Most wallets — Minibits, Nutstash, cdk-cli — default to reading cashuB (V4) now, so that is what we send. cashuA stays as the fallback rather than the default: it is still valid everywhere, so a token this wallet cannot express in V4 (a multi-mint one) is worth sending in V3 rather than failing the send outright. That path warns, because by the time `send_token_at` serializes, the proofs are already marked spent. The V4 encoder is the reference implementation's, not ours. The envelope puts the keyset id and signature on the wire as raw CBOR bytes under single-letter keys, and a token subtly wrong there is money the receiver cannot redeem — so upstream owns the encoding, the way it already owns keyset-id resolution. Our own hand-written decoder reads what upstream writes in the new test, which is agreement between two independent implementations rather than a round trip through one codec. Two refusals are deliberate and tested: a multi-mint token has no V4 form, and a truncated v2 keyset id must never be baked into a token we emit (the framework-pt case) — it is only resolvable against the mint's keyset list. Also folds SendBitcoinModal onto the shared PaymentSuccessPane it had a private copy of, so on-chain, Lightning and ecash all show the same screen and the copyable-identifier row is defined once. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Archipelago Web UI
Vue 3 + TypeScript + Vite + Tailwind CSS + Pinia
The web interface for Archipelago — a self-sovereign Bitcoin Node OS.
Quick Start
cd neode-ui
npm install
npm start
Visit http://localhost:8100 — login with password: password123
This starts:
- Mock backend on port 5959 (no Docker required)
- Vite dev server on port 8100 with HMR
Stop with npm stop.
Architecture
neode-ui/
├── src/
│ ├── api/ # RPC client (rpc-client.ts), WebSocket, container client
│ ├── stores/ # Pinia stores (app, container, appLauncher, monitoring)
│ ├── views/ # Page components (Dashboard, Marketplace, Settings, etc.)
│ ├── components/ # Reusable components (SplashScreen, AppSession, etc.)
│ ├── router/ # Vue Router configuration
│ ├── types/ # TypeScript type definitions
│ └── style.css # Global styles + Tailwind utilities
├── public/assets/ # Static assets (images, fonts, app icons, audio)
├── mock-backend.js # Mock backend server (simulates Rust backend)
├── docker/ # Docker configs (nginx, entrypoint)
└── vite.config.ts # Vite config with backend proxy
Dev Modes
The mock backend supports multiple startup modes via VITE_DEV_MODE:
| Mode | Command | Behavior |
|---|---|---|
| default | npm start |
Fully set up, login screen |
| existing | VITE_DEV_MODE=existing npm run dev:mock |
Same as default |
| setup | VITE_DEV_MODE=setup npm run dev:mock |
First-time password setup flow |
| onboarding | VITE_DEV_MODE=onboarding npm run dev:mock |
Post-setup onboarding flow |
| boot | npm run dev:boot |
25s simulated boot sequence |
Mock Backend
The mock backend (mock-backend.js) simulates the full Rust backend for local development:
Pre-installed apps (always visible in My Apps):
- Bitcoin Core, LND, Electrs, Mempool, FileBrowser, LoraBell, Fedimint
Marketplace: 30+ curated apps with Docker images, install/uninstall simulation
Features simulated:
- Authentication (login, password change, TOTP 2FA)
- System metrics (CPU, memory, disk — randomized for realism)
- Node identity (DID, Nostr pubkey, Tor address)
- Federation (3 mock nodes with apps, metrics, trust levels)
- Mesh networking (4 LoRa peers, encrypted messaging, invoices)
- Peer-to-peer messaging
- FileBrowser API (mock file system with Music, Documents, Photos, Videos)
- DWN sync status
- Transport layer (mesh/LAN/Tor routing)
- Notifications (5 realistic entries)
- Claude AI chat proxy (requires
ANTHROPIC_API_KEY)
Container runtime: If Docker/Podman is available, the mock backend will run real containers for installed apps. Otherwise, it simulates them.
Demo Deployment (Portainer)
Deploy the demo via Docker Compose for showcasing:
docker compose -f docker-compose.demo.yml build
docker compose -f docker-compose.demo.yml up -d
Or deploy through Portainer Stacks:
- Stacks > Add stack > name:
archy-demo - Web editor: paste
docker-compose.demo.ymlcontents - Add environment variable:
ANTHROPIC_API_KEY(for Claude chat) - Deploy
Access at http://your-host:4848 — password: password123
Development Commands
npm start # Start mock backend + Vite (recommended)
npm stop # Stop all servers
npm run dev:mock # Same as start, without port cleanup
npm run dev:boot # Boot mode (simulated startup delay)
npm run backend:mock # Mock backend only
npm run dev # Vite only (needs backend running separately)
npm run dev:real # Vite with real Rust backend
npm run build # Production build (outputs to ../web/dist/neode-ui/)
npm run build:docker # Build for Docker (no type checking)
npm run type-check # TypeScript type checking
npm test # Run tests
Design System
Glass Classes
| Class | Use |
|---|---|
.glass-card |
Content containers, modals, panels |
.glass-button |
ALL buttons (primary and secondary) |
.path-option-card |
Interactive cards with hover lift |
.info-card |
Status badges, metric displays |
Tokens
- Font: Avenir Next (primary), Montserrat (
font-archipelago) - Glass:
bg: rgba(0,0,0,0.60),blur: 24px,border: rgba(255,255,255,0.22) - Accent:
#fb923c(Bitcoin orange),#4ade80(green),#ef4444(red) - Text:
rgba(255,255,255,0.9)primary,rgba(255,255,255,0.6)muted
Rules
- Global CSS classes in
style.cssonly — never inline Tailwind in components .gradient-buttonis banned — use.glass-button- All components use
<script setup lang="ts">
API
import { rpcClient } from '@/api/rpc-client'
await rpcClient.login('password')
await rpcClient.startPackage('bitcoin')
const metrics = await rpcClient.getMetrics()
State management via Pinia stores. WebSocket patches applied automatically.
Build Output
- Dev build:
../web/dist/neode-ui/ - Docker build:
dist/(deployed to nginx)
License
MIT