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78 changed files with 7520 additions and 470 deletions
+3 -3
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@@ -17,8 +17,8 @@ bitchat is designed for private, account-free communication. This policy describ
1. **Identity and cryptographic keys**
- Noise, signing, group, prekey, and optional Nostr identity material is generated locally.
- Secret keys are stored in the system keychain. Public keys are shared when required for messaging, verification, groups, or Nostr events.
- Keys remain until they are rotated, removed by the relevant feature, erased with panic wipe, or removed with the app.
- Secret keys are stored in the system keychain as device-only items. Public keys are shared when required for messaging, verification, groups, or Nostr events.
- Keys remain until they are rotated, removed by the relevant feature, or erased with panic wipe. Because operating-system keychains can outlive an uninstall, bitchat records a non-secret install marker and deletes surviving app keys before use after a later reinstall.
2. **Nickname, preferences, and relationships**
- Your nickname, settings, favorites, petnames, read-receipt identifiers, and bounded operational metadata are stored locally.
@@ -121,7 +121,7 @@ No cryptographic system can protect content after a recipient reads, copies, scr
## Your Controls
- **Panic wipe:** Triple-tap the logo to clear local keys, sessions, preferences, groups, queues, carried mail, public archives, board data, and media managed by the app.
- **Panic wipe:** Triple-tap the logo to synchronously cancel in-flight media work and clear local keys, sessions, preferences, groups, queues, carried mail, public archives, board data, and media managed by the app.
- **Feature controls:** Location channels, mesh bridge, internet gateway, and related internet behaviors can be disabled in the app. Some already-published relay data cannot be recalled.
- **System permissions:** Bluetooth, location, microphone, camera, and photo-library access can be revoked in system settings.
- **No account:** The project operates no account record for you to request or export.
+8
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@@ -21,6 +21,9 @@ final class AppChromeModel: ObservableObject {
private let chatViewModel: ChatViewModel
private var cancellables = Set<AnyCancellable>()
/// The composer owns capture state above ChatViewModel. ContentView
/// installs this hook so both panic entry points synchronously stop it.
private var prepareForPanic: (@MainActor () -> Void)?
/// Bulletin-board coordinator, created on first use of the board sheet.
private(set) lazy var boardManager = BoardManager(transport: chatViewModel.meshService)
@@ -97,7 +100,12 @@ final class AppChromeModel: ObservableObject {
showScreenshotPrivacyWarning = true
}
func setPanicPreparation(_ preparation: (@MainActor () -> Void)?) {
prepareForPanic = preparation
}
func panicClearAllData() {
prepareForPanic?()
chatViewModel.panicClearAllData()
}
+19 -1
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@@ -107,12 +107,15 @@ final class AppRuntime: ObservableObject {
)
)
if chatViewModel.networkActivationAllowed {
GeoRelayDirectory.shared.prefetchIfNeeded()
}
bindRuntimeObservers()
NotificationDelegate.shared.runtime = self
}
func start() {
guard chatViewModel.networkActivationAllowed else { return }
guard !started else {
checkForSharedContent()
return
@@ -151,12 +154,14 @@ final class AppRuntime: ObservableObject {
}
func handleDidBecomeActiveNotification() {
guard chatViewModel.networkActivationAllowed else { return }
chatViewModel.handleDidBecomeActive()
checkForSharedContent()
}
#if os(macOS)
func handleMacDidBecomeActiveNotification() {
guard chatViewModel.networkActivationAllowed else { return }
record(.scenePhaseChanged(.active))
chatViewModel.handleDidBecomeActive()
checkForSharedContent()
@@ -175,6 +180,7 @@ final class AppRuntime: ObservableObject {
didEnterBackground = true
case .active:
guard chatViewModel.networkActivationAllowed else { return }
record(.scenePhaseChanged(.active))
chatViewModel.meshService.startServices()
TorManager.shared.setAppForeground(true)
@@ -222,6 +228,7 @@ final class AppRuntime: ObservableObject {
actionIdentifier: String = UNNotificationDefaultActionIdentifier,
userInfo: [AnyHashable: Any]
) {
guard chatViewModel.networkActivationAllowed else { return }
if actionIdentifier == NotificationService.waveActionID {
chatViewModel.sendMeshWave()
return
@@ -273,6 +280,8 @@ private extension AppRuntime {
NotificationCenter.default.publisher(for: .TorWillRestart)
.receive(on: DispatchQueue.main)
.sink { [weak self] _ in
guard self?.chatViewModel.networkActivationAllowed == true
else { return }
self?.record(.torLifecycleChanged(.willRestart))
self?.chatViewModel.handleTorWillRestart()
}
@@ -281,6 +290,8 @@ private extension AppRuntime {
NotificationCenter.default.publisher(for: .TorDidBecomeReady)
.receive(on: DispatchQueue.main)
.sink { [weak self] _ in
guard self?.chatViewModel.networkActivationAllowed == true
else { return }
self?.record(.torLifecycleChanged(.didBecomeReady))
self?.chatViewModel.handleTorDidBecomeReady()
}
@@ -289,6 +300,8 @@ private extension AppRuntime {
NotificationCenter.default.publisher(for: .TorWillStart)
.receive(on: DispatchQueue.main)
.sink { [weak self] _ in
guard self?.chatViewModel.networkActivationAllowed == true
else { return }
self?.record(.torLifecycleChanged(.willStart))
self?.chatViewModel.handleTorWillStart()
}
@@ -297,6 +310,8 @@ private extension AppRuntime {
NotificationCenter.default.publisher(for: .TorUserPreferenceChanged)
.receive(on: DispatchQueue.main)
.sink { [weak self] notification in
guard self?.chatViewModel.networkActivationAllowed == true
else { return }
self?.record(.torLifecycleChanged(.preferenceChanged))
self?.chatViewModel.handleTorPreferenceChanged(notification)
}
@@ -313,6 +328,7 @@ private extension AppRuntime {
}
func checkForSharedContent() {
guard chatViewModel.networkActivationAllowed else { return }
guard let userDefaults = UserDefaults(suiteName: BitchatApp.groupID) else { return }
let clearSharedContent = {
userDefaults.removeObject(forKey: "sharedContent")
@@ -359,7 +375,9 @@ private extension AppRuntime {
let becameConnected = isConnected && !lastNostrRelayConnectedState
lastNostrRelayConnectedState = isConnected
guard started, becameConnected else { return }
guard chatViewModel.networkActivationAllowed,
started,
becameConnected else { return }
let isInitialConnection = !didHandleInitialNostrConnection
didHandleInitialNostrConnection = true
+12
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@@ -12,6 +12,7 @@ final class ConversationUIModel: ObservableObject {
@Published private(set) var currentNickname: String
@Published private(set) var isBatchingPublic = false
@Published private(set) var canSendMediaInCurrentContext = true
@Published private(set) var legacyPrivateMediaConsentRequest: LegacyPrivateMediaConsentRequest?
/// Who is talking live in the public mesh channel right now (floor
/// courtesy: the composer mic tints "busy" while someone holds the floor).
@Published private(set) var activeLiveVoiceTalker: String?
@@ -153,6 +154,13 @@ final class ConversationUIModel: ObservableObject {
chatViewModel.sendVoiceNote(at: url)
}
func resolveLegacyPrivateMediaConsent(requestID: UUID, approved: Bool) {
chatViewModel.resolveLegacyPrivateMediaConsent(
requestID: requestID,
approved: approved
)
}
/// Capture backend for the mic gesture: live PTT when the current DM
/// peer can hear it now, classic voice note otherwise.
func makeVoiceCaptureSession() -> VoiceCaptureSession {
@@ -193,6 +201,10 @@ final class ConversationUIModel: ObservableObject {
.receive(on: DispatchQueue.main)
.assign(to: &$activeLiveVoiceTalker)
chatViewModel.$legacyPrivateMediaConsentRequest
.receive(on: DispatchQueue.main)
.assign(to: &$legacyPrivateMediaConsentRequest)
conversations.$activeChannel
.receive(on: DispatchQueue.main)
.sink { [weak self] channel in
@@ -26,6 +26,8 @@ protocol VoiceCaptureSession: AnyObject {
/// nothing valid was captured.
func finish() async -> URL?
func cancel() async
/// Stops capture and suppresses every later send before returning.
func panicCancelSynchronously()
}
/// The classic record-then-send backend, wrapping the shared `VoiceRecorder`.
@@ -55,6 +57,10 @@ final class VoiceNoteCaptureSession: VoiceCaptureSession {
func cancel() async {
await recorder.cancelRecording(owner: owner)
}
func panicCancelSynchronously() {
recorder.panicCancelSynchronously(owner: owner)
}
}
/// Testable surface of the live capture engine. Production uses
@@ -216,6 +222,13 @@ final class PTTLiveVoiceSession: VoiceCaptureSession {
}
}
func panicCancelSynchronously() {
// Do not emit a canceled packet: it would itself be pre-panic
// conversation data racing the emergency transport reset.
completed = true
capture.cancel()
}
private func sendControlPacket(_ kind: VoiceBurstPacket.Kind) {
guard let packet = VoiceBurstPacket(burstID: burstID, seq: stream.packetizer.nextSeq, kind: kind) else { return }
sendPacket(packet.encode())
@@ -246,6 +246,21 @@ actor VoiceRecorder {
currentURL = nil
}
/// Panic is a synchronous security boundary: the caller must know the
/// microphone, audio-session lease, and partial file are gone before it
/// rotates identities or deletes the media tree. VoiceRecorder is an
/// independent actor and this cleanup path never hops to MainActor, so a
/// short semaphore join is safe even when invoked by the UI actor.
nonisolated
func panicCancelSynchronously(owner: RecordingOwner) {
let finished = DispatchSemaphore(value: 0)
Task {
await cancelRecording(owner: owner)
finished.signal()
}
finished.wait()
}
/// The audio session was interrupted (call, Siri) or reconfigured: stop
/// the recorder but keep `recorder`/`currentURL` so the caller's pending
/// `stopRecording()` still returns the partial note.
+12
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@@ -189,6 +189,18 @@ struct IdentityCache: Codable {
// Fingerprint -> when we verified it (orders outgoing vouch batches;
// entries verified before this field exists sort as oldest)
var verifiedAt: [String: Date]? = nil
// Stable Noise fingerprints that proved encrypted private-media support
// inside an authenticated Noise session. Optional for decoding caches
// written before this migration. Entries are monotonic until a panic wipe
// so an old/replayed announce cannot silently downgrade a peer.
var privateMediaCapableFingerprints: Set<String>? = nil
// Noise-fingerprint -> Ed25519 announcement key, learned only from the
// authenticated peer-state payload. This prevents a self-signed announce
// containing a copied public Noise key from replacing a previously bound
// public-message signing identity. Optional for old cache compatibility.
var authenticatedSigningKeysByFingerprint: [String: Data]? = nil
}
//
@@ -140,6 +140,14 @@ protocol SecureIdentityStateManagerProtocol {
func markVouchBatchSent(to fingerprint: String, at date: Date)
func signingPublicKey(forFingerprint fingerprint: String) -> Data?
func mostRecentlyVerifiedFingerprints(limit: Int, excluding fingerprint: String) -> [String]
// MARK: Noise-authenticated announcement identity
func bindAuthenticatedSigningPublicKey(_ signingPublicKey: Data, fingerprint: String)
func authenticatedSigningPublicKey(forFingerprint fingerprint: String) -> Data?
// MARK: Private-media downgrade protection
func markPrivateMediaCapable(fingerprint: String)
func hasObservedPrivateMediaCapability(fingerprint: String) -> Bool
}
/// Singleton manager for secure identity state persistence and retrieval.
@@ -157,6 +165,7 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
// Thread safety
private let queue = DispatchQueue(label: "bitchat.identity.state", attributes: .concurrent)
private let queueSpecificKey = DispatchSpecificKey<UInt8>()
// Pending-save coalescing flag. Reads/writes are serialized on `queue`.
// Persistence is done with a fire-and-forget `queue.async(.barrier)` rather
@@ -214,6 +223,7 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
self.encryptionKey = loadedKey
self.encryptionKeyIsEphemeral = keyIsEphemeral
queue.setSpecific(key: queueSpecificKey, value: 1)
// Only read the persisted cache when we hold the real key; with an
// ephemeral key the decrypt would fail and discard the real cache.
@@ -371,6 +381,66 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
}
}
// MARK: - Private-media downgrade protection
func markPrivateMediaCapable(fingerprint: String) {
guard !fingerprint.isEmpty else { return }
let insertAndPersist = {
var pinned = self.cache.privateMediaCapableFingerprints ?? []
guard pinned.insert(fingerprint).inserted else { return }
self.cache.privateMediaCapableFingerprints = pinned
self.saveIdentityCache()
}
// Downgrade decisions can run immediately after an authenticated
// announce. Make the pin visible before returning; merely enqueueing a
// barrier leaves a cross-queue window where a replay can look legacy.
// The queue-specific fast path prevents self-deadlock if a future
// identity-state mutation records the capability from inside `queue`.
if DispatchQueue.getSpecific(key: queueSpecificKey) != nil {
insertAndPersist()
} else {
queue.sync(flags: .barrier, execute: insertAndPersist)
}
}
func hasObservedPrivateMediaCapability(fingerprint: String) -> Bool {
guard !fingerprint.isEmpty else { return false }
return queue.sync {
cache.privateMediaCapableFingerprints?.contains(fingerprint) == true
}
}
// MARK: - Noise-authenticated announcement identity
func bindAuthenticatedSigningPublicKey(_ signingPublicKey: Data, fingerprint: String) {
guard signingPublicKey.count == AuthenticatedPeerStatePacket.signingPublicKeyLength,
!fingerprint.isEmpty else { return }
let bindAndPersist = {
var bindings = self.cache.authenticatedSigningKeysByFingerprint ?? [:]
let bindingChanged = bindings[fingerprint] != signingPublicKey
bindings[fingerprint] = signingPublicKey
self.cache.authenticatedSigningKeysByFingerprint = bindings
if var cryptoIdentity = self.cryptographicIdentities[fingerprint] {
cryptoIdentity.signingPublicKey = signingPublicKey
self.cryptographicIdentities[fingerprint] = cryptoIdentity
}
guard bindingChanged else { return }
self.saveIdentityCache()
}
if DispatchQueue.getSpecific(key: queueSpecificKey) != nil {
bindAndPersist()
} else {
queue.sync(flags: .barrier, execute: bindAndPersist)
}
}
func authenticatedSigningPublicKey(forFingerprint fingerprint: String) -> Data? {
guard !fingerprint.isEmpty else { return nil }
return queue.sync {
cache.authenticatedSigningKeysByFingerprint?[fingerprint]
}
}
func updateSocialIdentity(_ identity: SocialIdentity) {
queue.async(flags: .barrier) {
let previousClaimedNickname = self.cache.socialIdentities[identity.fingerprint]?.claimedNickname
+1 -1
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@@ -30,7 +30,7 @@ struct NoisePayload {
// Safely get the first byte
let firstByte = data[data.startIndex]
guard let type = NoisePayloadType(rawValue: firstByte) else {
guard let type = NoisePayloadType.decoded(rawValue: firstByte) else {
return nil
}
@@ -6,15 +6,37 @@
// For more information, see <https://unlicense.org>
//
import BitFoundation
import Foundation
enum NoiseSecurityConstants {
// Maximum message size to prevent memory exhaustion
static let maxMessageSize = 65535 // 64KB as per Noise spec
/// The extracted transport nonce (4 bytes) and Poly1305 tag (16 bytes)
/// added by `NoiseCipherState` around every transport plaintext.
static let transportCiphertextOverhead = 20
/// Private files are an explicit BitChat extension to the ordinary Noise
/// message-size ceiling. They remain bounded by the same framed-file cap
/// used by the binary and fragment decoders. Only the `.privateFile`
/// typed-payload path is allowed to use this larger budget.
private static let privateFileOuterPacketOverhead =
(BinaryProtocol.v1HeaderSize + 2) // v2 adds two length bytes
+ BinaryProtocol.senderIDSize
+ BinaryProtocol.recipientIDSize
static let maxPrivateFilePlaintextSize = FileTransferLimits.maxFramedFileBytes
- privateFileOuterPacketOverhead
- transportCiphertextOverhead
static let maxPrivateFileCiphertextSize =
maxPrivateFilePlaintextSize + transportCiphertextOverhead
// Maximum handshake message size
static let maxHandshakeMessageSize = 2048 // 2KB to accommodate XX pattern
// Noise XX message 1 contains only the initiator's 32-byte ephemeral key.
static let xxInitialMessageSize = 32
// Session timeout - sessions older than this should be renegotiated
static let sessionTimeout: TimeInterval = 86400 // 24 hours
@@ -15,6 +15,19 @@ struct NoiseSecurityValidator {
return data.count <= NoiseSecurityConstants.maxMessageSize
}
static func validateCiphertextSize(_ data: Data) -> Bool {
data.count <= NoiseSecurityConstants.maxMessageSize
+ NoiseSecurityConstants.transportCiphertextOverhead
}
static func validatePrivateFileMessageSize(_ data: Data) -> Bool {
data.count <= NoiseSecurityConstants.maxPrivateFilePlaintextSize
}
static func validatePrivateFileCiphertextSize(_ data: Data) -> Bool {
data.count <= NoiseSecurityConstants.maxPrivateFileCiphertextSize
}
/// Validate handshake message size
static func validateHandshakeMessageSize(_ data: Data) -> Bool {
return data.count <= NoiseSecurityConstants.maxHandshakeMessageSize
+1
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@@ -11,4 +11,5 @@ enum NoiseSessionError: Error, Equatable {
case notEstablished
case sessionNotFound
case alreadyEstablished
case peerIdentityMismatch
}
+198 -47
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@@ -13,11 +13,20 @@ import BitFoundation
final class NoiseSessionManager {
private var sessions: [PeerID: NoiseSession] = [:]
/// Opaque identity for each exact entry in `sessions`. The generation is
/// created and removed under the same barrier as the session itself, so a
/// caller can never authenticate data with one session and lease another.
private var sessionGenerations: [PeerID: UUID] = [:]
/// A responder rehandshake must not evict a working transport session
/// before the candidate proves that its authenticated static key belongs
/// to the claimed wire ID. Candidates therefore live outside `sessions`
/// until the XX handshake completes and the binding is validated.
private var responderCandidates: [PeerID: NoiseSession] = [:]
private let sessionFactory: (PeerID, NoiseRole) -> NoiseSession
private let managerQueue = DispatchQueue(label: "chat.bitchat.noise.manager", attributes: .concurrent)
// Callbacks
var onSessionEstablished: ((PeerID, Curve25519.KeyAgreement.PublicKey) -> Void)?
var onSessionEstablished: ((PeerID, Curve25519.KeyAgreement.PublicKey, UUID) -> Void)?
var onSessionFailed: ((PeerID, Error) -> Void)?
init(localStaticKey: Curve25519.KeyAgreement.PrivateKey, keychain: KeychainManagerProtocol) {
@@ -54,6 +63,10 @@ final class NoiseSessionManager {
if let session = sessions.removeValue(forKey: peerID) {
session.reset() // Clear sensitive data before removing
}
sessionGenerations.removeValue(forKey: peerID)
if let candidate = responderCandidates.removeValue(forKey: peerID) {
candidate.reset()
}
}
}
@@ -62,7 +75,12 @@ final class NoiseSessionManager {
for (_, session) in sessions {
session.reset()
}
for (_, candidate) in responderCandidates {
candidate.reset()
}
sessions.removeAll()
sessionGenerations.removeAll()
responderCandidates.removeAll()
}
}
@@ -79,11 +97,14 @@ final class NoiseSessionManager {
// Remove any existing non-established session
if let existingSession = sessions[peerID], !existingSession.isEstablished() {
_ = sessions.removeValue(forKey: peerID)
sessionGenerations.removeValue(forKey: peerID)
existingSession.reset()
}
// Create new initiator session
let session = sessionFactory(peerID, .initiator)
sessions[peerID] = session
sessionGenerations[peerID] = UUID()
do {
let handshakeData = try session.startHandshake()
@@ -91,6 +112,8 @@ final class NoiseSessionManager {
} catch {
// Clean up failed session
_ = sessions.removeValue(forKey: peerID)
sessionGenerations.removeValue(forKey: peerID)
session.reset()
SecureLogger.error(.handshakeFailed(peerID: peerID.id, error: error.localizedDescription))
throw error
}
@@ -98,41 +121,64 @@ final class NoiseSessionManager {
}
func handleIncomingHandshake(from peerID: PeerID, message: Data) throws -> Data? {
// Process everything within the synchronized block to prevent race conditions
return try managerQueue.sync(flags: .barrier) {
var shouldCreateNew = false
var existingSession: NoiseSession? = nil
if let existing = sessions[peerID] {
// If we have an established session, the peer must have cleared their session
// for a good reason (e.g., decryption failure, restart, etc.)
// We should accept the new handshake to re-establish encryption
if existing.isEstablished() {
SecureLogger.info("Accepting handshake from \(peerID) despite existing session - peer likely cleared their session", category: .session)
_ = sessions.removeValue(forKey: peerID)
shouldCreateNew = true
} else {
// If we're in the middle of a handshake and receive a new initiation,
// reset and start fresh (the other side may have restarted)
if existing.getState() == .handshaking && message.count == 32 {
_ = sessions.removeValue(forKey: peerID)
shouldCreateNew = true
} else {
existingSession = existing
}
}
} else {
shouldCreateNew = true
}
// Get or create session
// Process everything within the synchronized block to prevent race conditions.
// Return establishment metadata and publish the callback only after the
// manager barrier is released, avoiding both a deadlock and a window in
// which `processHandshakeMessage` returns before authentication state.
let result: (
response: Data?,
establishedSession: (
remoteKey: Curve25519.KeyAgreement.PublicKey,
generation: UUID
)?
) = try managerQueue.sync(flags: .barrier) {
let session: NoiseSession
if shouldCreateNew {
let isReplacementCandidate: Bool
if let candidate = responderCandidates[peerID] {
// A fresh XX message 1 supersedes an incomplete candidate,
// but never the established session it is trying to replace.
if message.count == NoiseSecurityConstants.xxInitialMessageSize {
candidate.reset()
let replacement = sessionFactory(peerID, .responder)
responderCandidates[peerID] = replacement
session = replacement
} else {
session = candidate
}
isReplacementCandidate = true
} else if let existing = sessions[peerID] {
if existing.isEstablished() {
SecureLogger.info(
"Validating replacement handshake from \(peerID) while preserving the established session",
category: .session
)
let candidate = sessionFactory(peerID, .responder)
responderCandidates[peerID] = candidate
session = candidate
isReplacementCandidate = true
} else if existing.getState() == .handshaking,
message.count == NoiseSecurityConstants.xxInitialMessageSize {
// No established transport state exists to preserve. A
// fresh initiation replaces the incomplete handshake.
_ = sessions.removeValue(forKey: peerID)
sessionGenerations.removeValue(forKey: peerID)
existing.reset()
let replacement = sessionFactory(peerID, .responder)
sessions[peerID] = replacement
sessionGenerations[peerID] = UUID()
session = replacement
isReplacementCandidate = false
} else {
session = existing
isReplacementCandidate = false
}
} else {
let newSession = sessionFactory(peerID, .responder)
sessions[peerID] = newSession
sessionGenerations[peerID] = UUID()
session = newSession
} else {
session = existingSession!
isReplacementCandidate = false
}
// Process the handshake message within the synchronized block
@@ -140,19 +186,46 @@ final class NoiseSessionManager {
let response = try session.processHandshakeMessage(message)
// Check if session is established after processing
var establishedSession: (
remoteKey: Curve25519.KeyAgreement.PublicKey,
generation: UUID
)?
if session.isEstablished() {
if let remoteKey = session.getRemoteStaticPublicKey() {
// Schedule callback outside the synchronized block to prevent deadlock
DispatchQueue.global().async { [weak self] in
self?.onSessionEstablished?(peerID, remoteKey)
}
}
guard let remoteKey = session.getRemoteStaticPublicKey(),
authenticatedRemoteKey(remoteKey, matches: peerID) else {
throw NoiseSessionError.peerIdentityMismatch
}
return response
if isReplacementCandidate {
_ = responderCandidates.removeValue(forKey: peerID)
let previous = sessions.updateValue(session, forKey: peerID)
sessionGenerations[peerID] = UUID()
if let previous, previous !== session {
previous.reset()
}
}
guard let generation = sessionGenerations[peerID] else {
throw NoiseEncryptionError.sessionNotEstablished
}
establishedSession = (remoteKey, generation)
}
return (response, establishedSession)
} catch {
// Reset the session on handshake failure so next attempt can start fresh
// A failed candidate is discarded without touching the
// established session. Ordinary failed handshakes retain the
// historical cleanup behavior.
if isReplacementCandidate {
if let storedCandidate = responderCandidates[peerID],
storedCandidate === session {
_ = responderCandidates.removeValue(forKey: peerID)
}
} else if let storedSession = sessions[peerID],
storedSession === session {
_ = sessions.removeValue(forKey: peerID)
sessionGenerations.removeValue(forKey: peerID)
}
session.reset()
// Schedule callback outside the synchronized block to prevent deadlock
DispatchQueue.global().async { [weak self] in
@@ -163,24 +236,102 @@ final class NoiseSessionManager {
throw error
}
}
if let established = result.establishedSession {
onSessionEstablished?(peerID, established.remoteKey, established.generation)
}
return result.response
}
/// Mesh handshakes normally use a 16-hex wire ID. Full Noise-key IDs are
/// also accepted by internal callers when they exactly match the static
/// key. Non-wire identifiers remain available to protocol test harnesses;
/// BLE packet ingress always supplies a short hexadecimal ID.
private func authenticatedRemoteKey(
_ remoteKey: Curve25519.KeyAgreement.PublicKey,
matches claimedPeerID: PeerID
) -> Bool {
let rawKey = remoteKey.rawRepresentation
if claimedPeerID.isShort {
return PeerID(publicKey: rawKey) == claimedPeerID
}
if let claimedNoiseKey = claimedPeerID.noiseKey {
return claimedNoiseKey == rawKey
}
return true
}
// MARK: - Encryption/Decryption
func encrypt(_ plaintext: Data, for peerID: PeerID) throws -> Data {
guard let session = getSession(for: peerID) else {
try managerQueue.sync {
guard let session = sessions[peerID] else {
throw NoiseSessionError.sessionNotFound
}
return try session.encrypt(plaintext)
}
}
/// Encrypts only if `expected` still names the current established entry.
/// A rekey between capability proof and media encryption therefore fails
/// closed instead of sending on an unproven replacement session.
func encrypt(
_ plaintext: Data,
for peerID: PeerID,
expectedSessionGeneration expected: UUID
) throws -> Data {
try managerQueue.sync {
guard let session = sessions[peerID],
session.isEstablished(),
sessionGenerations[peerID] == expected else {
throw NoiseEncryptionError.sessionNotEstablished
}
return try session.encrypt(plaintext)
}
}
func decrypt(_ ciphertext: Data, from peerID: PeerID) throws -> Data {
guard let session = getSession(for: peerID) else {
throw NoiseSessionError.sessionNotFound
try decryptWithSessionGeneration(ciphertext, from: peerID).plaintext
}
return try session.decrypt(ciphertext)
func sessionGeneration(for peerID: PeerID) -> UUID? {
managerQueue.sync {
guard sessions[peerID]?.isEstablished() == true else { return nil }
return sessionGenerations[peerID]
}
}
/// Decrypts while holding the manager's read lease. Session promotion and
/// removal require its barrier, so the returned generation always names
/// the exact session object that authenticated these bytes.
func decryptWithSessionGeneration(
_ ciphertext: Data,
from peerID: PeerID
) throws -> (plaintext: Data, sessionGeneration: UUID) {
try managerQueue.sync {
guard let session = sessions[peerID] else {
throw NoiseSessionError.sessionNotFound
}
guard session.isEstablished(),
let generation = sessionGenerations[peerID] else {
throw NoiseEncryptionError.sessionNotEstablished
}
return (try session.decrypt(ciphertext), generation)
}
}
/// Runs a state commit under a read lease for the exact established
/// session. Rekey, replacement, and removal all need the same barrier.
func withCurrentSessionGeneration<Result>(
for peerID: PeerID,
expected: UUID,
_ body: () -> Result
) -> Result? {
managerQueue.sync {
guard sessions[peerID]?.isEstablished() == true,
sessionGenerations[peerID] == expected else { return nil }
return body()
}
}
// MARK: - Key Management
@@ -207,11 +358,11 @@ final class NoiseSessionManager {
}
}
func initiateRekey(for peerID: PeerID) throws {
func initiateRekey(for peerID: PeerID) throws -> Data {
// Remove old session
removeSession(for: peerID)
// Initiate new handshake
_ = try initiateHandshake(with: peerID)
return try initiateHandshake(with: peerID)
}
}
+11 -4
View File
@@ -24,8 +24,12 @@ final class SecureNoiseSession: NoiseSession {
throw NoiseSecurityError.sessionExhausted
}
// Validate message size
guard NoiseSecurityValidator.validateMessageSize(plaintext) else {
// Ordinary Noise messages keep the protocol ceiling. Finalized media
// is the sole typed-payload extension and remains under the framed-file
// cap enforced again at the service and file-decoder layers.
let isPrivateFile = NoisePayloadType.isPrivateFile(rawValue: plaintext.first)
&& NoiseSecurityValidator.validatePrivateFileMessageSize(plaintext)
guard NoiseSecurityValidator.validateMessageSize(plaintext) || isPrivateFile else {
throw NoiseSecurityError.messageTooLarge
}
@@ -42,8 +46,11 @@ final class SecureNoiseSession: NoiseSession {
throw NoiseSecurityError.sessionExpired
}
// Validate message size
guard NoiseSecurityValidator.validateMessageSize(ciphertext) else {
// The payload type is encrypted, so a large candidate can only be
// bounded here; `NoiseEncryptionService.decrypt` authenticates it and
// then requires the resulting type to be `.privateFile`.
guard NoiseSecurityValidator.validateCiphertextSize(ciphertext)
|| NoiseSecurityValidator.validatePrivateFileCiphertextSize(ciphertext) else {
throw NoiseSecurityError.messageTooLarge
}
+25
View File
@@ -79,12 +79,35 @@ enum NoisePayloadType: UInt8 {
case groupKeyUpdate = 0x07 // Creator-signed group state (key rotation / roster update)
// Live voice (push-to-talk)
case voiceFrame = 0x08 // One live voice-burst packet (see VoiceBurstPacket)
// Finalized private media. `0x20` is the value already deployed by the
// Android client. The complete BitchatFilePacket is encrypted inside
// Noise before the outer noiseEncrypted packet is fragmented.
case privateFile = 0x20
// Versioned peer state authenticated by the surrounding Noise session.
// This is intentionally distinct from the public announce: announce
// capabilities are discovery hints, while this payload proves possession
// of the advertised Noise static key before downgrade state is pinned.
case authenticatedPeerState = 0x21
// Verification (QR-based OOB binding)
case verifyChallenge = 0x10 // Verification challenge
case verifyResponse = 0x11 // Verification response
// Transitive verification (web of trust)
case vouch = 0x12 // Batch of vouch attestations
/// #1434 briefly used 0x09 before release. Accept it while prerelease
/// builds age out, but never emit it. Decoders canonicalize both values to
/// `.privateFile` so the compatibility alias cannot leak into app logic.
static let prereleasePrivateFileRawValue: UInt8 = 0x09
static func decoded(rawValue: UInt8) -> NoisePayloadType? {
rawValue == prereleasePrivateFileRawValue ? .privateFile : Self(rawValue: rawValue)
}
static func isPrivateFile(rawValue: UInt8?) -> Bool {
guard let rawValue else { return false }
return rawValue == privateFile.rawValue || rawValue == prereleasePrivateFileRawValue
}
var description: String {
switch self {
case .privateMessage: return "privateMessage"
@@ -93,6 +116,8 @@ enum NoisePayloadType: UInt8 {
case .groupInvite: return "groupInvite"
case .groupKeyUpdate: return "groupKeyUpdate"
case .voiceFrame: return "voiceFrame"
case .privateFile: return "privateFile"
case .authenticatedPeerState: return "authenticatedPeerState"
case .verifyChallenge: return "verifyChallenge"
case .verifyResponse: return "verifyResponse"
case .vouch: return "vouch"
+83
View File
@@ -156,6 +156,89 @@ struct AnnouncementPacket {
}
}
/// State that is authoritative only because it is carried inside an
/// established Noise session. The public announce remains useful for
/// discovery, but its self-signature cannot prove possession of the copied
/// Noise public key it contains.
///
/// Wire format (v1):
/// `[version=0x01][type][length][value]...`
/// - TLV `0x01`: canonical minimal little-endian `PeerCapabilities`
/// - TLV `0x02`: 32-byte Ed25519 signing public key
///
/// Unknown TLVs are skipped for forward compatibility. Unknown versions,
/// duplicates, non-canonical capability fields, and malformed lengths are
/// rejected without changing authenticated state.
struct AuthenticatedPeerStatePacket: Equatable {
static let currentVersion: UInt8 = 1
static let signingPublicKeyLength = 32
let capabilities: PeerCapabilities
let signingPublicKey: Data
private enum TLVType: UInt8 {
case capabilities = 0x01
case signingPublicKey = 0x02
}
func encode() -> Data? {
guard signingPublicKey.count == Self.signingPublicKeyLength else { return nil }
let capabilityBytes = capabilities.encoded()
guard !capabilityBytes.isEmpty, capabilityBytes.count <= 8 else { return nil }
var data = Data([Self.currentVersion])
data.append(TLVType.capabilities.rawValue)
data.append(UInt8(capabilityBytes.count))
data.append(capabilityBytes)
data.append(TLVType.signingPublicKey.rawValue)
data.append(UInt8(signingPublicKey.count))
data.append(signingPublicKey)
return data
}
static func decode(from data: Data) -> AuthenticatedPeerStatePacket? {
guard data.first == Self.currentVersion else { return nil }
var offset = 1
var capabilities: PeerCapabilities?
var signingPublicKey: Data?
while offset < data.count {
guard offset + 2 <= data.count else { return nil }
let typeRaw = data[offset]
let length = Int(data[offset + 1])
offset += 2
guard offset + length <= data.count else { return nil }
let value = Data(data[offset..<(offset + length)])
offset += length
guard let type = TLVType(rawValue: typeRaw) else {
continue
}
switch type {
case .capabilities:
guard capabilities == nil,
!value.isEmpty,
value.count <= 8 else { return nil }
let decoded = PeerCapabilities(encoded: value)
guard decoded.encoded() == value else { return nil }
capabilities = decoded
case .signingPublicKey:
guard signingPublicKey == nil,
value.count == Self.signingPublicKeyLength else { return nil }
signingPublicKey = value
}
}
guard let capabilities, let signingPublicKey else { return nil }
return AuthenticatedPeerStatePacket(
capabilities: capabilities,
signingPublicKey: signingPublicKey
)
}
}
struct PrivateMessagePacket {
let messageID: String
let content: String
@@ -3,5 +3,5 @@ import BitFoundation
extension PeerCapabilities {
/// Capabilities this build advertises in its announce packets.
/// Each feature adds its bit here when it ships.
static let localSupported: PeerCapabilities = [.vouch, .prekeys, .groups]
static let localSupported: PeerCapabilities = [.vouch, .prekeys, .groups, .privateMedia]
}
+14 -1
View File
@@ -16,6 +16,9 @@ struct BLEAnnounceHandlerEnvironment {
let now: () -> Date
/// Noise public key already recorded for the peer, if any (registry read).
let existingNoisePublicKey: (PeerID) -> Data?
/// Ed25519 key previously bound to this Noise identity by an authenticated
/// peer-state payload, if any (persistent identity-state read).
let authenticatedSigningPublicKey: (_ noisePublicKey: Data) -> Data?
/// Verifies the packet signature against the announced signing key.
let verifySignature: (_ packet: BitchatPacket, _ signingPublicKey: Data) -> Bool
/// Direct link state for the peer (BLE-queue read).
@@ -130,11 +133,21 @@ final class BLEAnnounceHandler {
hasSignature: hasSignature,
signatureValid: signatureValid,
existingNoisePublicKey: existingNoisePublicKey,
announcedNoisePublicKey: announcement.noisePublicKey
announcedNoisePublicKey: announcement.noisePublicKey,
authenticatedSigningPublicKey: env.authenticatedSigningPublicKey(
announcement.noisePublicKey
),
announcedSigningPublicKey: announcement.signingPublicKey
)
if case .reject(.keyMismatch) = trustDecision {
SecureLogger.warning("⚠️ Announce key mismatch for \(peerID.id.prefix(8))… — keeping unverified", category: .security)
}
if case .reject(.authenticatedSigningKeyMismatch) = trustDecision {
SecureLogger.warning(
"⚠️ Announce signing-key replacement rejected for Noise-authenticated peer \(peerID.id.prefix(8))",
category: .security
)
}
let verifiedAnnounce = trustDecision.isVerified
var isNewPeer = false
@@ -56,6 +56,7 @@ enum BLEAnnounceTrustRejection: Equatable {
case missingSignature
case invalidSignature
case keyMismatch
case authenticatedSigningKeyMismatch
}
enum BLEAnnounceTrustDecision: Equatable {
@@ -72,12 +73,19 @@ enum BLEAnnounceTrustPolicy {
hasSignature: Bool,
signatureValid: Bool,
existingNoisePublicKey: Data?,
announcedNoisePublicKey: Data
announcedNoisePublicKey: Data,
authenticatedSigningPublicKey: Data? = nil,
announcedSigningPublicKey: Data? = nil
) -> BLEAnnounceTrustDecision {
if let existingNoisePublicKey, existingNoisePublicKey != announcedNoisePublicKey {
return .reject(.keyMismatch)
}
if let authenticatedSigningPublicKey,
announcedSigningPublicKey != authenticatedSigningPublicKey {
return .reject(.authenticatedSigningKeyMismatch)
}
guard hasSignature else {
return .reject(.missingSignature)
}
+101 -62
View File
@@ -16,6 +16,8 @@ struct BLEFileTransferHandlerEnvironment {
let peersSnapshot: () -> [PeerID: BLEPeerInfo]
/// Verifies a packet's signature against a candidate signing key (registry path).
let verifyPacketSignature: (_ packet: BitchatPacket, _ signingPublicKey: Data) -> Bool
/// Local signing key used to authenticate our own gossip-sync replays.
let localSigningPublicKey: () -> Data
/// Resolves a display name from a verified packet signature for peers missing from the registry.
let signedSenderDisplayName: (_ packet: BitchatPacket, _ peerID: PeerID) -> String?
/// Tracks the broadcast file packet for gossip sync.
@@ -46,54 +48,105 @@ final class BLEFileTransferHandler {
self.environment = environment
}
/// Returns `false` when the packet fails sender authentication and must
/// not be relayed onward. Every other outcome returns `true`: files
/// directed to another peer are forwarded untouched, and local-only drops
/// (malformed payload, quota, save failure) don't affect multi-hop
/// delivery to nodes that may handle them fine.
/// Returns `false` when the raw packet fails sender authentication (or is
/// a live self-echo) and must not be relayed onward. Authentication runs
/// before the routing decision, so a forged directed packet cannot use a
/// node that is not its recipient as an unsigned forwarding hop.
@discardableResult
func handle(_ packet: BitchatPacket, from peerID: PeerID) -> Bool {
let env = environment
if BLEFileTransferPolicy.isSelfEcho(packet: packet, from: peerID, localPeerID: env.localPeerID()) { return true }
guard let deliveryPlan = BLEFileTransferPolicy.deliveryPlan(packet: packet, localPeerID: env.localPeerID()) else {
return true
}
let localPeerID = env.localPeerID()
let peersSnapshot = env.peersSnapshot()
guard let senderNickname = resolveSenderNickname(
guard let senderNickname = authenticatedRawSenderNickname(
packet: packet,
from: peerID,
isBroadcast: !deliveryPlan.isPrivateMessage,
peers: peersSnapshot,
env: env
) else {
SecureLogger.warning("🚫 Dropping file transfer from unverified or unknown peer \(peerID.id.prefix(8))", category: .security)
SecureLogger.warning("🚫 Dropping raw file transfer with missing/invalid signature from \(peerID.id.prefix(8))", category: .security)
return false
}
if BLEFileTransferPolicy.isSelfEcho(packet: packet, from: peerID, localPeerID: localPeerID) {
return false
}
guard let deliveryPlan = BLEFileTransferPolicy.deliveryPlan(packet: packet, localPeerID: localPeerID) else {
return true
}
if deliveryPlan.shouldTrackForSync {
env.trackPacketSeen(packet)
}
_ = storeIncomingPayload(
packet.payload,
from: peerID,
senderNickname: senderNickname,
timestamp: Date(timeIntervalSince1970: Double(packet.timestamp) / 1000),
isPrivate: deliveryPlan.isPrivateMessage,
env: env
)
// Once authenticated, a local decode/quota/save failure is not proof
// that downstream nodes should be denied the valid signed packet.
return true
}
/// Accepts a file packet only after it has been authenticated and
/// decrypted by the peer's Noise session. The inner packet deliberately
/// has no redundant signature: Noise supplies sender authentication and
/// confidentiality, while this handler retains the same validation,
/// quota, persistence, and UI-delivery behavior as public files.
@discardableResult
func handlePrivatePayload(_ payload: Data, from peerID: PeerID, timestamp: Date) -> Bool {
let env = environment
let peers = env.peersSnapshot()
let senderNickname = BLEPeerSenderDisplayName.resolveKnownPeer(
peerID: peerID,
localPeerID: env.localPeerID(),
localNickname: env.localNickname(),
peers: peers,
allowConnectedUnverified: true
) ?? BLEPeerSenderDisplayName.anonymousNickname(for: peerID)
return storeIncomingPayload(
payload,
from: peerID,
senderNickname: senderNickname,
timestamp: timestamp,
isPrivate: true,
env: env
)
}
private func storeIncomingPayload(
_ payload: Data,
from peerID: PeerID,
senderNickname: String,
timestamp: Date,
isPrivate: Bool,
env: BLEFileTransferHandlerEnvironment
) -> Bool {
let filePacket: BitchatFilePacket
let mime: MimeType
switch BLEIncomingFileValidator.validate(payload: packet.payload) {
switch BLEIncomingFileValidator.validate(payload: payload) {
case .success(let acceptance):
filePacket = acceptance.filePacket
mime = acceptance.mime
case .failure(.malformedPayload):
SecureLogger.error("❌ Failed to decode file transfer payload", category: .session)
return true
return false
case .failure(.payloadTooLarge(let bytes)):
SecureLogger.warning("🚫 Dropping file transfer exceeding size cap (\(bytes) bytes)", category: .security)
return true
return false
case .failure(.unsupportedMime(let mimeType, let bytes)):
SecureLogger.warning("🚫 MIME REJECT: '\(mimeType ?? "<empty>")' not supported. Size=\(bytes)b from \(peerID.id.prefix(8))...", category: .security)
return true
return false
case .failure(.magicMismatch(let mime, let bytes, let prefixHex)):
SecureLogger.warning("🚫 MAGIC REJECT: MIME='\(mime)' size=\(bytes)b prefix=[\(prefixHex)] from \(peerID.id.prefix(8))...", category: .security)
return true
return false
}
// BCH-01-002: Enforce storage quota before saving
@@ -106,28 +159,27 @@ final class BLEFileTransferHandler {
mime.defaultExtension,
mime.category.rawValue
) else {
return true
return false
}
if deliveryPlan.isPrivateMessage {
if isPrivate {
env.updatePeerLastSeen(peerID)
}
let ts = Date(timeIntervalSince1970: Double(packet.timestamp) / 1000)
let message = BitchatMessage(
sender: senderNickname,
content: "\(mime.category.messagePrefix)\(destination.lastPathComponent)",
timestamp: ts,
timestamp: timestamp,
isRelay: false,
originalSender: nil,
isPrivate: deliveryPlan.isPrivateMessage,
isPrivate: isPrivate,
recipientNickname: nil,
senderPeerID: peerID,
// Received messages need an explicit status: BitchatMessage
// defaults private messages to .sending, which the media views
// render as an in-flight send (empty reveal mask, disabled tap).
deliveryStatus: deliveryPlan.isPrivateMessage
? .delivered(to: env.localNickname(), at: ts)
deliveryStatus: isPrivate
? .delivered(to: env.localNickname(), at: timestamp)
: nil
)
@@ -137,51 +189,38 @@ final class BLEFileTransferHandler {
return true
}
/// Resolves the authenticated display name for a file transfer's sender.
///
/// Directed (private) transfers are addressed to us specifically and keep
/// the lenient connected-peer path. Broadcast transfers carry an
/// attacker-controllable `senderID` exactly like public messages and public
/// voice frames registry membership alone is NOT proof of identity, so a
/// valid packet signature from the claimed sender is required before we
/// trust it. Without this, a peer that observed a public voice burst could
/// spoof a broadcast `voice_<burstID>.m4a` note under the talker's ID and
/// overwrite the signature-verified live bubble with attacker audio.
private func resolveSenderNickname(
/// Every remaining raw file transfer is signed, regardless of whether it
/// is broadcast, addressed to us, or merely passing through. Registry
/// signing keys are preferred; persisted identities cover peers that have
/// rotated or are not currently present in the registry.
private func authenticatedRawSenderNickname(
packet: BitchatPacket,
from peerID: PeerID,
isBroadcast: Bool,
peers: [PeerID: BLEPeerInfo],
env: BLEFileTransferHandlerEnvironment
) -> String? {
guard isBroadcast else {
guard packet.signature != nil else { return nil }
let localPeerID = env.localPeerID()
let candidateKey = peerID == localPeerID
? env.localSigningPublicKey()
: peers[peerID]?.signingPublicKey
let verifiedWithKnownKey = candidateKey.map {
env.verifyPacketSignature(packet, $0)
} ?? false
let signedDisplayName = verifiedWithKnownKey
? nil
: env.signedSenderDisplayName(packet, peerID)
guard verifiedWithKnownKey || signedDisplayName != nil else { return nil }
return BLEPeerSenderDisplayName.resolveKnownPeer(
peerID: peerID,
localPeerID: env.localPeerID(),
localPeerID: localPeerID,
localNickname: env.localNickname(),
peers: peers,
// The packet signature authenticates the announced peer; the old
// connected-but-unsigned leniency is not involved.
allowConnectedUnverified: true
) ?? env.signedSenderDisplayName(packet, peerID)
}
// Our own broadcasts replayed back via gossip sync (ttl==0) are
// trivially authentic and cannot be verified against the peer registry
// or identity cache, so exempt self exactly as `BLEPublicMessageHandler`
// does. Verify against the signing key already in the
// (synchronously-updated) registry first, then fall back to the
// persisted-identity signature lookup for peers not yet cached there.
let isSelf = peerID == env.localPeerID()
let registrySigningKey = peers[peerID]?.signingPublicKey
let verifiedViaRegistry = !isSelf && (registrySigningKey.map { env.verifyPacketSignature(packet, $0) } ?? false)
let signedDisplayName = (isSelf || verifiedViaRegistry) ? nil : env.signedSenderDisplayName(packet, peerID)
guard isSelf || verifiedViaRegistry || signedDisplayName != nil else { return nil }
return BLEPeerSenderDisplayName.resolveKnownPeer(
peerID: peerID,
localPeerID: env.localPeerID(),
localNickname: env.localNickname(),
peers: peers,
allowConnectedUnverified: false
) ?? signedDisplayName
) ?? signedDisplayName ?? BLEPeerSenderDisplayName.anonymousNickname(for: peerID)
}
}
@@ -201,8 +201,11 @@ struct BLEFragmentAssemblyBuffer {
}
private static func assemblyLimit(for originalType: UInt8) -> Int {
if originalType == MessageType.fileTransfer.rawValue {
if originalType == MessageType.fileTransfer.rawValue
|| originalType == MessageType.noiseEncrypted.rawValue {
// Allow headroom for TLV metadata and binary framing overhead.
// A large noiseEncrypted packet can be an E2E-encrypted private
// file; its authenticated plaintext is validated after decrypt.
return FileTransferLimits.maxFramedFileBytes
}
+230 -5
View File
@@ -2,8 +2,124 @@ import BitLogger
import BitFoundation
import Foundation
struct PanicRecoveryIntent {
let fileMarkerEstablished: Bool
let externalMarkerEstablished: Bool
var hasDurableMarker: Bool {
fileMarkerEstablished || externalMarkerEstablished
}
}
/// Small, dependency-injectable transaction surface used by ChatViewModel.
/// Production persists the same intent in two independent locations before
/// any application state is erased. Tests can inject an ephemeral operation
/// set without touching the developer's Application Support directory.
struct PanicRecoveryOperations {
let isPending: () throws -> Bool
let begin: () -> PanicRecoveryIntent
let wipeMedia: (PanicRecoveryIntent) throws -> Void
let complete: () throws -> Void
static func ephemeral(
wipeMedia: @escaping () throws -> Void = {}
) -> PanicRecoveryOperations {
PanicRecoveryOperations(
isPending: { false },
begin: {
PanicRecoveryIntent(
fileMarkerEstablished: false,
externalMarkerEstablished: false
)
},
wipeMedia: { _ in try wipeMedia() },
complete: {}
)
}
static func live(
fileStore: BLEIncomingFileStore = BLEIncomingFileStore(),
defaults: UserDefaults = .standard
) -> PanicRecoveryOperations {
let defaultsKey = "bitchat.panicResetPending"
return PanicRecoveryOperations(
isPending: {
if defaults.bool(forKey: defaultsKey) {
return true
}
return try fileStore.isPanicRecoveryPending()
},
begin: {
defaults.set(true, forKey: defaultsKey)
let externalMarkerEstablished =
defaults.synchronize()
&& defaults.bool(forKey: defaultsKey)
let fileMarkerEstablished: Bool
do {
try fileStore.markPanicRecoveryPending()
fileMarkerEstablished = true
} catch {
fileMarkerEstablished = false
SecureLogger.error(
"Failed to persist file panic-recovery marker: \(error)",
category: .security
)
}
return PanicRecoveryIntent(
fileMarkerEstablished: fileMarkerEstablished,
externalMarkerEstablished: externalMarkerEstablished
)
},
wipeMedia: { intent in
try fileStore.panicWipe(
hasDurablePendingMarker: intent.hasDurableMarker
)
},
complete: {
// Keep the independent defaults latch until the file marker
// has definitely cleared. Any failure therefore remains
// visible to the next launch.
try fileStore.completePanicRecovery()
defaults.removeObject(forKey: defaultsKey)
guard defaults.synchronize(),
!defaults.bool(forKey: defaultsKey) else {
throw BLEIncomingFileStore.PanicRecoveryError
.externalMarkerCommitFailed
}
}
)
}
}
struct BLEIncomingFileStore {
enum PanicRecoveryError: Error {
case externalMarkerCommitFailed
case markerWriteFailed(Error)
case markerWriteAndMediaWipeFailed(
markerError: Error,
mediaError: Error
)
}
private static let quotaBytes: Int64 = 100 * 1024 * 1024
/// Kept outside `files/` so deleting the media tree cannot erase the
/// fail-closed startup decision before the full panic has committed.
private static let panicRecoveryPendingMarkerFileName =
".panic-recovery-pending"
/// Compatibility with a short-lived development build that used the
/// media-specific name for the same full-transaction latch.
private static let legacyPanicRecoveryPendingMarkerFileName =
".panic-media-wipe-pending"
private static let mediaSubdirectories = [
"voicenotes/incoming",
"voicenotes/outgoing",
"images/incoming",
"images/outgoing",
"files/incoming",
"files/outgoing"
]
/// Name prefix of in-flight live voice captures (progressively written by
/// `ChatLiveVoiceCoordinator`). Quota eviction skips them by pattern
@@ -17,11 +133,96 @@ struct BLEIncomingFileStore {
let fileManager: FileManager
private let baseDirectory: URL?
private let dateProvider: () -> Date
private let panicMarkerWriter: (Data, URL) throws -> Void
init(fileManager: FileManager = .default, baseDirectory: URL? = nil, dateProvider: @escaping () -> Date = Date.init) {
init(
fileManager: FileManager = .default,
baseDirectory: URL? = nil,
dateProvider: @escaping () -> Date = Date.init,
panicMarkerWriter: @escaping (Data, URL) throws -> Void = {
try $0.write(to: $1, options: .atomic)
}
) {
self.fileManager = fileManager
self.baseDirectory = baseDirectory
self.dateProvider = dateProvider
self.panicMarkerWriter = panicMarkerWriter
}
/// Panic-wipe every managed incoming and outgoing media artifact before
/// returning. Recreating the directory tree keeps later capture/receive
/// paths usable without allowing a detached cleanup task to race them.
///
/// Marker persistence and deletion are deliberately separate error
/// domains: even when both durable marker channels fail, deletion is
/// still attempted before this method reports the marker failure.
func panicWipe(
hasDurablePendingMarker: Bool = false
) throws {
let markerError: Error?
do {
try markPanicRecoveryPending()
markerError = nil
} catch {
markerError = error
SecureLogger.error(
"Could not persist file panic-recovery marker; attempting media deletion anyway: \(error)",
category: .security
)
}
do {
let filesDirectory = try rootDirectory()
.appendingPathComponent("files", isDirectory: true)
if fileManager.fileExists(atPath: filesDirectory.path) {
try fileManager.removeItem(at: filesDirectory)
}
for subdirectory in Self.mediaSubdirectories {
try fileManager.createDirectory(
at: filesDirectory.appendingPathComponent(
subdirectory,
isDirectory: true
),
withIntermediateDirectories: true,
attributes: nil
)
}
} catch {
if let markerError {
throw PanicRecoveryError.markerWriteAndMediaWipeFailed(
markerError: markerError,
mediaError: error
)
}
throw error
}
if let markerError, !hasDurablePendingMarker {
throw PanicRecoveryError.markerWriteFailed(markerError)
}
}
func markPanicRecoveryPending() throws {
let markerURL = try panicRecoveryPendingMarkerURL()
try fileManager.createDirectory(
at: markerURL.deletingLastPathComponent(),
withIntermediateDirectories: true,
attributes: nil
)
try panicMarkerWriter(Data([1]), markerURL)
}
func isPanicRecoveryPending() throws -> Bool {
try panicRecoveryMarkerURLs().contains {
fileManager.fileExists(atPath: $0.path)
}
}
func completePanicRecovery() throws {
for markerURL in try panicRecoveryMarkerURLs()
where fileManager.fileExists(atPath: markerURL.path) {
try fileManager.removeItem(at: markerURL)
}
}
/// Resolves (and creates) an incoming-media directory for callers that
@@ -113,15 +314,39 @@ struct BLEIncomingFileStore {
}
private func filesDirectory() throws -> URL {
let root = try baseDirectory ?? fileManager.url(
let filesDir = try rootDirectory().appendingPathComponent("files", isDirectory: true)
try fileManager.createDirectory(at: filesDir, withIntermediateDirectories: true, attributes: nil)
return filesDir
}
private func rootDirectory() throws -> URL {
try baseDirectory ?? fileManager.url(
for: .applicationSupportDirectory,
in: .userDomainMask,
appropriateFor: nil,
create: true
)
let filesDir = root.appendingPathComponent("files", isDirectory: true)
try fileManager.createDirectory(at: filesDir, withIntermediateDirectories: true, attributes: nil)
return filesDir
}
private func panicRecoveryPendingMarkerURL() throws -> URL {
try rootDirectory().appendingPathComponent(
Self.panicRecoveryPendingMarkerFileName,
isDirectory: false
)
}
private func panicRecoveryMarkerURLs() throws -> [URL] {
let root = try rootDirectory()
return [
root.appendingPathComponent(
Self.panicRecoveryPendingMarkerFileName,
isDirectory: false
),
root.appendingPathComponent(
Self.legacyPanicRecoveryPendingMarkerFileName,
isDirectory: false
)
]
}
private func sanitizedFileName(_ name: String?, defaultName: String, fallbackExtension: String?) -> String {
@@ -2,6 +2,11 @@ import BitFoundation
import BitLogger
import Foundation
struct BLENoiseDecryptionResult {
let plaintext: Data
let sessionGeneration: UUID
}
/// Narrow environment for `BLENoisePacketHandler`.
///
/// All queue hops (collections barrier writes, main-actor UI notification)
@@ -27,9 +32,16 @@ struct BLENoisePacketHandlerEnvironment {
/// Updates the registry last-seen timestamp for the peer (async barrier write).
let updatePeerLastSeen: (PeerID) -> Void
/// Decrypts an encrypted payload from the peer (crypto).
let decrypt: (_ payload: Data, _ peerID: PeerID) throws -> Data
let decrypt: (_ payload: Data, _ peerID: PeerID) throws -> BLENoiseDecryptionResult
/// Clears the peer's Noise session after an unrecoverable decrypt failure (crypto).
let clearSession: (PeerID) -> Void
/// Consumes session-authenticated protocol state inside the transport. It
/// must never escape to UI or Nostr payload dispatch.
let handleAuthenticatedPeerState: (
_ peerID: PeerID,
_ payload: Data,
_ sessionGeneration: UUID
) -> Void
/// Delivers `.noisePayloadReceived` to the UI as one main-actor hop.
let deliverNoisePayload: (
_ peerID: PeerID,
@@ -49,7 +61,11 @@ final class BLENoisePacketHandler {
self.environment = environment
}
func handleHandshake(_ packet: BitchatPacket, from peerID: PeerID) {
/// Returns true when the handshake message was processed successfully.
/// Callers use this to distinguish an authenticated replacement completion
/// from a rejected candidate while an older session remains established.
@discardableResult
func handleHandshake(_ packet: BitchatPacket, from peerID: PeerID) -> Bool {
let env = environment
// Use NoiseEncryptionService for handshake processing
if PeerID(hexData: packet.recipientID) == env.localPeerID() {
@@ -72,14 +88,26 @@ final class BLENoisePacketHandler {
// Session establishment will trigger onPeerAuthenticated callback
// which will send any pending messages at the right time
return true
} catch NoiseSessionError.peerIdentityMismatch {
// The candidate was already discarded by the session manager.
// Do not let a spoofed claimed ID trigger a fresh outbound
// handshake or recreate state for the attacker-selected ID.
SecureLogger.warning(
"Rejected Noise handshake whose static key does not match \(peerID.id.prefix(8))",
category: .security
)
return false
} catch {
SecureLogger.error("Failed to process handshake: \(error)")
// Try initiating a new handshake
if !env.hasNoiseSession(peerID) {
env.initiateHandshake(peerID)
}
return false
}
}
return false
}
func handleEncrypted(_ packet: BitchatPacket, from peerID: PeerID) {
@@ -98,20 +126,30 @@ final class BLENoisePacketHandler {
env.updatePeerLastSeen(peerID)
do {
let decrypted = try env.decrypt(packet.payload, peerID)
let decryption = try env.decrypt(packet.payload, peerID)
let decrypted = decryption.plaintext
guard decrypted.count > 0 else { return }
// First byte indicates the payload type
let payloadType = decrypted[0]
let payloadData = decrypted.dropFirst()
guard let noisePayloadType = NoisePayloadType(rawValue: payloadType) else {
guard let noisePayloadType = NoisePayloadType.decoded(rawValue: payloadType) else {
SecureLogger.warning("⚠️ Unknown noise payload type: \(payloadType)")
return
}
SecureLogger.debug("🔐 Decrypted noise payload type \(noisePayloadType.description) from \(peerID.id.prefix(8))", category: .session)
if noisePayloadType == .authenticatedPeerState {
env.handleAuthenticatedPeerState(
peerID,
Data(payloadData),
decryption.sessionGeneration
)
return
}
let ts = Date(timeIntervalSince1970: Double(packet.timestamp) / 1000)
env.deliverNoisePayload(peerID, noisePayloadType, Data(payloadData), ts)
} catch NoiseEncryptionError.sessionNotEstablished {
@@ -17,6 +17,16 @@ enum BLENoisePayloadFactory {
typedPayload(.delivered, payload: Data(messageID.utf8))
}
static func privateFile(_ filePacket: BitchatFilePacket) -> Data? {
guard let payload = filePacket.encode() else { return nil }
return typedPayload(.privateFile, payload: payload)
}
static func authenticatedPeerState(_ state: AuthenticatedPeerStatePacket) -> Data? {
guard let payload = state.encode() else { return nil }
return typedPayload(.authenticatedPeerState, payload: payload)
}
static func typedPayload(_ type: NoisePayloadType, payload: Data) -> Data {
var typed = Data([type.rawValue])
typed.append(payload)
@@ -6,9 +6,16 @@ struct BLEPendingPrivateMessage: Equatable {
let messageID: String
}
struct BLEPendingTypedPayload: Equatable {
let payload: Data
/// Present for app-initiated media so handshake queuing preserves the
/// fragment scheduler's progress/cancellation identity.
let transferId: String?
}
struct BLENoiseSessionQueues {
private var privateMessagesByPeerID: [PeerID: [BLEPendingPrivateMessage]] = [:]
private var typedPayloadsByPeerID: [PeerID: [Data]] = [:]
private var typedPayloadsByPeerID: [PeerID: [BLEPendingTypedPayload]] = [:]
var isEmpty: Bool {
privateMessagesByPeerID.isEmpty && typedPayloadsByPeerID.isEmpty
@@ -34,13 +41,35 @@ struct BLENoiseSessionQueues {
privateMessagesByPeerID[peerID, default: []].insert(contentsOf: messages, at: 0)
}
mutating func appendTypedPayload(_ payload: Data, for peerID: PeerID) {
typedPayloadsByPeerID[peerID, default: []].append(payload)
mutating func appendTypedPayload(_ payload: Data, transferId: String? = nil, for peerID: PeerID) {
typedPayloadsByPeerID[peerID, default: []].append(
BLEPendingTypedPayload(payload: payload, transferId: transferId)
)
}
mutating func takeTypedPayloads(for peerID: PeerID) -> [Data] {
mutating func takeTypedPayloads(for peerID: PeerID) -> [BLEPendingTypedPayload] {
let payloads = typedPayloadsByPeerID[peerID] ?? []
typedPayloadsByPeerID.removeValue(forKey: peerID)
return payloads
}
func containsTypedPayload(transferId: String) -> Bool {
typedPayloadsByPeerID.values.contains { payloads in
payloads.contains { $0.transferId == transferId }
}
}
@discardableResult
mutating func removeTypedPayload(transferId: String) -> Bool {
for peerID in Array(typedPayloadsByPeerID.keys) {
guard var payloads = typedPayloadsByPeerID[peerID],
let index = payloads.firstIndex(where: { $0.transferId == transferId }) else {
continue
}
payloads.remove(at: index)
typedPayloadsByPeerID[peerID] = payloads.isEmpty ? nil : payloads
return true
}
return false
}
}
@@ -17,6 +17,9 @@ struct BLEOutboundFragmentPlan {
}
enum BLEOutboundFragmentPlanner {
/// Current Android receivers reject fragment sets above 256. Private
/// media v1 treats that deployed ceiling as a cross-platform contract.
static let privateMediaV1MaxFragments = 256
private static let minimumChunkSize = 64
private static let fragmentIDLength = 8
@@ -71,6 +74,10 @@ enum BLEOutboundFragmentPlanner {
)
}
static func isPrivateMediaV1Compatible(_ plan: BLEOutboundFragmentPlan) -> Bool {
plan.totalFragments <= privateMediaV1MaxFragments
}
private static func sizingPolicy(
for packet: BitchatPacket,
requestedMaxChunk: Int?,
@@ -29,8 +29,9 @@ struct BLEOutboundFragmentTransferRequest {
}
var resolvedTransferId: String? {
if let transferId { return transferId }
guard packet.type == MessageType.fileTransfer.rawValue else { return nil }
return transferId ?? packet.payload.sha256Hex()
return packet.payload.sha256Hex()
}
/// Content identity independent of the caller-chosen transfer ID: the
+18 -2
View File
@@ -10,6 +10,9 @@ struct BLEPeerInfo: Equatable {
var isVerifiedNickname: Bool
var lastSeen: Date
var capabilities: PeerCapabilities = []
/// Distinguishes an old client that omitted the capabilities TLV from a
/// modern client that explicitly advertised a set without a given bit.
var capabilitiesWereExplicitlyAdvertised: Bool = false
/// Rendezvous cell from the peer's announce when it advertises `.bridge`.
var bridgeGeohash: String?
}
@@ -114,6 +117,10 @@ struct BLEPeerRegistry {
peers[peerID.toShort()]?.capabilities ?? []
}
func capabilitiesWereExplicitlyAdvertised(for peerID: PeerID) -> Bool {
peers[peerID.toShort()]?.capabilitiesWereExplicitlyAdvertised == true
}
/// Peers whose last verified announce advertised the given capability.
func peers(advertising capability: PeerCapabilities) -> [PeerID] {
peers.values.filter { $0.capabilities.contains(capability) }.map(\.peerID)
@@ -174,6 +181,14 @@ struct BLEPeerRegistry {
peers[peerID] = peer
}
/// Replaces the announcement signing key only after the surrounding Noise
/// session proved possession of this peer's static key.
mutating func bindAuthenticatedSigningPublicKey(_ key: Data, for peerID: PeerID) {
guard var peer = peers[peerID.toShort()] else { return }
peer.signingPublicKey = key
peers[peer.peerID] = peer
}
mutating func upsertVerifiedAnnounce(
peerID: PeerID,
nickname: String,
@@ -181,7 +196,7 @@ struct BLEPeerRegistry {
signingPublicKey: Data?,
isConnected: Bool,
now: Date,
capabilities: PeerCapabilities = [],
capabilities: PeerCapabilities? = nil,
bridgeGeohash: String? = nil
) -> BLEPeerAnnounceUpdate {
let existing = peers[peerID]
@@ -199,7 +214,8 @@ struct BLEPeerRegistry {
signingPublicKey: signingPublicKey,
isVerifiedNickname: true,
lastSeen: now,
capabilities: capabilities,
capabilities: capabilities ?? [],
capabilitiesWereExplicitlyAdvertised: capabilities != nil,
bridgeGeohash: bridgeGeohash
)
File diff suppressed because it is too large Load Diff
+55 -7
View File
@@ -45,6 +45,9 @@ final class GeohashPresenceService: ObservableObject {
private var subscriptions = Set<AnyCancellable>()
private var heartbeatTimer: GeohashPresenceTimerProtocol?
private var pendingBroadcastTasks: [UUID: Task<Void, Never>] = [:]
private var heartbeatGeneration: UInt64 = 0
private var started = false
private let availableChannelsProvider: () -> [GeohashChannel]
private let locationChanges: AnyPublisher<[GeohashChannel], Never>
private let torReadyPublisher: AnyPublisher<Void, Never>
@@ -147,10 +150,25 @@ final class GeohashPresenceService: ObservableObject {
/// Start the service (safe to call multiple times)
func start() {
guard !started else { return }
started = true
heartbeatGeneration &+= 1
SecureLogger.info("Presence: service starting...", category: .session)
scheduleNextHeartbeat()
}
/// Stops the timer and every decorrelation task synchronously at the panic
/// boundary. Generation checks also protect against custom sleepers that
/// ignore task cancellation and return later.
func stopForPanic() {
started = false
heartbeatGeneration &+= 1
heartbeatTimer?.invalidate()
heartbeatTimer = nil
pendingBroadcastTasks.values.forEach { $0.cancel() }
pendingBroadcastTasks.removeAll(keepingCapacity: false)
}
private func setupObservers() {
// Monitor location channel changes
locationChanges
@@ -169,20 +187,26 @@ final class GeohashPresenceService: ObservableObject {
}
func handleLocationChange() {
guard started else { return }
// 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
let generation = heartbeatGeneration
heartbeatTimer = scheduleTimer(5.0) { [weak self] in
Task { @MainActor [weak self] in
self?.performHeartbeat()
guard let self,
self.started,
self.heartbeatGeneration == generation else { return }
self.performHeartbeat()
}
}
}
func handleConnectivityChange() {
guard started else { return }
SecureLogger.debug("Presence: connectivity restored, triggering heartbeat", category: .session)
// If we were waiting for network, do it now
if heartbeatTimer == nil || !heartbeatTimer!.isValid {
@@ -191,18 +215,29 @@ final class GeohashPresenceService: ObservableObject {
}
func scheduleNextHeartbeat() {
guard started else { return }
heartbeatTimer?.invalidate()
let interval = TimeInterval.random(in: loopMinInterval...loopMaxInterval)
let generation = heartbeatGeneration
heartbeatTimer = scheduleTimer(interval) { [weak self] in
Task { @MainActor [weak self] in
self?.performHeartbeat()
guard let self,
self.started,
self.heartbeatGeneration == generation else { return }
self.performHeartbeat()
}
}
}
func performHeartbeat() {
guard started else { return }
let generation = heartbeatGeneration
// Always schedule next loop first ensures continuity even if this one fails/skips
defer { scheduleNextHeartbeat() }
defer {
if started, heartbeatGeneration == generation {
scheduleNextHeartbeat()
}
}
// 1. Check preconditions
guard torIsReady() else {
@@ -228,14 +263,27 @@ final class GeohashPresenceService: ObservableObject {
}
// Launch independent task for each channel's delay
Task { @MainActor in
// Random delay for decorrelation
let delay = TimeInterval.random(in: self.burstMinDelay...self.burstMaxDelay)
let taskID = UUID()
let sleeper = self.sleeper
let delay = TimeInterval.random(
in: burstMinDelay...burstMaxDelay
)
let nanoseconds = UInt64(delay * 1_000_000_000)
await self.sleeper(nanoseconds)
let task = Task { @MainActor [weak self] in
// Random delay for decorrelation
await sleeper(nanoseconds)
guard let self else { return }
guard !Task.isCancelled,
self.started,
self.heartbeatGeneration == generation else {
self.pendingBroadcastTasks.removeValue(forKey: taskID)
return
}
self.pendingBroadcastTasks.removeValue(forKey: taskID)
self.broadcastPresence(for: channel.geohash)
}
pendingBroadcastTasks[taskID] = task
}
}
+103 -13
View File
@@ -11,6 +11,13 @@ import BitFoundation
import Foundation
import Security
enum KeychainInstallLifecycleAction: Equatable {
case markerPresent
case bootstrapMarker
case clearStaleKeys
case retryLater
}
final class KeychainManager: KeychainManagerProtocol {
/// Default keychain for components that construct their own rather than
/// having one injected. Under test this is an in-memory keychain: the
@@ -41,27 +48,80 @@ final class KeychainManager: KeychainManagerProtocol {
// Use consistent service name for all keychain items
private let service = BitchatApp.bundleID
private let appGroup = "group.\(BitchatApp.bundleID)"
// AfterFirstUnlock, not WhenUnlocked: the mesh keeps running with the
// device locked (identity-cache saves failed with -25308 throughout
// locked-phone testing), and a wake-on-proximity relaunch via BLE state
// restoration must be able to read the noise keys before the user
// unlocks. Backup/sync semantics are unchanged (not ThisDeviceOnly).
private static let itemAccessibility = kSecAttrAccessibleAfterFirstUnlock
// unlocks. ThisDeviceOnly prevents private identities and group keys from
// migrating through device backups onto a second device.
private static let itemAccessibility = kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly
init() {
#if os(iOS)
reconcileInstallLifecycle()
migrateAccessibilityIfNeeded()
#endif
}
static func installLifecycleAction(
containerKnowsMarker: Bool,
markerRead: KeychainReadResult
) -> KeychainInstallLifecycleAction {
switch markerRead {
case .success:
return containerKnowsMarker ? .markerPresent : .clearStaleKeys
case .itemNotFound:
return .bootstrapMarker
case .accessDenied, .deviceLocked, .authenticationFailed, .otherError:
return .retryLater
}
}
#if os(iOS)
private static let installMarkerAccount = "install_lifecycle_marker"
private static let installMarkerDefaultsKey = "keychain.installLifecycleMarker.present"
/// Keychain items can survive app removal while the app container and its
/// UserDefaults do not. The first version carrying this marker bootstraps
/// without deleting existing users' identities. On a later reinstall, a
/// surviving keychain marker plus a missing defaults marker proves the app
/// container was replaced, so stale secrets are removed before use.
private func reconcileInstallLifecycle() {
let defaults = UserDefaults.standard
let containerKnowsMarker = defaults.bool(forKey: Self.installMarkerDefaultsKey)
let markerRead = retrieveDataWithResult(forKey: Self.installMarkerAccount)
switch Self.installLifecycleAction(
containerKnowsMarker: containerKnowsMarker,
markerRead: markerRead
) {
case .markerPresent:
defaults.set(true, forKey: Self.installMarkerDefaultsKey)
case .bootstrapMarker:
if case .success = saveDataWithResult(Data([1]), forKey: Self.installMarkerAccount) {
defaults.set(true, forKey: Self.installMarkerDefaultsKey)
}
case .clearStaleKeys:
_ = deleteAllKeychainData()
defaults.set(true, forKey: Self.installMarkerDefaultsKey)
case .retryLater:
// Do not guess that a temporarily unreadable marker is absent.
// Leaving the defaults flag unchanged lets a later construction
// retry once protected keychain data is available.
break
}
}
/// One-time upgrade of items created under WhenUnlocked. New saves get
/// the right class on their own (saves are delete-then-add), but the
/// long-lived identity keys are written once and would otherwise stay
/// unreadable while the device is locked.
private func migrateAccessibilityIfNeeded() {
let flag = "keychain.accessibility.afterFirstUnlock.migrated"
let flag = "keychain.accessibility.afterFirstUnlockThisDeviceOnly.migrated"
guard !UserDefaults.standard.bool(forKey: flag) else { return }
let query: [String: Any] = [
@@ -76,7 +136,7 @@ final class KeychainManager: KeychainManagerProtocol {
case errSecSuccess, errSecItemNotFound:
// Nothing to migrate on a fresh install; both are terminal.
UserDefaults.standard.set(true, forKey: flag)
SecureLogger.info("Keychain accessibility migrated to AfterFirstUnlock (status \(status))", category: .keychain)
SecureLogger.info("Keychain accessibility migrated to AfterFirstUnlockThisDeviceOnly (status \(status))", category: .keychain)
default:
// Likely errSecInteractionNotAllowed (relaunched while locked)
// leave the flag unset so the next launch retries.
@@ -492,6 +552,15 @@ final class KeychainManager: KeychainManagerProtocol {
SecureLogger.warning("Panic mode cleanup completed. Total items deleted: \(totalDeleted)", category: .keychain)
#if os(iOS)
// The non-secret marker is intentionally recreated after a panic so a
// later uninstall/reinstall can still be distinguished from an in-place
// upgrade. It never restores any wiped identity or relationship data.
if case .success = saveDataWithResult(Data([1]), forKey: Self.installMarkerAccount) {
UserDefaults.standard.set(true, forKey: Self.installMarkerDefaultsKey)
}
#endif
return totalDeleted > 0
}
@@ -526,18 +595,39 @@ final class KeychainManager: KeychainManagerProtocol {
/// Save data with a custom service name
func save(key: String, data: Data, service customService: String, accessible: CFString?) {
var query: [String: Any] = [
let primaryKeyQuery: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: customService,
kSecAttrAccount as String: key,
kSecValueData as String: data
kSecAttrAccount as String: key
]
if let accessible = accessible {
query[kSecAttrAccessible as String] = accessible
}
var addQuery = primaryKeyQuery
addQuery.merge([
kSecValueData as String: data,
kSecAttrAccessible as String: accessible ?? Self.itemAccessibility,
kSecAttrSynchronizable as String: false
]) { _, new in new }
SecItemDelete(query as CFDictionary)
SecItemAdd(query as CFDictionary, nil)
// Delete by the item's primary key only. Value/accessibility fields
// are add attributes, not valid selectors for replacing an existing
// item; including them can leave the old item in place and make the
// subsequent add fail as a duplicate.
let deleteStatus = SecItemDelete(primaryKeyQuery as CFDictionary)
guard deleteStatus == errSecSuccess || deleteStatus == errSecItemNotFound else {
SecureLogger.error(
NSError(domain: "Keychain", code: Int(deleteStatus)),
context: "Unable to replace custom-service keychain item",
category: .keychain
)
return
}
let addStatus = SecItemAdd(addQuery as CFDictionary, nil)
if addStatus != errSecSuccess {
SecureLogger.error(
NSError(domain: "Keychain", code: Int(addStatus)),
context: "Unable to save custom-service keychain item",
category: .keychain
)
}
}
/// Load data from a custom service
@@ -154,6 +154,19 @@ final class NetworkActivationService: ObservableObject {
.store(in: &cancellables)
}
/// Stops all internet-facing work at the synchronous panic boundary.
/// `start()` may be called again only after the full wipe commits.
func stopForPanic() {
cancellables.removeAll()
started = false
reachabilityMonitor.stop()
activationAllowed = false
torAutoStartDesired = false
relayController.disconnect()
torController.setAutoStartAllowed(false)
applyTorState(torDesired: false)
}
func setUserTorEnabled(_ enabled: Bool) {
guard enabled != userTorEnabled else { return }
userTorEnabled = enabled
@@ -167,6 +180,7 @@ final class NetworkActivationService: ObservableObject {
}
private func reevaluate() {
guard started else { return }
let allowed = effectiveAllowed()
let torDesired = allowed && userTorEnabled
let statusChanged = allowed != activationAllowed
@@ -27,6 +27,8 @@ protocol NetworkReachabilityMonitoring: AnyObject {
var reachabilityPublisher: AnyPublisher<Bool, Never> { get }
/// Begin monitoring. Idempotent.
func start()
/// Stop monitoring and discard pending debounce work. Idempotent.
func stop()
}
/// Pure debounce/decision logic for reachability, split out so it can be
@@ -98,6 +100,7 @@ final class AlwaysReachableMonitor: NetworkReachabilityMonitoring {
Empty(completeImmediately: false).eraseToAnyPublisher()
}
func start() {}
func stop() {}
}
/// `NWPathMonitor`-backed reachability. All state lives on the main actor; the
@@ -146,6 +149,18 @@ final class NWPathReachabilityMonitor: NetworkReachabilityMonitoring {
#endif
}
func stop() {
guard started else { return }
started = false
flushWorkItem?.cancel()
flushWorkItem = nil
#if canImport(Network)
monitor?.pathUpdateHandler = nil
monitor?.cancel()
monitor = nil
#endif
}
/// Feed an observation into the debounce and publish committed changes.
/// Exposed internally so higher layers/tests could drive it if needed.
func ingest(reachable: Bool) {
+133 -22
View File
@@ -165,7 +165,6 @@ final class NoiseEncryptionService {
// Peer fingerprints (SHA256 hash of static public key)
private var peerFingerprints: [PeerID: String] = [:]
private var fingerprintToPeerID: [String: PeerID] = [:]
// Thread safety
private let serviceQueue = DispatchQueue(label: "chat.bitchat.noise.service", attributes: .concurrent)
@@ -183,12 +182,18 @@ final class NoiseEncryptionService {
// Callbacks
private var onPeerAuthenticatedHandlers: [((PeerID, String) -> Void)] = [] // Array of handlers for peer authentication
private var onPeerAuthenticatedWithGenerationHandlers: [((PeerID, String, UUID) -> Void)] = []
var onHandshakeRequired: ((PeerID) -> Void)? // peerID needs handshake
/// Automatic rekey removed the old session and produced XX message 1.
/// The transport must clear session-scoped state and put these exact bytes
/// on the wire; merely reporting "handshake required" strands the partial
/// initiator session because a second initiate call sees it already exists.
var onRekeyHandshakeReady: ((_ peerID: PeerID, _ message: Data) -> Void)?
// Add a handler for peer authentication
func addOnPeerAuthenticatedHandler(_ handler: @escaping (PeerID, String) -> Void) {
serviceQueue.async(flags: .barrier) { [weak self] in
self?.onPeerAuthenticatedHandlers.append(handler)
serviceQueue.sync(flags: .barrier) {
onPeerAuthenticatedHandlers.append(handler)
}
}
@@ -202,6 +207,18 @@ final class NoiseEncryptionService {
}
}
/// Generation-aware authentication notifications are used by protocols
/// whose state must be bound to one exact Noise transport session.
var onPeerAuthenticatedWithGeneration: ((PeerID, String, UUID) -> Void)? {
get { nil }
set {
guard let handler = newValue else { return }
serviceQueue.sync(flags: .barrier) {
onPeerAuthenticatedWithGenerationHandlers.append(handler)
}
}
}
init(keychain: KeychainManagerProtocol) {
self.keychain = keychain
self.localPrekeys = LocalPrekeyStore(keychain: keychain)
@@ -295,8 +312,12 @@ final class NoiseEncryptionService {
self.sessionManager = NoiseSessionManager(localStaticKey: staticIdentityKey, keychain: keychain)
// Set up session callbacks
sessionManager.onSessionEstablished = { [weak self] peerID, remoteStaticKey in
self?.handleSessionEstablished(peerID: peerID, remoteStaticKey: remoteStaticKey)
sessionManager.onSessionEstablished = { [weak self] peerID, remoteStaticKey, generation in
self?.handleSessionEstablished(
peerID: peerID,
remoteStaticKey: remoteStaticKey,
sessionGeneration: generation
)
}
// Start session maintenance timer
@@ -726,10 +747,55 @@ final class NoiseEncryptionService {
return try sessionManager.encrypt(data, for: peerID)
}
/// Encrypts a finalized private-media packet. Ordinary Noise application
/// messages retain the 64 KiB ceiling; this purpose-specific path permits
/// the bounded `BitchatFilePacket` envelope and refuses every other typed
/// payload so the larger allocation budget cannot become a generic bypass.
func encryptPrivateFilePayload(
_ data: Data,
for peerID: PeerID,
sessionGeneration: UUID? = nil
) throws -> Data {
guard NoisePayloadType.isPrivateFile(rawValue: data.first),
NoiseSecurityValidator.validatePrivateFileMessageSize(data) else {
throw NoiseSecurityError.messageTooLarge
}
guard rateLimiter.allowMessage(from: peerID) else {
throw NoiseSecurityError.rateLimitExceeded
}
guard hasEstablishedSession(with: peerID) else {
onHandshakeRequired?(peerID)
throw NoiseEncryptionError.handshakeRequired
}
// `maxPrivateFilePlaintextSize` already subtracts the cipher's fixed
// nonce/tag overhead, so the result is bounded without a second copy.
if let sessionGeneration {
return try sessionManager.encrypt(
data,
for: peerID,
expectedSessionGeneration: sessionGeneration
)
}
return try sessionManager.encrypt(data, for: peerID)
}
/// Decrypt data from a specific peer
func decrypt(_ data: Data, from peerID: PeerID) throws -> Data {
// Validate message size
guard NoiseSecurityValidator.validateMessageSize(data) else {
try decryptWithSessionGeneration(data, from: peerID).plaintext
}
func decryptWithSessionGeneration(
_ data: Data,
from peerID: PeerID
) throws -> (plaintext: Data, sessionGeneration: UUID) {
// Standard transport ciphertext has 20 bytes of nonce/tag overhead.
// A larger candidate is admitted only up to the framed-file ceiling;
// after authenticated decryption it must prove it is `.privateFile`.
let isStandardCiphertext = NoiseSecurityValidator.validateCiphertextSize(data)
guard isStandardCiphertext || NoiseSecurityValidator.validatePrivateFileCiphertextSize(data) else {
throw NoiseSecurityError.messageTooLarge
}
@@ -743,7 +809,14 @@ final class NoiseEncryptionService {
throw NoiseEncryptionError.sessionNotEstablished
}
return try sessionManager.decrypt(data, from: peerID)
let result = try sessionManager.decryptWithSessionGeneration(data, from: peerID)
if !isStandardCiphertext {
guard NoisePayloadType.isPrivateFile(rawValue: result.plaintext.first),
NoiseSecurityValidator.validatePrivateFileMessageSize(result.plaintext) else {
throw NoiseSecurityError.messageTooLarge
}
}
return result
}
// MARK: - Peer Management
@@ -755,6 +828,25 @@ final class NoiseEncryptionService {
}
}
func sessionGeneration(for peerID: PeerID) -> UUID? {
sessionManager.sessionGeneration(for: peerID)
}
/// Runs `body` while holding a read lease on the exact session generation.
/// Session insertion, replacement, and removal use the same manager
/// barrier, so they cannot interleave with an authenticated-state commit.
func withCurrentSessionGeneration<Result>(
for peerID: PeerID,
expected: UUID,
_ body: () -> Result
) -> Result? {
sessionManager.withCurrentSessionGeneration(
for: peerID,
expected: expected,
body
)
}
func clearEphemeralStateForPanic() {
sessionManager.removeAllSessions()
serviceQueue.sync(flags: .barrier) {
@@ -777,24 +869,36 @@ final class NoiseEncryptionService {
// MARK: - Private Helpers
private func handleSessionEstablished(peerID: PeerID, remoteStaticKey: Curve25519.KeyAgreement.PublicKey) {
private func handleSessionEstablished(
peerID: PeerID,
remoteStaticKey: Curve25519.KeyAgreement.PublicKey,
sessionGeneration: UUID
) {
// Calculate fingerprint
let fingerprint = remoteStaticKey.rawRepresentation.sha256Fingerprint()
// Store fingerprint mapping
serviceQueue.sync(flags: .barrier) {
// Registering handlers is synchronous, and this barrier snapshots them
// with the fingerprint update. Invoke the snapshot outside the queue:
// parallel Swift Testing workers must not block behind queued callback
// registration or allow a handler to re-enter serviceQueue.
let handlers: (
generationAware: [(PeerID, String, UUID) -> Void],
legacy: [(PeerID, String) -> Void]
) = serviceQueue.sync(flags: .barrier) {
peerFingerprints[peerID] = fingerprint
fingerprintToPeerID[fingerprint] = peerID
return (onPeerAuthenticatedWithGenerationHandlers, onPeerAuthenticatedHandlers)
}
// Log security event
SecureLogger.info(.handshakeCompleted(peerID: peerID.id))
// Notify all handlers about authentication
serviceQueue.async { [weak self] in
self?.onPeerAuthenticatedHandlers.forEach { handler in
handler(peerID, fingerprint)
// Notify all handlers about authentication.
handlers.generationAware.forEach { handler in
handler(peerID, fingerprint, sessionGeneration)
}
handlers.legacy.forEach { handler in
handler(peerID, fingerprint)
}
}
@@ -815,20 +919,27 @@ final class NoiseEncryptionService {
let sessionsNeedingRekey = sessionManager.getSessionsNeedingRekey()
for (peerID, needsRekey) in sessionsNeedingRekey where needsRekey {
// Attempt to rekey the session
do {
try sessionManager.initiateRekey(for: peerID)
SecureLogger.debug("Key rotation initiated for peer: \(peerID)", category: .security)
// Signal that handshake is needed
onHandshakeRequired?(peerID)
try initiateAutomaticRekey(for: peerID)
} catch {
SecureLogger.error(error, context: "Failed to initiate rekey for peer: \(peerID)", category: .session)
}
}
}
private func initiateAutomaticRekey(for peerID: PeerID) throws {
let handshakeMessage = try sessionManager.initiateRekey(for: peerID)
SecureLogger.debug("Key rotation initiated for peer: \(peerID)", category: .security)
onRekeyHandshakeReady?(peerID, handshakeMessage)
onHandshakeRequired?(peerID)
}
#if DEBUG
func _test_initiateAutomaticRekey(for peerID: PeerID) throws {
try initiateAutomaticRekey(for: peerID)
}
#endif
deinit {
stopRekeyTimer()
}
@@ -11,6 +11,7 @@ final class TransferProgressManager {
case updated(id: String, sentFragments: Int, totalFragments: Int)
case completed(id: String, totalFragments: Int)
case cancelled(id: String, sentFragments: Int, totalFragments: Int)
case rejected(id: String, reason: String)
}
private let subject = PassthroughSubject<Event, Never>()
@@ -49,6 +50,17 @@ final class TransferProgressManager {
}
}
/// Fails a preflight check while keeping the outgoing placeholder visible
/// with an actionable reason instead of treating policy/size rejection as
/// a user cancellation.
func rejectBeforeStart(id: String, reason: String) {
queue.async(flags: .barrier) { [weak self] in
guard let self = self else { return }
self.states.removeValue(forKey: id)
self.subject.send(.rejected(id: id, reason: reason))
}
}
func snapshot(id: String) -> (sent: Int, total: Int)? {
var result: (sent: Int, total: Int)?
queue.sync {
+44
View File
@@ -83,6 +83,20 @@ enum TransportEvent: @unchecked Sendable {
case bluetoothStateUpdated(CBManagerState)
}
/// Downgrade-safe decision for a private-media recipient. Callers ask before
/// prompting, and BLEService checks again when it consumes any one-shot
/// legacy consent.
enum PrivateMediaSendPolicy: Equatable {
case encrypted
/// A public announce hinted at encrypted media (or a prior authenticated
/// pin exists), but this exact Noise session has not yet supplied its
/// authenticated peer-state proof. Callers wait boundedly; they must not
/// pre-queue encrypted bytes or silently select the legacy path.
case awaitingCapabilityProof
case legacyRequiresConsent
case blockedDowngrade
}
protocol TransportEventDelegate: AnyObject {
@MainActor func didReceiveTransportEvent(_ event: TransportEvent)
}
@@ -163,6 +177,12 @@ protocol Transport: AnyObject {
func sendDeliveryAck(for messageID: String, to peerID: PeerID)
func sendFileBroadcast(_ packet: BitchatFilePacket, transferId: String)
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String)
func sendFilePrivate(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool
)
func cancelTransfer(_ transferId: String)
// Live voice / push-to-talk (mesh transports only): one encoded
@@ -208,6 +228,11 @@ protocol Transport: AnyObject {
/// Capabilities the peer advertised in its last verified announce;
/// empty for peers that predate the capabilities TLV.
func peerCapabilities(_ peerID: PeerID) -> PeerCapabilities
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
)
/// Sends an encoded vouch-attestation batch inside the Noise session.
func sendVouchAttestations(_ payload: Data, to peerID: PeerID)
/// Appends a peer-authenticated observer. Unlike
@@ -278,6 +303,16 @@ extension Transport {
func sendGroupKeyUpdate(_ statePayload: Data, to peerID: PeerID) {}
func broadcastGroupMessage(_ envelope: Data) {}
func peerCapabilities(_ peerID: PeerID) -> PeerCapabilities { [] }
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy { .blockedDowngrade }
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
) {
let policy = privateMediaSendPolicy(to: peerID)
Task { @MainActor in
completion(policy == .awaitingCapabilityProof ? .blockedDowngrade : policy)
}
}
func sendVouchAttestations(_ payload: Data, to peerID: PeerID) {}
func addPeerAuthenticatedObserver(_ handler: @escaping (PeerID, String) -> Void) {}
func sendCourierMessage(_ content: String, messageID: String, recipientNoiseKey: Data, via couriers: [PeerID]) -> Bool { false }
@@ -294,6 +329,15 @@ extension Transport {
func currentMeshTopology() -> MeshTopologySnapshot? { nil }
func sendFileBroadcast(_ packet: BitchatFilePacket, transferId: String) {}
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String) {}
func sendFilePrivate(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool
) {
guard !allowLegacyFallback else { return }
sendFilePrivate(packet, to: peerID, transferId: transferId)
}
func cancelTransfer(_ transferId: String) {}
func sendMessage(_ content: String, mentions: [String], messageID: String, timestamp: Date) {
+6
View File
@@ -9,6 +9,12 @@ enum TransportConfig {
static let bleMaxInFlightAssemblies: Int = 128 // Cap concurrent fragment assemblies
static let bleHighDegreeThreshold: Int = 6 // For adaptive TTL/probabilistic relays
static let bleMaxConcurrentTransfers: Int = 2 // Limit simultaneous large media sends
// Bounded wait for the session-authenticated capability proof used by
// private-media migration. Expiry never auto-sends clear bytes; it only
// resolves to the existing one-shot consent or downgrade-blocked path.
static let privateMediaCapabilityProofTimeoutSeconds: TimeInterval = 5
static let privateMediaCapabilityProofPendingPeerCap: Int = 64
static let privateMediaCapabilityProofWaitersPerPeerCap: Int = 16
static let bleFragmentRelayMinDelayMs: Int = 8 // Faster forwarding for media fragments
static let bleFragmentRelayMaxDelayMs: Int = 25 // Upper jitter bound for fragment relays
// Fragment relay TTL in sparse graphs; matches messageTTLDefault so media
@@ -226,6 +226,21 @@ final class ChatLiveVoiceCoordinator {
assemblies.values.contains { $0.messageID == message.id }
}
/// Stop every live file handle/player before the panic media directory is
/// removed. This prevents an in-flight assembly from continuing to write
/// through an unlinked file after the wipe returns.
func resetForPanic() {
for assembly in Array(assemblies.values) {
cancelAssembly(assembly)
}
for player in drainingPlayers.values {
player.stop()
}
drainingPlayers.removeAll(keepingCapacity: false)
finishedBursts.removeAll(keepingCapacity: false)
updatePublicTalkerIndicator()
}
/// Called for every inbound private message: when it is the finalized
/// voice note of a burst we assembled (matched by burst ID in the file
/// name), swap it into the existing live bubble and report `true` so the
@@ -6,6 +6,19 @@ import Foundation
import UIKit
#endif
struct LegacyPrivateMediaConsentRequest: Identifiable, Equatable {
let id: UUID
let peerID: PeerID
let peerName: String
let transferId: String
let messageID: String
}
struct PendingLegacyPrivateMediaConsent {
let request: LegacyPrivateMediaConsentRequest
let completion: @MainActor (Bool) -> Void
}
/// The narrow surface `ChatMediaTransferCoordinator` needs from its owner.
///
/// Follows the `ChatDeliveryContext` exemplar: the coordinator depends on the
@@ -43,7 +56,24 @@ protocol ChatMediaTransferContext: AnyObject {
func recordContentKey(_ key: String, timestamp: Date)
// MARK: Mesh file transfer
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String)
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
)
func requestLegacyPrivateMediaConsent(
for peerID: PeerID,
transferId: String,
messageID: String,
completion: @escaping @MainActor (Bool) -> Void
)
func cancelLegacyPrivateMediaConsent(transferId: String, messageID: String)
func sendFilePrivate(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool
)
func sendFileBroadcast(_ packet: BitchatFilePacket, transferId: String)
func cancelTransfer(_ transferId: String)
}
@@ -59,8 +89,50 @@ extension ChatViewModel: ChatMediaTransferContext {
// other contexts or satisfied by existing `ChatViewModel` members. The
// members below flatten mesh service accesses.
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String) {
meshService.sendFilePrivate(packet, to: peerID, transferId: transferId)
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy {
meshService.privateMediaSendPolicy(to: peerID)
}
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
) {
meshService.resolvePrivateMediaSendPolicy(to: peerID, completion: completion)
}
func requestLegacyPrivateMediaConsent(
for peerID: PeerID,
transferId: String,
messageID: String,
completion: @escaping @MainActor (Bool) -> Void
) {
enqueueLegacyPrivateMediaConsent(
for: peerID,
transferId: transferId,
messageID: messageID,
completion: completion
)
}
func cancelLegacyPrivateMediaConsent(transferId: String, messageID: String) {
invalidateLegacyPrivateMediaConsent(
transferId: transferId,
messageID: messageID
)
}
func sendFilePrivate(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool
) {
meshService.sendFilePrivate(
packet,
to: peerID,
transferId: transferId,
allowLegacyFallback: allowLegacyFallback
)
}
func sendFileBroadcast(_ packet: BitchatFilePacket, transferId: String) {
@@ -75,12 +147,20 @@ extension ChatViewModel: ChatMediaTransferContext {
@MainActor
final class ChatMediaTransferCoordinator {
private unowned let context: any ChatMediaTransferContext
private let prepareVoiceNotePacket: @Sendable (URL) throws -> BitchatFilePacket
private(set) var transferIdToMessageIDs: [String: [String]] = [:]
private(set) var messageIDToTransferId: [String: String] = [:]
private var preparationGeneration: UInt64 = 0
init(context: any ChatMediaTransferContext) {
init(
context: any ChatMediaTransferContext,
prepareVoiceNotePacket: @escaping @Sendable (URL) throws -> BitchatFilePacket = {
try ChatMediaPreparation.prepareVoiceNotePacket(at: $0)
}
) {
self.context = context
self.prepareVoiceNotePacket = prepareVoiceNotePacket
}
func sendVoiceNote(at url: URL) {
@@ -98,16 +178,30 @@ final class ChatMediaTransferCoordinator {
)
let messageID = message.id
let transferId = makeTransferID(messageID: messageID)
// Own the transfer before detached preparation begins. Cancel/delete
// must be able to invalidate this exact invocation even while file I/O
// is still running off the main actor.
registerTransfer(transferId: transferId, messageID: messageID)
let prepareVoiceNotePacket = self.prepareVoiceNotePacket
let generation = preparationGeneration
Task.detached(priority: .userInitiated) { [weak self] in
do {
let packet = try ChatMediaPreparation.prepareVoiceNotePacket(at: url)
let packet = try prepareVoiceNotePacket(url)
await MainActor.run { [weak self] in
guard let self else { return }
self.registerTransfer(transferId: transferId, messageID: messageID)
guard let self,
self.preparationGeneration == generation,
self.isRegisteredTransfer(transferId, messageID: messageID) else {
return
}
if let peerID = targetPeer {
self.context.sendFilePrivate(packet, to: peerID, transferId: transferId)
self.beginPrivateMediaSend(
packet,
to: peerID,
transferId: transferId,
messageID: messageID
)
} else {
self.context.sendFileBroadcast(packet, transferId: transferId)
}
@@ -116,13 +210,21 @@ final class ChatMediaTransferCoordinator {
SecureLogger.warning("Voice note exceeds size limit (\(size) bytes)", category: .session)
try? FileManager.default.removeItem(at: url)
await MainActor.run { [weak self] in
guard let self else { return }
guard let self,
self.preparationGeneration == generation,
self.isRegisteredTransfer(transferId, messageID: messageID) else {
return
}
self.handleMediaSendFailure(messageID: messageID, reason: String(localized: "content.delivery.reason.voice_too_large", comment: "Failure reason shown when a voice note exceeds the size limit"))
}
} catch {
SecureLogger.error("Voice note send failed: \(error)", category: .session)
await MainActor.run { [weak self] in
guard let self else { return }
guard let self,
self.preparationGeneration == generation,
self.isRegisteredTransfer(transferId, messageID: messageID) else {
return
}
self.handleMediaSendFailure(messageID: messageID, reason: String(localized: "content.delivery.reason.voice_send_failed", comment: "Failure reason shown when a voice note could not be sent"))
}
}
@@ -132,11 +234,15 @@ final class ChatMediaTransferCoordinator {
#if os(iOS)
func processThenSendImage(_ image: UIImage?) {
guard let image else { return }
let generation = preparationGeneration
Task.detached { [weak self] in
do {
let processedURL = try ImageUtils.processImage(image)
await MainActor.run { [weak self] in
guard let self else { return }
guard let self, self.preparationGeneration == generation else {
try? FileManager.default.removeItem(at: processedURL)
return
}
self.sendImage(from: processedURL)
}
} catch {
@@ -147,11 +253,15 @@ final class ChatMediaTransferCoordinator {
#elseif os(macOS)
func processThenSendImage(from url: URL?) {
guard let url else { return }
let generation = preparationGeneration
Task.detached { [weak self] in
do {
let processedURL = try ImageUtils.processImage(at: url)
await MainActor.run { [weak self] in
guard let self else { return }
guard let self, self.preparationGeneration == generation else {
try? FileManager.default.removeItem(at: processedURL)
return
}
self.sendImage(from: processedURL)
}
} catch {
@@ -170,6 +280,7 @@ final class ChatMediaTransferCoordinator {
}
let targetPeer = context.selectedPrivateChatPeer
let generation = preparationGeneration
do {
try ImageUtils.validateImageSource(at: sourceURL)
@@ -184,7 +295,10 @@ final class ChatMediaTransferCoordinator {
let prepared = try ChatMediaPreparation.prepareImagePacket(from: sourceURL)
await MainActor.run { [weak self] in
guard let self else { return }
guard let self, self.preparationGeneration == generation else {
try? FileManager.default.removeItem(at: prepared.outputURL)
return
}
let message = self.enqueueMediaMessage(
content: "\(MimeType.Category.image.messagePrefix)\(prepared.outputURL.lastPathComponent)",
targetPeer: targetPeer
@@ -193,7 +307,12 @@ final class ChatMediaTransferCoordinator {
let transferId = self.makeTransferID(messageID: messageID)
self.registerTransfer(transferId: transferId, messageID: messageID)
if let peerID = targetPeer {
self.context.sendFilePrivate(prepared.packet, to: peerID, transferId: transferId)
self.beginPrivateMediaSend(
prepared.packet,
to: peerID,
transferId: transferId,
messageID: messageID
)
} else {
self.context.sendFileBroadcast(prepared.packet, transferId: transferId)
}
@@ -201,13 +320,13 @@ final class ChatMediaTransferCoordinator {
} catch ChatMediaPreparationError.imageTooLarge(let size) {
SecureLogger.warning("Processed image exceeds size limit (\(size) bytes)", category: .session)
await MainActor.run { [weak self] in
guard let self else { return }
guard let self, self.preparationGeneration == generation else { return }
self.context.addSystemMessage("Image is too large to send.")
}
} catch {
SecureLogger.error("Image send preparation failed: \(error)", category: .session)
await MainActor.run { [weak self] in
guard let self else { return }
guard let self, self.preparationGeneration == generation else { return }
self.context.addSystemMessage("Failed to prepare image for sending.")
}
}
@@ -253,17 +372,127 @@ final class ChatMediaTransferCoordinator {
return message
}
private func beginPrivateMediaSend(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
messageID: String
) {
continuePrivateMediaSend(
packet,
to: peerID,
transferId: transferId,
messageID: messageID,
policy: context.privateMediaSendPolicy(to: peerID)
)
}
private func continuePrivateMediaSend(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
messageID: String,
policy: PrivateMediaSendPolicy
) {
switch policy {
case .encrypted:
context.sendFilePrivate(
packet,
to: peerID,
transferId: transferId,
allowLegacyFallback: false
)
case .awaitingCapabilityProof:
context.resolvePrivateMediaSendPolicy(to: peerID) { [weak self] resolvedPolicy in
guard let self,
self.isRegisteredTransfer(transferId, messageID: messageID) else {
return
}
guard resolvedPolicy != .awaitingCapabilityProof else {
self.handleMediaSendFailure(
messageID: messageID,
reason: String(
localized: "content.delivery.reason.private_media_capability_unresolved",
defaultValue: "Could not confirm encrypted media support",
comment: "Failure reason when private-media capability negotiation did not resolve"
)
)
return
}
self.continuePrivateMediaSend(
packet,
to: peerID,
transferId: transferId,
messageID: messageID,
policy: resolvedPolicy
)
}
case .legacyRequiresConsent:
context.requestLegacyPrivateMediaConsent(
for: peerID,
transferId: transferId,
messageID: messageID
) { [weak self] approved in
guard let self else { return }
// Consent belongs to this exact placeholder/transfer. A late
// dialog callback after cancel/delete must never resurrect it.
guard self.messageIDToTransferId[messageID] == transferId,
self.transferIdToMessageIDs[transferId]?.contains(messageID) == true else {
return
}
guard approved else {
self.handleMediaSendFailure(
messageID: messageID,
reason: String(
localized: "content.delivery.reason.legacy_media_declined",
defaultValue: "Not sent without end-to-end encryption",
comment: "Failure reason after declining the warning for a legacy clear private-media send"
)
)
return
}
self.context.sendFilePrivate(
packet,
to: peerID,
transferId: transferId,
allowLegacyFallback: true
)
}
case .blockedDowngrade:
handleMediaSendFailure(
messageID: messageID,
reason: String(
localized: "content.delivery.reason.private_media_downgrade_blocked",
defaultValue: "Encrypted media required; ask this contact to upgrade",
comment: "Failure reason when a peer that previously supported encrypted media appears to downgrade"
)
)
}
}
func registerTransfer(transferId: String, messageID: String) {
transferIdToMessageIDs[transferId, default: []].append(messageID)
messageIDToTransferId[messageID] = transferId
}
private func isRegisteredTransfer(_ transferId: String, messageID: String) -> Bool {
messageIDToTransferId[messageID] == transferId
&& transferIdToMessageIDs[transferId]?.contains(messageID) == true
}
func makeTransferID(messageID: String) -> String {
"\(messageID)-\(UUID().uuidString)"
}
func clearTransferMapping(for messageID: String) {
guard let transferId = messageIDToTransferId.removeValue(forKey: messageID) else { return }
context.cancelLegacyPrivateMediaConsent(
transferId: transferId,
messageID: messageID
)
guard var queue = transferIdToMessageIDs[transferId] else { return }
if !queue.isEmpty {
@@ -298,6 +527,9 @@ final class ChatMediaTransferCoordinator {
guard let messageID = transferIdToMessageIDs[id]?.first else { return }
clearTransferMapping(for: messageID)
context.removeMessage(withID: messageID, cleanupFile: true)
case .rejected(let id, let reason):
guard let messageID = transferIdToMessageIDs[id]?.first else { return }
handleMediaSendFailure(messageID: messageID, reason: reason)
}
}
@@ -338,9 +570,29 @@ final class ChatMediaTransferCoordinator {
}
func deleteMediaMessage(messageID: String) {
// Delete is also a send cancellation. In particular, an approved
// legacy-clear send may still be waiting on BLEService.messageQueue;
// removing only the UI mapping would let that deferred work transmit.
if let transferId = messageIDToTransferId[messageID],
transferIdToMessageIDs[transferId]?.first == messageID {
context.cancelTransfer(transferId)
}
clearTransferMapping(for: messageID)
context.removeMessage(withID: messageID, cleanupFile: true)
}
/// Invalidates detached preparation work and cancels every transfer that
/// reached the transport. Stale tasks check the generation before they
/// can recreate a message or send after a panic wipe.
func resetForPanic() {
preparationGeneration &+= 1
let transferIDs = Set(transferIdToMessageIDs.keys)
transferIdToMessageIDs.removeAll(keepingCapacity: false)
messageIDToTransferId.removeAll(keepingCapacity: false)
for transferID in transferIDs {
context.cancelTransfer(transferID)
}
}
}
private extension ChatMediaTransferCoordinator {
@@ -407,6 +407,13 @@ private extension ChatTransportEventCoordinator {
case .voiceFrame:
context.handleVoiceFramePayload(from: peerID, payload: payload, timestamp: timestamp)
case .privateFile, .authenticatedPeerState:
// BLEService validates and persists decrypted private files before
// emitting a normal `.messageReceived` event, and consumes peer
// state inside the transport. Neither payload crosses this
// UI-facing typed-payload fallback.
break
}
}
+264 -69
View File
@@ -89,6 +89,26 @@ import UIKit
#endif
import UniformTypeIdentifiers
struct PanicNetworkLifecycle {
let stop: @MainActor () -> Void
let restart: @MainActor () -> Void
static let noop = PanicNetworkLifecycle(stop: {}, restart: {})
static var live: PanicNetworkLifecycle {
PanicNetworkLifecycle(
stop: {
GeohashPresenceService.shared.stopForPanic()
NetworkActivationService.shared.stopForPanic()
},
restart: {
NetworkActivationService.shared.start()
GeohashPresenceService.shared.start()
}
)
}
}
/// Manages the application state and business logic for BitChat.
/// Acts as the primary coordinator between UI components and backend services,
/// implementing the BitchatDelegate protocol to handle network events.
@@ -142,6 +162,8 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
@Published var currentColorScheme: ColorScheme = .light
@Published var currentTheme: AppTheme = .matrix
@Published var isConnected = false
@Published private(set) var panicRecoveryBlocked = false
var networkActivationAllowed: Bool { !panicRecoveryBlocked }
@Published var nickname: String = "" {
didSet {
// Trim whitespace whenever nickname is set; whitespace-only becomes ""
@@ -151,7 +173,7 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
return
}
// Update mesh service nickname if it's initialized
if !meshService.myPeerID.isEmpty {
if !isPanicResetting, !meshService.myPeerID.isEmpty {
meshService.setNickname(nickname)
}
}
@@ -177,7 +199,10 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
lazy var privateConversationCoordinator = ChatPrivateConversationCoordinator(context: self)
lazy var nostrCoordinator = ChatNostrCoordinator(context: self)
lazy var mediaTransferCoordinator = ChatMediaTransferCoordinator(context: self)
lazy var liveVoiceCoordinator = ChatLiveVoiceCoordinator(context: self)
lazy var liveVoiceCoordinator = ChatLiveVoiceCoordinator(
context: self,
sweepsOnInit: !TestEnvironment.isRunningTests
)
lazy var verificationCoordinator = ChatVerificationCoordinator(context: self)
lazy var groupCoordinator = ChatGroupCoordinator(context: self)
lazy var vouchCoordinator = ChatVouchCoordinator(context: self)
@@ -292,6 +317,9 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
var nostrRelayManager: NostrRelayManager?
private let userDefaults = UserDefaults.standard
let keychain: KeychainManagerProtocol
private let panicRecoveryOperations: PanicRecoveryOperations
private let panicNetworkLifecycle: PanicNetworkLifecycle
private var isPanicResetting = false
/// Private group membership: keys in the keychain, metadata on disk.
let groupStore: GroupStore
private let nicknameKey = "bitchat.nickname"
@@ -347,6 +375,8 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
@Published var showBluetoothAlert = false
@Published var bluetoothAlertMessage = ""
@Published var bluetoothState: CBManagerState = .unknown
@Published private(set) var legacyPrivateMediaConsentRequest: LegacyPrivateMediaConsentRequest?
private var pendingLegacyPrivateMediaConsents: [PendingLegacyPrivateMediaConsent] = []
private func performDeliveryUpdate(_ update: @escaping @MainActor (ChatDeliveryCoordinator) -> Void) {
if Thread.isMainThread {
@@ -769,7 +799,34 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
locationPresenceStore: LocationPresenceStore? = nil,
locationManager: LocationChannelManager = .shared
) {
let meshService = BLEService(keychain: keychain, idBridge: idBridge, identityManager: identityManager)
let livePanicRecoveryOperations = PanicRecoveryOperations.live()
let startSuspendedForRecovery: Bool
do {
startSuspendedForRecovery =
try livePanicRecoveryOperations.isPending()
} catch {
startSuspendedForRecovery = true
}
// Preserve the preflight decision used to defer CoreBluetooth. A
// transiently successful second read must not skip recovery and leave
// the service permanently suspended without running the wipe.
let panicRecoveryOperations = PanicRecoveryOperations(
isPending: {
if startSuspendedForRecovery {
return true
}
return try livePanicRecoveryOperations.isPending()
},
begin: livePanicRecoveryOperations.begin,
wipeMedia: livePanicRecoveryOperations.wipeMedia,
complete: livePanicRecoveryOperations.complete
)
let meshService = BLEService(
keychain: keychain,
idBridge: idBridge,
identityManager: identityManager,
startSuspendedForPanicRecovery: startSuspendedForRecovery
)
meshService.sfMetrics = .shared
self.init(
keychain: keychain,
@@ -781,7 +838,9 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
locationPresenceStore: locationPresenceStore ?? LocationPresenceStore(),
locationManager: locationManager,
outboxStore: MessageOutboxStore(keychain: keychain),
sfMetrics: .shared
sfMetrics: .shared,
panicRecoveryOperations: panicRecoveryOperations,
panicNetworkLifecycle: .live
)
}
@@ -799,7 +858,10 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
locationManager: LocationChannelManager = .shared,
readReceiptsDefaults: UserDefaults? = nil,
outboxStore: MessageOutboxStore? = nil,
sfMetrics: StoreAndForwardMetrics? = nil
sfMetrics: StoreAndForwardMetrics? = nil,
panicMediaWipe: (() throws -> Void)? = nil,
panicRecoveryOperations: PanicRecoveryOperations? = nil,
panicNetworkLifecycle: PanicNetworkLifecycle = .noop
) {
let conversations = conversations ?? ConversationStore()
let peerIdentityStore = peerIdentityStore ?? PeerIdentityStore()
@@ -814,6 +876,9 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
)
self.keychain = keychain
self.panicRecoveryOperations = panicRecoveryOperations
?? .ephemeral(wipeMedia: panicMediaWipe ?? {})
self.panicNetworkLifecycle = panicNetworkLifecycle
self.groupStore = GroupStore(keychain: keychain)
self.idBridge = idBridge
self.identityManager = identityManager
@@ -849,8 +914,32 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
}
.store(in: &cancellables)
let recoveryRequired: Bool
do {
recoveryRequired = try self.panicRecoveryOperations.isPending()
} catch {
// Failure to read the latch cannot fail open. Re-run the complete
// transaction; a persistent storage failure leaves services
// blocked below.
recoveryRequired = true
SecureLogger.error(
"Could not read panic-recovery state; retrying the full wipe before startup: \(error)",
category: .security
)
}
if recoveryRequired {
SecureLogger.warning(
"Pending panic recovery detected; wiping before runtime services start",
category: .security
)
_ = panicClearAllData(restartServices: false)
}
if networkActivationAllowed {
ChatViewModelBootstrapper(viewModel: self).configure()
}
}
// MARK: - Deinitialization
@@ -1153,8 +1242,37 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
// PANIC: Emergency data clearing for activist safety
@MainActor
func panicClearAllData() {
// Messages are processed immediately - nothing to flush
@discardableResult
func panicClearAllData(restartServices: Bool = true) -> Bool {
panicRecoveryBlocked = true
isPanicResetting = true
defer { isPanicResetting = false }
// Stop internet and location-presence work before clearing identity or
// state. These services cancel their subscriptions and delayed tasks,
// so old callbacks cannot reconnect during the transaction.
panicNetworkLifecycle.stop()
// Establish both independent durable intents before erasing anything.
// `wipeMedia` will still attempt deletion if neither write succeeds.
let recoveryIntent = panicRecoveryOperations.begin()
// Quiesce the mesh before clearing stores. Identity replacement below
// deliberately stays stopped until media deletion and marker commit.
if let bleService = meshService as? BLEService {
bleService.suspendForPanicReset()
} else {
meshService.emergencyDisconnectAll()
}
// Invalidate detached media preparation and close live capture file
// handles before clearing state or removing the media directory.
mediaTransferCoordinator.resetForPanic()
liveVoiceCoordinator.resetForPanic()
// Deny and release any clear-media confirmations before identities,
// message state, and local files are wiped.
cancelAllLegacyPrivateMediaConsents()
// Clear all messages (public timelines and private chats live in the
// single-writer ConversationStore; the derived `messages` view and
@@ -1176,7 +1294,7 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
// Reset nickname to anonymous
nickname = "anon\(Int.random(in: 1000...9999))"
saveNickname()
userDefaults.set(nickname, forKey: nicknameKey)
// Clear favorites and peer mappings
// Clear through SecureIdentityStateManager instead of directly
@@ -1248,78 +1366,68 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
// Clear Nostr identity associations
idBridge.clearAllAssociations()
// Disconnect from all peers and clear persistent identity
// This will force creation of a new identity (new fingerprint) on next launch
meshService.emergencyDisconnectAll()
// Replace the BLE identity while keeping the radio stopped. It may
// reopen only after the durable panic transaction commits.
if let bleService = meshService as? BLEService {
bleService.resetIdentityForPanic(currentNickname: nickname)
bleService.resetIdentityForPanic(
currentNickname: nickname,
restartServices: false
)
} else {
meshService.setNickname(nickname)
}
// No need to force UserDefaults synchronization
// The wipe must finish before this security action returns. A detached
// task could otherwise lose a race with a new capture or app exit and
// leave pre-panic media behind.
let panicCompleted: Bool
do {
try panicRecoveryOperations.wipeMedia(recoveryIntent)
try panicRecoveryOperations.complete()
panicCompleted = true
SecureLogger.info("🗑️ Deleted all media files during panic clear", category: .session)
} catch {
panicCompleted = false
SecureLogger.error(
"Panic transaction did not commit; services remain stopped: \(error)",
category: .security
)
}
panicRecoveryBlocked = !panicCompleted
// Reinitialize Nostr with new identity
// This will generate new Nostr keys derived from new Noise keys.
// Skipped under tests: connecting the shared relay singleton starts
// real network/reconnect work that never completes and would keep the
// test process alive (the singleton, unlike a discardable instance, is
// never deallocated to cancel it).
// BCH-01-013: Clear iOS app switcher snapshots. Keep tests away from
// the host user's real cache tree just as the default media wipe does.
#if os(iOS)
if !TestEnvironment.isRunningTests {
Task { @MainActor in
// Small delay to ensure cleanup completes
try? await Task.sleep(nanoseconds: TransportConfig.uiAsyncShortSleepNs) // 0.1 seconds
Self.clearAppSwitcherSnapshots()
}
#endif
// Reinitialize Nostr relay manager with new identity. Reuse the
// shared singleton every other component (NostrTransport, geohash
// subscriptions, AppRuntime observers) is bound to `.shared`, so
// creating a fresh instance here would split relay state and leave
// sends running against a disconnected manager.
guard panicCompleted else { return false }
if let bleService = meshService as? BLEService {
// Startup recovery reopens admission but leaves actual service
// start to the bootstrapper immediately after this method.
bleService.completePanicReset(
restartServices: restartServices
)
}
if restartServices {
// All persistent state and media are gone. Bring each service back
// only now, under the new identity.
if !(meshService is BLEService) {
meshService.startServices()
}
if !TestEnvironment.isRunningTests {
nostrRelayManager = NostrRelayManager.shared
setupNostrMessageHandling()
nostrRelayManager?.connect()
}
panicNetworkLifecycle.restart()
}
// Delete ALL media files (incoming and outgoing) in background
Task.detached(priority: .utility) {
// Skipped under tests: the test process shares the user's real
// ~/Library/Application Support/files tree, and this detached
// utility-priority wipe fires at a nondeterministic time
// deleting media that concurrently running tests (e.g. the
// sendImage flow) just wrote there, and the developer's real
// app data with it.
guard !TestEnvironment.isRunningTests else { return }
do {
let base = try FileManager.default.url(for: .applicationSupportDirectory, in: .userDomainMask, appropriateFor: nil, create: true)
let filesDir = base.appendingPathComponent("files", isDirectory: true)
// Delete the entire files directory and recreate it
if FileManager.default.fileExists(atPath: filesDir.path) {
try FileManager.default.removeItem(at: filesDir)
SecureLogger.info("🗑️ Deleted all media files during panic clear", category: .session)
}
// Recreate empty directory structure
try FileManager.default.createDirectory(at: filesDir, withIntermediateDirectories: true, attributes: nil)
try FileManager.default.createDirectory(at: filesDir.appendingPathComponent("voicenotes/incoming", isDirectory: true), withIntermediateDirectories: true, attributes: nil)
try FileManager.default.createDirectory(at: filesDir.appendingPathComponent("voicenotes/outgoing", isDirectory: true), withIntermediateDirectories: true, attributes: nil)
try FileManager.default.createDirectory(at: filesDir.appendingPathComponent("images/incoming", isDirectory: true), withIntermediateDirectories: true, attributes: nil)
try FileManager.default.createDirectory(at: filesDir.appendingPathComponent("images/outgoing", isDirectory: true), withIntermediateDirectories: true, attributes: nil)
try FileManager.default.createDirectory(at: filesDir.appendingPathComponent("files/incoming", isDirectory: true), withIntermediateDirectories: true, attributes: nil)
try FileManager.default.createDirectory(at: filesDir.appendingPathComponent("files/outgoing", isDirectory: true), withIntermediateDirectories: true, attributes: nil)
} catch {
SecureLogger.error("Failed to clear media files during panic: \(error)", category: .session)
}
// BCH-01-013: Clear iOS app switcher snapshots
// These are stored in Library/Caches/Snapshots/<bundle_id>/
#if os(iOS)
Self.clearAppSwitcherSnapshots()
#endif
}
// Force immediate UI update for panic mode
// UI updates immediately - no flushing needed
return true
}
/// BCH-01-013: Clear iOS app switcher snapshots during panic mode
@@ -1805,4 +1913,91 @@ final class ChatViewModel: ObservableObject, BitchatDelegate, TransportEventDele
publicConversationCoordinator.sendHapticFeedback(for: message)
}
}
@MainActor
extension ChatViewModel {
func enqueueLegacyPrivateMediaConsent(
for peerID: PeerID,
transferId: String,
messageID: String,
completion: @escaping @MainActor (Bool) -> Void
) {
let request = LegacyPrivateMediaConsentRequest(
id: UUID(),
peerID: peerID,
peerName: nicknameForPeer(peerID),
transferId: transferId,
messageID: messageID
)
pendingLegacyPrivateMediaConsents.append(PendingLegacyPrivateMediaConsent(
request: request,
completion: completion
))
if legacyPrivateMediaConsentRequest == nil {
legacyPrivateMediaConsentRequest = request
}
}
func resolveLegacyPrivateMediaConsent(requestID: UUID, approved: Bool) {
// SwiftUI may report both the selected button and the presentation
// binding's dismissal. Resolve only the exact request that was shown;
// a duplicate callback for it must not consume the next queued send.
guard legacyPrivateMediaConsentRequest?.id == requestID,
pendingLegacyPrivateMediaConsents.first?.request.id == requestID else {
return
}
let resolved = pendingLegacyPrivateMediaConsents.removeFirst()
// Drive the boolean presentation state through false before showing
// the next queued per-send warning. Otherwise SwiftUI sees truetrue,
// closes the first dialog, and never presents the second.
legacyPrivateMediaConsentRequest = nil
resolved.completion(approved)
presentNextLegacyPrivateMediaConsentDeferred()
}
func invalidateLegacyPrivateMediaConsent(transferId: String, messageID: String) {
let invalidatedIDs = Set(
pendingLegacyPrivateMediaConsents.compactMap { pending -> UUID? in
let request = pending.request
return request.transferId == transferId && request.messageID == messageID
? request.id
: nil
}
)
guard !invalidatedIDs.isEmpty else { return }
pendingLegacyPrivateMediaConsents.removeAll {
invalidatedIDs.contains($0.request.id)
}
if let currentID = legacyPrivateMediaConsentRequest?.id,
invalidatedIDs.contains(currentID) {
legacyPrivateMediaConsentRequest = nil
presentNextLegacyPrivateMediaConsentDeferred()
}
}
func cancelAllLegacyPrivateMediaConsents() {
let pending = pendingLegacyPrivateMediaConsents
pendingLegacyPrivateMediaConsents.removeAll()
legacyPrivateMediaConsentRequest = nil
for item in pending {
item.completion(false)
}
}
private func presentNextLegacyPrivateMediaConsentDeferred() {
guard legacyPrivateMediaConsentRequest == nil,
let nextRequestID = pendingLegacyPrivateMediaConsents.first?.request.id else {
return
}
DispatchQueue.main.async { [weak self] in
guard let self,
self.legacyPrivateMediaConsentRequest == nil,
self.pendingLegacyPrivateMediaConsents.first?.request.id == nextRequestID else {
return
}
self.legacyPrivateMediaConsentRequest = self.pendingLegacyPrivateMediaConsents[0].request
}
}
}
// End of ChatViewModel class
@@ -310,7 +310,7 @@ final class NostrInboundPipeline {
// claiming to be group traffic over Nostr is ignored.
// Live voice is mesh-only: latency and relay cost make it
// meaningless over Nostr.
case .verifyChallenge, .verifyResponse, .groupInvite, .groupKeyUpdate, .vouch, .voiceFrame:
case .verifyChallenge, .verifyResponse, .groupInvite, .groupKeyUpdate, .vouch, .voiceFrame, .privateFile, .authenticatedPeerState:
break
}
}
@@ -366,7 +366,7 @@ final class NostrInboundPipeline {
// claiming to be group traffic over Nostr is ignored.
// Live voice is mesh-only: latency and relay cost make it
// meaningless over Nostr.
case .verifyChallenge, .verifyResponse, .groupInvite, .groupKeyUpdate, .vouch, .voiceFrame:
case .verifyChallenge, .verifyResponse, .groupInvite, .groupKeyUpdate, .vouch, .voiceFrame, .privateFile, .authenticatedPeerState:
break
}
}
@@ -449,7 +449,7 @@ final class NostrInboundPipeline {
// in v1; group traffic over Nostr is ignored.
// Live voice is mesh-only: latency and relay cost make it
// meaningless over Nostr.
case .verifyChallenge, .verifyResponse, .groupInvite, .groupKeyUpdate, .vouch, .voiceFrame:
case .verifyChallenge, .verifyResponse, .groupInvite, .groupKeyUpdate, .vouch, .voiceFrame, .privateFile, .authenticatedPeerState:
break
}
}
@@ -188,8 +188,25 @@ final class VoiceRecordingViewModel: ObservableObject {
Task {
let finalDuration = Date().timeIntervalSince(startDate)
if let url = await session.finish(),
isValidRecording(at: url, duration: finalDuration) {
if let url = await session.finish() {
// Panic and a newer hold both invalidate this completion.
// Never route an old recording using a post-panic target.
guard generation == holdGeneration else {
try? FileManager.default.removeItem(at: url)
return
}
guard isValidRecording(
at: url,
duration: finalDuration
) else {
guard state == .idle else { return }
state = .error(
message: finalDuration < VoiceRecorder.minRecordingDuration
? "Recording is too short."
: "Recording failed to save."
)
return
}
completion(url)
} else {
guard generation == holdGeneration, state == .idle else { return }
@@ -206,6 +223,17 @@ final class VoiceRecordingViewModel: ObservableObject {
finish(completion: nil)
}
/// Invalidates in-flight permission/start/finalize callbacks and tears
/// down an active microphone before the panic transaction continues.
func panicWipe() {
holdGeneration &+= 1
let session = activeSession
activeSession = nil
state = .idle
isLiveStreaming = false
session?.panicCancelSynchronously()
}
private func isValidRecording(at url: URL, duration: TimeInterval) -> Bool {
if let attributes = try? FileManager.default.attributesOfItem(atPath: url.path),
let fileSize = attributes[.size] as? NSNumber,
+58
View File
@@ -36,6 +36,7 @@ struct ContentPeopleSheetView: View {
#endif
var body: some View {
let legacyConsentRequest = conversationUIModel.legacyPrivateMediaConsentRequest
NavigationStack {
Group {
if privateConversationModel.selectedPeerID != nil {
@@ -97,6 +98,63 @@ struct ContentPeopleSheetView: View {
}
.themedSheetBackground()
.foregroundColor(palette.primary)
.confirmationDialog(
String(
localized: "content.private_media.legacy_warning.title",
defaultValue: "Send without end-to-end encryption?",
comment: "Title warning before sending private media to an older client in a clear signed envelope"
),
isPresented: Binding(
get: { legacyConsentRequest != nil },
set: { isPresented in
if !isPresented, let requestID = legacyConsentRequest?.id {
conversationUIModel.resolveLegacyPrivateMediaConsent(
requestID: requestID,
approved: false
)
}
}
),
titleVisibility: .visible
) {
Button(
String(
localized: "content.private_media.legacy_warning.send",
defaultValue: "send visible file",
comment: "Destructive confirmation action for one legacy clear private-media send"
),
role: .destructive
) {
if let requestID = legacyConsentRequest?.id {
conversationUIModel.resolveLegacyPrivateMediaConsent(
requestID: requestID,
approved: true
)
}
}
Button("common.cancel", role: .cancel) {
if let requestID = legacyConsentRequest?.id {
conversationUIModel.resolveLegacyPrivateMediaConsent(
requestID: requestID,
approved: false
)
}
}
} message: {
if let request = legacyConsentRequest {
Text(
String(
format: String(
localized: "content.private_media.legacy_warning.message",
defaultValue: "%@'s client does not advertise encrypted private media. This file will be signed but not end-to-end encrypted, so mesh relays can see it. Send this file anyway?",
comment: "Warning explaining the confidentiality loss for one legacy private-media send; parameter is the peer name"
),
locale: .current,
request.peerName
)
)
}
}
#if os(macOS)
.frame(minWidth: 420, minHeight: 520)
#endif
+4
View File
@@ -79,6 +79,9 @@ struct ContentView: View {
voiceRecordingVM.sessionProvider = { [weak conversationUIModel] in
conversationUIModel?.makeVoiceCaptureSession() ?? VoiceNoteCaptureSession()
}
appChromeModel.setPanicPreparation { [weak voiceRecordingVM] in
voiceRecordingVM?.panicWipe()
}
#if os(macOS)
DispatchQueue.main.async {
isNicknameFieldFocused = false
@@ -229,6 +232,7 @@ struct ContentView: View {
}
.onDisappear {
autocompleteDebounceTimer?.invalidate()
appChromeModel.setPanicPreparation(nil)
}
}
+254
View File
@@ -99,6 +99,95 @@ struct BLEServiceCoreTests {
#expect(ble.currentPeerSnapshots().isEmpty)
}
@Test
func unsignedAndBadSignatureLeaveDoNotEvictOrRelayClaimedPeer() async throws {
let ble = makeService()
let alice = NoiseEncryptionService(keychain: MockKeychain())
let mallory = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
let outbound = OutboundPacketTap()
ble._test_onOutboundPacket = outbound.record
let unsigned = makeLeavePacket(sender: alicePeerID, marker: "unsigned")
ble._test_handlePacket(
unsigned,
fromPeerID: alicePeerID,
signingPublicKey: alice.getSigningPublicKeyData()
)
let unsignedRelayed = await TestHelpers.waitUntil(
{ outbound.count(ofType: .leave) > 0 },
timeout: TestConstants.shortTimeout
)
#expect(!unsignedRelayed)
#expect(ble.currentPeerSnapshots().contains { $0.peerID == alicePeerID })
let badSignature = try #require(
mallory.signPacket(makeLeavePacket(sender: alicePeerID, marker: "bad-signature"))
)
ble._test_handlePacket(
badSignature,
fromPeerID: alicePeerID,
signingPublicKey: alice.getSigningPublicKeyData()
)
let badSignatureRelayed = await TestHelpers.waitUntil(
{ outbound.count(ofType: .leave) > 0 },
timeout: TestConstants.shortTimeout
)
#expect(!badSignatureRelayed)
#expect(ble.currentPeerSnapshots().contains { $0.peerID == alicePeerID })
}
@Test
func validSignedLeaveEvictsSessionAndRelays() async throws {
let ble = makeService()
let alice = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
// Establish a real session so the leave regression also verifies that
// stale secure-delivery state is retired, not just the peer-list row.
let message1 = try ble._test_noiseInitiateHandshake(with: alicePeerID)
let message2 = try #require(
try alice.processHandshakeMessage(from: ble.myPeerID, message: message1)
)
let message3 = try #require(
try ble._test_noiseProcessHandshakeMessage(from: alicePeerID, message: message2)
)
_ = try alice.processHandshakeMessage(from: ble.myPeerID, message: message3)
#expect(ble.canDeliverSecurely(to: alicePeerID))
let centralUUID = "central-valid-leave"
ble._test_bindCentral(centralUUID, to: alicePeerID)
ble._test_markNoiseAuthenticatedCentral(centralUUID, to: alicePeerID)
#expect(ble._test_isNoiseAuthenticatedCentral(centralUUID, for: alicePeerID))
let outbound = OutboundPacketTap()
ble._test_onOutboundPacket = outbound.record
let signedLeave = try #require(
alice.signPacket(makeLeavePacket(sender: alicePeerID, marker: "valid"))
)
ble._test_handlePacket(
signedLeave,
fromPeerID: alicePeerID,
signingPublicKey: alice.getSigningPublicKeyData()
)
let evicted = await TestHelpers.waitUntil(
{
!ble.currentPeerSnapshots().contains { $0.peerID == alicePeerID }
&& !ble.canDeliverSecurely(to: alicePeerID)
&& !ble._test_isNoiseAuthenticatedCentral(centralUUID, for: alicePeerID)
},
timeout: TestConstants.longTimeout
)
#expect(evicted)
let relayed = await TestHelpers.waitUntil(
{ outbound.count(ofType: .leave) == 1 },
timeout: TestConstants.longTimeout
)
#expect(relayed)
}
@Test
func ingressAllowsRelayedSenderOnBoundLink() async throws {
let ble = makeService()
@@ -572,6 +661,107 @@ struct BLEServiceCoreTests {
#expect(ble.myPeerID == PeerID(str: newFingerprint.prefix(16)))
}
@Test
func panicSuspension_dropsLateOutboundWorkUntilCommit() async {
let ble = makeService()
let outbound = OutboundPacketTap()
ble._test_onOutboundPacket = outbound.record
let packet = makePublicPacket(
content: "late callback",
sender: ble.myPeerID,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000)
)
ble.suspendForPanicReset()
ble.sendPacket(packet)
#expect(outbound.count(ofType: .message) == 0)
ble.completePanicReset(restartServices: false)
ble.sendPacket(packet)
#expect(outbound.count(ofType: .message) == 1)
}
@Test @MainActor
func panicSuspension_invalidatesQueuedMainActorIngress() async {
let ble = makeService()
let delegate = TransportEventCaptureDelegate()
ble.eventDelegate = delegate
let message = BitchatMessage(
id: "pre-panic-ingress",
sender: "Peer",
content: "must not survive panic",
timestamp: Date(),
isRelay: false,
isPrivate: true,
recipientNickname: "Me",
senderPeerID: PeerID(str: "1122334455667788")
)
// The test already owns MainActor, so this task cannot run until the
// synchronous panic boundary below has invalidated its generation.
ble._test_emitTransportEvent(.messageReceived(message))
ble.suspendForPanicReset()
await Task.yield()
#expect(delegate.messageIDs.isEmpty)
ble.completePanicReset(restartServices: false)
ble._test_emitTransportEvent(.messageReceived(message))
await Task.yield()
#expect(delegate.messageIDs == [message.id])
}
@Test @MainActor
func panicSuspension_rejectsPausedBLEReceiveBeforeMessageQueueHandoff() async {
let ble = makeService()
let gate = ReceivePacketHandoffGate()
ble._test_beforeReceivePacketHandoff = gate.pause
ble._test_onReceivePacketHandoff = gate.recordHandoff
defer {
gate.release()
ble._test_beforeReceivePacketHandoff = nil
ble._test_onReceivePacketHandoff = nil
}
let sender = PeerID(str: "1122334455667788")
let packet = makePublicPacket(
content: "must not cross panic",
sender: sender,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000)
)
ble._test_handlePacketFromBLEQueue(packet, fromPeerID: sender)
#expect(await TestHelpers.waitUntil(
{ gate.hasPaused },
timeout: TestConstants.longTimeout
))
// Panic closes the lifecycle before waiting for the paused bleQueue
// callback. Releasing it afterward lets the callback enqueue its
// messageQueue handoff, where the captured generation must be rejected
// before packet processing starts.
let releaseAfterPanicCloses = Task.detached {
while ble._test_isPanicIngressOpen {
try? await Task.sleep(nanoseconds: 1_000_000)
}
gate.release()
}
let panic = Task { @MainActor in
ble.suspendForPanicReset()
}
await panic.value
await releaseAfterPanicCloses.value
#expect(gate.handoffCount == 0)
// A packet captured under the reopened lifecycle still crosses the
// same handoff, proving the test did not merely disable the hook.
ble.completePanicReset(restartServices: false)
ble._test_handlePacketFromBLEQueue(packet, fromPeerID: sender)
#expect(await TestHelpers.waitUntil(
{ gate.handoffCount == 1 },
timeout: TestConstants.longTimeout
))
}
@Test
func modifiedServices_rediscoverWhenBitChatServiceIsInvalidated() async throws {
let otherService = CBUUID(string: "0000180F-0000-1000-8000-00805F9B34FB")
@@ -666,6 +856,48 @@ private final class OutboundPacketTap {
}
}
private final class ReceivePacketHandoffGate: @unchecked Sendable {
private let condition = NSCondition()
private var paused = false
private var released = false
private var recordedHandoffCount = 0
var hasPaused: Bool {
condition.lock()
defer { condition.unlock() }
return paused
}
var handoffCount: Int {
condition.lock()
defer { condition.unlock() }
return recordedHandoffCount
}
func pause() {
condition.lock()
paused = true
condition.broadcast()
while !released {
condition.wait()
}
condition.unlock()
}
func release() {
condition.lock()
released = true
condition.broadcast()
condition.unlock()
}
func recordHandoff() {
condition.lock()
recordedHandoffCount += 1
condition.unlock()
}
}
private func makeService() -> BLEService {
let keychain = MockKeychain()
let identityManager = MockIdentityManager(keychain)
@@ -690,6 +922,18 @@ private func makePublicPacket(content: String, sender: PeerID, timestamp: UInt64
)
}
private func makeLeavePacket(sender: PeerID, marker: String) -> BitchatPacket {
BitchatPacket(
type: MessageType.leave.rawValue,
senderID: Data(hexString: sender.id) ?? Data(),
recipientID: nil,
timestamp: UInt64(Date().timeIntervalSince1970 * 1000),
payload: Data(marker.utf8),
signature: nil,
ttl: TransportConfig.messageTTLDefault
)
}
private final class PublicCaptureDelegate: BitchatDelegate {
private let lock = NSLock()
private(set) var publicMessages: [BitchatMessage] = []
@@ -724,3 +968,13 @@ private final class PublicCaptureDelegate: BitchatDelegate {
return publicMessages
}
}
@MainActor
private final class TransportEventCaptureDelegate: TransportEventDelegate {
private(set) var messageIDs: [String] = []
func didReceiveTransportEvent(_ event: TransportEvent) {
guard case .messageReceived(let message) = event else { return }
messageIDs.append(message.id)
}
}
@@ -7,10 +7,9 @@
// `ChatViewModel`, following the `ChatDeliveryCoordinatorContextTests` /
// `ChatPrivateConversationCoordinatorContextTests` exemplars.
//
// Scope note: the async media-preparation pipelines (`ImageUtils`,
// `ChatMediaPreparation`) run real file/codec work and remain covered by
// `ChatMediaPreparationTests`; here we cover message enqueueing, transfer
// bookkeeping, and the blocked-context guards.
// Real file/codec work remains covered by `ChatMediaPreparationTests`. These
// tests inject a paused voice-note preparer to exercise cancellation ownership
// across the detached-preparation/MainActor boundary deterministically.
//
import Testing
@@ -86,11 +85,72 @@ private final class MockChatMediaTransferContext: ChatMediaTransferContext {
// Mesh file transfer
private(set) var privateFileSends: [(peerID: PeerID, transferId: String)] = []
private(set) var privateFileLegacyAllowances: [Bool] = []
private(set) var broadcastFileSends: [String] = []
private(set) var cancelledTransfers: [String] = []
var privateMediaPolicy: PrivateMediaSendPolicy = .encrypted
var resolvedPrivateMediaPolicy: PrivateMediaSendPolicy?
private(set) var legacyConsentRequests: [(
id: UUID,
peerID: PeerID,
transferId: String,
messageID: String
)] = []
private(set) var invalidatedLegacyConsents: [(transferId: String, messageID: String)] = []
private var pendingLegacyConsentIDs: [UUID] = []
private var legacyConsentCompletions: [UUID: @MainActor (Bool) -> Void] = [:]
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String) {
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy {
privateMediaPolicy
}
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
) {
completion(resolvedPrivateMediaPolicy ?? privateMediaPolicy)
}
func requestLegacyPrivateMediaConsent(
for peerID: PeerID,
transferId: String,
messageID: String,
completion: @escaping @MainActor (Bool) -> Void
) {
let id = UUID()
legacyConsentRequests.append((id, peerID, transferId, messageID))
pendingLegacyConsentIDs.append(id)
legacyConsentCompletions[id] = completion
}
func cancelLegacyPrivateMediaConsent(transferId: String, messageID: String) {
invalidatedLegacyConsents.append((transferId, messageID))
let matchingIDs = Set(legacyConsentRequests.compactMap { request in
request.transferId == transferId && request.messageID == messageID
? request.id
: nil
})
pendingLegacyConsentIDs.removeAll { matchingIDs.contains($0) }
}
func resolveNextLegacyConsent(_ approved: Bool) {
guard !pendingLegacyConsentIDs.isEmpty else { return }
let id = pendingLegacyConsentIDs.removeFirst()
legacyConsentCompletions[id]?(approved)
}
func invokeLegacyConsentEvenIfInvalidated(id: UUID, approved: Bool) {
legacyConsentCompletions[id]?(approved)
}
func sendFilePrivate(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool
) {
privateFileSends.append((peerID, transferId))
privateFileLegacyAllowances.append(allowLegacyFallback)
}
func sendFileBroadcast(_ packet: BitchatFilePacket, transferId: String) {
@@ -102,6 +162,56 @@ private final class MockChatMediaTransferContext: ChatMediaTransferContext {
}
}
private final class PausedVoiceNotePreparer: @unchecked Sendable {
private let condition = NSCondition()
private var started = false
private var released = false
private var finished = false
private let packet: BitchatFilePacket
init() {
let content = Data("voice".utf8)
packet = BitchatFilePacket(
fileName: "paused.m4a",
fileSize: UInt64(content.count),
mimeType: "audio/mp4",
content: content
)
}
func prepare(_: URL) throws -> BitchatFilePacket {
condition.lock()
started = true
condition.broadcast()
while !released {
condition.wait()
}
finished = true
condition.broadcast()
condition.unlock()
return packet
}
var hasStarted: Bool {
condition.lock()
defer { condition.unlock() }
return started
}
var hasFinished: Bool {
condition.lock()
defer { condition.unlock() }
return finished
}
func release() {
condition.lock()
released = true
condition.broadcast()
condition.unlock()
}
}
// MARK: - Coordinator Tests Against Mock Context
/// Exercises `ChatMediaTransferCoordinator` against
@@ -166,6 +276,14 @@ struct ChatMediaTransferCoordinatorContextTests {
#expect(context.removedMessages.count == 1)
#expect(context.removedMessages.first?.messageID == "m2")
#expect(context.removedMessages.first?.cleanupFile == true)
// A pre-start rejection keeps the placeholder visible and failed,
// including queued post-handshake encryption failures.
coordinator.registerTransfer(transferId: "t3", messageID: "m3")
coordinator.handleTransferEvent(.rejected(id: "t3", reason: "encryption failed"))
#expect(context.deliveryStatusUpdates.last?.messageID == "m3")
#expect(context.deliveryStatusUpdates.last?.status == .failed(reason: "encryption failed"))
#expect(coordinator.messageIDToTransferId["m3"] == nil)
}
@Test @MainActor
@@ -188,6 +306,35 @@ struct ChatMediaTransferCoordinatorContextTests {
#expect(coordinator.messageIDToTransferId.isEmpty)
}
@Test @MainActor
func resetForPanic_cancelsEveryTransportTransferAndClearsMappings() {
let context = MockChatMediaTransferContext()
let coordinator = ChatMediaTransferCoordinator(context: context)
coordinator.registerTransfer(transferId: "t1", messageID: "m1")
coordinator.registerTransfer(transferId: "t1", messageID: "m2")
coordinator.registerTransfer(transferId: "t2", messageID: "m3")
coordinator.resetForPanic()
#expect(Set(context.cancelledTransfers) == Set(["t1", "t2"]))
#expect(coordinator.transferIdToMessageIDs.isEmpty)
#expect(coordinator.messageIDToTransferId.isEmpty)
}
@Test @MainActor
func deleteMediaMessage_cancelsApprovedTransferBeforeRemovingMapping() {
let context = MockChatMediaTransferContext()
let coordinator = ChatMediaTransferCoordinator(context: context)
coordinator.registerTransfer(transferId: "approved-delete", messageID: "message-delete")
coordinator.deleteMediaMessage(messageID: "message-delete")
#expect(context.cancelledTransfers == ["approved-delete"])
#expect(coordinator.messageIDToTransferId["message-delete"] == nil)
#expect(context.removedMessages.map(\.messageID) == ["message-delete"])
#expect(context.removedMessages.first?.cleanupFile == true)
}
@Test @MainActor
func sendVoiceNote_blockedContextRemovesFileAndExplains() async throws {
let context = MockChatMediaTransferContext()
@@ -206,4 +353,249 @@ struct ChatMediaTransferCoordinatorContextTests {
#expect(context.appendedPublicMessages.isEmpty)
#expect(coordinator.transferIdToMessageIDs.isEmpty)
}
@Test @MainActor
func cancelVoiceNoteDuringDetachedPreparationCannotSendOrRestoreMapping() async throws {
let context = MockChatMediaTransferContext()
let peerID = PeerID(str: "5566778899aabbcc")
context.selectedPrivateChatPeer = peerID
let preparer = PausedVoiceNotePreparer()
let coordinator = ChatMediaTransferCoordinator(
context: context,
prepareVoiceNotePacket: { url in try preparer.prepare(url) }
)
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("paused-private-\(UUID().uuidString).m4a")
try Data("voice".utf8).write(to: url)
defer {
preparer.release()
try? FileManager.default.removeItem(at: url)
}
coordinator.sendVoiceNote(at: url)
#expect(await TestHelpers.waitUntil({ preparer.hasStarted }, timeout: TestConstants.longTimeout))
let messageID = try #require(context.privateChats[peerID]?.first?.id)
let transferId = try #require(coordinator.messageIDToTransferId[messageID])
coordinator.cancelMediaSend(messageID: messageID)
preparer.release()
#expect(await TestHelpers.waitUntil({ preparer.hasFinished }, timeout: TestConstants.longTimeout))
for _ in 0..<10 { await Task.yield() }
#expect(context.cancelledTransfers == [transferId])
#expect(context.privateFileSends.isEmpty)
#expect(context.broadcastFileSends.isEmpty)
#expect(coordinator.messageIDToTransferId[messageID] == nil)
#expect(coordinator.transferIdToMessageIDs[transferId] == nil)
#expect(context.removedMessages.map(\.messageID) == [messageID])
}
@Test @MainActor
func deletePublicVoiceNoteDuringDetachedPreparationCannotBroadcastOrRestoreMapping() async throws {
let context = MockChatMediaTransferContext()
let preparer = PausedVoiceNotePreparer()
let coordinator = ChatMediaTransferCoordinator(
context: context,
prepareVoiceNotePacket: { url in try preparer.prepare(url) }
)
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("paused-public-\(UUID().uuidString).m4a")
try Data("voice".utf8).write(to: url)
defer {
preparer.release()
try? FileManager.default.removeItem(at: url)
}
coordinator.sendVoiceNote(at: url)
#expect(await TestHelpers.waitUntil({ preparer.hasStarted }, timeout: TestConstants.longTimeout))
let messageID = try #require(context.appendedPublicMessages.first?.message.id)
let transferId = try #require(coordinator.messageIDToTransferId[messageID])
coordinator.deleteMediaMessage(messageID: messageID)
preparer.release()
#expect(await TestHelpers.waitUntil({ preparer.hasFinished }, timeout: TestConstants.longTimeout))
for _ in 0..<10 { await Task.yield() }
#expect(context.cancelledTransfers == [transferId])
#expect(context.broadcastFileSends.isEmpty)
#expect(context.privateFileSends.isEmpty)
#expect(coordinator.messageIDToTransferId[messageID] == nil)
#expect(coordinator.transferIdToMessageIDs[transferId] == nil)
#expect(context.removedMessages.map(\.messageID) == [messageID])
}
@Test @MainActor
func voicePreparationFailureMarksPlaceholderFailedAndClearsEarlyMapping() async throws {
let context = MockChatMediaTransferContext()
let peerID = PeerID(str: "66778899aabbccdd")
context.selectedPrivateChatPeer = peerID
let coordinator = ChatMediaTransferCoordinator(
context: context,
prepareVoiceNotePacket: { _ in
throw ChatMediaPreparationError.voiceNoteTooLarge(bytes: 999_999)
}
)
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("failing-private-\(UUID().uuidString).m4a")
try Data("voice".utf8).write(to: url)
defer { try? FileManager.default.removeItem(at: url) }
coordinator.sendVoiceNote(at: url)
#expect(await TestHelpers.waitUntil(
{
context.deliveryStatusUpdates.contains { update in
if case .failed = update.status { return true }
return false
}
},
timeout: TestConstants.longTimeout
))
let messageID = try #require(context.privateChats[peerID]?.first?.id)
#expect(coordinator.messageIDToTransferId[messageID] == nil)
#expect(coordinator.transferIdToMessageIDs.isEmpty)
#expect(context.privateFileSends.isEmpty)
#expect(context.broadcastFileSends.isEmpty)
}
@Test @MainActor
func legacyPrivateVoiceNoteWaitsForPerSendConsent() async throws {
let context = MockChatMediaTransferContext()
let coordinator = ChatMediaTransferCoordinator(context: context)
let peerID = PeerID(str: "1122334455667788")
context.selectedPrivateChatPeer = peerID
context.privateMediaPolicy = .legacyRequiresConsent
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("legacy-consent-\(UUID().uuidString).m4a")
try (Data([0x00, 0x00, 0x00, 0x18]) + Data("ftypM4A voice".utf8)).write(to: url)
defer { try? FileManager.default.removeItem(at: url) }
coordinator.sendVoiceNote(at: url)
let prompted = await TestHelpers.waitUntil(
{ context.legacyConsentRequests.count == 1 },
timeout: TestConstants.longTimeout
)
#expect(prompted)
#expect(context.legacyConsentRequests.map { $0.peerID } == [peerID])
#expect(context.privateFileSends.isEmpty)
context.resolveNextLegacyConsent(true)
#expect(context.privateFileSends.count == 1)
#expect(context.privateFileLegacyAllowances == [true])
}
@Test @MainActor
func capabilityProofTimeoutTransitionsToConsentWithoutAutomaticRawSend() async throws {
let context = MockChatMediaTransferContext()
let coordinator = ChatMediaTransferCoordinator(context: context)
let peerID = PeerID(str: "1020304050607080")
context.selectedPrivateChatPeer = peerID
context.privateMediaPolicy = .awaitingCapabilityProof
context.resolvedPrivateMediaPolicy = .legacyRequiresConsent
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("proof-timeout-consent-\(UUID().uuidString).m4a")
try Data("voice".utf8).write(to: url)
defer { try? FileManager.default.removeItem(at: url) }
coordinator.sendVoiceNote(at: url)
let prompted = await TestHelpers.waitUntil(
{ context.legacyConsentRequests.count == 1 },
timeout: TestConstants.longTimeout
)
#expect(prompted)
#expect(context.privateFileSends.isEmpty)
context.resolveNextLegacyConsent(false)
#expect(context.privateFileSends.isEmpty)
}
@Test @MainActor
func legacyConsentApprovalAfterCancelCannotSend() async throws {
let context = MockChatMediaTransferContext()
let coordinator = ChatMediaTransferCoordinator(context: context)
let peerID = PeerID(str: "2233445566778899")
context.selectedPrivateChatPeer = peerID
context.privateMediaPolicy = .legacyRequiresConsent
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("legacy-cancel-\(UUID().uuidString).m4a")
try Data("voice".utf8).write(to: url)
defer { try? FileManager.default.removeItem(at: url) }
coordinator.sendVoiceNote(at: url)
let prompted = await TestHelpers.waitUntil(
{ context.legacyConsentRequests.count == 1 },
timeout: TestConstants.longTimeout
)
#expect(prompted)
let request = try #require(context.legacyConsentRequests.first)
coordinator.cancelMediaSend(messageID: request.messageID)
#expect(context.invalidatedLegacyConsents.contains {
$0.transferId == request.transferId && $0.messageID == request.messageID
})
// Model a stale framework callback that escaped active invalidation.
// The coordinator's transfer/message binding check is the final gate.
context.invokeLegacyConsentEvenIfInvalidated(id: request.id, approved: true)
#expect(context.privateFileSends.isEmpty)
#expect(coordinator.messageIDToTransferId[request.messageID] == nil)
}
@Test @MainActor
func legacyConsentApprovalAfterDeleteCannotSend() async throws {
let context = MockChatMediaTransferContext()
let coordinator = ChatMediaTransferCoordinator(context: context)
let peerID = PeerID(str: "33445566778899aa")
context.selectedPrivateChatPeer = peerID
context.privateMediaPolicy = .legacyRequiresConsent
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("legacy-delete-\(UUID().uuidString).m4a")
try Data("voice".utf8).write(to: url)
defer { try? FileManager.default.removeItem(at: url) }
coordinator.sendVoiceNote(at: url)
let prompted = await TestHelpers.waitUntil(
{ context.legacyConsentRequests.count == 1 },
timeout: TestConstants.longTimeout
)
#expect(prompted)
let request = try #require(context.legacyConsentRequests.first)
coordinator.deleteMediaMessage(messageID: request.messageID)
context.invokeLegacyConsentEvenIfInvalidated(id: request.id, approved: true)
#expect(context.invalidatedLegacyConsents.contains {
$0.transferId == request.transferId && $0.messageID == request.messageID
})
#expect(context.privateFileSends.isEmpty)
#expect(coordinator.messageIDToTransferId[request.messageID] == nil)
}
@Test @MainActor
func pinnedPrivateMediaDowngradeNeverPromptsOrSends() async throws {
let context = MockChatMediaTransferContext()
let coordinator = ChatMediaTransferCoordinator(context: context)
let peerID = PeerID(str: "1122334455667788")
context.selectedPrivateChatPeer = peerID
context.privateMediaPolicy = .blockedDowngrade
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("blocked-downgrade-\(UUID().uuidString).m4a")
try Data("voice".utf8).write(to: url)
defer { try? FileManager.default.removeItem(at: url) }
coordinator.sendVoiceNote(at: url)
let failed = await TestHelpers.waitUntil(
{ context.deliveryStatusUpdates.contains { update in
if case .failed = update.status { return true }
return false
} },
timeout: TestConstants.longTimeout
)
#expect(failed)
#expect(context.legacyConsentRequests.isEmpty)
#expect(context.privateFileSends.isEmpty)
}
}
@@ -1048,6 +1048,89 @@ struct ChatViewModelMediaTransferTests {
#expect(viewModel.transferIdToMessageIDs.count == 1)
}
@Test @MainActor
func legacyPrivateMediaConsentRequestsArePerSendAndQueued() async throws {
let (viewModel, _) = makeTestableViewModel()
let firstPeer = PeerID(str: "1111111111111111")
let secondPeer = PeerID(str: "2222222222222222")
var decisions: [Bool] = []
viewModel.enqueueLegacyPrivateMediaConsent(
for: firstPeer,
transferId: "transfer-1",
messageID: "message-1"
) { decisions.append($0) }
viewModel.enqueueLegacyPrivateMediaConsent(
for: secondPeer,
transferId: "transfer-2",
messageID: "message-2"
) { decisions.append($0) }
#expect(viewModel.legacyPrivateMediaConsentRequest?.peerID == firstPeer)
let firstRequestID = try #require(viewModel.legacyPrivateMediaConsentRequest?.id)
viewModel.resolveLegacyPrivateMediaConsent(requestID: firstRequestID, approved: true)
let showedSecond = await TestHelpers.waitUntil(
{ viewModel.legacyPrivateMediaConsentRequest?.peerID == secondPeer },
timeout: TestConstants.longTimeout
)
#expect(showedSecond)
let secondRequestID = try #require(viewModel.legacyPrivateMediaConsentRequest?.id)
// A button action and the dialog binding may both resolve the first
// ID. The stale second callback must not consume the queued request.
viewModel.resolveLegacyPrivateMediaConsent(requestID: firstRequestID, approved: false)
#expect(decisions == [true])
#expect(viewModel.legacyPrivateMediaConsentRequest?.id == secondRequestID)
viewModel.resolveLegacyPrivateMediaConsent(requestID: secondRequestID, approved: false)
#expect(decisions == [true, false])
#expect(viewModel.legacyPrivateMediaConsentRequest == nil)
}
@Test @MainActor
func invalidatingPresentedLegacyConsentAdvancesQueueAndStaleResolutionNoops() async throws {
let (viewModel, _) = makeTestableViewModel()
let firstPeer = PeerID(str: "3333333333333333")
let secondPeer = PeerID(str: "4444444444444444")
var decisions: [String] = []
viewModel.enqueueLegacyPrivateMediaConsent(
for: firstPeer,
transferId: "transfer-cancelled",
messageID: "message-cancelled"
) { decisions.append("first:\($0)") }
viewModel.enqueueLegacyPrivateMediaConsent(
for: secondPeer,
transferId: "transfer-kept",
messageID: "message-kept"
) { decisions.append("second:\($0)") }
let cancelledRequestID = try #require(viewModel.legacyPrivateMediaConsentRequest?.id)
viewModel.invalidateLegacyPrivateMediaConsent(
transferId: "transfer-cancelled",
messageID: "message-cancelled"
)
let advanced = await TestHelpers.waitUntil(
{ viewModel.legacyPrivateMediaConsentRequest?.peerID == secondPeer },
timeout: TestConstants.longTimeout
)
#expect(advanced)
#expect(decisions.isEmpty, "Invalidation drops the request rather than resolving its send")
viewModel.resolveLegacyPrivateMediaConsent(
requestID: cancelledRequestID,
approved: true
)
#expect(viewModel.legacyPrivateMediaConsentRequest?.peerID == secondPeer)
#expect(decisions.isEmpty)
let keptRequestID = try #require(viewModel.legacyPrivateMediaConsentRequest?.id)
viewModel.resolveLegacyPrivateMediaConsent(requestID: keptRequestID, approved: true)
#expect(decisions == ["second:true"])
#expect(viewModel.legacyPrivateMediaConsentRequest == nil)
}
@Test @MainActor
func sendVoiceNote_oversizedFileFailsAndDeletesTempFile() async throws {
let (viewModel, transport) = makeTestableViewModel()
+95 -2
View File
@@ -15,7 +15,11 @@ import BitFoundation
/// Creates a ChatViewModel with mock dependencies for testing
@MainActor
private func makeTestableViewModel() -> (viewModel: ChatViewModel, transport: MockTransport) {
private func makeTestableViewModel(
panicMediaWipe: (() throws -> Void)? = nil,
panicRecoveryOperations: PanicRecoveryOperations? = nil,
panicNetworkLifecycle: PanicNetworkLifecycle = .noop
) -> (viewModel: ChatViewModel, transport: MockTransport) {
let keychain = MockKeychain()
let keychainHelper = MockKeychainHelper()
let idBridge = NostrIdentityBridge(keychain: keychainHelper)
@@ -26,7 +30,10 @@ private func makeTestableViewModel() -> (viewModel: ChatViewModel, transport: Mo
keychain: keychain,
idBridge: idBridge,
identityManager: identityManager,
transport: transport
transport: transport,
panicMediaWipe: panicMediaWipe,
panicRecoveryOperations: panicRecoveryOperations,
panicNetworkLifecycle: panicNetworkLifecycle
)
return (viewModel, transport)
@@ -1116,6 +1123,92 @@ struct ChatViewModelBluetoothTests {
struct ChatViewModelPanicTests {
@Test @MainActor
func panicClearAllData_finishesMediaWipeBeforeReturning() {
var wipeFinished = false
let (viewModel, _) = makeTestableViewModel(panicMediaWipe: {
wipeFinished = true
})
viewModel.panicClearAllData()
#expect(wipeFinished)
}
@Test @MainActor
func panicClearAllData_stopsNetworkBeforeWipeAndRestartsAfterCommit() {
var events: [String] = []
let lifecycle = PanicNetworkLifecycle(
stop: { events.append("stop") },
restart: { events.append("restart") }
)
let (viewModel, _) = makeTestableViewModel(
panicMediaWipe: { events.append("wipe") },
panicNetworkLifecycle: lifecycle
)
let completed = viewModel.panicClearAllData()
#expect(completed)
#expect(events == ["stop", "wipe", "restart"])
#expect(viewModel.networkActivationAllowed)
}
@Test @MainActor
func pendingPanicRecoveryCompletesBeforeTransportBootstrap() {
var events: [String] = []
let operations = PanicRecoveryOperations(
isPending: {
events.append("read")
return true
},
begin: {
events.append("begin")
return PanicRecoveryIntent(
fileMarkerEstablished: true,
externalMarkerEstablished: false
)
},
wipeMedia: { _ in events.append("wipe") },
complete: { events.append("complete") }
)
let (viewModel, transport) = makeTestableViewModel(
panicRecoveryOperations: operations
)
#expect(events == ["read", "begin", "wipe", "complete"])
#expect(transport.emergencyDisconnectCallCount == 1)
#expect(transport.startServicesCallCount == 1)
#expect(viewModel.networkActivationAllowed)
}
@Test @MainActor
func failedStartupRecoveryLeavesTransportAndNetworkBlocked() {
enum WipeFailure: Error { case failed }
var completedMarker = false
let operations = PanicRecoveryOperations(
isPending: { true },
begin: {
PanicRecoveryIntent(
fileMarkerEstablished: true,
externalMarkerEstablished: false
)
},
wipeMedia: { _ in throw WipeFailure.failed },
complete: { completedMarker = true }
)
let (viewModel, transport) = makeTestableViewModel(
panicRecoveryOperations: operations
)
#expect(!completedMarker)
#expect(transport.emergencyDisconnectCallCount == 1)
#expect(transport.startServicesCallCount == 0)
#expect(!viewModel.networkActivationAllowed)
}
@Test @MainActor
func panicClearAllData_delegatesToTransport() async {
let (viewModel, transport) = makeTestableViewModel()
File diff suppressed because it is too large Load Diff
+22 -1
View File
@@ -14,6 +14,8 @@ final class MockIdentityManager: SecureIdentityStateManagerProtocol {
private var blockedFingerprints: Set<String> = []
private var blockedNostrPubkeys: Set<String> = []
private var socialIdentities: [String: SocialIdentity] = [:]
private var privateMediaCapableFingerprints: Set<String> = []
private var authenticatedSigningKeys: [String: Data] = [:]
init(_: KeychainManagerProtocol) {}
@@ -87,7 +89,10 @@ final class MockIdentityManager: SecureIdentityStateManagerProtocol {
func registerEphemeralSession(peerID: PeerID, handshakeState: HandshakeState) {}
func clearAllIdentityData() {}
func clearAllIdentityData() {
privateMediaCapableFingerprints.removeAll()
authenticatedSigningKeys.removeAll()
}
func removeEphemeralSession(peerID: PeerID) {}
@@ -101,6 +106,22 @@ final class MockIdentityManager: SecureIdentityStateManagerProtocol {
Set()
}
func markPrivateMediaCapable(fingerprint: String) {
privateMediaCapableFingerprints.insert(fingerprint)
}
func hasObservedPrivateMediaCapability(fingerprint: String) -> Bool {
privateMediaCapableFingerprints.contains(fingerprint)
}
func bindAuthenticatedSigningPublicKey(_ signingPublicKey: Data, fingerprint: String) {
authenticatedSigningKeys[fingerprint] = signingPublicKey
}
func authenticatedSigningPublicKey(forFingerprint fingerprint: String) -> Data? {
authenticatedSigningKeys[fingerprint]
}
// MARK: Vouching (transitive verification)
private var vouchesByVouchee: [String: [VouchRecord]] = [:]
+25
View File
@@ -36,6 +36,7 @@ final class MockTransport: Transport {
private(set) var sentFavoriteNotifications: [(peerID: PeerID, isFavorite: Bool)] = []
private(set) var sentBroadcastFiles: [(packet: BitchatFilePacket, transferID: String)] = []
private(set) var sentPrivateFiles: [(packet: BitchatFilePacket, peerID: PeerID, transferID: String)] = []
private(set) var sentPrivateFileLegacyAllowances: [Bool] = []
private(set) var cancelledTransfers: [String] = []
private(set) var sentVerifyChallenges: [(peerID: PeerID, noiseKeyHex: String, nonceA: Data)] = []
private(set) var sentVerifyResponses: [(peerID: PeerID, noiseKeyHex: String, nonceA: Data)] = []
@@ -58,6 +59,7 @@ final class MockTransport: Transport {
var peerNicknames: [PeerID: String] = [:]
var peerFingerprints: [PeerID: String] = [:]
var peerNoiseStates: [PeerID: LazyHandshakeState] = [:]
var privateMediaPolicies: [PeerID: PrivateMediaSendPolicy] = [:]
private let mockKeychain = MockKeychain()
// MARK: - Transport Protocol Implementation
@@ -186,6 +188,29 @@ final class MockTransport: Transport {
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String) {
sentPrivateFiles.append((packet, peerID, transferId))
sentPrivateFileLegacyAllowances.append(false)
}
func sendFilePrivate(
_ packet: BitchatFilePacket,
to peerID: PeerID,
transferId: String,
allowLegacyFallback: Bool
) {
sentPrivateFiles.append((packet, peerID, transferId))
sentPrivateFileLegacyAllowances.append(allowLegacyFallback)
}
func privateMediaSendPolicy(to peerID: PeerID) -> PrivateMediaSendPolicy {
privateMediaPolicies[peerID] ?? .encrypted
}
func resolvePrivateMediaSendPolicy(
to peerID: PeerID,
completion: @escaping @MainActor (PrivateMediaSendPolicy) -> Void
) {
let policy = privateMediaPolicies[peerID] ?? .encrypted
Task { @MainActor in completion(policy) }
}
func cancelTransfer(_ transferId: String) {
+188 -6
View File
@@ -12,8 +12,15 @@ struct NoiseCoverageTests {
private let bobStaticKey = Curve25519.KeyAgreement.PrivateKey()
private let charlieStaticKey = Curve25519.KeyAgreement.PrivateKey()
private let alicePeerID = PeerID(str: "0011223344556677")
private let bobPeerID = PeerID(str: "8899aabbccddeeff")
// Manager test dictionaries are keyed by the remote peer. Keep the
// historical names, but derive each wire ID from the static key that the
// corresponding manager authenticates during the handshake.
private var alicePeerID: PeerID {
PeerID(publicKey: bobStaticKey.publicKey.rawRepresentation)
}
private var bobPeerID: PeerID {
PeerID(publicKey: aliceStaticKey.publicKey.rawRepresentation)
}
private let charliePeerID = PeerID(str: "fedcba9876543210")
@Test("Protocol metadata and handshake patterns expose expected values")
@@ -535,8 +542,12 @@ struct NoiseCoverageTests {
let aliceManager = NoiseSessionManager(localStaticKey: aliceStaticKey, keychain: keychain)
let bobManager = NoiseSessionManager(localStaticKey: bobStaticKey, keychain: keychain)
aliceManager.onSessionEstablished = establishedRecorder.recordEstablished(peerID:remoteKey:)
bobManager.onSessionEstablished = establishedRecorder.recordEstablished(peerID:remoteKey:)
aliceManager.onSessionEstablished = establishedRecorder.recordEstablished(
peerID:remoteKey:sessionGeneration:
)
bobManager.onSessionEstablished = establishedRecorder.recordEstablished(
peerID:remoteKey:sessionGeneration:
)
try establishManagerSessions(aliceManager: aliceManager, bobManager: bobManager)
@@ -643,13 +654,121 @@ struct NoiseCoverageTests {
try aliceManager.initiateHandshake(with: alicePeerID)
}
try aliceManager.initiateRekey(for: alicePeerID)
let rekeyHandshake = try aliceManager.initiateRekey(for: alicePeerID)
#expect(!rekeyHandshake.isEmpty)
let rekeyedSession = try #require(aliceManager.getSession(for: alicePeerID))
#expect(rekeyedSession !== establishedSession)
#expect(rekeyedSession.getState() == .handshaking)
}
@Test("A stale decrypt generation cannot commit across session promotion")
func staleDecryptGenerationCannotCommitAcrossPromotion() throws {
let aliceManager = NoiseSessionManager(
localStaticKey: aliceStaticKey,
keychain: keychain,
sessionFactory: { peerID, role in
BlockingDecryptNoiseSession(
peerID: peerID,
role: role,
keychain: self.keychain,
localStaticKey: self.aliceStaticKey
)
}
)
let bobManager = NoiseSessionManager(localStaticKey: bobStaticKey, keychain: keychain)
try establishManagerSessions(aliceManager: aliceManager, bobManager: bobManager)
let oldSession = try #require(
aliceManager.getSession(for: alicePeerID) as? BlockingDecryptNoiseSession
)
let oldGeneration = try #require(aliceManager.sessionGeneration(for: alicePeerID))
// Prepare a fully authenticated responder candidate without promoting
// it yet. Its final XX message is the exact operation that replaces
// the old `sessions[peerID]` entry.
let replacementInitiator = NoiseSession(
peerID: bobPeerID,
role: .initiator,
keychain: keychain,
localStaticKey: bobStaticKey
)
let message1 = try replacementInitiator.startHandshake()
let message2 = try #require(
try aliceManager.handleIncomingHandshake(from: alicePeerID, message: message1)
)
let message3 = try #require(try replacementInitiator.processHandshakeMessage(message2))
let ciphertext = try bobManager.encrypt(Data("old session".utf8), for: bobPeerID)
oldSession.pauseNextDecrypt()
let decryptResult = ConcurrentTestResult<(plaintext: Data, sessionGeneration: UUID)>()
var promotionResultForCleanup: ConcurrentTestResult<Data?>?
defer {
// A failed startup requirement must not strand a late thread in
// the blocking test double after the test has returned.
oldSession.resumeDecrypt()
_ = decryptResult.wait(timeout: 5)
if let promotionResultForCleanup {
_ = promotionResultForCleanup.wait(timeout: 5)
}
}
let decryptThread = Thread {
decryptResult.capture {
try aliceManager.decryptWithSessionGeneration(ciphertext, from: self.alicePeerID)
}
}
decryptThread.name = "NoiseCoverageTests.staleDecrypt.decrypt"
decryptThread.qualityOfService = .userInitiated
decryptThread.start()
try #require(oldSession.waitForDecryptStart(timeout: 5))
let promotionStarted = DispatchSemaphore(value: 0)
let promotionResult = ConcurrentTestResult<Data?>()
promotionResultForCleanup = promotionResult
let promotionThread = Thread {
promotionStarted.signal()
promotionResult.capture {
try aliceManager.handleIncomingHandshake(from: self.alicePeerID, message: message3)
}
}
promotionThread.name = "NoiseCoverageTests.staleDecrypt.promote"
promotionThread.qualityOfService = .userInitiated
promotionThread.start()
try #require(promotionStarted.wait(timeout: .now() + 5) == .success)
#expect(
promotionResult.wait(timeout: 0.05) == nil,
"Promotion must wait for the exact decrypting-session lease"
)
oldSession.resumeDecrypt()
let decrypted = try #require(decryptResult.wait(timeout: 5)).get()
_ = try #require(promotionResult.wait(timeout: 5)).get()
#expect(decrypted.plaintext == Data("old session".utf8))
#expect(decrypted.sessionGeneration == oldGeneration)
#expect(aliceManager.sessionGeneration(for: alicePeerID) != oldGeneration)
#expect(throws: NoiseEncryptionError.sessionNotEstablished) {
try aliceManager.encrypt(
Data("stale send".utf8),
for: alicePeerID,
expectedSessionGeneration: oldGeneration
)
}
var staleCommitRan = false
let staleCommit = aliceManager.withCurrentSessionGeneration(
for: alicePeerID,
expected: decrypted.sessionGeneration
) {
staleCommitRan = true
return true
}
#expect(staleCommit == nil)
#expect(!staleCommitRan)
}
@Test("Secure noise sessions enforce limits and renegotiation thresholds")
func secureNoiseSessionsEnforceLimitsAndThresholds() throws {
let initiator = SecureNoiseSession(
@@ -844,7 +963,11 @@ private final class SessionCallbackRecorder: @unchecked Sendable {
return establishedEntries.map(\.0)
}
func recordEstablished(peerID: PeerID, remoteKey: Curve25519.KeyAgreement.PublicKey) {
func recordEstablished(
peerID: PeerID,
remoteKey: Curve25519.KeyAgreement.PublicKey,
sessionGeneration _: UUID
) {
lock.lock()
establishedEntries.append((peerID, remoteKey.rawRepresentation))
lock.unlock()
@@ -866,3 +989,62 @@ private final class FailingNoiseSession: NoiseSession {
throw Error.synthetic
}
}
private final class BlockingDecryptNoiseSession: NoiseSession, @unchecked Sendable {
private let controlLock = NSLock()
private var shouldPauseNextDecrypt = false
private let decryptStarted = DispatchSemaphore(value: 0)
private let resumeDecryptSemaphore = DispatchSemaphore(value: 0)
func pauseNextDecrypt() {
controlLock.lock()
shouldPauseNextDecrypt = true
controlLock.unlock()
}
func waitForDecryptStart(timeout: TimeInterval) -> Bool {
decryptStarted.wait(timeout: .now() + timeout) == .success
}
func resumeDecrypt() {
resumeDecryptSemaphore.signal()
}
override func decrypt(_ ciphertext: Data) throws -> Data {
controlLock.lock()
let shouldPause = shouldPauseNextDecrypt
shouldPauseNextDecrypt = false
controlLock.unlock()
if shouldPause {
decryptStarted.signal()
resumeDecryptSemaphore.wait()
}
return try super.decrypt(ciphertext)
}
}
private final class ConcurrentTestResult<Value>: @unchecked Sendable {
private let lock = NSLock()
private let completed = DispatchGroup()
private var storedResult: Result<Value, Error>?
init() {
completed.enter()
}
func capture(_ operation: () throws -> Value) {
let result = Result(catching: operation)
lock.lock()
storedResult = result
lock.unlock()
completed.leave()
}
func wait(timeout: TimeInterval) -> Result<Value, Error>? {
guard completed.wait(timeout: .now() + timeout) == .success else { return nil }
lock.lock()
defer { lock.unlock() }
return storedResult
}
}
@@ -1,10 +1,31 @@
import Foundation
import Testing
import BitFoundation
@testable import bitchat
@Suite("PreviewKeychainManager Tests")
struct PreviewKeychainManagerTests {
@Test("Install lifecycle distinguishes upgrade, reinstall, bootstrap, and unreadable keychain")
func installLifecycleDecision() {
#expect(KeychainManager.installLifecycleAction(
containerKnowsMarker: true,
markerRead: .success(Data([1]))
) == .markerPresent)
#expect(KeychainManager.installLifecycleAction(
containerKnowsMarker: false,
markerRead: .success(Data([1]))
) == .clearStaleKeys)
#expect(KeychainManager.installLifecycleAction(
containerKnowsMarker: false,
markerRead: .itemNotFound
) == .bootstrapMarker)
#expect(KeychainManager.installLifecycleAction(
containerKnowsMarker: false,
markerRead: .deviceLocked
) == .retryLater)
}
@Test("Preview keychain manager stores identity and service-scoped data in memory")
func previewKeychainManagerRoundTripsData() {
let manager = PreviewKeychainManager()
+33
View File
@@ -145,6 +145,39 @@ struct PacketsTests {
#expect(decoded.capabilities?.rawValue == 0x0180)
}
@Test
func authenticatedPeerStateUsesVersionedCanonicalTLVs() throws {
let signingKey = Data(repeating: 0xA5, count: 32)
let packet = AuthenticatedPeerStatePacket(
capabilities: [.privateMedia, .vouch],
signingPublicKey: signingKey
)
var encoded = try #require(packet.encode())
#expect(encoded.prefix(5) == Data([0x01, 0x01, 0x02, 0x20, 0x01]))
// Unknown TLVs are forward-compatible and do not alter v1 state.
encoded.append(makeTLV(type: 0x7F, value: Data([0xCA, 0xFE])))
#expect(AuthenticatedPeerStatePacket.decode(from: encoded) == packet)
}
@Test
func authenticatedPeerStateRejectsMalformedAmbiguousOrUnknownVersion() {
let key = Data(repeating: 0x44, count: 32)
let capabilities = makeTLV(type: 0x01, value: Data([0x00, 0x01]))
let signing = makeTLV(type: 0x02, value: key)
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x02]) + capabilities + signing) == nil)
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x01]) + signing) == nil)
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x01]) + capabilities + capabilities + signing) == nil)
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x01, 0x01, 0x00]) + signing) == nil)
// 0x0001 is non-minimal little endian; the canonical form is [0x01].
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x01]) + makeTLV(type: 0x01, value: Data([0x01, 0x00])) + signing) == nil)
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x01]) + capabilities + makeTLV(type: 0x02, value: Data(key.dropLast()))) == nil)
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x01]) + capabilities + Data(signing.dropLast())) == nil)
#expect(AuthenticatedPeerStatePacket.decode(from: Data([0x01]) + makeTLV(type: 0x01, value: Data(repeating: 0x01, count: 9)) + signing) == nil)
}
@Test
func privateMessagePacketRejectsUnknownTypeAndTruncation() {
let unknownTLV = Data([0x7F, 0x01, 0x41])
@@ -6,6 +6,7 @@ import Testing
struct BLEAnnounceHandlerTests {
private final class Recorder {
var existingNoisePublicKey: Data?
var authenticatedSigningPublicKey: Data?
var signatureValid = true
var linkState: (hasPeripheral: Bool, hasCentral: Bool) = (false, false)
var linkBoundToOtherPeer = false
@@ -37,6 +38,7 @@ struct BLEAnnounceHandlerTests {
messageTTL: TransportConfig.messageTTLDefault,
now: { now },
existingNoisePublicKey: { _ in recorder.existingNoisePublicKey },
authenticatedSigningPublicKey: { _ in recorder.authenticatedSigningPublicKey },
verifySignature: { packet, signingPublicKey in
recorder.verifySignatureCalls.append((packet, signingPublicKey))
return recorder.signatureValid
@@ -169,6 +169,23 @@ struct BLEAnnounceHandlingPolicyTests {
#expect(decision.isVerified)
}
@Test
func trustPolicyRejectsSigningKeyReplacementAfterNoiseBinding() {
let noiseKey = Data(repeating: 0xCC, count: 32)
let boundSigningKey = Data(repeating: 0x11, count: 32)
let decision = BLEAnnounceTrustPolicy.evaluate(
hasSignature: true,
signatureValid: true,
existingNoisePublicKey: noiseKey,
announcedNoisePublicKey: noiseKey,
authenticatedSigningPublicKey: boundSigningKey,
announcedSigningPublicKey: Data(repeating: 0x22, count: 32)
)
#expect(decision == .reject(.authenticatedSigningKeyMismatch))
}
@Test
func responsePolicyConnectsOnlyForDirectNewOrReconnectedPeers() {
let directNew = BLEAnnounceResponsePolicy.plan(
@@ -33,6 +33,7 @@ struct BLEFileTransferHandlerTests {
recorder.signatureVerifyCount += 1
return recorder.signatureVerifies
},
localSigningPublicKey: { [sampleSigningKey] in sampleSigningKey },
signedSenderDisplayName: { _, peerID in
recorder.signedNameQueries.append(peerID)
return recorder.signedName
@@ -92,12 +93,11 @@ struct BLEFileTransferHandlerTests {
@Test
func selfEchoIsDropped() throws {
let recorder = Recorder()
recorder.signatureVerifies = true
let handler = makeHandler(recorder: recorder)
let packet = try makeFileTransferPacket(sender: localPeerID, mimeType: "application/pdf", content: Data("%PDF-1.7".utf8), ttl: 3)
// The relay pipeline already suppresses self-originated packets, so the
// handler reports "relayable" rather than treating the echo as forged.
#expect(handler.handle(packet, from: localPeerID))
#expect(!handler.handle(packet, from: localPeerID))
expectNoSideEffects(recorder)
}
@@ -120,7 +120,12 @@ struct BLEFileTransferHandlerTests {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Bob", isVerified: false, isConnected: true)]
let handler = makeHandler(recorder: recorder)
let packet = try makeFileTransferPacket(sender: remotePeerID, mimeType: "application/pdf", content: Data("%PDF-1.7".utf8))
let packet = try makeFileTransferPacket(
sender: remotePeerID,
mimeType: "application/pdf",
content: Data("%PDF-1.7".utf8),
hasSignature: false
)
// Failed sender authentication must also stop the packet from being
// relayed to downstream nodes.
@@ -129,7 +134,7 @@ struct BLEFileTransferHandlerTests {
// Broadcast files carry an attacker-controllable senderID, so like
// public messages a connected-but-unverified peer must present a valid
// packet signature. No signing key + no signed identity means dropped.
#expect(recorder.signedNameQueries == [remotePeerID])
#expect(recorder.signedNameQueries.isEmpty)
#expect(recorder.trackedPackets.isEmpty)
#expect(recorder.deliveredMessages.isEmpty)
}
@@ -153,12 +158,11 @@ struct BLEFileTransferHandlerTests {
}
@Test
func selfBroadcastReplayIsDeliveredWithoutSignatureCheck() throws {
// Our own broadcast file replayed via gossip sync arrives with ttl==0
// (so it is not treated as a self-echo) and cannot be verified against
// the peer registry it must still be accepted, matching
// BLEPublicMessageHandler's self exemption.
func signedSelfBroadcastReplayIsDelivered() throws {
// Our own broadcast file replayed via gossip sync arrives with ttl==0;
// it is verified against our local signing key before delivery.
let recorder = Recorder()
recorder.signatureVerifies = true
let handler = makeHandler(recorder: recorder)
let packet = try makeFileTransferPacket(
sender: localPeerID,
@@ -169,7 +173,7 @@ struct BLEFileTransferHandlerTests {
#expect(handler.handle(packet, from: localPeerID))
#expect(recorder.signatureVerifyCount == 0)
#expect(recorder.signatureVerifyCount == 1)
#expect(recorder.signedNameQueries.isEmpty)
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveredMessages.first?.sender == "Me")
@@ -205,7 +209,8 @@ struct BLEFileTransferHandlerTests {
sender: remotePeerID,
mimeType: "audio/mp4",
content: m4a,
fileName: "voice_1122334455667788"
fileName: "voice_1122334455667788",
hasSignature: false
)
// The spoofed note must be dropped locally AND not relayed onward.
@@ -215,7 +220,7 @@ struct BLEFileTransferHandlerTests {
}
@Test
func privateFileFromConnectedUnverifiedPeerIsAccepted() throws {
func rawDirectedFileWithoutVerifiableSignatureIsDroppedWithoutWriteOrRelay() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Bob", isVerified: false, isConnected: true)]
let handler = makeHandler(recorder: recorder)
@@ -223,23 +228,25 @@ struct BLEFileTransferHandlerTests {
sender: remotePeerID,
mimeType: "application/pdf",
content: Data("%PDF-1.7".utf8),
recipientID: Data(hexString: localPeerID.id)
recipientID: Data(hexString: localPeerID.id),
hasSignature: false
)
#expect(handler.handle(packet, from: remotePeerID))
#expect(!handler.handle(packet, from: remotePeerID))
// Directed transfers keep the lenient connected-peer path (no broadcast
// exposure); no signature check is required.
#expect(recorder.signatureVerifyCount == 0)
#expect(recorder.signedNameQueries.isEmpty)
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveredMessages.first?.isPrivate == true)
#expect(recorder.trackedPackets.isEmpty)
#expect(recorder.quotaReservations.isEmpty)
#expect(recorder.saveCalls.isEmpty)
#expect(recorder.deliveredMessages.isEmpty)
}
@Test
func fileDirectedToAnotherPeerIsIgnored() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true, signingPublicKey: sampleSigningKey)]
recorder.signatureVerifies = true
let handler = makeHandler(recorder: recorder)
let packet = try makeFileTransferPacket(
sender: remotePeerID,
@@ -260,7 +267,8 @@ struct BLEFileTransferHandlerTests {
@Test
func privateFileUpdatesLastSeenAndDeliversPrivateMessage() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true, signingPublicKey: sampleSigningKey)]
recorder.signatureVerifies = true
let handler = makeHandler(recorder: recorder)
let packet = try makeFileTransferPacket(
sender: remotePeerID,
@@ -282,6 +290,56 @@ struct BLEFileTransferHandlerTests {
#expect(recorder.deliveredMessages.first?.deliveryStatus == .delivered(to: "Me", at: Date(timeIntervalSince1970: 900)))
}
@Test
func decryptedPrivateFileUsesValidationQuotaAndPrivateDeliveryWithoutRawSignature() throws {
let recorder = Recorder()
recorder.peers = [remotePeerID: makePeerInfo(remotePeerID, nickname: "Alice", isVerified: true)]
let handler = makeHandler(recorder: recorder)
let content = Data([0xFF, 0xD8, 0xFF]) + Data(repeating: 0x41, count: 128)
let file = BitchatFilePacket(
fileName: "secret.jpg",
fileSize: UInt64(content.count),
mimeType: "image/jpeg",
content: content
)
let payload = try #require(file.encode())
let timestamp = Date(timeIntervalSince1970: 1_234)
#expect(handler.handlePrivatePayload(payload, from: remotePeerID, timestamp: timestamp))
#expect(recorder.signatureVerifyCount == 0)
#expect(recorder.signedNameQueries.isEmpty)
#expect(recorder.trackedPackets.isEmpty)
#expect(recorder.quotaReservations == [content.count])
#expect(recorder.saveCalls.first?.data == content)
#expect(recorder.lastSeenUpdates == [remotePeerID])
#expect(recorder.deliveredMessages.count == 1)
#expect(recorder.deliveredMessages.first?.isPrivate == true)
#expect(recorder.deliveredMessages.first?.timestamp == timestamp)
}
@Test
func decryptedPrivateFileOverPayloadCapIsRejectedBeforeQuotaOrDiskWrite() {
let recorder = Recorder()
let handler = makeHandler(recorder: recorder)
let oversizedCount = FileTransferLimits.maxPayloadBytes + 1
var length = UInt32(oversizedCount).bigEndian
var payload = Data([0x04]) // BitchatFilePacket CONTENT TLV
withUnsafeBytes(of: &length) { payload.append(contentsOf: $0) }
payload.append(Data(repeating: 0x41, count: oversizedCount))
#expect(!handler.handlePrivatePayload(
payload,
from: remotePeerID,
timestamp: Date(timeIntervalSince1970: 1_234)
))
#expect(recorder.quotaReservations.isEmpty)
#expect(recorder.saveCalls.isEmpty)
#expect(recorder.lastSeenUpdates.isEmpty)
#expect(recorder.deliveredMessages.isEmpty)
}
@Test
func malformedPayloadIsTrackedForSyncButDropped() {
let recorder = Recorder()
@@ -294,7 +352,7 @@ struct BLEFileTransferHandlerTests {
recipientID: nil,
timestamp: 900_000,
payload: Data([0x01, 0x02, 0x03]),
signature: nil,
signature: Data(repeating: 0x5A, count: 64),
ttl: TransportConfig.messageTTLDefault
)
@@ -370,6 +428,132 @@ struct BLEFileTransferHandlerTests {
#expect(!FileManager.default.fileExists(atPath: evictable.path))
}
@Test
func panicWipeDeletesEveryManagedMediaFileAndRecreatesEmptyDirectories() throws {
let base = FileManager.default.temporaryDirectory
.appendingPathComponent("panic-media-wipe-\(UUID().uuidString)", isDirectory: true)
defer { try? FileManager.default.removeItem(at: base) }
let store = BLEIncomingFileStore(baseDirectory: base)
let subdirectories = [
"voicenotes/incoming",
"voicenotes/outgoing",
"images/incoming",
"images/outgoing",
"files/incoming",
"files/outgoing"
]
for subdirectory in subdirectories {
let directory = base
.appendingPathComponent("files", isDirectory: true)
.appendingPathComponent(subdirectory, isDirectory: true)
try FileManager.default.createDirectory(at: directory, withIntermediateDirectories: true)
try Data("secret".utf8).write(to: directory.appendingPathComponent("artifact.bin"))
}
let unmanaged = base.appendingPathComponent("files/legacy/secret.bin")
try FileManager.default.createDirectory(at: unmanaged.deletingLastPathComponent(), withIntermediateDirectories: true)
try Data("legacy".utf8).write(to: unmanaged)
try store.panicWipe()
#expect(!FileManager.default.fileExists(atPath: unmanaged.path))
for subdirectory in subdirectories {
let directory = base
.appendingPathComponent("files", isDirectory: true)
.appendingPathComponent(subdirectory, isDirectory: true)
var isDirectory: ObjCBool = false
#expect(FileManager.default.fileExists(atPath: directory.path, isDirectory: &isDirectory))
#expect(isDirectory.boolValue)
#expect(try FileManager.default.contentsOfDirectory(atPath: directory.path).isEmpty)
}
}
@Test
func panicWipeAttemptsDeletionWhenMarkerPersistenceFails() throws {
enum MarkerFailure: Error { case unavailable }
let base = FileManager.default.temporaryDirectory
.appendingPathComponent(
"panic-marker-failure-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: base) }
let secret = base
.appendingPathComponent("files/images/outgoing", isDirectory: true)
.appendingPathComponent("secret.jpg")
try FileManager.default.createDirectory(
at: secret.deletingLastPathComponent(),
withIntermediateDirectories: true
)
try Data("secret".utf8).write(to: secret)
let store = BLEIncomingFileStore(
baseDirectory: base,
panicMarkerWriter: { _, _ in throw MarkerFailure.unavailable }
)
do {
try store.panicWipe(hasDurablePendingMarker: false)
Issue.record("Expected the missing durable marker to fail closed")
} catch {
// The marker error is reported only after the deletion attempt.
}
#expect(!FileManager.default.fileExists(atPath: secret.path))
#expect(
FileManager.default.fileExists(
atPath: secret.deletingLastPathComponent().path
)
)
}
@Test
func externalMarkerAllowsDeletionToCommitWhenFileMarkerFails() throws {
enum MarkerFailure: Error { case unavailable }
let base = FileManager.default.temporaryDirectory
.appendingPathComponent(
"panic-external-marker-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: base) }
let secret = base
.appendingPathComponent("files/voicenotes/incoming", isDirectory: true)
.appendingPathComponent("secret.m4a")
try FileManager.default.createDirectory(
at: secret.deletingLastPathComponent(),
withIntermediateDirectories: true
)
try Data("secret".utf8).write(to: secret)
let store = BLEIncomingFileStore(
baseDirectory: base,
panicMarkerWriter: { _, _ in throw MarkerFailure.unavailable }
)
try store.panicWipe(hasDurablePendingMarker: true)
#expect(!FileManager.default.fileExists(atPath: secret.path))
}
@Test
func panicRecoveryMarkerPersistsUntilExplicitCommit() throws {
let base = FileManager.default.temporaryDirectory
.appendingPathComponent(
"panic-recovery-marker-\(UUID().uuidString)",
isDirectory: true
)
defer { try? FileManager.default.removeItem(at: base) }
let store = BLEIncomingFileStore(baseDirectory: base)
try store.markPanicRecoveryPending()
#expect(try store.isPanicRecoveryPending())
try store.panicWipe(hasDurablePendingMarker: true)
#expect(try store.isPanicRecoveryPending())
try store.completePanicRecovery()
#expect(try !store.isPanicRecoveryPending())
}
private func expectNoSideEffects(_ recorder: Recorder) {
#expect(recorder.signedNameQueries.isEmpty)
#expect(recorder.trackedPackets.isEmpty)
@@ -403,7 +587,8 @@ struct BLEFileTransferHandlerTests {
content: Data,
ttl: UInt8 = TransportConfig.messageTTLDefault,
recipientID: Data? = nil,
fileName: String = "sample"
fileName: String = "sample",
hasSignature: Bool = true
) throws -> BitchatPacket {
let filePacket = BitchatFilePacket(
fileName: fileName,
@@ -418,7 +603,7 @@ struct BLEFileTransferHandlerTests {
recipientID: recipientID,
timestamp: 900_000,
payload: payload,
signature: nil,
signature: hasSignature ? Data(repeating: 0x5A, count: 64) : nil,
ttl: ttl
)
}
@@ -117,6 +117,35 @@ struct BLEFragmentAssemblyBufferTests {
}
}
@Test
func encryptedPrivateFileAssemblyGetsFramedFileHeadroom() throws {
var buffer = BLEFragmentAssemblyBuffer()
let fragmentID = Data(repeating: 0x15, count: 8)
let first = try #require(BLEFragmentHeader(packet: makeFragmentPacket(
fragmentID: fragmentID,
index: 0,
total: 2,
originalType: MessageType.noiseEncrypted.rawValue,
fragmentData: Data(repeating: 0x01, count: FileTransferLimits.maxPayloadBytes)
)))
let second = try #require(BLEFragmentHeader(packet: makeFragmentPacket(
fragmentID: fragmentID,
index: 1,
total: 2,
originalType: MessageType.noiseEncrypted.rawValue,
fragmentData: Data([0x02])
)))
_ = buffer.append(first, maxInFlightAssemblies: 8)
let result = buffer.append(second, maxInFlightAssemblies: 8)
if case let .complete(_, data, _) = result {
#expect(data.count == FileTransferLimits.maxPayloadBytes + 1)
} else {
Issue.record("Expected encrypted private-file assembly to use framed-file limit")
}
}
@Test
func removeExpiredDropsOldAssemblies() throws {
var buffer = BLEFragmentAssemblyBuffer()
@@ -9,6 +9,7 @@ struct BLENoisePacketHandlerTests {
private final class Recorder {
var handshakeResult: Result<Data?, Error> = .success(nil)
var hasSession = false
let sessionGeneration = UUID()
var decryptResult: Result<Data, Error> = .success(Data())
var processedHandshakes: [(peerID: PeerID, message: Data)] = []
@@ -18,6 +19,7 @@ struct BLENoisePacketHandlerTests {
var lastSeenUpdates: [PeerID] = []
var decryptCalls: [(payload: Data, peerID: PeerID)] = []
var clearedSessions: [PeerID] = []
var authenticatedPeerStates: [(peerID: PeerID, payload: Data, generation: UUID)] = []
var deliveries: [(peerID: PeerID, type: NoisePayloadType, payload: Data, timestamp: Date)] = []
/// Ordered side-effect log to assert recovery sequencing.
var events: [String] = []
@@ -56,12 +58,18 @@ struct BLENoisePacketHandlerTests {
},
decrypt: { payload, peerID in
recorder.decryptCalls.append((payload, peerID))
return try recorder.decryptResult.get()
return BLENoiseDecryptionResult(
plaintext: try recorder.decryptResult.get(),
sessionGeneration: recorder.sessionGeneration
)
},
clearSession: { peerID in
recorder.clearedSessions.append(peerID)
recorder.events.append("clearSession")
},
handleAuthenticatedPeerState: { peerID, payload, generation in
recorder.authenticatedPeerStates.append((peerID, payload, generation))
},
deliverNoisePayload: { peerID, type, payload, timestamp in
recorder.deliveries.append((peerID, type, payload, timestamp))
}
@@ -152,6 +160,21 @@ struct BLENoisePacketHandlerTests {
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func peerIdentityMismatchDoesNotRecreateHandshakeState() {
let recorder = Recorder()
recorder.handshakeResult = .failure(NoiseSessionError.peerIdentityMismatch)
recorder.hasSession = false
let handler = makeHandler(recorder: recorder)
let packet = makeHandshakePacket(recipientID: Data(hexString: localPeerID.id))
#expect(!handler.handleHandshake(packet, from: remotePeerID))
#expect(recorder.hasSessionQueries.isEmpty)
#expect(recorder.initiatedHandshakes.isEmpty)
#expect(recorder.broadcastPackets.isEmpty)
}
// MARK: Encrypted
@Test
@@ -206,6 +229,25 @@ struct BLENoisePacketHandlerTests {
#expect(recorder.initiatedHandshakes.isEmpty)
}
@Test
func authenticatedPeerStateIsConsumedByTransportNotDeliveredToUI() {
let recorder = Recorder()
recorder.decryptResult = .success(Data([
NoisePayloadType.authenticatedPeerState.rawValue,
0x01, 0x02, 0x03
]))
let handler = makeHandler(recorder: recorder)
let packet = makeEncryptedPacket(recipientID: Data(hexString: localPeerID.id))
handler.handleEncrypted(packet, from: remotePeerID)
#expect(recorder.authenticatedPeerStates.count == 1)
#expect(recorder.authenticatedPeerStates.first?.peerID == remotePeerID)
#expect(recorder.authenticatedPeerStates.first?.payload == Data([0x01, 0x02, 0x03]))
#expect(recorder.authenticatedPeerStates.first?.generation == recorder.sessionGeneration)
#expect(recorder.deliveries.isEmpty)
}
@Test
func emptyDecryptedPayloadIsIgnored() {
let recorder = Recorder()
@@ -1,5 +1,6 @@
import Foundation
import Testing
import BitFoundation
@testable import bitchat
struct BLENoisePayloadFactoryTests {
@@ -31,4 +32,63 @@ struct BLENoisePayloadFactoryTests {
#expect(payload == Data([NoisePayloadType.verifyChallenge.rawValue, 0xCA, 0xFE]))
}
@Test
func privateFilePayloadPrefixesCanonicalFilePacket() throws {
let content = Data("%PDF-secret".utf8)
let file = BitchatFilePacket(
fileName: "secret.pdf",
fileSize: UInt64(content.count),
mimeType: "application/pdf",
content: content
)
let payload = try #require(BLENoisePayloadFactory.privateFile(file))
#expect(payload.first == 0x20, "Encrypted files must use Android's deployed wire value")
let decoded = try #require(BitchatFilePacket.decode(Data(payload.dropFirst())))
#expect(decoded.fileName == "secret.pdf")
#expect(decoded.mimeType == "application/pdf")
#expect(decoded.content == content)
}
@Test
func androidB7f0b33PrivateFilePlaintextFixtureIsByteCompatible() throws {
// Runtime-emitted by Android commit b7f0b33d from
// BitchatFilePacket("a.txt", 3, "text/plain", [01, 02, 03]) and
// NoisePayload(type = FILE_TRANSFER, data = file.encode()).encode().
let fixtureHex = "20010005612e7478740200040000000303000a746578742f706c61696e0400000003010203"
let fixture = try #require(Data(hexString: fixtureHex))
let typed = try #require(NoisePayload.decode(fixture))
#expect(typed.type == .privateFile)
let file = try #require(BitchatFilePacket.decode(typed.data))
#expect(file.fileName == "a.txt")
#expect(file.fileSize == 3)
#expect(file.mimeType == "text/plain")
#expect(file.content == Data([0x01, 0x02, 0x03]))
#expect(BLENoisePayloadFactory.privateFile(file) == fixture)
}
@Test
func prereleasePrivateFileTypeCanonicalizesOnDecode() throws {
let encoded = Data([NoisePayloadType.prereleasePrivateFileRawValue, 0xCA, 0xFE])
let decoded = try #require(NoisePayload.decode(encoded))
#expect(decoded.type == .privateFile)
#expect(decoded.data == Data([0xCA, 0xFE]))
#expect(decoded.encode().first == 0x20)
}
@Test
func authenticatedPeerStateUsesPermanent0x21Type() throws {
let state = AuthenticatedPeerStatePacket(
capabilities: .privateMedia,
signingPublicKey: Data(repeating: 0x77, count: 32)
)
let encoded = try #require(BLENoisePayloadFactory.authenticatedPeerState(state))
#expect(encoded.first == 0x21)
#expect(AuthenticatedPeerStatePacket.decode(from: Data(encoded.dropFirst())) == state)
}
}
@@ -48,7 +48,10 @@ struct BLENoiseSessionQueuesTests {
queues.appendTypedPayload(Data([0x01]), for: peerID)
queues.appendTypedPayload(Data([0x02]), for: peerID)
#expect(queues.takeTypedPayloads(for: peerID) == [Data([0x01]), Data([0x02])])
#expect(queues.takeTypedPayloads(for: peerID) == [
BLEPendingTypedPayload(payload: Data([0x01]), transferId: nil),
BLEPendingTypedPayload(payload: Data([0x02]), transferId: nil)
])
#expect(queues.takeTypedPayloads(for: peerID).isEmpty)
#expect(queues.takePrivateMessages(for: peerID).map(\.messageID) == ["m1"])
}
@@ -64,4 +67,21 @@ struct BLENoiseSessionQueuesTests {
#expect(queues.isEmpty)
}
@Test
func transferIDSurvivesHandshakeQueueAndCanBeCancelledBeforeDrain() {
let peerID = PeerID(str: "aaaaaaaaaaaaaaaa")
var queues = BLENoiseSessionQueues()
queues.appendTypedPayload(Data([0x20, 0xAA]), transferId: "media-1", for: peerID)
queues.appendTypedPayload(Data([0x01, 0xBB]), for: peerID)
let removed = queues.removeTypedPayload(transferId: "media-1")
let removedAgain = queues.removeTypedPayload(transferId: "media-1")
#expect(removed)
#expect(!removedAgain)
#expect(queues.takeTypedPayloads(for: peerID) == [
BLEPendingTypedPayload(payload: Data([0x01, 0xBB]), transferId: nil)
])
}
}
@@ -108,6 +108,58 @@ struct BLEOutboundFragmentPlannerTests {
) == nil)
}
@Test("private media v1 accepts exactly 256 fragments and rejects 257")
func privateMediaCrossPlatformFragmentBoundary() throws {
let maxPayload = makePayload(count: 160 * 1024, seed: 0xFACE_CAFE)
func plan(payloadCount: Int) throws -> BLEOutboundFragmentPlan {
let packet = BitchatPacket(
type: MessageType.noiseEncrypted.rawValue,
senderID: Data(hexString: "0011223344556677") ?? Data(),
recipientID: Data(hexString: "8877665544332211"),
timestamp: 0x0102030405,
payload: Data(maxPayload.prefix(payloadCount)),
signature: nil,
ttl: 3,
version: 2
)
return try #require(BLEOutboundFragmentPlanner.makePlan(
for: BLEOutboundFragmentTransferRequest(
packet: packet,
pad: false,
maxChunk: nil,
directedPeer: PeerID(str: "8877665544332211"),
transferId: "boundary"
),
defaultChunkSize: TransportConfig.bleDefaultFragmentSize,
bleMaxMTU: 512,
fragmentID: Data(repeating: 0xD4, count: 8)
))
}
func firstPlan(withAtLeast target: Int) throws -> BLEOutboundFragmentPlan {
var low = 1
var high = maxPayload.count
while low < high {
let mid = low + (high - low) / 2
if try plan(payloadCount: mid).totalFragments >= target {
high = mid
} else {
low = mid + 1
}
}
return try plan(payloadCount: low)
}
let at256 = try firstPlan(withAtLeast: 256)
let at257 = try firstPlan(withAtLeast: 257)
#expect(at256.totalFragments == 256)
#expect(BLEOutboundFragmentPlanner.isPrivateMediaV1Compatible(at256))
#expect(at257.totalFragments == 257)
#expect(!BLEOutboundFragmentPlanner.isPrivateMediaV1Compatible(at257))
}
private func makePacket(
payload: Data,
route: [Data]? = nil,
@@ -20,6 +20,24 @@ struct BLEOutboundFragmentTransferSchedulerTests {
}
}
@Test
func explicitTransferIDReservesEncryptedPrivateFileFragments() {
var scheduler = BLEOutboundFragmentTransferScheduler()
let request = makeRequest(
type: MessageType.noiseEncrypted.rawValue,
transferId: "private-media"
)
let result = scheduler.submit(request, maxConcurrentTransfers: 1)
if case let .start(_, reservedTransferId) = result {
#expect(reservedTransferId == "private-media")
#expect(scheduler.activeCount == 1)
} else {
Issue.record("Expected encrypted private media to reserve its progress slot")
}
}
@Test
func submitQueuesFileTransferWhenSlotsAreFull() {
var scheduler = BLEOutboundFragmentTransferScheduler()
@@ -42,6 +42,37 @@ struct BLEPeerRegistryTests {
#expect(registry.info(for: peerID)?.nickname == "alice-renamed")
}
@Test("registry preserves absent versus explicit empty capabilities")
func capabilitiesPresenceIsPreserved() {
var registry = BLEPeerRegistry()
let oldPeer = PeerID(str: "1122334455667788")
let modernPeer = PeerID(str: "8877665544332211")
_ = registry.upsertVerifiedAnnounce(
peerID: oldPeer,
nickname: "old",
noisePublicKey: Data(repeating: 0x11, count: 32),
signingPublicKey: Data(repeating: 0x12, count: 32),
isConnected: true,
now: Date(),
capabilities: nil
)
_ = registry.upsertVerifiedAnnounce(
peerID: modernPeer,
nickname: "modern",
noisePublicKey: Data(repeating: 0x21, count: 32),
signingPublicKey: Data(repeating: 0x22, count: 32),
isConnected: true,
now: Date(),
capabilities: []
)
#expect(registry.capabilities(for: oldPeer).isEmpty)
#expect(!registry.capabilitiesWereExplicitlyAdvertised(for: oldPeer))
#expect(registry.capabilities(for: modernPeer).isEmpty)
#expect(registry.capabilitiesWereExplicitlyAdvertised(for: modernPeer))
}
@Test("reachability keeps recent verified offline peers only when mesh is attached")
func reachabilityRequiresMeshAttachmentForOfflinePeers() {
let offlinePeer = PeerID(str: "1122334455667788")
@@ -76,6 +76,7 @@ final class GeohashPresenceServiceTests: XCTestCase {
burstMaxDelay: 0
)
service.start()
service.performHeartbeat()
let sentAllAllowedChannels = await waitUntil { sentGeohashes.count == 3 }
@@ -83,7 +84,7 @@ final class GeohashPresenceServiceTests: XCTestCase {
XCTAssertEqual(Set(sentGeohashes), Set(["9q", "9q8y", "9q8yy"]))
XCTAssertEqual(Set(lookedUpGeohashes), Set(["9q", "9q8y", "9q8yy"]))
XCTAssertEqual(sleptNanoseconds.count, 3)
XCTAssertEqual(scheduler.intervals, [17])
XCTAssertEqual(scheduler.intervals, [17, 17])
}
func test_performHeartbeat_skipsBroadcastWhenTorIsNotReady() async {
@@ -97,11 +98,12 @@ final class GeohashPresenceServiceTests: XCTestCase {
loopMaxInterval: 21
)
service.start()
service.performHeartbeat()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(sendCount, 0)
XCTAssertEqual(scheduler.intervals, [21])
XCTAssertEqual(scheduler.intervals, [21, 21])
}
func test_performHeartbeat_skipsBroadcastWhenAppIsBackgrounded() async {
@@ -115,11 +117,45 @@ final class GeohashPresenceServiceTests: XCTestCase {
loopMaxInterval: 22
)
service.start()
service.performHeartbeat()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(sendCount, 0)
XCTAssertEqual(scheduler.intervals, [22])
XCTAssertEqual(scheduler.intervals, [22, 22])
}
func test_stopForPanic_cancelsTimerAndSuppressesDelayedBroadcast() async throws {
let identity = try NostrIdentity.generate()
let scheduler = MockGeohashPresenceScheduler()
var sleeperContinuation: CheckedContinuation<Void, Never>?
var sendCount = 0
let service = makeService(
scheduler: scheduler,
deriveIdentity: { _ in identity },
relaySender: { _, _ in sendCount += 1 },
sleeper: { _ in
await withCheckedContinuation { continuation in
sleeperContinuation = continuation
}
},
burstMinDelay: 1,
burstMaxDelay: 1
)
service.start()
service.performHeartbeat()
let delayStarted = await waitUntil {
sleeperContinuation != nil
}
XCTAssertTrue(delayStarted)
service.stopForPanic()
sleeperContinuation?.resume()
try? await Task.sleep(nanoseconds: 20_000_000)
XCTAssertEqual(sendCount, 0)
XCTAssertEqual(scheduler.timers.first?.invalidateCallCount, 1)
}
func test_broadcastPresence_skipsSendWhenNoRelaysAreAvailable() async throws {
@@ -91,6 +91,53 @@ final class NetworkActivationServiceTests: XCTestCase {
XCTAssertGreaterThanOrEqual(context.relayController.connectCallCount, 1)
}
func test_stopForPanic_synchronouslyStopsAndIgnoresPublisherUpdates() async {
let context = makeService(permission: .authorized, favorites: [])
context.service.start()
context.service.stopForPanic()
let connectCountAfterStop = context.relayController.connectCallCount
let startCountAfterStop = context.torController.startIfNeededCallCount
context.favoritesSubject.send([Data([0x01])])
context.reachability.set(false)
context.reachability.set(true)
try? await Task.sleep(nanoseconds: 30_000_000)
XCTAssertFalse(context.service.activationAllowed)
XCTAssertEqual(context.reachability.stopCallCount, 1)
XCTAssertEqual(context.torController.autoStartAllowedValues.last, false)
XCTAssertEqual(context.proxyController.proxyModes.last, false)
XCTAssertGreaterThanOrEqual(
context.torController.shutdownCompletelyCallCount,
1
)
XCTAssertGreaterThanOrEqual(
context.relayController.disconnectCallCount,
1
)
XCTAssertEqual(
context.relayController.connectCallCount,
connectCountAfterStop
)
XCTAssertEqual(
context.torController.startIfNeededCallCount,
startCountAfterStop
)
}
func test_start_afterPanicStop_reestablishesSubscriptions() {
let context = makeService(permission: .authorized, favorites: [])
context.service.start()
context.service.stopForPanic()
context.service.start()
XCTAssertTrue(context.service.activationAllowed)
XCTAssertEqual(context.reachability.startCallCount, 2)
XCTAssertEqual(context.relayController.connectCallCount, 2)
}
private func makeService(
permission: LocationChannelManager.PermissionState,
favorites: Set<Data>
@@ -104,6 +151,7 @@ final class NetworkActivationServiceTests: XCTestCase {
let torController = MockNetworkActivationTorController()
let relayController = MockNetworkActivationRelayController()
let proxyController = MockNetworkActivationProxyController()
let reachability = MockNetworkActivationReachability()
let notificationCenter = NotificationCenter()
let service = NetworkActivationService(
storage: storage,
@@ -111,7 +159,7 @@ final class NetworkActivationServiceTests: XCTestCase {
mutualFavoritesPublisher: favoritesSubject.eraseToAnyPublisher(),
permissionProvider: { permissionSubject.value },
mutualFavoritesProvider: { favoritesSubject.value },
reachabilityMonitor: AlwaysReachableMonitor(),
reachabilityMonitor: reachability,
torController: torController,
relayController: relayController,
proxyController: proxyController,
@@ -121,6 +169,7 @@ final class NetworkActivationServiceTests: XCTestCase {
service: service,
storage: storage,
favoritesSubject: favoritesSubject,
reachability: reachability,
torController: torController,
relayController: relayController,
proxyController: proxyController,
@@ -148,12 +197,38 @@ private struct NetworkActivationTestContext {
let service: NetworkActivationService
let storage: UserDefaults
let favoritesSubject: CurrentValueSubject<Set<Data>, Never>
let reachability: MockNetworkActivationReachability
let torController: MockNetworkActivationTorController
let relayController: MockNetworkActivationRelayController
let proxyController: MockNetworkActivationProxyController
let notificationCenter: NotificationCenter
}
@MainActor
private final class MockNetworkActivationReachability:
NetworkReachabilityMonitoring {
private let subject = CurrentValueSubject<Bool, Never>(true)
private(set) var startCallCount = 0
private(set) var stopCallCount = 0
var isReachable: Bool { subject.value }
var reachabilityPublisher: AnyPublisher<Bool, Never> {
subject.removeDuplicates().dropFirst().eraseToAnyPublisher()
}
func start() {
startCallCount += 1
}
func stop() {
stopCallCount += 1
}
func set(_ reachable: Bool) {
subject.send(reachable)
}
}
@MainActor
private final class MockNetworkActivationTorController: NetworkActivationTorControlling {
private(set) var autoStartAllowedValues: [Bool] = []
@@ -213,6 +213,7 @@ private final class ControllableReachabilityMonitor: NetworkReachabilityMonitori
subject.removeDuplicates().dropFirst().eraseToAnyPublisher()
}
func start() { startCalled = true }
func stop() { startCalled = false }
func set(_ reachable: Bool) { subject.send(reachable) }
}
@@ -91,39 +91,266 @@ struct NoiseEncryptionServiceTests {
func handshakeEncryptionAndFingerprintLifecycle() async throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let bob = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(str: "0011223344556677")
let bobPeerID = PeerID(str: "8899aabbccddeeff")
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
let recorder = AuthenticationRecorder()
#expect(alice.onPeerAuthenticated == nil)
#expect(bob.onPeerAuthenticatedWithGeneration == nil)
alice.addOnPeerAuthenticatedHandler(recorder.record(peerID:fingerprint:))
bob.onPeerAuthenticated = recorder.record(peerID:fingerprint:)
bob.onPeerAuthenticatedWithGeneration = recorder.record(
peerID:fingerprint:sessionGeneration:
)
try establishSessions(alice: alice, bob: bob, alicePeerID: alicePeerID, bobPeerID: bobPeerID)
try establishSessions(alice: alice, bob: bob)
let authenticated = await TestHelpers.waitUntil({ recorder.count >= 2 }, timeout: 5.0)
#expect(authenticated)
#expect(alice.hasEstablishedSession(with: alicePeerID))
#expect(bob.hasEstablishedSession(with: bobPeerID))
#expect(alice.hasSession(with: alicePeerID))
#expect(bob.hasSession(with: bobPeerID))
#expect(alice.getPeerPublicKeyData(alicePeerID)?.count == 32)
#expect(bob.getPeerPublicKeyData(bobPeerID)?.count == 32)
#expect(alice.getPeerFingerprint(alicePeerID) != nil)
#expect(bob.getPeerFingerprint(bobPeerID) != nil)
let generationAuthenticated = await TestHelpers.waitUntil(
{ recorder.generationCount >= 1 },
timeout: 5.0
)
#expect(generationAuthenticated)
#expect(alice.hasEstablishedSession(with: bobPeerID))
#expect(bob.hasEstablishedSession(with: alicePeerID))
#expect(alice.hasSession(with: bobPeerID))
#expect(bob.hasSession(with: alicePeerID))
#expect(alice.getPeerPublicKeyData(bobPeerID)?.count == 32)
#expect(bob.getPeerPublicKeyData(alicePeerID)?.count == 32)
#expect(alice.getPeerFingerprint(bobPeerID) != nil)
#expect(bob.getPeerFingerprint(alicePeerID) != nil)
#expect(recorder.generation(for: alicePeerID) == bob.sessionGeneration(for: alicePeerID))
let plaintext = Data("secret payload".utf8)
let ciphertext = try alice.encrypt(plaintext, for: alicePeerID)
let decrypted = try bob.decrypt(ciphertext, from: bobPeerID)
let ciphertext = try alice.encrypt(plaintext, for: bobPeerID)
let decrypted = try bob.decrypt(ciphertext, from: alicePeerID)
#expect(decrypted == plaintext)
alice.clearSession(for: alicePeerID)
#expect(!alice.hasSession(with: alicePeerID))
#expect(alice.getPeerFingerprint(alicePeerID) == nil)
alice.clearSession(for: bobPeerID)
#expect(!alice.hasSession(with: bobPeerID))
#expect(alice.getPeerFingerprint(bobPeerID) == nil)
bob.clearEphemeralStateForPanic()
#expect(!bob.hasSession(with: bobPeerID))
#expect(bob.getPeerFingerprint(bobPeerID) == nil)
#expect(!bob.hasSession(with: alicePeerID))
#expect(bob.getPeerFingerprint(alicePeerID) == nil)
}
@Test("Handshake rejects a claimed peer ID that does not match the authenticated static key")
func handshakeRejectsClaimedPeerIDStaticKeyMismatch() async throws {
let receiver = NoiseEncryptionService(keychain: MockKeychain())
let claimedAlice = NoiseEncryptionService(keychain: MockKeychain())
let mallory = NoiseEncryptionService(keychain: MockKeychain())
let receiverPeerID = PeerID(publicKey: receiver.getStaticPublicKeyData())
let claimedAlicePeerID = PeerID(publicKey: claimedAlice.getStaticPublicKeyData())
let recorder = AuthenticationRecorder()
receiver.addOnPeerAuthenticatedHandler(recorder.record(peerID:fingerprint:))
let message1 = try mallory.initiateHandshake(with: receiverPeerID)
let message2 = try #require(
try receiver.processHandshakeMessage(from: claimedAlicePeerID, message: message1)
)
let message3 = try #require(
try mallory.processHandshakeMessage(from: receiverPeerID, message: message2)
)
do {
_ = try receiver.processHandshakeMessage(from: claimedAlicePeerID, message: message3)
Issue.record("Expected the authenticated Mallory key to be rejected for Alice's peer ID")
} catch let error as NoiseSessionError {
#expect(error == .peerIdentityMismatch)
} catch {
Issue.record("Unexpected mismatch error: \(error)")
}
#expect(!receiver.hasSession(with: claimedAlicePeerID))
let emittedAuthentication = await TestHelpers.waitUntil(
{ recorder.count > 0 },
timeout: TestConstants.shortTimeout
)
#expect(!emittedAuthentication)
}
@Test("Failed forged replacement preserves the established peer session")
func forgedReplacementPreservesEstablishedSession() async throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let receiver = NoiseEncryptionService(keychain: MockKeychain())
let mallory = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
let receiverPeerID = PeerID(publicKey: receiver.getStaticPublicKeyData())
let recorder = AuthenticationRecorder()
receiver.addOnPeerAuthenticatedHandler(recorder.record(peerID:fingerprint:))
try establishSessions(alice: alice, bob: receiver)
let initialAuthentication = await TestHelpers.waitUntil(
{ recorder.count == 1 },
timeout: TestConstants.longTimeout
)
#expect(initialAuthentication)
let before = try alice.encrypt(Data("before".utf8), for: receiverPeerID)
#expect(try receiver.decrypt(before, from: alicePeerID) == Data("before".utf8))
let forgedMessage1 = try mallory.initiateHandshake(with: receiverPeerID)
let forgedMessage2 = try #require(
try receiver.processHandshakeMessage(from: alicePeerID, message: forgedMessage1)
)
// The replacement has not authenticated yet; the working Alice
// transport session must remain available throughout the candidate.
#expect(receiver.hasEstablishedSession(with: alicePeerID))
let forgedMessage3 = try #require(
try mallory.processHandshakeMessage(from: receiverPeerID, message: forgedMessage2)
)
do {
_ = try receiver.processHandshakeMessage(from: alicePeerID, message: forgedMessage3)
Issue.record("Expected forged replacement to fail peer binding")
} catch let error as NoiseSessionError {
#expect(error == .peerIdentityMismatch)
} catch {
Issue.record("Unexpected replacement error: \(error)")
}
#expect(receiver.hasEstablishedSession(with: alicePeerID))
let after = try alice.encrypt(Data("after".utf8), for: receiverPeerID)
#expect(try receiver.decrypt(after, from: alicePeerID) == Data("after".utf8))
let emittedReplacementAuthentication = await TestHelpers.waitUntil(
{ recorder.count > 1 },
timeout: TestConstants.shortTimeout
)
#expect(!emittedReplacementAuthentication)
}
@Test("Valid rehandshake atomically replaces the established session")
func validRehandshakeReplacesEstablishedSession() throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let receiver = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
let receiverPeerID = PeerID(publicKey: receiver.getStaticPublicKeyData())
try establishSessions(alice: alice, bob: receiver)
alice.clearSession(for: receiverPeerID)
let message1 = try alice.initiateHandshake(with: receiverPeerID)
let message2 = try #require(
try receiver.processHandshakeMessage(from: alicePeerID, message: message1)
)
#expect(receiver.hasEstablishedSession(with: alicePeerID))
let message3 = try #require(
try alice.processHandshakeMessage(from: receiverPeerID, message: message2)
)
_ = try receiver.processHandshakeMessage(from: alicePeerID, message: message3)
#expect(alice.hasEstablishedSession(with: receiverPeerID))
#expect(receiver.hasEstablishedSession(with: alicePeerID))
let ciphertext = try alice.encrypt(Data("new session".utf8), for: receiverPeerID)
#expect(try receiver.decrypt(ciphertext, from: alicePeerID) == Data("new session".utf8))
}
@Test("Automatic rekey exposes and completes its exact handshake bytes")
func automaticRekeyHandshakeIsNotStranded() throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let bob = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
try establishSessions(alice: alice, bob: bob)
let originalGeneration = try #require(alice.sessionGeneration(for: bobPeerID))
var leaseRan = false
let leased = alice.withCurrentSessionGeneration(
for: bobPeerID,
expected: originalGeneration
) {
leaseRan = true
return true
}
#expect(leased == true)
#expect(leaseRan)
var emittedPeerID: PeerID?
var emittedMessage: Data?
alice.onRekeyHandshakeReady = { peerID, message in
emittedPeerID = peerID
emittedMessage = message
}
try alice._test_initiateAutomaticRekey(for: bobPeerID)
#expect(emittedPeerID == bobPeerID)
#expect(alice.sessionGeneration(for: bobPeerID) == nil)
leaseRan = false
let staleLease = alice.withCurrentSessionGeneration(
for: bobPeerID,
expected: originalGeneration
) {
leaseRan = true
return true
}
#expect(staleLease == nil)
#expect(!leaseRan)
let message1 = try #require(emittedMessage)
#expect(!message1.isEmpty)
#expect(alice.hasSession(with: bobPeerID))
#expect(!alice.hasEstablishedSession(with: bobPeerID))
let message2 = try #require(
try bob.processHandshakeMessage(from: alicePeerID, message: message1)
)
let message3 = try #require(
try alice.processHandshakeMessage(from: bobPeerID, message: message2)
)
_ = try bob.processHandshakeMessage(from: alicePeerID, message: message3)
#expect(alice.hasEstablishedSession(with: bobPeerID))
#expect(bob.hasEstablishedSession(with: alicePeerID))
#expect(alice.sessionGeneration(for: bobPeerID) != originalGeneration)
}
@Test("Large private-file payloads use the bounded Noise extension")
func largePrivateFileNoiseRoundTrip() throws {
let alice = NoiseEncryptionService(keychain: MockKeychain())
let bob = NoiseEncryptionService(keychain: MockKeychain())
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
try establishSessions(alice: alice, bob: bob)
let content = Data("%PDF-1.7\n".utf8) + Data(repeating: 0x51, count: 96 * 1024)
let file = BitchatFilePacket(
fileName: "large-private.pdf",
fileSize: UInt64(content.count),
mimeType: "application/pdf",
content: content
)
let typedPayload = try #require(BLENoisePayloadFactory.privateFile(file))
#expect(typedPayload.count > NoiseSecurityConstants.maxMessageSize)
#expect(typedPayload.first == NoisePayloadType.privateFile.rawValue)
#expect(
typedPayload.count <= NoiseSecurityConstants.maxPrivateFilePlaintextSize,
"typedBytes=\(typedPayload.count) limit=\(NoiseSecurityConstants.maxPrivateFilePlaintextSize)"
)
do {
_ = try alice.encrypt(typedPayload, for: bobPeerID)
Issue.record("Ordinary Noise payload path must retain its 64 KiB ceiling")
} catch NoiseSecurityError.messageTooLarge {
// Expected: only the purpose-specific private-file API may extend it.
}
let ciphertext: Data
do {
ciphertext = try alice.encryptPrivateFilePayload(typedPayload, for: bobPeerID)
} catch {
Issue.record("Private-file encryption failed: \(error)")
return
}
let decrypted: Data
do {
decrypted = try bob.decrypt(ciphertext, from: alicePeerID)
} catch {
Issue.record("Private-file decryption failed: \(error); ciphertextBytes=\(ciphertext.count)")
return
}
#expect(ciphertext.range(of: content) == nil)
#expect(decrypted == typedPayload)
}
@Test("Encrypt without a session requests handshake and decrypt without session fails")
@@ -200,16 +427,16 @@ struct NoiseEncryptionServiceTests {
private func establishSessions(
alice: NoiseEncryptionService,
bob: NoiseEncryptionService,
alicePeerID: PeerID,
bobPeerID: PeerID
bob: NoiseEncryptionService
) throws {
let message1 = try alice.initiateHandshake(with: alicePeerID)
let response = try bob.processHandshakeMessage(from: bobPeerID, message: message1)
let alicePeerID = PeerID(publicKey: alice.getStaticPublicKeyData())
let bobPeerID = PeerID(publicKey: bob.getStaticPublicKeyData())
let message1 = try alice.initiateHandshake(with: bobPeerID)
let response = try bob.processHandshakeMessage(from: alicePeerID, message: message1)
let message2 = try #require(response, "Expected handshake response")
let final = try alice.processHandshakeMessage(from: alicePeerID, message: message2)
let final = try alice.processHandshakeMessage(from: bobPeerID, message: message2)
let message3 = try #require(final, "Expected handshake final")
let finalMessage = try bob.processHandshakeMessage(from: bobPeerID, message: message3)
let finalMessage = try bob.processHandshakeMessage(from: alicePeerID, message: message3)
#expect(finalMessage == nil)
}
}
@@ -217,6 +444,7 @@ struct NoiseEncryptionServiceTests {
private final class AuthenticationRecorder: @unchecked Sendable {
private let lock = NSLock()
private var entries: [(PeerID, String)] = []
private var generationEntries: [(PeerID, UUID)] = []
var count: Int {
lock.lock()
@@ -224,9 +452,27 @@ private final class AuthenticationRecorder: @unchecked Sendable {
return entries.count
}
var generationCount: Int {
lock.lock()
defer { lock.unlock() }
return generationEntries.count
}
func record(peerID: PeerID, fingerprint: String) {
lock.lock()
entries.append((peerID, fingerprint))
lock.unlock()
}
func record(peerID: PeerID, fingerprint _: String, sessionGeneration: UUID) {
lock.lock()
generationEntries.append((peerID, sessionGeneration))
lock.unlock()
}
func generation(for peerID: PeerID) -> UUID? {
lock.lock()
defer { lock.unlock() }
return generationEntries.last { $0.0 == peerID }?.1
}
}
@@ -399,6 +399,59 @@ final class SecureIdentityStateManagerTests: XCTestCase {
XCTAssertTrue(cleared)
}
func test_privateMediaCapabilityPinPersistsMonotonicallyAndPanicClearRemovesIt() async {
let keychain = MockKeychain()
let fingerprint = Data(repeating: 0x42, count: 32).sha256Fingerprint()
let manager = SecureIdentityStateManager(keychain)
XCTAssertFalse(manager.hasObservedPrivateMediaCapability(fingerprint: fingerprint))
manager.markPrivateMediaCapable(fingerprint: fingerprint)
XCTAssertTrue(
manager.hasObservedPrivateMediaCapability(fingerprint: fingerprint),
"pin insertion must be synchronously visible to the next downgrade decision"
)
// Re-marking is idempotent, and the encrypted cache carries the pin
// across launches.
manager.markPrivateMediaCapable(fingerprint: fingerprint)
manager.forceSave()
let reloaded = SecureIdentityStateManager(keychain)
XCTAssertTrue(reloaded.hasObservedPrivateMediaCapability(fingerprint: fingerprint))
// ChatViewModel's panic path calls this same wipe after deleting
// keychain data; the in-memory pin must disappear immediately too.
reloaded.clearAllIdentityData()
let cleared = await waitUntil {
!reloaded.hasObservedPrivateMediaCapability(fingerprint: fingerprint)
}
XCTAssertTrue(cleared)
}
func test_noiseAuthenticatedSigningKeyBindingPersistsAndPanicClearRemovesIt() async {
let keychain = MockKeychain()
let fingerprint = Data(repeating: 0x31, count: 32).sha256Fingerprint()
let firstKey = Data(repeating: 0x41, count: 32)
let rotatedKey = Data(repeating: 0x42, count: 32)
let manager = SecureIdentityStateManager(keychain)
manager.bindAuthenticatedSigningPublicKey(firstKey, fingerprint: fingerprint)
XCTAssertEqual(manager.authenticatedSigningPublicKey(forFingerprint: fingerprint), firstKey)
// A later authenticated Noise session may legitimately rotate the
// announcement signing key.
manager.bindAuthenticatedSigningPublicKey(rotatedKey, fingerprint: fingerprint)
XCTAssertEqual(manager.authenticatedSigningPublicKey(forFingerprint: fingerprint), rotatedKey)
manager.forceSave()
let reloaded = SecureIdentityStateManager(keychain)
XCTAssertEqual(reloaded.authenticatedSigningPublicKey(forFingerprint: fingerprint), rotatedKey)
reloaded.clearAllIdentityData()
let cleared = await waitUntil {
reloaded.authenticatedSigningPublicKey(forFingerprint: fingerprint) == nil
}
XCTAssertTrue(cleared)
}
func test_forceSave_withFailingCacheWriteDoesNotPersistCache() async {
let keychain = FailingCacheSaveKeychain()
let manager = SecureIdentityStateManager(keychain)
@@ -49,7 +49,7 @@ struct TransferProgressManagerTests {
recorder.append("updated:\(id):\(sent):\(total)")
case .completed(let id, let total):
recorder.append("completed:\(id):\(total)")
case .cancelled:
case .cancelled, .rejected:
break
}
}
@@ -85,7 +85,7 @@ struct TransferProgressManagerTests {
recorder.append("started:\(id):\(total)")
case .cancelled(let id, let sent, let total):
recorder.append("cancelled:\(id):\(sent):\(total)")
case .updated, .completed:
case .updated, .completed, .rejected:
break
}
}
@@ -105,6 +105,28 @@ struct TransferProgressManagerTests {
#expect(manager.snapshot(id: transferID) == nil)
_ = cancellable
}
@Test("Preflight policy rejection publishes a visible failure reason")
@MainActor
func rejectBeforeStartPublishesReason() async {
let manager = TransferProgressManager()
let transferID = "transfer-visible-reject"
let recorder = EventRecorder()
let cancellable = manager.publisher.sink { event in
if case .rejected(let id, let reason) = event {
recorder.append("rejected:\(id):\(reason)")
}
}
manager.rejectBeforeStart(id: transferID, reason: "upgrade required")
let didReceive = await TestHelpers.waitUntil({
recorder.values == ["rejected:\(transferID):upgrade required"]
}, timeout: 5.0)
#expect(didReceive)
#expect(manager.snapshot(id: transferID) == nil)
_ = cancellable
}
}
private final class EventRecorder: @unchecked Sendable {
@@ -266,6 +266,11 @@ private final class TestIdentityManager: SecureIdentityStateManagerProtocol {
verified.removeAll()
}
func markPrivateMediaCapable(fingerprint: String) {}
func hasObservedPrivateMediaCapability(fingerprint: String) -> Bool { false }
func bindAuthenticatedSigningPublicKey(_ signingPublicKey: Data, fingerprint: String) {}
func authenticatedSigningPublicKey(forFingerprint fingerprint: String) -> Data? { nil }
func removeEphemeralSession(peerID: PeerID) {}
func setVerified(fingerprint: String, verified: Bool) {
@@ -61,6 +61,7 @@ private final class GatedVoiceCaptureSession: VoiceCaptureSession {
private let startError: Error?
private(set) var finishStarted = false
private(set) var cancelCount = 0
private(set) var panicCancelCount = 0
private var finishContinuation: CheckedContinuation<URL?, Never>?
init(startError: Error? = nil) {
@@ -83,6 +84,10 @@ private final class GatedVoiceCaptureSession: VoiceCaptureSession {
cancelCount += 1
}
func panicCancelSynchronously() {
panicCancelCount += 1
}
func resolveFinish(with url: URL?) {
let continuation = finishContinuation
finishContinuation = nil
@@ -204,4 +209,57 @@ struct VoiceCaptureSessionTests {
}
#expect(viewModel.state == .idle)
}
@Test func panicSynchronouslyCancelsActiveCaptureAndResetsUI() async {
let session = GatedVoiceCaptureSession()
let viewModel = VoiceRecordingViewModel()
viewModel.sessionProvider = { session }
viewModel.start(shouldShow: true)
await waitUntil { self.isRecording(viewModel.state) }
viewModel.panicWipe()
#expect(session.panicCancelCount == 1)
#expect(viewModel.state == .idle)
#expect(!viewModel.isLiveStreaming)
}
@Test func panicInvalidatesARecordingAlreadyFinalizing() async throws {
let session = GatedVoiceCaptureSession()
let viewModel = VoiceRecordingViewModel()
viewModel.sessionProvider = { session }
let url = FileManager.default.temporaryDirectory
.appendingPathComponent("voice-panic-\(UUID().uuidString).m4a")
try Data([0x01]).write(to: url)
var delivered = false
viewModel.start(shouldShow: true)
await waitUntil { self.isRecording(viewModel.state) }
viewModel.finish { _ in delivered = true }
await waitUntil { session.finishStarted }
viewModel.panicWipe()
session.resolveFinish(with: url)
await waitUntil {
!FileManager.default.fileExists(atPath: url.path)
}
#expect(!delivered)
#expect(viewModel.state == .idle)
}
@Test func liveSessionPanicStopsCaptureWithoutSendingControl() {
let capture = StubPTTCapture(stopResult: (nil, 0))
var sentPackets: [Data] = []
let session = PTTLiveVoiceSession(
sendPacket: { sentPackets.append($0) },
capture: capture
)
session.panicCancelSynchronously()
#expect(capture.cancelCount == 1)
#expect(sentPackets.isEmpty)
}
}
+29
View File
@@ -360,6 +360,35 @@ struct VoiceRecorderTests {
#expect(FileManager.default.fileExists(atPath: secondURL.path))
}
@Test func classicSessionPanicStopsRecorderAndDeletesFileBeforeReturning() async throws {
let directory = try makeTemporaryDirectory()
defer { try? FileManager.default.removeItem(at: directory) }
let rawSession = VoiceRecorderTestSession()
let coordinator = AudioSessionCoordinator(session: rawSession)
let factory = TestVoiceAudioRecorderFactory(plans: [.success])
let voiceRecorder = VoiceRecorder(
sessionCoordinator: coordinator,
recorderFactory: factory,
permissionGranted: { true },
paddingInterval: 0,
outputDirectory: directory
)
let capture = VoiceNoteCaptureSession(recorder: voiceRecorder)
try await capture.start()
let url = try #require(factory.urls.first)
let recorder = try #require(factory.recorders.first)
capture.panicCancelSynchronously()
#expect(recorder.stopCallCount == 1)
#expect(!recorder.isRecording)
#expect(!FileManager.default.fileExists(atPath: url.path))
await coordinator.drain()
#expect(rawSession.activationCalls == [true, false])
}
private func verifyFailedStart(
firstPlan: TestVoiceAudioRecorderFactory.Plan,
expectedPrepareCalls: Int,
+107
View File
@@ -0,0 +1,107 @@
# Private-media wire migration
Private files use the `BitchatFilePacket` TLV shared by iOS and Android. The
preferred direct-message wire form encrypts that complete TLV inside the
peer's Noise session before BLE fragmentation.
## Wire values and capability
- `NoisePayloadType.privateFile` is `0x20`, the value already deployed by the
Android client. New sends must use this value.
- iOS temporarily accepts `0x09`, which appeared in prerelease builds of the
private-media change. Decoders canonicalize it to `privateFile`; they never
emit it.
- `NoisePayloadType.authenticatedPeerState` is permanently assigned `0x21`.
It is emitted after every completed/rekeyed Noise XX session and echoed at
most once when the remote state arrives, so message-3/proof reordering over
different mesh links converges. This type is part of the protocol security
boundary and is not removed when the media migration ends.
- The `0x21` payload starts with version `0x01`, followed by one-byte
type/length/value fields. Version 1 requires canonical TLV `0x01` (the
minimal little-endian `PeerCapabilities` bitfield, 1-8 bytes) and TLV `0x02`
(the 32-byte Ed25519 announcement signing key). Duplicate required fields,
non-minimal capabilities, malformed lengths, missing fields, and unknown
versions are ignored without changing state. Unknown TLVs are skipped.
- The public `PeerCapabilities.privateMedia` announce bit is a discovery hint:
it starts a Noise handshake, but never selects encrypted sending or creates
a pin. A private transfer waits boundedly for the exact session's encrypted
`0x21`. A valid bit-8 proof selects Noise `0x20`; a valid no-bit proof or a
no-proof timeout reaches the explicit legacy-consent path for an unpinned
peer. No timeout automatically sends raw bytes.
- An unpinned peer with a stable Noise key but without that capability is
eligible for one signed, directed
`fileTransfer`, matching the pre-migration wire form used by older iOS and
accepted by current Android clients, only after the sender confirms a
per-send warning that the file is not end-to-end encrypted and mesh relays
can see it. The
consent is consumed by that invocation and is never remembered.
- A signed announce never creates a pin by itself: an attacker can copy a
victim's public Noise key, supply its own Ed25519 key and capability bits,
and self-sign an internally consistent announce. Only successfully
decrypted `0x21` state pins the authenticated Noise fingerprint and binds
the Ed25519 key used by later announces/public messages. A later valid
no-bit `0x21` is treated as a downgrade, and raw fallback is blocked even if
a caller presents legacy consent. Public no-bit announces cannot overwrite
current session-authenticated state.
- During migration, both an absent capabilities TLV and an explicit TLV
without `privateMedia` are legacy-eligible when that stable fingerprint is
not pinned. This supports clients that added capability advertisement before
encrypted media. Neither shape bypasses a previously authenticated pin.
Older clients decrypt and ignore unknown inner type `0x21`; they do not need to
understand it to continue using text or the warned legacy media path. They are
never inferred capable merely because the handshake succeeded.
Removal gates are independent and must not share an arbitrary calendar date:
- Remove the `0x09` receive alias only after every TestFlight/internal build
that emitted it has expired and minimum-supported-client policy excludes it.
- Remove the signed directed raw `0x22` fallback only after minimum-supported
iOS and Android clients emit authenticated bit-8 `0x21` state and the legacy
population has aged out.
- Nostr kind `1059` compatibility is a separate envelope migration. Its dual
publish/removal gate is not evidence that either BLE compatibility shape can
be removed.
## Security boundary
The encrypted form provides Noise confidentiality and peer authentication.
The fallback is signed and its signature is required on receive, so relays
cannot forge its sender or contents. It is not confidential: relays can see
the raw file TLV. The UI says this explicitly and asks on every send. A peer
without a stable Noise key from a verified registry entry cannot use the
fallback. Keep it only for the mixed-version migration, and remove it only
after minimum-supported Android and iOS releases emit authenticated bit-8
`0x21` state and the legacy population has aged out. Never replace it with an
unsigned fallback, persist blanket consent, or send both forms.
Incoming clients accept all three migration-era shapes:
| Sender | Inbound form | Result |
| --- | --- | --- |
| Current Android | Noise `0x20` | Decrypt and deliver |
| Prerelease iOS | Noise `0x09` | Decrypt, canonicalize, and deliver |
| Older client | Signed directed `fileTransfer` | Verify signature and deliver |
| Forged/unsigned raw sender | Directed `fileTransfer` | Reject |
Panic wipe clears the persistent capability pins together with the rest of
the encrypted identity cache.
This migration path is mesh-Noise-only (BLE and compatible direct mesh links).
Nostr private-media transport is unchanged and remains a follow-up. Nostr
inbound paths explicitly ignore `0x21`; do not infer the mesh consent fallback
or capability-pin semantics for Nostr delivery.
## Size interoperability
iOS bounds inbound file content at 1 MiB and applies the expanded allocation
budget only after a large Noise ciphertext authenticates to `0x20` or the
temporary `0x09` alias. Ordinary Noise messages retain their 64 KiB limit.
Current Android builds cap each reassembly at 256 fragments. Depending on the
negotiated BLE packet size and routing overhead, that is roughly 110-120 KiB,
well below iOS's absolute inbound ceiling. Private-media v1 therefore runs the
actual route-aware BLE fragment planner before both encrypted and consented
legacy sends and rejects any plan above 256 fragments with a visible failure.
This fragment-count contract, rather than a guessed byte threshold, stays
correct as route overhead changes.
+2 -2
View File
@@ -48,7 +48,7 @@ Residual risk: private-message metadata such as timing, radio adjacency, ciphert
- Recent signed public mesh messages are archived in Application Support for up to 15 minutes so gossip sync survives a relaunch and can cross mesh partitions.
- Signed public board posts and tombstones persist until author-selected expiry, at most seven days. Stores are bounded by global and per-author quotas.
- Group metadata (name, roster, creator, epoch) persists as protected JSON; group keys live in the keychain until leave/removal/wipe.
- Voice notes and images are stored in Application Support. Incoming media has a 100 MB oldest-first quota; outgoing media does not have an equivalent automatic lifetime and remains until cleanup, panic wipe, or app removal.
- Voice notes and images are stored in Application Support. Incoming media has a 100 MB oldest-first quota; outgoing media does not have an equivalent automatic lifetime and remains until cleanup, panic wipe, or app removal. Panic wipe invalidates detached preparation work, cancels active transfers, closes live capture files, and removes the managed media tree before returning.
Public archives contain content already intended for public mesh/board distribution, but a seized unlocked device can reveal it. Group metadata and media can reveal relationships or content even when the in-memory chat timeline has gone away.
@@ -88,7 +88,7 @@ Residual risk: Nostr relay retention and logging are outside project control. Pu
## Panic Wipe Coverage
The panic action clears identity/session state, preferences, location state, groups, prekeys, outbox mail, courier mail, bridge dedup state, gossip archive, board data, managed media, and active subscriptions/transports. New persistent stores must add an explicit wipe hook and a regression test.
The panic action clears identity/session state, preferences, location state, groups, prekeys, outbox mail, courier mail, bridge dedup state, gossip archive, board data, managed media, and active subscriptions/transports. Managed media deletion completes synchronously, after active media work has been invalidated. Keychain secrets use device-only accessibility, and an install marker detects and clears app keys that survive uninstall before a later reinstall can use them. New persistent stores must add an explicit wipe hook and a regression test.
## Release Review Checklist
@@ -24,6 +24,10 @@ public struct PeerCapabilities: OptionSet, Equatable, Hashable, Sendable {
/// (uplink/downlink carriers for mesh-only peers). Advertised alongside
/// a `bridgeGeohash` TLV carrying the rendezvous cell.
public static let bridge = PeerCapabilities(rawValue: 1 << 7)
/// Finalized direct-message media encrypted as Noise payload `0x20`
/// before outer BLE fragmentation. Peers that omit this bit require the
/// signed directed raw-file migration fallback.
public static let privateMedia = PeerCapabilities(rawValue: 1 << 8)
/// Minimal little-endian byte encoding; always at least one byte so an
/// empty set is distinguishable from an absent TLV.
@@ -16,11 +16,12 @@ struct PeerCapabilitiesTests {
#expect(PeerCapabilities([]).encoded() == Data([0x00]))
#expect(PeerCapabilities.prekeys.encoded() == Data([0x01]))
#expect(PeerCapabilities.meshDiagnostics.encoded() == Data([0x40]))
#expect(PeerCapabilities.privateMedia.encoded() == Data([0x00, 0x01]))
let high = PeerCapabilities(rawValue: 1 << 9)
#expect(high.encoded() == Data([0x00, 0x02]))
let all: PeerCapabilities = [.prekeys, .wifiBulk, .gateway, .groups, .board, .vouch, .meshDiagnostics]
let all: PeerCapabilities = [.prekeys, .wifiBulk, .gateway, .groups, .board, .vouch, .meshDiagnostics, .privateMedia]
#expect(PeerCapabilities(encoded: all.encoded()) == all)
#expect(PeerCapabilities(encoded: high.encoded()) == high)
#expect(PeerCapabilities(encoded: PeerCapabilities([]).encoded()) == [])