Multi-tenant reverse-tunnel service ("ngrok for Claude Code" with E2E): a
host-agent dials OUT to an operator-run relay; external devices reach the host
THROUGH the relay, routed by per-tenant subdomain, forwarding ciphertext only
(the relay never sees plaintext). Lets a customer reach their own self-hosted
web-terminal from anywhere with zero networking setup.
Packages — all tsc-strict + vitest green (656 tests), cross-package integration verified:
- relay-contracts: frozen shared contracts (mux frame codec, data model,
capability token, E2E envelope, pairing) — the src/types.ts analog
- term-relay: native WS mux + stateless data plane (subdomain routing, ciphertext forward)
- agent: host-agent (pairing, per-host Ed25519 + mTLS dial-out, forwards to 127.0.0.1:3000)
- control-plane: accounts/hosts registry, pairing-code flow, routing table, provisioning
- relay-e2e: browser<->agent E2E (X25519 ECDH through relay, AEAD, anti-replay, recoverable replay key)
- relay-auth: Passkey/WebAuthn, capability tokens, per-host certs, deny-by-default tenant isolation
- relay-web: browser login + Web Crypto E2E + client-side preview rendering
Security invariants INV1-15 enforced; cross-tenant isolation CI tripwire live
(.github/workflows/relay-tripwire.yml). Design + implementation-level plans in
docs/PLAN_RELAY_*.md and docs/EXPLORE_RELAY_SERVICE.md.
NOTE: generated autonomously per the reviewed plans. The security-critical
packages (relay-e2e, relay-auth) REQUIRE expert security audit before any real
deployment — passing tests prove self-consistency, not resistance to attackers.
Base app (src/, public/) unchanged; concurrent desktop work left uncommitted.
75 lines
2.6 KiB
TypeScript
75 lines
2.6 KiB
TypeScript
import { describe, test, expect, vi } from 'vitest'
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import {
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createHeartbeat,
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HEARTBEAT_INTERVAL_MS,
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HEARTBEAT_MISS_LIMIT,
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type ScheduleHandle,
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} from '../mux/heartbeat.js'
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/** A manually-driven fake scheduler: `tick()` fires the scheduled callback; cancel stops it. */
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function fakeScheduler() {
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let scheduled: (() => void) | null = null
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const schedule = (fn: () => void): ScheduleHandle => {
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scheduled = fn
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return { cancel: () => (scheduled = null) }
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}
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return { schedule, tick: () => scheduled?.() }
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}
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describe('heartbeat (T5, §4.1 15s PING/PONG)', () => {
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test('start sends a PING immediately with a fresh 8-byte token', () => {
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const { schedule } = fakeScheduler()
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const pings: Uint8Array[] = []
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const hb = createHeartbeat({ schedule, sendPing: (t) => pings.push(t), onDead: () => {} })
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hb.start()
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expect(pings).toHaveLength(1)
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expect(pings[0]!.length).toBe(8)
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})
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test('a matching onPong resets the miss counter; 3 misses ⇒ onDead exactly once', () => {
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const sched = fakeScheduler()
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const pings: Uint8Array[] = []
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const onDead = vi.fn()
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const hb = createHeartbeat({ schedule: sched.schedule, sendPing: (t) => pings.push(t), onDead })
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hb.start() // ping #1, outstanding set
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hb.onPong(pings[0]!) // matched → miss counter reset
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sched.tick() // outstanding was cleared → no miss, ping #2
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sched.tick() // miss 1, ping #3
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sched.tick() // miss 2, ping #4
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sched.tick() // miss 3 → dead
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expect(onDead).toHaveBeenCalledTimes(1)
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const pingsAfterDead = pings.length
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sched.tick() // no further pings after dead
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expect(pings.length).toBe(pingsAfterDead)
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})
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test('a stale/unknown PONG token does NOT reset the miss counter (anti-replay)', () => {
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const sched = fakeScheduler()
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const onDead = vi.fn()
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const hb = createHeartbeat({ schedule: sched.schedule, sendPing: () => {}, onDead })
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hb.start()
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hb.onPong(new Uint8Array([9, 9, 9, 9, 9, 9, 9, 9])) // wrong token — ignored
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sched.tick() // miss 1
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sched.tick() // miss 2
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sched.tick() // miss 3 → dead despite the spoofed PONG
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expect(onDead).toHaveBeenCalledTimes(1)
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})
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test('stop cancels cleanly (no onDead after stop)', () => {
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const sched = fakeScheduler()
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const onDead = vi.fn()
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const hb = createHeartbeat({ schedule: sched.schedule, sendPing: () => {}, onDead })
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hb.start()
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hb.stop()
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sched.tick() // scheduler cancelled → no-op
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sched.tick()
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sched.tick()
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expect(onDead).not.toHaveBeenCalled()
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})
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test('exposes the §4.1 constants', () => {
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expect(HEARTBEAT_INTERVAL_MS).toBe(15_000)
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expect(HEARTBEAT_MISS_LIMIT).toBe(3)
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})
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})
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