Empty value is treated as "user" by the API.
F.select("role", ["user", "admin", "superadmin"]),
// Organization membership. Non-cascading on purpose: deleting an org must
// not delete its people. (The API refuses to delete an org that still has
// members, so this should not arise in practice.)
F.relation("organization", "organizations", false, false),
// Per-user plugin/integration config — the bottom (user) layer of the
// integration cascade. Shape:
// { "<plugin>": { "config": {…}, "enabled": bool } }
// The `enabled` flag is the personal opt-in; see internal/api/integrations.go.
F.json("pluginSettings"),
// The garage order: car ids as this user dragged them, e.g. ["c2","c1"].
// Per user rather than per car, so it also covers cars shared with them and
// never reorders somebody else's garage. See internal/api/cars.go.
F.json("car_order", 20000),
// The charging page's tab and card arrangements, and which tab each tabbed
// page opens on ({"charging":"home",…}). Small lists and a three-entry map,
// so none of them need car_order's room.
F.json("charger_tab_order", 2000),
F.json("charger_card_order", 2000),
F.json("default_tabs", 2000),
],
};
// Extra SQL indexes, applied at collection-create time. Organization names are
// unique so the API can rely on PocketBase rejecting a duplicate.
const INDEXES = {
// One settings record per key, so the global singleton cannot be duplicated.
app_settings: ["CREATE UNIQUE INDEX `idx_app_settings_key` ON `app_settings` (`key`)"],
organizations: ["CREATE UNIQUE INDEX `idx_organizations_name` ON `organizations` (`name`)"],
// Every read of these is "…for this car", and the fuel history is walked in
// odometer order to build its efficiency windows.
fuel_entries: ["CREATE INDEX `idx_fuel_entries_car_km` ON `fuel_entries` (`car`, `km`)"],
charging_sessions: ["CREATE INDEX `idx_charging_sessions_car_km` ON `charging_sessions` (`car`, `km`)"],
maintenance_entries: ["CREATE INDEX `idx_maintenance_entries_car_date` ON `maintenance_entries` (`car`, `date`)"],
car_documents: ["CREATE INDEX `idx_car_documents_car_expiry` ON `car_documents` (`car`, `expiry_date`)"],
reminders: ["CREATE INDEX `idx_reminders_car_due` ON `reminders` (`car`, `due_date`)"],
// Read as "this car's checks, newest first" every time.
technical_checks: ["CREATE INDEX `idx_technical_checks_car_date` ON `technical_checks` (`car`, `date`)"],
// A charger is looked up by its owner, and by serial when checking whether the
// account it came from has already been imported.
home_chargers: ["CREATE INDEX `idx_home_chargers_owner_serial` ON `home_chargers` (`owner`, `serial`)"],
// The runner sweeps every enabled task on every tick, and the page reads one
// owner's; both go through these two columns.
charging_tasks: [
"CREATE INDEX `idx_charging_tasks_owner_enabled` ON `charging_tasks` (`owner`, `enabled`)",
],
// Audit is queried "this charger's events, newest first" and "this user's events".
control_audit: [
"CREATE INDEX `idx_control_audit_serial_created` ON `control_audit` (`serial`, `created`)",
"CREATE INDEX `idx_control_audit_user_created` ON `control_audit` (`user_id`, `created`)",
],
};
async function main() {
console.log(`Connecting to ${PB_URL} ...`);
const token = await authenticate();
console.log("Authenticated as superuser.");
let collections = await listCollections(token);
const format = detectFormat(collections);
console.log(`Schema format: "${format}"`);
const idByName = {};
for (const c of collections) idByName[c.name] = c.id;
// Create in dependency order (organizations before users references it; cars
// before its relations; "users" already exists as PocketBase's built-in auth
// collection, so it's never created here — only reconciled below).
for (const name of [
"app_settings",
"organizations",
"cars",
"service_records",
"technical_checks",
"parts",
"car_shares",
"fuel_entries",
"charging_sessions",
"maintenance_entries",
"car_documents",
"reminders",
"control_audit",
"home_chargers",
"charging_tasks",
]) {
if (collections.some((c) => c.name === name)) continue;
await createCollection(token, name, DESIRED[name], format, idByName);
console.log(`✓ ${name} — created`);
// Refresh so later relations can reference newly-created collection ids.
collections = await listCollections(token);
for (const c of collections) idByName[c.name] = c.id;
}
// Reconcile fields on existing collections (add missing + fix relation options
// and select values — this is what grows users.role to include "superadmin"
// and adds users.organization on an existing deployment).
for (const name of [
"app_settings",
"organizations",
"users",
"cars",
"service_records",
"technical_checks",
"parts",
"car_shares",
"fuel_entries",
"charging_sessions",
"maintenance_entries",
"car_documents",
"reminders",
"control_audit",
"home_chargers",
"charging_tasks",
]) {
await reconcileFields(token, name, DESIRED[name], format, idByName);
}
console.log(
"\nDone. Collections ready: app_settings, organizations, users, cars,\n" +
"service_records,\n" +
"technical_checks, parts, car_shares, fuel_entries, charging_sessions,\n" +
"maintenance_entries, car_documents, reminders, control_audit, home_chargers,\n" +
"charging_tasks.",
);
console.log(
"Note: the legacy `sessions` collection is no longer used (auth moved to PocketBase\n" +
"tokens). It is left in place rather than dropped — delete it by hand if you want.",
);
}
main().catch((err) => {
console.error("\nSetup failed:", err.message);
process.exit(1);
});