mirror of
https://github.com/permissionlesstech/bitchat-android.git
synced 2026-07-25 13:05:19 +00:00
temporary
This commit is contained in:
@@ -99,6 +99,20 @@ class BluetoothConnectionManager(
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try {
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isActive = true
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// CRITICAL FIX: To be discoverable by iOS, we MUST set the adapter's name
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// to our 8-character peerID. iOS uses the `localName` field for discovery.
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try {
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if (bluetoothAdapter?.name != myPeerID) {
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bluetoothAdapter?.name = myPeerID
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Log.d(TAG, "Set Bluetooth adapter name to peerID: $myPeerID for iOS compatibility.")
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}
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} catch (se: SecurityException) {
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Log.e(TAG, "Missing BLUETOOTH_CONNECT permission to set adapter name.", se)
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// This is not fatal, but will prevent discovery by iOS clients.
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// We can still be discovered if the iOS client initiates the connection.
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}
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// Start all component managers
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connectionScope.launch {
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// Start connection tracker first
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@@ -11,6 +11,7 @@ import com.bitchat.android.model.ReadReceipt
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import com.bitchat.android.protocol.BitchatPacket
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import com.bitchat.android.protocol.MessageType
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import com.bitchat.android.protocol.SpecialRecipients
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import com.bitchat.android.util.toHexString
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import kotlinx.coroutines.*
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import java.util.*
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import kotlin.random.Random
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@@ -36,17 +37,17 @@ class BluetoothMeshService(private val context: Context) {
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}
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// My peer identification - same format as iOS
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val myPeerID: String = generateCompatiblePeerID()
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val myPeerID: ByteArray = generateCompatiblePeerID()
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// Core components - each handling specific responsibilities
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private val encryptionService = EncryptionService(context)
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private val peerManager = PeerManager()
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private val fragmentManager = FragmentManager()
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private val securityManager = SecurityManager(encryptionService, myPeerID)
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private val securityManager = SecurityManager(encryptionService, myPeerID.toHexString())
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private val storeForwardManager = StoreForwardManager()
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private val messageHandler = MessageHandler(myPeerID)
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internal val connectionManager = BluetoothConnectionManager(context, myPeerID, fragmentManager) // Made internal for access
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private val packetProcessor = PacketProcessor(myPeerID)
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private val messageHandler = MessageHandler(myPeerID.toHexString())
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internal val connectionManager = BluetoothConnectionManager(context, myPeerID.toHexString(), fragmentManager) // Made internal for access
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private val packetProcessor = PacketProcessor(myPeerID.toHexString())
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// Service state management
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private var isActive = false
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@@ -119,6 +120,17 @@ class BluetoothMeshService(private val context: Context) {
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storeForwardManager.sendCachedMessages(peerID)
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}
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}
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override fun processNoiseHandshake(peerID: String, payload: ByteArray, isInitiation: Boolean): Boolean {
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return try {
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// For now, treat as legacy key exchange until full Noise implementation
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encryptionService.addPeerPublicKey(peerID, payload)
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true
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} catch (e: Exception) {
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Log.e(TAG, "Failed to process Noise handshake: ${e.message}")
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false
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}
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}
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}
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// StoreForwardManager delegates
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@@ -189,6 +201,36 @@ class BluetoothMeshService(private val context: Context) {
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return securityManager.decryptFromPeer(encryptedData, senderPeerID)
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}
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// Noise protocol operations
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override fun hasNoiseSession(peerID: String): Boolean {
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// For now, return false since we don't have full Noise implemented
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// This will be updated when NoiseEncryptionService is fully integrated
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return false
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}
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override fun initiateNoiseHandshake(peerID: String) {
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// For now, send a basic key exchange instead of full Noise handshake
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// This will be updated when NoiseEncryptionService is fully integrated
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Log.d(TAG, "TODO: Initiate full Noise handshake with $peerID")
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sendKeyExchangeToDevice()
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}
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override fun updatePeerIDBinding(newPeerID: String, fingerprint: String, nickname: String,
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publicKey: ByteArray, previousPeerID: String?) {
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// Update peer mapping in the PeerManager for peer ID rotation support
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peerManager.addOrUpdatePeer(newPeerID, nickname)
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// If there was a previous peer ID, remove it to avoid duplicates
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previousPeerID?.let { oldPeerID ->
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peerManager.removePeer(oldPeerID)
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}
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// Register the public key with the delegate (ChatViewModel)
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delegate?.registerPeerPublicKey(newPeerID, publicKey)
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Log.d(TAG, "Updated peer ID binding: $newPeerID (was: $previousPeerID), fingerprint: ${fingerprint.take(16)}...")
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}
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// Message operations
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override fun decryptChannelMessage(encryptedContent: ByteArray, channel: String): String? {
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return delegate?.decryptChannelMessage(encryptedContent, channel)
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@@ -584,10 +626,10 @@ class BluetoothMeshService(private val context: Context) {
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/**
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* Generate peer ID compatible with iOS
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*/
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private fun generateCompatiblePeerID(): String {
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private fun generateCompatiblePeerID(): ByteArray {
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val randomBytes = ByteArray(4)
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Random.nextBytes(randomBytes)
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return randomBytes.joinToString("") { "%02x".format(it) }
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return randomBytes
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}
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}
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@@ -9,6 +9,8 @@ import com.bitchat.android.model.RoutedPacket
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import com.bitchat.android.protocol.BitchatPacket
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import com.bitchat.android.protocol.MessageType
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import kotlinx.coroutines.*
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import org.json.JSONObject
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import java.security.MessageDigest
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import java.util.*
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import kotlin.random.Random
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@@ -29,27 +31,136 @@ class MessageHandler(private val myPeerID: String) {
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private val handlerScope = CoroutineScope(Dispatchers.IO + SupervisorJob())
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/**
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* Handle Noise encrypted transport message (temporarily stubbed)
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* Handle Noise encrypted transport message
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*/
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suspend fun handleNoiseEncrypted(routed: RoutedPacket) {
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val packet = routed.packet
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val peerID = routed.peerID ?: "unknown"
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Log.d(TAG, "TODO: Handle Noise encrypted message from $peerID (${packet.payload.size} bytes)")
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Log.d(TAG, "Processing Noise encrypted message from $peerID (${packet.payload.size} bytes)")
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// For now, just log it - this will be implemented with actual Noise protocol handling
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// Skip our own messages
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if (peerID == myPeerID) return
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try {
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// Decrypt the message using the Noise service
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val decryptedData = delegate?.decryptFromPeer(packet.payload, peerID)
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if (decryptedData == null) {
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Log.w(TAG, "Failed to decrypt Noise message from $peerID - may need handshake")
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return
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}
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// Check if it's a special format message (type marker + payload)
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if (decryptedData.size > 1) {
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val typeMarker = decryptedData[0].toUByte()
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// Check if this is a delivery ACK with the new format
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if (typeMarker == MessageType.DELIVERY_ACK.value) {
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// Extract the ACK JSON data (skip the type marker)
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val ackData = decryptedData.sliceArray(1 until decryptedData.size)
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// Decode the delivery ACK
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val ack = DeliveryAck.decode(ackData)
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if (ack != null) {
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delegate?.onDeliveryAckReceived(ack)
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Log.d(TAG, "Processed delivery ACK from $peerID")
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return
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}
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}
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// Check for read receipt with type marker
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if (typeMarker == MessageType.READ_RECEIPT.value) {
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val receiptData = decryptedData.sliceArray(1 until decryptedData.size)
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val receipt = ReadReceipt.decode(receiptData)
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if (receipt != null) {
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delegate?.onReadReceiptReceived(receipt)
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Log.d(TAG, "Processed read receipt from $peerID")
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return
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}
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}
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}
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// Try to parse as a full inner packet (for compatibility with other message types)
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val innerPacket = BitchatPacket.fromBinaryData(decryptedData)
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if (innerPacket != null) {
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Log.d(TAG, "Decrypted inner packet type ${innerPacket.type} from $peerID")
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// Create a new routed packet with the decrypted inner packet
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val innerRouted = RoutedPacket(innerPacket, peerID, routed.relayAddress)
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// Process the decrypted inner packet recursively
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when (MessageType.fromValue(innerPacket.type)) {
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MessageType.MESSAGE -> handleMessage(innerRouted)
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MessageType.DELIVERY_ACK -> handleDeliveryAck(innerRouted)
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MessageType.READ_RECEIPT -> handleReadReceipt(innerRouted)
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else -> {
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Log.w(TAG, "Unexpected inner packet type: ${innerPacket.type}")
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}
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}
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} else {
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Log.w(TAG, "Failed to parse decrypted data as packet from $peerID")
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}
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} catch (e: Exception) {
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Log.e(TAG, "Error processing Noise encrypted message from $peerID: ${e.message}")
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}
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}
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/**
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* Handle Noise identity announcement (temporarily stubbed)
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* Handle Noise identity announcement - supports peer ID rotation
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*/
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suspend fun handleNoiseIdentityAnnouncement(routed: RoutedPacket) {
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val packet = routed.packet
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val peerID = routed.peerID ?: "unknown"
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Log.d(TAG, "TODO: Handle Noise identity announcement from $peerID (${packet.payload.size} bytes)")
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Log.d(TAG, "Processing Noise identity announcement from $peerID (${packet.payload.size} bytes)")
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// For now, just log it - this will be implemented with peer ID rotation handling
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// Skip our own announcements
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if (peerID == myPeerID) return
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try {
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// Parse the identity announcement
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val announcement = parseNoiseIdentityAnnouncement(packet.payload)
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if (announcement == null) {
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Log.w(TAG, "Failed to parse Noise identity announcement from $peerID")
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return
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}
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Log.d(TAG, "Parsed identity announcement: peerID=${announcement.peerID}, " +
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"nickname=${announcement.nickname}, fingerprint=${announcement.fingerprint?.take(16)}...")
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// Verify the announcement signature (basic validation)
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// In a full implementation, this would use cryptographic verification
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if (announcement.signature.isEmpty()) {
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Log.w(TAG, "Identity announcement from $peerID has no signature")
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return
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}
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// Update peer binding in the delegate (ChatViewModel/BluetoothMeshService)
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delegate?.updatePeerIDBinding(
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newPeerID = announcement.peerID,
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fingerprint = announcement.fingerprint ?: "",
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nickname = announcement.nickname,
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publicKey = announcement.publicKey,
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previousPeerID = announcement.previousPeerID
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)
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// Check if we need to initiate a handshake with this peer
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val hasSession = delegate?.hasNoiseSession(announcement.peerID) ?: false
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if (!hasSession) {
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Log.d(TAG, "No session with ${announcement.peerID}, may need handshake")
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// Use lexicographic comparison to decide who initiates (prevents both sides from initiating)
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if (myPeerID < announcement.peerID) {
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delegate?.initiateNoiseHandshake(announcement.peerID)
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}
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}
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Log.d(TAG, "Successfully processed identity announcement from $peerID")
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} catch (e: Exception) {
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Log.e(TAG, "Error processing Noise identity announcement from $peerID: ${e.message}")
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}
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}
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/**
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@@ -343,6 +454,45 @@ class MessageHandler(private val myPeerID: String) {
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}
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}
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/**
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* Parse Noise identity announcement from payload
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*/
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private fun parseNoiseIdentityAnnouncement(payload: ByteArray): NoiseIdentityAnnouncement? {
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return try {
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val jsonString = String(payload, Charsets.UTF_8)
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val json = JSONObject(jsonString)
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val peerID = json.getString("peerID")
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val nickname = json.getString("nickname")
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val publicKeyBase64 = json.getString("publicKey")
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val timestampMs = json.getLong("timestamp")
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val signatureBase64 = json.getString("signature")
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val previousPeerID = if (json.has("previousPeerID")) json.getString("previousPeerID") else null
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// Decode base64 fields
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val publicKey = android.util.Base64.decode(publicKeyBase64, android.util.Base64.DEFAULT)
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val signature = android.util.Base64.decode(signatureBase64, android.util.Base64.DEFAULT)
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// Calculate fingerprint from public key
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val digest = MessageDigest.getInstance("SHA-256")
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val hash = digest.digest(publicKey)
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val fingerprint = hash.joinToString("") { "%02x".format(it) }
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NoiseIdentityAnnouncement(
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peerID = peerID,
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nickname = nickname,
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publicKey = publicKey,
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timestamp = Date(timestampMs),
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signature = signature,
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fingerprint = fingerprint,
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previousPeerID = previousPeerID
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)
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} catch (e: Exception) {
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Log.e(TAG, "Failed to parse Noise identity announcement: ${e.message}")
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null
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}
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}
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/**
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* Shutdown the handler
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*/
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@@ -351,6 +501,47 @@ class MessageHandler(private val myPeerID: String) {
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}
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}
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/**
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* Noise Identity Announcement data class (compatible with iOS version)
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*/
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data class NoiseIdentityAnnouncement(
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val peerID: String,
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val nickname: String,
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val publicKey: ByteArray,
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val timestamp: Date,
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||||
val signature: ByteArray,
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||||
val fingerprint: String?,
|
||||
val previousPeerID: String? = null
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) {
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override fun equals(other: Any?): Boolean {
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if (this === other) return true
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if (javaClass != other?.javaClass) return false
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other as NoiseIdentityAnnouncement
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if (peerID != other.peerID) return false
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if (nickname != other.nickname) return false
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if (!publicKey.contentEquals(other.publicKey)) return false
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if (timestamp != other.timestamp) return false
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if (!signature.contentEquals(other.signature)) return false
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if (fingerprint != other.fingerprint) return false
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||||
if (previousPeerID != other.previousPeerID) return false
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||||
return true
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}
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override fun hashCode(): Int {
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var result = peerID.hashCode()
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||||
result = 31 * result + nickname.hashCode()
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result = 31 * result + publicKey.contentHashCode()
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result = 31 * result + timestamp.hashCode()
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result = 31 * result + signature.contentHashCode()
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||||
result = 31 * result + (fingerprint?.hashCode() ?: 0)
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||||
result = 31 * result + (previousPeerID?.hashCode() ?: 0)
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return result
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}
|
||||
}
|
||||
|
||||
/**
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* Delegate interface for message handler callbacks
|
||||
*/
|
||||
@@ -373,6 +564,12 @@ interface MessageHandlerDelegate {
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||||
fun encryptForPeer(data: ByteArray, recipientPeerID: String): ByteArray?
|
||||
fun decryptFromPeer(encryptedData: ByteArray, senderPeerID: String): ByteArray?
|
||||
|
||||
// Noise protocol operations
|
||||
fun hasNoiseSession(peerID: String): Boolean
|
||||
fun initiateNoiseHandshake(peerID: String)
|
||||
fun updatePeerIDBinding(newPeerID: String, fingerprint: String, nickname: String,
|
||||
publicKey: ByteArray, previousPeerID: String?)
|
||||
|
||||
// Message operations
|
||||
fun decryptChannelMessage(encryptedContent: ByteArray, channel: String): String?
|
||||
|
||||
|
||||
@@ -87,16 +87,52 @@ class SecurityManager(private val encryptionService: EncryptionService, private
|
||||
}
|
||||
|
||||
/**
|
||||
* Handle Noise handshake packet (temporarily stubbed for basic build)
|
||||
* Handle Noise handshake packet
|
||||
*/
|
||||
suspend fun handleNoiseHandshake(routed: RoutedPacket, step: Int): Boolean {
|
||||
val packet = routed.packet
|
||||
val peerID = routed.peerID ?: "unknown"
|
||||
|
||||
Log.d(TAG, "TODO: Handle Noise handshake step $step from $peerID (${packet.payload.size} bytes)")
|
||||
Log.d(TAG, "Processing Noise handshake step $step from $peerID (${packet.payload.size} bytes)")
|
||||
|
||||
// For now, just treat it as a key exchange for compatibility
|
||||
return handleKeyExchange(routed)
|
||||
// Skip our own handshake messages
|
||||
if (peerID == myPeerID) return false
|
||||
|
||||
if (packet.payload.isEmpty()) {
|
||||
Log.w(TAG, "Noise handshake packet has empty payload")
|
||||
return false
|
||||
}
|
||||
|
||||
// Prevent duplicate handshake processing
|
||||
val exchangeKey = "$peerID-${packet.payload.sliceArray(0 until minOf(16, packet.payload.size)).contentHashCode()}"
|
||||
|
||||
if (processedKeyExchanges.contains(exchangeKey)) {
|
||||
Log.d(TAG, "Already processed handshake: $exchangeKey")
|
||||
return false
|
||||
}
|
||||
|
||||
processedKeyExchanges.add(exchangeKey)
|
||||
|
||||
try {
|
||||
// Process the Noise handshake through the delegate (NoiseEncryptionService)
|
||||
val success = delegate?.processNoiseHandshake(peerID, packet.payload, step == 1) ?: false
|
||||
|
||||
if (success) {
|
||||
Log.d(TAG, "Successfully processed Noise handshake step $step from $peerID")
|
||||
|
||||
// Notify delegate
|
||||
delegate?.onKeyExchangeCompleted(peerID, packet.payload, routed.relayAddress)
|
||||
|
||||
return true
|
||||
} else {
|
||||
Log.w(TAG, "Failed to process Noise handshake from $peerID")
|
||||
return false
|
||||
}
|
||||
|
||||
} catch (e: Exception) {
|
||||
Log.e(TAG, "Failed to process Noise handshake from $peerID: ${e.message}")
|
||||
return false
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -333,4 +369,5 @@ class SecurityManager(private val encryptionService: EncryptionService, private
|
||||
*/
|
||||
interface SecurityManagerDelegate {
|
||||
fun onKeyExchangeCompleted(peerID: String, peerPublicKeyData: ByteArray, receivedAddress: String?)
|
||||
fun processNoiseHandshake(peerID: String, payload: ByteArray, isInitiation: Boolean): Boolean
|
||||
}
|
||||
|
||||
@@ -80,6 +80,8 @@ data class BitchatPacket(
|
||||
var ttl: UByte
|
||||
) : Parcelable {
|
||||
|
||||
// Secondary constructor removed to enforce ByteArray usage for peerIDs
|
||||
/*
|
||||
constructor(
|
||||
type: UByte,
|
||||
ttl: UByte,
|
||||
@@ -95,6 +97,7 @@ data class BitchatPacket(
|
||||
signature = null,
|
||||
ttl = ttl
|
||||
)
|
||||
*/
|
||||
|
||||
fun toBinaryData(): ByteArray? {
|
||||
return BinaryProtocol.encode(this)
|
||||
|
||||
@@ -0,0 +1,8 @@
|
||||
package com.bitchat.android.util
|
||||
|
||||
/**
|
||||
* Extension function to convert a ByteArray to a hexadecimal string.
|
||||
*/
|
||||
fun ByteArray.toHexString(): String {
|
||||
return this.joinToString("") { "%02x".format(it) }
|
||||
}
|
||||
@@ -0,0 +1,26 @@
|
||||
package com.bitchat.android.util
|
||||
|
||||
import java.util.Arrays
|
||||
|
||||
/**
|
||||
* A wrapper class for ByteArray to allow it to be used as a key in HashMaps.
|
||||
* The default ByteArray does not override equals() and hashCode() based on content.
|
||||
*
|
||||
* @param bytes The byte array to wrap.
|
||||
*/
|
||||
data class ByteArrayWrapper(val bytes: ByteArray) {
|
||||
override fun equals(other: Any?): Boolean {
|
||||
if (this === other) return true
|
||||
if (javaClass != other?.javaClass) return false
|
||||
other as ByteArrayWrapper
|
||||
return Arrays.equals(bytes, other.bytes)
|
||||
}
|
||||
|
||||
override fun hashCode(): Int {
|
||||
return Arrays.hashCode(bytes)
|
||||
}
|
||||
|
||||
fun toHexString(): String {
|
||||
return bytes.joinToString("") { "%02x".format(it) }
|
||||
}
|
||||
}
|
||||
Reference in New Issue
Block a user