Files
bitchat/bitchatTests/Services/BLEPeerRegistryTests.swift
T
jackandGitHub b96a41054e Pin announce signing keys to stop mesh identity spoofing (#1349)
TOFU-pins the Ed25519 signing key per noise key so a self-consistent announce that reuses a victim's peerID+noise key with the attacker's signing key/nickname is rejected instead of overwriting the registry and persisted identity. Complements #1432: that PR's signed-LEAVE verification reads the stored signing key this PR protects from announce-path poisoning.

Rebased onto main as a single commit; swift build --build-tests green, 40/40 targeted tests incl. the spoofing e2e cases, and #1432's suites 50/50 unaffected.
2026-07-26 11:38:24 +02:00

193 lines
7.0 KiB
Swift

import BitFoundation
import Foundation
import Testing
@testable import bitchat
@Suite("BLE peer registry tests")
struct BLEPeerRegistryTests {
@Test("upserted announces track new, reconnect, and rename transitions")
func upsertVerifiedAnnounceTracksTransitions() throws {
var registry = BLEPeerRegistry()
let peerID = PeerID(str: "1122334455667788")
let firstSeen = Date(timeIntervalSince1970: 100)
let firstResult = registry.upsertVerifiedAnnounce(
peerID: peerID,
nickname: "alice",
noisePublicKey: Data([1, 2, 3]),
signingPublicKey: Data([4, 5, 6]),
isConnected: true,
now: firstSeen
)
let first = try #require(firstResult)
#expect(first.isNewPeer)
#expect(!first.wasDisconnected)
#expect(first.previousNickname == nil)
#expect(registry.connectedPeerIDs == [peerID])
#expect(registry.nickname(for: peerID, connectedOnly: true) == "alice")
registry.markDisconnected(peerID)
let reconnectResult = registry.upsertVerifiedAnnounce(
peerID: peerID,
nickname: "alice-renamed",
noisePublicKey: Data([1, 2, 3]),
signingPublicKey: Data([4, 5, 6]),
isConnected: true,
now: firstSeen.addingTimeInterval(1)
)
let reconnect = try #require(reconnectResult)
#expect(!reconnect.isNewPeer)
#expect(reconnect.wasDisconnected)
#expect(reconnect.previousNickname == "alice")
#expect(registry.info(for: peerID)?.nickname == "alice-renamed")
}
@Test("pinned signing key cannot be silently replaced by a later announce")
func upsertVerifiedAnnounceRefusesToReplacePinnedSigningKey() throws {
var registry = BLEPeerRegistry()
let peerID = PeerID(str: "1122334455667788")
let noiseKey = Data(repeating: 0x11, count: 32)
let victimSigningKey = Data(repeating: 0x42, count: 32)
let attackerSigningKey = Data(repeating: 0x66, count: 32)
let firstSeen = Date(timeIntervalSince1970: 100)
let pinResult = registry.upsertVerifiedAnnounce(
peerID: peerID,
nickname: "victim",
noisePublicKey: noiseKey,
signingPublicKey: victimSigningKey,
isConnected: true,
now: firstSeen
)
#expect(pinResult != nil)
// Attacker replays the victim's noiseKey/peerID with their own
// signing key and nickname; the upsert must be refused wholesale.
let attack = registry.upsertVerifiedAnnounce(
peerID: peerID,
nickname: "attacker",
noisePublicKey: noiseKey,
signingPublicKey: attackerSigningKey,
isConnected: true,
now: firstSeen.addingTimeInterval(1)
)
#expect(attack == nil)
let info = try #require(registry.info(for: peerID))
#expect(info.nickname == "victim")
#expect(info.signingPublicKey == victimSigningKey)
// A legitimate re-announce with the pinned key is still accepted.
let legit = registry.upsertVerifiedAnnounce(
peerID: peerID,
nickname: "victim-renamed",
noisePublicKey: noiseKey,
signingPublicKey: victimSigningKey,
isConnected: true,
now: firstSeen.addingTimeInterval(2)
)
#expect(legit != nil)
#expect(registry.info(for: peerID)?.nickname == "victim-renamed")
}
@Test("announce without a signing key keeps the pinned key")
func upsertVerifiedAnnounceKeepsPinnedSigningKeyWhenAnnounceOmitsIt() throws {
var registry = BLEPeerRegistry()
let peerID = PeerID(str: "1122334455667788")
let noiseKey = Data(repeating: 0x11, count: 32)
let signingKey = Data(repeating: 0x42, count: 32)
let firstSeen = Date(timeIntervalSince1970: 100)
let initialResult = registry.upsertVerifiedAnnounce(
peerID: peerID,
nickname: "alice",
noisePublicKey: noiseKey,
signingPublicKey: signingKey,
isConnected: true,
now: firstSeen
)
#expect(initialResult != nil)
let update = registry.upsertVerifiedAnnounce(
peerID: peerID,
nickname: "alice",
noisePublicKey: noiseKey,
signingPublicKey: nil,
isConnected: true,
now: firstSeen.addingTimeInterval(1)
)
#expect(update != nil)
#expect(registry.info(for: peerID)?.signingPublicKey == signingKey)
}
@Test("reachability keeps recent verified offline peers only when mesh is attached")
func reachabilityRequiresMeshAttachmentForOfflinePeers() {
let offlinePeer = PeerID(str: "1122334455667788")
let connectedPeer = PeerID(str: "8877665544332211")
let now = Date()
var isolatedRegistry = BLEPeerRegistry()
isolatedRegistry.upsert(BLEPeerInfo(
peerID: offlinePeer,
nickname: "offline",
isConnected: false,
noisePublicKey: nil,
signingPublicKey: nil,
isVerifiedNickname: true,
lastSeen: now
))
#expect(!isolatedRegistry.isReachable(offlinePeer, now: now))
var attachedRegistry = isolatedRegistry
attachedRegistry.upsert(BLEPeerInfo(
peerID: connectedPeer,
nickname: "connected",
isConnected: true,
noisePublicKey: nil,
signingPublicKey: nil,
isVerifiedNickname: true,
lastSeen: now
))
#expect(attachedRegistry.isReachable(offlinePeer, now: now))
}
@Test("connectivity reconciliation disconnects inactive peers and prunes expired offline peers")
func reconcileConnectivityUpdatesAndPrunesPeerState() {
var registry = BLEPeerRegistry()
let inactiveConnectedPeer = PeerID(str: "1122334455667788")
let expiredOfflinePeer = PeerID(str: "8877665544332211")
let now = Date()
registry.upsert(BLEPeerInfo(
peerID: inactiveConnectedPeer,
nickname: "inactive",
isConnected: true,
noisePublicKey: nil,
signingPublicKey: nil,
isVerifiedNickname: true,
lastSeen: now.addingTimeInterval(-TransportConfig.blePeerInactivityTimeoutSeconds - 1)
))
registry.upsert(BLEPeerInfo(
peerID: expiredOfflinePeer,
nickname: "expired",
isConnected: false,
noisePublicKey: nil,
signingPublicKey: nil,
isVerifiedNickname: true,
lastSeen: .distantPast
))
let changes = registry.reconcileConnectivity(now: now, linkStates: [:])
#expect(changes.disconnectedPeerIDs == [inactiveConnectedPeer])
#expect(changes.removedPeers.map(\.peerID) == [expiredOfflinePeer])
#expect(registry.info(for: inactiveConnectedPeer)?.isConnected == false)
#expect(registry.info(for: expiredOfflinePeer) == nil)
}
}