The showcase was a Barcelona market: Catalan names, +34 numbers, euro rates and "Carrer Example 12" on every job. Presented to a Mexican client, all of that reads as somebody else's product. City comes from NEXT_PUBLIC_CITY_* as before, now Ciudad de México at 19.4326/-99.1332, with MAPBOX_COUNTRY=mx. The seed's fallbacks were Barcelona literals, so an unset env quietly seeded a different city than the app rendered — they now agree. Two db tests pinned the Barcelona centre as a hardcoded constant, which is why the deck returned zero cards on the first run here: every pro was a continent outside the radius. They read the same env as the seed now, so the trap cannot recur. Money: formatCents defaults to USD/en-US, and the nine hardcoded euro signs across the card, search rows, quote strip and forms are dollars. The rate NUMBERS are unchanged and still read high for CDMX — that is a pricing decision, not a currency one, and is left alone deliberately. Seed people are Mexican, addressed on real Roma/Condesa streets rotated by index rather than one placeholder repeated. Phones moved to +52 55, which moves the demo login to +525500000000 / 000000. Also in here, from the same session: - Sending a job now confirms. The mutation always succeeded; the sheet just closed with no receipt, which from the customer's side is indistinguishable from a dead button. Dismissing that receipt resolves as 'sent', so the card does not return to the deck. - Media moves to DigitalOcean Spaces, with the public origin derived from bucket and region instead of a second env var to keep in sync. - Managed-Postgres TLS: DATABASE_CA_CERT takes a path or inline PEM. - The client-facing project panel beside the running app. - Two profiles removed and four renamed to match their photos. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
123 lines
4.3 KiB
TypeScript
123 lines
4.3 KiB
TypeScript
/**
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* Unit tests. No network, no credentials — everything here runs offline against
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* recorded Mapbox payloads.
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*
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* The thing worth testing is the precision mapping. A geocoder always returns
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* *something*: ask it for a misspelled street and it hands back the city, very
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* confidently. Treating that as a located address is precisely the bug this
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* package exists to remove, so "did we get a result" must never be the signal.
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*/
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import { describe, expect, it } from 'vitest';
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import { GeocodeError, parseResponse, precisionOf } from '../src/index';
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/** Shaped like a real v6 feature, trimmed to the fields we read. */
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function feature(overrides: {
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featureType?: string;
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id?: string;
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fullAddress?: string;
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name?: string;
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placeFormatted?: string;
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lat?: number;
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lng?: number;
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}) {
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return {
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properties: {
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mapbox_id: overrides.id ?? 'dXJuOm1ieGFkcjo=',
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feature_type: overrides.featureType,
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full_address: overrides.fullAddress,
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name: overrides.name,
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place_formatted: overrides.placeFormatted,
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coordinates: { longitude: overrides.lng ?? -99.1332, latitude: overrides.lat ?? 19.4326 },
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},
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};
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}
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describe('precisionOf', () => {
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it('calls a street address exact', () => {
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expect(precisionOf('address')).toBe('exact');
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expect(precisionOf('secondary_address')).toBe('exact');
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});
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it('calls anything coarser than a building approximate', () => {
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for (const t of ['street', 'block', 'postcode', 'neighborhood', 'locality']) {
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expect(precisionOf(t)).toBe('approximate');
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}
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});
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it('calls a city-or-wider result what it is', () => {
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// The failure mode that matters: a bad query returns the city, and if that
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// ranked as a location every distance in the product would be a lie.
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expect(precisionOf('place')).toBe('city');
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expect(precisionOf('region')).toBe('city');
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expect(precisionOf('country')).toBe('city');
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});
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it('degrades an unknown feature type rather than trusting it', () => {
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// Mapbox can add types. A new one must not silently rank as exact.
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expect(precisionOf('something_new')).toBe('city');
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expect(precisionOf(undefined)).toBe('city');
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});
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});
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describe('parseResponse', () => {
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it('maps a full address feature', () => {
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const [result] = parseResponse({
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features: [
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feature({
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featureType: 'address',
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id: 'addr-1',
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fullAddress: 'Av. Álvaro Obregón 12, 06700 Ciudad de México, Mexico',
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lat: 19.4194,
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lng: -99.1655,
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}),
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],
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});
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expect(result).toEqual({
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providerId: 'addr-1',
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label: 'Av. Álvaro Obregón 12, 06700 Ciudad de México, Mexico',
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coordinates: { lat: 19.4194, lng: -99.1655 },
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precision: 'exact',
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});
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});
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it('builds a label from name and place when there is no full address', () => {
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const [result] = parseResponse({
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features: [feature({ featureType: 'street', name: 'Av. Álvaro Obregón', placeFormatted: 'Ciudad de México, Mexico' })],
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});
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expect(result?.label).toBe('Av. Álvaro Obregón, Ciudad de México, Mexico');
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expect(result?.precision).toBe('approximate');
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});
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it('drops a feature with nothing to show or nothing to re-resolve by', () => {
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// A row we cannot label is a row the user cannot choose between; a row with
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// no id is one we could never re-resolve. Both are dropped rather than
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// rendered as a blank line.
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const results = parseResponse({
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features: [
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feature({ featureType: 'address', fullAddress: undefined, name: undefined }),
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{ properties: { feature_type: 'address', coordinates: { longitude: 2, latitude: 41 } } },
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],
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});
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expect(results).toEqual([]);
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});
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it('returns nothing for an empty result set rather than throwing', () => {
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expect(parseResponse({ features: [] })).toEqual([]);
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expect(parseResponse({})).toEqual([]);
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});
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it('refuses a payload whose coordinates are missing or malformed', () => {
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// This is the guard that keeps a NaN out of a geography column.
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expect(() => parseResponse({ features: [{ properties: { feature_type: 'address' } }] })).toThrow(
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GeocodeError,
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);
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expect(() =>
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parseResponse({
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features: [{ properties: { coordinates: { longitude: 'two', latitude: 41 } } }],
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}),
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).toThrow(GeocodeError);
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expect(() => parseResponse('not json at all')).toThrow(GeocodeError);
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});
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});
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