mirror of
https://github.com/permissionlesstech/bitchat-android.git
synced 2026-07-25 00:45:22 +00:00
907 lines
37 KiB
Kotlin
907 lines
37 KiB
Kotlin
package com.bitchat.android.mesh
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import android.Manifest
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import android.bluetooth.*
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import android.bluetooth.le.*
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import android.content.Context
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import android.content.pm.PackageManager
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import android.os.ParcelUuid
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import android.util.Log
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import androidx.core.app.ActivityCompat
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import com.bitchat.android.protocol.BitchatPacket
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import kotlinx.coroutines.*
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import java.util.*
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import java.util.concurrent.ConcurrentHashMap
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import java.util.concurrent.CopyOnWriteArrayList
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/**
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* Power-optimized Bluetooth connection manager with comprehensive memory management
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* Integrates with PowerManager for adaptive power consumption
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*/
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class BluetoothConnectionManager(
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private val context: Context,
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private val myPeerID: String
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) : PowerManagerDelegate {
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companion object {
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private const val TAG = "BluetoothConnectionManager"
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// Use exact same UUIDs as iOS version
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private val SERVICE_UUID = UUID.fromString("F47B5E2D-4A9E-4C5A-9B3F-8E1D2C3A4B5C")
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private val CHARACTERISTIC_UUID = UUID.fromString("A1B2C3D4-E5F6-4A5B-8C9D-0E1F2A3B4C5D")
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// Connection management constants
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private const val CONNECTION_RETRY_DELAY = 5000L
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private const val MAX_CONNECTION_ATTEMPTS = 3
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private const val CLEANUP_DELAY = 500L
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private const val CLEANUP_INTERVAL = 30000L // 30 seconds
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}
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// Core Bluetooth components
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private val bluetoothManager: BluetoothManager =
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context.getSystemService(Context.BLUETOOTH_SERVICE) as BluetoothManager
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private val bluetoothAdapter: BluetoothAdapter? = bluetoothManager.adapter
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private val bleScanner: BluetoothLeScanner? = bluetoothAdapter?.bluetoothLeScanner
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private val bleAdvertiser: BluetoothLeAdvertiser? = bluetoothAdapter?.bluetoothLeAdvertiser
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// Power management
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private val powerManager = PowerManager(context)
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// GATT server for peripheral mode
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private var gattServer: BluetoothGattServer? = null
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private var characteristic: BluetoothGattCharacteristic? = null
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// Simplified connection tracking - reduced memory footprint
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private val connectedDevices = ConcurrentHashMap<String, DeviceConnection>()
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private val subscribedDevices = CopyOnWriteArrayList<BluetoothDevice>()
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// Connection attempt tracking with automatic cleanup
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private val pendingConnections = ConcurrentHashMap<String, ConnectionAttempt>()
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// Service state
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private var isActive = false
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private var scanCallback: ScanCallback? = null
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private var advertiseCallback: AdvertiseCallback? = null
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// CRITICAL FIX: Scan rate limiting to prevent "scanning too frequently" errors
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private var lastScanStartTime = 0L
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private var lastScanStopTime = 0L
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private var isCurrentlyScanning = false
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private val scanRateLimit = 5000L // Minimum 5 seconds between scan start attempts
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// Delegate for callbacks
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var delegate: BluetoothConnectionManagerDelegate? = null
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// Coroutines
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private val connectionScope = CoroutineScope(Dispatchers.IO + SupervisorJob())
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/**
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* Consolidated device connection information
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*/
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private data class DeviceConnection(
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val device: BluetoothDevice,
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val gatt: BluetoothGatt? = null,
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val characteristic: BluetoothGattCharacteristic? = null,
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val rssi: Int = Int.MIN_VALUE,
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val isClient: Boolean = false,
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val connectedAt: Long = System.currentTimeMillis()
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)
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/**
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* Connection attempt tracking with automatic expiry
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*/
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private data class ConnectionAttempt(
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val attempts: Int,
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val lastAttempt: Long = System.currentTimeMillis()
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) {
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fun isExpired(): Boolean =
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System.currentTimeMillis() - lastAttempt > CONNECTION_RETRY_DELAY * 2
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fun shouldRetry(): Boolean =
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attempts < MAX_CONNECTION_ATTEMPTS &&
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System.currentTimeMillis() - lastAttempt > CONNECTION_RETRY_DELAY
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}
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init {
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powerManager.delegate = this
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}
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/**
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* Start all Bluetooth services with power optimization
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*/
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fun startServices(): Boolean {
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Log.i(TAG, "Starting power-optimized Bluetooth services...")
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if (!hasBluetoothPermissions()) {
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Log.e(TAG, "Missing Bluetooth permissions")
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return false
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}
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if (bluetoothAdapter?.isEnabled != true) {
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Log.e(TAG, "Bluetooth is not enabled")
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return false
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}
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if (bleScanner == null || bleAdvertiser == null) {
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Log.e(TAG, "BLE scanner or advertiser not available")
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return false
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}
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try {
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isActive = true
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// setupGattServer()
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// Start power manager and services
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connectionScope.launch {
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powerManager.start()
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delay(500) // Ensure GATT server is ready
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startAdvertising()
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delay(200)
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if (powerManager.shouldUseDutyCycle()) {
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Log.i(TAG, "Using power-aware duty cycling")
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} else {
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startScanning()
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}
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startPeriodicCleanup()
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Log.i(TAG, "Power-optimized Bluetooth services started successfully (CLIENT ONLY)")
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}
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return true
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} catch (e: Exception) {
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Log.e(TAG, "Failed to start Bluetooth services: ${e.message}")
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return false
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}
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}
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/**
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* Stop all Bluetooth services with proper cleanup
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*/
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fun stopServices() {
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Log.i(TAG, "Stopping power-optimized Bluetooth services")
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isActive = false
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connectionScope.launch {
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// Stop power manager first
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powerManager.stop()
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// Stop scanning and advertising
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stopScanning()
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stopAdvertising()
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// Cleanup all GATT connections with delay
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cleanupAllConnections()
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// Close GATT server
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gattServer?.close()
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gattServer = null
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// Clear tracking
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clearAllConnections()
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connectionScope.cancel()
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Log.i(TAG, "All Bluetooth services stopped")
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}
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}
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/**
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* Set app background state for power optimization
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*/
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fun setAppBackgroundState(inBackground: Boolean) {
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powerManager.setAppBackgroundState(inBackground)
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}
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/**
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* Broadcast packet to connected devices with connection limit enforcement
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*/
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fun broadcastPacket(packet: BitchatPacket) {
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if (!isActive) return
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val data = packet.toBinaryData() ?: return
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Log.d(TAG, "Broadcasting packet type ${packet.type} to ${subscribedDevices.size} server + ${connectedDevices.size} client connections")
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// Send to server connections (devices connected to our GATT server)
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subscribedDevices.forEach { device ->
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try {
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characteristic?.let { char ->
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char.value = data
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gattServer?.notifyCharacteristicChanged(device, char, false)
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}
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} catch (e: Exception) {
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Log.w(TAG, "Error sending to server connection ${device.address}: ${e.message}")
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// Clean up failed connection
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connectionScope.launch {
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delay(CLEANUP_DELAY)
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subscribedDevices.remove(device)
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}
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}
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}
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// Send to client connections
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connectedDevices.values.forEach { deviceConn ->
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if (deviceConn.isClient && deviceConn.gatt != null && deviceConn.characteristic != null) {
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try {
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deviceConn.characteristic.value = data
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deviceConn.gatt.writeCharacteristic(deviceConn.characteristic)
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} catch (e: Exception) {
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Log.w(TAG, "Error sending to client connection ${deviceConn.device.address}: ${e.message}")
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// Clean up failed connection
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connectionScope.launch {
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delay(CLEANUP_DELAY)
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cleanupDeviceConnection(deviceConn.device.address)
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}
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}
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}
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}
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}
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/**
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* Get connected device count
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*/
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fun getConnectedDeviceCount(): Int = connectedDevices.size
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/**
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* Get debug information including power management
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*/
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fun getDebugInfo(): String {
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return buildString {
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appendLine("=== Power-Optimized Bluetooth Connection Manager ===")
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appendLine("Active: $isActive")
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appendLine("Bluetooth Enabled: ${bluetoothAdapter?.isEnabled}")
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appendLine("Has Permissions: ${hasBluetoothPermissions()}")
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appendLine("GATT Server Active: ${gattServer != null}")
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appendLine()
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appendLine(powerManager.getPowerInfo())
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appendLine()
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appendLine("Connected Devices: ${connectedDevices.size} / ${powerManager.getMaxConnections()}")
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connectedDevices.forEach { (address, deviceConn) ->
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val age = (System.currentTimeMillis() - deviceConn.connectedAt) / 1000
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appendLine(" - $address (${if (deviceConn.isClient) "client" else "server"}, ${age}s, RSSI: ${deviceConn.rssi})")
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}
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appendLine()
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appendLine("Subscribed Devices (server mode): ${subscribedDevices.size}")
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appendLine()
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appendLine("Pending Connections: ${pendingConnections.size}")
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val now = System.currentTimeMillis()
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pendingConnections.forEach { (address, attempt) ->
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val elapsed = (now - attempt.lastAttempt) / 1000
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appendLine(" - $address: ${attempt.attempts} attempts, last ${elapsed}s ago")
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}
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}
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}
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// MARK: - PowerManagerDelegate Implementation
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override fun onPowerModeChanged(newMode: PowerManager.PowerMode) {
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Log.i(TAG, "Power mode changed to: $newMode")
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connectionScope.launch {
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// CRITICAL FIX: Avoid rapid scan restarts by checking if we need to change scan behavior
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val wasUsingDutyCycle = powerManager.shouldUseDutyCycle()
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// Update advertising with new power settings
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stopAdvertising()
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delay(100)
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startAdvertising()
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// Only restart scanning if the duty cycle behavior changed
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val nowUsingDutyCycle = powerManager.shouldUseDutyCycle()
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if (wasUsingDutyCycle != nowUsingDutyCycle) {
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Log.d(TAG, "Duty cycle behavior changed (${wasUsingDutyCycle} -> ${nowUsingDutyCycle}), restarting scan")
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stopScanning()
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delay(1000) // Extra delay to avoid rate limiting
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if (nowUsingDutyCycle) {
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Log.i(TAG, "Switching to duty cycle scanning mode")
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// Duty cycle will handle scanning
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} else {
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Log.i(TAG, "Switching to continuous scanning mode")
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startScanning()
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}
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} else {
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Log.d(TAG, "Duty cycle behavior unchanged, keeping existing scan state")
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}
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// Enforce connection limits
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enforceConnectionLimits()
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}
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}
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override fun onScanStateChanged(shouldScan: Boolean) {
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if (shouldScan) {
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startScanning()
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} else {
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stopScanning()
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}
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}
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// MARK: - Private Implementation
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private fun hasBluetoothPermissions(): Boolean {
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val permissions = mutableListOf<String>()
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if (android.os.Build.VERSION.SDK_INT >= android.os.Build.VERSION_CODES.S) {
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permissions.addAll(listOf(
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Manifest.permission.BLUETOOTH_ADVERTISE,
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Manifest.permission.BLUETOOTH_CONNECT,
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Manifest.permission.BLUETOOTH_SCAN
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))
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} else {
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permissions.addAll(listOf(
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Manifest.permission.BLUETOOTH,
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Manifest.permission.BLUETOOTH_ADMIN
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))
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}
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permissions.addAll(listOf(
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Manifest.permission.ACCESS_COARSE_LOCATION,
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Manifest.permission.ACCESS_FINE_LOCATION
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))
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return permissions.all {
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ActivityCompat.checkSelfPermission(context, it) == PackageManager.PERMISSION_GRANTED
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}
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}
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@Suppress("DEPRECATION")
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private fun setupGattServer() {
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if (!hasBluetoothPermissions()) return
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val serverCallback = object : BluetoothGattServerCallback() {
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override fun onConnectionStateChange(device: BluetoothDevice, status: Int, newState: Int) {
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when (newState) {
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BluetoothProfile.STATE_CONNECTED -> {
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Log.d(TAG, "Server: Device connected ${device.address}")
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val deviceConn = DeviceConnection(
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device = device,
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isClient = false
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)
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connectedDevices[device.address] = deviceConn
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}
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BluetoothProfile.STATE_DISCONNECTED -> {
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Log.d(TAG, "Server: Device disconnected ${device.address}")
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cleanupDeviceConnection(device.address)
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}
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}
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}
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override fun onCharacteristicWriteRequest(
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device: BluetoothDevice,
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requestId: Int,
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characteristic: BluetoothGattCharacteristic,
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preparedWrite: Boolean,
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responseNeeded: Boolean,
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offset: Int,
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value: ByteArray
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) {
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if (characteristic.uuid == CHARACTERISTIC_UUID) {
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val packet = BitchatPacket.fromBinaryData(value)
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if (packet != null) {
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val peerID = String(packet.senderID).replace("\u0000", "")
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delegate?.onPacketReceived(packet, peerID, device)
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}
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if (responseNeeded) {
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gattServer?.sendResponse(device, requestId, BluetoothGatt.GATT_SUCCESS, 0, null)
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}
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}
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}
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override fun onDescriptorWriteRequest(
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device: BluetoothDevice,
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requestId: Int,
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descriptor: BluetoothGattDescriptor,
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preparedWrite: Boolean,
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responseNeeded: Boolean,
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offset: Int,
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value: ByteArray
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) {
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if (BluetoothGattDescriptor.ENABLE_NOTIFICATION_VALUE.contentEquals(value)) {
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Log.d(TAG, "Device ${device.address} subscribed to notifications")
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subscribedDevices.add(device)
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connectionScope.launch {
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delay(100)
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delegate?.onDeviceConnected(device)
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}
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}
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if (responseNeeded) {
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gattServer?.sendResponse(device, requestId, BluetoothGatt.GATT_SUCCESS, 0, null)
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}
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}
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}
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// Clean up existing server
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gattServer?.close()
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gattServer = bluetoothManager.openGattServer(context, serverCallback)
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// Create characteristic with notification support
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characteristic = BluetoothGattCharacteristic(
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CHARACTERISTIC_UUID,
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BluetoothGattCharacteristic.PROPERTY_READ or
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BluetoothGattCharacteristic.PROPERTY_WRITE or
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BluetoothGattCharacteristic.PROPERTY_WRITE_NO_RESPONSE or
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BluetoothGattCharacteristic.PROPERTY_NOTIFY,
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BluetoothGattCharacteristic.PERMISSION_READ or
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BluetoothGattCharacteristic.PERMISSION_WRITE
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)
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val descriptor = BluetoothGattDescriptor(
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UUID.fromString("00002902-0000-1000-8000-00805f9b34fb"),
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BluetoothGattDescriptor.PERMISSION_READ or BluetoothGattDescriptor.PERMISSION_WRITE
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)
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characteristic?.addDescriptor(descriptor)
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val service = BluetoothGattService(SERVICE_UUID, BluetoothGattService.SERVICE_TYPE_PRIMARY)
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service.addCharacteristic(characteristic)
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gattServer?.addService(service)
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Log.i(TAG, "GATT server setup complete")
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}
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@Suppress("DEPRECATION")
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private fun startAdvertising() {
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if (!hasBluetoothPermissions() || bleAdvertiser == null || !isActive) return
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val settings = powerManager.getAdvertiseSettings()
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val data = AdvertiseData.Builder()
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.addServiceUuid(ParcelUuid(SERVICE_UUID))
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.setIncludeTxPowerLevel(false)
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.setIncludeDeviceName(false)
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.build()
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advertiseCallback = object : AdvertiseCallback() {
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override fun onStartSuccess(settingsInEffect: AdvertiseSettings) {
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Log.i(TAG, "Advertising started (power mode: ${powerManager.getPowerInfo().split("Current Mode: ")[1].split("\n")[0]})")
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}
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override fun onStartFailure(errorCode: Int) {
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Log.e(TAG, "Advertising failed: $errorCode")
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}
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}
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try {
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bleAdvertiser.startAdvertising(settings, data, advertiseCallback)
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} catch (e: Exception) {
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Log.e(TAG, "Exception starting advertising: ${e.message}")
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}
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}
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@Suppress("DEPRECATION")
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private fun stopAdvertising() {
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if (!hasBluetoothPermissions() || bleAdvertiser == null) return
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try {
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advertiseCallback?.let { bleAdvertiser.stopAdvertising(it) }
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} catch (e: Exception) {
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Log.w(TAG, "Error stopping advertising: ${e.message}")
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}
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}
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@Suppress("DEPRECATION")
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private fun startScanning() {
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if (!hasBluetoothPermissions() || bleScanner == null || !isActive) return
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// CRITICAL FIX: Rate limit scan starts to prevent "scanning too frequently" errors
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val currentTime = System.currentTimeMillis()
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if (isCurrentlyScanning) {
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Log.d(TAG, "Scan already in progress, skipping start request")
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return
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}
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val timeSinceLastStart = currentTime - lastScanStartTime
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if (timeSinceLastStart < scanRateLimit) {
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val remainingWait = scanRateLimit - timeSinceLastStart
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Log.w(TAG, "Scan rate limited: need to wait ${remainingWait}ms before starting scan")
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// Schedule delayed scan start
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connectionScope.launch {
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delay(remainingWait)
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if (isActive && !isCurrentlyScanning) {
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startScanning()
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}
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}
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return
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}
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// DIAGNOSTIC: Add both filtered and unfiltered scanning for debugging
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val scanFilter = ScanFilter.Builder()
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.setServiceUuid(ParcelUuid(SERVICE_UUID))
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.build()
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val scanFilters = listOf(scanFilter)
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Log.d(TAG, "Starting BLE scan with target service UUID: $SERVICE_UUID")
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scanCallback = object : ScanCallback() {
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override fun onScanResult(callbackType: Int, result: ScanResult) {
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// DEBUG: Log ALL scan results first
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val device = result.device
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val rssi = result.rssi
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val scanRecord = result.scanRecord
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Log.d(TAG, "Scan result: device: ${device.address}, Name: '${device.name}', RSSI: $rssi")
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handleScanResult(result)
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}
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override fun onBatchScanResults(results: MutableList<ScanResult>) {
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Log.d(TAG, "Batch scan results received: ${results.size} devices")
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results.forEach { result ->
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handleScanResult(result)
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}
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}
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override fun onScanFailed(errorCode: Int) {
|
|
Log.e(TAG, "Scan failed: $errorCode")
|
|
isCurrentlyScanning = false
|
|
lastScanStopTime = System.currentTimeMillis()
|
|
|
|
when (errorCode) {
|
|
1 -> Log.e(TAG, "SCAN_FAILED_ALREADY_STARTED")
|
|
2 -> Log.e(TAG, "SCAN_FAILED_APPLICATION_REGISTRATION_FAILED")
|
|
3 -> Log.e(TAG, "SCAN_FAILED_INTERNAL_ERROR")
|
|
4 -> Log.e(TAG, "SCAN_FAILED_FEATURE_UNSUPPORTED")
|
|
5 -> Log.e(TAG, "SCAN_FAILED_OUT_OF_HARDWARE_RESOURCES")
|
|
6 -> {
|
|
Log.e(TAG, "SCAN_FAILED_SCANNING_TOO_FREQUENTLY")
|
|
Log.w(TAG, "Scan failed due to rate limiting - will retry after delay")
|
|
connectionScope.launch {
|
|
delay(10000) // Wait 10 seconds before retrying
|
|
if (isActive) {
|
|
startScanning()
|
|
}
|
|
}
|
|
}
|
|
else -> Log.e(TAG, "Unknown scan failure code: $errorCode")
|
|
}
|
|
}
|
|
}
|
|
|
|
try {
|
|
lastScanStartTime = currentTime
|
|
isCurrentlyScanning = true
|
|
|
|
bleScanner.startScan(scanFilters, powerManager.getScanSettings(), scanCallback)
|
|
Log.d(TAG, "BLE scan started successfully")
|
|
} catch (e: Exception) {
|
|
Log.e(TAG, "Exception starting scan: ${e.message}")
|
|
isCurrentlyScanning = false
|
|
}
|
|
}
|
|
|
|
@Suppress("DEPRECATION")
|
|
private fun stopScanning() {
|
|
if (!hasBluetoothPermissions() || bleScanner == null) return
|
|
|
|
if (isCurrentlyScanning) {
|
|
try {
|
|
scanCallback?.let {
|
|
bleScanner.stopScan(it)
|
|
Log.d(TAG, "BLE scan stopped successfully")
|
|
}
|
|
} catch (e: Exception) {
|
|
Log.w(TAG, "Error stopping scan: ${e.message}")
|
|
}
|
|
|
|
isCurrentlyScanning = false
|
|
lastScanStopTime = System.currentTimeMillis()
|
|
}
|
|
}
|
|
|
|
private fun handleScanResult(result: ScanResult) {
|
|
val device = result.device
|
|
val rssi = result.rssi
|
|
val deviceAddress = device.address
|
|
val scanRecord = result.scanRecord
|
|
|
|
// CRITICAL: Only process devices that have our service UUID
|
|
val hasOurService = scanRecord?.serviceUuids?.any { it.uuid == SERVICE_UUID } == true
|
|
if (!hasOurService) {
|
|
return
|
|
}
|
|
|
|
// FIXED: Extract peer ID from device name for iOS compatibility
|
|
val deviceName = device.name
|
|
val extractedPeerID = if (deviceName != null && deviceName.length == 8) {
|
|
deviceName
|
|
} else {
|
|
null
|
|
}
|
|
|
|
Log.d(TAG, "Processing bitchat device: $deviceAddress, name: '$deviceName', peerID: $extractedPeerID, RSSI: $rssi")
|
|
|
|
// Power-aware RSSI filtering
|
|
if (rssi < powerManager.getRSSIThreshold()) {
|
|
Log.d(TAG, "Skipping device $deviceAddress due to weak signal: $rssi < ${powerManager.getRSSIThreshold()}")
|
|
return
|
|
}
|
|
|
|
// CRITICAL FIX: Prevent multiple simultaneous connections to same device
|
|
// Check if already connected OR already attempting to connect
|
|
if (connectedDevices.containsKey(deviceAddress)) {
|
|
Log.d(TAG, "Device $deviceAddress already connected, skipping")
|
|
return
|
|
}
|
|
|
|
// CRITICAL FIX: Check if connection attempt is already in progress
|
|
val existingAttempt = pendingConnections[deviceAddress]
|
|
if (existingAttempt != null && !existingAttempt.isExpired()) {
|
|
if (!existingAttempt.shouldRetry()) {
|
|
Log.d(TAG, "Connection to $deviceAddress already in progress or too many recent attempts (${existingAttempt.attempts})")
|
|
return
|
|
}
|
|
}
|
|
|
|
if (connectedDevices.size >= powerManager.getMaxConnections()) {
|
|
Log.d(TAG, "Connection limit reached (${powerManager.getMaxConnections()})")
|
|
return
|
|
}
|
|
|
|
// CRITICAL FIX: Use synchronized block to prevent race conditions
|
|
synchronized(pendingConnections) {
|
|
// Double-check inside synchronized block
|
|
val currentAttempt = pendingConnections[deviceAddress]
|
|
if (currentAttempt != null && !currentAttempt.isExpired() && !currentAttempt.shouldRetry()) {
|
|
Log.d(TAG, "Connection to $deviceAddress blocked by concurrent attempt check")
|
|
return
|
|
}
|
|
|
|
// Update connection attempt atomically
|
|
val attempts = (currentAttempt?.attempts ?: 0) + 1
|
|
pendingConnections[deviceAddress] = ConnectionAttempt(attempts)
|
|
|
|
if (extractedPeerID != null) {
|
|
Log.i(TAG, "Initiating connection to peer $extractedPeerID at $deviceAddress (RSSI: $rssi, attempt: $attempts)")
|
|
} else {
|
|
Log.i(TAG, "Initiating connection to device with bitchat service at $deviceAddress (RSSI: $rssi, attempt: $attempts)")
|
|
}
|
|
|
|
// Start connection immediately while holding lock
|
|
connectToDevice(device, rssi)
|
|
}
|
|
}
|
|
|
|
@Suppress("DEPRECATION")
|
|
private fun connectToDevice(device: BluetoothDevice, rssi: Int) {
|
|
if (!hasBluetoothPermissions()) return
|
|
|
|
val deviceAddress = device.address
|
|
|
|
val gattCallback = object : BluetoothGattCallback() {
|
|
override fun onConnectionStateChange(gatt: BluetoothGatt, status: Int, newState: Int) {
|
|
// FIXED: Enhanced error logging to diagnose connection failures
|
|
Log.d(TAG, "Client: Connection state change - Device: $deviceAddress, Status: $status, NewState: $newState")
|
|
|
|
when (newState) {
|
|
BluetoothProfile.STATE_CONNECTED -> {
|
|
if (status == BluetoothGatt.GATT_SUCCESS) {
|
|
Log.i(TAG, "Client: Successfully connected to $deviceAddress")
|
|
val deviceConn = DeviceConnection(
|
|
device = device,
|
|
gatt = gatt,
|
|
rssi = rssi,
|
|
isClient = true
|
|
)
|
|
connectedDevices[deviceAddress] = deviceConn
|
|
pendingConnections.remove(deviceAddress)
|
|
|
|
connectionScope.launch {
|
|
delay(500) // FIXED: Increased delay for better stability
|
|
Log.d(TAG, "Starting service discovery for $deviceAddress")
|
|
gatt.discoverServices()
|
|
}
|
|
} else {
|
|
Log.w(TAG, "Client: Connection failed to $deviceAddress with status $status")
|
|
// CRITICAL FIX: Clean up failed connection attempt immediately
|
|
pendingConnections.remove(deviceAddress)
|
|
gatt.disconnect()
|
|
}
|
|
}
|
|
BluetoothProfile.STATE_CONNECTING -> {
|
|
Log.d(TAG, "Client: Connecting to $deviceAddress...")
|
|
}
|
|
BluetoothProfile.STATE_DISCONNECTING -> {
|
|
Log.d(TAG, "Client: Disconnecting from $deviceAddress...")
|
|
}
|
|
BluetoothProfile.STATE_DISCONNECTED -> {
|
|
if (status != BluetoothGatt.GATT_SUCCESS) {
|
|
Log.w(TAG, "Client: Disconnected from $deviceAddress with error status $status")
|
|
// Special handling for connection establishment failure (status 147)
|
|
if (status == 147) {
|
|
Log.e(TAG, "Client: Connection establishment failed (status 147) for $deviceAddress - likely due to device compatibility or timing issues")
|
|
}
|
|
} else {
|
|
Log.d(TAG, "Client: Cleanly disconnected from $deviceAddress")
|
|
}
|
|
|
|
cleanupDeviceConnection(deviceAddress)
|
|
|
|
connectionScope.launch {
|
|
delay(CLEANUP_DELAY)
|
|
try {
|
|
gatt.close()
|
|
} catch (e: Exception) {
|
|
Log.w(TAG, "Error closing GATT: ${e.message}")
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
override fun onServicesDiscovered(gatt: BluetoothGatt, status: Int) {
|
|
Log.d(TAG, "Client: Service discovery completed for $deviceAddress with status: $status")
|
|
|
|
if (status == BluetoothGatt.GATT_SUCCESS) {
|
|
val service = gatt.getService(SERVICE_UUID)
|
|
Log.d(TAG, "Client: Service found: ${service != null} for $deviceAddress")
|
|
|
|
if (service != null) {
|
|
val characteristic = service.getCharacteristic(CHARACTERISTIC_UUID)
|
|
Log.d(TAG, "Client: Characteristic found: ${characteristic != null} for $deviceAddress")
|
|
|
|
if (characteristic != null) {
|
|
// Update device connection with characteristic
|
|
connectedDevices[deviceAddress]?.let { deviceConn ->
|
|
val updatedConn = deviceConn.copy(characteristic = characteristic)
|
|
connectedDevices[deviceAddress] = updatedConn
|
|
Log.d(TAG, "Client: Updated device connection with characteristic for $deviceAddress")
|
|
}
|
|
|
|
// Enable notifications
|
|
val notificationEnabled = gatt.setCharacteristicNotification(characteristic, true)
|
|
Log.d(TAG, "Client: Notification enabled: $notificationEnabled for $deviceAddress")
|
|
|
|
val descriptor = characteristic.getDescriptor(
|
|
UUID.fromString("00002902-0000-1000-8000-00805f9b34fb")
|
|
)
|
|
|
|
if (descriptor != null) {
|
|
descriptor.value = BluetoothGattDescriptor.ENABLE_NOTIFICATION_VALUE
|
|
val descriptorWritten = gatt.writeDescriptor(descriptor)
|
|
Log.d(TAG, "Client: Descriptor write initiated: $descriptorWritten for $deviceAddress")
|
|
|
|
connectionScope.launch {
|
|
delay(200) // Wait for descriptor write to complete
|
|
Log.i(TAG, "Client: Connection setup complete for $deviceAddress")
|
|
delegate?.onDeviceConnected(device)
|
|
}
|
|
} else {
|
|
Log.e(TAG, "Client: CCCD descriptor not found for $deviceAddress")
|
|
gatt.disconnect()
|
|
}
|
|
} else {
|
|
Log.e(TAG, "Client: Required characteristic not found for $deviceAddress")
|
|
gatt.disconnect()
|
|
}
|
|
} else {
|
|
Log.e(TAG, "Client: Required service not found for $deviceAddress")
|
|
gatt.disconnect()
|
|
}
|
|
} else {
|
|
Log.e(TAG, "Client: Service discovery failed with status $status for $deviceAddress")
|
|
gatt.disconnect()
|
|
}
|
|
}
|
|
|
|
override fun onCharacteristicChanged(gatt: BluetoothGatt, characteristic: BluetoothGattCharacteristic) {
|
|
val value = characteristic.value
|
|
val packet = BitchatPacket.fromBinaryData(value)
|
|
if (packet != null) {
|
|
val peerID = String(packet.senderID).replace("\u0000", "")
|
|
delegate?.onPacketReceived(packet, peerID, gatt.device)
|
|
}
|
|
}
|
|
}
|
|
|
|
try {
|
|
Log.d(TAG, "Attempting GATT connection to $deviceAddress with autoConnect=false")
|
|
val gatt = device.connectGatt(context, false, gattCallback, BluetoothDevice.TRANSPORT_LE)
|
|
if (gatt == null) {
|
|
Log.e(TAG, "connectGatt returned null for $deviceAddress")
|
|
pendingConnections.remove(deviceAddress)
|
|
} else {
|
|
Log.d(TAG, "GATT connection initiated successfully for $deviceAddress")
|
|
}
|
|
} catch (e: Exception) {
|
|
Log.e(TAG, "Exception connecting to $deviceAddress: ${e.message}")
|
|
pendingConnections.remove(deviceAddress)
|
|
}
|
|
}
|
|
|
|
private fun startPeriodicCleanup() {
|
|
connectionScope.launch {
|
|
while (isActive) {
|
|
delay(CLEANUP_INTERVAL)
|
|
|
|
if (!isActive) break
|
|
|
|
try {
|
|
// Clean up expired pending connections
|
|
val expiredConnections = pendingConnections.filter { it.value.isExpired() }
|
|
expiredConnections.keys.forEach { pendingConnections.remove(it) }
|
|
|
|
// Log cleanup if any
|
|
if (expiredConnections.isNotEmpty()) {
|
|
Log.d(TAG, "Cleaned up ${expiredConnections.size} expired connection attempts")
|
|
}
|
|
|
|
// Log current state
|
|
Log.d(TAG, "Periodic cleanup: ${connectedDevices.size} connections, ${pendingConnections.size} pending")
|
|
|
|
} catch (e: Exception) {
|
|
Log.w(TAG, "Error in periodic cleanup: ${e.message}")
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
private fun enforceConnectionLimits() {
|
|
val maxConnections = powerManager.getMaxConnections()
|
|
if (connectedDevices.size > maxConnections) {
|
|
Log.i(TAG, "Enforcing connection limit: ${connectedDevices.size} > $maxConnections")
|
|
|
|
// Disconnect oldest client connections first
|
|
val sortedConnections = connectedDevices.values
|
|
.filter { it.isClient }
|
|
.sortedBy { it.connectedAt }
|
|
|
|
val toDisconnect = sortedConnections.take(connectedDevices.size - maxConnections)
|
|
toDisconnect.forEach { deviceConn ->
|
|
Log.d(TAG, "Disconnecting ${deviceConn.device.address} due to connection limit")
|
|
deviceConn.gatt?.disconnect()
|
|
}
|
|
}
|
|
}
|
|
|
|
private fun cleanupDeviceConnection(deviceAddress: String) {
|
|
connectedDevices.remove(deviceAddress)?.let { deviceConn ->
|
|
subscribedDevices.removeAll { it.address == deviceAddress }
|
|
}
|
|
// CRITICAL FIX: Always remove from pending connections when cleaning up
|
|
// This prevents failed connections from blocking future attempts
|
|
pendingConnections.remove(deviceAddress)
|
|
Log.d(TAG, "Cleaned up device connection for $deviceAddress")
|
|
}
|
|
|
|
private fun cleanupAllConnections() {
|
|
connectedDevices.values.forEach { deviceConn ->
|
|
deviceConn.gatt?.disconnect()
|
|
}
|
|
|
|
connectionScope.launch {
|
|
delay(CLEANUP_DELAY)
|
|
|
|
connectedDevices.values.forEach { deviceConn ->
|
|
try {
|
|
deviceConn.gatt?.close()
|
|
} catch (e: Exception) {
|
|
Log.w(TAG, "Error closing GATT during cleanup: ${e.message}")
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
private fun clearAllConnections() {
|
|
connectedDevices.clear()
|
|
subscribedDevices.clear()
|
|
pendingConnections.clear()
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Delegate interface for Bluetooth connection manager callbacks
|
|
*/
|
|
interface BluetoothConnectionManagerDelegate {
|
|
fun onPacketReceived(packet: BitchatPacket, peerID: String, device: BluetoothDevice?)
|
|
fun onDeviceConnected(device: BluetoothDevice)
|
|
}
|