Expand coverage for relay, identity, and location flows (#1055)

* Expand coverage for relay, identity, and location flows

* Fix macOS SwiftPM CI failures

---------

Co-authored-by: jack <jackjackbits@users.noreply.github.com>
This commit is contained in:
jack
2026-03-12 12:50:46 -10:00
committed by GitHub
co-authored by jack
parent c043cf6354
commit a136b5b7e9
22 changed files with 2926 additions and 164 deletions
+171 -60
View File
@@ -4,6 +4,100 @@ import Network
import Combine
import Tor
protocol NostrRelayConnectionProtocol: AnyObject {
func resume()
func cancel(with closeCode: URLSessionWebSocketTask.CloseCode, reason: Data?)
func send(_ message: URLSessionWebSocketTask.Message, completionHandler: @escaping (Error?) -> Void)
func receive(completionHandler: @escaping (Result<URLSessionWebSocketTask.Message, Error>) -> Void)
func sendPing(pongReceiveHandler: @escaping (Error?) -> Void)
}
protocol NostrRelaySessionProtocol {
func webSocketTask(with url: URL) -> NostrRelayConnectionProtocol
}
private final class URLSessionWebSocketTaskAdapter: NostrRelayConnectionProtocol {
private let base: URLSessionWebSocketTask
init(base: URLSessionWebSocketTask) {
self.base = base
}
func resume() {
base.resume()
}
func cancel(with closeCode: URLSessionWebSocketTask.CloseCode, reason: Data?) {
base.cancel(with: closeCode, reason: reason)
}
func send(_ message: URLSessionWebSocketTask.Message, completionHandler: @escaping (Error?) -> Void) {
base.send(message, completionHandler: completionHandler)
}
func receive(completionHandler: @escaping (Result<URLSessionWebSocketTask.Message, Error>) -> Void) {
base.receive(completionHandler: completionHandler)
}
func sendPing(pongReceiveHandler: @escaping (Error?) -> Void) {
base.sendPing(pongReceiveHandler: pongReceiveHandler)
}
}
private struct URLSessionAdapter: NostrRelaySessionProtocol {
let base: URLSession
func webSocketTask(with url: URL) -> NostrRelayConnectionProtocol {
URLSessionWebSocketTaskAdapter(base: base.webSocketTask(with: url))
}
}
struct NostrRelayManagerDependencies {
var activationAllowed: () -> Bool
var userTorEnabled: () -> Bool
var hasMutualFavorites: () -> Bool
var hasLocationPermission: () -> Bool
var mutualFavoritesPublisher: AnyPublisher<Set<Data>, Never>
var locationPermissionPublisher: AnyPublisher<LocationChannelManager.PermissionState, Never>
var torEnforced: () -> Bool
var torIsReady: () -> Bool
var torIsForeground: () -> Bool
var awaitTorReady: (@escaping (Bool) -> Void) -> Void
var makeSession: () -> NostrRelaySessionProtocol
var scheduleAfter: (TimeInterval, @escaping () -> Void) -> Void
var now: () -> Date
}
private extension NostrRelayManagerDependencies {
@MainActor
static func live() -> Self {
Self(
activationAllowed: { NetworkActivationService.shared.activationAllowed },
userTorEnabled: { NetworkActivationService.shared.userTorEnabled },
hasMutualFavorites: { !FavoritesPersistenceService.shared.mutualFavorites.isEmpty },
hasLocationPermission: { LocationChannelManager.shared.permissionState == .authorized },
mutualFavoritesPublisher: FavoritesPersistenceService.shared.$mutualFavorites.eraseToAnyPublisher(),
locationPermissionPublisher: LocationChannelManager.shared.$permissionState.eraseToAnyPublisher(),
torEnforced: { TorManager.shared.torEnforced },
torIsReady: { TorManager.shared.isReady },
torIsForeground: { TorManager.shared.isForeground() },
awaitTorReady: { completion in
Task.detached {
let ready = await TorManager.shared.awaitReady()
await MainActor.run {
completion(ready)
}
}
},
makeSession: { URLSessionAdapter(base: TorURLSession.shared.session) },
scheduleAfter: { delay, action in
DispatchQueue.main.asyncAfter(deadline: .now() + delay, execute: action)
},
now: Date.init
)
}
}
/// Manages WebSocket connections to Nostr relays
@MainActor
final class NostrRelayManager: ObservableObject {
@@ -41,10 +135,11 @@ final class NostrRelayManager: ObservableObject {
@Published private(set) var relays: [Relay] = []
@Published private(set) var isConnected = false
private let dependencies: NostrRelayManagerDependencies
private var allowDefaultRelays: Bool = false
private var hasMutualFavorites: Bool = false
private var hasLocationPermission: Bool = false
private var connections: [String: URLSessionWebSocketTask] = [:]
private var connections: [String: NostrRelayConnectionProtocol] = [:]
private var subscriptions: [String: Set<String>] = [:] // relay URL -> active subscription IDs
private var pendingSubscriptions: [String: [String: String]] = [:] // relay URL -> (subscription id -> encoded REQ JSON)
private var messageHandlers: [String: (NostrEvent) -> Void] = [:]
@@ -69,8 +164,7 @@ final class NostrRelayManager: ObservableObject {
private var messageQueue: [PendingSend] = []
private let messageQueueLock = NSLock()
private let encoder = JSONEncoder()
private var networkService: NetworkActivationService { NetworkActivationService.shared }
private var shouldUseTor: Bool { networkService.userTorEnabled }
private var shouldUseTor: Bool { dependencies.userTorEnabled() }
// Exponential backoff configuration
private let initialBackoffInterval: TimeInterval = TransportConfig.nostrRelayInitialBackoffSeconds
@@ -82,12 +176,13 @@ final class NostrRelayManager: ObservableObject {
private var connectionGeneration: Int = 0
init() {
hasMutualFavorites = !FavoritesPersistenceService.shared.mutualFavorites.isEmpty
hasLocationPermission = LocationChannelManager.shared.permissionState == .authorized
self.dependencies = .live()
hasMutualFavorites = dependencies.hasMutualFavorites()
hasLocationPermission = dependencies.hasLocationPermission()
applyDefaultRelayPolicy(force: true)
// Deterministic JSON shape for outbound requests
self.encoder.outputFormatting = .sortedKeys
FavoritesPersistenceService.shared.$mutualFavorites
dependencies.mutualFavoritesPublisher
.receive(on: DispatchQueue.main)
.sink { [weak self] favorites in
guard let self = self else { return }
@@ -95,7 +190,34 @@ final class NostrRelayManager: ObservableObject {
self.applyDefaultRelayPolicy()
}
.store(in: &cancellables)
LocationChannelManager.shared.$permissionState
dependencies.locationPermissionPublisher
.receive(on: DispatchQueue.main)
.sink { [weak self] state in
guard let self = self else { return }
let authorized = (state == .authorized)
if authorized == self.hasLocationPermission { return }
self.hasLocationPermission = authorized
self.applyDefaultRelayPolicy()
}
.store(in: &cancellables)
}
internal init(dependencies: NostrRelayManagerDependencies) {
self.dependencies = dependencies
hasMutualFavorites = dependencies.hasMutualFavorites()
hasLocationPermission = dependencies.hasLocationPermission()
applyDefaultRelayPolicy(force: true)
// Deterministic JSON shape for outbound requests
self.encoder.outputFormatting = .sortedKeys
dependencies.mutualFavoritesPublisher
.receive(on: DispatchQueue.main)
.sink { [weak self] favorites in
guard let self = self else { return }
self.hasMutualFavorites = !favorites.isEmpty
self.applyDefaultRelayPolicy()
}
.store(in: &cancellables)
dependencies.locationPermissionPublisher
.receive(on: DispatchQueue.main)
.sink { [weak self] state in
guard let self = self else { return }
@@ -110,20 +232,18 @@ final class NostrRelayManager: ObservableObject {
/// Connect to all configured relays
func connect() {
// Global network policy gate
guard networkService.activationAllowed else { return }
guard dependencies.activationAllowed() else { return }
if shouldUseTor {
// Ensure Tor is started early and wait for readiness off-main; then hop back to connect.
Task.detached {
let ready = await TorManager.shared.awaitReady()
await MainActor.run {
if !ready {
SecureLogger.error("❌ Tor not ready; aborting relay connections (fail-closed)", category: .session)
return
}
SecureLogger.debug("🌐 Connecting to \(self.relays.count) Nostr relays (via Tor)", category: .session)
for relay in self.relays {
self.connectToRelay(relay.url)
}
dependencies.awaitTorReady { [weak self] ready in
guard let self = self else { return }
if !ready {
SecureLogger.error("❌ Tor not ready; aborting relay connections (fail-closed)", category: .session)
return
}
SecureLogger.debug("🌐 Connecting to \(self.relays.count) Nostr relays (via Tor)", category: .session)
for relay in self.relays {
self.connectToRelay(relay.url)
}
}
} else {
@@ -150,15 +270,14 @@ final class NostrRelayManager: ObservableObject {
/// Ensure connections exist to the given relay URLs (idempotent).
func ensureConnections(to relayUrls: [String]) {
// Global network policy gate
guard networkService.activationAllowed else { return }
guard dependencies.activationAllowed() else { return }
let targets = allowedRelayList(from: relayUrls)
guard !targets.isEmpty else { return }
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady {
if shouldUseTor && dependencies.torEnforced() && !dependencies.torIsReady() {
// Defer until Tor is fully ready; avoid queuing connection attempts early
Task.detached { [weak self] in
dependencies.awaitTorReady { [weak self] ready in
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run { if ready { self.ensureConnections(to: relayUrls) } }
if ready { self.ensureConnections(to: relayUrls) }
}
return
}
@@ -175,13 +294,12 @@ final class NostrRelayManager: ObservableObject {
/// Send an event to specified relays (or all if none specified)
func sendEvent(_ event: NostrEvent, to relayUrls: [String]? = nil) {
// Global network policy gate
guard networkService.activationAllowed else { return }
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady {
guard dependencies.activationAllowed() else { return }
if shouldUseTor && dependencies.torEnforced() && !dependencies.torIsReady() {
// Defer sends until Tor is ready to avoid premature queueing
Task.detached { [weak self] in
dependencies.awaitTorReady { [weak self] ready in
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run { if ready { self.sendEvent(event, to: relayUrls) } }
if ready { self.sendEvent(event, to: relayUrls) }
}
return
}
@@ -253,24 +371,21 @@ final class NostrRelayManager: ObservableObject {
onEOSE: (() -> Void)? = nil
) {
// Global network policy gate
guard networkService.activationAllowed else { return }
guard dependencies.activationAllowed() else { return }
// Coalesce rapid duplicate subscribe requests only if a handler already exists
let now = Date()
let now = dependencies.now()
if messageHandlers[id] != nil {
if let last = subscribeCoalesce[id], now.timeIntervalSince(last) < 1.0 {
return
}
}
subscribeCoalesce[id] = now
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady {
if shouldUseTor && dependencies.torEnforced() && !dependencies.torIsReady() {
// Defer subscription setup until Tor is ready; avoid queuing subs early
Task.detached { [weak self] in
dependencies.awaitTorReady { [weak self] ready in
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run {
if ready {
self.subscribe(filter: filter, id: id, relayUrls: relayUrls, handler: handler)
}
if ready {
self.subscribe(filter: filter, id: id, relayUrls: relayUrls, handler: handler, onEOSE: onEOSE)
}
}
return
@@ -346,7 +461,7 @@ final class NostrRelayManager: ObservableObject {
relays.append(Relay(url: url))
existing.insert(url)
}
if networkService.activationAllowed {
if dependencies.activationAllowed() {
ensureConnections(to: Self.defaultRelays)
}
} else {
@@ -400,10 +515,9 @@ final class NostrRelayManager: ObservableObject {
// Send unsubscribe to all relays
for (relayUrl, connection) in connections {
if subscriptions[relayUrl]?.contains(id) == true {
subscriptions[relayUrl]?.remove(id)
connection.send(.string(messageString)) { _ in
Task { @MainActor in
self.subscriptions[relayUrl]?.remove(id)
}
// Local state is cleared before sending so callers can re-subscribe immediately.
}
}
}
@@ -413,14 +527,14 @@ final class NostrRelayManager: ObservableObject {
private func connectToRelay(_ urlString: String) {
// Global network policy gate
guard networkService.activationAllowed else { return }
guard dependencies.activationAllowed() else { return }
guard let url = URL(string: urlString) else {
SecureLogger.warning("Invalid relay URL: \(urlString)", category: .session)
return
}
// Avoid initiating connections while app is backgrounded; we'll reconnect on foreground
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isForeground() {
if shouldUseTor && dependencies.torEnforced() && !dependencies.torIsForeground() {
return
}
@@ -435,19 +549,16 @@ final class NostrRelayManager: ObservableObject {
// Attempting to connect to Nostr relay via the proxied session
// If Tor is enforced but not ready, delay connection until it is.
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady {
Task.detached { [weak self] in
if shouldUseTor && dependencies.torEnforced() && !dependencies.torIsReady() {
dependencies.awaitTorReady { [weak self] ready in
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run {
if ready { self.connectToRelay(urlString) }
else { SecureLogger.error("❌ Tor not ready; skipping connection to \(urlString)", category: .session) }
}
if ready { self.connectToRelay(urlString) }
else { SecureLogger.error("❌ Tor not ready; skipping connection to \(urlString)", category: .session) }
}
return
}
let session = TorURLSession.shared.session
let session = dependencies.makeSession()
let task = session.webSocketTask(with: url)
connections[urlString] = task
@@ -495,7 +606,7 @@ final class NostrRelayManager: ObservableObject {
pendingSubscriptions[relayUrl] = nil
}
private func receiveMessage(from task: URLSessionWebSocketTask, relayUrl: String) {
private func receiveMessage(from task: NostrRelayConnectionProtocol, relayUrl: String) {
task.receive { [weak self] result in
guard let self = self else { return }
@@ -505,7 +616,7 @@ final class NostrRelayManager: ObservableObject {
Task.detached(priority: .utility) {
guard let parsed = ParsedInbound(message) else { return }
await MainActor.run {
NostrRelayManager.shared.handleParsedMessage(parsed, from: relayUrl)
self.handleParsedMessage(parsed, from: relayUrl)
}
}
@@ -569,7 +680,7 @@ final class NostrRelayManager: ObservableObject {
}
}
private func sendToRelay(event: NostrEvent, connection: URLSessionWebSocketTask, relayUrl: String) {
private func sendToRelay(event: NostrEvent, connection: NostrRelayConnectionProtocol, relayUrl: String) {
let req = NostrRequest.event(event)
do {
@@ -601,11 +712,11 @@ final class NostrRelayManager: ObservableObject {
relays[index].isConnected = isConnected
relays[index].lastError = error
if isConnected {
relays[index].lastConnectedAt = Date()
relays[index].lastConnectedAt = dependencies.now()
relays[index].reconnectAttempts = 0 // Reset on successful connection
relays[index].nextReconnectTime = nil
} else {
relays[index].lastDisconnectedAt = Date()
relays[index].lastDisconnectedAt = dependencies.now()
}
}
updateConnectionStatus()
@@ -621,7 +732,7 @@ final class NostrRelayManager: ObservableObject {
private func handleDisconnection(relayUrl: String, error: Error) {
// If networking is disallowed, do not schedule reconnection
if !networkService.activationAllowed {
if !dependencies.activationAllowed() {
connections.removeValue(forKey: relayUrl)
subscriptions.removeValue(forKey: relayUrl)
updateRelayStatus(relayUrl, isConnected: false, error: error)
@@ -666,13 +777,13 @@ final class NostrRelayManager: ObservableObject {
maxBackoffInterval
)
let nextReconnectTime = Date().addingTimeInterval(backoffInterval)
let nextReconnectTime = dependencies.now().addingTimeInterval(backoffInterval)
relays[index].nextReconnectTime = nextReconnectTime
// Schedule reconnection with exponential backoff
let gen = connectionGeneration
DispatchQueue.main.asyncAfter(deadline: .now() + backoffInterval) { [weak self] in
dependencies.scheduleAfter(backoffInterval) { [weak self] in
guard let self = self else { return }
// Ignore stale scheduled reconnects from a previous generation
guard gen == self.connectionGeneration else { return }
+18 -16
View File
@@ -251,7 +251,8 @@ final class BLEService: NSObject {
init(
keychain: KeychainManagerProtocol,
idBridge: NostrIdentityBridge,
identityManager: SecureIdentityStateManagerProtocol
identityManager: SecureIdentityStateManagerProtocol,
initializeBluetoothManagers: Bool = true
) {
self.keychain = keychain
self.idBridge = idBridge
@@ -294,22 +295,23 @@ final class BLEService: NSObject {
// Tag BLE queue for re-entrancy detection
bleQueue.setSpecific(key: bleQueueKey, value: ())
// Initialize BLE on background queue to prevent main thread blocking
// This prevents app freezes during BLE operations
#if os(iOS)
let centralOptions: [String: Any] = [
CBCentralManagerOptionRestoreIdentifierKey: BLEService.centralRestorationID
]
centralManager = CBCentralManager(delegate: self, queue: bleQueue, options: centralOptions)
if initializeBluetoothManagers {
// Initialize BLE on background queue to prevent main thread blocking.
#if os(iOS)
let centralOptions: [String: Any] = [
CBCentralManagerOptionRestoreIdentifierKey: BLEService.centralRestorationID
]
centralManager = CBCentralManager(delegate: self, queue: bleQueue, options: centralOptions)
let peripheralOptions: [String: Any] = [
CBPeripheralManagerOptionRestoreIdentifierKey: BLEService.peripheralRestorationID
]
peripheralManager = CBPeripheralManager(delegate: self, queue: bleQueue, options: peripheralOptions)
#else
centralManager = CBCentralManager(delegate: self, queue: bleQueue)
peripheralManager = CBPeripheralManager(delegate: self, queue: bleQueue)
#endif
let peripheralOptions: [String: Any] = [
CBPeripheralManagerOptionRestoreIdentifierKey: BLEService.peripheralRestorationID
]
peripheralManager = CBPeripheralManager(delegate: self, queue: bleQueue, options: peripheralOptions)
#else
centralManager = CBCentralManager(delegate: self, queue: bleQueue)
peripheralManager = CBPeripheralManager(delegate: self, queue: bleQueue)
#endif
}
// Single maintenance timer for all periodic tasks (dispatch-based for determinism)
let timer = DispatchSource.makeTimerSource(queue: bleQueue)
+118 -25
View File
@@ -13,6 +13,25 @@ import Combine
import BitLogger
import Tor
protocol GeohashPresenceTimerProtocol: AnyObject {
var isValid: Bool { get }
func invalidate()
}
private final class GeohashPresenceTimerAdapter: GeohashPresenceTimerProtocol {
private let base: Timer
init(base: Timer) {
self.base = base
}
var isValid: Bool { base.isValid }
func invalidate() {
base.invalidate()
}
}
/// Service that coordinates the broadcasting of presence heartbeats.
///
/// Behavior:
@@ -25,18 +44,27 @@ final class GeohashPresenceService: ObservableObject {
static let shared = GeohashPresenceService()
private var subscriptions = Set<AnyCancellable>()
private var heartbeatTimer: Timer?
private let idBridge = NostrIdentityBridge()
private var heartbeatTimer: GeohashPresenceTimerProtocol?
private let availableChannelsProvider: () -> [GeohashChannel]
private let locationChanges: AnyPublisher<[GeohashChannel], Never>
private let torReadyPublisher: AnyPublisher<Void, Never>
private let torIsReady: () -> Bool
private let torIsForeground: () -> Bool
private let deriveIdentity: (String) throws -> NostrIdentity
private let relayLookup: (String, Int) -> [String]
private let relaySender: (NostrEvent, [String]) -> Void
private let sleeper: (UInt64) async -> Void
private let scheduleTimer: (TimeInterval, @escaping () -> Void) -> GeohashPresenceTimerProtocol
// MARK: - Constants
// Loop interval range in seconds
private let loopMinInterval: TimeInterval = 40.0
private let loopMaxInterval: TimeInterval = 80.0
private let loopMinInterval: TimeInterval
private let loopMaxInterval: TimeInterval
// Per-broadcast decorrelation delay range in seconds
private let burstMinDelay: TimeInterval = 2.0
private let burstMaxDelay: TimeInterval = 5.0
private let burstMinDelay: TimeInterval
private let burstMaxDelay: TimeInterval
// Privacy: Only broadcast to these levels
private let allowedPrecisions: Set<Int> = [
@@ -46,6 +74,74 @@ final class GeohashPresenceService: ObservableObject {
]
private init() {
let idBridge = NostrIdentityBridge()
self.availableChannelsProvider = { LocationStateManager.shared.availableChannels }
self.locationChanges = LocationStateManager.shared.$availableChannels.eraseToAnyPublisher()
self.torReadyPublisher = NotificationCenter.default.publisher(for: .TorDidBecomeReady)
.map { _ in () }
.eraseToAnyPublisher()
self.torIsReady = { TorManager.shared.isReady }
self.torIsForeground = { TorManager.shared.isForeground() }
self.deriveIdentity = { try idBridge.deriveIdentity(forGeohash: $0) }
self.relayLookup = { geohash, count in
GeoRelayDirectory.shared.closestRelays(toGeohash: geohash, count: count)
}
self.relaySender = { event, relays in
NostrRelayManager.shared.sendEvent(event, to: relays)
}
self.sleeper = { nanoseconds in
try? await Task.sleep(nanoseconds: nanoseconds)
}
self.scheduleTimer = { interval, action in
GeohashPresenceTimerAdapter(
base: Timer.scheduledTimer(withTimeInterval: interval, repeats: false) { _ in
action()
}
)
}
self.loopMinInterval = 40.0
self.loopMaxInterval = 80.0
self.burstMinDelay = 2.0
self.burstMaxDelay = 5.0
setupObservers()
}
internal init(
availableChannelsProvider: @escaping () -> [GeohashChannel],
locationChanges: AnyPublisher<[GeohashChannel], Never>,
torReadyPublisher: AnyPublisher<Void, Never>,
torIsReady: @escaping () -> Bool,
torIsForeground: @escaping () -> Bool,
deriveIdentity: @escaping (String) throws -> NostrIdentity,
relayLookup: @escaping (String, Int) -> [String],
relaySender: @escaping (NostrEvent, [String]) -> Void,
sleeper: @escaping (UInt64) async -> Void = { nanoseconds in try? await Task.sleep(nanoseconds: nanoseconds) },
scheduleTimer: @escaping (TimeInterval, @escaping () -> Void) -> GeohashPresenceTimerProtocol = { interval, action in
GeohashPresenceTimerAdapter(
base: Timer.scheduledTimer(withTimeInterval: interval, repeats: false) { _ in
action()
}
)
},
loopMinInterval: TimeInterval = 40.0,
loopMaxInterval: TimeInterval = 80.0,
burstMinDelay: TimeInterval = 2.0,
burstMaxDelay: TimeInterval = 5.0
) {
self.availableChannelsProvider = availableChannelsProvider
self.locationChanges = locationChanges
self.torReadyPublisher = torReadyPublisher
self.torIsReady = torIsReady
self.torIsForeground = torIsForeground
self.deriveIdentity = deriveIdentity
self.relayLookup = relayLookup
self.relaySender = relaySender
self.sleeper = sleeper
self.scheduleTimer = scheduleTimer
self.loopMinInterval = loopMinInterval
self.loopMaxInterval = loopMaxInterval
self.burstMinDelay = burstMinDelay
self.burstMaxDelay = burstMaxDelay
setupObservers()
}
@@ -57,7 +153,7 @@ final class GeohashPresenceService: ObservableObject {
private func setupObservers() {
// Monitor location channel changes
LocationStateManager.shared.$availableChannels
locationChanges
.dropFirst()
.sink { [weak self] _ in
self?.handleLocationChange()
@@ -65,28 +161,28 @@ final class GeohashPresenceService: ObservableObject {
.store(in: &subscriptions)
// Monitor Tor readiness to kick off heartbeat if it was stalled
NotificationCenter.default.publisher(for: .TorDidBecomeReady)
torReadyPublisher
.sink { [weak self] _ in
self?.handleConnectivityChange()
}
.store(in: &subscriptions)
}
private func handleLocationChange() {
func handleLocationChange() {
// When location changes, we trigger an immediate (but slightly delayed) heartbeat
// to announce presence in the new zone, then reset the loop.
SecureLogger.debug("Presence: location changed, scheduling update", category: .session)
heartbeatTimer?.invalidate()
// Small delay to allow location state to settle
heartbeatTimer = Timer.scheduledTimer(withTimeInterval: 5.0, repeats: false) { [weak self] _ in
heartbeatTimer = scheduleTimer(5.0) { [weak self] in
Task { @MainActor [weak self] in
self?.performHeartbeat()
}
}
}
private func handleConnectivityChange() {
func handleConnectivityChange() {
SecureLogger.debug("Presence: connectivity restored, triggering heartbeat", category: .session)
// If we were waiting for network, do it now
if heartbeatTimer == nil || !heartbeatTimer!.isValid {
@@ -94,33 +190,33 @@ final class GeohashPresenceService: ObservableObject {
}
}
private func scheduleNextHeartbeat() {
func scheduleNextHeartbeat() {
heartbeatTimer?.invalidate()
let interval = TimeInterval.random(in: loopMinInterval...loopMaxInterval)
heartbeatTimer = Timer.scheduledTimer(withTimeInterval: interval, repeats: false) { [weak self] _ in
heartbeatTimer = scheduleTimer(interval) { [weak self] in
Task { @MainActor [weak self] in
self?.performHeartbeat()
}
}
}
private func performHeartbeat() {
func performHeartbeat() {
// Always schedule next loop first ensures continuity even if this one fails/skips
defer { scheduleNextHeartbeat() }
// 1. Check preconditions
guard TorManager.shared.isReady else {
guard torIsReady() else {
SecureLogger.debug("Presence: skipping heartbeat (Tor not ready)", category: .session)
return
}
// App must be active (or at least we shouldn't broadcast if in background, usually)
if !TorManager.shared.isForeground() {
if !torIsForeground() {
return
}
// 2. Get channels
let channels = LocationStateManager.shared.availableChannels
let channels = availableChannelsProvider()
guard !channels.isEmpty else { return }
// 3. Filter and broadcast
@@ -136,16 +232,16 @@ final class GeohashPresenceService: ObservableObject {
// Random delay for decorrelation
let delay = TimeInterval.random(in: self.burstMinDelay...self.burstMaxDelay)
let nanoseconds = UInt64(delay * 1_000_000_000)
try? await Task.sleep(nanoseconds: nanoseconds)
await self.sleeper(nanoseconds)
self.broadcastPresence(for: channel.geohash)
}
}
}
private func broadcastPresence(for geohash: String) {
func broadcastPresence(for geohash: String) {
do {
guard let identity = try? idBridge.deriveIdentity(forGeohash: geohash) else {
guard let identity = try? deriveIdentity(geohash) else {
return
}
@@ -155,13 +251,10 @@ final class GeohashPresenceService: ObservableObject {
)
// Send via RelayManager
let targetRelays = GeoRelayDirectory.shared.closestRelays(
toGeohash: geohash,
count: TransportConfig.nostrGeoRelayCount
)
let targetRelays = relayLookup(geohash, TransportConfig.nostrGeoRelayCount)
if !targetRelays.isEmpty {
NostrRelayManager.shared.sendEvent(event, to: targetRelays)
relaySender(event, targetRelays)
SecureLogger.debug("Presence: sent heartbeat for \(geohash) (pub=\(identity.publicKeyHex.prefix(6))...)", category: .session)
}
} catch {
+102 -14
View File
@@ -5,6 +5,82 @@ import Combine
#if os(iOS) || os(macOS)
import CoreLocation
protocol LocationStateManaging: AnyObject {
var delegate: CLLocationManagerDelegate? { get set }
var desiredAccuracy: CLLocationAccuracy { get set }
var distanceFilter: CLLocationDistance { get set }
var authorizationStatus: CLAuthorizationStatus { get }
func requestWhenInUseAuthorization()
func requestLocation()
func startUpdatingLocation()
func stopUpdatingLocation()
}
protocol LocationStateGeocoding: AnyObject {
func cancelGeocode()
func reverseGeocodeLocation(
_ location: CLLocation,
completionHandler: @escaping ([CLPlacemark]?, Error?) -> Void
)
}
private final class CLLocationManagerAdapter: NSObject, LocationStateManaging {
private let base = CLLocationManager()
var delegate: CLLocationManagerDelegate? {
get { base.delegate }
set { base.delegate = newValue }
}
var desiredAccuracy: CLLocationAccuracy {
get { base.desiredAccuracy }
set { base.desiredAccuracy = newValue }
}
var distanceFilter: CLLocationDistance {
get { base.distanceFilter }
set { base.distanceFilter = newValue }
}
var authorizationStatus: CLAuthorizationStatus {
if #available(iOS 14.0, macOS 11.0, *) {
return base.authorizationStatus
}
return CLLocationManager.authorizationStatus()
}
func requestWhenInUseAuthorization() {
base.requestWhenInUseAuthorization()
}
func requestLocation() {
base.requestLocation()
}
func startUpdatingLocation() {
base.startUpdatingLocation()
}
func stopUpdatingLocation() {
base.stopUpdatingLocation()
}
}
private final class CLGeocoderAdapter: LocationStateGeocoding {
private let base = CLGeocoder()
func cancelGeocode() {
base.cancelGeocode()
}
func reverseGeocodeLocation(
_ location: CLLocation,
completionHandler: @escaping ([CLPlacemark]?, Error?) -> Void
) {
base.reverseGeocodeLocation(location, completionHandler: completionHandler)
}
}
/// Unified manager for location-based channel state including:
/// - CoreLocation permissions and one-shot location retrieval
/// - Geohash channel computation from coordinates
@@ -26,8 +102,8 @@ final class LocationStateManager: NSObject, CLLocationManagerDelegate, Observabl
// MARK: - Private Properties (CoreLocation)
private let cl = CLLocationManager()
private let geocoder = CLGeocoder()
private let cl: LocationStateManaging
private let geocoder: LocationStateGeocoding
private var lastLocation: CLLocation?
private var refreshTimer: Timer?
private var isGeocoding: Bool = false
@@ -73,6 +149,8 @@ final class LocationStateManager: NSObject, CLLocationManagerDelegate, Observabl
private override init() {
self.storage = .standard
self.cl = CLLocationManagerAdapter()
self.geocoder = CLGeocoderAdapter()
super.init()
// Skip CoreLocation setup in test environments
@@ -92,10 +170,30 @@ final class LocationStateManager: NSObject, CLLocationManagerDelegate, Observabl
/// Internal initializer for testing with custom storage
init(storage: UserDefaults) {
self.storage = storage
self.cl = CLLocationManagerAdapter()
self.geocoder = CLGeocoderAdapter()
super.init()
loadPersistedState()
}
internal init(
storage: UserDefaults,
locationManager: LocationStateManaging,
geocoder: LocationStateGeocoding,
shouldInitializeCoreLocation: Bool
) {
self.storage = storage
self.cl = locationManager
self.geocoder = geocoder
super.init()
loadPersistedState()
guard shouldInitializeCoreLocation else { return }
cl.delegate = self
cl.desiredAccuracy = kCLLocationAccuracyHundredMeters
cl.distanceFilter = TransportConfig.locationDistanceFilterMeters
initializePermissionState()
}
private func loadPersistedState() {
// Load selected channel
if let data = storage.data(forKey: selectedChannelKey),
@@ -132,12 +230,7 @@ final class LocationStateManager: NSObject, CLLocationManagerDelegate, Observabl
}
private func initializePermissionState() {
let status: CLAuthorizationStatus
if #available(iOS 14.0, macOS 11.0, *) {
status = cl.authorizationStatus
} else {
status = CLLocationManager.authorizationStatus()
}
let status = cl.authorizationStatus
updatePermissionState(from: status)
// Fall back to persisted teleport state if no location authorization
@@ -156,12 +249,7 @@ final class LocationStateManager: NSObject, CLLocationManagerDelegate, Observabl
// MARK: - Public API (Permissions & Location)
func enableLocationChannels() {
let status: CLAuthorizationStatus
if #available(iOS 14.0, macOS 11.0, *) {
status = cl.authorizationStatus
} else {
status = CLLocationManager.authorizationStatus()
}
let status = cl.authorizationStatus
switch status {
case .notDetermined:
cl.requestWhenInUseAuthorization()
+80 -18
View File
@@ -3,6 +3,27 @@ import BitLogger
import Combine
import Tor
@MainActor
protocol NetworkActivationTorControlling: AnyObject {
func setAutoStartAllowed(_ allowed: Bool)
func startIfNeeded()
func shutdownCompletely()
}
@MainActor
protocol NetworkActivationRelayControlling: AnyObject {
func connect()
func disconnect()
}
protocol NetworkActivationProxyControlling: AnyObject {
func setProxyMode(useTor: Bool)
}
extension TorManager: NetworkActivationTorControlling {}
extension NostrRelayManager: NetworkActivationRelayControlling {}
extension TorURLSession: NetworkActivationProxyControlling {}
/// Coordinates when the app is allowed to start Tor and connect to Nostr relays.
/// Policy: permit start when either location permissions are authorized OR
/// there exists at least one mutual favorite. Otherwise, do not start.
@@ -17,14 +38,55 @@ final class NetworkActivationService: ObservableObject {
private var started = false
private let torPreferenceKey = "networkActivationService.userTorEnabled"
private var torAutoStartDesired: Bool = false
private let storage: UserDefaults
private let locationPermissionPublisher: AnyPublisher<LocationChannelManager.PermissionState, Never>
private let mutualFavoritesPublisher: AnyPublisher<Set<Data>, Never>
private let permissionProvider: () -> LocationChannelManager.PermissionState
private let mutualFavoritesProvider: () -> Set<Data>
private let torController: NetworkActivationTorControlling
private let relayController: NetworkActivationRelayControlling
private let proxyController: NetworkActivationProxyControlling
private let notificationCenter: NotificationCenter
private init() {}
private init() {
storage = .standard
locationPermissionPublisher = LocationChannelManager.shared.$permissionState.eraseToAnyPublisher()
mutualFavoritesPublisher = FavoritesPersistenceService.shared.$mutualFavorites.eraseToAnyPublisher()
permissionProvider = { LocationChannelManager.shared.permissionState }
mutualFavoritesProvider = { FavoritesPersistenceService.shared.mutualFavorites }
torController = TorManager.shared
relayController = NostrRelayManager.shared
proxyController = TorURLSession.shared
notificationCenter = .default
}
internal init(
storage: UserDefaults,
locationPermissionPublisher: AnyPublisher<LocationChannelManager.PermissionState, Never>,
mutualFavoritesPublisher: AnyPublisher<Set<Data>, Never>,
permissionProvider: @escaping () -> LocationChannelManager.PermissionState,
mutualFavoritesProvider: @escaping () -> Set<Data>,
torController: NetworkActivationTorControlling,
relayController: NetworkActivationRelayControlling,
proxyController: NetworkActivationProxyControlling,
notificationCenter: NotificationCenter = .default
) {
self.storage = storage
self.locationPermissionPublisher = locationPermissionPublisher
self.mutualFavoritesPublisher = mutualFavoritesPublisher
self.permissionProvider = permissionProvider
self.mutualFavoritesProvider = mutualFavoritesProvider
self.torController = torController
self.relayController = relayController
self.proxyController = proxyController
self.notificationCenter = notificationCenter
}
func start() {
guard !started else { return }
started = true
if let stored = UserDefaults.standard.object(forKey: torPreferenceKey) as? Bool {
if let stored = storage.object(forKey: torPreferenceKey) as? Bool {
userTorEnabled = stored
} else {
userTorEnabled = true
@@ -34,16 +96,16 @@ final class NetworkActivationService: ObservableObject {
let allowed = basePolicyAllowed()
activationAllowed = allowed
torAutoStartDesired = allowed && userTorEnabled
TorManager.shared.setAutoStartAllowed(torAutoStartDesired)
torController.setAutoStartAllowed(torAutoStartDesired)
applyTorState(torDesired: torAutoStartDesired)
if allowed {
NostrRelayManager.shared.connect()
relayController.connect()
} else {
NostrRelayManager.shared.disconnect()
relayController.disconnect()
}
// React to location permission changes
LocationChannelManager.shared.$permissionState
locationPermissionPublisher
.receive(on: DispatchQueue.main)
.sink { [weak self] _ in
self?.reevaluate()
@@ -51,7 +113,7 @@ final class NetworkActivationService: ObservableObject {
.store(in: &cancellables)
// React to mutual favorites changes
FavoritesPersistenceService.shared.$mutualFavorites
mutualFavoritesPublisher
.receive(on: DispatchQueue.main)
.sink { [weak self] _ in
self?.reevaluate()
@@ -62,8 +124,8 @@ final class NetworkActivationService: ObservableObject {
func setUserTorEnabled(_ enabled: Bool) {
guard enabled != userTorEnabled else { return }
userTorEnabled = enabled
UserDefaults.standard.set(enabled, forKey: torPreferenceKey)
NotificationCenter.default.post(
storage.set(enabled, forKey: torPreferenceKey)
notificationCenter.post(
name: .TorUserPreferenceChanged,
object: nil,
userInfo: ["enabled": enabled]
@@ -82,33 +144,33 @@ final class NetworkActivationService: ObservableObject {
}
if statusChanged || torChanged {
torAutoStartDesired = torDesired
TorManager.shared.setAutoStartAllowed(torDesired)
torController.setAutoStartAllowed(torDesired)
applyTorState(torDesired: torDesired)
}
if allowed {
if torChanged {
// Reset relay sockets when switching transport path (Tor direct)
NostrRelayManager.shared.disconnect()
relayController.disconnect()
}
NostrRelayManager.shared.connect()
relayController.connect()
} else if statusChanged {
NostrRelayManager.shared.disconnect()
relayController.disconnect()
}
}
private func basePolicyAllowed() -> Bool {
let permOK = LocationChannelManager.shared.permissionState == .authorized
let hasMutual = !FavoritesPersistenceService.shared.mutualFavorites.isEmpty
let permOK = permissionProvider() == .authorized
let hasMutual = !mutualFavoritesProvider().isEmpty
return permOK || hasMutual
}
private func applyTorState(torDesired: Bool) {
TorURLSession.shared.setProxyMode(useTor: torDesired)
proxyController.setProxyMode(useTor: torDesired)
if torDesired {
TorManager.shared.startIfNeeded()
torController.startIfNeeded()
} else {
TorManager.shared.shutdownCompletely()
torController.shutdownCompletely()
}
}
}
+88 -9
View File
@@ -14,24 +14,103 @@ import UIKit
import AppKit
#endif
protocol NotificationAuthorizing {
func requestAuthorization(
options: UNAuthorizationOptions,
completionHandler: @escaping (Bool, Error?) -> Void
)
}
protocol NotificationRequestDelivering {
func add(_ request: UNNotificationRequest)
}
private final class NotificationCenterAuthorizerAdapter: NotificationAuthorizing {
private let center: UNUserNotificationCenter
init(center: UNUserNotificationCenter) {
self.center = center
}
func requestAuthorization(
options: UNAuthorizationOptions,
completionHandler: @escaping (Bool, Error?) -> Void
) {
center.requestAuthorization(options: options, completionHandler: completionHandler)
}
}
private final class NotificationCenterRequestDelivererAdapter: NotificationRequestDelivering {
private let center: UNUserNotificationCenter
init(center: UNUserNotificationCenter) {
self.center = center
}
func add(_ request: UNNotificationRequest) {
Task {
try? await center.add(request)
}
}
}
private struct NoopNotificationAuthorizer: NotificationAuthorizing {
func requestAuthorization(
options: UNAuthorizationOptions,
completionHandler: @escaping (Bool, Error?) -> Void
) {
completionHandler(false, nil)
}
}
private struct NoopNotificationRequestDeliverer: NotificationRequestDelivering {
func add(_ request: UNNotificationRequest) {}
}
final class NotificationService {
static let shared = NotificationService()
private let isRunningTestsProvider: () -> Bool
private let authorizer: NotificationAuthorizing
private let requestDeliverer: NotificationRequestDelivering
/// Returns true if running in test environment (XCTest, Swift Testing, or CI)
private var isRunningTests: Bool {
let env = ProcessInfo.processInfo.environment
return NSClassFromString("XCTestCase") != nil ||
env["XCTestConfigurationFilePath"] != nil ||
env["XCTestBundlePath"] != nil ||
env["GITHUB_ACTIONS"] != nil ||
env["CI"] != nil
isRunningTestsProvider()
}
private init() {}
private init() {
self.isRunningTestsProvider = {
let env = ProcessInfo.processInfo.environment
return NSClassFromString("XCTestCase") != nil ||
env["XCTestConfigurationFilePath"] != nil ||
env["XCTestBundlePath"] != nil ||
env["GITHUB_ACTIONS"] != nil ||
env["CI"] != nil
}
if isRunningTestsProvider() {
self.authorizer = NoopNotificationAuthorizer()
self.requestDeliverer = NoopNotificationRequestDeliverer()
} else {
let center = UNUserNotificationCenter.current()
self.authorizer = NotificationCenterAuthorizerAdapter(center: center)
self.requestDeliverer = NotificationCenterRequestDelivererAdapter(center: center)
}
}
internal init(
isRunningTestsProvider: @escaping () -> Bool,
authorizer: NotificationAuthorizing,
requestDeliverer: NotificationRequestDelivering
) {
self.isRunningTestsProvider = isRunningTestsProvider
self.authorizer = authorizer
self.requestDeliverer = requestDeliverer
}
func requestAuthorization() {
guard !isRunningTests else { return }
UNUserNotificationCenter.current().requestAuthorization(options: [.alert, .sound, .badge]) { granted, error in
authorizer.requestAuthorization(options: [.alert, .sound, .badge]) { granted, error in
if granted {
// Permission granted
} else {
@@ -64,7 +143,7 @@ final class NotificationService {
trigger: nil // Deliver immediately
)
UNUserNotificationCenter.current().add(request)
requestDeliverer.add(request)
}
func sendMentionNotification(from sender: String, message: String) {
+6 -1
View File
@@ -89,7 +89,12 @@ private func makeService() -> BLEService {
let keychain = MockKeychain()
let identityManager = MockIdentityManager(keychain)
let idBridge = NostrIdentityBridge(keychain: MockKeychainHelper())
return BLEService(keychain: keychain, idBridge: idBridge, identityManager: identityManager)
return BLEService(
keychain: keychain,
idBridge: idBridge,
identityManager: identityManager,
initializeBluetoothManagers: false
)
}
private func makePublicPacket(content: String, sender: PeerID, timestamp: UInt64) -> BitchatPacket {
@@ -125,26 +125,20 @@ struct ChatViewModelRefactoringTests {
let (viewModel, _, _) = makePinnedViewModel()
let senderID = PeerID(str: "sender_2")
// Setup
let message = BitchatMessage(
id: "msg_2",
sender: "charlie",
// Action
viewModel.didReceivePublicMessage(
from: senderID,
nickname: "charlie",
content: "Public Hi",
timestamp: Date(),
isRelay: false,
originalSender: nil,
isPrivate: false,
recipientNickname: nil,
senderPeerID: senderID,
mentions: nil
messageID: "msg_2"
)
// Action
viewModel.didReceiveMessage(message)
// Wait for async processing with proper timeout
let found = await TestHelpers.waitUntil(
{ viewModel.messages.contains(where: { $0.content == "Public Hi" }) },
{
viewModel.timelineStore.messages(for: .mesh).contains(where: { $0.content == "Public Hi" })
},
timeout: TestConstants.defaultTimeout
)
+1 -2
View File
@@ -196,8 +196,7 @@ struct ChatViewModelReceivingTests {
)
let found = await TestHelpers.waitUntil({
viewModel.publicMessagePipeline.flushIfNeeded()
return viewModel.messages.contains { $0.content == "Public hello from Bob" }
viewModel.timelineStore.messages(for: .mesh).contains { $0.content == "Public hello from Bob" }
}, timeout: TestConstants.defaultTimeout)
#expect(found)
+390 -1
View File
@@ -1,11 +1,13 @@
import Foundation
import Testing
@testable import bitchat
@Suite(.serialized)
struct CommandProcessorTests {
private var identityManager = MockIdentityManager(MockKeychain())
@MainActor
@Test func slapNotFoundGrammar() {
let identityManager = MockIdentityManager(MockKeychain())
let processor = CommandProcessor(contextProvider: nil, meshService: nil, identityManager: identityManager)
let result = processor.process("/slap @system")
switch result {
@@ -18,6 +20,7 @@ struct CommandProcessorTests {
@MainActor
@Test func hugNotFoundGrammar() {
let identityManager = MockIdentityManager(MockKeychain())
let processor = CommandProcessor(contextProvider: nil, meshService: nil, identityManager: identityManager)
let result = processor.process("/hug @system")
switch result {
@@ -30,6 +33,7 @@ struct CommandProcessorTests {
@MainActor
@Test func slapUsageMessage() {
let identityManager = MockIdentityManager(MockKeychain())
let processor = CommandProcessor(contextProvider: nil, meshService: nil, identityManager: identityManager)
let result = processor.process("/slap")
switch result {
@@ -39,4 +43,389 @@ struct CommandProcessorTests {
Issue.record("Expected error result for usage message")
}
}
@MainActor
@Test func msgStartsPrivateChatAndSendsMessage() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider()
let peerID = PeerID(str: "abcd1234abcd1234")
context.nicknameToPeerID["alice"] = peerID
let processor = CommandProcessor(contextProvider: context, meshService: nil, identityManager: identityManager)
let result = await withSelectedChannel(.mesh) {
processor.process("/msg @alice hello there")
}
switch result {
case .success(let message):
#expect(message == "started private chat with alice")
default:
Issue.record("Expected success result")
}
#expect(context.startedPrivateChats == [peerID])
#expect(context.sentPrivateMessages.count == 1)
#expect(context.sentPrivateMessages.first?.content == "hello there")
#expect(context.sentPrivateMessages.first?.peerID == peerID)
}
@MainActor
@Test func whoInMeshListsSortedPeerNicknames() async {
let identityManager = MockIdentityManager(MockKeychain())
let transport = MockTransport()
transport.peerNicknames = [
PeerID(str: "b"): "bob",
PeerID(str: "a"): "alice"
]
let processor = CommandProcessor(contextProvider: MockCommandContextProvider(), meshService: transport, identityManager: identityManager)
let result = await withSelectedChannel(.mesh) {
processor.process("/who")
}
switch result {
case .success(let message):
#expect(message == "online: alice, bob")
default:
Issue.record("Expected success result")
}
}
@MainActor
@Test func whoInGeohashListsVisibleParticipantsExcludingSelf() async throws {
let bridge = NostrIdentityBridge(keychain: MockKeychain())
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider(idBridge: bridge)
let geohash = "u4pruy"
let selfPubkey = try bridge.deriveIdentity(forGeohash: geohash).publicKeyHex.lowercased()
context.visibleGeoParticipants = [
CommandGeoParticipant(id: selfPubkey, displayName: "me"),
CommandGeoParticipant(id: String(repeating: "b", count: 64), displayName: "bob")
]
let processor = CommandProcessor(contextProvider: context, meshService: MockTransport(), identityManager: identityManager)
let channel = ChannelID.location(GeohashChannel(level: .city, geohash: geohash))
let result = try await withSelectedChannel(channel) {
processor.process("/who")
}
switch result {
case .success(let message):
#expect(message == "online: bob")
default:
Issue.record("Expected success result")
}
}
@MainActor
@Test func clearInPrivateChatRemovesOnlySelectedConversation() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider()
let activePeer = PeerID(str: "active")
let otherPeer = PeerID(str: "other")
context.selectedPrivateChatPeer = activePeer
context.privateChats = [
activePeer: [makeMessage(sender: "alice", content: "secret")],
otherPeer: [makeMessage(sender: "bob", content: "keep")]
]
let processor = CommandProcessor(contextProvider: context, meshService: nil, identityManager: identityManager)
let result = await withSelectedChannel(.mesh) {
processor.process("/clear")
}
switch result {
case .handled:
break
default:
Issue.record("Expected handled result")
}
#expect(context.privateChats[activePeer] == [])
#expect(context.privateChats[otherPeer]?.count == 1)
}
@MainActor
@Test func clearInPublicChatClearsTimeline() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider()
let processor = CommandProcessor(contextProvider: context, meshService: nil, identityManager: identityManager)
let result = await withSelectedChannel(.mesh) {
processor.process("/clear")
}
switch result {
case .handled:
break
default:
Issue.record("Expected handled result")
}
#expect(context.clearCurrentPublicTimelineCallCount == 1)
}
@MainActor
@Test func hugInPrivateChatSendsPersonalizedMessageAndLocalEcho() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider(nickname: "me")
let transport = MockTransport()
let peerID = PeerID(str: "abcd1234abcd1234")
context.selectedPrivateChatPeer = peerID
context.nicknameToPeerID["bob"] = peerID
transport.peerNicknames[peerID] = "Bob"
let processor = CommandProcessor(contextProvider: context, meshService: transport, identityManager: identityManager)
let result = await withSelectedChannel(.mesh) {
processor.process("/hug @bob")
}
switch result {
case .handled:
break
default:
Issue.record("Expected handled result")
}
#expect(transport.sentPrivateMessages.count == 1)
#expect(transport.sentPrivateMessages.first?.content == "* 🫂 me hugs you *")
#expect(context.localPrivateSystemMessages.first?.content == "🫂 you hugged bob")
#expect(context.localPrivateSystemMessages.first?.peerID == peerID)
}
@MainActor
@Test func slapInPublicChatSendsPublicRawAndEcho() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider(nickname: "me")
let peerID = PeerID(str: "abcd1234abcd1234")
context.nicknameToPeerID["bob"] = peerID
let processor = CommandProcessor(contextProvider: context, meshService: MockTransport(), identityManager: identityManager)
let result = await withSelectedChannel(.mesh) {
processor.process("/slap @bob")
}
switch result {
case .handled:
break
default:
Issue.record("Expected handled result")
}
#expect(context.sentPublicRawMessages == ["* 🐟 me slaps bob around a bit with a large trout *"])
#expect(context.publicSystemMessages == ["🐟 me slaps bob around a bit with a large trout"])
}
@MainActor
@Test func blockWithoutArgsListsMeshAndGeohashBlocks() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider()
let transport = MockTransport()
let peerID = PeerID(str: "abcd1234abcd1234")
transport.peerNicknames[peerID] = "bob"
transport.peerFingerprints[peerID] = "fp-bob"
context.blockedUsers = ["fp-bob"]
context.visibleGeoParticipants = [
CommandGeoParticipant(id: String(repeating: "c", count: 64), displayName: "carol")
]
identityManager.setNostrBlocked(String(repeating: "c", count: 64), isBlocked: true)
let processor = CommandProcessor(contextProvider: context, meshService: transport, identityManager: identityManager)
let result = await withSelectedChannel(.mesh) {
processor.process("/block")
}
switch result {
case .success(let message):
#expect(message == "blocked peers: bob | geohash blocks: carol")
default:
Issue.record("Expected success result")
}
}
@MainActor
@Test func blockAndUnblockMeshPeerUpdateIdentityState() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider()
let transport = MockTransport()
let peerID = PeerID(str: "abcd1234abcd1234")
transport.peerFingerprints[peerID] = "fp-bob"
context.nicknameToPeerID["bob"] = peerID
let processor = CommandProcessor(contextProvider: context, meshService: transport, identityManager: identityManager)
let blockResult = await withSelectedChannel(.mesh) {
processor.process("/block @bob")
}
switch blockResult {
case .success(let message):
#expect(message == "blocked bob. you will no longer receive messages from them")
default:
Issue.record("Expected success result")
}
#expect(identityManager.isBlocked(fingerprint: "fp-bob"))
let unblockResult = await withSelectedChannel(.mesh) {
processor.process("/unblock bob")
}
switch unblockResult {
case .success(let message):
#expect(message == "unblocked bob")
default:
Issue.record("Expected success result")
}
#expect(!identityManager.isBlocked(fingerprint: "fp-bob"))
}
@MainActor
@Test func blockAndUnblockGeohashPeerUseNostrBlockList() async {
let identityManager = MockIdentityManager(MockKeychain())
let context = MockCommandContextProvider()
context.displayNameToNostrPubkey["carol"] = String(repeating: "d", count: 64)
let processor = CommandProcessor(contextProvider: context, meshService: MockTransport(), identityManager: identityManager)
let blockResult = await withSelectedChannel(.mesh) {
processor.process("/block carol")
}
switch blockResult {
case .success(let message):
#expect(message == "blocked carol in geohash chats")
default:
Issue.record("Expected success result")
}
#expect(identityManager.isNostrBlocked(pubkeyHexLowercased: String(repeating: "d", count: 64)))
let unblockResult = await withSelectedChannel(.mesh) {
processor.process("/unblock @carol")
}
switch unblockResult {
case .success(let message):
#expect(message == "unblocked carol in geohash chats")
default:
Issue.record("Expected success result")
}
#expect(!identityManager.isNostrBlocked(pubkeyHexLowercased: String(repeating: "d", count: 64)))
}
@MainActor
@Test func favoriteCommandIsRejectedOutsideMesh() async {
let identityManager = MockIdentityManager(MockKeychain())
let processor = CommandProcessor(
contextProvider: MockCommandContextProvider(),
meshService: MockTransport(),
identityManager: identityManager
)
let channel = ChannelID.location(GeohashChannel(level: .city, geohash: "u4pruy"))
let result = await withSelectedChannel(channel) {
processor.process("/fav alice")
}
switch result {
case .error(let message):
#expect(message == "favorites are only for mesh peers in #mesh")
default:
Issue.record("Expected error result")
}
}
@MainActor
private func withSelectedChannel<T>(_ channel: ChannelID, perform work: @escaping () throws -> T) async rethrows -> T {
let originalChannel = LocationChannelManager.shared.selectedChannel
await setSelectedChannel(channel)
do {
let result = try work()
await setSelectedChannel(originalChannel)
return result
} catch {
await setSelectedChannel(originalChannel)
throw error
}
}
@MainActor
private func setSelectedChannel(_ channel: ChannelID) async {
LocationChannelManager.shared.select(channel)
for _ in 0..<40 {
if LocationChannelManager.shared.selectedChannel == channel {
return
}
await Task.yield()
try? await Task.sleep(nanoseconds: 5_000_000)
}
}
private func makeMessage(sender: String, content: String) -> BitchatMessage {
BitchatMessage(
sender: sender,
content: content,
timestamp: Date(timeIntervalSince1970: 1_700_000_000),
isRelay: false
)
}
}
@MainActor
private final class MockCommandContextProvider: CommandContextProvider {
var nickname: String
var selectedPrivateChatPeer: PeerID?
var blockedUsers: Set<String> = []
var privateChats: [PeerID: [BitchatMessage]] = [:]
let idBridge: NostrIdentityBridge
var nicknameToPeerID: [String: PeerID] = [:]
var visibleGeoParticipants: [CommandGeoParticipant] = []
var displayNameToNostrPubkey: [String: String] = [:]
private(set) var startedPrivateChats: [PeerID] = []
private(set) var sentPrivateMessages: [(content: String, peerID: PeerID)] = []
private(set) var clearCurrentPublicTimelineCallCount = 0
private(set) var sentPublicRawMessages: [String] = []
private(set) var localPrivateSystemMessages: [(content: String, peerID: PeerID)] = []
private(set) var publicSystemMessages: [String] = []
private(set) var toggledFavorites: [PeerID] = []
private(set) var favoriteNotifications: [(peerID: PeerID, isFavorite: Bool)] = []
init(nickname: String = "tester", idBridge: NostrIdentityBridge = NostrIdentityBridge(keychain: MockKeychain())) {
self.nickname = nickname
self.idBridge = idBridge
}
func getPeerIDForNickname(_ nickname: String) -> PeerID? {
nicknameToPeerID[nickname]
}
func getVisibleGeoParticipants() -> [CommandGeoParticipant] {
visibleGeoParticipants
}
func nostrPubkeyForDisplayName(_ displayName: String) -> String? {
displayNameToNostrPubkey[displayName]
}
func startPrivateChat(with peerID: PeerID) {
startedPrivateChats.append(peerID)
}
func sendPrivateMessage(_ content: String, to peerID: PeerID) {
sentPrivateMessages.append((content, peerID))
}
func clearCurrentPublicTimeline() {
clearCurrentPublicTimelineCallCount += 1
}
func sendPublicRaw(_ content: String) {
sentPublicRawMessages.append(content)
}
func addLocalPrivateSystemMessage(_ content: String, to peerID: PeerID) {
localPrivateSystemMessages.append((content, peerID))
}
func addPublicSystemMessage(_ content: String) {
publicSystemMessages.append(content)
}
func toggleFavorite(peerID: PeerID) {
toggledFavorites.append(peerID)
}
func sendFavoriteNotification(to peerID: PeerID, isFavorite: Bool) {
favoriteNotifications.append((peerID, isFavorite))
}
}
@@ -28,7 +28,8 @@ struct FragmentationTests {
let ble = BLEService(
keychain: mockKeychain,
idBridge: idBridge,
identityManager: mockIdentityManager
identityManager: mockIdentityManager,
initializeBluetoothManagers: false
)
let capture = CaptureDelegate()
ble.delegate = capture
@@ -63,7 +64,8 @@ struct FragmentationTests {
let ble = BLEService(
keychain: mockKeychain,
idBridge: idBridge,
identityManager: mockIdentityManager
identityManager: mockIdentityManager,
initializeBluetoothManagers: false
)
let capture = CaptureDelegate()
ble.delegate = capture
@@ -97,7 +99,8 @@ struct FragmentationTests {
let ble = BLEService(
keychain: mockKeychain,
idBridge: idBridge,
identityManager: mockIdentityManager
identityManager: mockIdentityManager,
initializeBluetoothManagers: false
)
let capture = CaptureDelegate()
ble.delegate = capture
@@ -153,7 +156,8 @@ struct FragmentationTests {
let ble = BLEService(
keychain: mockKeychain,
idBridge: idBridge,
identityManager: mockIdentityManager
identityManager: mockIdentityManager,
initializeBluetoothManagers: false
)
let capture = CaptureDelegate()
ble.delegate = capture
@@ -12,6 +12,108 @@ import SwiftUI
@testable import bitchat
struct MessageFormattingEngineTests {
// MARK: - Formatting Behavior Tests
@MainActor
@Test func formatMessage_regularMessageFormatsHeaderContentAndTimestamp() {
let senderPeerID = PeerID(str: "abcdef1234567890")
let context = MockMessageFormattingContext(
nickname: "carol",
peerURLs: [senderPeerID: URL(string: "https://example.com/peers/alice")!]
)
let message = BitchatMessage(
id: "message-1",
sender: "alice#a1b2",
content: "hello #mesh https://example.com",
timestamp: Date(timeIntervalSince1970: 1_700_000_000),
isRelay: false,
senderPeerID: senderPeerID
)
let formatted = MessageFormattingEngine.formatMessage(message, context: context, colorScheme: .light)
#expect(String(formatted.characters) == "<@alice#a1b2> hello #mesh https://example.com [\(message.formattedTimestamp)]")
#expect(message.getCachedFormattedText(isDark: false, isSelf: false) != nil)
}
@MainActor
@Test func formatMessage_systemMessageUsesSystemLayout() {
let context = MockMessageFormattingContext(nickname: "carol")
let message = BitchatMessage(
id: "system-1",
sender: "system",
content: "connected",
timestamp: Date(timeIntervalSince1970: 1_700_000_123),
isRelay: false
)
let formatted = MessageFormattingEngine.formatMessage(message, context: context, colorScheme: .dark)
#expect(String(formatted.characters) == "* connected * [\(message.formattedTimestamp)]")
#expect(message.getCachedFormattedText(isDark: true, isSelf: false) != nil)
}
@MainActor
@Test func formatMessage_longSelfMessageFallsBackToPlainContentPath() {
let context = MockMessageFormattingContext(
nickname: "me",
selfMessageIDs: ["self-1"]
)
let longContent = String(repeating: "a", count: 4_500)
let message = BitchatMessage(
id: "self-1",
sender: "me#cafe",
content: longContent,
timestamp: Date(timeIntervalSince1970: 1_700_000_456),
isRelay: false
)
let formatted = MessageFormattingEngine.formatMessage(message, context: context, colorScheme: .light)
#expect(String(formatted.characters) == "<@me#cafe> \(longContent) [\(message.formattedTimestamp)]")
#expect(message.getCachedFormattedText(isDark: false, isSelf: true) != nil)
}
@MainActor
@Test func formatMessage_mentionsAreRenderedThroughMentionFormatter() {
let context = MockMessageFormattingContext(nickname: "carol")
let message = BitchatMessage(
id: "message-mention",
sender: "alice",
content: "hi @bob#a1b2",
timestamp: Date(timeIntervalSince1970: 1_700_000_789),
isRelay: false
)
let formatted = MessageFormattingEngine.formatMessage(message, context: context, colorScheme: .light)
#expect(String(formatted.characters) == "<@alice> hi bob#a1b2 [\(message.formattedTimestamp)]")
}
@MainActor
@Test func formatHeader_formatsNormalAndSystemSenders() {
let context = MockMessageFormattingContext(nickname: "carol")
let normalMessage = BitchatMessage(
id: "header-1",
sender: "alice#a1b2",
content: "hello",
timestamp: Date(timeIntervalSince1970: 1_700_001_000),
isRelay: false
)
let systemMessage = BitchatMessage(
id: "header-2",
sender: "system",
content: "notice",
timestamp: Date(timeIntervalSince1970: 1_700_001_111),
isRelay: false
)
let normalHeader = MessageFormattingEngine.formatHeader(normalMessage, context: context, colorScheme: .light)
let systemHeader = MessageFormattingEngine.formatHeader(systemMessage, context: context, colorScheme: .dark)
#expect(String(normalHeader.characters) == "<@alice#a1b2> ")
#expect(String(systemHeader.characters) == "system")
}
// MARK: - Mention Extraction Tests
@@ -221,3 +323,32 @@ struct MessageFormattingEngineTests {
#expect(content.hasVeryLongToken(threshold: 50))
}
}
@MainActor
private final class MockMessageFormattingContext: MessageFormattingContext {
let nickname: String
private let selfMessageIDs: Set<String>
private let peerURLs: [PeerID: URL]
init(
nickname: String,
selfMessageIDs: Set<String> = [],
peerURLs: [PeerID: URL] = [:]
) {
self.nickname = nickname
self.selfMessageIDs = selfMessageIDs
self.peerURLs = peerURLs
}
func isSelfMessage(_ message: BitchatMessage) -> Bool {
selfMessageIDs.contains(message.id)
}
func senderColor(for message: BitchatMessage, isDark: Bool) -> Color {
.red
}
func peerURL(for peerID: PeerID) -> URL? {
peerURLs[peerID]
}
}
@@ -0,0 +1,69 @@
import XCTest
@testable import bitchat
final class NoiseRateLimiterTests: XCTestCase {
func test_allowHandshake_blocksAfterPerPeerLimit() {
let limiter = NoiseRateLimiter()
let peerID = makePeerID(1)
for _ in 0..<NoiseSecurityConstants.maxHandshakesPerMinute {
XCTAssertTrue(limiter.allowHandshake(from: peerID))
}
XCTAssertFalse(limiter.allowHandshake(from: peerID))
}
func test_allowHandshake_blocksAfterGlobalLimitAcrossPeers() {
let limiter = NoiseRateLimiter()
for index in 0..<NoiseSecurityConstants.maxGlobalHandshakesPerMinute {
XCTAssertTrue(limiter.allowHandshake(from: makePeerID(index)))
}
XCTAssertFalse(limiter.allowHandshake(from: makePeerID(10_000)))
}
func test_reset_clearsPerPeerHandshakeLimit() async {
let limiter = NoiseRateLimiter()
let peerID = makePeerID(7)
for _ in 0..<NoiseSecurityConstants.maxHandshakesPerMinute {
XCTAssertTrue(limiter.allowHandshake(from: peerID))
}
XCTAssertFalse(limiter.allowHandshake(from: peerID))
limiter.reset(for: peerID)
try? await Task.sleep(nanoseconds: 50_000_000)
XCTAssertTrue(limiter.allowHandshake(from: peerID))
}
func test_allowMessage_blocksAfterPerPeerLimit() {
let limiter = NoiseRateLimiter()
let peerID = makePeerID(9)
for _ in 0..<NoiseSecurityConstants.maxMessagesPerSecond {
XCTAssertTrue(limiter.allowMessage(from: peerID))
}
XCTAssertFalse(limiter.allowMessage(from: peerID))
}
func test_resetAll_clearsGlobalHandshakeLimit() async {
let limiter = NoiseRateLimiter()
for index in 0..<NoiseSecurityConstants.maxGlobalHandshakesPerMinute {
XCTAssertTrue(limiter.allowHandshake(from: makePeerID(index)))
}
XCTAssertFalse(limiter.allowHandshake(from: makePeerID(20_000)))
limiter.resetAll()
try? await Task.sleep(nanoseconds: 50_000_000)
XCTAssertTrue(limiter.allowHandshake(from: makePeerID(20_001)))
}
private func makePeerID(_ value: Int) -> PeerID {
PeerID(str: String(format: "%016x", value))
}
}
@@ -0,0 +1,72 @@
import Foundation
import XCTest
@testable import bitchat
final class BinaryEncodingUtilsTests: XCTestCase {
func test_appendAndReadPrimitiveValues_roundTrip() throws {
var data = Data()
data.appendUInt8(0x12)
data.appendUInt16(0x3456)
data.appendUInt32(0x789ABCDE)
data.appendUInt64(0x0123456789ABCDEF)
var offset = 0
XCTAssertEqual(data.readUInt8(at: &offset), 0x12)
XCTAssertEqual(data.readUInt16(at: &offset), 0x3456)
XCTAssertEqual(data.readUInt32(at: &offset), 0x789ABCDE)
XCTAssertEqual(data.readUInt64(at: &offset), 0x0123456789ABCDEF)
XCTAssertEqual(offset, data.count)
}
func test_appendAndReadStringDataAndDate_roundTrip() throws {
let expectedDate = Date(timeIntervalSince1970: 1_700_000_000.123)
let expectedPayload = Data([0xAA, 0xBB, 0xCC, 0xDD])
var data = Data()
data.appendString("hello")
data.appendData(expectedPayload)
data.appendDate(expectedDate)
var offset = 0
XCTAssertEqual(data.readString(at: &offset), "hello")
XCTAssertEqual(data.readData(at: &offset), expectedPayload)
let decodedDate = try XCTUnwrap(data.readDate(at: &offset))
XCTAssertEqual(decodedDate.timeIntervalSince1970, expectedDate.timeIntervalSince1970, accuracy: 0.001)
}
func test_appendUUID_and_readUUID_roundTrip() throws {
let uuid = "12345678-90ab-cdef-1234-567890abcdef"
var data = Data()
data.appendUUID(uuid)
var offset = 0
XCTAssertEqual(data.readUUID(at: &offset), uuid.uppercased())
}
func test_appendStringAndData_truncateToConfiguredMaxLength() throws {
var data = Data()
data.appendString("abcdef", maxLength: 4)
data.appendData(Data([1, 2, 3, 4, 5]), maxLength: 3)
var offset = 0
XCTAssertEqual(data.readString(at: &offset), "abcd")
XCTAssertEqual(data.readData(at: &offset, maxLength: 3), Data([1, 2, 3]))
}
func test_readMethods_returnNilWhenOutOfBounds() {
var offset = 0
let shortData = Data([0x01])
XCTAssertNil(shortData.readUInt16(at: &offset))
XCTAssertEqual(offset, 0)
offset = 0
XCTAssertNil(shortData.readString(at: &offset))
XCTAssertEqual(offset, 1)
offset = 0
XCTAssertNil(shortData.readFixedBytes(at: &offset, count: 2))
XCTAssertEqual(offset, 0)
}
}
@@ -0,0 +1,97 @@
import XCTest
@testable import bitchat
@MainActor
final class FavoritesPersistenceServiceTests: XCTestCase {
private let storageKey = "chat.bitchat.favorites"
private let serviceKey = "chat.bitchat.favorites"
func test_addFavorite_persistsAndPostsNotification() throws {
let keychain = MockKeychain()
let service = FavoritesPersistenceService(keychain: keychain)
let peerKey = Data((0..<32).map(UInt8.init))
let expectation = expectation(forNotification: .favoriteStatusChanged, object: nil)
service.addFavorite(peerNoisePublicKey: peerKey, peerNostrPublicKey: "npub1alice", peerNickname: "Alice")
wait(for: [expectation], timeout: 1.0)
XCTAssertTrue(service.isFavorite(peerKey))
XCTAssertEqual(service.getFavoriteStatus(for: peerKey)?.peerNickname, "Alice")
XCTAssertNotNil(keychain.load(key: storageKey, service: serviceKey))
}
func test_removeFavorite_preservesRelationshipWhenPeerStillFavoritesUs() {
let service = FavoritesPersistenceService(keychain: MockKeychain())
let peerKey = Data((32..<64).map(UInt8.init))
service.updatePeerFavoritedUs(peerNoisePublicKey: peerKey, favorited: true, peerNickname: "Bob")
service.addFavorite(peerNoisePublicKey: peerKey, peerNickname: "Bob")
service.removeFavorite(peerNoisePublicKey: peerKey)
let relationship = service.getFavoriteStatus(for: peerKey)
XCTAssertNotNil(relationship)
XCTAssertEqual(relationship?.peerNickname, "Bob")
XCTAssertFalse(relationship?.isFavorite ?? true)
XCTAssertTrue(relationship?.theyFavoritedUs ?? false)
}
func test_updatePeerFavoritedUs_removesRelationshipWhenNeitherSideFavorites() {
let service = FavoritesPersistenceService(keychain: MockKeychain())
let peerKey = Data((64..<96).map(UInt8.init))
service.updatePeerFavoritedUs(peerNoisePublicKey: peerKey, favorited: true, peerNickname: "Carol")
XCTAssertNotNil(service.getFavoriteStatus(for: peerKey))
service.updatePeerFavoritedUs(peerNoisePublicKey: peerKey, favorited: false, peerNickname: "Carol")
XCTAssertNil(service.getFavoriteStatus(for: peerKey))
XCTAssertFalse(service.isMutualFavorite(peerKey))
}
func test_getFavoriteStatus_forPeerID_returnsMutualFavorite() {
let service = FavoritesPersistenceService(keychain: MockKeychain())
let peerKey = Data((96..<128).map(UInt8.init))
service.addFavorite(peerNoisePublicKey: peerKey, peerNostrPublicKey: "npub1dan", peerNickname: "Dan")
service.updatePeerFavoritedUs(peerNoisePublicKey: peerKey, favorited: true, peerNickname: "Dan")
let relationship = service.getFavoriteStatus(forPeerID: PeerID(publicKey: peerKey))
XCTAssertEqual(relationship?.peerNickname, "Dan")
XCTAssertTrue(service.isMutualFavorite(peerKey))
}
func test_init_deduplicatesPersistedRelationshipsByPublicKey() throws {
let keychain = MockKeychain()
let peerKey = Data((128..<160).map(UInt8.init))
let older = FavoritesPersistenceService.FavoriteRelationship(
peerNoisePublicKey: peerKey,
peerNostrPublicKey: nil,
peerNickname: "Older",
isFavorite: true,
theyFavoritedUs: false,
favoritedAt: Date(timeIntervalSince1970: 100),
lastUpdated: Date(timeIntervalSince1970: 100)
)
let newer = FavoritesPersistenceService.FavoriteRelationship(
peerNoisePublicKey: peerKey,
peerNostrPublicKey: "npub1newer",
peerNickname: "Newer",
isFavorite: true,
theyFavoritedUs: true,
favoritedAt: Date(timeIntervalSince1970: 100),
lastUpdated: Date(timeIntervalSince1970: 200)
)
let encoded = try JSONEncoder().encode([older, newer])
keychain.save(key: storageKey, data: encoded, service: serviceKey, accessible: nil)
let service = FavoritesPersistenceService(keychain: keychain)
XCTAssertEqual(service.favorites.count, 1)
XCTAssertEqual(service.getFavoriteStatus(for: peerKey)?.peerNickname, "Newer")
XCTAssertEqual(service.getFavoriteStatus(for: peerKey)?.peerNostrPublicKey, "npub1newer")
let cleaned = try XCTUnwrap(keychain.load(key: storageKey, service: serviceKey))
let decoded = try JSONDecoder().decode([FavoritesPersistenceService.FavoriteRelationship].self, from: cleaned)
XCTAssertEqual(decoded.count, 1)
}
}
@@ -0,0 +1,237 @@
import Combine
import XCTest
@testable import bitchat
@MainActor
final class GeohashPresenceServiceTests: XCTestCase {
func test_start_schedulesHeartbeatUsingConfiguredInterval() {
let scheduler = MockGeohashPresenceScheduler()
let service = makeService(scheduler: scheduler, loopMinInterval: 42, loopMaxInterval: 42)
service.start()
XCTAssertEqual(scheduler.intervals, [42])
}
func test_handleLocationChange_invalidatesExistingTimerAndSchedulesQuickRefresh() {
let scheduler = MockGeohashPresenceScheduler()
let service = makeService(scheduler: scheduler, loopMinInterval: 40, loopMaxInterval: 40)
service.start()
let originalTimer = scheduler.timers.first
service.handleLocationChange()
XCTAssertEqual(scheduler.intervals, [40, 5])
XCTAssertEqual(originalTimer?.invalidateCallCount, 1)
}
func test_handleConnectivityChange_onlySchedulesWhenExistingTimerIsMissingOrInvalid() {
let scheduler = MockGeohashPresenceScheduler()
let service = makeService(scheduler: scheduler, loopMinInterval: 33, loopMaxInterval: 33)
service.start()
service.handleConnectivityChange()
XCTAssertEqual(scheduler.intervals, [33])
scheduler.timers.last?.invalidate()
service.handleConnectivityChange()
XCTAssertEqual(scheduler.intervals, [33, 33])
}
func test_performHeartbeat_broadcastsOnlyAllowedPrecisionChannels() async throws {
let identity = try NostrIdentity.generate()
let scheduler = MockGeohashPresenceScheduler()
var sentGeohashes: [String] = []
var lookedUpGeohashes: [String] = []
var sleptNanoseconds: [UInt64] = []
let channels = [
GeohashChannel(level: .region, geohash: "9q"),
GeohashChannel(level: .province, geohash: "9q8y"),
GeohashChannel(level: .city, geohash: "9q8yy"),
GeohashChannel(level: .neighborhood, geohash: "9q8yyk"),
GeohashChannel(level: .block, geohash: "9q8yyk8"),
GeohashChannel(level: .building, geohash: "9q8yyk8y")
]
let service = makeService(
scheduler: scheduler,
availableChannels: channels,
deriveIdentity: { _ in identity },
relayLookup: { geohash, _ in
lookedUpGeohashes.append(geohash)
return ["wss://\(geohash).example"]
},
relaySender: { event, _ in
let geohash = event.tags.first(where: { $0.first == "g" })?[1]
if let geohash {
sentGeohashes.append(geohash)
}
},
sleeper: { nanoseconds in
sleptNanoseconds.append(nanoseconds)
},
loopMinInterval: 17,
loopMaxInterval: 17,
burstMinDelay: 0,
burstMaxDelay: 0
)
service.performHeartbeat()
let sentAllAllowedChannels = await waitUntil { sentGeohashes.count == 3 }
XCTAssertTrue(sentAllAllowedChannels)
XCTAssertEqual(Set(sentGeohashes), Set(["9q", "9q8y", "9q8yy"]))
XCTAssertEqual(Set(lookedUpGeohashes), Set(["9q", "9q8y", "9q8yy"]))
XCTAssertEqual(sleptNanoseconds.count, 3)
XCTAssertEqual(scheduler.intervals, [17])
}
func test_performHeartbeat_skipsBroadcastWhenTorIsNotReady() async {
let scheduler = MockGeohashPresenceScheduler()
var sendCount = 0
let service = makeService(
scheduler: scheduler,
torIsReady: { false },
relaySender: { _, _ in sendCount += 1 },
loopMinInterval: 21,
loopMaxInterval: 21
)
service.performHeartbeat()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(sendCount, 0)
XCTAssertEqual(scheduler.intervals, [21])
}
func test_performHeartbeat_skipsBroadcastWhenAppIsBackgrounded() async {
let scheduler = MockGeohashPresenceScheduler()
var sendCount = 0
let service = makeService(
scheduler: scheduler,
torIsForeground: { false },
relaySender: { _, _ in sendCount += 1 },
loopMinInterval: 22,
loopMaxInterval: 22
)
service.performHeartbeat()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(sendCount, 0)
XCTAssertEqual(scheduler.intervals, [22])
}
func test_broadcastPresence_skipsSendWhenNoRelaysAreAvailable() async throws {
let identity = try NostrIdentity.generate()
var sendCount = 0
let service = makeService(
scheduler: MockGeohashPresenceScheduler(),
deriveIdentity: { _ in identity },
relayLookup: { _, _ in [] },
relaySender: { _, _ in sendCount += 1 }
)
service.broadcastPresence(for: "9q8yy")
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(sendCount, 0)
}
func test_broadcastPresence_skipsSendWhenIdentityDerivationFails() async {
enum PresenceError: Error { case failed }
var sendCount = 0
let service = makeService(
scheduler: MockGeohashPresenceScheduler(),
deriveIdentity: { _ in throw PresenceError.failed },
relaySender: { _, _ in sendCount += 1 }
)
service.broadcastPresence(for: "9q8yy")
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(sendCount, 0)
}
private func makeService(
scheduler: MockGeohashPresenceScheduler,
availableChannels: [GeohashChannel] = [
GeohashChannel(level: .city, geohash: "9q8yy")
],
torIsReady: @escaping () -> Bool = { true },
torIsForeground: @escaping () -> Bool = { true },
deriveIdentity: @escaping (String) throws -> NostrIdentity = { _ in try NostrIdentity.generate() },
relayLookup: @escaping (String, Int) -> [String] = { geohash, _ in ["wss://\(geohash).example"] },
relaySender: @escaping (NostrEvent, [String]) -> Void = { _, _ in },
sleeper: @escaping (UInt64) async -> Void = { _ in },
loopMinInterval: TimeInterval = 40,
loopMaxInterval: TimeInterval = 40,
burstMinDelay: TimeInterval = 0,
burstMaxDelay: TimeInterval = 0
) -> GeohashPresenceService {
let locationSubject = PassthroughSubject<[GeohashChannel], Never>()
let torReadySubject = PassthroughSubject<Void, Never>()
return GeohashPresenceService(
availableChannelsProvider: { availableChannels },
locationChanges: locationSubject.eraseToAnyPublisher(),
torReadyPublisher: torReadySubject.eraseToAnyPublisher(),
torIsReady: torIsReady,
torIsForeground: torIsForeground,
deriveIdentity: deriveIdentity,
relayLookup: relayLookup,
relaySender: relaySender,
sleeper: sleeper,
scheduleTimer: scheduler.schedule(interval:handler:),
loopMinInterval: loopMinInterval,
loopMaxInterval: loopMaxInterval,
burstMinDelay: burstMinDelay,
burstMaxDelay: burstMaxDelay
)
}
private func waitUntil(
timeout: TimeInterval = 1.0,
condition: @escaping @MainActor () -> Bool
) async -> Bool {
let deadline = Date().addingTimeInterval(timeout)
while Date() < deadline {
if condition() {
return true
}
try? await Task.sleep(nanoseconds: 10_000_000)
}
return condition()
}
}
private final class MockGeohashPresenceScheduler {
private(set) var intervals: [TimeInterval] = []
private(set) var timers: [MockGeohashPresenceTimer] = []
func schedule(interval: TimeInterval, handler: @escaping () -> Void) -> GeohashPresenceTimerProtocol {
intervals.append(interval)
let timer = MockGeohashPresenceTimer(handler: handler)
timers.append(timer)
return timer
}
}
private final class MockGeohashPresenceTimer: GeohashPresenceTimerProtocol {
private let handler: () -> Void
private(set) var isValid = true
private(set) var invalidateCallCount = 0
init(handler: @escaping () -> Void) {
self.handler = handler
}
func invalidate() {
invalidateCallCount += 1
isValid = false
}
func fire() {
handler()
}
}
@@ -0,0 +1,304 @@
import CoreLocation
import MapKit
import XCTest
@testable import bitchat
@MainActor
final class LocationStateManagerTests: XCTestCase {
func test_loadPersistedState_normalizesBookmarksAndRestoresTeleportedSelection() async throws {
let storage = makeStorage()
let selected = ChannelID.location(GeohashChannel(level: .city, geohash: "u4pru"))
storage.set(try JSONEncoder().encode(selected), forKey: "locationChannel.selected")
storage.set(try JSONEncoder().encode(["u4pru"]), forKey: "locationChannel.teleportedSet")
storage.set(try JSONEncoder().encode(["#U4PRU", "u4pru", ""]), forKey: "locationChannel.bookmarks")
let manager = LocationStateManager(
storage: storage,
locationManager: MockLocationManager(authorizationStatus: .denied),
geocoder: MockLocationGeocoder(),
shouldInitializeCoreLocation: true
)
let deniedLoaded = await waitUntil { manager.permissionState == .denied }
XCTAssertTrue(deniedLoaded)
XCTAssertEqual(manager.bookmarks, ["u4pru"])
XCTAssertEqual(manager.selectedChannel, selected)
let teleportedLoaded = await waitUntil { manager.teleported }
XCTAssertTrue(teleportedLoaded)
}
func test_enableLocationChannels_requestsAuthorizationWhenStatusIsUndetermined() {
let locationManager = MockLocationManager(authorizationStatus: .notDetermined)
let manager = LocationStateManager(
storage: makeStorage(),
locationManager: locationManager,
geocoder: MockLocationGeocoder(),
shouldInitializeCoreLocation: true
)
manager.enableLocationChannels()
XCTAssertEqual(locationManager.requestAuthorizationCallCount, 1)
XCTAssertEqual(locationManager.requestLocationCallCount, 0)
}
func test_enableLocationChannels_requestsOneShotLocationWhenAuthorized() async {
let locationManager = MockLocationManager(authorizationStatus: .authorizedAlways)
let manager = LocationStateManager(
storage: makeStorage(),
locationManager: locationManager,
geocoder: MockLocationGeocoder(),
shouldInitializeCoreLocation: true
)
let authorizedLoaded = await waitUntil { manager.permissionState == .authorized }
XCTAssertTrue(authorizedLoaded)
manager.enableLocationChannels()
XCTAssertEqual(locationManager.requestLocationCallCount, 1)
XCTAssertEqual(manager.permissionState, .authorized)
}
func test_beginAndEndLiveRefresh_adjustLocationManagerMode() async {
let locationManager = MockLocationManager(authorizationStatus: .authorizedAlways)
let manager = LocationStateManager(
storage: makeStorage(),
locationManager: locationManager,
geocoder: MockLocationGeocoder(),
shouldInitializeCoreLocation: true
)
let authorizedLoaded = await waitUntil { manager.permissionState == .authorized }
XCTAssertTrue(authorizedLoaded)
manager.beginLiveRefresh()
XCTAssertEqual(locationManager.startUpdatingLocationCallCount, 1)
XCTAssertEqual(locationManager.requestLocationCallCount, 1)
XCTAssertEqual(locationManager.desiredAccuracy, kCLLocationAccuracyNearestTenMeters)
XCTAssertEqual(locationManager.distanceFilter, TransportConfig.locationDistanceFilterLiveMeters)
manager.endLiveRefresh()
XCTAssertEqual(locationManager.stopUpdatingLocationCallCount, 1)
XCTAssertEqual(locationManager.desiredAccuracy, kCLLocationAccuracyHundredMeters)
XCTAssertEqual(locationManager.distanceFilter, TransportConfig.locationDistanceFilterMeters)
}
func test_didUpdateLocations_computesChannelsAndReverseGeocodesFriendlyNames() async {
let geocoder = MockLocationGeocoder()
geocoder.enqueue(
placemarks: [
makePlacemark(
country: "United States",
administrativeArea: "Hawaii",
locality: "Honolulu",
subLocality: "Waikiki",
name: "Hilton Hawaiian Village"
)
]
)
let manager = LocationStateManager(
storage: makeStorage(),
locationManager: MockLocationManager(authorizationStatus: .authorizedAlways),
geocoder: geocoder,
shouldInitializeCoreLocation: true
)
let location = CLLocation(latitude: 21.2850, longitude: -157.8357)
manager.locationManager(CLLocationManager(), didUpdateLocations: [location])
let channelsAndNamesLoaded = await waitUntil {
manager.availableChannels.count == GeohashChannelLevel.allCases.count &&
manager.locationNames[.city] == "Honolulu" &&
manager.locationNames[.building] == "Hilton Hawaiian Village"
}
XCTAssertTrue(channelsAndNamesLoaded)
XCTAssertEqual(geocoder.cancelCallCount, 1)
XCTAssertEqual(geocoder.reverseRequests.count, 1)
XCTAssertEqual(manager.availableChannels.map(\.geohash.count), GeohashChannelLevel.allCases.map(\.precision))
XCTAssertEqual(manager.locationNames[.region], "United States")
XCTAssertEqual(manager.locationNames[.province], "Hawaii")
XCTAssertEqual(manager.locationNames[.city], "Honolulu")
XCTAssertEqual(manager.locationNames[.neighborhood], "Waikiki")
XCTAssertEqual(manager.locationNames[.block], "Waikiki")
XCTAssertEqual(manager.locationNames[.building], "Hilton Hawaiian Village")
}
func test_selectingInRegionChannel_clearsTeleportedPersistence() async {
let storage = makeStorage()
let manager = LocationStateManager(
storage: storage,
locationManager: MockLocationManager(authorizationStatus: .authorizedAlways),
geocoder: MockLocationGeocoder(),
shouldInitializeCoreLocation: true
)
let coordinate = CLLocationCoordinate2D(latitude: 37.7749, longitude: -122.4194)
let cityGeohash = Geohash.encode(
latitude: coordinate.latitude,
longitude: coordinate.longitude,
precision: GeohashChannelLevel.city.precision
)
let channel = GeohashChannel(level: .city, geohash: cityGeohash)
manager.locationManager(CLLocationManager(), didUpdateLocations: [CLLocation(latitude: coordinate.latitude, longitude: coordinate.longitude)])
let channelAvailable = await waitUntil { manager.availableChannels.contains(channel) }
XCTAssertTrue(channelAvailable)
manager.markTeleported(for: cityGeohash, true)
manager.select(.location(channel))
let selectionSettled = await waitUntil {
manager.selectedChannel == .location(channel) && !manager.teleported
}
XCTAssertTrue(selectionSettled)
let reloaded = LocationStateManager(
storage: storage,
locationManager: MockLocationManager(authorizationStatus: .denied),
geocoder: MockLocationGeocoder(),
shouldInitializeCoreLocation: true
)
let reloadedDenied = await waitUntil { reloaded.permissionState == .denied }
XCTAssertTrue(reloadedDenied)
XCTAssertEqual(reloaded.selectedChannel, .location(channel))
XCTAssertFalse(reloaded.teleported)
}
func test_addBookmark_lowPrecisionResolvesCompositeAdminName() async {
let geocoder = MockLocationGeocoder()
geocoder.enqueue(placemarks: [makePlacemark(country: "United States", administrativeArea: "California")])
geocoder.enqueue(placemarks: [makePlacemark(country: "United States", administrativeArea: "Nevada")])
geocoder.enqueue(placemarks: [makePlacemark(country: "United States", administrativeArea: "California")])
geocoder.enqueue(placemarks: [makePlacemark(country: "United States", administrativeArea: "Arizona")])
geocoder.enqueue(placemarks: [makePlacemark(country: "United States", administrativeArea: "Nevada")])
let manager = LocationStateManager(
storage: makeStorage(),
locationManager: MockLocationManager(authorizationStatus: .denied),
geocoder: geocoder,
shouldInitializeCoreLocation: false
)
manager.addBookmark("9q")
let bookmarkResolved = await waitUntil { manager.bookmarkNames["9q"] == "California and Nevada" }
XCTAssertTrue(bookmarkResolved)
XCTAssertEqual(geocoder.reverseRequests.count, 5)
XCTAssertEqual(manager.bookmarks, ["9q"])
}
private func makeStorage() -> UserDefaults {
let suiteName = "LocationStateManagerTests-\(UUID().uuidString)"
let storage = UserDefaults(suiteName: suiteName)!
storage.removePersistentDomain(forName: suiteName)
addTeardownBlock {
storage.removePersistentDomain(forName: suiteName)
}
return storage
}
private func makePlacemark(
country: String? = nil,
administrativeArea: String? = nil,
locality: String? = nil,
subLocality: String? = nil,
name: String? = nil
) -> CLPlacemark {
var address: [String: Any] = [:]
if let country {
address["Country"] = country
}
if let administrativeArea {
address["State"] = administrativeArea
}
if let locality {
address["City"] = locality
}
if let subLocality {
address["SubLocality"] = subLocality
}
if let name {
address["Name"] = name
}
let placemark = MKPlacemark(
coordinate: CLLocationCoordinate2D(latitude: 21.2850, longitude: -157.8357),
addressDictionary: address
)
return CLPlacemark(placemark: placemark)
}
private func waitUntil(
timeout: TimeInterval = 1.0,
condition: @escaping @MainActor () -> Bool
) async -> Bool {
let deadline = Date().addingTimeInterval(timeout)
while Date() < deadline {
if condition() {
return true
}
try? await Task.sleep(nanoseconds: 10_000_000)
}
return condition()
}
}
private final class MockLocationManager: LocationStateManaging {
weak var delegate: CLLocationManagerDelegate?
var desiredAccuracy: CLLocationAccuracy = 0
var distanceFilter: CLLocationDistance = 0
var authorizationStatus: CLAuthorizationStatus
private(set) var requestAuthorizationCallCount = 0
private(set) var requestLocationCallCount = 0
private(set) var startUpdatingLocationCallCount = 0
private(set) var stopUpdatingLocationCallCount = 0
init(authorizationStatus: CLAuthorizationStatus) {
self.authorizationStatus = authorizationStatus
}
func requestWhenInUseAuthorization() {
requestAuthorizationCallCount += 1
}
func requestLocation() {
requestLocationCallCount += 1
}
func startUpdatingLocation() {
startUpdatingLocationCallCount += 1
}
func stopUpdatingLocation() {
stopUpdatingLocationCallCount += 1
}
}
private final class MockLocationGeocoder: LocationStateGeocoding {
private struct Response {
let placemarks: [CLPlacemark]?
let error: Error?
}
private(set) var cancelCallCount = 0
private(set) var reverseRequests: [CLLocation] = []
private var responses: [Response] = []
func enqueue(placemarks: [CLPlacemark]?, error: Error? = nil) {
responses.append(Response(placemarks: placemarks, error: error))
}
func cancelGeocode() {
cancelCallCount += 1
}
func reverseGeocodeLocation(
_ location: CLLocation,
completionHandler: @escaping ([CLPlacemark]?, Error?) -> Void
) {
reverseRequests.append(location)
let response = responses.isEmpty ? Response(placemarks: nil, error: nil) : responses.removeFirst()
completionHandler(response.placemarks, response.error)
}
}
@@ -0,0 +1,197 @@
import Combine
import XCTest
@testable import bitchat
@MainActor
final class NetworkActivationServiceTests: XCTestCase {
private let torPreferenceKey = "networkActivationService.userTorEnabled"
func test_start_leavesNetworkDisabledWithoutPermissionOrFavorites() {
let context = makeService(permission: .denied, favorites: [])
context.service.start()
XCTAssertFalse(context.service.activationAllowed)
XCTAssertEqual(context.torController.autoStartAllowedValues, [false])
XCTAssertEqual(context.proxyController.proxyModes, [false])
XCTAssertEqual(context.torController.startIfNeededCallCount, 0)
XCTAssertEqual(context.torController.shutdownCompletelyCallCount, 1)
XCTAssertEqual(context.relayController.connectCallCount, 0)
XCTAssertEqual(context.relayController.disconnectCallCount, 1)
}
func test_start_enablesTorAndRelaysWhenAuthorized() {
let context = makeService(permission: .authorized, favorites: [])
context.service.start()
XCTAssertTrue(context.service.activationAllowed)
XCTAssertEqual(context.torController.autoStartAllowedValues, [true])
XCTAssertEqual(context.proxyController.proxyModes, [true])
XCTAssertEqual(context.torController.startIfNeededCallCount, 1)
XCTAssertEqual(context.relayController.connectCallCount, 1)
XCTAssertEqual(context.relayController.disconnectCallCount, 0)
}
func test_start_respectsStoredTorPreferenceForDirectMode() {
let context = makeService(permission: .authorized, favorites: [])
context.storage.set(false, forKey: torPreferenceKey)
context.service.start()
XCTAssertTrue(context.service.activationAllowed)
XCTAssertFalse(context.service.userTorEnabled)
XCTAssertEqual(context.torController.autoStartAllowedValues, [false])
XCTAssertEqual(context.proxyController.proxyModes, [false])
XCTAssertEqual(context.torController.startIfNeededCallCount, 0)
XCTAssertEqual(context.torController.shutdownCompletelyCallCount, 1)
XCTAssertEqual(context.relayController.connectCallCount, 1)
}
func test_setUserTorEnabled_postsNotificationAndReconnectsOnTransportSwitch() {
let context = makeService(permission: .authorized, favorites: [])
let notified = expectation(description: "Tor preference notification")
let token = context.notificationCenter.addObserver(
forName: .TorUserPreferenceChanged,
object: nil,
queue: nil
) { note in
XCTAssertEqual(note.userInfo?["enabled"] as? Bool, false)
notified.fulfill()
}
context.service.start()
context.service.setUserTorEnabled(false)
wait(for: [notified], timeout: 1.0)
context.notificationCenter.removeObserver(token)
XCTAssertFalse(context.service.userTorEnabled)
XCTAssertEqual(context.storage.object(forKey: torPreferenceKey) as? Bool, false)
XCTAssertEqual(Array(context.proxyController.proxyModes.suffix(2)), [true, false])
XCTAssertEqual(Array(context.torController.autoStartAllowedValues.suffix(2)), [true, false])
XCTAssertEqual(context.relayController.disconnectCallCount, 1)
XCTAssertEqual(context.relayController.connectCallCount, 2)
}
func test_mutualFavoritesPublisher_reactivatesNetwork() async {
let context = makeService(permission: .denied, favorites: [])
context.service.start()
XCTAssertFalse(context.service.activationAllowed)
context.favoritesSubject.send([Data([0x01])])
let becameActive = await waitUntil { context.service.activationAllowed }
XCTAssertTrue(becameActive)
XCTAssertTrue(context.service.activationAllowed)
XCTAssertTrue(context.torController.autoStartAllowedValues.contains(true))
XCTAssertTrue(context.proxyController.proxyModes.contains(true))
XCTAssertGreaterThanOrEqual(context.torController.startIfNeededCallCount, 1)
XCTAssertGreaterThanOrEqual(context.relayController.connectCallCount, 1)
}
private func makeService(
permission: LocationChannelManager.PermissionState,
favorites: Set<Data>
) -> NetworkActivationTestContext {
let suiteName = "NetworkActivationServiceTests-\(UUID().uuidString)"
let storage = UserDefaults(suiteName: suiteName)!
storage.removePersistentDomain(forName: suiteName)
let permissionSubject = CurrentValueSubject<LocationChannelManager.PermissionState, Never>(permission)
let favoritesSubject = CurrentValueSubject<Set<Data>, Never>(favorites)
let torController = MockNetworkActivationTorController()
let relayController = MockNetworkActivationRelayController()
let proxyController = MockNetworkActivationProxyController()
let notificationCenter = NotificationCenter()
let service = NetworkActivationService(
storage: storage,
locationPermissionPublisher: permissionSubject.eraseToAnyPublisher(),
mutualFavoritesPublisher: favoritesSubject.eraseToAnyPublisher(),
permissionProvider: { permissionSubject.value },
mutualFavoritesProvider: { favoritesSubject.value },
torController: torController,
relayController: relayController,
proxyController: proxyController,
notificationCenter: notificationCenter
)
return NetworkActivationTestContext(
service: service,
storage: storage,
permissionSubject: permissionSubject,
favoritesSubject: favoritesSubject,
torController: torController,
relayController: relayController,
proxyController: proxyController,
notificationCenter: notificationCenter
)
}
private func waitUntil(
timeout: TimeInterval = 1.0,
condition: @escaping @MainActor () -> Bool
) async -> Bool {
let deadline = Date().addingTimeInterval(timeout)
while Date() < deadline {
if condition() {
return true
}
try? await Task.sleep(nanoseconds: 10_000_000)
}
return condition()
}
}
@MainActor
private struct NetworkActivationTestContext {
let service: NetworkActivationService
let storage: UserDefaults
let permissionSubject: CurrentValueSubject<LocationChannelManager.PermissionState, Never>
let favoritesSubject: CurrentValueSubject<Set<Data>, Never>
let torController: MockNetworkActivationTorController
let relayController: MockNetworkActivationRelayController
let proxyController: MockNetworkActivationProxyController
let notificationCenter: NotificationCenter
}
@MainActor
private final class MockNetworkActivationTorController: NetworkActivationTorControlling {
private(set) var autoStartAllowedValues: [Bool] = []
private(set) var startIfNeededCallCount = 0
private(set) var shutdownCompletelyCallCount = 0
func setAutoStartAllowed(_ allowed: Bool) {
autoStartAllowedValues.append(allowed)
}
func startIfNeeded() {
startIfNeededCallCount += 1
}
func shutdownCompletely() {
shutdownCompletelyCallCount += 1
}
}
@MainActor
private final class MockNetworkActivationRelayController: NetworkActivationRelayControlling {
private(set) var connectCallCount = 0
private(set) var disconnectCallCount = 0
func connect() {
connectCallCount += 1
}
func disconnect() {
disconnectCallCount += 1
}
}
private final class MockNetworkActivationProxyController: NetworkActivationProxyControlling {
private(set) var proxyModes: [Bool] = []
func setProxyMode(useTor: Bool) {
proxyModes.append(useTor)
}
}
@@ -0,0 +1,441 @@
import Combine
import XCTest
@testable import bitchat
@MainActor
final class NostrRelayManagerTests: XCTestCase {
func test_permissionPublisher_addsAndRemovesDefaultRelays() async {
let context = makeContext(permission: .denied, favorites: [])
XCTAssertEqual(context.manager.getRelayStatuses().count, 0)
context.permissionSubject.send(.authorized)
let defaultRelaysConnected = await waitUntil {
context.manager.getRelayStatuses().count == 5 &&
context.manager.relays.allSatisfy(\.isConnected)
}
XCTAssertTrue(defaultRelaysConnected)
context.permissionSubject.send(.denied)
let defaultRelaysRemoved = await waitUntil {
context.manager.getRelayStatuses().isEmpty
}
XCTAssertTrue(defaultRelaysRemoved)
XCTAssertEqual(context.sessionFactory.allConnections.count, 5)
XCTAssertTrue(context.sessionFactory.allConnections.allSatisfy { $0.cancelCallCount >= 1 })
}
func test_connect_waitsForTorReadinessBeforeCreatingSessions() async {
let context = makeContext(permission: .authorized, userTorEnabled: true, torEnforced: true, torIsReady: false)
context.manager.connect()
XCTAssertTrue(context.sessionFactory.requestedURLs.isEmpty)
context.torWaiter.resolve(true)
let connectedAfterTorReady = await waitUntil {
context.sessionFactory.requestedURLs.count == 5 &&
context.manager.relays.allSatisfy(\.isConnected)
}
XCTAssertTrue(connectedAfterTorReady)
}
func test_connect_doesNothingWhenActivationIsDisallowed() {
let context = makeContext(permission: .authorized, activationAllowed: false)
context.manager.connect()
XCTAssertTrue(context.sessionFactory.requestedURLs.isEmpty)
XCTAssertFalse(context.manager.isConnected)
}
func test_ensureConnections_deduplicatesRelayURLs() async {
let relayOne = "wss://relay-one.example"
let relayTwo = "wss://relay-two.example"
let context = makeContext(permission: .denied)
context.manager.ensureConnections(to: [relayOne, relayOne, relayTwo])
let connected = await waitUntil {
Set(context.manager.getRelayStatuses().map(\.url)) == Set([relayOne, relayTwo]) &&
context.manager.relays.allSatisfy(\.isConnected)
}
XCTAssertTrue(connected)
XCTAssertEqual(context.sessionFactory.requestedURLs, [relayOne, relayTwo])
}
func test_subscribe_coalescesRapidDuplicateRequests() async {
let relayURL = "wss://subscribe.example"
let context = makeContext(permission: .denied)
let filter = makeFilter()
context.manager.subscribe(filter: filter, id: "sub", relayUrls: [relayURL], handler: { _ in })
let firstSent = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count == 1
}
XCTAssertTrue(firstSent)
context.clock.now = context.clock.now.addingTimeInterval(0.5)
context.manager.subscribe(filter: filter, id: "sub", relayUrls: [relayURL], handler: { _ in })
XCTAssertEqual(context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count, 1)
}
func test_unsubscribe_allowsResubscribeWithSameID() async {
let relayURL = "wss://subscribe.example"
let context = makeContext(permission: .denied)
let filter = makeFilter()
context.manager.subscribe(filter: filter, id: "sub", relayUrls: [relayURL], handler: { _ in })
let initialSubscribeSent = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count == 1
}
XCTAssertTrue(initialSubscribeSent)
context.manager.unsubscribe(id: "sub")
let closeSent = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count == 2
}
XCTAssertTrue(closeSent)
context.clock.now = context.clock.now.addingTimeInterval(0.2)
context.manager.subscribe(filter: filter, id: "sub", relayUrls: [relayURL], handler: { _ in })
let resubscribed = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count == 3
}
XCTAssertTrue(resubscribed)
}
func test_receiveEvent_deliversHandlerAndTracksReceivedCount() async throws {
let relayURL = "wss://events.example"
let context = makeContext(permission: .denied)
let filter = makeFilter()
let event = try makeSignedEvent(content: "hello")
var receivedEvent: NostrEvent?
context.manager.subscribe(filter: filter, id: "events", relayUrls: [relayURL]) { event in
receivedEvent = event
}
let subscriptionSent = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL)?.sentStrings.count == 1
}
XCTAssertTrue(subscriptionSent)
try context.sessionFactory.latestConnection(for: relayURL)?.emitEventMessage(subscriptionID: "events", event: event)
let delivered = await waitUntil {
receivedEvent?.id == event.id &&
context.manager.relays.first(where: { $0.url == relayURL })?.messagesReceived == 1
}
XCTAssertTrue(delivered)
XCTAssertEqual(receivedEvent?.id, event.id)
}
func test_eoseCallback_waitsForAllTargetedRelays() async throws {
let relayOne = "wss://one.example"
let relayTwo = "wss://two.example"
let context = makeContext(permission: .denied)
var eoseCount = 0
context.manager.subscribe(
filter: makeFilter(),
id: "eose",
relayUrls: [relayOne, relayTwo],
handler: { _ in },
onEOSE: { eoseCount += 1 }
)
let bothConnected = await waitUntil {
context.sessionFactory.latestConnection(for: relayOne)?.sentStrings.count == 1 &&
context.sessionFactory.latestConnection(for: relayTwo)?.sentStrings.count == 1
}
XCTAssertTrue(bothConnected)
try context.sessionFactory.latestConnection(for: relayOne)?.emitEOSE(subscriptionID: "eose")
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(eoseCount, 0)
try context.sessionFactory.latestConnection(for: relayTwo)?.emitEOSE(subscriptionID: "eose")
let eoseCompleted = await waitUntil { eoseCount == 1 }
XCTAssertTrue(eoseCompleted)
}
func test_receiveFailure_schedulesReconnectWithBackoff() async {
let relayURL = "wss://retry.example"
let context = makeContext(permission: .denied)
context.manager.ensureConnections(to: [relayURL])
let firstConnected = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL) != nil
}
XCTAssertTrue(firstConnected)
let firstConnection = context.sessionFactory.latestConnection(for: relayURL)
firstConnection?.fail(error: NSError(domain: NSURLErrorDomain, code: NSURLErrorTimedOut))
let retryScheduled = await waitUntil {
context.scheduler.scheduled.count == 1 &&
context.manager.relays.first(where: { $0.url == relayURL })?.reconnectAttempts == 1
}
XCTAssertTrue(retryScheduled)
XCTAssertEqual(context.scheduler.scheduled.first?.delay, TransportConfig.nostrRelayInitialBackoffSeconds)
let initialRequestCount = context.sessionFactory.requestedURLs.count
context.scheduler.runNext()
let retried = await waitUntil {
context.sessionFactory.requestedURLs.count == initialRequestCount + 1
}
XCTAssertTrue(retried)
}
func test_disconnect_invalidatesScheduledReconnectGeneration() async {
let relayURL = "wss://disconnect.example"
let context = makeContext(permission: .denied)
context.manager.ensureConnections(to: [relayURL])
let firstConnected = await waitUntil {
context.sessionFactory.latestConnection(for: relayURL) != nil
}
XCTAssertTrue(firstConnected)
context.sessionFactory.latestConnection(for: relayURL)?.fail(
error: NSError(domain: NSURLErrorDomain, code: NSURLErrorTimedOut)
)
let retryScheduled = await waitUntil { context.scheduler.scheduled.count == 1 }
XCTAssertTrue(retryScheduled)
let requestCountBeforeDisconnect = context.sessionFactory.requestedURLs.count
context.manager.disconnect()
context.scheduler.runNext()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(context.sessionFactory.requestedURLs.count, requestCountBeforeDisconnect)
}
private func makeContext(
permission: LocationChannelManager.PermissionState,
favorites: Set<Data> = [],
activationAllowed: Bool = true,
userTorEnabled: Bool = false,
torEnforced: Bool = false,
torIsReady: Bool = true
) -> RelayManagerTestContext {
let permissionSubject = CurrentValueSubject<LocationChannelManager.PermissionState, Never>(permission)
let favoritesSubject = CurrentValueSubject<Set<Data>, Never>(favorites)
let sessionFactory = MockRelaySessionFactory()
let scheduler = MockRelayScheduler()
let clock = MutableClock(now: Date(timeIntervalSince1970: 1_700_000_000))
let torWaiter = MockTorWaiter(isReady: torIsReady)
let manager = NostrRelayManager(
dependencies: NostrRelayManagerDependencies(
activationAllowed: { activationAllowed },
userTorEnabled: { userTorEnabled },
hasMutualFavorites: { !favoritesSubject.value.isEmpty },
hasLocationPermission: { permissionSubject.value == .authorized },
mutualFavoritesPublisher: favoritesSubject.eraseToAnyPublisher(),
locationPermissionPublisher: permissionSubject.eraseToAnyPublisher(),
torEnforced: { torEnforced },
torIsReady: { torWaiter.isReady },
torIsForeground: { true },
awaitTorReady: torWaiter.await(completion:),
makeSession: { sessionFactory },
scheduleAfter: scheduler.schedule(delay:action:),
now: { clock.now }
)
)
return RelayManagerTestContext(
manager: manager,
permissionSubject: permissionSubject,
favoritesSubject: favoritesSubject,
sessionFactory: sessionFactory,
scheduler: scheduler,
clock: clock,
torWaiter: torWaiter
)
}
private func makeFilter() -> NostrFilter {
var filter = NostrFilter()
filter.kinds = [NostrProtocol.EventKind.textNote.rawValue]
filter.limit = 10
return filter
}
private func makeSignedEvent(content: String) throws -> NostrEvent {
let identity = try NostrIdentity.generate()
let event = NostrEvent(
pubkey: identity.publicKeyHex,
createdAt: Date(),
kind: .textNote,
tags: [],
content: content
)
return try event.sign(with: identity.schnorrSigningKey())
}
private func waitUntil(
timeout: TimeInterval = 1.0,
condition: @escaping @MainActor () -> Bool
) async -> Bool {
let deadline = Date().addingTimeInterval(timeout)
while Date() < deadline {
if condition() {
return true
}
try? await Task.sleep(nanoseconds: 10_000_000)
}
return condition()
}
}
@MainActor
private struct RelayManagerTestContext {
let manager: NostrRelayManager
let permissionSubject: CurrentValueSubject<LocationChannelManager.PermissionState, Never>
let favoritesSubject: CurrentValueSubject<Set<Data>, Never>
let sessionFactory: MockRelaySessionFactory
let scheduler: MockRelayScheduler
let clock: MutableClock
let torWaiter: MockTorWaiter
}
private final class MutableClock {
var now: Date
init(now: Date) {
self.now = now
}
}
private final class MockTorWaiter {
private var completions: [(Bool) -> Void] = []
var isReady: Bool
init(isReady: Bool) {
self.isReady = isReady
}
func await(completion: @escaping (Bool) -> Void) {
completions.append(completion)
}
func resolve(_ ready: Bool) {
isReady = ready
let pending = completions
completions.removeAll()
pending.forEach { $0(ready) }
}
}
private final class MockRelayScheduler {
struct ScheduledAction {
let delay: TimeInterval
let action: () -> Void
}
private(set) var scheduled: [ScheduledAction] = []
func schedule(delay: TimeInterval, action: @escaping () -> Void) {
scheduled.append(ScheduledAction(delay: delay, action: action))
}
func runNext() {
guard !scheduled.isEmpty else { return }
let next = scheduled.removeFirst()
next.action()
}
}
private final class MockRelaySessionFactory: NostrRelaySessionProtocol {
private(set) var requestedURLs: [String] = []
private(set) var connectionsByURL: [String: [MockRelayConnection]] = [:]
var allConnections: [MockRelayConnection] {
connectionsByURL.values.flatMap { $0 }
}
func webSocketTask(with url: URL) -> NostrRelayConnectionProtocol {
requestedURLs.append(url.absoluteString)
let connection = MockRelayConnection(url: url.absoluteString)
connectionsByURL[url.absoluteString, default: []].append(connection)
return connection
}
func latestConnection(for url: String) -> MockRelayConnection? {
connectionsByURL[url]?.last
}
}
private final class MockRelayConnection: NostrRelayConnectionProtocol {
private let url: String
private var receiveHandler: ((Result<URLSessionWebSocketTask.Message, Error>) -> Void)?
private(set) var resumeCallCount = 0
private(set) var cancelCallCount = 0
private(set) var sentMessages: [URLSessionWebSocketTask.Message] = []
var sentStrings: [String] {
sentMessages.compactMap {
switch $0 {
case .string(let string): string
case .data(let data): String(data: data, encoding: .utf8)
@unknown default: nil
}
}
}
init(url: String) {
self.url = url
}
func resume() {
resumeCallCount += 1
}
func cancel(with closeCode: URLSessionWebSocketTask.CloseCode, reason: Data?) {
cancelCallCount += 1
}
func send(_ message: URLSessionWebSocketTask.Message, completionHandler: @escaping (Error?) -> Void) {
sentMessages.append(message)
completionHandler(nil)
}
func receive(completionHandler: @escaping (Result<URLSessionWebSocketTask.Message, Error>) -> Void) {
receiveHandler = completionHandler
}
func sendPing(pongReceiveHandler: @escaping (Error?) -> Void) {
pongReceiveHandler(nil)
}
func fail(error: Error) {
let handler = receiveHandler
receiveHandler = nil
handler?(.failure(error))
}
func emitEventMessage(subscriptionID: String, event: NostrEvent) throws {
let eventData = try JSONEncoder().encode(event)
let eventJSONObject = try JSONSerialization.jsonObject(with: eventData) as! [String: Any]
let payload: [Any] = ["EVENT", subscriptionID, eventJSONObject]
try emit(jsonObject: payload)
}
func emitEOSE(subscriptionID: String) throws {
try emit(jsonObject: ["EOSE", subscriptionID])
}
private func emit(jsonObject: Any) throws {
let data = try JSONSerialization.data(withJSONObject: jsonObject)
let handler = receiveHandler
receiveHandler = nil
handler?(.success(.data(data)))
}
}
@@ -0,0 +1,122 @@
import XCTest
import UserNotifications
@testable import bitchat
final class NotificationServiceTests: XCTestCase {
func test_requestAuthorization_skipsWhenRunningTests() {
let authorizer = RecordingNotificationAuthorizer()
let service = NotificationService(
isRunningTestsProvider: { true },
authorizer: authorizer,
requestDeliverer: RecordingNotificationRequestDeliverer()
)
service.requestAuthorization()
XCTAssertEqual(authorizer.requestCallCount, 0)
}
func test_requestAuthorization_requestsAlertSoundAndBadgePermissions() {
let authorizer = RecordingNotificationAuthorizer()
let service = NotificationService(
isRunningTestsProvider: { false },
authorizer: authorizer,
requestDeliverer: RecordingNotificationRequestDeliverer()
)
service.requestAuthorization()
XCTAssertEqual(authorizer.requestCallCount, 1)
XCTAssertEqual(authorizer.lastOptions, [.alert, .sound, .badge])
}
func test_sendLocalNotification_buildsImmediateRequestWithUserInfo() {
let deliverer = RecordingNotificationRequestDeliverer()
let service = NotificationService(
isRunningTestsProvider: { false },
authorizer: RecordingNotificationAuthorizer(),
requestDeliverer: deliverer
)
service.sendLocalNotification(
title: "Hello",
body: "World",
identifier: "custom-id",
userInfo: ["peerID": "abcd"],
interruptionLevel: .timeSensitive
)
let request = deliverer.requests.singleValue
XCTAssertEqual(request?.identifier, "custom-id")
XCTAssertEqual(request?.content.title, "Hello")
XCTAssertEqual(request?.content.body, "World")
XCTAssertEqual(request?.content.userInfo["peerID"] as? String, "abcd")
XCTAssertEqual(request?.content.interruptionLevel, .timeSensitive)
XCTAssertNil(request?.trigger)
}
func test_sendPrivateMessageNotification_populatesPeerMetadata() {
let deliverer = RecordingNotificationRequestDeliverer()
let service = NotificationService(
isRunningTestsProvider: { false },
authorizer: RecordingNotificationAuthorizer(),
requestDeliverer: deliverer
)
let peerID = PeerID(str: "deadbeefdeadbeef")
service.sendPrivateMessageNotification(from: "Alice", message: "hi", peerID: peerID)
let request = deliverer.requests.singleValue
XCTAssertEqual(request?.content.title, "🔒 DM from Alice")
XCTAssertEqual(request?.content.body, "hi")
XCTAssertEqual(request?.content.userInfo["peerID"] as? String, peerID.id)
XCTAssertEqual(request?.content.userInfo["senderName"] as? String, "Alice")
}
func test_wrapperNotifications_setExpectedIdentifiersAndDeepLinks() {
let deliverer = RecordingNotificationRequestDeliverer()
let service = NotificationService(
isRunningTestsProvider: { false },
authorizer: RecordingNotificationAuthorizer(),
requestDeliverer: deliverer
)
service.sendGeohashActivityNotification(geohash: "87yv", bodyPreview: "Someone is here")
service.sendNetworkAvailableNotification(peerCount: 2)
XCTAssertEqual(deliverer.requests.count, 2)
XCTAssertEqual(deliverer.requests[0].content.userInfo["deeplink"] as? String, "bitchat://geohash/87yv")
XCTAssertTrue(deliverer.requests[0].identifier.hasPrefix("geo-activity-87yv-"))
XCTAssertEqual(deliverer.requests[1].identifier, "network-available")
XCTAssertEqual(deliverer.requests[1].content.interruptionLevel, .timeSensitive)
XCTAssertEqual(deliverer.requests[1].content.body, "2 people around")
}
}
private final class RecordingNotificationAuthorizer: NotificationAuthorizing {
private(set) var requestCallCount = 0
private(set) var lastOptions: UNAuthorizationOptions?
func requestAuthorization(
options: UNAuthorizationOptions,
completionHandler: @escaping (Bool, Error?) -> Void
) {
requestCallCount += 1
lastOptions = options
completionHandler(true, nil)
}
}
private final class RecordingNotificationRequestDeliverer: NotificationRequestDelivering {
private(set) var requests: [UNNotificationRequest] = []
func add(_ request: UNNotificationRequest) {
requests.append(request)
}
}
private extension Array {
var singleValue: Element? {
count == 1 ? self[0] : nil
}
}
@@ -0,0 +1,138 @@
import Foundation
import XCTest
@testable import bitchat
final class SecureIdentityStateManagerTests: XCTestCase {
func test_upsertCryptographicIdentity_tracksByPeerIDPrefixAndClaimedNickname() async {
let manager = SecureIdentityStateManager(MockKeychain())
let noisePublicKey = Data(repeating: 0x11, count: 32)
let signingPublicKey = Data(repeating: 0x22, count: 32)
let fingerprint = noisePublicKey.sha256Fingerprint()
manager.upsertCryptographicIdentity(
fingerprint: fingerprint,
noisePublicKey: noisePublicKey,
signingPublicKey: signingPublicKey,
claimedNickname: "Alice"
)
let socialIdentityLoaded = await waitUntil {
manager.getSocialIdentity(for: fingerprint)?.claimedNickname == "Alice"
}
XCTAssertTrue(socialIdentityLoaded)
let matches = manager.getCryptoIdentitiesByPeerIDPrefix(PeerID(publicKey: noisePublicKey))
XCTAssertEqual(matches.count, 1)
XCTAssertEqual(matches.first?.fingerprint, fingerprint)
XCTAssertEqual(matches.first?.publicKey, noisePublicKey)
XCTAssertEqual(matches.first?.signingPublicKey, signingPublicKey)
}
func test_setBlocked_clearsFavoriteState() async {
let manager = SecureIdentityStateManager(MockKeychain())
let fingerprint = String(repeating: "ab", count: 32)
manager.setFavorite(fingerprint, isFavorite: true)
let favoriteSet = await waitUntil { manager.isFavorite(fingerprint: fingerprint) }
XCTAssertTrue(favoriteSet)
manager.setBlocked(fingerprint, isBlocked: true)
let blockedSet = await waitUntil { manager.isBlocked(fingerprint: fingerprint) }
XCTAssertTrue(blockedSet)
XCTAssertFalse(manager.isFavorite(fingerprint: fingerprint))
XCTAssertEqual(manager.getSocialIdentity(for: fingerprint)?.claimedNickname, "Unknown")
}
func test_setVerified_updatesTrustLevelAndVerifiedSet() async {
let manager = SecureIdentityStateManager(MockKeychain())
let fingerprint = String(repeating: "cd", count: 32)
manager.setFavorite(fingerprint, isFavorite: false)
_ = await waitUntil { manager.getSocialIdentity(for: fingerprint) != nil }
manager.setVerified(fingerprint: fingerprint, verified: true)
let verifiedSet = await waitUntil { manager.isVerified(fingerprint: fingerprint) }
XCTAssertTrue(verifiedSet)
XCTAssertTrue(manager.getVerifiedFingerprints().contains(fingerprint))
XCTAssertEqual(manager.getSocialIdentity(for: fingerprint)?.trustLevel, .verified)
}
func test_forceSave_persistsFavoriteStateAcrossReinit() async {
let keychain = MockKeychain()
let manager = SecureIdentityStateManager(keychain)
let fingerprint = String(repeating: "ef", count: 32)
manager.setFavorite(fingerprint, isFavorite: true)
let favoriteSet = await waitUntil { manager.isFavorite(fingerprint: fingerprint) }
XCTAssertTrue(favoriteSet)
manager.forceSave()
let reloaded = SecureIdentityStateManager(keychain)
XCTAssertTrue(reloaded.isFavorite(fingerprint: fingerprint))
}
func test_setNostrBlocked_normalizesToLowercaseAndPersists() async {
let keychain = MockKeychain()
let manager = SecureIdentityStateManager(keychain)
let pubkey = "ABCDEF1234"
manager.setNostrBlocked(pubkey, isBlocked: true)
let nostrBlocked = await waitUntil {
manager.isNostrBlocked(pubkeyHexLowercased: pubkey.lowercased())
}
XCTAssertTrue(nostrBlocked)
manager.forceSave()
let reloaded = SecureIdentityStateManager(keychain)
XCTAssertEqual(reloaded.getBlockedNostrPubkeys(), Set([pubkey.lowercased()]))
XCTAssertTrue(reloaded.isNostrBlocked(pubkeyHexLowercased: pubkey))
}
func test_corruptPersistedCache_fallsBackToEmptyState() {
let keychain = MockKeychain()
_ = keychain.saveIdentityKey(Data(repeating: 0x01, count: 32), forKey: "identityCacheEncryptionKey")
_ = keychain.saveIdentityKey(Data([0xFF, 0x00, 0xAA]), forKey: "bitchat.identityCache.v2")
let manager = SecureIdentityStateManager(keychain)
XCTAssertTrue(manager.getFavorites().isEmpty)
XCTAssertTrue(manager.getVerifiedFingerprints().isEmpty)
XCTAssertTrue(manager.getBlockedNostrPubkeys().isEmpty)
}
func test_clearAllIdentityData_removesCachedState() async {
let manager = SecureIdentityStateManager(MockKeychain())
let fingerprint = String(repeating: "12", count: 32)
manager.setFavorite(fingerprint, isFavorite: true)
manager.setVerified(fingerprint: fingerprint, verified: true)
manager.setNostrBlocked("ABCD", isBlocked: true)
let primed = await waitUntil {
manager.isFavorite(fingerprint: fingerprint) &&
manager.isVerified(fingerprint: fingerprint)
}
XCTAssertTrue(primed)
manager.clearAllIdentityData()
let cleared = await waitUntil {
!manager.isFavorite(fingerprint: fingerprint) &&
!manager.isVerified(fingerprint: fingerprint) &&
manager.getBlockedNostrPubkeys().isEmpty
}
XCTAssertTrue(cleared)
}
private func waitUntil(
timeout: TimeInterval = 1.0,
condition: @escaping () -> Bool
) async -> Bool {
let deadline = Date().addingTimeInterval(timeout)
while Date() < deadline {
if condition() {
return true
}
try? await Task.sleep(nanoseconds: 10_000_000)
}
return condition()
}
}
@@ -0,0 +1,128 @@
import XCTest
@testable import bitchat
final class VerificationServiceTests: XCTestCase {
func test_buildMyQRString_roundTripsSuccessfully() throws {
let (service, noise) = makeService()
let nickname = "alice-\(UUID().uuidString)"
let npub = "npub1testvalue"
let qrString = try XCTUnwrap(service.buildMyQRString(nickname: nickname, npub: npub))
let parsed = try XCTUnwrap(service.verifyScannedQR(qrString))
XCTAssertEqual(parsed.nickname, nickname)
XCTAssertEqual(parsed.npub, npub)
XCTAssertEqual(parsed.noiseKeyHex, noise.getStaticPublicKeyData().hexEncodedString())
XCTAssertEqual(parsed.signKeyHex, noise.getSigningPublicKeyData().hexEncodedString())
}
func test_buildMyQRString_returnsCachedValueForSameInputs() throws {
let (service, _) = makeService()
let nickname = "cache-\(UUID().uuidString)"
let first = try XCTUnwrap(service.buildMyQRString(nickname: nickname, npub: nil))
let second = try XCTUnwrap(service.buildMyQRString(nickname: nickname, npub: nil))
XCTAssertEqual(first, second)
}
func test_verifyScannedQR_rejectsExpiredPayload() throws {
let (service, noise) = makeService()
let oldTimestamp = Int64(Date().addingTimeInterval(-3600).timeIntervalSince1970)
let qrString = try makeSignedQR(
noise: noise,
nickname: "expired-\(UUID().uuidString)",
npub: nil,
ts: oldTimestamp
)
XCTAssertNil(service.verifyScannedQR(qrString, maxAge: 60))
}
func test_verifyScannedQR_rejectsTamperedSignature() throws {
let (service, noise) = makeService()
let badSignature = Data(repeating: 0xAA, count: 64)
let qrString = try makeSignedQR(
noise: noise,
nickname: "tampered-\(UUID().uuidString)",
npub: nil,
ts: Int64(Date().timeIntervalSince1970),
signatureOverride: badSignature
)
XCTAssertNil(service.verifyScannedQR(qrString))
}
func test_buildVerifyChallenge_roundTripsThroughNoisePayload() throws {
let (service, _) = makeService()
let noiseKeyHex = String(repeating: "ab", count: 32)
let nonce = Data([0x01, 0x02, 0x03, 0x04])
let encoded = service.buildVerifyChallenge(noiseKeyHex: noiseKeyHex, nonceA: nonce)
let payload = try XCTUnwrap(NoisePayload.decode(encoded))
let parsed = try XCTUnwrap(service.parseVerifyChallenge(payload.data))
XCTAssertEqual(payload.type, .verifyChallenge)
XCTAssertEqual(parsed.noiseKeyHex, noiseKeyHex)
XCTAssertEqual(parsed.nonceA, nonce)
}
func test_buildVerifyResponse_roundTripsAndVerifiesSignature() throws {
let (service, noise) = makeService()
let noiseKeyHex = String(repeating: "cd", count: 32)
let nonce = Data([0x10, 0x20, 0x30, 0x40, 0x50])
let encoded = try XCTUnwrap(service.buildVerifyResponse(noiseKeyHex: noiseKeyHex, nonceA: nonce))
let payload = try XCTUnwrap(NoisePayload.decode(encoded))
let parsed = try XCTUnwrap(service.parseVerifyResponse(payload.data))
XCTAssertEqual(payload.type, .verifyResponse)
XCTAssertEqual(parsed.noiseKeyHex, noiseKeyHex)
XCTAssertEqual(parsed.nonceA, nonce)
XCTAssertTrue(
service.verifyResponseSignature(
noiseKeyHex: parsed.noiseKeyHex,
nonceA: parsed.nonceA,
signature: parsed.signature,
signerPublicKeyHex: noise.getSigningPublicKeyData().hexEncodedString()
)
)
XCTAssertFalse(
service.verifyResponseSignature(
noiseKeyHex: parsed.noiseKeyHex,
nonceA: Data([0xFF]),
signature: parsed.signature,
signerPublicKeyHex: noise.getSigningPublicKeyData().hexEncodedString()
)
)
}
private func makeService() -> (VerificationService, NoiseEncryptionService) {
let noise = NoiseEncryptionService(keychain: MockKeychain())
let service = VerificationService()
service.configure(with: noise)
return (service, noise)
}
private func makeSignedQR(
noise: NoiseEncryptionService,
nickname: String,
npub: String?,
ts: Int64,
signatureOverride: Data? = nil
) throws -> String {
var payload = VerificationService.VerificationQR(
v: 1,
noiseKeyHex: noise.getStaticPublicKeyData().hexEncodedString(),
signKeyHex: noise.getSigningPublicKeyData().hexEncodedString(),
npub: npub,
nickname: nickname,
ts: ts,
nonceB64: Data((0..<16).map(UInt8.init)).base64EncodedString(),
sigHex: ""
)
let signature = try XCTUnwrap(signatureOverride ?? noise.signData(payload.canonicalBytes()))
payload.sigHex = signature.hexEncodedString()
return payload.toURLString()
}
}