7df7b5ff85
Offline writes now queue + apply optimistically instead of throwing. On reconnect, the queue drains automatically; conflicts and rejections surface as one-time SnackBars so the user knows their edit didn't land. - Drift schema v3: `pending_writes` table (verb + payload + baseline + tries + last_error). Negative ids serve as cache placeholders for offline-created rows until replay assigns the server id. - Each write repository (notes, tasks, projects, milestones, events) now catches NetworkException, applies the change to cache (with a fresh `nextTempId()` for creates), and enqueues the API call. - Edits to a still-queued offline-created row coalesce into the original create payload — only one server call per row, in order. - Deletes of still-queued offline-created rows drop the queue entry and the cache row; no server call ever happens. - New WriteQueue service drains the queue oldest-first. Server-wins on `updated_at` baseline check (notes/tasks/projects); last-writer-wins for milestones/events (no getOne available). 4xx → drop + surface as `rejected`; conflict → drop + `overwritten`; 404 on update → drop + `missing`; 5xx/network → keep + retry next online cycle. - Replay fires on AuthStatus → authenticated transitions (cold-start, came-back-online, login). - OfflineBanner shows "Retry (N)" with the pending-writes count. - Distinct ServerException added so 4xx no longer masquerade as NetworkException — the queue can drop them instead of looping. flutter analyze clean; 21 tests pass (3 new for QueueFailure messaging). Phase 4 (read-only UI indicators on cached/temp rows) still ahead. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
180 lines
4.9 KiB
Dart
180 lines
4.9 KiB
Dart
import '../../core/exceptions.dart';
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import '../api/notes_api.dart';
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import '../local/database.dart';
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import '../models/note.dart';
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/// Notes repository with read-through caching for Tier 2 offline support
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/// (Phase 1+2) and offline-write queueing (Phase 3).
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///
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/// Reads attempt the network first; on success the response is written to
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/// the local Drift cache. On `NetworkException` the read falls back to the
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/// cache (rethrowing if the cache is empty so the UI can show its
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/// fresh-install empty state).
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///
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/// Writes hit the server then sync the cache. On `NetworkException` the
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/// write is queued in `pending_writes` and applied optimistically to the
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/// cache (negative temp-id for creates, in-place update for edits, removal
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/// for deletes). Subsequent edits to a temp-id row are coalesced into the
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/// queued create — only one server call is made per offline-created row.
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///
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/// `AuthStatus.offline` is owned by `AuthNotifier.verify()` (a periodic
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/// heartbeat). This repository deliberately does not poke that state.
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class NotesRepository {
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final NotesApi _api;
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final FabledDatabase _db;
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const NotesRepository(this._api, this._db);
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Future<List<Note>> getAll() async {
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try {
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final notes = await _api.getAll();
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await _db.replaceAllNotes(notes);
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return notes;
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} on NetworkException {
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final cached = await _db.getAllNotes();
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if (cached.isEmpty) rethrow;
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return cached;
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}
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}
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Future<Note> getOne(int id) async {
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try {
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final note = await _api.getOne(id);
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await _db.upsertNote(note);
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return note;
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} on NetworkException {
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final cached = await _db.getNote(id);
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if (cached == null) rethrow;
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return cached;
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}
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}
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Future<Note> create(
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String title,
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String body, {
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List<String> tags = const [],
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int? projectId,
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String noteType = 'note',
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}) async {
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try {
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final note = await _api.create(
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title,
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body,
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tags: tags,
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projectId: projectId,
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noteType: noteType,
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);
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await _db.upsertNote(note);
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return note;
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} on NetworkException {
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final tempId = await _db.nextTempId();
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final now = DateTime.now();
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final optimistic = Note(
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id: tempId,
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title: title,
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body: body,
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tags: tags,
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noteType: noteType,
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projectId: projectId,
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createdAt: now,
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updatedAt: now,
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);
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await _db.upsertNote(optimistic);
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await _db.enqueuePending(
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domain: kSyncDomainNotes,
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verb: kWriteVerbCreate,
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tempId: tempId,
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payload: {
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'title': title,
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'body': body,
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'tags': tags,
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'project_id': projectId,
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'note_type': noteType,
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},
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);
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return optimistic;
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}
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}
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Future<Note> update(
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int id,
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String title,
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String body, {
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List<String> tags = const [],
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int? projectId,
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bool clearProject = false,
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String noteType = 'note',
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}) async {
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try {
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final updated = await _api.update(
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id,
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title,
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body,
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tags: tags,
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projectId: projectId,
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clearProject: clearProject,
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noteType: noteType,
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);
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await _db.upsertNote(updated);
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return updated;
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} on NetworkException {
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final cached = await _db.getNote(id);
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if (cached == null) rethrow;
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final payload = <String, dynamic>{
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'title': title,
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'body': body,
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'tags': tags,
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'project_id': projectId,
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'clear_project': clearProject,
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'note_type': noteType,
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};
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final optimistic = cached.copyWith(
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title: title,
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body: body,
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tags: tags,
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noteType: noteType,
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projectId: clearProject ? null : projectId,
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);
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await _db.upsertNote(optimistic);
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// Edits to an offline-created row coalesce into the queued create.
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if (id < 0) {
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final queued = await _db.findQueuedCreate(kSyncDomainNotes, id);
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if (queued != null) {
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await _db.updatePendingPayload(queued.id, payload);
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return optimistic;
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}
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}
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await _db.enqueuePending(
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domain: kSyncDomainNotes,
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verb: kWriteVerbUpdate,
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targetId: id,
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payload: payload,
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baselineUpdatedAt: cached.updatedAt,
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);
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return optimistic;
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}
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}
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Future<void> delete(int id) async {
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try {
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await _api.delete(id);
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await _db.deleteNote(id);
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} on NetworkException {
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// Deleting an offline-created row that never reached the server
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// just drops the queued create — no server call needed.
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if (id < 0) {
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final queued = await _db.findQueuedCreate(kSyncDomainNotes, id);
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if (queued != null) await _db.deletePending(queued.id);
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await _db.deleteNote(id);
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return;
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}
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await _db.deleteNote(id);
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await _db.enqueuePending(
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domain: kSyncDomainNotes,
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verb: kWriteVerbDelete,
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targetId: id,
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);
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}
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}
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}
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