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// sessionStore.js β€” access_token + Supabase RLS, no service role key needed.
// Device sessions live in memory only (restart clears them).
import { createClient } from '@supabase/supabase-js';
import crypto from 'crypto';

let _SUPABASE_URL, _SUPABASE_ANON_KEY;
export function initStoreConfig(url, key) { _SUPABASE_URL = url; _SUPABASE_ANON_KEY = key; }

const TEMP_TTL_MS     = 24 * 60 * 60 * 1000;
const TEMP_INACTIVITY = 12 * 60 * 60 * 1000;
const TEMP_MSG_LIMIT  = 15;

const userCache   = new Map(); // userId -> { sessions: Map, online: Set }
const tempStore   = new Map(); // tempId -> TempData
const devSessions = new Map(); // token  -> DeviceSession

setInterval(() => {
  const now = Date.now();
  for (const [id, d] of tempStore)
    if (now - d.created > TEMP_TTL_MS || now - d.lastActive > TEMP_INACTIVITY)
      tempStore.delete(id);
}, 30 * 60 * 1000);

function userClient(accessToken) {
  return createClient(_SUPABASE_URL, _SUPABASE_ANON_KEY, {
    global: { headers: { Authorization: `Bearer ${accessToken}` } },
    auth: { persistSession: false },
  });
}

export const sessionStore = {
  // ── TEMP ────────────────────────────────────────────────────────────────
  initTemp(t) {
    if (!tempStore.has(t))
      tempStore.set(t, { sessions: new Map(), msgCount: 0, created: Date.now(), lastActive: Date.now() });
    return tempStore.get(t);
  },
  tempCanSend(t)  { const d = tempStore.get(t); return d ? d.msgCount < TEMP_MSG_LIMIT : false; },
  tempBump(t)     { const d = tempStore.get(t); if (d) { d.msgCount++; d.lastActive = Date.now(); } },
  getTempSessions(t) { return [...(tempStore.get(t)?.sessions.values() || [])]; },
  getTempSession(t, id) { return tempStore.get(t)?.sessions.get(id) || null; },
  createTempSession(t) {
    const d = this.initTemp(t);
    const s = { id: crypto.randomUUID(), name: 'New Chat', created: Date.now(), history: [] };
    d.sessions.set(s.id, s); d.lastActive = Date.now(); return s;
  },
  updateTempSession(t, id, patch) {
    const d = tempStore.get(t); if (!d) return null;
    const s = d.sessions.get(id); if (!s) return null;
    Object.assign(s, patch); d.lastActive = Date.now(); return s;
  },
  deleteTempSession(t, id) { tempStore.get(t)?.sessions.delete(id); },
  deleteTempAll(t)         { tempStore.get(t)?.sessions.clear(); },
  async transferTempToUser(tempId, userId, accessToken) {
    const d = tempStore.get(tempId); if (!d || !d.sessions.size) return;
    const uc = userClient(accessToken);
    const user = this._ensureUser(userId);
    for (const s of d.sessions.values()) {
      user.sessions.set(s.id, s);
      await this._persist(uc, userId, s).catch(() => {});
    }
    tempStore.delete(tempId);
  },
  // ── USERS ────────────────────────────────────────────────────────────────
  _ensureUser(uid) {
    if (!userCache.has(uid)) userCache.set(uid, { sessions: new Map(), online: new Set() });
    return userCache.get(uid);
  },
  async loadUserSessions(userId, accessToken) {
    const uc = userClient(accessToken);
    const { data, error } = await uc.from('web_sessions').select('*')
      .eq('user_id', userId).order('updated_at', { ascending: false });
    if (error) { console.error('loadUserSessions', error.message); return []; }
    const user = this._ensureUser(userId);
    for (const row of data || [])
      user.sessions.set(row.id, { id: row.id, name: row.name,
        created: new Date(row.created_at).getTime(), history: row.history || [], model: row.model });
    return [...user.sessions.values()];
  },
  getUserSessions(uid)    { return [...(userCache.get(uid)?.sessions.values() || [])]; },
  getUserSession(uid, id) { return userCache.get(uid)?.sessions.get(id) || null; },
  async createUserSession(userId, accessToken) {
    const s = { id: crypto.randomUUID(), name: 'New Chat', created: Date.now(), history: [] };
    this._ensureUser(userId).sessions.set(s.id, s);
    await this._persist(userClient(accessToken), userId, s).catch(() => {});
    return s;
  },
  async updateUserSession(userId, accessToken, sessionId, patch) {
    const user = userCache.get(userId); if (!user) return null;
    const s = user.sessions.get(sessionId); if (!s) return null;
    Object.assign(s, patch);
    await this._persist(userClient(accessToken), userId, s).catch(() => {});
    return s;
  },
  async deleteUserSession(userId, accessToken, id) {
    userCache.get(userId)?.sessions.delete(id);
    await userClient(accessToken).from('web_sessions').delete()
      .eq('id', id).eq('user_id', userId).catch(() => {});
  },
  async deleteAllUserSessions(userId, accessToken) {
    const u = userCache.get(userId); if (u) u.sessions.clear();
    await userClient(accessToken).from('web_sessions').delete()
      .eq('user_id', userId).catch(() => {});
  },
  async _persist(uc, userId, s) {
    await uc.from('web_sessions').upsert({
      id: s.id, user_id: userId, name: s.name, history: s.history || [],
      model: s.model || null, updated_at: new Date().toISOString(),
      created_at: new Date(s.created).toISOString(),
    });
  },
  markOnline(uid, ws)  { this._ensureUser(uid).online.add(ws); },
  markOffline(uid, ws) { userCache.get(uid)?.online.delete(ws); },
  // ── SHARE ────────────────────────────────────────────────────────────────
  async createShareToken(userId, accessToken, sessionId) {
    const s = this.getUserSession(userId, sessionId); if (!s) return null;
    const token = crypto.randomBytes(24).toString('base64url');
    const uc = userClient(accessToken);
    const { error } = await uc.from('shared_sessions').insert({
      token, owner_id: userId, session_snapshot: s, created_at: new Date().toISOString(),
    });
    return error ? null : token;
  },
  async resolveShareToken(token) {
    // shared_sessions SELECT is public via RLS
    const uc = createClient(_SUPABASE_URL, _SUPABASE_ANON_KEY, { auth: { persistSession: false } });
    const { data } = await uc.from('shared_sessions').select('*').eq('token', token).single();
    return data || null;
  },
  async importSharedSession(userId, accessToken, token) {
    const shared = await this.resolveShareToken(token); if (!shared) return null;
    const snap = shared.session_snapshot;
    const newSession = { ...snap, id: crypto.randomUUID(),
      name: `${snap.name} (shared)`, created: Date.now() };
    const uc = userClient(accessToken);
    this._ensureUser(userId).sessions.set(newSession.id, newSession);
    await this._persist(uc, userId, newSession).catch(() => {});
    return newSession;
  },
};

export const deviceSessionStore = {
  create(userId, ip, userAgent) {
    const token = crypto.randomBytes(32).toString('hex');
    devSessions.set(token, { token, userId, ip, userAgent,
      createdAt: new Date().toISOString(), lastSeen: new Date().toISOString(), active: true });
    return token;
  },
  getForUser(uid)  { return [...devSessions.values()].filter(s => s.userId === uid); },
  revoke(token)    { const s = devSessions.get(token); if (s) s.active = false; },
  revokeAllExcept(uid, except) {
    for (const [t, s] of devSessions) if (s.userId === uid && t !== except) s.active = false;
  },
  validate(token)  {
    const s = devSessions.get(token); if (!s || !s.active) return null;
    s.lastSeen = new Date().toISOString(); return s;
  },
};