efitenandClaude Opus 5.5 d232072f85 feat: optional user accounts (part A: foundation) (#2129)
Part A of #2128: optional, off-by-default user accounts. With the
feature off nothing changes; with it on, visitors can register and log
in, and admins manage users and use the operator actions without the API
key.

PR #2130 (settings sync) builds on this one. The two are meant to be
merged together.

## The situation

- Operator actions (geofilter save and prune, backup, perf reset) need
the shared `apiKey`. There is no per-person right.
- Nothing in CoreScope knows who a visitor is, so the requests in #2128
that need that (#1835, #2092, #1508, #730) have nothing to build on.

## What this PR adds

**Two new Go modules**
- `internal/users`: a separate `users.db` (SQLite through
`modernc.org/sqlite`) with users, sessions, single-use tokens, an audit
log and a mail log. Passwords use argon2id.
- `internal/mailer`: a `Mailer` interface with a Brevo client (send,
delivery events, webhook parsing) and an in-memory fake for tests.

**Server (`cmd/server`)**, active only with `userManagement.enabled`
- 24 routes, all documented in OpenAPI under the `users` tag
([`auth_routes.go`](https://github.com/efiten/CoreScope/blob/feat/user-management/cmd/server/auth_routes.go)):
  - auth: register, activate, login, logout, me, forgot, reset;
- account: profile, password, email change with confirmation, sessions,
self-delete;
- admin: list, detail, disable, enable, delete, role, resend activation,
manual activation, mail status refresh;
  - a Brevo webhook, registered only when `mail.webhookSecret` is set.
- `requireAdmin` replaces `requireAPIKey` at the 7 operator call sites:
the API key **or** an admin session. With the feature off it is the old
API-key gate (`TestRequireAdminWithoutUserManagementIsAPIKeyGate`).
- `/api/config/client` gets `userManagement: {enabled: true}` only when
the service started; with the feature off the response is
byte-identical.

**Frontend**
- `auth.js` (header account control, request helper that adds the CSRF
header), `account.js` (login, register, activate, forgot, reset, confirm
email, my account), `admin-users.js` (`#/admin/users`, deep-linked
filters), `account.css` (theme tokens only).
- On phones the top-bar control is hidden, so a conditional entry goes
into the bottom-nav "More" sheet and the nav drawer.
- The customizer geofilter tab and the Perf "Reset stats" button use the
admin session when there is one.

**Config.** A `userManagement` block (`config.example.json`,
[`docs/user-guide/accounts.md`](https://github.com/efiten/CoreScope/blob/feat/user-management/docs/user-guide/accounts.md)).
The Brevo key can come from `CORESCOPE_BREVO_API_KEY`. The server
refuses to start when the block is enabled but incomplete.

## Security choices

- Session cookie `cs_session`: HttpOnly, SameSite=Lax, Secure when
`publicBaseUrl` is https. Every cookie-authenticated state change needs
the `X-CS-CSRF` header and a matching Origin.
- Activation needs the token **and** the account password. Without the
password, an attacker who keeps re-registering a known address could get
the owner to activate an account that carries the attacker's password.
- Register, forgot and email change answer identically for known and
unknown addresses. A password reset ends all sessions, a password change
ends all other sessions, and both end outstanding email-change links.
- Rate limits: login 10 per 15 minutes, register and forgot 5 per hour,
per IP and per address. The bucket count is capped. `trustedProxies`
makes the per-IP limits see real client IPs behind a proxy.
- Server logs carry `#<user id>`, never addresses, tokens or passwords;
mail-provider error texts are redacted before logging.

## Performance

No change to an existing hot path with the feature off. With it on:
- One `users.db` lookup per authenticated request (session by token
hash).
- The admin user table rebuilds its `tbody` on each filter change.
`users.List` caps the result at 1000 rows (`internal/users/users.go`),
which bounds the rebuild.
- `map[string]interface{}` in `openapi.go`: 79 before, 78 after.

## Verification

- `internal/users`, `internal/mailer` and `cmd/server`: `go vet` and `go
test -race` pass locally. 121 new Go tests.
- `cmd/server` with `-tags e2etest`: vet and the e2e hook tests pass.
- `sh test-all.sh` exits 0. `tests/unit/test-user-management-ui.js`: 67
passing (vm, real modules).
- `tests/e2e/test-user-management-e2e.js` (6 steps) passed locally
against an `e2etest` build with the fake mailer and against a
feature-off build. CI builds the `e2etest` binary and runs the suite on
a second server (`deploy.yml`).
- On a staging instance with a real Brevo key: register, activation mail
delivered, activate, admin table, "Refresh status" showing sent,
deferred, delivered, opened and clicked.

## Not in this PR

- Settings sync (#2130), the admin dashboard, approval flows and
notifications (parts B to E of #2128).
- A `requireReadAuth` mode (#1835). Sessions from this PR are what such
a mode would accept.
- Binary size and build time with `modernc.org/sqlite` linked next to
`mattn/go-sqlite3` were not measured. Their driver names do not collide.
#1992 discusses the driver choice.
- No Brevo webhook was configured on staging; delivery status there came
from "Refresh status".

---------

Co-authored-by: Claude Opus 5.5 (1M context) <noreply@anthropic.com>
2026-10-07 09:25:29 +02:00
2026-04-05 06:36:03 +00:00
2026-03-20 05:38:23 +00:00

CoreScope

Go Server Coverage Go Ingestor Coverage E2E Tests Frontend Coverage Deploy

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.

Live VCR playback — watch packets flow across the Bay Area mesh

📦 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.

Packets view

🗺️ Network Overview

At-a-glance mesh stats — node counts, packet volume, observer coverage.

Network overview

📊 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.

Node analytics

💬 Channel Chat

Decoded group messages with sender names, @mentions, timestamps — like reading a Discord channel for your mesh.

Channels

📱 Mobile Ready

Full experience on your phone — proper touch controls, iOS safe area support, and a compact VCR bar.

Live view on iOS

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

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

  1. Flash an observer node with MESH_PACKET_LOGGING=1 build flag
  2. Connect via USB to a host running meshcoretomqtt
  3. Configure meshcoretomqtt with your IATA region code and MQTT broker address
  4. 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
├── tests/                   # Node.js test suite: unit/ (test-all.sh) and e2e/ (Playwright)
├── test-all.sh              # Runs every suite in tests/unit
└── tools/                   # Generators, E2E tests, utilities

For Developers

Building

make build        # all four binaries for your machine, into dist/
make build-server # just one
make crossbuild   # static linux/amd64 + linux/arm64 binaries

The SQLite driver is mattn/go-sqlite3, which is cgo, so a plain GOOS=linux go build from a Mac will not work: cross-compiling needs a C compiler that can target the other platform. make crossbuild uses zig as that compiler (install it and it just works) and links statically against musl, so the result is one self-contained file that runs on Alpine or scratch. The container build does the same thing — see Dockerfile.

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

# Or across all 14 modules at once
make test

# Node.js frontend + integration tests
npm test

# Playwright E2E (requires running server on localhost:3000)
node tests/e2e/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

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