Since494fb56and4c8e4a0, fetchStars wrote stars.bin, stars-meta.bin and stars-index.json, and fetchExoplanets wrote them again with the 3 277 hosts it adds from the archive and the 574 Gaia designations it renames, after the live Horizons and archive fetches in between. A run stopped between the two writes, or fetchStars.ts run on its own as the README documented, left 452 294 stars on disk with no archive star and 574 hosts back to their designations, and the existing exoplanets.json pointing 4 237 planets at stars that were not there. It happened on this branch: the dev server served those files. fetchStars now returns the stars and writes nothing; fetchExoplanets, which build.ts runs after it, is the only writer. fetchStars.ts run on its own runs fetchExoplanets, which fetches the stars itself. Checked from cache: `tsx tools/etl/fetchStars.ts` exits 0 and writes 455 571 stars, the published files byte for byte; build.ts with fetchSolarSystem made to throw fails with "simulated Horizons outage" and leaves every data file unchanged, where before it left the 452 294-star catalogue. The README's table now names fetchExoplanets.ts as what writes them. The ETL has no unit harness; these two runs are the check. Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
236 lines
11 KiB
TypeScript
236 lines
11 KiB
TypeScript
import { writeFileSync } from 'node:fs';
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import { hipparcosDistancePc, mergeStarCatalogues, placementDistancePc } from '../../src/app/shared/astro/star-merge';
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import { encodeStarCatalog } from '../../src/app/shared/models/star-catalog';
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import { StarRecord, SUN_STAR_ID } from '../../src/app/shared/models/star.model';
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import { fetchGaiaDistancesByHip, fetchHipparcosParallaxErrors, GaiaAnswerError } from './sources/gaia';
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import { positionalSources } from './sources/registry';
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import { PARALLAX_PRECISION_MAS } from './sources/star-sources';
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import { parseCsvObjects, parseOptionalNumber } from './lib/csv';
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import { fetchTextCached } from './lib/http';
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import { dataPath, ensureDataDir } from './lib/paths';
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const HYG_CSV_URL = 'https://raw.githubusercontent.com/astronexus/HYG-Database/main/hyg/CURRENT/hygdata_v41.csv';
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/**
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* Stand-in magnitude for a star with no photometry. Faint rather than 0, because 0 would mean
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* "as bright as Vega" and render it as one of the largest points on the map.
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*/
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const UNKNOWN_MAGNITUDE = 15;
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/**
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* Stars either survey places within this distance (parsecs) of the Sun are kept for the galaxy
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* view, and every naked-eye star wherever it is; `placementDistancePc` decides which distance a
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* kept star is drawn at.
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*
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* Set at the range Hipparcos's own measurements reach rather than at a round number: its
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* parallaxes are good to roughly a milliarcsecond, so at 250 pc (4 mas) a distance is uncertain
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* by some tens of per cent. That is why it is not applied to the Hipparcos distance alone:
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* Gaia puts 6 833 of the stars Hipparcos places inside it outside, and 3 666 the other way
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* round. Only the *radial* placement blurs; a star's direction on the sky stays exact.
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*
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* The catalogue is also magnitude-limited, so this is not a volume-complete sample beyond about
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* 50 pc: it thins to the intrinsically bright, which is the same selection the naked eye makes.
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*/
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const DISTANCE_CUTOFF_PC = Number(process.env['ETL_STAR_DISTANCE_PC'] ?? 250);
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function resolveName(row: Record<string, string>): string {
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if (row['proper']) {
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return row['proper'];
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}
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if (row['bayer'] && row['con']) {
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return `${row['bayer']} ${row['con']}`;
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}
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if (row['flam'] && row['con']) {
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return `${row['flam']} ${row['con']}`;
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}
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if (row['hd']) {
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return `HD ${row['hd']}`;
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}
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if (row['gl']) {
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// Already a complete designation ("Gl 581", "GJ 3512"), unlike the bare numbers in `hd`
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// and `hip` — prefixing it again produced 2331 stars named "Gl GJ 1076", which broke
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// search, the on-screen labels, and exoplanet host-star name matching alike.
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return row['gl'];
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}
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if (row['hip']) {
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return `HIP ${row['hip']}`;
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}
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return `HYG ${row['id']}`;
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}
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/**
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* HYG's spectral type, without the `...` that 2 127 of the map's stars end in, all of them
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* Hipparcos stars: the Hipparcos catalogue's mark for a classification it does not print in full
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* (Sirius is "A0m..."). On the map it read as text the app had cut short.
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*/
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function spectralTypeOf(row: Record<string, string>): string {
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return (row['spect'] ?? '').replace(/\.\.\.$/, '') || 'Unknown';
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}
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/**
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* Downloads the HYG (Hipparcos/Yale/Gliese) stellar database, places each star along its
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* equatorial direction (epoch J2000.0) at whichever of its Hipparcos and Gaia distances has the
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* smaller error, keeps the ones either survey puts within range, and unions the other positional
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* sources. Writes nothing: fetchExoplanets adds the hosts the catalogue lacks and renames the
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* ones known only by a designation, then writes the star assets once. Written here as well, they
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* stood on disk without those 3 277 stars whenever a run stopped between the two — and that
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* catalogue left 4 237 planets pointing at stars it did not have.
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*/
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export async function fetchStars(): Promise<StarRecord[]> {
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console.log(`Fetching HYG star catalog (distance cutoff: ${DISTANCE_CUTOFF_PC} pc)...`);
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const csv = await fetchTextCached(HYG_CSV_URL, 'hygdata_v41.csv');
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const rows = parseCsvObjects(csv);
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// Not skipped when unreachable, unlike the positional sources below; see its own comment.
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const gaiaByHip = await fetchGaiaDistancesByHip();
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const hipparcosErrors = await fetchHipparcosParallaxErrors();
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const stars: StarRecord[] = [];
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let atGaiaDistance = 0;
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let pastCutoff = 0;
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for (const row of rows) {
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const id = Number(row['id']);
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if (id === SUN_STAR_ID) {
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stars.push({ id, name: 'Sol', x: 0, y: 0, z: 0, magnitude: parseOptionalNumber(row['mag']) ?? UNKNOWN_MAGNITUDE, magnitudeBand: 'V', spectralType: row['spect'] || 'G2V', colorIndex: parseOptionalNumber(row['ci']) ?? null, colorSystem: 'B-V' });
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continue;
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}
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const hygPc = Number(row['dist']);
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const hipparcos = row['hip'] ? hipparcosErrors.get(Number(row['hip'])) : undefined;
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const hipparcosPc = hipparcosDistancePc(hygPc, hipparcos);
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const gaia = row['hip'] ? gaiaByHip.get(Number(row['hip'])) : undefined;
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const gaiaPc = gaia?.distancePc;
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const magnitudeV = parseOptionalNumber(row['mag']);
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const magnitude = magnitudeV ?? UNKNOWN_MAGNITUDE;
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const hipparcosError = hipparcos?.relativeError;
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const distancePc = placementDistancePc(hipparcosPc, gaiaPc, magnitude, DISTANCE_CUTOFF_PC, hipparcosError, gaia?.relativeError);
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if (distancePc === null) {
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continue;
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}
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const fromGaia = gaia !== undefined && distancePc === gaiaPc;
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// HYG's own Cartesian columns rather than its `ra`/`dec`, which are in the same frame as
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// `raDecDistanceToXyz` and would be redundant if the two agreed. They do not, for the stars
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// that move: the right ascension was carried from the Hipparcos epoch to 2000.0 without the
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// cos δ its motion needs, which puts Proxima 17.9″ from where HYG's own x/y/z — and Gaia,
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// once brought to the same epoch — have it. 1813 stars differ by over an arcsecond, and the
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// Cartesian columns are the ones Gaia agrees with for 1155 of them against 156 (one of those,
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// HIP 57146, has x/y/z 161″ from its own ra/dec and stays double).
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//
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// Only their direction is used. They sit at HYG's own distance, or at its 100 000 pc
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// placeholder where it has none, and are carried along that direction to the one chosen above.
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const x = Number(row['x']);
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const y = Number(row['y']);
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const z = Number(row['z']);
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const length = Math.hypot(x, y, z);
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if (![x, y, z].every(Number.isFinite) || length === 0) {
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continue;
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}
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const scale = distancePc / length;
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if (fromGaia) {
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atGaiaDistance++;
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}
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if (distancePc > DISTANCE_CUTOFF_PC) {
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pastCutoff++;
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}
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// Gaia's error with Gaia's distance, Hipparcos's with its own; a Gliese row, with neither, has
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// no published error, and its distance is as often photometric as measured.
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const distanceError = fromGaia ? gaia.relativeError : hipparcosError;
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const colorIndex = parseOptionalNumber(row['ci']);
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stars.push({
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id,
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name: resolveName(row),
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x: x * scale,
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y: y * scale,
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z: z * scale,
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magnitude,
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...(magnitudeV === undefined ? {} : { magnitudeBand: 'V' as const }),
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spectralType: spectralTypeOf(row),
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colorIndex: colorIndex ?? null,
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...(colorIndex === undefined ? {} : { colorSystem: 'B-V' as const }),
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...(distanceError === undefined ? {} : { distanceError }),
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distanceFromGaia: fromGaia,
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// Only for the Gliese-only rows, whose positions are what the merge needs the motion to see
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// past. A Hipparcos position is good to under an arcsecond; given its motion too, 15 stars
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// took their co-moving companion's Gaia entry, and the companion was kept twice.
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...(row['hip'] ? {} : { pmRaMasYr: parseOptionalNumber(row['pmra']), pmDecMasYr: parseOptionalNumber(row['pmdec']) })
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});
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}
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console.log(` kept ${stars.length} stars (of ${rows.length} in the catalog): ${atGaiaDistance} at Gaia's distance, ${pastCutoff} of them past ${DISTANCE_CUTOFF_PC} pc.`);
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const merged = await mergeWithOtherSources(stars);
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merged.sort((a, b) => a.id - b.id);
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return merged;
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}
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/**
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* Unions HYG with every other positional source that is wired in and reachable.
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*
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* A source that cannot be reached is reported and skipped here rather than thrown, so a run still
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* gets as far as validation and says what it has. Whether that may be published is decided
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* there: `validateMerge` in build.ts refuses a catalogue Gaia contributed nothing to. A source
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* that answered with something unusable ({@link GaiaAnswerError}) is a different matter, and stops
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* the run where it happened rather than being reported later as an outage.
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*/
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async function mergeWithOtherSources(hygStars: StarRecord[]): Promise<StarRecord[]> {
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const others = positionalSources().filter((source) => source.id !== 'hyg');
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if (others.length === 0) {
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return hygStars;
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}
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const candidates = [{ sourceId: 'hyg', parallaxPrecisionMas: PARALLAX_PRECISION_MAS['hyg'], stars: hygStars }];
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for (const source of others) {
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try {
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candidates.push({
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sourceId: source.id,
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parallaxPrecisionMas: PARALLAX_PRECISION_MAS[source.id] ?? 1,
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stars: await source.fetch!()
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});
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} catch (error) {
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// An answer that cannot be worked with is not an outage: skipping it would write a
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// half-catalogue over the published assets before the merge gate got to say so.
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if (error instanceof GaiaAnswerError) {
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throw error;
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}
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console.log(` skipping ${source.name}: ${error instanceof Error ? error.message : error}`);
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}
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}
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if (candidates.length === 1) {
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return hygStars;
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}
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const { stars, summary } = mergeStarCatalogues(candidates);
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console.log(` merged ${summary.total} stars from ${candidates.length} catalogues (${summary.duplicates} entries folded into a better-measured one):`);
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for (const [sourceId, count] of Object.entries(summary.bySource)) {
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console.log(` ${sourceId}: ${count}`);
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}
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return stars;
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}
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export function writeStarAssets(stars: StarRecord[]): void {
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ensureDataDir();
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// The layout lives in `star-catalog.ts`, which the app decodes with — one definition, so the
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// writer and the reader cannot drift.
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const { index, positions, meta } = encodeStarCatalog(stars);
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writeFileSync(dataPath('stars.bin'), Buffer.from(positions.buffer));
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writeFileSync(dataPath('stars-meta.bin'), Buffer.from(meta));
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writeFileSync(dataPath('stars-index.json'), JSON.stringify(index));
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}
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// On its own it writes what the ETL would, hosts included; imported late, since fetchExoplanets imports this module.
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if (require.main === module) {
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import('./fetchExoplanets').then(({ fetchExoplanets }) => fetchExoplanets()).catch((error) => {
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console.error(error);
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process.exitCode = 1;
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});
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}
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