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- .gitea/workflows/ci.yml: on push/PR, runs npm ci, svelte-check, offline regression tests, and a static (no-Overpass) build, then verifies output - scripts/test.mjs: offline test suite — validates manifest + GeoJSON structure and asserts fuzzy-search regressions against committed data - package.json: add 'test' and 'build:static' scripts - osm-data.mjs: tag OSM layers layerType='mixed' in the manifest
135 lines
5.4 KiB
JavaScript
135 lines
5.4 KiB
JavaScript
/**
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* test.mjs — offline regression tests for the Navigator data build.
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* ------------------------------------------------------------------
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* Runs against the COMMITTED static/data (no Overpass or Nominatim calls),
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* so it is safe for CI. It validates:
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* 1. The manifest (_index.json) is well-formed and references existing files.
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* 2. Each GeoJSON dataset is valid and has the expected structure.
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* 3. The fuzzy search engine produces expected results for known queries.
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*
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* Usage: node scripts/test.mjs (exit 0 = pass, exit 1 = fail)
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*/
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import { readFileSync, statSync } from 'node:fs';
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import { dirname, resolve } from 'node:path';
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import { fileURLToPath } from 'node:url';
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const __dirname = dirname(fileURLToPath(import.meta.url));
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const STATIC = resolve(__dirname, '..', 'static', 'data');
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let failures = 0;
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let checks = 0;
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function check(ok, label) {
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checks++;
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if (!ok) {
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failures++;
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console.error(` [FAIL] ${label}`);
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} else {
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console.log(` [ok] ${label}`);
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}
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}
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function loadJson(p) {
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return JSON.parse(readFileSync(p, 'utf8'));
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}
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// Build a searchable list from the committed data (mirrors MapView logic).
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async function buildSearchables() {
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const { search } = await import(resolve(__dirname, '..', 'src', 'lib', 'search.ts'));
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const manifest = loadJson(resolve(STATIC, '_index.json'));
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const all = [];
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for (const layer of manifest) {
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const fc = loadJson(resolve(STATIC, layer.path.replace(/^\/data\//, '')));
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for (const f of fc.features) {
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const p = f.properties || {};
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let lat, lon, bounds;
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if (f.geometry.type === 'Point') {
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[lon, lat] = f.geometry.coordinates;
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} else if (f.geometry.type === 'Polygon' || f.geometry.type === 'LineString') {
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const coords = f.geometry.type === 'Polygon' ? f.geometry.coordinates[0] : f.geometry.coordinates;
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const lats = coords.map((c) => c[1]);
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const lons = coords.map((c) => c[0]);
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lat = (Math.min(...lats) + Math.max(...lats)) / 2;
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lon = (Math.min(...lons) + Math.max(...lons)) / 2;
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bounds = [[Math.min(...lats), Math.min(...lons)], [Math.max(...lats), Math.max(...lons)]];
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}
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const kind = layer.layerType === 'zone' ? 'zone' : layer.layerType === 'path' ? 'path' : 'poi';
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all.push({
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id: f.id, name: p.name ? String(p.name) : String(f.id ?? ''), label: p.name ? String(p.name) : String(f.id ?? ''), kind,
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layerName: layer.name, layerLabel: layer.label, layerColor: layer.color,
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description: p.description, address: p.address, bearing: p.bearing, fov: p.fov,
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lat, lon, bounds, feature: f
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});
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}
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}
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return { search, all };
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}
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async function run() {
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console.log('Navigator tests\n===============');
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// 1. Manifest is valid JSON referencing existing files.
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const manifest = loadJson(resolve(STATIC, '_index.json'));
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check(Array.isArray(manifest) && manifest.length > 0, `manifest has ${manifest.length} layers`);
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for (const layer of manifest) {
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const rel = layer.path.replace(/^\/data\//, '');
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const abs = resolve(STATIC, rel);
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check(statSync(abs, { throwIfNoEntry: false })?.isFile(), `layer "${layer.name}" file exists (${rel})`);
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check(['osm', 'custom'].includes(layer.category), `layer "${layer.name}" has valid category`);
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check(['poi', 'zone', 'path', 'mixed'].includes(layer.layerType), `layer "${layer.name}" has valid layerType "${layer.layerType}"`);
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}
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// 2. Each GeoJSON dataset is structurally valid.
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for (const layer of manifest) {
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const fc = loadJson(resolve(STATIC, layer.path.replace(/^\/data\//, '')));
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check(fc.type === 'FeatureCollection', `"${layer.name}" is a FeatureCollection`);
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check(Array.isArray(fc.features), `"${layer.name}" has a features array`);
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for (const f of fc.features) {
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check(f.type === 'Feature' && f.geometry && f.geometry.type, `"${layer.name}" feature "${f.properties?.name}" has geometry`);
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}
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}
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// 3. Search engine expectations against committed data.
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const { search, all } = await buildSearchables();
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const build = async () => ({
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search,
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expect: (query, substr, kind = null) => {
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const res = search(query, all);
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const top = res[0]?.item?.name ?? '';
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const hit = res.some((r) => r.item.name.toLowerCase().includes(substr));
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check(hit, `search "${query}" finds "${substr}"` + (kind ? ` (${kind})` : ''));
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return { res, top };
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},
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expectNone: (query) => {
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const res = search(query, all);
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check(res.length === 0, `search "${query}" returns no results (junk filtered)`);
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}
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});
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const t = await build();
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// Exact name / fuzzy / address queries (derived from seed data).
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t.expect('gathering place', 'gathering place', 'poi');
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t.expect('philbrick museum', 'philbrook', 'poi'); // fuzzy typo
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t.expect('peoria av', 'woodward', 'poi'); // address abbreviatef->street
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t.expect('s peoria ave', 'woodward', 'poi'); // compass normalized
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const cherry = t.expect('cherry street', 'cherry street', 'zone');
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// Path layer should be searchable.
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t.expect('claremore lake loop', 'claremore lake loop', 'path');
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// Rogers County seed.
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t.expect('rogers state university', 'rogers state university', 'poi');
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t.expect('claremore', 'claremore');
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t.expectNone('zzzzqqqq'); // gibberish yields nothing
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console.log(`\n${checks - failures}/${checks} checks passed`);
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if (failures > 0) {
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console.error(`${failures} check(s) FAILED`);
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process.exit(1);
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}
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console.log('All checks passed.');
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}
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run().catch((e) => {
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console.error('Test runner crashed:', e);
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process.exit(1);
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}); |