Completes milestone 3: frames render over the map, play as a loop, and can be scrubbed, with the legend drawn from the manifest rather than a constant that could drift from what the worker actually rendered. The overlay alternates two MapLibre image sources. Updating one source in place flickers, because the layer briefly shows a half-written texture; adding every frame as its own layer avoids that but pins them all in GPU memory, and twenty 512x512 RGBA frames is about 80 MB. Two buffers cost the same whether the timeline holds six frames or sixty. Platform-channel work is serialised because `show` is called faster than the round trip completes during playback, and overlapping updates would swap visibility out of order and strobe. Prefetching loads a window around the playhead, nearest first and forward before backward, since playback moves forward and that frame is needed soonest. `FrameCache` is byte-budgeted rather than entry-counted because frame size tracks how much precipitation is on screen, and it evicts by distance from the playhead: plain LRU would keep frames the prefetcher touched a moment ago even after the playhead moved to the far end of the timeline. Also adds DpcRadarSource, which reads published frames from our CDN and never from the DPC API. Without it, the `dpc` adapter would have had to fall back to mock, putting demo frames on screen under the label of live data — exactly the confusion the adapter split exists to prevent. It now fails naming the missing setting instead. Running it on the emulator caught three things the tests had not: - The notifier wrote to `state` from inside `build()`, which Riverpod rejects as an uninitialised provider. That broke startup, not just tests. - Eight-month-old demo frames rendered as "Aggiornato 342535 minuti fa". The age formatter now steps up to hours and days. - Demo mode sat permanently behind a stale-data warning and so never showed the working state it exists to demonstrate. MockRadarSource now shifts the bundled timestamps onto the present, leaving images, order and spacing untouched, so the timeline behaves exactly as it would on live data. Corrects docs/stack-decisions.md, which described a disk cache that was not built: mock frames already live in the asset bundle, so a disk layer belongs with the network adapter where it would save a real request. Verified: analyze clean, 129 tests passing, and on the emulator the loop advances, wraps, and reports "Aggiornato ora". Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
104 lines
3.3 KiB
Dart
104 lines
3.3 KiB
Dart
import 'dart:typed_data';
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import 'package:dio/dio.dart';
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import 'radar_manifest.dart';
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import 'radar_source.dart';
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/// Radar frames published by our worker from Radar-DPC data.
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///
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/// This talks to **our CDN**, never to `radar-api.protezionecivile.it`. The DPC
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/// API hands out pre-signed URLs that expire in minutes, serves whole-Italy
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/// GeoTIFFs a phone has no business decoding, and would be hit by every install
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/// at once. The worker is the only client of that API; the app reads the flat
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/// files it publishes.
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///
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/// The manifest URL is the unit of configuration: frame paths inside it are
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/// relative, so the whole published tree can move between hosts without
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/// republishing the frames.
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class DpcRadarSource implements RadarSource {
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DpcRadarSource({required this.manifestUrl, Dio? client})
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: _client =
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client ??
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Dio(
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BaseOptions(
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connectTimeout: const Duration(seconds: 10),
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receiveTimeout: const Duration(seconds: 20),
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// Frames are PNG and the manifest is JSON; let this class decide
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// how to read each rather than have Dio guess.
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responseType: ResponseType.bytes,
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),
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);
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/// Absolute URL of `manifest.json`.
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final String manifestUrl;
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final Dio _client;
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RadarManifest? _cached;
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/// Drops the memoised manifest so the next read goes back to the CDN.
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void invalidate() => _cached = null;
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@override
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Future<RadarManifest> getLatestManifest() async {
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final Response<List<int>> response;
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try {
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response = await _client.get<List<int>>(manifestUrl);
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} on DioException catch (error) {
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throw RadarUnavailableException(
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'could not fetch the radar manifest from $manifestUrl',
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cause: error,
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);
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}
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final body = response.data;
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if (body == null || body.isEmpty) {
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throw RadarUnavailableException(
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'radar manifest at $manifestUrl is empty',
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);
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}
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try {
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return _cached = RadarManifest.parse(String.fromCharCodes(body));
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} on FormatException catch (error) {
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// A malformed manifest means the worker published something wrong. There
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// is nothing the app can do about it, and reaching for a stale copy is
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// the caller's decision, so it surfaces as plain unavailability.
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throw RadarUnavailableException(
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'radar manifest at $manifestUrl is malformed',
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cause: error,
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);
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}
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}
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@override
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Future<List<RadarFrame>> getFrames() async {
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final cached = _cached;
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if (cached != null) return cached.frames;
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return (await getLatestManifest()).frames;
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}
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@override
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Future<Uint8List> loadFrameBytes(RadarFrame frame) async {
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final url = resolveFrameUrl(frame);
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try {
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final response = await _client.get<List<int>>(url);
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final body = response.data;
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if (body == null || body.isEmpty) {
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throw RadarUnavailableException('radar frame at $url is empty');
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}
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return Uint8List.fromList(body);
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} on DioException catch (error) {
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throw RadarUnavailableException(
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'could not fetch the radar frame at $url',
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cause: error,
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);
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}
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}
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/// Resolves a frame's manifest-relative path against [manifestUrl].
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String resolveFrameUrl(RadarFrame frame) =>
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Uri.parse(manifestUrl).resolve(frame.path).toString();
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}
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