Partial fix for #1809. Red commit:c9c782b5(CI runs on PR open; standalone red-branch CI not configured — local repro proves the gate, see below). ## Problem Issue #1809: at startup the background fill loader logged `background load FAILED` within seconds and `backgroundLoadFailed=true` was set, leaving the coverage gate tripped even though LoadChunked itself completed normally. ## Root cause `main.go:225-245` spawned `go store.loadBackgroundChunks()` as soon as `FirstChunkReady` fired (chunk #1 = 10000 tx). But `s.oldestLoaded` is only assigned at the end of `LoadChunked` (`chunked_load.go:329-333`), ~tens of seconds later. The bg loader read `oldestLoaded==""` at `store.go:1462-1466`, broke out immediately, walked zero chunks, and the coverage gate at `store.go:1543-1554` flipped `backgroundLoadFailed=true`. ## Fix (initial) Introduce `PacketStore.RunStartupLoad(chunkSize)` (`chunked_load.go`). It runs `LoadChunked` first; only on success and only when `hotStartupHours > 0` does it call `loadBackgroundChunks`. `main.go` invokes `RunStartupLoad` in the same goroutine pattern as before, so `FirstChunkReady` still unblocks the HTTP listener bind at chunk #1 — only the bg loader is gated. ## Round-1 followups (this push) Reviewer-driven hardening on top of the initial fix: ### Production behavior (commitdb5592f6) - **Steady-state semantics tightened.** `RunStartupLoad` now picks a terminal state on every branch: - LoadChunked error → `backgroundLoadFailed=true` with captured error (was: `done=false, failed=false` indefinite). - `hotStartupHours == 0` → `backgroundLoadDone=true` immediately, `progress=100` (was: `done=false` forever → healthz stuck on `backgroundLoadComplete=false`). - Successful hot-window path → terminal state is whatever `loadBackgroundChunks` sets (#1690 semantics, unchanged). - **Runtime invariant assertion (A7).** `loadBackgroundChunks` panics when `oldestLoaded==""` and packets exist — a future refactor that re-introduces the parallel-spawn race fails loudly instead of silently shipping the same coverage regression. - **`RunStartupLoad` cleanup.** Inlined the superfluous goroutine + channel that wrapped `LoadChunked` (direct call is equivalent). - **Logging.** Added an INFO line between `LoadChunked` completion and bg-loader start (the #1809 post-mortem needed exactly this signal). Fixed the lying `"background load will start"` log that fired even on the `hotStartupHours==0` branch. - **Immutability documented.** `hotStartupHours` is now explicitly documented as immutable post-construction, so the lock-free reads in `LoadChunked` / `RunStartupLoad` / `loadBackgroundChunks` are sound. ### Test coverage (commitsdb5592f6+e9e12acf) - **Tautology fix (B1, commite9e12acf).** The original `Test1809_StartupLoad_BgLoaderSeesOldestLoaded` fixture seeded all 100 rows inside the 1h hot window, so `LoadChunked` alone produced coverage=1.0 — the test passed even if `loadBackgroundChunks` was a no-op. Rewrote the fixture to spread 100 rows over 14 days with `hotStartupHours=24`, so only ~7 rows are hot and the remaining ~93 MUST be loaded by the bg loader for the assertions to hold. Original red-commit assertions kept intact; added `len(packets) > hot-only cap` and `oldestLoaded < hot-cutoff - 12h` assertions on top. - **New tests (commitdb5592f6, `runstartup_load_test.go`)** codify the new contracts: - `TestRunStartupLoad_HotStartupHoursZero_SetsDoneImmediately` - `TestRunStartupLoad_LoadChunkedError_SetsFailedTerminal` - `TestRunStartupLoad_EmptyDB_SetsDoneTerminal` - `TestRunStartupLoad_BgLoaderRunsAfterLoadChunkedSets_OldestLoaded` - `TestLoadBackgroundChunks_PanicsOnOldestLoadedEmpty_Invariant` ### Docs (commit70fa16f7) - Package-level doc in `chunked_load.go` now documents `RunStartupLoad` as the orchestrator entry point alongside `LoadChunked` / `loadStatusMiddleware` / `OnChunkLoaded`. ### Preflight (commiteec1b48c) - Test-fixture DDL annotated with `// PREFLIGHT: async=true reason="unit-test fixture"` so the async-migration gate distinguishes ephemeral test schema from prod migration paths. ## What's still NOT fixed (left intentionally open) This PR addresses the startup race specifically. Issue #1809 will be closed by the operator after observing healthy startup logs (`background load complete: ... coverage=100.0%`) in prod for a full restart cycle. Do not auto-close — leave open until the operator verifies. ## Test Local repro (red branch state, before green commit): `go test ./cmd/server/ -run Test1809_StartupLoad_BgLoaderSeesOldestLoaded` → FAIL on assertion `backgroundLoadFailed=true ... oldest="2026-06-30T18:56:09Z"`. After green commit + round-1 followups: PASS. Full `cmd/server/...` suite: ok in ~70s. ## Risk Low — startup path only. New behavior gates surfaced by the new tests; coverage-gate semantics unchanged. Runtime panic is a new failure mode but only fires on a state (`oldestLoaded=="" && len(packets)>0`) that is unreachable on the current code path — it exists solely as a refactor tripwire. --------- Co-authored-by: mc-bot <bot@corescope.local> Co-authored-by: openclaw-bot <bot@openclaw.local> Co-authored-by: meshcore-bot <bot@meshcore>
CoreScope
High-performance mesh network analyzer powered by Go. Sub-millisecond packet queries, ~300 MB memory for 56K+ packets, real-time WebSocket broadcast, full channel decryption.
Self-hosted, open-source MeshCore packet analyzer. Collects MeshCore packets via MQTT, decodes them in real time, and presents a full web UI with live packet feed, interactive maps, channel chat, packet tracing, and per-node analytics.
⚡ Performance
The Go backend serves all 40+ API endpoints from an in-memory packet store with 5 indexes (hash, txID, obsID, observer, node). SQLite is for persistence only — reads never touch disk.
| Metric | Value |
|---|---|
| Packet queries | < 1 ms (in-memory) |
| All API endpoints | < 100 ms |
| Memory (56K packets) | ~300 MB (vs 1.3 GB on Node.js) |
| WebSocket broadcast | Real-time to all connected browsers |
| Channel decryption | AES-128-ECB with rainbow table |
| GOMEMLIMIT (memory-constrained hosts) | set to ≥1.5× working set (e.g. 1536 MiB on a 2 GB Pi for a ~1 GB store). Lower values trigger a GC death-spiral. Configure via the GOMEMLIMIT env var or runtime.maxMemoryMB in config.json; env wins. Applies to both server and ingestor. See #1010. |
See PERFORMANCE.md for full benchmarks.
✨ Features
📡 Live Trace Map
Real-time animated map with packet route visualization, VCR-style playback controls, and a retro LCD clock. Replay the last 24 hours of mesh activity, scrub through the timeline, or watch packets flow live at up to 4× speed.
📦 Packet Feed
Filterable real-time packet stream with byte-level breakdown, Excel-like resizable columns, and a detail pane. Toggle "My Nodes" to focus on your mesh.
🗺️ Network Overview
At-a-glance mesh stats — node counts, packet volume, observer coverage.
📊 Node Analytics
Per-node deep dive with interactive charts: activity timeline, packet type breakdown, SNR distribution, hop count analysis, peer network graph, and hourly heatmap.
💬 Channel Chat
Decoded group messages with sender names, @mentions, timestamps — like reading a Discord channel for your mesh.
📱 Mobile Ready
Full experience on your phone — proper touch controls, iOS safe area support, and a compact VCR bar.
And More
- 11 Analytics Tabs — RF, topology, channels, hash stats, distance, route patterns, and more
- Node Directory — searchable list with role tabs, detail panel, QR codes, advert timeline
- Packet Tracing — follow individual packets across observers with SNR/RSSI timeline
- Observer Status — health monitoring, packet counts, uptime, per-observer analytics
- Hash Collision Matrix — detect address collisions across the mesh
- Channel Key Auto-Derivation — hashtag channels (
#channel) keys derived via SHA256 - Multi-Broker MQTT — connect to multiple brokers with per-source IATA filtering
- Dark / Light Mode — auto-detects system preference, map tiles swap too
- Theme Customizer — design your theme in-browser, export as
theme.json - Global Search — search packets, nodes, and channels (Ctrl+K)
- Shareable URLs — deep links to packets, channels, and observer detail pages
- Protobuf API Contract — typed API definitions in
proto/ - Accessible — ARIA patterns, keyboard navigation, screen reader support
Quick Start
Pre-built Image (Recommended)
No build step required — just run:
docker run -d --name corescope \
--restart=unless-stopped \
-p 80:80 -p 1883:1883 \
-v /your/data:/app/data \
ghcr.io/kpa-clawbot/corescope:latest
Open http://localhost — done. No config file needed; CoreScope starts with sensible defaults.
For HTTPS with a custom domain, add -p 443:443 and mount your Caddyfile:
docker run -d --name corescope \
--restart=unless-stopped \
-p 80:80 -p 443:443 -p 1883:1883 \
-v /your/data:/app/data \
-v /your/Caddyfile:/etc/caddy/Caddyfile:ro \
-v /your/caddy-data:/data/caddy \
ghcr.io/kpa-clawbot/corescope:latest
Disable built-in services with -e DISABLE_MOSQUITTO=true or -e DISABLE_CADDY=true, or drop a .env file in your data volume. See docs/deployment.md for the full reference.
Build from Source
git clone https://github.com/Kpa-clawbot/CoreScope.git
cd CoreScope
./manage.sh setup
The setup wizard walks you through config, domain, HTTPS, build, and run.
./manage.sh status # Health check + packet/node counts
./manage.sh logs # Follow logs
./manage.sh backup # Backup database
./manage.sh update # Pull latest + rebuild + restart
./manage.sh mqtt-test # Check if observer data is flowing
./manage.sh help # All commands
Configure
Copy config.example.json to config.json and edit:
{
"port": 3000,
"mqtt": {
"broker": "mqtt://localhost:1883",
"topic": "meshcore/+/+/packets"
},
"mqttSources": [
{
"name": "remote-feed",
"broker": "mqtts://remote-broker:8883",
"topics": ["meshcore/+/+/packets"],
"username": "user",
"password": "pass",
"iataFilter": ["SJC", "SFO", "OAK"]
}
],
"channelKeys": {
"public": "8b3387e9c5cdea6ac9e5edbaa115cd72"
},
"defaultRegion": "SJC"
}
| Field | Description |
|---|---|
port |
HTTP server port (default: 3000) |
mqtt.broker |
Local MQTT broker URL ("" to disable) |
mqttSources |
External MQTT broker connections (optional) |
channelKeys |
Channel decryption keys (hex). Hashtag channels auto-derived via SHA256 |
defaultRegion |
Default IATA region code for the UI |
dbPath |
SQLite database path (default: data/meshcore.db) |
Environment Variables
| Variable | Description |
|---|---|
PORT |
Override config port |
DB_PATH |
Override SQLite database path |
Architecture
┌─────────────────────────────────────────────┐
│ Docker Container │
│ │
Observer → USB → │ Mosquitto ──→ Go Ingestor ──→ SQLite DB │
meshcoretomqtt → MQTT ──→│ │ │
│ Go HTTP Server ──→ WebSocket │
│ │ │ │
│ Caddy (HTTPS) ←───────┘ │
└────────────────────┼────────────────────────┘
│
Browser
Two-process model: The Go ingestor handles MQTT ingestion and packet decoding. The Go HTTP server loads all packets into an in-memory store on startup (5 indexes for fast lookups) and serves the REST API + WebSocket broadcast. Both are managed by supervisord inside a single container with Caddy for HTTPS and Mosquitto for local MQTT.
MQTT Setup
- Flash an observer node with
MESH_PACKET_LOGGING=1build flag - Connect via USB to a host running meshcoretomqtt
- Configure meshcoretomqtt with your IATA region code and MQTT broker address
- Packets appear on topic
meshcore/{IATA}/{PUBKEY}/packets
Or POST raw hex packets to POST /api/packets for manual injection.
Project Structure
corescope/
├── cmd/
│ ├── server/ # Go HTTP server + WebSocket + REST API
│ │ ├── main.go # Entry point
│ │ ├── routes.go # 40+ API endpoint handlers
│ │ ├── store.go # In-memory packet store (5 indexes)
│ │ ├── db.go # SQLite persistence layer
│ │ ├── decoder.go # MeshCore packet decoder
│ │ ├── websocket.go # WebSocket broadcast
│ │ └── *_test.go # 327 test functions
│ └── ingestor/ # Go MQTT ingestor
│ ├── main.go # MQTT subscription + packet processing
│ ├── decoder.go # Packet decoder (shared logic)
│ ├── db.go # SQLite write path
│ └── *_test.go # 53 test functions
├── proto/ # Protobuf API definitions
├── public/ # Vanilla JS frontend (no build step)
│ ├── index.html # SPA shell
│ ├── app.js # Router, WebSocket, utilities
│ ├── packets.js # Packet feed + hex breakdown
│ ├── map.js # Leaflet map + route visualization
│ ├── live.js # Live trace + VCR playback
│ ├── channels.js # Channel chat
│ ├── nodes.js # Node directory + detail views
│ ├── analytics.js # 11-tab analytics dashboard
│ └── style.css # CSS variable theming (light/dark)
├── docker/
│ ├── supervisord-go.conf # Process manager (server + ingestor)
│ ├── mosquitto.conf # MQTT broker config
│ ├── Caddyfile # Reverse proxy + HTTPS
│ └── entrypoint-go.sh # Container entrypoint
├── Dockerfile # Multi-stage Go build + Alpine runtime
├── config.example.json # Example configuration
├── test-*.js # Node.js test suite (frontend + legacy)
└── tools/ # Generators, E2E tests, utilities
For Developers
Test Suite
380 Go tests covering the backend, plus 150+ Node.js tests for the frontend and legacy logic, plus 49 Playwright E2E tests for browser validation.
# Go backend tests
cd cmd/server && go test ./... -v
cd cmd/ingestor && go test ./... -v
# Node.js frontend + integration tests
npm test
# Playwright E2E (requires running server on localhost:3000)
node test-e2e-playwright.js
Generate Test Data
node tools/generate-packets.js --api --count 200
Migrating from Node.js
If you're running an existing Node.js deployment, see docs/go-migration.md for a step-by-step guide. The Go engine reads the same SQLite database and config.json — no data migration needed.
Contributing
Contributions welcome. Please read AGENTS.md for coding conventions, testing requirements, and engineering principles before submitting a PR.
Live instance: analyzer.00id.net — all API endpoints are public, no auth required.
API Documentation: CoreScope auto-generates an OpenAPI 3.0 spec. Browse the interactive Swagger UI at /api/docs or fetch the machine-readable spec at /api/spec.
License
GPL-3.0-or-later




