Files
bitchat-android/app/src/main/java/com/bitchat/android/mesh/BluetoothMeshService.kt
T

1426 lines
63 KiB
Kotlin

package com.bitchat.android.mesh
import android.content.Context
import android.util.Log
import com.bitchat.android.crypto.EncryptionService
import com.bitchat.android.model.BitchatMessage
import com.bitchat.android.protocol.MessagePadding
import com.bitchat.android.model.RoutedPacket
import com.bitchat.android.model.IdentityAnnouncement
import com.bitchat.android.model.NoisePayload
import com.bitchat.android.model.NoisePayloadType
import com.bitchat.android.protocol.BitchatPacket
import com.bitchat.android.protocol.MessageType
import com.bitchat.android.protocol.SpecialRecipients
import com.bitchat.android.model.RequestSyncPacket
import com.bitchat.android.sync.GossipSyncManager
import com.bitchat.android.util.toHexString
import com.bitchat.android.services.VerificationService
import kotlinx.coroutines.*
import java.util.*
import kotlin.math.sign
import kotlin.random.Random
/**
* Bluetooth mesh service - REFACTORED to use component-based architecture
* 100% compatible with iOS version and maintains exact same UUIDs, packet format, and protocol logic
*
* This is now a coordinator that orchestrates the following components:
* - PeerManager: Peer lifecycle management
* - FragmentManager: Message fragmentation and reassembly
* - SecurityManager: Security, duplicate detection, encryption
* - StoreForwardManager: Offline message caching
* - MessageHandler: Message type processing and relay logic
* - BluetoothConnectionManager: BLE connections and GATT operations
* - PacketProcessor: Incoming packet routing
*/
class BluetoothMeshService(private val context: Context) {
private val debugManager by lazy { try { com.bitchat.android.ui.debug.DebugSettingsManager.getInstance() } catch (e: Exception) { null } }
companion object {
private const val TAG = "BluetoothMeshService"
private val MAX_TTL: UByte = com.bitchat.android.util.AppConstants.MESSAGE_TTL_HOPS
}
// Core components - each handling specific responsibilities
private val encryptionService = EncryptionService(context)
// My peer identification - derived from persisted Noise identity fingerprint (first 16 hex chars)
val myPeerID: String = encryptionService.getIdentityFingerprint().take(16)
private val peerManager = PeerManager()
private val fragmentManager = FragmentManager()
private val securityManager = SecurityManager(encryptionService, myPeerID)
private val storeForwardManager = StoreForwardManager()
private val messageHandler = MessageHandler(myPeerID, context.applicationContext)
internal val connectionManager = BluetoothConnectionManager(context, myPeerID, fragmentManager) // Made internal for access
private val packetProcessor = PacketProcessor(myPeerID)
private lateinit var gossipSyncManager: GossipSyncManager
// Service-level notification manager for background (no-UI) DMs
private val serviceNotificationManager = com.bitchat.android.ui.NotificationManager(
context.applicationContext,
androidx.core.app.NotificationManagerCompat.from(context.applicationContext),
com.bitchat.android.util.NotificationIntervalManager()
)
// Service state management
private var isActive = false
// Delegate for message callbacks (maintains same interface)
var delegate: BluetoothMeshDelegate? = null
// Coroutines
private val serviceScope = CoroutineScope(Dispatchers.IO + SupervisorJob())
// Tracks whether this instance has been terminated via stopServices()
private var terminated = false
init {
Log.i(TAG, "Initializing BluetoothMeshService for peer=$myPeerID")
VerificationService.configure(encryptionService)
setupDelegates()
messageHandler.packetProcessor = packetProcessor
//startPeriodicDebugLogging()
// Initialize sync manager (needs serviceScope)
gossipSyncManager = GossipSyncManager(
myPeerID = myPeerID,
scope = serviceScope,
configProvider = object : GossipSyncManager.ConfigProvider {
override fun seenCapacity(): Int = try {
com.bitchat.android.ui.debug.DebugPreferenceManager.getSeenPacketCapacity(500)
} catch (_: Exception) { 500 }
override fun gcsMaxBytes(): Int = try {
com.bitchat.android.ui.debug.DebugPreferenceManager.getGcsMaxFilterBytes(400)
} catch (_: Exception) { 400 }
override fun gcsTargetFpr(): Double = try {
com.bitchat.android.ui.debug.DebugPreferenceManager.getGcsFprPercent(1.0) / 100.0
} catch (_: Exception) { 0.01 }
}
)
// Wire sync manager delegate
gossipSyncManager.delegate = object : GossipSyncManager.Delegate {
override fun sendPacket(packet: BitchatPacket) {
connectionManager.broadcastPacket(RoutedPacket(packet))
}
override fun sendPacketToPeer(peerID: String, packet: BitchatPacket) {
connectionManager.sendPacketToPeer(peerID, packet)
}
override fun signPacketForBroadcast(packet: BitchatPacket): BitchatPacket {
return signPacketBeforeBroadcast(packet)
}
}
// Inject dynamic direct connection check into PeerManager
// Matches iOS logic: checks if we have an active hardware mapping for this peer
peerManager.isPeerDirectlyConnected = { peerID ->
connectionManager.addressPeerMap.containsValue(peerID)
}
Log.d(TAG, "Delegates set up; GossipSyncManager initialized")
}
/**
* Start periodic debug logging every 10 seconds
*/
private fun startPeriodicDebugLogging() {
serviceScope.launch {
Log.d(TAG, "Starting periodic debug logging loop")
while (isActive) {
try {
delay(10000) // 10 seconds
if (isActive) { // Double-check before logging
val debugInfo = getDebugStatus()
Log.d(TAG, "=== PERIODIC DEBUG STATUS ===\n$debugInfo\n=== END DEBUG STATUS ===")
}
} catch (e: Exception) {
Log.e(TAG, "Error in periodic debug logging: ${e.message}")
}
}
Log.d(TAG, "Periodic debug logging loop ended (isActive=$isActive)")
}
}
/**
* Send broadcast announcement every 30 seconds
*/
private fun sendPeriodicBroadcastAnnounce() {
serviceScope.launch {
Log.d(TAG, "Starting periodic announce loop")
while (isActive) {
try {
delay(30000) // 30 seconds
sendBroadcastAnnounce()
} catch (e: Exception) {
Log.e(TAG, "Error in periodic broadcast announce: ${e.message}")
}
}
Log.d(TAG, "Periodic announce loop ended (isActive=$isActive)")
}
}
/**
* Setup delegate connections between components
*/
private fun setupDelegates() {
Log.d(TAG, "Setting up component delegates")
// Provide nickname resolver to BLE broadcaster for detailed logs
try {
connectionManager.setNicknameResolver { pid -> peerManager.getPeerNickname(pid) }
} catch (_: Exception) { }
// PeerManager delegates to main mesh service delegate
peerManager.delegate = object : PeerManagerDelegate {
override fun onPeerListUpdated(peerIDs: List<String>) {
// Update process-wide state first
try { com.bitchat.android.services.AppStateStore.setPeers(peerIDs) } catch (_: Exception) { }
// Then notify UI delegate if attached
delegate?.didUpdatePeerList(peerIDs)
}
override fun onPeerRemoved(peerID: String) {
try { gossipSyncManager.removeAnnouncementForPeer(peerID) } catch (_: Exception) { }
// Also drop any Noise session state for this peer when they go offline
try {
encryptionService.removePeer(peerID)
Log.d(TAG, "Removed Noise session for offline peer $peerID")
} catch (e: Exception) {
Log.w(TAG, "Failed to remove Noise session for $peerID: ${e.message}")
}
}
}
// SecurityManager delegate for key exchange notifications
securityManager.delegate = object : SecurityManagerDelegate {
override fun onKeyExchangeCompleted(peerID: String, peerPublicKeyData: ByteArray) {
// Send announcement and cached messages after key exchange
serviceScope.launch {
Log.d(TAG, "Key exchange completed with $peerID; sending follow-ups")
delay(100)
sendAnnouncementToPeer(peerID)
delay(1000)
storeForwardManager.sendCachedMessages(peerID)
}
}
override fun sendHandshakeResponse(peerID: String, response: ByteArray) {
// Send Noise handshake response
val responsePacket = BitchatPacket(
version = 1u,
type = MessageType.NOISE_HANDSHAKE.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = hexStringToByteArray(peerID),
timestamp = System.currentTimeMillis().toULong(),
payload = response,
ttl = MAX_TTL
)
// Sign the handshake response
val signedPacket = signPacketBeforeBroadcast(responsePacket)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
Log.d(TAG, "Sent Noise handshake response to $peerID (${response.size} bytes)")
}
override fun getPeerInfo(peerID: String): PeerInfo? {
return peerManager.getPeerInfo(peerID)
}
}
// StoreForwardManager delegates
storeForwardManager.delegate = object : StoreForwardManagerDelegate {
override fun isFavorite(peerID: String): Boolean {
return delegate?.isFavorite(peerID) ?: false
}
override fun isPeerOnline(peerID: String): Boolean {
return peerManager.isPeerActive(peerID)
}
override fun sendPacket(packet: BitchatPacket) {
connectionManager.broadcastPacket(RoutedPacket(packet))
}
}
// MessageHandler delegates
messageHandler.delegate = object : MessageHandlerDelegate {
// Peer management
override fun addOrUpdatePeer(peerID: String, nickname: String): Boolean {
return peerManager.addOrUpdatePeer(peerID, nickname)
}
override fun removePeer(peerID: String) {
peerManager.removePeer(peerID)
}
override fun updatePeerNickname(peerID: String, nickname: String) {
peerManager.addOrUpdatePeer(peerID, nickname)
}
override fun getPeerNickname(peerID: String): String? {
return peerManager.getPeerNickname(peerID)
}
override fun getNetworkSize(): Int {
return peerManager.getActivePeerCount()
}
override fun getMyNickname(): String? {
return delegate?.getNickname()
}
override fun getPeerInfo(peerID: String): PeerInfo? {
return peerManager.getPeerInfo(peerID)
}
override fun updatePeerInfo(peerID: String, nickname: String, noisePublicKey: ByteArray, signingPublicKey: ByteArray, isVerified: Boolean): Boolean {
return peerManager.updatePeerInfo(peerID, nickname, noisePublicKey, signingPublicKey, isVerified)
}
// Packet operations
override fun sendPacket(packet: BitchatPacket) {
// Sign the packet before broadcasting
val signedPacket = signPacketBeforeBroadcast(packet)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
}
override fun relayPacket(routed: RoutedPacket) {
connectionManager.broadcastPacket(routed)
}
override fun getBroadcastRecipient(): ByteArray {
return SpecialRecipients.BROADCAST
}
// Cryptographic operations
override fun verifySignature(packet: BitchatPacket, peerID: String): Boolean {
return securityManager.verifySignature(packet, peerID)
}
override fun encryptForPeer(data: ByteArray, recipientPeerID: String): ByteArray? {
return securityManager.encryptForPeer(data, recipientPeerID)
}
override fun decryptFromPeer(encryptedData: ByteArray, senderPeerID: String): ByteArray? {
return securityManager.decryptFromPeer(encryptedData, senderPeerID)
}
override fun verifyEd25519Signature(signature: ByteArray, data: ByteArray, publicKey: ByteArray): Boolean {
return encryptionService.verifyEd25519Signature(signature, data, publicKey)
}
// Noise protocol operations
override fun hasNoiseSession(peerID: String): Boolean {
return encryptionService.hasEstablishedSession(peerID)
}
override fun initiateNoiseHandshake(peerID: String) {
try {
// Initiate proper Noise handshake with specific peer
val handshakeData = encryptionService.initiateHandshake(peerID)
if (handshakeData != null) {
val packet = BitchatPacket(
version = 1u,
type = MessageType.NOISE_HANDSHAKE.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = hexStringToByteArray(peerID),
timestamp = System.currentTimeMillis().toULong(),
payload = handshakeData,
ttl = MAX_TTL
)
// Sign the handshake packet before broadcasting
val signedPacket = signPacketBeforeBroadcast(packet)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
Log.d(TAG, "Initiated Noise handshake with $peerID (${handshakeData.size} bytes)")
} else {
Log.w(TAG, "Failed to generate Noise handshake data for $peerID")
}
} catch (e: Exception) {
Log.e(TAG, "Failed to initiate Noise handshake with $peerID: ${e.message}")
}
}
override fun processNoiseHandshakeMessage(payload: ByteArray, peerID: String): ByteArray? {
return try {
encryptionService.processHandshakeMessage(payload, peerID)
} catch (e: Exception) {
Log.e(TAG, "Failed to process handshake message from $peerID: ${e.message}")
null
}
}
override fun updatePeerIDBinding(newPeerID: String, nickname: String,
publicKey: ByteArray, previousPeerID: String?) {
Log.d(TAG, "Updating peer ID binding: $newPeerID (was: $previousPeerID) with nickname: $nickname and public key: ${publicKey.toHexString().take(16)}...")
// Update peer mapping in the PeerManager for peer ID rotation support
peerManager.addOrUpdatePeer(newPeerID, nickname)
// Store fingerprint for the peer via centralized fingerprint manager
val fingerprint = peerManager.storeFingerprintForPeer(newPeerID, publicKey)
// Index existing Nostr mapping by the new peerID if we have it
try {
com.bitchat.android.favorites.FavoritesPersistenceService.shared.findNostrPubkey(publicKey)?.let { npub ->
com.bitchat.android.favorites.FavoritesPersistenceService.shared.updateNostrPublicKeyForPeerID(newPeerID, npub)
}
} catch (_: Exception) { }
// If there was a previous peer ID, remove it to avoid duplicates
previousPeerID?.let { oldPeerID ->
peerManager.removePeer(oldPeerID)
}
Log.d(TAG, "Updated peer ID binding: $newPeerID (was: $previousPeerID), fingerprint: ${fingerprint.take(16)}...")
}
// Message operations
override fun decryptChannelMessage(encryptedContent: ByteArray, channel: String): String? {
return delegate?.decryptChannelMessage(encryptedContent, channel)
}
// Callbacks
override fun onMessageReceived(message: BitchatMessage) {
// Always reflect into process-wide store so UI can hydrate after recreation
try {
when {
message.isPrivate -> {
val peer = message.senderPeerID ?: ""
if (peer.isNotEmpty()) com.bitchat.android.services.AppStateStore.addPrivateMessage(peer, message)
}
message.channel != null -> {
com.bitchat.android.services.AppStateStore.addChannelMessage(message.channel!!, message)
}
else -> {
com.bitchat.android.services.AppStateStore.addPublicMessage(message)
}
}
} catch (_: Exception) { }
// And forward to UI delegate if attached
delegate?.didReceiveMessage(message)
// If no UI delegate attached (app closed), show DM notification via service manager
if (delegate == null && message.isPrivate) {
try {
val senderPeerID = message.senderPeerID
if (senderPeerID != null) {
val nick = try { peerManager.getPeerNickname(senderPeerID) } catch (_: Exception) { null } ?: senderPeerID
val preview = com.bitchat.android.ui.NotificationTextUtils.buildPrivateMessagePreview(message)
serviceNotificationManager.setAppBackgroundState(true)
serviceNotificationManager.showPrivateMessageNotification(senderPeerID, nick, preview)
}
} catch (_: Exception) { }
}
}
override fun onChannelLeave(channel: String, fromPeer: String) {
delegate?.didReceiveChannelLeave(channel, fromPeer)
}
override fun onDeliveryAckReceived(messageID: String, peerID: String) {
delegate?.didReceiveDeliveryAck(messageID, peerID)
}
override fun onReadReceiptReceived(messageID: String, peerID: String) {
delegate?.didReceiveReadReceipt(messageID, peerID)
}
override fun onVerifyChallengeReceived(peerID: String, payload: ByteArray, timestampMs: Long) {
delegate?.didReceiveVerifyChallenge(peerID, payload, timestampMs)
}
override fun onVerifyResponseReceived(peerID: String, payload: ByteArray, timestampMs: Long) {
delegate?.didReceiveVerifyResponse(peerID, payload, timestampMs)
}
}
// PacketProcessor delegates
packetProcessor.delegate = object : PacketProcessorDelegate {
override fun validatePacketSecurity(packet: BitchatPacket, peerID: String): Boolean {
return securityManager.validatePacket(packet, peerID)
}
override fun updatePeerLastSeen(peerID: String) {
peerManager.updatePeerLastSeen(peerID)
}
override fun getPeerNickname(peerID: String): String? {
return peerManager.getPeerNickname(peerID)
}
// Network information for relay manager
override fun getNetworkSize(): Int {
return peerManager.getActivePeerCount()
}
override fun getBroadcastRecipient(): ByteArray {
return SpecialRecipients.BROADCAST
}
override fun handleNoiseHandshake(routed: RoutedPacket): Boolean {
return runBlocking { securityManager.handleNoiseHandshake(routed) }
}
override fun handleNoiseEncrypted(routed: RoutedPacket) {
serviceScope.launch { messageHandler.handleNoiseEncrypted(routed) }
}
override fun handleAnnounce(routed: RoutedPacket) {
serviceScope.launch {
// Process the announce
val isFirst = messageHandler.handleAnnounce(routed)
// Map device address -> peerID based on TTL (max TTL = direct neighbor)
// Matches iOS logic: any announce with max TTL on a link defines the direct peer
val deviceAddress = routed.relayAddress
val pid = routed.peerID
if (deviceAddress != null && pid != null) {
// Check if this is a direct connection (MAX TTL)
// Note: packet.ttl is UByte, compare with AppConstants.MESSAGE_TTL_HOPS
val isDirect = routed.packet.ttl == com.bitchat.android.util.AppConstants.MESSAGE_TTL_HOPS
if (isDirect) {
// Bind or rebind this device address to the announcing peer
connectionManager.addressPeerMap[deviceAddress] = pid
Log.d(TAG, "Mapped device $deviceAddress to peer $pid (TTL=${routed.packet.ttl})")
// Mark as directly connected - refresh UI state
try { peerManager.refreshPeerList() } catch (_: Exception) { }
// Initial sync for this direct peer
try { gossipSyncManager.scheduleInitialSyncToPeer(pid, 1_000) } catch (_: Exception) { }
}
}
// Track for sync
try { gossipSyncManager.onPublicPacketSeen(routed.packet) } catch (_: Exception) { }
}
}
override fun handleMessage(routed: RoutedPacket) {
serviceScope.launch { messageHandler.handleMessage(routed) }
// Track broadcast messages for sync
try {
val pkt = routed.packet
val isBroadcast = (pkt.recipientID == null || pkt.recipientID.contentEquals(SpecialRecipients.BROADCAST))
if (isBroadcast && pkt.type == MessageType.MESSAGE.value) {
gossipSyncManager.onPublicPacketSeen(pkt)
}
} catch (_: Exception) { }
}
override fun handleLeave(routed: RoutedPacket) {
serviceScope.launch { messageHandler.handleLeave(routed) }
}
override fun handleFragment(packet: BitchatPacket): BitchatPacket? {
// Track broadcast fragments for gossip sync
try {
val isBroadcast = (packet.recipientID == null || packet.recipientID.contentEquals(SpecialRecipients.BROADCAST))
if (isBroadcast && packet.type == MessageType.FRAGMENT.value) {
gossipSyncManager.onPublicPacketSeen(packet)
}
} catch (_: Exception) { }
return fragmentManager.handleFragment(packet)
}
override fun sendAnnouncementToPeer(peerID: String) {
this@BluetoothMeshService.sendAnnouncementToPeer(peerID)
}
override fun sendCachedMessages(peerID: String) {
storeForwardManager.sendCachedMessages(peerID)
}
override fun relayPacket(routed: RoutedPacket) {
connectionManager.broadcastPacket(routed)
}
override fun sendToPeer(peerID: String, routed: RoutedPacket): Boolean {
return connectionManager.sendToPeer(peerID, routed)
}
override fun handleRequestSync(routed: RoutedPacket) {
// Decode request and respond with missing packets
val fromPeer = routed.peerID ?: return
val req = RequestSyncPacket.decode(routed.packet.payload) ?: return
gossipSyncManager.handleRequestSync(fromPeer, req)
}
}
// BluetoothConnectionManager delegates
connectionManager.delegate = object : BluetoothConnectionManagerDelegate {
override fun onPacketReceived(packet: BitchatPacket, peerID: String, device: android.bluetooth.BluetoothDevice?) {
// Log incoming for debug graphs (do not double-count anywhere else)
try {
val nick = getPeerNicknames()[peerID]
com.bitchat.android.ui.debug.DebugSettingsManager.getInstance().logIncoming(
packetType = packet.type.toString(),
fromPeerID = peerID,
fromNickname = nick,
fromDeviceAddress = device?.address
)
} catch (_: Exception) { }
packetProcessor.processPacket(RoutedPacket(packet, peerID, device?.address))
}
override fun onDeviceConnected(device: android.bluetooth.BluetoothDevice) {
// Send initial announcements after services are ready
serviceScope.launch {
Log.d(TAG, "Device connected: ${device.address}; scheduling announce")
delay(200)
sendBroadcastAnnounce()
}
// Verbose debug: device connected
try {
val addr = device.address
val peer = connectionManager.addressPeerMap[addr]
val nick = peer?.let { peerManager.getPeerNickname(it) } ?: "unknown"
com.bitchat.android.ui.debug.DebugSettingsManager.getInstance()
.logPeerConnection(peer ?: "unknown", nick, addr, isInbound = !connectionManager.isClientConnection(addr)!!)
} catch (_: Exception) { }
}
override fun onDeviceDisconnected(device: android.bluetooth.BluetoothDevice) {
Log.d(TAG, "Device disconnected: ${device.address}")
val addr = device.address
// Remove mapping and, if that was the last direct path for the peer, clear direct flag
val peer = connectionManager.addressPeerMap[addr]
// ConnectionTracker has already removed the address mapping; be defensive either way
connectionManager.addressPeerMap.remove(addr)
if (peer != null) {
val stillMapped = connectionManager.addressPeerMap.values.any { it == peer }
if (!stillMapped) {
// Peer might still be reachable indirectly; refresh to update state
try { peerManager.refreshPeerList() } catch (_: Exception) { }
}
// Verbose debug: device disconnected
try {
val nick = peerManager.getPeerNickname(peer) ?: "unknown"
com.bitchat.android.ui.debug.DebugSettingsManager.getInstance()
.logPeerDisconnection(peer, nick, addr)
} catch (_: Exception) { }
}
}
override fun onRSSIUpdated(deviceAddress: String, rssi: Int) {
// Find the peer ID for this device address and update RSSI in PeerManager
connectionManager.addressPeerMap[deviceAddress]?.let { peerID ->
peerManager.updatePeerRSSI(peerID, rssi)
}
}
}
}
/**
* Start the mesh service
*/
fun startServices() {
// Prevent double starts (defensive programming)
if (isActive) {
Log.w(TAG, "Mesh service already active, ignoring duplicate start request")
return
}
if (terminated) {
// This instance's scope was cancelled previously; refuse to start to avoid using dead scopes.
Log.e(TAG, "Mesh service instance was terminated; create a new instance instead of restarting")
return
}
Log.i(TAG, "Starting Bluetooth mesh service with peer ID: $myPeerID")
if (connectionManager.startServices()) {
isActive = true
// Start periodic announcements for peer discovery and connectivity
sendPeriodicBroadcastAnnounce()
Log.d(TAG, "Started periodic broadcast announcements (every 30 seconds)")
// Start periodic syncs
gossipSyncManager.start()
Log.d(TAG, "GossipSyncManager started")
} else {
Log.e(TAG, "Failed to start Bluetooth services")
}
}
/**
* Stop all mesh services
*/
fun stopServices() {
if (!isActive) {
Log.w(TAG, "Mesh service not active, ignoring stop request")
return
}
Log.i(TAG, "Stopping Bluetooth mesh service")
isActive = false
// Send leave announcement
sendLeaveAnnouncement()
serviceScope.launch {
Log.d(TAG, "Stopping subcomponents and cancelling scope...")
delay(200) // Give leave message time to send
// Stop all components
gossipSyncManager.stop()
Log.d(TAG, "GossipSyncManager stopped")
connectionManager.stopServices()
Log.d(TAG, "BluetoothConnectionManager stop requested")
peerManager.shutdown()
fragmentManager.shutdown()
securityManager.shutdown()
storeForwardManager.shutdown()
messageHandler.shutdown()
packetProcessor.shutdown()
// Mark this instance as terminated and cancel its scope so it won't be reused
terminated = true
serviceScope.cancel()
Log.i(TAG, "BluetoothMeshService terminated and scope cancelled")
}
}
/**
* Whether this instance can be safely reused. Returns false after stopServices() or if
* any critical internal scope has been cancelled.
*/
fun isReusable(): Boolean {
val reusable = !terminated && serviceScope.isActive && connectionManager.isReusable()
if (!reusable) {
Log.d(TAG, "isReusable=false (terminated=$terminated, scopeActive=${serviceScope.isActive}, connReusable=${connectionManager.isReusable()})")
}
return reusable
}
/**
* Send public message
*/
fun sendMessage(content: String, mentions: List<String> = emptyList(), channel: String? = null) {
if (content.isEmpty()) return
serviceScope.launch {
val packet = BitchatPacket(
version = 1u,
type = MessageType.MESSAGE.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = SpecialRecipients.BROADCAST,
timestamp = System.currentTimeMillis().toULong(),
payload = content.toByteArray(Charsets.UTF_8),
signature = null,
ttl = MAX_TTL
)
// Sign the packet before broadcasting
val signedPacket = signPacketBeforeBroadcast(packet)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
// Track our own broadcast message for sync
try { gossipSyncManager.onPublicPacketSeen(signedPacket) } catch (_: Exception) { }
}
}
/**
* Send a file over mesh as a broadcast MESSAGE (public mesh timeline/channels).
*/
fun sendFileBroadcast(file: com.bitchat.android.model.BitchatFilePacket) {
try {
Log.d(TAG, "📤 sendFileBroadcast: name=${file.fileName}, size=${file.fileSize}")
val payload = file.encode()
if (payload == null) {
Log.e(TAG, "❌ Failed to encode file packet in sendFileBroadcast")
return
}
Log.d(TAG, "📦 Encoded payload: ${payload.size} bytes")
serviceScope.launch {
val packet = BitchatPacket(
version = 2u, // FILE_TRANSFER uses v2 for 4-byte payload length to support large files
type = MessageType.FILE_TRANSFER.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = SpecialRecipients.BROADCAST,
timestamp = System.currentTimeMillis().toULong(),
payload = payload,
signature = null,
ttl = MAX_TTL
)
val signed = signPacketBeforeBroadcast(packet)
// Use a stable transferId based on the file TLV payload for progress tracking
val transferId = sha256Hex(payload)
connectionManager.broadcastPacket(RoutedPacket(signed, transferId = transferId))
try { gossipSyncManager.onPublicPacketSeen(signed) } catch (_: Exception) { }
}
} catch (e: Exception) {
Log.e(TAG, "❌ sendFileBroadcast failed: ${e.message}", e)
Log.e(TAG, "❌ File: name=${file.fileName}, size=${file.fileSize}")
}
}
/**
* Send a file as an encrypted private message using Noise protocol
*/
fun sendFilePrivate(recipientPeerID: String, file: com.bitchat.android.model.BitchatFilePacket) {
try {
Log.d(TAG, "📤 sendFilePrivate (ENCRYPTED): to=$recipientPeerID, name=${file.fileName}, size=${file.fileSize}")
serviceScope.launch {
// Check if we have an established Noise session
if (encryptionService.hasEstablishedSession(recipientPeerID)) {
try {
// Encode the file packet as TLV
val filePayload = file.encode()
if (filePayload == null) {
Log.e(TAG, "❌ Failed to encode file packet for private send")
return@launch
}
Log.d(TAG, "📦 Encoded file TLV: ${filePayload.size} bytes")
// Create NoisePayload wrapper (type byte + file TLV data) - same as iOS
val noisePayload = com.bitchat.android.model.NoisePayload(
type = com.bitchat.android.model.NoisePayloadType.FILE_TRANSFER,
data = filePayload
)
// Encrypt the payload using Noise
val encrypted = encryptionService.encrypt(noisePayload.encode(), recipientPeerID)
if (encrypted == null) {
Log.e(TAG, "❌ Failed to encrypt file for $recipientPeerID")
return@launch
}
Log.d(TAG, "🔐 Encrypted file payload: ${encrypted.size} bytes")
// Create NOISE_ENCRYPTED packet (not FILE_TRANSFER!)
val packet = BitchatPacket(
version = 1u,
type = MessageType.NOISE_ENCRYPTED.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = hexStringToByteArray(recipientPeerID),
timestamp = System.currentTimeMillis().toULong(),
payload = encrypted,
signature = null,
ttl = com.bitchat.android.util.AppConstants.MESSAGE_TTL_HOPS
)
// Sign and send the encrypted packet
val signed = signPacketBeforeBroadcast(packet)
// Use a stable transferId based on the unencrypted file TLV payload for progress tracking
val transferId = sha256Hex(filePayload)
connectionManager.broadcastPacket(RoutedPacket(signed, transferId = transferId))
Log.d(TAG, "✅ Sent encrypted file to $recipientPeerID")
} catch (e: Exception) {
Log.e(TAG, "❌ Failed to encrypt file for $recipientPeerID: ${e.message}", e)
}
} else {
// No session - initiate handshake but don't queue file
Log.w(TAG, "⚠️ No Noise session with $recipientPeerID for file transfer, initiating handshake")
messageHandler.delegate?.initiateNoiseHandshake(recipientPeerID)
}
}
} catch (e: Exception) {
Log.e(TAG, "❌ sendFilePrivate failed: ${e.message}", e)
Log.e(TAG, "❌ File: to=$recipientPeerID, name=${file.fileName}, size=${file.fileSize}")
}
}
fun cancelFileTransfer(transferId: String): Boolean {
return connectionManager.cancelTransfer(transferId)
}
// Local helper to hash payloads to a stable hex ID for progress mapping
private fun sha256Hex(bytes: ByteArray): String = try {
val md = java.security.MessageDigest.getInstance("SHA-256")
md.update(bytes)
md.digest().joinToString("") { "%02x".format(it) }
} catch (_: Exception) { bytes.size.toString(16) }
/**
* Send private message - SIMPLIFIED iOS-compatible version
* Uses NoisePayloadType system exactly like iOS SimplifiedBluetoothService
*/
fun sendPrivateMessage(content: String, recipientPeerID: String, recipientNickname: String, messageID: String? = null) {
if (content.isEmpty() || recipientPeerID.isEmpty()) return
if (recipientNickname.isEmpty()) return
serviceScope.launch {
val finalMessageID = messageID ?: java.util.UUID.randomUUID().toString()
Log.d(TAG, "📨 Sending PM to $recipientPeerID: ${content.take(30)}...")
// Check if we have an established Noise session
if (encryptionService.hasEstablishedSession(recipientPeerID)) {
try {
// Create TLV-encoded private message exactly like iOS
val privateMessage = com.bitchat.android.model.PrivateMessagePacket(
messageID = finalMessageID,
content = content
)
val tlvData = privateMessage.encode()
if (tlvData == null) {
Log.e(TAG, "Failed to encode private message with TLV")
return@launch
}
// Create message payload with NoisePayloadType prefix: [type byte] + [TLV data]
val messagePayload = com.bitchat.android.model.NoisePayload(
type = com.bitchat.android.model.NoisePayloadType.PRIVATE_MESSAGE,
data = tlvData
)
// Encrypt the payload
val encrypted = encryptionService.encrypt(messagePayload.encode(), recipientPeerID)
// Create NOISE_ENCRYPTED packet exactly like iOS
val packet = BitchatPacket(
version = 1u,
type = MessageType.NOISE_ENCRYPTED.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = hexStringToByteArray(recipientPeerID),
timestamp = System.currentTimeMillis().toULong(),
payload = encrypted,
signature = null,
ttl = MAX_TTL
)
// Sign the packet before broadcasting
val signedPacket = signPacketBeforeBroadcast(packet)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
Log.d(TAG, "📤 Sent encrypted private message to $recipientPeerID (${encrypted.size} bytes)")
// FIXED: Don't send didReceiveMessage for our own sent messages
// This was causing self-notifications - iOS doesn't do this
// The UI handles showing sent messages through its own message sending logic
} catch (e: Exception) {
Log.e(TAG, "Failed to encrypt private message for $recipientPeerID: ${e.message}")
}
} else {
// Fire and forget - initiate handshake but don't queue exactly like iOS
Log.d(TAG, "🤝 No session with $recipientPeerID, initiating handshake")
messageHandler.delegate?.initiateNoiseHandshake(recipientPeerID)
// FIXED: Don't send didReceiveMessage for our own sent messages
// The UI will handle showing the message in the chat interface
}
}
}
/**
* Send read receipt for a received private message - NEW NoisePayloadType implementation
* Uses same encryption approach as iOS SimplifiedBluetoothService
*/
fun sendReadReceipt(messageID: String, recipientPeerID: String, readerNickname: String) {
serviceScope.launch {
Log.d(TAG, "📖 Sending read receipt for message $messageID to $recipientPeerID")
// Route geohash read receipts via MessageRouter instead of here
val geo = runCatching { com.bitchat.android.services.MessageRouter.tryGetInstance() }.getOrNull()
val isGeoAlias = try {
val map = com.bitchat.android.nostr.GeohashAliasRegistry.snapshot()
map.containsKey(recipientPeerID)
} catch (_: Exception) { false }
if (isGeoAlias && geo != null) {
geo.sendReadReceipt(com.bitchat.android.model.ReadReceipt(messageID), recipientPeerID)
return@launch
}
try {
// Avoid duplicate read receipts: check persistent store first
val seenStore = try { com.bitchat.android.services.SeenMessageStore.getInstance(context.applicationContext) } catch (_: Exception) { null }
if (seenStore?.hasRead(messageID) == true) {
Log.d(TAG, "Skipping read receipt for $messageID - already marked read")
return@launch
}
// Create read receipt payload using NoisePayloadType exactly like iOS
val readReceiptPayload = com.bitchat.android.model.NoisePayload(
type = com.bitchat.android.model.NoisePayloadType.READ_RECEIPT,
data = messageID.toByteArray(Charsets.UTF_8)
)
// Encrypt the payload
val encrypted = encryptionService.encrypt(readReceiptPayload.encode(), recipientPeerID)
// Create NOISE_ENCRYPTED packet exactly like iOS
val packet = BitchatPacket(
version = 1u,
type = MessageType.NOISE_ENCRYPTED.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = hexStringToByteArray(recipientPeerID),
timestamp = System.currentTimeMillis().toULong(),
payload = encrypted,
signature = null,
ttl = com.bitchat.android.util.AppConstants.MESSAGE_TTL_HOPS // Same TTL as iOS messageTTL
)
// Sign the packet before broadcasting
val signedPacket = signPacketBeforeBroadcast(packet)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
Log.d(TAG, "📤 Sent read receipt to $recipientPeerID for message $messageID")
// Persist as read after successful send
try { seenStore?.markRead(messageID) } catch (_: Exception) { }
} catch (e: Exception) {
Log.e(TAG, "Failed to send read receipt to $recipientPeerID: ${e.message}")
}
}
}
// MARK: QR Verification over Noise
fun sendVerifyChallenge(peerID: String, noiseKeyHex: String, nonceA: ByteArray) {
val tlv = VerificationService.buildVerifyChallenge(noiseKeyHex, nonceA)
val payload = NoisePayload(
type = NoisePayloadType.VERIFY_CHALLENGE,
data = tlv
)
sendNoisePayloadToPeer(payload, peerID, "verify challenge")
}
fun sendVerifyResponse(peerID: String, noiseKeyHex: String, nonceA: ByteArray) {
val tlv = VerificationService.buildVerifyResponse(noiseKeyHex, nonceA) ?: return
val payload = NoisePayload(
type = NoisePayloadType.VERIFY_RESPONSE,
data = tlv
)
sendNoisePayloadToPeer(payload, peerID, "verify response")
}
private fun sendNoisePayloadToPeer(payload: NoisePayload, recipientPeerID: String, label: String) {
serviceScope.launch {
try {
val encrypted = encryptionService.encrypt(payload.encode(), recipientPeerID)
val packet = BitchatPacket(
version = 1u,
type = MessageType.NOISE_ENCRYPTED.value,
senderID = hexStringToByteArray(myPeerID),
recipientID = hexStringToByteArray(recipientPeerID),
timestamp = System.currentTimeMillis().toULong(),
payload = encrypted,
signature = null,
ttl = com.bitchat.android.util.AppConstants.MESSAGE_TTL_HOPS
)
val signedPacket = signPacketBeforeBroadcast(packet)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
Log.d(TAG, "📤 Sent $label to $recipientPeerID (${payload.data.size} bytes)")
} catch (e: Exception) {
Log.e(TAG, "Failed to send $label to $recipientPeerID: ${e.message}")
}
}
}
/**
* Send broadcast announce with TLV-encoded identity announcement - exactly like iOS
*/
fun sendBroadcastAnnounce() {
Log.d(TAG, "Sending broadcast announce")
serviceScope.launch {
val nickname = try { com.bitchat.android.services.NicknameProvider.getNickname(context, myPeerID) } catch (_: Exception) { myPeerID }
// Get the static public key for the announcement
val staticKey = encryptionService.getStaticPublicKey()
if (staticKey == null) {
Log.e(TAG, "No static public key available for announcement")
return@launch
}
// Get the signing public key for the announcement
val signingKey = encryptionService.getSigningPublicKey()
if (signingKey == null) {
Log.e(TAG, "No signing public key available for announcement")
return@launch
}
// Create iOS-compatible IdentityAnnouncement with TLV encoding
val announcement = IdentityAnnouncement(nickname, staticKey, signingKey)
var tlvPayload = announcement.encode()
if (tlvPayload == null) {
Log.e(TAG, "Failed to encode announcement as TLV")
return@launch
}
// Append gossip TLV containing up to 10 direct neighbors (compact IDs)
try {
val directPeers = getDirectPeerIDsForGossip()
if (directPeers.isNotEmpty()) {
val gossip = com.bitchat.android.services.meshgraph.GossipTLV.encodeNeighbors(directPeers)
tlvPayload = tlvPayload + gossip
}
// Always update our own node in the mesh graph with the neighbor list we used
try {
com.bitchat.android.services.meshgraph.MeshGraphService.getInstance()
.updateFromAnnouncement(myPeerID, nickname, directPeers, System.currentTimeMillis().toULong())
} catch (_: Exception) { }
} catch (_: Exception) { }
val announcePacket = BitchatPacket(
type = MessageType.ANNOUNCE.value,
ttl = MAX_TTL,
senderID = myPeerID,
payload = tlvPayload
)
// Sign the packet using our signing key (exactly like iOS)
val signedPacket = encryptionService.signData(announcePacket.toBinaryDataForSigning()!!)?.let { signature ->
announcePacket.copy(signature = signature)
} ?: announcePacket
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
Log.d(TAG, "Sent iOS-compatible signed TLV announce (${tlvPayload.size} bytes)")
// Track announce for sync
try { gossipSyncManager.onPublicPacketSeen(signedPacket) } catch (_: Exception) { }
}
}
/**
* Send announcement to specific peer with TLV-encoded identity announcement - exactly like iOS
*/
fun sendAnnouncementToPeer(peerID: String) {
if (peerManager.hasAnnouncedToPeer(peerID)) return
val nickname = try { com.bitchat.android.services.NicknameProvider.getNickname(context, myPeerID) } catch (_: Exception) { myPeerID }
// Get the static public key for the announcement
val staticKey = encryptionService.getStaticPublicKey()
if (staticKey == null) {
Log.e(TAG, "No static public key available for peer announcement")
return
}
// Get the signing public key for the announcement
val signingKey = encryptionService.getSigningPublicKey()
if (signingKey == null) {
Log.e(TAG, "No signing public key available for peer announcement")
return
}
// Create iOS-compatible IdentityAnnouncement with TLV encoding
val announcement = IdentityAnnouncement(nickname, staticKey, signingKey)
var tlvPayload = announcement.encode()
if (tlvPayload == null) {
Log.e(TAG, "Failed to encode peer announcement as TLV")
return
}
// Append gossip TLV containing up to 10 direct neighbors (compact IDs)
try {
val directPeers = getDirectPeerIDsForGossip()
if (directPeers.isNotEmpty()) {
val gossip = com.bitchat.android.services.meshgraph.GossipTLV.encodeNeighbors(directPeers)
tlvPayload = tlvPayload + gossip
}
// Always update our own node in the mesh graph with the neighbor list we used
try {
com.bitchat.android.services.meshgraph.MeshGraphService.getInstance()
.updateFromAnnouncement(myPeerID, nickname, directPeers, System.currentTimeMillis().toULong())
} catch (_: Exception) { }
} catch (_: Exception) { }
val packet = BitchatPacket(
type = MessageType.ANNOUNCE.value,
ttl = MAX_TTL,
senderID = myPeerID,
payload = tlvPayload
)
// Sign the packet using our signing key (exactly like iOS)
val signedPacket = encryptionService.signData(packet.toBinaryDataForSigning()!!)?.let { signature ->
packet.copy(signature = signature)
} ?: packet
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
peerManager.markPeerAsAnnouncedTo(peerID)
Log.d(TAG, "Sent iOS-compatible signed TLV peer announce to $peerID (${tlvPayload.size} bytes)")
// Track announce for sync
try { gossipSyncManager.onPublicPacketSeen(signedPacket) } catch (_: Exception) { }
}
/**
* Collect up to 10 direct neighbors for gossip TLV.
*/
private fun getDirectPeerIDsForGossip(): List<String> {
return try {
// Prefer verified peers that are currently marked as direct
val verified = peerManager.getVerifiedPeers()
val direct = verified.filter { it.value.isDirectConnection }.keys.toList()
direct.take(10)
} catch (_: Exception) {
emptyList()
}
}
/**
* Send leave announcement
*/
private fun sendLeaveAnnouncement() {
val packet = BitchatPacket(
type = MessageType.LEAVE.value,
ttl = MAX_TTL,
senderID = myPeerID,
payload = byteArrayOf()
)
// Sign the packet before broadcasting
val signedPacket = signPacketBeforeBroadcast(packet)
connectionManager.broadcastPacket(RoutedPacket(signedPacket))
}
/**
* Get peer nicknames
*/
fun getPeerNicknames(): Map<String, String> = peerManager.getAllPeerNicknames()
/**
* Get peer RSSI values
*/
fun getPeerRSSI(): Map<String, Int> = peerManager.getAllPeerRSSI()
/**
* Check if we have an established Noise session with a peer
*/
fun hasEstablishedSession(peerID: String): Boolean {
return encryptionService.hasEstablishedSession(peerID)
}
/**
* Get session state for a peer (for UI state display)
*/
fun getSessionState(peerID: String): com.bitchat.android.noise.NoiseSession.NoiseSessionState {
return encryptionService.getSessionState(peerID)
}
/**
* Initiate Noise handshake with a specific peer (public API)
*/
fun initiateNoiseHandshake(peerID: String) {
// Delegate to the existing implementation in the MessageHandler delegate
messageHandler.delegate?.initiateNoiseHandshake(peerID)
}
/**
* Get peer fingerprint for identity management
*/
fun getPeerFingerprint(peerID: String): String? {
return peerManager.getFingerprintForPeer(peerID)
}
/**
* Get current active peer count (for status/notifications)
*/
fun getActivePeerCount(): Int {
return try { peerManager.getActivePeerCount() } catch (_: Exception) { 0 }
}
/**
* Get peer info for verification purposes
*/
fun getPeerInfo(peerID: String): PeerInfo? {
return peerManager.getPeerInfo(peerID)
}
/**
* Update peer information with verification data
*/
fun updatePeerInfo(
peerID: String,
nickname: String,
noisePublicKey: ByteArray,
signingPublicKey: ByteArray,
isVerified: Boolean
): Boolean {
return peerManager.updatePeerInfo(peerID, nickname, noisePublicKey, signingPublicKey, isVerified)
}
/**
* Get our identity fingerprint
*/
fun getIdentityFingerprint(): String {
return encryptionService.getIdentityFingerprint()
}
fun getStaticNoisePublicKey(): ByteArray? {
return encryptionService.getStaticPublicKey()
}
/**
* Check if encryption icon should be shown for a peer
*/
fun shouldShowEncryptionIcon(peerID: String): Boolean {
return encryptionService.hasEstablishedSession(peerID)
}
/**
* Get all peers with established encrypted sessions
*/
fun getEncryptedPeers(): List<String> {
// SIMPLIFIED: Return empty list for now since we don't have direct access to sessionManager
// This method is not critical for the session retention fix
return emptyList()
}
/**
* Get device address for a specific peer ID
*/
fun getDeviceAddressForPeer(peerID: String): String? {
return connectionManager.addressPeerMap.entries.find { it.value == peerID }?.key
}
/**
* Get all device addresses mapped to their peer IDs
*/
fun getDeviceAddressToPeerMapping(): Map<String, String> {
return connectionManager.addressPeerMap.toMap()
}
/**
* Print device addresses for all connected peers
*/
fun printDeviceAddressesForPeers(): String {
return peerManager.getDebugInfoWithDeviceAddresses(connectionManager.addressPeerMap)
}
/**
* Get debug status information
*/
fun getDebugStatus(): String {
return buildString {
appendLine("=== Bluetooth Mesh Service Debug Status ===")
appendLine("My Peer ID: $myPeerID")
appendLine()
appendLine(connectionManager.getDebugInfo())
appendLine()
appendLine(peerManager.getDebugInfo(connectionManager.addressPeerMap))
appendLine()
appendLine(peerManager.getFingerprintDebugInfo())
appendLine()
appendLine(fragmentManager.getDebugInfo())
appendLine()
appendLine(securityManager.getDebugInfo())
appendLine()
appendLine(storeForwardManager.getDebugInfo())
appendLine()
appendLine(messageHandler.getDebugInfo())
appendLine()
appendLine(packetProcessor.getDebugInfo())
}
}
/**
* Convert hex string peer ID to binary data (8 bytes) - exactly same as iOS
*/
private fun hexStringToByteArray(hexString: String): ByteArray {
val result = ByteArray(8) { 0 } // Initialize with zeros, exactly 8 bytes
var tempID = hexString
var index = 0
while (tempID.length >= 2 && index < 8) {
val hexByte = tempID.substring(0, 2)
val byte = hexByte.toIntOrNull(16)?.toByte()
if (byte != null) {
result[index] = byte
}
tempID = tempID.substring(2)
index++
}
return result
}
/**
* Sign packet before broadcasting using our signing private key
*/
private fun signPacketBeforeBroadcast(packet: BitchatPacket): BitchatPacket {
return try {
// Optionally compute and attach a source route for addressed packets
val withRoute = try {
val rec = packet.recipientID
if (rec != null && !rec.contentEquals(SpecialRecipients.BROADCAST)) {
val dest = rec.joinToString("") { b -> "%02x".format(b) }
val path = com.bitchat.android.services.meshgraph.RoutePlanner.shortestPath(myPeerID, dest)
if (path != null && path.size >= 3) {
// Exclude first (sender) and last (recipient); only intermediates
val intermediates = path.subList(1, path.size - 1)
val hopsBytes = intermediates.map { hexStringToByteArray(it) }
Log.d(TAG, "✅ Signed packet type ${packet.type} (route ${hopsBytes.size} hops: $intermediates)")
// Attach route and upgrade to v2 (required for HAS_ROUTE flag)
packet.copy(route = hopsBytes, version = 2u)
} else packet.copy(route = null)
} else packet
} catch (_: Exception) { packet }
// Get the canonical packet data for signing (without signature)
val packetDataForSigning = withRoute.toBinaryDataForSigning()
if (packetDataForSigning == null) {
Log.w(TAG, "Failed to encode packet type ${packet.type} for signing, sending unsigned")
return withRoute
}
// Sign the packet data using our signing key
val signature = encryptionService.signData(packetDataForSigning)
if (signature != null) {
Log.d(TAG, "✅ Signed packet type ${packet.type} (signature ${signature.size} bytes)")
withRoute.copy(signature = signature)
} else {
Log.w(TAG, "Failed to sign packet type ${packet.type}, sending unsigned")
withRoute
}
} catch (e: Exception) {
Log.w(TAG, "Error signing packet type ${packet.type}: ${e.message}, sending unsigned")
packet
}
}
// MARK: - Panic Mode Support
/**
* Clear all internal mesh service data (for panic mode)
*/
fun clearAllInternalData() {
Log.w(TAG, "🚨 Clearing all mesh service internal data")
try {
// Clear all managers
fragmentManager.clearAllFragments()
storeForwardManager.clearAllCache()
securityManager.clearAllData()
peerManager.clearAllPeers()
peerManager.clearAllFingerprints()
Log.d(TAG, "✅ Cleared all mesh service internal data")
} catch (e: Exception) {
Log.e(TAG, "❌ Error clearing mesh service internal data: ${e.message}")
}
}
/**
* Clear all encryption and cryptographic data (for panic mode)
*/
fun clearAllEncryptionData() {
Log.w(TAG, "🚨 Clearing all encryption data")
try {
// Clear encryption service persistent identity (includes Ed25519 signing keys)
encryptionService.clearPersistentIdentity()
Log.d(TAG, "✅ Cleared all encryption data")
} catch (e: Exception) {
Log.e(TAG, "❌ Error clearing encryption data: ${e.message}")
}
}
}
/**
* Delegate interface for mesh service callbacks (maintains exact same interface)
*/
interface BluetoothMeshDelegate {
fun didReceiveMessage(message: BitchatMessage)
fun didUpdatePeerList(peers: List<String>)
fun didReceiveChannelLeave(channel: String, fromPeer: String)
fun didReceiveDeliveryAck(messageID: String, recipientPeerID: String)
fun didReceiveReadReceipt(messageID: String, recipientPeerID: String)
fun didReceiveVerifyChallenge(peerID: String, payload: ByteArray, timestampMs: Long)
fun didReceiveVerifyResponse(peerID: String, payload: ByteArray, timestampMs: Long)
fun decryptChannelMessage(encryptedContent: ByteArray, channel: String): String?
fun getNickname(): String?
fun isFavorite(peerID: String): Boolean
// registerPeerPublicKey REMOVED - fingerprints now handled centrally in PeerManager
}