Driver onboarding now photographs the licence, ID card and vehicle
registration and reads the credential fields off them, plus a camera-only
profile selfie riders check the arriving driver against. Adds in-app chat
and WebRTC calls, push-backed ride offers, ratings, cancellation and
payment sheets, settlement, and the owner dashboard endpoints behind them.
Camera permission on Android:
- Declare CAMERA and READ_MEDIA_IMAGES in the manifest. expo-image-picker's
own plugin never declares CAMERA, and Android denies a request for an
undeclared permission instantly and silently — no dialog is ever shown,
which is indistinguishable from the app not asking at all.
- Handle canAskAgain: once Android stops showing the dialog, repeating why
we need it is a dead end, so offer Open Settings instead (lib/capture-
permission.ts), matching what the location flow already did.
Session: a 401 on a request that carried a token now ends the session
instead of being reinterpreted per-screen — driver-home had been reading it
as "this user has no driver profile" and showing an onboarding form to an
already-onboarded driver. Requests without a token are exempt so a failed
sign-in doesn't sign you out, and the notification is latched per token so
concurrent polls tear the session down once. (root) gains the auth guard
that turns that into the sign-in screen; app/index.tsx only guarded the way
in, leaving a session that ended mid-screen with nowhere to go.
Also ignore .uploads/ — it holds driver licence, ID and vehicle scans plus
profile photos, which are personal data and must not be committed.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
105 lines
3.2 KiB
TypeScript
105 lines
3.2 KiB
TypeScript
import { tr } from "@/lib/i18n";
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import type { Ride } from "@/types/type";
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export const sortRides = (rides: Ride[]): Ride[] => {
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return [...rides].sort(
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(a, b) =>
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new Date(b.created_at).getTime() - new Date(a.created_at).getTime(),
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);
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};
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// Unit words and month names are localized through the module-level translator
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// in lib/i18n (set by I18nProvider). Until the provider boots, `tr` falls back
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// to English, so these stay safe to call during the initial render.
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export function formatTime(minutes: number): string {
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const formattedMinutes = Math.round(minutes) || 0;
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if (formattedMinutes < 60) {
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return tr("units.min", {}, formattedMinutes);
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}
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const hours = Math.floor(formattedMinutes / 60);
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const remainingMinutes = formattedMinutes % 60;
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return tr("units.hoursMinutes", { h: hours, m: remainingMinutes });
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}
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export function formatDate(dateString: string): string {
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const date = new Date(dateString);
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const day = date.getDate();
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const monthKeys = [
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"months.jan",
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"months.feb",
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"months.mar",
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"months.apr",
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"months.may",
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"months.jun",
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"months.jul",
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"months.aug",
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"months.sep",
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"months.oct",
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"months.nov",
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"months.dec",
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];
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const month = tr(monthKeys[date.getMonth()]);
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const year = date.getFullYear();
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return `${day < 10 ? "0" + day : day} ${month} ${year}`;
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}
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// Normalizes a Lebanese phone number to E.164 (+961...).
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export function normalizePhone(raw: string): string {
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const cleaned = raw.replace(/[^\d+]/g, "");
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if (cleaned.startsWith("+")) return cleaned;
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return `+961${cleaned.replace(/^0+/, "")}`;
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}
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/**
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* A lat/lng box that fully contains a circle of `radiusMeters` around a point.
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*
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* Used as a cheap first pass before the exact great-circle test: the box is
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* something an index can answer, so the database only hands back the handful
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* of rows worth measuring properly. It over-selects at the corners, which is
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* why callers still filter with `haversine` afterwards.
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*/
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export function boundingBox(
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latitude: number,
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longitude: number,
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radiusMeters: number,
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): { minLat: number; maxLat: number; minLng: number; maxLng: number } {
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// A degree of latitude is ~111.32 km everywhere; a degree of longitude
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// shrinks with the cosine of the latitude. The cos is floored so the box
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// stays finite near the poles instead of dividing by zero.
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const latDelta = radiusMeters / 111_320;
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const lngDelta =
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radiusMeters /
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(111_320 * Math.max(Math.cos((latitude * Math.PI) / 180), 0.01));
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return {
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minLat: latitude - latDelta,
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maxLat: latitude + latDelta,
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minLng: longitude - lngDelta,
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maxLng: longitude + lngDelta,
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};
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}
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// Great-circle distance between two lat/lng points, in meters. Used for
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// nearest-driver matching and "X m away" POI chips. Haversine formula.
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export function haversine(
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lat1: number,
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lng1: number,
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lat2: number,
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lng2: number,
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): number {
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const R = 6371000; // Earth radius, meters
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const toRad = (d: number) => (d * Math.PI) / 180;
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const dLat = toRad(lat2 - lat1);
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const dLng = toRad(lng2 - lng1);
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const a =
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Math.sin(dLat / 2) ** 2 +
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Math.cos(toRad(lat1)) * Math.cos(toRad(lat2)) * Math.sin(dLng / 2) ** 2;
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return 2 * R * Math.atan2(Math.sqrt(a), Math.sqrt(1 - a));
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}
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