Files
sharedinbox/lib/core/sync/account_sync_manager.dart
T
Thomas GüttlerandClaude Sonnet 4.6 4bf157c550 feat: IMAP sync all folders, not just INBOX
Move ImapConnectFn typedef to imap_client_factory so it can be shared.
Inject it into AccountSyncManager/_AccountSync so tests can substitute a
no-op instead of hitting a real IMAP server.

_AccountSync._sync() now iterates all mailboxes from the repository after
syncMailboxes, mirroring the JMAP loop that was already in place.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-04-19 16:41:54 +02:00

259 lines
7.1 KiB
Dart

import 'dart:async';
import 'package:enough_mail/enough_mail.dart' as imap;
import '../models/account.dart';
import '../repositories/account_repository.dart';
import '../repositories/email_repository.dart';
import '../repositories/mailbox_repository.dart';
import '../utils/logger.dart';
import '../../data/imap/imap_client_factory.dart';
/// Manages background sync for all accounts.
///
/// IMAP accounts get an IDLE-based sync loop (_AccountSync).
/// JMAP accounts get a polling-based sync loop (_JmapAccountSync).
class AccountSyncManager {
AccountSyncManager(
this._accounts,
this._mailboxes,
this._emails, {
ImapConnectFn imapConnect = connectImap,
}) : _imapConnect = imapConnect;
final AccountRepository _accounts;
final MailboxRepository _mailboxes;
final EmailRepository _emails;
final ImapConnectFn _imapConnect;
final Map<String, _SyncLoop> _active = {};
StreamSubscription<List<Account>>? _accountsSub;
void start() {
_accountsSub = _accounts.observeAccounts().listen((accounts) {
final currentIds = accounts.map((a) => a.id).toSet();
for (final account in accounts) {
if (_active.containsKey(account.id)) continue;
final loop = switch (account.type) {
AccountType.imap =>
_AccountSync(account, _accounts, _mailboxes, _emails, _imapConnect),
AccountType.jmap =>
_JmapAccountSync(account, _mailboxes, _emails, _accounts),
};
_active[account.id] = loop;
loop.start();
}
for (final id in _active.keys.toList()) {
if (!currentIds.contains(id)) {
_active.remove(id)?.stop();
}
}
});
}
void dispose() {
_accountsSub?.cancel();
for (final s in _active.values) {
s.stop();
}
_active.clear();
}
}
// ── Shared interface ──────────────────────────────────────────────────────────
abstract class _SyncLoop {
void start();
void stop();
}
// ── IMAP ──────────────────────────────────────────────────────────────────────
class _AccountSync implements _SyncLoop {
_AccountSync(this.account, this._accounts, this._mailboxes, this._emails,
this._imapConnect);
final Account account;
final AccountRepository _accounts;
final MailboxRepository _mailboxes;
final EmailRepository _emails;
final ImapConnectFn _imapConnect;
imap.ImapClient? _idleClient;
bool _running = false;
int _backoffSeconds = 5;
Completer<void>? _stopSignal;
@override
void start() {
_running = true;
_loop();
}
@override
void stop() {
_running = false;
if (_stopSignal != null && !_stopSignal!.isCompleted) {
_stopSignal!.complete();
}
_idleClient?.logout().ignore();
_idleClient = null;
}
Future<void> _loop() async {
while (_running) {
try {
await _sync();
await _idle();
_backoffSeconds = 5;
} catch (e, st) {
log(
'Sync failed for ${account.email}, retrying in ${_backoffSeconds}s',
error: e,
stackTrace: st,
);
await Future.delayed(Duration(seconds: _backoffSeconds));
_backoffSeconds = (_backoffSeconds * 2).clamp(5, 300);
}
}
}
Future<void> _sync() async {
await _mailboxes.syncMailboxes(account.id);
final mailboxes = await _mailboxes.observeMailboxes(account.id).first;
for (final mailbox in mailboxes) {
if (!_running) break;
await _emails.syncEmails(account.id, mailbox.path);
}
}
Future<void> _idle() async {
if (!_running) return;
_stopSignal = Completer<void>();
final password = await _accounts.getPassword(account.id);
final username =
account.username.isNotEmpty ? account.username : account.email;
final client = await _imapConnect(account, username, password);
_idleClient = client;
try {
await client.selectMailboxByPath('INBOX');
final newMessageCompleter = Completer<void>();
final sub = client.eventBus
.on<imap.ImapEvent>()
.where(
(e) =>
e is imap.ImapMessagesExistEvent ||
e is imap.ImapExpungeEvent,
)
.listen((_) {
if (!newMessageCompleter.isCompleted) newMessageCompleter.complete();
});
await client.idleStart();
// Cap IDLE at 25 minutes (RFC 2177). Also wakes up when stop() is
// called or a new message / expunge event arrives.
await Future.any([
newMessageCompleter.future,
Future.delayed(const Duration(minutes: 25)),
_stopSignal!.future,
]);
await client.idleDone();
await sub.cancel();
} finally {
await client.logout();
_idleClient = null;
_stopSignal = null;
}
}
}
// ── JMAP ──────────────────────────────────────────────────────────────────────
class _JmapAccountSync implements _SyncLoop {
_JmapAccountSync(this.account, this._mailboxes, this._emails, this._accounts);
final Account account;
final MailboxRepository _mailboxes;
final EmailRepository _emails;
final AccountRepository _accounts;
bool _running = false;
int _backoffSeconds = 5;
Completer<void>? _stopSignal;
static const _pollInterval = Duration(seconds: 30);
@override
void start() {
_running = true;
_loop();
}
@override
void stop() {
_running = false;
if (_stopSignal != null && !_stopSignal!.isCompleted) {
_stopSignal!.complete();
}
}
Future<void> _loop() async {
while (_running) {
try {
await _sync();
_backoffSeconds = 5;
await _wait();
} catch (e, st) {
log(
'JMAP sync failed for ${account.email}, retrying in ${_backoffSeconds}s',
error: e,
stackTrace: st,
);
await _waitSeconds(_backoffSeconds);
_backoffSeconds = (_backoffSeconds * 2).clamp(5, 300);
}
}
}
Future<void> _sync() async {
final password = await _accounts.getPassword(account.id);
// Drain outbound queue before pulling from server.
await _emails.flushPendingChanges(account.id, password);
await _mailboxes.syncMailboxes(account.id);
final mailboxes = await _mailboxes.observeMailboxes(account.id).first;
for (final mailbox in mailboxes) {
if (!_running) break;
await _emails.syncEmails(account.id, mailbox.path);
}
}
Future<void> _wait() async {
if (!_running) return;
_stopSignal = Completer<void>();
await Future.any([
Future.delayed(_pollInterval),
_stopSignal!.future,
]);
_stopSignal = null;
}
Future<void> _waitSeconds(int seconds) async {
if (!_running) return;
_stopSignal = Completer<void>();
await Future.any([
Future.delayed(Duration(seconds: seconds)),
_stopSignal!.future,
]);
_stopSignal = null;
}
}