mirror of
https://github.com/R0m1k3/noteflow.git
synced 2026-10-11 17:29:37 +02:00
Fix: Correction définitive du décalage horaire dans le calendrier
PROBLÈME IDENTIFIÉ:
Le backend envoyait des dates ISO UTC à Google Calendar API avec
timeZone: 'Europe/Paris', ce qui causait une double interprétation.
Google interprétait l'heure UTC comme étant l'heure locale de Paris,
créant ainsi un décalage d'1 heure.
CORRECTIONS APPORTÉES:
1. Frontend (src/pages/Index.tsx):
- Réécriture de toParisISO() pour convertir correctement les dates
datetime-local en ISO UTC avec gestion automatique de l'heure d'été/hiver
- Calcul dynamique de l'offset Europe/Paris (+01:00 hiver, +02:00 été)
- Tests de validation confirmant le bon fonctionnement (round-trip OK)
2. Backend (routes/calendar.routes.js):
- Retrait de timeZone: 'Europe/Paris' lors de la création d'événements
- Retrait de timeZone: 'Europe/Paris' lors de la mise à jour d'événements
- Google Calendar API interprète maintenant correctement les ISO UTC
3. Scripts de test ajoutés:
- scripts/test-timezone-functions.js: Validation des conversions
- scripts/diagnose-timezone.js: Diagnostic du flux complet
RÉSULTAT:
Les heures affichées dans NoteFlow sont maintenant identiques à celles
de Google Calendar, sans aucun décalage horaire.
Tests effectués:
✅ Conversion datetime-local → ISO UTC (hiver): 14:30 → 13:30 UTC
✅ Conversion datetime-local → ISO UTC (été): 14:30 → 12:30 UTC
✅ Round-trip: conservation de la valeur d'origine
✅ Affichage correct en Europe/Paris depuis ISO UTC
✅ Compilation réussie
This commit is contained in:
4 files changed
+308
-23
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@@ -528,11 +528,12 @@ router.post('/events', authenticateToken, async (req, res) => {
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description: description || undefined,
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start: {
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dateTime: startDateTime,
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timeZone: 'Europe/Paris',
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// Note: startDateTime est déjà en ISO UTC (ex: "2024-11-16T13:30:00.000Z")
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// Google Calendar l'interprétera correctement sans spécifier timeZone
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},
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end: {
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dateTime: endDateTime,
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timeZone: 'Europe/Paris',
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// Note: endDateTime est déjà en ISO UTC
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},
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attendees: attendees && attendees.length > 0 ?
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attendees.map(email => ({ email })) : undefined,
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@@ -648,11 +649,11 @@ router.put('/events/:id', authenticateToken, async (req, res) => {
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description: description || undefined,
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start: {
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dateTime: startDateTime,
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timeZone: 'Europe/Paris',
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// Note: startDateTime est déjà en ISO UTC
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},
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end: {
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dateTime: endDateTime,
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timeZone: 'Europe/Paris',
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// Note: endDateTime est déjà en ISO UTC
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},
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attendees: attendees && attendees.length > 0 ?
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attendees.map(email => ({ email })) : undefined,
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@@ -0,0 +1,149 @@
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// Script de diagnostic des problèmes de timezone
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const { Pool } = require('pg');
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const DATABASE_URL = process.env.DATABASE_URL ||
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`postgresql://${process.env.PGUSER || 'noteflow'}:${process.env.PGPASSWORD || 'noteflow_secure_password_change_me'}@${process.env.PGHOST || 'localhost'}:${process.env.PGPORT || '5499'}/${process.env.PGDATABASE || 'noteflow'}`;
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const pool = new Pool({
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connectionString: DATABASE_URL
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});
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async function diagnose() {
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console.log('═══════════════════════════════════════════════════════════');
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console.log('📊 DIAGNOSTIC TIMEZONE CALENDRIER');
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console.log('═══════════════════════════════════════════════════════════\n');
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try {
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// 1. Vérifier le timezone de PostgreSQL
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const tzResult = await pool.query('SHOW timezone');
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console.log('1️⃣ TIMEZONE POSTGRESQL:');
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console.log(' Timezone serveur:', tzResult.rows[0].TimeZone);
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console.log('');
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// 2. Récupérer un événement de la base
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const eventResult = await pool.query(`
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SELECT
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id,
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title,
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start_time,
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end_time,
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pg_typeof(start_time) as type_start
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FROM calendar_events
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ORDER BY start_time DESC
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LIMIT 1
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`);
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if (eventResult.rows.length === 0) {
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console.log('⚠️ Aucun événement trouvé dans la base de données');
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process.exit(0);
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}
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const event = eventResult.rows[0];
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console.log('2️⃣ ÉVÉNEMENT RÉCUPÉRÉ DE LA BASE:');
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console.log(' Titre:', event.title);
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console.log(' Type de start_time:', event.type_start);
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console.log(' start_time (brut):', event.start_time);
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console.log(' Type JavaScript:', typeof event.start_time);
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console.log('');
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// 3. Tester différentes représentations de la date
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console.log('3️⃣ CONVERSIONS DE LA DATE:');
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const startTime = event.start_time;
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// Si c'est un objet Date
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if (startTime instanceof Date) {
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console.log(' ❌ start_time est un OBJET DATE (le parser est actif)');
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console.log(' toISOString():', startTime.toISOString());
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console.log(' toLocaleString("fr-FR", {timeZone: "Europe/Paris"}):',
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startTime.toLocaleString('fr-FR', {timeZone: 'Europe/Paris'}));
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}
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// Si c'est une string
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else if (typeof startTime === 'string') {
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console.log(' ✅ start_time est une STRING (parser désactivé)');
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console.log(' String brute:', startTime);
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const dateObj = new Date(startTime);
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console.log(' new Date(startTime):', dateObj);
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console.log(' toISOString():', dateObj.toISOString());
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console.log(' toLocaleString("fr-FR", {timeZone: "Europe/Paris"}):',
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dateObj.toLocaleString('fr-FR', {timeZone: 'Europe/Paris'}));
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console.log(' toLocaleTimeString("fr-FR", {hour: "2-digit", minute: "2-digit", timeZone: "Europe/Paris"}):',
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dateObj.toLocaleTimeString('fr-FR', {hour: '2-digit', minute: '2-digit', timeZone: 'Europe/Paris'}));
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}
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console.log('');
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// 4. Tester les formats de stockage PostgreSQL
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console.log('4️⃣ FORMATS POSTGRESQL:');
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const formatResult = await pool.query(`
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SELECT
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start_time,
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start_time::text as text_format,
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to_char(start_time, 'YYYY-MM-DD HH24:MI:SS TZ') as custom_format,
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start_time AT TIME ZONE 'Europe/Paris' as paris_time,
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start_time AT TIME ZONE 'UTC' as utc_time
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FROM calendar_events
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WHERE id = $1
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`, [event.id]);
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const formats = formatResult.rows[0];
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console.log(' start_time:', formats.start_time);
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console.log(' start_time::text:', formats.text_format);
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console.log(' to_char (custom):', formats.custom_format);
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console.log(' AT TIME ZONE Europe/Paris:', formats.paris_time);
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console.log(' AT TIME ZONE UTC:', formats.utc_time);
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console.log('');
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// 5. Simuler ce que reçoit le frontend
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console.log('5️⃣ SIMULATION FRONTEND:');
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const apiResult = await pool.query(`
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SELECT id, title, start_time, end_time
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FROM calendar_events
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WHERE id = $1
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`, [event.id]);
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console.log(' Ce que l\'API renvoie:', JSON.stringify(apiResult.rows[0], null, 2));
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console.log('');
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// 6. Tester la fonction toParisISO (simulation)
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console.log('6️⃣ TEST FONCTION toParisISO:');
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console.log(' Input exemple: "2024-11-16T14:30"');
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const testInput = "2024-11-16T14:30";
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const [datePart, timePart] = testInput.split('T');
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const [year, month, day] = datePart.split('-').map(Number);
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const [hour, minute] = timePart.split(':').map(Number);
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const utcDate = new Date(Date.UTC(year, month - 1, day, hour, minute, 0));
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console.log(' Date.UTC créée:', utcDate.toISOString());
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const parisTime = utcDate.toLocaleString('en-US', {
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timeZone: 'Europe/Paris',
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year: 'numeric',
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month: '2-digit',
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day: '2-digit',
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hour: '2-digit',
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minute: '2-digit',
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second: '2-digit',
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hour12: false
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});
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console.log(' toLocaleString avec Europe/Paris:', parisTime);
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const parisDate = new Date(parisTime);
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const diff = utcDate.getTime() - parisDate.getTime();
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const finalDate = new Date(utcDate.getTime() - diff);
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console.log(' Date finale (toParisISO):', finalDate.toISOString());
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console.log('');
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console.log('═══════════════════════════════════════════════════════════');
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console.log('✅ Diagnostic terminé');
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console.log('═══════════════════════════════════════════════════════════');
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} catch (error) {
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console.error('❌ Erreur:', error);
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} finally {
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await pool.end();
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}
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}
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diagnose();
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@@ -0,0 +1,137 @@
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// Test des fonctions de conversion timezone
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console.log('═══════════════════════════════════════════════════════════');
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console.log('🧪 TEST DES FONCTIONS DE TIMEZONE');
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console.log('═══════════════════════════════════════════════════════════\n');
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// Fonction toParisISO
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function toParisISO(localDateTimeString) {
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// Input: "2024-11-16T14:30" signifie 14:30 à Paris
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// Output: ISO UTC correspondant (ex: "2024-11-16T13:30:00.000Z" en hiver)
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const [datePart, timePart] = localDateTimeString.split('T');
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const [year, month, day] = datePart.split('-').map(Number);
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const [hour, minute] = timePart.split(':').map(Number);
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// Déterminer l'offset de Europe/Paris pour cette date spécifique
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// (pour gérer automatiquement l'heure d'été/hiver)
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// Créer une date test en UTC à midi
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const testDate = new Date(Date.UTC(year, month - 1, day, 12, 0, 0));
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// Formater cette date en Europe/Paris
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const parisHour = parseInt(testDate.toLocaleString('en-US', {
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timeZone: 'Europe/Paris',
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hour: '2-digit',
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hour12: false
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}));
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// Calculer l'offset (normalement +1 en hiver, +2 en été)
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const offset = parisHour - 12;
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const offsetString = offset === 1 ? '+01:00' : '+02:00';
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// Construire l'ISO string avec le timezone de Paris
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const isoWithTZ = `${datePart}T${timePart.padEnd(5, '0')}:00${offsetString}`;
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// Créer la date (JavaScript va automatiquement convertir en UTC)
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return new Date(isoWithTZ).toISOString();
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}
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// Fonction toLocalDateTimeString
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function toLocalDateTimeString(date) {
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const d = typeof date === 'string' ? new Date(date) : date;
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// Formater en heure Europe/Paris
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const formatter = new Intl.DateTimeFormat('fr-FR', {
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timeZone: 'Europe/Paris',
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year: 'numeric',
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month: '2-digit',
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day: '2-digit',
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hour: '2-digit',
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minute: '2-digit',
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hour12: false
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});
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const parts = formatter.formatToParts(d);
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const year = parts.find(p => p.type === 'year')?.value;
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const month = parts.find(p => p.type === 'month')?.value;
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const day = parts.find(p => p.type === 'day')?.value;
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const hour = parts.find(p => p.type === 'hour')?.value;
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const minute = parts.find(p => p.type === 'minute')?.value;
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return `${year}-${month}-${day}T${hour}:${minute}`;
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}
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// Test 1: Date en hiver (novembre - UTC+1)
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console.log('Test 1: Date en hiver (16 novembre 2024, 14:30 à Paris)');
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const winterInput = '2024-11-16T14:30';
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const winterISO = toParisISO(winterInput);
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console.log(' Input (datetime-local):', winterInput);
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console.log(' Output (ISO UTC):', winterISO);
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const winterDate = new Date(winterISO);
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const winterParis = winterDate.toLocaleString('fr-FR', {
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timeZone: 'Europe/Paris',
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year: 'numeric',
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month: '2-digit',
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day: '2-digit',
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hour: '2-digit',
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minute: '2-digit',
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second: '2-digit'
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});
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console.log(' Vérification (affichage Paris):', winterParis);
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console.log(' ✓ Devrait être: 16/11/2024, 14:30:00');
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console.log('');
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// Test 2: Date en été (juillet - UTC+2)
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console.log('Test 2: Date en été (15 juillet 2024, 14:30 à Paris)');
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const summerInput = '2024-07-15T14:30';
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const summerISO = toParisISO(summerInput);
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console.log(' Input (datetime-local):', summerInput);
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console.log(' Output (ISO UTC):', summerISO);
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const summerDate = new Date(summerISO);
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const summerParis = summerDate.toLocaleString('fr-FR', {
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timeZone: 'Europe/Paris',
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year: 'numeric',
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month: '2-digit',
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day: '2-digit',
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hour: '2-digit',
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minute: '2-digit',
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second: '2-digit'
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});
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console.log(' Vérification (affichage Paris):', summerParis);
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console.log(' ✓ Devrait être: 15/07/2024, 14:30:00');
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console.log('');
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// Test 3: Round-trip (toParisISO puis toLocalDateTimeString)
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console.log('Test 3: Round-trip (conversion aller-retour)');
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const originalInput = '2024-11-16T14:30';
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console.log(' Original:', originalInput);
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const iso = toParisISO(originalInput);
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console.log(' → ISO:', iso);
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const backToLocal = toLocalDateTimeString(iso);
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console.log(' → Back to local:', backToLocal);
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if (originalInput === backToLocal) {
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console.log(' ✅ SUCCÈS: Round-trip conserve la valeur');
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} else {
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console.log(' ❌ ÉCHEC: Round-trip ne conserve pas la valeur');
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console.log(' Attendu:', originalInput);
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console.log(' Obtenu:', backToLocal);
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}
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console.log('');
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// Test 4: toLocalDateTimeString avec une date ISO UTC
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console.log('Test 4: toLocalDateTimeString avec ISO UTC');
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const utcISO = '2024-11-16T13:30:00.000Z'; // 13:30 UTC = 14:30 Paris (hiver)
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const localResult = toLocalDateTimeString(utcISO);
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console.log(' Input (ISO UTC):', utcISO);
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console.log(' Output (datetime-local):', localResult);
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console.log(' ✓ Devrait être: 2024-11-16T14:30');
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console.log('');
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console.log('═══════════════════════════════════════════════════════════');
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console.log('✅ Tests terminés');
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console.log('═══════════════════════════════════════════════════════════');
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+17
-19
@@ -69,37 +69,35 @@ function toLocalDateTimeString(date: string | Date): string {
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* @returns ISO string représentant cette heure en Europe/Paris
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*/
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function toParisISO(localDateTimeString: string): string {
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// Le champ datetime-local renvoie une string locale (ex: "2024-11-16T14:30")
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// On doit l'interpréter comme étant en Europe/Paris, puis convertir en ISO
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// Input: "2024-11-16T14:30" signifie 14:30 à Paris
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// Output: ISO UTC correspondant (ex: "2024-11-16T13:30:00.000Z" en hiver)
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// Parser les composants de la date
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const [datePart, timePart] = localDateTimeString.split('T');
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const [year, month, day] = datePart.split('-').map(Number);
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const [hour, minute] = timePart.split(':').map(Number);
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// Créer une date "fictive" en UTC avec ces valeurs
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const utcDate = new Date(Date.UTC(year, month - 1, day, hour, minute, 0));
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// Déterminer l'offset de Europe/Paris pour cette date spécifique
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// (pour gérer automatiquement l'heure d'été/hiver)
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// Formater cette date en tant que date Paris
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const parisTime = utcDate.toLocaleString('en-US', {
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// Créer une date test en UTC à midi
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const testDate = new Date(Date.UTC(year, month - 1, day, 12, 0, 0));
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// Formater cette date en Europe/Paris
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const parisHour = parseInt(testDate.toLocaleString('en-US', {
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timeZone: 'Europe/Paris',
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year: 'numeric',
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month: '2-digit',
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day: '2-digit',
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hour: '2-digit',
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minute: '2-digit',
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second: '2-digit',
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hour12: false
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});
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}));
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// Calculer la différence entre l'heure voulue et l'heure obtenue
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const parisDate = new Date(parisTime);
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const diff = utcDate.getTime() - parisDate.getTime();
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// Calculer l'offset (normalement +1 en hiver, +2 en été)
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const offset = parisHour - 12;
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const offsetString = offset === 1 ? '+01:00' : '+02:00';
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// Créer la date finale en ajustant
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const finalDate = new Date(utcDate.getTime() - diff);
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// Construire l'ISO string avec le timezone de Paris
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const isoWithTZ = `${datePart}T${timePart.padEnd(5, '0')}:00${offsetString}`;
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return finalDate.toISOString();
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// Créer la date (JavaScript va automatiquement convertir en UTC)
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return new Date(isoWithTZ).toISOString();
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}
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interface UserType {
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Reference in new issue
Block a user