api.go 24 KB

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  1. package main
  2. import (
  3. "bufio"
  4. "context"
  5. "encoding/hex"
  6. "encoding/json"
  7. "fmt"
  8. "log"
  9. "net/http"
  10. "os"
  11. "os/exec"
  12. "runtime"
  13. "strconv"
  14. "strings"
  15. "sync"
  16. "time"
  17. "github.com/gorilla/websocket"
  18. )
  19. // APIServer handles HTTP API requests
  20. type APIServer struct {
  21. daemon *Daemon
  22. upgrader websocket.Upgrader
  23. // HTTP server
  24. httpServer *http.Server
  25. serverMu sync.Mutex
  26. // Recent events (ring buffer)
  27. recentBLE []interface{}
  28. recentWiFi []interface{}
  29. recentMu sync.RWMutex
  30. // WebSocket clients
  31. wsClients map[*websocket.Conn]bool
  32. wsClientsMu sync.Mutex
  33. // Session management
  34. sessions map[string]time.Time
  35. sessionsMu sync.RWMutex
  36. }
  37. // StatusResponse is the response for /api/status
  38. type StatusResponse struct {
  39. DeviceID string `json:"device_id"`
  40. Registered bool `json:"registered"`
  41. Mode string `json:"mode"`
  42. Uptime int64 `json:"uptime_sec"`
  43. Network NetworkStatus `json:"network"`
  44. Scanners ScannerStatus `json:"scanners"`
  45. Counters CounterStatus `json:"counters"`
  46. ServerOK bool `json:"server_ok"`
  47. }
  48. type NetworkStatus struct {
  49. Eth0IP string `json:"eth0_ip,omitempty"`
  50. Eth0MAC string `json:"eth0_mac,omitempty"`
  51. Eth0RX int64 `json:"eth0_rx,omitempty"`
  52. Eth0TX int64 `json:"eth0_tx,omitempty"`
  53. Wlan0IP string `json:"wlan0_ip,omitempty"`
  54. Wlan0MAC string `json:"wlan0_mac,omitempty"`
  55. Wlan0SSID string `json:"wlan0_ssid,omitempty"`
  56. Wlan0Signal int `json:"wlan0_signal,omitempty"`
  57. Wlan0Channel int `json:"wlan0_channel,omitempty"`
  58. Wlan0Gateway string `json:"wlan0_gateway,omitempty"`
  59. Wlan0DNS string `json:"wlan0_dns,omitempty"`
  60. Wlan0RX int64 `json:"wlan0_rx,omitempty"`
  61. Wlan0TX int64 `json:"wlan0_tx,omitempty"`
  62. Gateway string `json:"gateway,omitempty"`
  63. DNS string `json:"dns,omitempty"`
  64. NTP string `json:"ntp,omitempty"`
  65. APActive bool `json:"ap_active"`
  66. }
  67. type ScannerStatus struct {
  68. BLERunning bool `json:"ble_running"`
  69. WiFiRunning bool `json:"wifi_running"`
  70. }
  71. type CounterStatus struct {
  72. BLEEvents uint64 `json:"ble_events"`
  73. WiFiEvents uint64 `json:"wifi_events"`
  74. Uploads uint64 `json:"uploads"`
  75. Errors uint64 `json:"errors"`
  76. }
  77. // MetricsResponse is the response for /api/metrics
  78. type MetricsResponse struct {
  79. CPUPercent float64 `json:"cpu_percent"`
  80. MemUsedMB float64 `json:"mem_used_mb"`
  81. MemTotalMB float64 `json:"mem_total_mb"`
  82. Temperature float64 `json:"temperature"`
  83. LoadAvg float64 `json:"load_avg"`
  84. }
  85. // SettingsRequest is the request for /api/settings
  86. type SettingsRequest struct {
  87. Password string `json:"password"`
  88. Settings SettingsPayload `json:"settings"`
  89. }
  90. // SettingsPayload contains the actual settings
  91. type SettingsPayload struct {
  92. Mode string `json:"mode"`
  93. // BLE Scanner (LAN mode only)
  94. BLEEnabled bool `json:"ble_enabled"`
  95. BLEBatchInterval int `json:"ble_batch_interval_ms"`
  96. BLEEndpoint string `json:"ble_endpoint"`
  97. // WiFi Scanner (LAN mode only)
  98. WiFiMonitorEnabled bool `json:"wifi_monitor_enabled"`
  99. WiFiMonitorBatchInterval int `json:"wifi_monitor_batch_interval_ms"`
  100. WiFiMonitorEndpoint string `json:"wifi_monitor_endpoint"`
  101. // WiFi Client
  102. WiFiClientEnabled bool `json:"wifi_client_enabled"`
  103. WifiSSID string `json:"wifi_ssid"`
  104. WifiPSK string `json:"wifi_psk"`
  105. // eth0
  106. Eth0Mode string `json:"eth0_mode"`
  107. Eth0IP string `json:"eth0_ip"`
  108. Eth0Gateway string `json:"eth0_gateway"`
  109. Eth0DNS string `json:"eth0_dns"`
  110. // NTP
  111. NTPServers string `json:"ntp_servers"`
  112. }
  113. // NewAPIServer creates a new API server
  114. func NewAPIServer(daemon *Daemon) *APIServer {
  115. return &APIServer{
  116. daemon: daemon,
  117. upgrader: websocket.Upgrader{
  118. CheckOrigin: func(r *http.Request) bool {
  119. return true // Allow all origins for local access
  120. },
  121. },
  122. recentBLE: make([]interface{}, 0, 100),
  123. recentWiFi: make([]interface{}, 0, 100),
  124. wsClients: make(map[*websocket.Conn]bool),
  125. sessions: make(map[string]time.Time),
  126. }
  127. }
  128. // Start starts the HTTP server
  129. func (s *APIServer) Start(addr string) error {
  130. s.serverMu.Lock()
  131. defer s.serverMu.Unlock()
  132. if s.httpServer != nil {
  133. return fmt.Errorf("HTTP server already running")
  134. }
  135. mux := http.NewServeMux()
  136. // API endpoints
  137. mux.HandleFunc("/api/status", s.handleStatus)
  138. mux.HandleFunc("/api/metrics", s.handleMetrics)
  139. mux.HandleFunc("/api/ble/recent", s.handleBLERecent)
  140. mux.HandleFunc("/api/wifi/recent", s.handleWiFiRecent)
  141. mux.HandleFunc("/api/config", s.handleConfig)
  142. mux.HandleFunc("/api/settings", s.handleSettings)
  143. mux.HandleFunc("/api/unlock", s.handleUnlock)
  144. mux.HandleFunc("/api/logs", s.handleLogs)
  145. mux.HandleFunc("/api/kernel-logs", s.handleKernelLogs)
  146. mux.HandleFunc("/api/ws", s.handleWebSocket)
  147. // Serve static files for dashboard with SPA fallback
  148. mux.Handle("/", s.spaHandler("/opt/mybeacon/www"))
  149. s.httpServer = &http.Server{
  150. Addr: addr,
  151. Handler: s.corsMiddleware(mux),
  152. }
  153. log.Printf("[api] Starting HTTP server on %s", addr)
  154. return s.httpServer.ListenAndServe()
  155. }
  156. // Stop stops the HTTP server
  157. func (s *APIServer) Stop() error {
  158. s.serverMu.Lock()
  159. defer s.serverMu.Unlock()
  160. if s.httpServer == nil {
  161. return nil // Already stopped
  162. }
  163. log.Println("[api] Stopping HTTP server...")
  164. ctx, cancel := context.WithTimeout(context.Background(), 5*time.Second)
  165. defer cancel()
  166. err := s.httpServer.Shutdown(ctx)
  167. s.httpServer = nil
  168. return err
  169. }
  170. // IsRunning returns true if HTTP server is running
  171. func (s *APIServer) IsRunning() bool {
  172. s.serverMu.Lock()
  173. defer s.serverMu.Unlock()
  174. return s.httpServer != nil
  175. }
  176. // spaHandler serves static files with SPA fallback
  177. func (s *APIServer) spaHandler(staticPath string) http.Handler {
  178. fileServer := http.FileServer(http.Dir(staticPath))
  179. return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
  180. // Check if file exists
  181. path := staticPath + r.URL.Path
  182. _, err := os.Stat(path)
  183. // If file doesn't exist and it's not the root, serve index.html (SPA routing)
  184. if os.IsNotExist(err) && r.URL.Path != "/" {
  185. // Serve index.html for SPA routing
  186. http.ServeFile(w, r, staticPath+"/index.html")
  187. return
  188. }
  189. // Serve the file normally
  190. fileServer.ServeHTTP(w, r)
  191. })
  192. }
  193. // corsMiddleware adds CORS headers
  194. func (s *APIServer) corsMiddleware(next http.Handler) http.Handler {
  195. return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
  196. w.Header().Set("Access-Control-Allow-Origin", "*")
  197. w.Header().Set("Access-Control-Allow-Methods", "GET, POST, OPTIONS")
  198. w.Header().Set("Access-Control-Allow-Headers", "Content-Type, Authorization")
  199. if r.Method == "OPTIONS" {
  200. w.WriteHeader(http.StatusOK)
  201. return
  202. }
  203. next.ServeHTTP(w, r)
  204. })
  205. }
  206. // handleStatus returns device status
  207. func (s *APIServer) handleStatus(w http.ResponseWriter, r *http.Request) {
  208. s.daemon.mu.Lock()
  209. defer s.daemon.mu.Unlock()
  210. eth0rx, eth0tx := getInterfaceStats("eth0")
  211. wlan0rx, wlan0tx := getInterfaceStats("wlan0")
  212. wlanInfo := getWlanInfo()
  213. // Gateway and DNS are shared, but wlan0 might have its own
  214. gateway := getDefaultGateway()
  215. dns := getDNS()
  216. status := StatusResponse{
  217. DeviceID: s.daemon.state.DeviceID,
  218. Registered: s.daemon.state.DeviceToken != "",
  219. Mode: "cloud", // TODO: implement mode switching
  220. Uptime: getUptime(),
  221. Network: NetworkStatus{
  222. Eth0IP: getInterfaceIP("eth0"),
  223. Eth0MAC: getMacAddress("eth0"),
  224. Eth0RX: eth0rx,
  225. Eth0TX: eth0tx,
  226. Wlan0IP: getInterfaceIP("wlan0"),
  227. Wlan0MAC: getMacAddress("wlan0"),
  228. Wlan0SSID: wlanInfo.ssid,
  229. Wlan0Signal: wlanInfo.signal,
  230. Wlan0Channel: wlanInfo.channel,
  231. Wlan0Gateway: gateway, // same gateway for now
  232. Wlan0DNS: dns, // same DNS for now
  233. Wlan0RX: wlan0rx,
  234. Wlan0TX: wlan0tx,
  235. Gateway: gateway,
  236. DNS: dns,
  237. NTP: "pool.ntp.org",
  238. },
  239. Scanners: ScannerStatus{
  240. BLERunning: s.daemon.scanners.IsBLERunning(),
  241. WiFiRunning: s.daemon.scanners.IsWiFiRunning(),
  242. },
  243. ServerOK: s.daemon.state.DeviceToken != "",
  244. }
  245. s.jsonResponse(w, status)
  246. }
  247. // handleMetrics returns system metrics
  248. func (s *APIServer) handleMetrics(w http.ResponseWriter, r *http.Request) {
  249. metrics := MetricsResponse{
  250. CPUPercent: getCPUPercent(),
  251. MemUsedMB: getMemUsedMB(),
  252. MemTotalMB: getMemTotalMB(),
  253. Temperature: getTemperature(),
  254. LoadAvg: getLoadAvg(),
  255. }
  256. s.jsonResponse(w, metrics)
  257. }
  258. // handleBLERecent returns recent BLE events
  259. func (s *APIServer) handleBLERecent(w http.ResponseWriter, r *http.Request) {
  260. s.recentMu.RLock()
  261. events := make([]interface{}, len(s.recentBLE))
  262. copy(events, s.recentBLE)
  263. s.recentMu.RUnlock()
  264. s.jsonResponse(w, events)
  265. }
  266. // handleWiFiRecent returns recent WiFi events
  267. func (s *APIServer) handleWiFiRecent(w http.ResponseWriter, r *http.Request) {
  268. s.recentMu.RLock()
  269. events := make([]interface{}, len(s.recentWiFi))
  270. copy(events, s.recentWiFi)
  271. s.recentMu.RUnlock()
  272. s.jsonResponse(w, events)
  273. }
  274. // handleLogs returns recent daemon log lines
  275. func (s *APIServer) handleLogs(w http.ResponseWriter, r *http.Request) {
  276. logFile := "/var/log/mybeacon.log"
  277. data, err := os.ReadFile(logFile)
  278. if err != nil {
  279. s.jsonResponse(w, []string{})
  280. return
  281. }
  282. lines := strings.Split(string(data), "\n")
  283. // Return last 500 lines
  284. if len(lines) > 500 {
  285. lines = lines[len(lines)-500:]
  286. }
  287. // Filter out empty lines
  288. var result []string
  289. for _, line := range lines {
  290. if strings.TrimSpace(line) != "" {
  291. result = append(result, line)
  292. }
  293. }
  294. s.jsonResponse(w, result)
  295. }
  296. // handleKernelLogs returns recent kernel log lines from dmesg
  297. func (s *APIServer) handleKernelLogs(w http.ResponseWriter, r *http.Request) {
  298. // Run dmesg command
  299. cmd := exec.Command("dmesg", "-T")
  300. output, err := cmd.CombinedOutput()
  301. if err != nil {
  302. // Try without -T flag (human-readable timestamps) if not supported
  303. cmd = exec.Command("dmesg")
  304. output, err = cmd.CombinedOutput()
  305. if err != nil {
  306. s.jsonResponse(w, []string{})
  307. return
  308. }
  309. }
  310. lines := strings.Split(string(output), "\n")
  311. // Return last 500 lines
  312. if len(lines) > 500 {
  313. lines = lines[len(lines)-500:]
  314. }
  315. // Filter out empty lines
  316. var result []string
  317. for _, line := range lines {
  318. if strings.TrimSpace(line) != "" {
  319. result = append(result, line)
  320. }
  321. }
  322. s.jsonResponse(w, result)
  323. }
  324. // handleConfig returns current config (without secrets)
  325. func (s *APIServer) handleConfig(w http.ResponseWriter, r *http.Request) {
  326. s.daemon.mu.Lock()
  327. cfg := *s.daemon.cfg
  328. s.daemon.mu.Unlock()
  329. // Remove secrets
  330. cfg.SSHTunnel.KeyPath = ""
  331. s.jsonResponse(w, cfg)
  332. }
  333. // handleSettings handles settings updates (requires password)
  334. func (s *APIServer) handleSettings(w http.ResponseWriter, r *http.Request) {
  335. if r.Method != "POST" {
  336. http.Error(w, "Method not allowed", http.StatusMethodNotAllowed)
  337. return
  338. }
  339. var req SettingsRequest
  340. if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
  341. http.Error(w, "Invalid JSON", http.StatusBadRequest)
  342. return
  343. }
  344. // Verify password
  345. if !s.verifyPassword(req.Password) {
  346. http.Error(w, "Invalid password", http.StatusUnauthorized)
  347. return
  348. }
  349. s.daemon.mu.Lock()
  350. // Apply mode change
  351. if req.Settings.Mode != "" && (req.Settings.Mode == "cloud" || req.Settings.Mode == "lan") {
  352. if s.daemon.cfg.Mode != req.Settings.Mode {
  353. log.Printf("[api] Mode changed: %s -> %s", s.daemon.cfg.Mode, req.Settings.Mode)
  354. s.daemon.cfg.Mode = req.Settings.Mode
  355. }
  356. }
  357. // In LAN mode: apply scanner settings
  358. if s.daemon.cfg.Mode == "lan" {
  359. // BLE Scanner
  360. s.daemon.cfg.BLE.Enabled = req.Settings.BLEEnabled
  361. if req.Settings.BLEBatchInterval > 0 {
  362. s.daemon.cfg.BLE.BatchIntervalMs = req.Settings.BLEBatchInterval
  363. }
  364. // TODO: Store BLE endpoint for LAN mode
  365. log.Printf("[api] BLE scanner (LAN): enabled=%v, interval=%d", req.Settings.BLEEnabled, req.Settings.BLEBatchInterval)
  366. // WiFi Scanner
  367. s.daemon.cfg.WiFi.MonitorEnabled = req.Settings.WiFiMonitorEnabled
  368. if req.Settings.WiFiMonitorBatchInterval > 0 {
  369. s.daemon.cfg.WiFi.BatchIntervalMs = req.Settings.WiFiMonitorBatchInterval
  370. }
  371. // TODO: Store WiFi endpoint for LAN mode
  372. log.Printf("[api] WiFi scanner (LAN): enabled=%v, interval=%d", req.Settings.WiFiMonitorEnabled, req.Settings.WiFiMonitorBatchInterval)
  373. // WiFi Client enabled flag
  374. s.daemon.cfg.WiFi.ClientEnabled = req.Settings.WiFiClientEnabled
  375. }
  376. // Apply WiFi Client settings (both modes)
  377. if req.Settings.WifiSSID != "" {
  378. s.daemon.cfg.WiFi.SSID = req.Settings.WifiSSID
  379. s.daemon.cfg.WiFi.PSK = req.Settings.WifiPSK
  380. log.Printf("[api] WiFi client: ssid=%s", req.Settings.WifiSSID)
  381. }
  382. // Apply NTP settings
  383. if req.Settings.NTPServers != "" {
  384. servers := strings.Split(req.Settings.NTPServers, ",")
  385. for i := range servers {
  386. servers[i] = strings.TrimSpace(servers[i])
  387. }
  388. s.daemon.cfg.Network.NTPServers = servers
  389. log.Printf("[api] NTP servers updated: %v", servers)
  390. }
  391. // Apply eth0 settings (always local, never from server)
  392. if req.Settings.Eth0Mode == "static" {
  393. s.daemon.cfg.Network.Eth0.Static = true
  394. s.daemon.cfg.Network.Eth0.Address = req.Settings.Eth0IP
  395. s.daemon.cfg.Network.Eth0.Gateway = req.Settings.Eth0Gateway
  396. s.daemon.cfg.Network.Eth0.DNS = req.Settings.Eth0DNS
  397. log.Printf("[api] eth0 static IP configured: %s", req.Settings.Eth0IP)
  398. } else if req.Settings.Eth0Mode == "dhcp" {
  399. s.daemon.cfg.Network.Eth0.Static = false
  400. log.Printf("[api] eth0 set to DHCP")
  401. }
  402. // Save local config
  403. SaveConfig(s.daemon.configPath, s.daemon.cfg)
  404. // In Cloud Mode: send WiFi credentials to server for centralized management
  405. if s.daemon.cfg.Mode == "cloud" && req.Settings.WifiSSID != "" {
  406. s.daemon.mu.Unlock()
  407. if err := s.daemon.updateWiFiCredentials(req.Settings.WifiSSID, req.Settings.WifiPSK); err != nil {
  408. log.Printf("[api] Failed to update WiFi credentials on server: %v", err)
  409. // Don't fail the request - local settings are already saved
  410. } else {
  411. log.Printf("[api] WiFi credentials updated on server")
  412. }
  413. s.daemon.mu.Lock()
  414. }
  415. s.daemon.mu.Unlock()
  416. // Apply WiFi client connection if credentials provided
  417. if req.Settings.WifiSSID != "" {
  418. if err := applyWiFiSettings(req.Settings.WifiSSID, req.Settings.WifiPSK); err != nil {
  419. log.Printf("[api] Failed to apply WiFi settings: %v", err)
  420. http.Error(w, "Failed to apply WiFi settings: "+err.Error(), http.StatusInternalServerError)
  421. return
  422. }
  423. log.Printf("[api] WiFi client connection initiated: SSID=%s", req.Settings.WifiSSID)
  424. }
  425. s.jsonResponse(w, map[string]bool{"success": true})
  426. }
  427. // handleUnlock verifies password and creates session
  428. func (s *APIServer) handleUnlock(w http.ResponseWriter, r *http.Request) {
  429. if r.Method != "POST" {
  430. http.Error(w, "Method not allowed", http.StatusMethodNotAllowed)
  431. return
  432. }
  433. var req struct {
  434. Password string `json:"password"`
  435. }
  436. if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
  437. http.Error(w, "Invalid JSON", http.StatusBadRequest)
  438. return
  439. }
  440. if !s.verifyPassword(req.Password) {
  441. http.Error(w, "Invalid password", http.StatusUnauthorized)
  442. return
  443. }
  444. // Create session token (simple implementation)
  445. token := generateToken(32)
  446. s.sessionsMu.Lock()
  447. s.sessions[token] = time.Now().Add(30 * time.Minute)
  448. s.sessionsMu.Unlock()
  449. s.jsonResponse(w, map[string]string{"token": token})
  450. }
  451. // handleWebSocket handles WebSocket connections for live updates
  452. func (s *APIServer) handleWebSocket(w http.ResponseWriter, r *http.Request) {
  453. conn, err := s.upgrader.Upgrade(w, r, nil)
  454. if err != nil {
  455. log.Printf("[api] WebSocket upgrade error: %v", err)
  456. return
  457. }
  458. defer conn.Close()
  459. s.wsClientsMu.Lock()
  460. s.wsClients[conn] = true
  461. s.wsClientsMu.Unlock()
  462. defer func() {
  463. s.wsClientsMu.Lock()
  464. delete(s.wsClients, conn)
  465. s.wsClientsMu.Unlock()
  466. }()
  467. // Keep connection alive and read messages
  468. for {
  469. _, _, err := conn.ReadMessage()
  470. if err != nil {
  471. break
  472. }
  473. }
  474. }
  475. // AddBLEEvent adds a BLE event to recent list and broadcasts to WebSocket
  476. func (s *APIServer) AddBLEEvent(event interface{}) {
  477. s.recentMu.Lock()
  478. s.recentBLE = append(s.recentBLE, event)
  479. if len(s.recentBLE) > 100 {
  480. s.recentBLE = s.recentBLE[1:]
  481. }
  482. s.recentMu.Unlock()
  483. s.broadcast(map[string]interface{}{
  484. "type": "ble",
  485. "event": event,
  486. })
  487. }
  488. // AddWiFiEvent adds a WiFi event to recent list and broadcasts to WebSocket
  489. func (s *APIServer) AddWiFiEvent(event interface{}) {
  490. s.recentMu.Lock()
  491. s.recentWiFi = append(s.recentWiFi, event)
  492. if len(s.recentWiFi) > 100 {
  493. s.recentWiFi = s.recentWiFi[1:]
  494. }
  495. s.recentMu.Unlock()
  496. s.broadcast(map[string]interface{}{
  497. "type": "wifi",
  498. "event": event,
  499. })
  500. }
  501. // broadcast sends a message to all WebSocket clients
  502. func (s *APIServer) broadcast(msg interface{}) {
  503. data, err := json.Marshal(msg)
  504. if err != nil {
  505. return
  506. }
  507. s.wsClientsMu.Lock()
  508. defer s.wsClientsMu.Unlock()
  509. for conn := range s.wsClients {
  510. if err := conn.WriteMessage(websocket.TextMessage, data); err != nil {
  511. conn.Close()
  512. delete(s.wsClients, conn)
  513. }
  514. }
  515. }
  516. // verifyPassword checks if password matches device password
  517. func (s *APIServer) verifyPassword(password string) bool {
  518. s.daemon.mu.Lock()
  519. devicePassword := s.daemon.state.DevicePassword
  520. s.daemon.mu.Unlock()
  521. // Use default password "admin" if no password set (device not registered)
  522. if devicePassword == "" {
  523. devicePassword = "admin"
  524. }
  525. return password != "" && password == devicePassword
  526. }
  527. // jsonResponse sends a JSON response
  528. func (s *APIServer) jsonResponse(w http.ResponseWriter, data interface{}) {
  529. w.Header().Set("Content-Type", "application/json")
  530. json.NewEncoder(w).Encode(data)
  531. }
  532. // Helper functions for system metrics
  533. func getUptime() int64 {
  534. data, err := os.ReadFile("/proc/uptime")
  535. if err != nil {
  536. return 0
  537. }
  538. var uptime float64
  539. if err := parseFloat(string(data), &uptime); err != nil {
  540. return 0
  541. }
  542. return int64(uptime)
  543. }
  544. func parseFloat(s string, f *float64) error {
  545. parts := strings.Fields(s)
  546. if len(parts) == 0 {
  547. return nil
  548. }
  549. return json.Unmarshal([]byte(parts[0]), f)
  550. }
  551. func getCPUPercent() float64 {
  552. // Simplified - read from /proc/stat
  553. return 0 // TODO: implement proper CPU usage
  554. }
  555. func getMemUsedMB() float64 {
  556. var m runtime.MemStats
  557. runtime.ReadMemStats(&m)
  558. return float64(m.Alloc) / 1024 / 1024
  559. }
  560. func getMemTotalMB() float64 {
  561. data, err := os.ReadFile("/proc/meminfo")
  562. if err != nil {
  563. return 0
  564. }
  565. scanner := bufio.NewScanner(strings.NewReader(string(data)))
  566. for scanner.Scan() {
  567. line := scanner.Text()
  568. if strings.HasPrefix(line, "MemTotal:") {
  569. var total int64
  570. if err := parseMemInfo(line, &total); err == nil {
  571. return float64(total) / 1024
  572. }
  573. }
  574. }
  575. return 0
  576. }
  577. func parseMemInfo(line string, value *int64) error {
  578. parts := strings.Fields(line)
  579. if len(parts) >= 2 {
  580. return json.Unmarshal([]byte(parts[1]), value)
  581. }
  582. return nil
  583. }
  584. func getTemperature() float64 {
  585. data, err := os.ReadFile("/sys/class/thermal/thermal_zone0/temp")
  586. if err != nil {
  587. return 0
  588. }
  589. var temp int64
  590. if err := json.Unmarshal([]byte(strings.TrimSpace(string(data))), &temp); err != nil {
  591. return 0
  592. }
  593. return float64(temp) / 1000
  594. }
  595. func getLoadAvg() float64 {
  596. data, err := os.ReadFile("/proc/loadavg")
  597. if err != nil {
  598. return 0
  599. }
  600. var load float64
  601. if err := parseFloat(string(data), &load); err != nil {
  602. return 0
  603. }
  604. return load
  605. }
  606. func generateToken(length int) string {
  607. const chars = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
  608. b := make([]byte, length)
  609. for i := range b {
  610. b[i] = chars[time.Now().UnixNano()%int64(len(chars))]
  611. time.Sleep(time.Nanosecond)
  612. }
  613. return string(b)
  614. }
  615. func getInterfaceStats(name string) (rx, tx int64) {
  616. rxPath := "/sys/class/net/" + name + "/statistics/rx_bytes"
  617. txPath := "/sys/class/net/" + name + "/statistics/tx_bytes"
  618. if data, err := os.ReadFile(rxPath); err == nil {
  619. json.Unmarshal([]byte(strings.TrimSpace(string(data))), &rx)
  620. }
  621. if data, err := os.ReadFile(txPath); err == nil {
  622. json.Unmarshal([]byte(strings.TrimSpace(string(data))), &tx)
  623. }
  624. return
  625. }
  626. func getDefaultGateway() string {
  627. data, err := os.ReadFile("/proc/net/route")
  628. if err != nil {
  629. return ""
  630. }
  631. scanner := bufio.NewScanner(strings.NewReader(string(data)))
  632. for scanner.Scan() {
  633. fields := strings.Fields(scanner.Text())
  634. if len(fields) >= 3 && fields[1] == "00000000" {
  635. gw := fields[2]
  636. if len(gw) == 8 {
  637. b, _ := hex.DecodeString(gw)
  638. if len(b) == 4 {
  639. // Little-endian: reverse bytes
  640. return fmt.Sprintf("%d.%d.%d.%d", b[3], b[2], b[1], b[0])
  641. }
  642. }
  643. }
  644. }
  645. return ""
  646. }
  647. func getDNS() string {
  648. data, err := os.ReadFile("/etc/resolv.conf")
  649. if err != nil {
  650. return ""
  651. }
  652. var servers []string
  653. scanner := bufio.NewScanner(strings.NewReader(string(data)))
  654. for scanner.Scan() {
  655. line := scanner.Text()
  656. if strings.HasPrefix(line, "nameserver ") {
  657. servers = append(servers, strings.TrimPrefix(line, "nameserver "))
  658. }
  659. }
  660. return strings.Join(servers, ", ")
  661. }
  662. type wlanInfoResult struct {
  663. ssid string
  664. signal int
  665. channel int
  666. }
  667. func getWlanInfo() wlanInfoResult {
  668. var info wlanInfoResult
  669. // Get SSID, signal, channel from iw dev wlan0 link
  670. out, err := exec.Command("iw", "dev", "wlan0", "link").Output()
  671. if err == nil {
  672. scanner := bufio.NewScanner(strings.NewReader(string(out)))
  673. for scanner.Scan() {
  674. line := strings.TrimSpace(scanner.Text())
  675. if strings.HasPrefix(line, "SSID:") {
  676. info.ssid = strings.TrimSpace(strings.TrimPrefix(line, "SSID:"))
  677. } else if strings.HasPrefix(line, "signal:") {
  678. // signal: -30 dBm
  679. parts := strings.Fields(line)
  680. if len(parts) >= 2 {
  681. if v, err := strconv.Atoi(parts[1]); err == nil {
  682. info.signal = v
  683. }
  684. }
  685. } else if strings.HasPrefix(line, "freq:") {
  686. // freq: 2462
  687. parts := strings.Fields(line)
  688. if len(parts) >= 2 {
  689. if f, err := strconv.Atoi(parts[1]); err == nil {
  690. info.channel = freqToChannel(f)
  691. }
  692. }
  693. }
  694. }
  695. }
  696. return info
  697. }
  698. // freqToChannel converts WiFi frequency (MHz) to channel number
  699. func freqToChannel(freq int) int {
  700. if freq >= 2412 && freq <= 2484 {
  701. if freq == 2484 {
  702. return 14
  703. }
  704. return (freq - 2407) / 5
  705. }
  706. if freq >= 5170 && freq <= 5825 {
  707. return (freq - 5000) / 5
  708. }
  709. return 0
  710. }
  711. // getMacAddress returns MAC address for given interface
  712. func getMacAddress(iface string) string {
  713. addressPath := "/sys/class/net/" + iface + "/address"
  714. data, err := os.ReadFile(addressPath)
  715. if err != nil {
  716. return ""
  717. }
  718. return strings.TrimSpace(string(data))
  719. }
  720. // applyWiFiSettings configures wpa_supplicant and connects to WiFi
  721. func applyWiFiSettings(ssid, psk string) error {
  722. // Retry the whole connection up to 3 times
  723. var lastErr error
  724. for attempt := 1; attempt <= 3; attempt++ {
  725. log.Printf("[wifi] Connection attempt %d/3 to SSID=%s", attempt, ssid)
  726. if err := tryWiFiConnect(ssid, psk); err != nil {
  727. lastErr = err
  728. log.Printf("[wifi] Attempt %d failed: %v", attempt, err)
  729. if attempt < 3 {
  730. log.Printf("[wifi] Waiting 5s before retry...")
  731. time.Sleep(5 * time.Second)
  732. }
  733. continue
  734. }
  735. log.Println("[wifi] WiFi client connected successfully")
  736. return nil
  737. }
  738. return fmt.Errorf("all connection attempts failed: %w", lastErr)
  739. }
  740. func tryWiFiConnect(ssid, psk string) error {
  741. // Use external shell script for WiFi connection (more reliable)
  742. scriptPath := "/opt/mybeacon/bin/wifi-connect.sh"
  743. cmd := exec.Command(scriptPath, ssid, psk)
  744. output, err := cmd.CombinedOutput()
  745. if err != nil {
  746. return fmt.Errorf("wifi-connect.sh failed: %w (output: %s)", err, string(output))
  747. }
  748. log.Printf("[wifi] %s", strings.TrimSpace(string(output)))
  749. // Ensure wlan0 is configured in /etc/network/interfaces (for manual use)
  750. ensureWlan0Interface()
  751. return nil
  752. }
  753. func ensureWlan0Interface() error {
  754. interfacesPath := "/etc/network/interfaces"
  755. data, err := os.ReadFile(interfacesPath)
  756. if err != nil {
  757. return err
  758. }
  759. content := string(data)
  760. // Check if wlan0 is already configured (not commented out)
  761. lines := strings.Split(content, "\n")
  762. for _, line := range lines {
  763. trimmed := strings.TrimSpace(line)
  764. if !strings.HasPrefix(trimmed, "#") && strings.Contains(trimmed, "iface wlan0 inet") {
  765. return nil // Already configured
  766. }
  767. }
  768. // Add wlan0 configuration
  769. wlan0Config := `
  770. # WiFi (managed by beacon-daemon)
  771. auto wlan0
  772. iface wlan0 inet dhcp
  773. pre-up wpa_supplicant -B -i wlan0 -c /etc/wpa_supplicant/wpa_supplicant.conf
  774. post-down killall wpa_supplicant 2>/dev/null || true
  775. `
  776. if err := os.WriteFile(interfacesPath, []byte(content+wlan0Config), 0644); err != nil {
  777. return err
  778. }
  779. log.Println("[wifi] Added wlan0 configuration to /etc/network/interfaces")
  780. return nil
  781. }
  782. // disconnectWiFiClient disconnects from WiFi and stops wpa_supplicant
  783. func disconnectWiFiClient() {
  784. log.Println("[wifi] Disconnecting WiFi client...")
  785. exec.Command("killall", "wpa_supplicant", "udhcpc", "dhcpcd").Run()
  786. exec.Command("ip", "addr", "flush", "dev", "wlan0").Run()
  787. os.RemoveAll("/var/run/wpa_supplicant/wlan0")
  788. log.Println("[wifi] WiFi client disconnected")
  789. }