gigafibre-fsm/services/targo-hub/lib/address-validate.js
louispaulb e950bd3ac6 hub: reverse geocoding infra-first (fibre field-pins -> RQA fallback); address resolution + geotagged field photos
- /address/reverse: reverseNearestFibre() (fibre field-pins, source of truth) then RQA
- searchCustomers: civic address resolves to the resident (not fuzzy homonyms)
- field-app + /field/photo: geotagged photos confirm the correct job

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-06 21:52:14 -04:00

198 lines
9.0 KiB
JavaScript

'use strict'
// Address validation against the RQA (Répertoire des adresses du Québec).
//
// Why this exists: every Service Location in ERPNext should have its lat/lng
// derived from the official Quebec civic address registry rather than from
// human typing or Mapbox geocode. Free-text geocoding is error-prone for
// rural areas (we just hit a case where the SL coords pointed 9 km away
// from the real address). RQA is the authoritative source — updated every
// 2 weeks, includes a stable `identifiant_unique_adresse` per civic address.
//
// This module exposes ONE public route:
// POST /address/validate
// body: { address_line, postal_code?, city? }
// returns: { exact_match, best, candidates, confidence }
//
// The heavy lifting (Supabase REST → RQA table search) lives in
// ./address-search.js — already used by the customer onboarding wizard.
// We layer a confidence score + canonical formatting on top.
const { json, parseBody, log, cors } = require('./helpers')
const { searchAddresses } = require('./address-search')
const { searchLocal, searchRaw, pool } = require('./address-db')
const { reverseNearestFibre } = require('./legacy-dispatch-sync') // pins de terrain (source de vérité géoloc)
// Normalize for fuzzy comparison: lowercase, strip diacritics, collapse
// whitespace, drop punctuation. Used to score how close a typed address
// is to a RQA result.
function normalizeForCompare (s) {
return (s || '')
.toString()
.toLowerCase()
.normalize('NFD').replace(/[̀-ͯ]/g, '')
.replace(/[^a-z0-9\s]/g, ' ')
.replace(/\s+/g, ' ')
.trim()
}
// 0..1 score: civic number must match exactly, road name fuzzy-includes,
// postal code (first 3 chars) bonus when present, city name bonus.
function scoreMatch (typed, rqaRow) {
const tNorm = normalizeForCompare(typed.address_line || '')
const rNum = String(rqaRow.numero_municipal || '')
const rRoad = normalizeForCompare(rqaRow.odonyme_recompose_normal || '')
const rCity = normalizeForCompare(rqaRow.nom_municipalite || '')
const rPC = (rqaRow.code_postal || '').replace(/\s+/g, '').toLowerCase()
let score = 0
// Civic number — must appear in the typed string
if (rNum && tNorm.match(new RegExp('\\b' + rNum + '\\b'))) score += 0.4
// Road name fuzzy: every word of the RQA road must appear in the typed
const rWords = rRoad.split(/\s+/).filter(w => w.length > 1 && !['rue','chemin','rang','route','avenue','boulevard'].includes(w))
if (rWords.length) {
const matched = rWords.filter(w => tNorm.includes(w)).length
score += 0.3 * (matched / rWords.length)
}
// City — small bonus
if (typed.city && rCity.includes(normalizeForCompare(typed.city))) score += 0.1
// Postal code — first 3 chars (FSA) is enough; full postal code = bigger bonus
if (typed.postal_code) {
const tPC = typed.postal_code.replace(/\s+/g, '').toLowerCase()
if (tPC && rPC) {
if (rPC.startsWith(tPC.slice(0, 3))) score += 0.1
if (rPC === tPC) score += 0.1
}
}
return Math.min(1, score)
}
async function handle (req, res, method, path) {
// POST /rpc/search_addresses — COMPAT Supabase RPC (forme attendue par l'autocomplete du site web :
// body { search_term, result_limit } → tableau direct de lignes { id, address_full, numero, rue, ville,
// code_postal, longitude, latitude, fiber_available, zone_tarifaire, max_speed, similarity_score }).
// Sert depuis la base LOCALE → on débranche le Supabase cloud (juste basculer VITE_API_BASE côté site).
if (path === '/rpc/search_addresses') {
if (method === 'OPTIONS') { cors(res); res.writeHead(204); res.end(); return }
if (method === 'POST') {
const body = await parseBody(req)
const term = (body.search_term || body.q || '').toString().trim()
const limit = body.result_limit || body.limit || 8
let rows = []
try { rows = await searchRaw(term, limit) } catch (e) { log('rpc/search_addresses:', e.message) }
cors(res)
return json(res, 200, rows)
}
}
// GET /address/search?q=&limit= — autocomplete PUBLIC (site web) : adresses + disponibilité fibre,
// depuis la base LOCALE (rqa_addresses + fiber_availability). Remplace l'appel direct au Supabase.
if (path.startsWith('/address/search')) {
if (method === 'OPTIONS') { cors(res); res.writeHead(204); res.end(); return }
if (method === 'GET') {
const u = new URL(req.url, 'http://localhost')
const q = (u.searchParams.get('q') || '').trim()
const limit = u.searchParams.get('limit') || 8
let results = []
try { results = await searchLocal(q, limit) } catch (e) { log('address/search error:', e.message) }
cors(res)
return json(res, 200, { ok: true, query: q, count: results.length, results })
}
}
// GET /address/reverse?lat=&lon= — géocodage INVERSE : coord → adresse civique la plus proche.
// PRIORITÉ 1 : pins de TERRAIN validés (table `fibre`, source de vérité géoloc, pin posé sur la maison).
// PRIORITÉ 2 (repli) : centroïde/rooftop RQA LOCAL (bbox ~±650 m + haversine, index btree lat/lon).
// Plus de Nominatim. Le champ `source` indique d'où vient la réponse (infra_fibre | rqa).
if (path.startsWith('/address/reverse')) {
if (method === 'OPTIONS') { cors(res); res.writeHead(204); res.end(); return }
if (method === 'GET') {
cors(res)
const u = new URL(req.url, 'http://localhost')
const lat = parseFloat(u.searchParams.get('lat')), lon = parseFloat(u.searchParams.get('lon'))
if (!isFinite(lat) || !isFinite(lon) || Math.abs(lat) < 0.01) return json(res, 400, { ok: false, error: 'lat/lon requis' })
// PRIORITÉ 1 — pins de terrain (infra). Best-effort : une panne F ne casse pas le repli RQA.
try {
const fib = await reverseNearestFibre(lat, lon)
if (fib && fib.address) return json(res, 200, { ok: true, found: true, ...fib })
} catch (e) { log('address/reverse infra:', e.message) }
const dLat = 0.006, dLon = 0.006 / Math.max(0.2, Math.cos(lat * Math.PI / 180))
try {
const q = `SELECT address_full, numero, rue, ville, code_postal, latitude, longitude,
(6371000*2*asin(sqrt(power(sin(radians($1-latitude)/2),2)+cos(radians($1))*cos(radians(latitude))*power(sin(radians($2-longitude)/2),2)))) AS dist
FROM rqa_addresses
WHERE latitude BETWEEN $1-$3 AND $1+$3 AND longitude BETWEEN $2-$4 AND $2+$4
ORDER BY dist ASC LIMIT 1`
const { rows } = await pool().query(q, [lat, lon, dLat, dLon])
const r = rows[0]
if (!r) return json(res, 200, { ok: true, found: false })
const line1 = (r.numero && r.rue) ? (r.numero + ' ' + r.rue) : (r.address_full || '')
const address = [line1, r.ville, r.code_postal].filter(Boolean).join(', ')
return json(res, 200, { ok: true, found: true, address, distance_m: Math.round(r.dist), latitude: r.latitude, longitude: r.longitude, ville: r.ville, code_postal: r.code_postal, source: 'rqa' })
} catch (e) { log('address/reverse:', e.message); return json(res, 500, { ok: false, error: 'reverse indisponible' }) }
}
}
// POST /address/validate — score-rank RQA results for a free-text address.
if (path === '/address/validate' && method === 'POST') {
const body = await parseBody(req)
const addressLine = (body.address_line || '').trim()
if (!addressLine) return json(res, 400, { error: 'address_line required' })
// Build a search term — RQA's full-text search prefers "civic + road"
const term = body.postal_code
? `${addressLine} ${body.postal_code}`
: addressLine
let rqaResults = []
try {
rqaResults = await searchAddresses(term, 12)
} catch (e) {
log('RQA search failed:', e.message)
return json(res, 502, { error: 'RQA unavailable: ' + e.message })
}
if (!rqaResults.length) {
return json(res, 200, {
exact_match: false,
best: null,
candidates: [],
confidence: 0,
recommendation: 'unmatched',
})
}
const scored = rqaResults
.map(r => ({
aq_address_id: r.identifiant_unique_adresse,
formatted: r.adresse_formatee,
civic: r.numero_municipal,
unit: r.numero_unite,
road: r.odonyme_recompose_normal,
city: r.nom_municipalite,
postal_code: r.code_postal,
latitude: r.latitude ? parseFloat(r.latitude) : null,
longitude: r.longitude ? parseFloat(r.longitude) : null,
score: scoreMatch({ address_line: addressLine, postal_code: body.postal_code, city: body.city }, r),
}))
.sort((a, b) => b.score - a.score)
const best = scored[0]
const exactMatch = best.score >= 0.7
const recommendation = exactMatch
? 'validated'
: best.score >= 0.4 ? 'review' : 'unmatched'
return json(res, 200, {
exact_match: exactMatch,
best,
candidates: scored.slice(0, 5),
confidence: best.score,
recommendation,
})
}
return json(res, 404, { error: 'Not found' })
}
module.exports = { handle, scoreMatch, normalizeForCompare }