Files
bitchat/bitchatTests
jackandClaude Fable 5 8af6fc2d5f Verify Nostr inbound signatures once, off the main actor
Every inbound relay event was Schnorr-verified TWICE, both times on the
main actor: once in NostrRelayManager.handleParsedMessage and again in
each NostrInboundPipeline / GeoPresenceTracker handler. Each
verification re-serializes the event JSON, hashes it, and runs a
secp256k1 Schnorr verify, so busy geohashes paid double crypto on the
UI thread. Geohash gift-wrap NIP-17 decryption (two ECDH+ChaCha layers)
also ran on the main actor.

Changes:
- NostrRelayManager now owns a serial off-main inbound pipeline
  (AsyncStream + single consumer task): frames are parsed and verified
  in arrival order off the main actor, preserving per-subscription
  delivery order. This is the single verification point for the whole
  inbound path; downstream handlers only ever see verified events.
- Dedup stays two-phase and unpoisonable: a cheap main-actor duplicate
  LOOKUP runs before verification (duplicate fan-in from several relays
  never pays for crypto — previously every duplicate was verified), and
  events are RECORDED as seen only after the signature verifies, so a
  forged-signature copy can never suppress the genuine event.
- NostrInboundPipeline and GeoPresenceTracker drop their redundant
  re-verification; geohash gift-wrap decryption moves off the main
  actor following the existing account-mailbox Task.detached pattern
  (atomic main-actor check-and-record, then decrypt off-main, then hop
  back for state updates).
- Tests: relay-level coverage for tampered gift wraps and for in-order
  delivery of back-to-back frames; pipeline-level tampered-signature
  tests move to the relay boundary where the invariant now lives; the
  mock relay connection queues frames emitted before receive re-arms.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-01 23:40:23 +02:00
..

Test Harness Guide

This test suite uses an in-memory networking harness to make end-to-end and integration tests deterministic, fast, and race-free without touching production code.

In-Memory Bus

  • File: bitchatTests/Mocks/MockBLEService.swift
  • Registry/Adjacency: Global registry maps peerID to a MockBLEService instance; adjacency records simulated links between peers.
  • Setup: Call MockBLEService.resetTestBus() in setUp() to clear state between tests.
  • Topology: Use simulateConnectedPeer(_:) and simulateDisconnectedPeer(_:) to add/remove links. connectFullMesh() helpers in tests build larger topologies.
  • Handlers: Tests can observe data via messageDeliveryHandler (decoded BitchatMessage) and packetDeliveryHandler (raw BitchatPacket).
  • Deduplication: A thread-safe seenMessageIDs prevents duplicate deliveries during flooding/relays.

Broadcast Flooding

  • Flag: MockBLEService.autoFloodEnabled
  • Intent: When true, public broadcasts propagate across the entire connected component (ignores TTL for reach) while still deduping to prevent loops.
  • Usage: Enabled in Integration tests (setUp) to simulate large-network broadcast; disabled in E2E tests to keep routing explicit and verify TTL behavior (see PublicChatE2ETests.testZeroTTLNotRelayed).

Rehandshake Flow (Noise)

  • Why: The legacy NACK recovery path was removed; recovery now relies on Noise session rehandshake after decrypt failure or desync.
  • Manager: NoiseSessionManager manages per-peer sessions.
  • Pattern: On decrypt failure, proactively clear the local session and re-initiate a handshake. The peer accepts and replaces their session.
  • Test: IntegrationTests.testRehandshakeAfterDecryptionFailure
    • Corrupts ciphertext to induce a decrypt error.
    • Calls removeSession(for:) on the initiators manager before initiateHandshake(with:) to avoid alreadyEstablished.
    • Verifies encrypt/decrypt succeeds post-rehandshake.

Tips

  • Determinism: Add small async delays only where handler installation/topology changes could race the first send.
  • Scoping: Keep autoFloodEnabled toggled only within Integration tests; always reset in tearDown() to avoid cross-test contamination.
  • Direct vs Relay: Private messages target a specific peer when adjacent; otherwise they are surfaced to neighbors for relay and, if known, also delivered to the target.

Quick Start

  • Create nodes and connect them:
    • let svc = MockBLEService(); svc.myPeerID = "PEER1"
    • svc.simulateConnectedPeer("PEER2")
  • Observe messages:
    • svc.messageDeliveryHandler = { msg in /* asserts */ }
  • Enable broadcast flooding for Integration suites only:
    • MockBLEService.autoFloodEnabled = true