ChatScreen 마운트 시 백그라운드 native init 으로 첫 send 시점에 native load 지연을 안 보이게 한다. 12개 AC + UX-Reviewer 의 6개 권고 모두 코드 반영. 핵심 변경: - `chat_warmup_provider.dart` — `ChatWarmupController` (Idle/Loading/Ready /Unavailable/Failed sealed state). fast path (`llm.isLoaded` → Ready), FileSystemException ↔ runtime kind 분기, _disposed race guard. - `model_lifecycle.dart` — `quickCheck()`: 2.4GB SHA-256 hashing 없이 meta_kv + 파일 존재만 보고 ready 추정 (R4 UX 권고). - `gemma_llm_service.dart` + `llm_service.dart` — `_loadingFuture` 동시 호출 가드. 두 caller 가 동시에 load() 해도 native init 은 1 회만. - `chat_screen.dart` — initState postFrameCallback 에서 warmup.start(). warmup 상태에 따라 hintText / spinner / 실패 banner 분기. AC coverage (12개): - AC1~AC8: ChatWarmupController unit (chat_warmup_test.dart 8 tests). - AC9~AC12: UX-Reviewer 의 4개 권고 (입력 enabled / send auto-activate / fast path no-flicker / 명령형 메시지 금지) — controller 레벨에서 검증. 테스트: 167 passed (1 pre-existing skip). `flutter analyze` clean. Refs #311 Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
322 lines
9.8 KiB
Dart
322 lines
9.8 KiB
Dart
import 'dart:async';
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import 'dart:io';
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import 'package:crypto/crypto.dart';
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import 'package:http/http.dart' as http;
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import 'package:path/path.dart' as p;
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import 'package:path_provider/path_provider.dart';
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import '../db/daos/meta_dao.dart';
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/// meta_kv keys (#215 README §6).
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class AiMetaKeys {
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static const optIn = 'ai_opt_in';
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static const modelPath = 'ai_model_path';
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static const modelSha = 'ai_model_sha256';
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static const downloadState = 'ai_download_state';
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static const downloadBytes = 'ai_download_bytes';
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static const all = <String>[
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optIn,
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modelPath,
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modelSha,
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downloadState,
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downloadBytes,
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];
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}
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enum ModelAvailability { ready, missing, corrupt, downloading }
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enum DownloadState { idle, downloading, paused, completed, failed }
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class DownloadProgress {
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final int bytesReceived;
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final int totalBytes; // -1 if unknown
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final DownloadState state;
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final String? errorMessage;
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const DownloadProgress({
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required this.bytesReceived,
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required this.totalBytes,
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required this.state,
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this.errorMessage,
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});
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}
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/// File-system / HTTP abstraction so tests can inject a fake.
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abstract class StorageAdapter {
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Future<Directory> supportDir();
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Future<http.StreamedResponse> rangeGet(Uri url, int from);
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}
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class _ProdStorage implements StorageAdapter {
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final http.Client client;
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_ProdStorage(this.client);
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@override
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Future<Directory> supportDir() => getApplicationSupportDirectory();
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@override
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Future<http.StreamedResponse> rangeGet(Uri url, int from) async {
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final req = http.Request('GET', url);
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if (from > 0) req.headers['Range'] = 'bytes=$from-';
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return client.send(req);
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}
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}
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/// Default config for the Gemma 4 E2B Q4_0 model. OQ-1: real URL + SHA
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/// to be pinned in Developer phase after `flutter_gemma` docs review.
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class ModelConfig {
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final Uri url;
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final String expectedSha256;
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final String filename;
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const ModelConfig({
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required this.url,
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required this.expectedSha256,
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this.filename = 'gemma4_e2b_q4.bin',
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});
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}
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/// Owns the model file: download (resumable) → SHA-256 verify → availability
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/// query → purge. All paths graceful: on failure surfaces as `corrupt` /
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/// `failed` rather than throwing through the call chain.
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class ModelLifecycle {
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final MetaDao meta;
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final ModelConfig config;
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final StorageAdapter _storage;
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ModelLifecycle({
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required this.meta,
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required this.config,
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StorageAdapter? storage,
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http.Client? httpClient,
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}) : _storage = storage ?? _ProdStorage(httpClient ?? http.Client());
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Future<String> _modelPath() async {
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final dir = await _storage.supportDir();
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return p.join(dir.path, config.filename);
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}
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/// Lightweight ready estimate for warm-up gating (#311).
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///
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/// Skips the SHA-256 re-hash that [checkAvailability] performs — for a
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/// ~2.4GB model file the hash is wall-clock-noticeable on every screen
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/// mount. Returns `ready` iff:
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/// - opt_in is true
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/// - download_state is not in-progress
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/// - meta_kv has both ai_model_path and ai_model_sha256
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/// - the file exists on disk
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///
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/// Tampering/disk-corruption detection is left to [checkAvailability]'s
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/// cold path (SettingsScreen). The trade-off is documented in
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/// `docs/design/311-llm-warmup/README.md` §11 R4.
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Future<ModelAvailability> quickCheck() async {
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try {
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final optIn = await meta.find(AiMetaKeys.optIn);
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if (optIn != 'true') return ModelAvailability.missing;
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final state = await meta.find(AiMetaKeys.downloadState);
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if (state == 'downloading' || state == 'paused') {
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return ModelAvailability.downloading;
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}
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final pathStr = await meta.find(AiMetaKeys.modelPath);
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if (pathStr == null) return ModelAvailability.missing;
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final expected = await meta.find(AiMetaKeys.modelSha);
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if (expected == null) return ModelAvailability.corrupt;
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final file = File(pathStr);
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if (!file.existsSync()) return ModelAvailability.missing;
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return ModelAvailability.ready;
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} catch (_) {
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return ModelAvailability.corrupt;
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}
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}
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Future<ModelAvailability> checkAvailability() async {
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try {
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final optIn = await meta.find(AiMetaKeys.optIn);
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if (optIn != 'true') return ModelAvailability.missing;
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final state = await meta.find(AiMetaKeys.downloadState);
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if (state == 'downloading' || state == 'paused') {
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return ModelAvailability.downloading;
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}
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final pathStr = await meta.find(AiMetaKeys.modelPath);
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if (pathStr == null) return ModelAvailability.missing;
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final file = File(pathStr);
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if (!file.existsSync()) return ModelAvailability.missing;
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final expected = await meta.find(AiMetaKeys.modelSha);
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if (expected == null) return ModelAvailability.corrupt;
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final actual = await _hashFile(file);
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if (actual != expected) return ModelAvailability.corrupt;
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return ModelAvailability.ready;
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} catch (_) {
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return ModelAvailability.corrupt;
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}
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}
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Future<String> _hashFile(File file) async {
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final digest = await sha256.bind(file.openRead()).first;
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return digest.toString();
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}
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/// Streams resumable download progress. Mutates `meta_kv` as it goes.
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/// Errors are emitted as `DownloadProgress(state: failed)` rather than
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/// thrown — UI listens to the stream.
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Stream<DownloadProgress> download() async* {
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final path = await _modelPath();
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final tempPath = '$path.tmp';
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final tempFile = File(tempPath);
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int existing =
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tempFile.existsSync() ? await tempFile.length() : 0;
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await meta.put(AiMetaKeys.downloadState, 'downloading');
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await meta.put(AiMetaKeys.downloadBytes, existing.toString());
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yield DownloadProgress(
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bytesReceived: existing,
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totalBytes: -1,
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state: DownloadState.downloading,
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);
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http.StreamedResponse response;
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try {
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response = await _storage.rangeGet(config.url, existing);
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} catch (e) {
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await meta.put(AiMetaKeys.downloadState, 'paused');
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yield DownloadProgress(
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bytesReceived: existing,
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totalBytes: -1,
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state: DownloadState.failed,
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errorMessage: 'network: $e',
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);
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return;
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}
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final status = response.statusCode;
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if (status != 200 && status != 206) {
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// 416 etc. — restart from 0.
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if (tempFile.existsSync()) await tempFile.delete();
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existing = 0;
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await meta.put(AiMetaKeys.downloadBytes, '0');
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yield DownloadProgress(
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bytesReceived: 0,
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totalBytes: -1,
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state: DownloadState.failed,
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errorMessage: 'http $status',
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);
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return;
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}
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final contentLength = response.contentLength ?? 0;
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final total = status == 206 ? existing + contentLength : contentLength;
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final sink = tempFile.openWrite(mode: FileMode.append);
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int received = existing;
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try {
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await for (final chunk in response.stream) {
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sink.add(chunk);
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received += chunk.length;
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await meta.put(AiMetaKeys.downloadBytes, received.toString());
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yield DownloadProgress(
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bytesReceived: received,
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totalBytes: total,
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state: DownloadState.downloading,
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);
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}
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await sink.flush();
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await sink.close();
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} catch (e) {
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await sink.close();
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await meta.put(AiMetaKeys.downloadState, 'paused');
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yield DownloadProgress(
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bytesReceived: received,
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totalBytes: total,
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state: DownloadState.failed,
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errorMessage: 'stream: $e',
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);
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return;
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}
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// Verify SHA-256.
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final finalFile = File(path);
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await tempFile.rename(path);
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final sha = await _hashFile(finalFile);
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if (sha != config.expectedSha256) {
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await finalFile.delete();
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await meta.put(AiMetaKeys.downloadState, 'failed');
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yield DownloadProgress(
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bytesReceived: received,
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totalBytes: total,
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state: DownloadState.failed,
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errorMessage: 'sha mismatch',
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);
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return;
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}
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await meta.put(AiMetaKeys.modelPath, path);
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await meta.put(AiMetaKeys.modelSha, sha);
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await meta.put(AiMetaKeys.downloadState, 'completed');
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yield DownloadProgress(
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bytesReceived: received,
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totalBytes: total,
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state: DownloadState.completed,
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);
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}
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/// opt-out: delete model file + clear all ai_* meta keys (except opt_in
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/// which the caller toggles). Returns freed bytes (0 if nothing existed).
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/// Idempotent.
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///
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/// F2 hardening (#218): per-file try/catch so a single OS-level delete
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/// failure (locked file, permission flake) does not abort the whole
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/// purge — meta keys still get cleared and the orphan file becomes a
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/// background storage concern rather than a stuck "opt-out failed"
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/// state. The freed-bytes count only reflects successful deletes.
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Future<int> purge() async {
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int freed = 0;
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final pathStr = await meta.find(AiMetaKeys.modelPath);
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if (pathStr != null) {
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try {
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final f = File(pathStr);
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if (f.existsSync()) {
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final size = await f.length();
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await f.delete();
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freed += size;
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}
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} catch (_) {
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// Best-effort; leave orphan file, continue purging meta.
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}
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}
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try {
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final tempPath = '${await _modelPath()}.tmp';
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final temp = File(tempPath);
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if (temp.existsSync()) {
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final size = await temp.length();
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await temp.delete();
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freed += size;
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}
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} catch (_) {
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// Same as above — best-effort cleanup of the .tmp partial.
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}
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for (final k in [
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AiMetaKeys.modelPath,
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AiMetaKeys.modelSha,
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AiMetaKeys.downloadState,
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AiMetaKeys.downloadBytes,
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]) {
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try {
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await meta.remove(k);
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} catch (_) {
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// Meta is a single sqlite table; failures here are rare.
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// Swallow so the loop completes even if one key errors.
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}
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}
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return freed;
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}
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}
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