app.py 173 KB

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  1. from flask import Flask, jsonify, request, abort, send_from_directory
  2. from flask_cors import CORS
  3. from flask_socketio import SocketIO, emit
  4. import threading
  5. import queue
  6. import time
  7. import json
  8. import os
  9. import logging
  10. import uuid
  11. # 配置文件路径
  12. SERIAL_CONFIG_FILE = os.path.join(os.path.dirname(os.path.abspath(__file__)), 'serial_config.json')
  13. # 静态文件目录(前端构建产物或由 nginx 提供)
  14. STATIC_FOLDER = os.path.join(os.path.dirname(os.path.dirname(os.path.abspath(__file__))), 'frontend', 'dist')
  15. # 导入配置
  16. from config import (
  17. MAX_BUFFER_SIZE,
  18. FLASK_SECRET_KEY,
  19. FLASK_DEBUG,
  20. FLASK_HOST,
  21. FLASK_PORT,
  22. LOG_LEVEL,
  23. LOG_FORMAT,
  24. LOG_FILE,
  25. SOCKETIO_ASYNC_MODE,
  26. SOCKETIO_ALLOWED_ORIGINS,
  27. DEFAULT_FORWARD_SERIAL_TO_MQTT,
  28. DEFAULT_FORWARD_MQTT_TO_SERIAL,
  29. DEFAULT_MQTT_PUBLISH_TOPIC,
  30. SOCKETIO_NAMESPACE_DATA,
  31. SOCKETIO_NAMESPACE_STATUS,
  32. SOCKETIO_NAMESPACE_CONTROL,
  33. ERROR_CODES,
  34. ERROR_MESSAGES,
  35. DEFAULT_CUSTOMER_ID,
  36. DEFAULT_DTU_ID,
  37. DTU_HEARTBEAT_INTERVAL,
  38. DTU_OFFLINE_TIMEOUT,
  39. DEFAULT_MQTT_TOPIC_PREFIX,
  40. DTU_REGISTRATION_TOPIC,
  41. DTU_STATUS_TOPIC,
  42. DTU_CONTROL_TOPIC,
  43. DTU_RESPONSE_TOPIC,
  44. DTU_EVENT_TOPIC,
  45. DTU_ALARM_TOPIC,
  46. DTU_BROADCAST_TOPIC,
  47. MAX_PANELS,
  48. MAX_PORTS_PER_PANEL,
  49. DHT11_ENABLED,
  50. DHT11_GPIO_PIN,
  51. DHT11_GPIO_CHIP,
  52. DHT11_POLL_INTERVAL,
  53. DHT11_SIMULATE,
  54. NEXTION_ENABLED,
  55. NEXTION_SCREEN_PORT,
  56. NEXTION_SCREEN_BAUD,
  57. NEXTION_PANEL_NAME_PREFIX,
  58. NEXTION_CMD_DELAY_MS
  59. )
  60. # 配置日志
  61. logging_config = {
  62. 'level': getattr(logging, LOG_LEVEL),
  63. 'format': LOG_FORMAT
  64. }
  65. if LOG_FILE:
  66. logging_config['filename'] = LOG_FILE
  67. logging.basicConfig(**logging_config)
  68. logger = logging.getLogger('serial_mqtt_gateway')
  69. from modules.serial_port import SerialPort
  70. from modules.mqtt_client import MQTTClient
  71. from modules.network_config import network_manager
  72. from modules.modbus_rtu import ModbusRTUClient, ANTENNA_ADDRESSES, AddressConfigProtocol, build_broadcast_query, build_confirm_address, build_assign_address
  73. from modules.dht11_sensor import DHT11Sensor
  74. from modules.nextion_display import NextionDisplay
  75. app = Flask(__name__)
  76. app.config['SECRET_KEY'] = FLASK_SECRET_KEY
  77. # 配置CORS以允许nginx代理的前端访问
  78. CORS(app, resources={r"/api/*": {"origins": "*"}, r"/socket.io/*": {"origins": "*"}})
  79. # 初始化SocketIO
  80. socketio = SocketIO(
  81. app,
  82. cors_allowed_origins=SOCKETIO_ALLOWED_ORIGINS,
  83. async_mode=SOCKETIO_ASYNC_MODE,
  84. manage_session=False, # 禁用会话管理以提高性能
  85. ping_timeout=30, # 心跳超时时间
  86. ping_interval=25, # 心跳间隔
  87. logger=FLASK_DEBUG, # 根据Flask调试模式决定是否记录SocketIO日志
  88. engineio_logger=FLASK_DEBUG
  89. )
  90. # 初始化串口和MQTT客户端
  91. serial_client = SerialPort()
  92. mqtt_client = MQTTClient()
  93. modbus_client = ModbusRTUClient(serial_client)
  94. address_config = AddressConfigProtocol(serial_client)
  95. # Nextion 串口屏实例
  96. screen_display = NextionDisplay()
  97. screen_current_panel_index = 0
  98. screen_lock = threading.Lock()
  99. screen_refresh_queue = queue.Queue()
  100. screen_refresh_thread = None
  101. # 初始化 DHT11 传感器(后续在 __main__ 中设置回调并启动)
  102. dht11_sensor = None
  103. if DHT11_ENABLED and (DHT11_GPIO_PIN is not None or DHT11_SIMULATE):
  104. dht11_sensor = DHT11Sensor(
  105. gpio_pin=DHT11_GPIO_PIN,
  106. gpio_chip=DHT11_GPIO_CHIP,
  107. poll_interval=DHT11_POLL_INTERVAL,
  108. simulate=DHT11_SIMULATE
  109. )
  110. elif DHT11_ENABLED and DHT11_GPIO_PIN is None and not DHT11_SIMULATE:
  111. logger.warning("DHT11 已启用但未配置 GPIO pin (DHT11_GPIO_PIN),跳过本地传感器启动")
  112. # 转发标志
  113. forward_serial_to_mqtt = DEFAULT_FORWARD_SERIAL_TO_MQTT
  114. forward_mqtt_to_serial = DEFAULT_FORWARD_MQTT_TO_SERIAL
  115. mqtt_publish_topic = DEFAULT_MQTT_PUBLISH_TOPIC
  116. # DTU MQTT协议配置(运行时可修改)
  117. dtu_config = {
  118. 'topic_prefix': DEFAULT_MQTT_TOPIC_PREFIX,
  119. 'customer_id': DEFAULT_CUSTOMER_ID,
  120. 'dtu_id': DEFAULT_DTU_ID,
  121. 'firmware_version': 'v1.0.0',
  122. 'hardware_version': 'v1.0',
  123. 'heartbeat_interval': DTU_HEARTBEAT_INTERVAL,
  124. 'enabled': True
  125. }
  126. DTU_CONFIG_FILE = os.path.join(os.path.dirname(os.path.abspath(__file__)), 'dtu_config.json')
  127. def load_dtu_config():
  128. global dtu_config
  129. try:
  130. if os.path.exists(DTU_CONFIG_FILE):
  131. with open(DTU_CONFIG_FILE, 'r') as f:
  132. saved = json.load(f)
  133. dtu_config.update(saved)
  134. except Exception as e:
  135. logger.warning(f"加载DTU配置失败: {e}")
  136. def save_dtu_config():
  137. try:
  138. with open(DTU_CONFIG_FILE, 'w') as f:
  139. json.dump(dtu_config, f, indent=2)
  140. except Exception as e:
  141. logger.warning(f"保存DTU配置失败: {e}")
  142. # 端口状态追踪(用于事件检测)
  143. port_state = {} # {panel_id: {port_id: {'last_uid': str, 'expected_uid': str, 'alarm_count': int}}}
  144. def get_sorted_panels():
  145. """按 position 排序返回 panel 列表。"""
  146. return sorted(panel_config.items(), key=lambda x: x[1].get('position', 0))
  147. def _port_status_to_pic(port_state_entry):
  148. """将端口状态推导为 Nextion pic 编号。
  149. pic 映射(当前屏幕工程只有 pic 0-3,ILLEGAL_DISCONNECT 复用 pic=2 告警图):
  150. 0 = UNKNOWN (未轮询)
  151. 1 = DISCONNECTED (正常空闲: 无期望且无卡)
  152. 2 = 告警 (ILLEGAL_CONNECT 非法插入 + ILLEGAL_DISCONNECT 非法拔出)
  153. 3 = CONNECTED (正常已连: 实际 == 期望)
  154. 未来若 Nextion 工程增加 pic=4,将 ILLEGAL_DISCONNECT 单独改为 return 4。
  155. """
  156. if not port_state_entry:
  157. return 0
  158. last_uid = port_state_entry.get('last_uid')
  159. expected_uid = port_state_entry.get('expected_uid')
  160. last_polled = port_state_entry.get('last_polled_at')
  161. if not last_polled:
  162. return 0 # UNKNOWN
  163. if last_uid is None:
  164. return 2 if expected_uid else 1 # ILLEGAL_DISCONNECT 复用告警图 / DISCONNECTED
  165. if expected_uid and last_uid != expected_uid:
  166. return 2 # ILLEGAL_CONNECT
  167. return 3 # CONNECTED
  168. def _get_display_ip():
  169. """获取用于屏幕显示的本机 IP 地址。
  170. 优先选择 192.168.199.x 管理网段;其次选择物理网卡 eth*/en* 上的 IPv4;
  171. 最后回退到任意非回环 IPv4 或静态配置 IP。
  172. """
  173. try:
  174. net_status = network_manager.get_network_status()
  175. interfaces = net_status.get('interfaces', {})
  176. # 1. 优先 192.168.199.x 管理网段
  177. for iface, data in interfaces.items():
  178. if iface in ('lo', 'docker0') or iface.startswith(('br-', 'veth')):
  179. continue
  180. for addr in data.get('ip_addresses', []):
  181. if addr.startswith('192.168.199.') and '.' in addr:
  182. return addr
  183. # 2. 优先物理网卡 eth*/en*/wlan* 上的 IPv4
  184. physical_ips = []
  185. for iface, data in interfaces.items():
  186. if iface in ('lo', 'docker0') or iface.startswith(('br-', 'veth', 'docker')):
  187. continue
  188. if not (iface.startswith(('eth', 'en', 'wlan', 'wl')) or iface == 'end0'):
  189. continue
  190. for addr in data.get('ip_addresses', []):
  191. if '.' in addr and not addr.startswith('127.'):
  192. physical_ips.append((iface, addr))
  193. # 优先有线接口
  194. for iface, addr in physical_ips:
  195. if iface.startswith(('eth', 'en', 'end')):
  196. return addr
  197. if physical_ips:
  198. return physical_ips[0][1]
  199. # 3. 任意非回环 IPv4
  200. for iface, data in interfaces.items():
  201. if iface in ('lo', 'docker0') or iface.startswith(('br-', 'veth')):
  202. continue
  203. for addr in data.get('ip_addresses', []):
  204. if '.' in addr and not addr.startswith('127.'):
  205. return addr
  206. # 4. 回退:尝试网络配置中的静态 IP
  207. net_config = network_manager.get_network_config()
  208. static_ip = net_config.get('static_config', {}).get('ip_address')
  209. if static_ip:
  210. return static_ip
  211. except Exception as e:
  212. logger.warning(f"获取显示 IP 失败: {e}")
  213. return ''
  214. def _screen_refresh_worker():
  215. """在后台线程中异步刷新 Nextion 屏幕。"""
  216. while True:
  217. try:
  218. item = screen_refresh_queue.get()
  219. if item is None:
  220. break
  221. panel_id = item[0]
  222. refresh_screen_panel(panel_id)
  223. except Exception as e:
  224. logger.error(f"屏幕刷新工作线程异常: {e}")
  225. finally:
  226. try:
  227. screen_refresh_queue.task_done()
  228. except Exception:
  229. pass
  230. def refresh_screen_panel(panel_id):
  231. """将指定 panel 的数据下发到 Nextion 屏幕。"""
  232. global screen_current_panel_index
  233. with screen_lock:
  234. panels = get_sorted_panels()
  235. if not panels:
  236. return False, '没有可用的 panel'
  237. panel_ids = [p[0] for p in panels]
  238. if panel_id not in panel_ids:
  239. return False, f'panel 不存在: {panel_id}'
  240. if not screen_display.get_status().get('connected'):
  241. return False, '屏幕串口未连接'
  242. ps = port_state.get(panel_id, {})
  243. now = time.time()
  244. online_count = sum(1 for pid in panel_ids if device_last_seen.get(pid, 0) > now - 60)
  245. idx = panel_ids.index(panel_id)
  246. screen_current_panel_index = idx
  247. mqtt_st = mqtt_client.get_status()
  248. mqtt_connected = mqtt_st.get('connected', False) if isinstance(mqtt_st, dict) else bool(mqtt_st)
  249. delay_ms = NEXTION_CMD_DELAY_MS
  250. # 获取本机 IP 地址显示在 t1.txt
  251. ip_address = _get_display_ip()
  252. # 当前 panel 对应的设备地址
  253. device_address = panel_config.get(panel_id, {}).get('address', 1)
  254. screen_display.send_cmd(f't2.txt="{NEXTION_PANEL_NAME_PREFIX}{idx + 1}"', delay_ms=delay_ms)
  255. screen_display.send_cmd(f't1.txt="{ip_address}"', delay_ms=delay_ms)
  256. screen_display.send_cmd(f't4.txt="{dtu_config.get("firmware_version", "v1.0.0")}"', delay_ms=delay_ms)
  257. mqtt_str = '已连接' if mqtt_connected else '未连接'
  258. screen_display.send_cmd(f'g0.txt="MQTT:{mqtt_str} 当前终端数:{online_count}"', delay_ms=delay_ms)
  259. screen_display.send_cmd(f'g0.pco={0 if mqtt_connected else 63488}', delay_ms=delay_ms)
  260. for port_id in range(1, 25):
  261. # 屏幕网口图片显示 LED:由端口真实连接状态推导(连接/断开/非法/未知)
  262. pic = _port_status_to_pic(port_state.get(panel_id, {}).get(port_id))
  263. cmd = f'p{port_id - 1}.pic={pic}'
  264. ok = screen_display.send_cmd(cmd, delay_ms=delay_ms)
  265. logger.info(f"[Nextion] panel={panel_id} addr={device_address} port={port_id} pic={pic} cmd={cmd} ok={ok}")
  266. logger.info(f"屏幕已刷新: {panel_id} (终端{idx + 1})")
  267. return True, '屏幕已刷新'
  268. def switch_screen_panel(direction):
  269. """切换当前显示的 panel,跳过已标记离线的终端。
  270. 离线终端不再占用屏幕:按"上一/下一终端"时自动落到下一台在线的设备,
  271. 避免屏上长时间停留在空白面板上。若全部终端都离线,则退化为相邻切换,
  272. 方便用户仍能浏览各终端的离线状态。
  273. """
  274. global screen_current_panel_index
  275. with screen_lock:
  276. panels = get_sorted_panels()
  277. if not panels:
  278. return False, '没有可用的 panel'
  279. n = len(panels)
  280. start = screen_current_panel_index
  281. idx = (start + direction) % n
  282. found = False
  283. while idx != start:
  284. if panels[idx][1].get('status') != 'offline':
  285. found = True
  286. break
  287. idx = (idx + direction) % n
  288. if not found:
  289. # 全部离线:仍然切换到相邻面板,让用户能浏览各终端
  290. idx = (start + direction) % n
  291. screen_current_panel_index = idx
  292. panel_id = panels[idx][0]
  293. logger.info(f'屏幕切换: 终端{idx + 1} -> {panel_id}')
  294. return refresh_screen_panel(panel_id)
  295. def _refresh_current_screen_panel():
  296. """LED 等状态变化后,触发当前屏幕 panel 刷新。"""
  297. try:
  298. panels = get_sorted_panels()
  299. if not panels:
  300. return
  301. with screen_lock:
  302. idx = screen_current_panel_index
  303. if 0 <= idx < len(panels):
  304. panel_id = panels[idx][0]
  305. screen_refresh_queue.put((panel_id,))
  306. except Exception as e:
  307. logger.warning(f"触发屏幕刷新失败: {e}")
  308. def screen_button_event_handler(page_id, comp_id, event):
  309. """处理屏幕按钮事件。"""
  310. if event != 0x01:
  311. return
  312. if page_id == 0x00 and comp_id == 0x05:
  313. logger.info('串口屏事件: 上一终端')
  314. switch_screen_panel(-1)
  315. elif page_id == 0x00 and comp_id == 0x06:
  316. logger.info('串口屏事件: 下一终端')
  317. switch_screen_panel(1)
  318. # 面板配置(从地址配置模块加载)
  319. panel_config = {} # {panel_id: {'address': int, 'position': int, 'panel_uid': str}}
  320. # 面板连续轮询失败计数(达到阈值后标记离线、停止查询,避免对离线设备持续发查询)
  321. panel_fail_count = {} # {panel_id: int}
  322. # 已对面板发送过「重新分配地址」指令(处于第二阶段观察)的标记
  323. panel_assign_pending = {} # {panel_id: bool}
  324. PANEL_FAIL_THRESHOLD = 3
  325. def register_panel_poll_failure(panel_id, cfg, addr):
  326. """记录一次面板轮询失败,按约定流程决定是否重发分配地址 / 标记离线。
  327. 流程: 连续 3 次查询无响应 -> 重新发送分配地址指令(把已保存地址再发一遍)
  328. -> 再连续 3 次无响应 -> 标记离线(保留在 panel_config,停止查询)。
  329. 返回 True 表示本次已标记离线。
  330. """
  331. global panel_fail_count, panel_assign_pending
  332. panel_fail_count[panel_id] = panel_fail_count.get(panel_id, 0) + 1
  333. if panel_fail_count[panel_id] < PANEL_FAIL_THRESHOLD:
  334. logger.warning(f"面板 {panel_id}(地址={addr}) 轮询无响应,连续失败 {panel_fail_count[panel_id]} 次")
  335. return False
  336. # 达到第一阶段阈值(3 次)
  337. if not panel_assign_pending.get(panel_id):
  338. # 第一阶段: 重新发送分配地址指令,再观察 3 次
  339. uid = cfg.get('panel_uid', '') or ''
  340. if len(uid) == 24:
  341. try:
  342. frame = build_assign_address(bytes.fromhex(uid), addr)
  343. ok, msg = serial_client.send_raw(frame)
  344. logger.warning(f"面板 {panel_id}(地址={addr}) 连续{PANEL_FAIL_THRESHOLD}次无响应,已重新发送分配地址帧 ok={ok} msg={msg}")
  345. except Exception as e:
  346. logger.error(f"面板 {panel_id}(地址={addr}) 发送分配地址帧失败: {e}")
  347. else:
  348. logger.warning(f"面板 {panel_id}(地址={addr}) 缺少有效 panel_uid,无法重发分配地址,直接标记离线")
  349. panel_assign_pending[panel_id] = True
  350. panel_fail_count[panel_id] = 0
  351. return False
  352. # 第二阶段: 重发分配地址后仍连续 3 次无响应 -> 标记离线
  353. cfg['status'] = 'offline'
  354. panel_fail_count.pop(panel_id, None)
  355. panel_assign_pending.pop(panel_id, None)
  356. port_state.pop(panel_id, None)
  357. logger.info(f"面板 {panel_id}(地址={addr}) 重发分配地址后仍连续{PANEL_FAIL_THRESHOLD}次无响应,已标记为离线")
  358. dtu_publish_panel_status(panel_id, addr, None, online=False)
  359. # 若该面板正显示在串口屏上,触发刷新使其显示离线(全灰)状态,避免残留旧画面
  360. _refresh_current_screen_panel()
  361. return True
  362. # 数据存储缓冲区
  363. serial_data_buffer = []
  364. mqtt_data_buffer = []
  365. # 状态标志
  366. serial_status = False
  367. mqtt_status = False
  368. # 辅助函数:统一处理 get_status() 返回 dict 的布尔判断
  369. def _mqtt_connected():
  370. """MQTT 客户端是否已连接"""
  371. st = mqtt_client.get_status()
  372. return st.get('connected', False) if isinstance(st, dict) else bool(st)
  373. def _serial_connected():
  374. """串口是否已连接"""
  375. st = serial_client.get_status()
  376. return st.get('connected', False) if isinstance(st, dict) else bool(st)
  377. # 串口配置保存和加载函数
  378. def save_serial_config(port, baudrate=9600, timeout=1.0, bytesize=8, parity='N', stopbits=1):
  379. """保存串口配置"""
  380. config = {
  381. 'port': port,
  382. 'baudrate': baudrate,
  383. 'timeout': timeout,
  384. 'bytesize': bytesize,
  385. 'parity': parity,
  386. 'stopbits': stopbits
  387. }
  388. try:
  389. with open(SERIAL_CONFIG_FILE, 'w') as f:
  390. json.dump(config, f)
  391. logger.info(f"串口配置已保存: {port} @ {baudrate}")
  392. except Exception as e:
  393. logger.error(f"保存串口配置失败: {e}")
  394. def load_serial_config():
  395. """加载串口配置"""
  396. if os.path.exists(SERIAL_CONFIG_FILE):
  397. try:
  398. with open(SERIAL_CONFIG_FILE, 'r') as f:
  399. config = json.load(f)
  400. logger.info(f"已加载串口配置: {config.get('port')} @ {config.get('baudrate')}")
  401. return config
  402. except Exception as e:
  403. logger.error(f"加载串口配置失败: {e}")
  404. return None
  405. def auto_connect_serial():
  406. """自动连接上次使用的串口"""
  407. config = load_serial_config()
  408. if config and config.get('port'):
  409. port = config.get('port')
  410. baudrate = config.get('baudrate', 9600)
  411. timeout = config.get('timeout', 1.0)
  412. bytesize = config.get('bytesize', 8)
  413. parity = config.get('parity', 'N')
  414. stopbits = config.get('stopbits', 1)
  415. logger.info(f"尝试自动连接串口: {port} @ {baudrate}")
  416. success, message = serial_client.connect(port, baudrate=baudrate, timeout=timeout, bytesize=bytesize, parity=parity, stopbits=stopbits)
  417. if success:
  418. logger.info(f"自动连接串口成功: {port}")
  419. return True
  420. else:
  421. logger.warning(f"自动连接串口失败: {message}")
  422. return False
  423. # 客户端连接管理
  424. connected_clients = {
  425. 'data': set(),
  426. 'status': set(),
  427. 'control': set()
  428. }
  429. # 设置回调函数
  430. def serial_data_handler(data):
  431. """处理串口接收的数据"""
  432. try:
  433. timestamp = time.strftime('%Y-%m-%d %H:%M:%S')
  434. serial_data_buffer.append({
  435. 'timestamp': timestamp,
  436. 'data': data,
  437. 'direction': 'in'
  438. })
  439. if len(serial_data_buffer) > MAX_BUFFER_SIZE:
  440. serial_data_buffer.pop(0)
  441. socketio.emit('serial_data', {
  442. 'timestamp': timestamp,
  443. 'data': data,
  444. 'direction': 'in'
  445. }, namespace=SOCKETIO_NAMESPACE_DATA)
  446. if forward_serial_to_mqtt and _mqtt_connected():
  447. success, msg = mqtt_client.publish(mqtt_publish_topic, data)
  448. if not success:
  449. logger.warning(f"串口数据转发到MQTT失败: {msg}")
  450. except Exception as e:
  451. logger.error(f"处理串口数据时出错: {str(e)}")
  452. def serial_send_handler(data):
  453. """处理串口发送的数据"""
  454. try:
  455. timestamp = time.strftime('%Y-%m-%d %H:%M:%S')
  456. serial_data_buffer.append({
  457. 'timestamp': timestamp,
  458. 'data': data,
  459. 'direction': 'out'
  460. })
  461. if len(serial_data_buffer) > MAX_BUFFER_SIZE:
  462. serial_data_buffer.pop(0)
  463. socketio.emit('serial_data', {
  464. 'timestamp': timestamp,
  465. 'data': data,
  466. 'direction': 'out'
  467. }, namespace=SOCKETIO_NAMESPACE_DATA)
  468. except Exception as e:
  469. logger.error(f"处理串口发送数据时出错: {str(e)}")
  470. def serial_status_handler(status):
  471. """处理串口状态变化"""
  472. try:
  473. global serial_status
  474. serial_status = status
  475. # 通过WebSocket广播状态变化
  476. socketio.emit('serial_status', {
  477. 'connected': status
  478. }, namespace=SOCKETIO_NAMESPACE_STATUS)
  479. logger.info(f"串口状态更新: {'已连接' if status else '已断开'}")
  480. # 串口重新连接后,在后台线程执行一次设备发现,避免阻塞 Flask 主线程
  481. if status:
  482. import threading
  483. t = threading.Thread(target=run_discovery_sync, kwargs={'min_interval': 10}, daemon=True)
  484. t.start()
  485. except Exception as e:
  486. logger.error(f"处理串口状态时出错: {str(e)}")
  487. def mqtt_data_handler(data):
  488. """处理MQTT接收的数据"""
  489. try:
  490. # 添加到缓冲区
  491. timestamp = time.strftime('%Y-%m-%d %H:%M:%S')
  492. mqtt_data_buffer.append({
  493. 'timestamp': timestamp,
  494. 'topic': data['topic'],
  495. 'payload': data['payload']
  496. })
  497. # 保持缓冲区大小
  498. if len(mqtt_data_buffer) > MAX_BUFFER_SIZE:
  499. mqtt_data_buffer.pop(0)
  500. # 通过WebSocket广播数据
  501. socketio.emit('mqtt_data', {
  502. 'timestamp': timestamp,
  503. 'topic': data['topic'],
  504. 'payload': data['payload']
  505. }, namespace=SOCKETIO_NAMESPACE_DATA)
  506. # 如果启用了转发且串口已连接,转发数据到串口
  507. if forward_mqtt_to_serial and _serial_connected():
  508. success, msg = serial_client.send_data(data['payload'])
  509. if not success:
  510. logger.warning(f"MQTT数据转发到串口失败: {msg}")
  511. except Exception as e:
  512. logger.error(f"处理MQTT数据时出错: {str(e)}")
  513. def mqtt_status_handler(status):
  514. """处理MQTT状态变化"""
  515. try:
  516. global mqtt_status
  517. mqtt_status = status
  518. # 通过WebSocket广播状态变化
  519. socketio.emit('mqtt_status', {
  520. 'connected': status
  521. }, namespace=SOCKETIO_NAMESPACE_STATUS)
  522. logger.info(f"MQTT状态更新: {'已连接' if status else '已断开'}")
  523. # 如果MQTT连接成功且启用了DTU协议,发送注册消息和订阅控制主题
  524. if status and dtu_config.get('enabled'):
  525. socketio.sleep(1) # 等待连接稳定
  526. # 发送DTU注册消息
  527. dtu_register()
  528. # 订阅控制主题
  529. control_topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'control')
  530. mqtt_client.subscribe(control_topic, qos=1)
  531. logger.info(f"已订阅控制主题: {control_topic}")
  532. # 订阅广播主题 (DTU发现 7.14 和批量配置 7.15)
  533. discover_topic = build_dtu_topic('broadcast', 'dtu', 'discover')
  534. config_topic = build_dtu_topic('broadcast', 'dtu', 'config')
  535. mqtt_client.subscribe(discover_topic, qos=1)
  536. mqtt_client.subscribe(config_topic, qos=1)
  537. logger.info(f"已订阅广播主题: {discover_topic}, {config_topic}")
  538. # MQTT 状态变化时刷新当前屏幕显示
  539. panels = get_sorted_panels()
  540. if panels and screen_display.get_status().get('connected'):
  541. try:
  542. with screen_lock:
  543. current_idx = screen_current_panel_index
  544. if 0 <= current_idx < len(panels):
  545. screen_refresh_queue.put((panels[current_idx][0],))
  546. except Exception as e:
  547. logger.error(f"MQTT 状态变化刷新屏幕失败: {e}")
  548. except Exception as e:
  549. logger.error(f"处理MQTT状态时出错: {str(e)}")
  550. # ========== DTU MQTT协议处理函数 ==========
  551. def build_dtu_topic(*parts):
  552. """构建DTU MQTT主题"""
  553. prefix = dtu_config.get('topic_prefix', '线架系统')
  554. return '/'.join([prefix] + list(parts))
  555. def dtu_register(discovery_request_id=None):
  556. """发送DTU注册消息"""
  557. if not _mqtt_connected():
  558. logger.warning("MQTT未连接,无法发送注册消息")
  559. return False
  560. try:
  561. # 加载面板配置
  562. devices = address_config.get_stored_devices()
  563. # 优先使用 dtu_config 中预设的 panel_id 映射 (uid_hex -> panel_id)
  564. panel_id_map = dtu_config.get('panel_id_mapping', {}) or {}
  565. panels = []
  566. panel_id = 1
  567. for uid_hex, addr in devices.items():
  568. custom_id = panel_id_map.get(uid_hex) or panel_id_map.get(addr)
  569. if custom_id:
  570. pid = str(custom_id)
  571. else:
  572. pid = f"PANEL_{dtu_config['dtu_id']}_{addr}"
  573. panels.append({
  574. 'panel_id': pid,
  575. 'address': addr,
  576. 'position': panel_id
  577. })
  578. panel_id += 1
  579. # 检测网络类型
  580. network_type = 'ethernet'
  581. signal_strength = None
  582. try:
  583. interfaces = network_manager.get_network_status().get('interfaces', {})
  584. for name, info in interfaces.items():
  585. if name in ('lo', 'docker0') or name.startswith(('br-', 'veth')):
  586. continue
  587. if info.get('status') != 'UP':
  588. continue
  589. if name.startswith(('wlan', 'wlp')):
  590. network_type = 'wifi'
  591. # 读取信号强度 (dBm, 越接近 0 越强)
  592. try:
  593. import re
  594. with open('/proc/net/wireless') as f:
  595. for line in f.readlines()[2:]:
  596. m = re.match(r'\s*(\S+):.*\s(\d+)\.\s+(-?\d+)\.', line)
  597. if m:
  598. signal_strength = int(m.group(3))
  599. break
  600. except Exception:
  601. pass
  602. elif name.startswith(('wwan', 'ppp', 'usb', 'eth')):
  603. # 移动网卡
  604. if name.startswith(('wwan', 'ppp', 'usb')):
  605. network_type = 'cellular'
  606. break
  607. except Exception:
  608. pass
  609. payload = {
  610. 'msg_id': f"reg_{int(time.time() * 1000)}_{uuid.uuid4().hex[:6]}",
  611. 'timestamp': int(time.time() * 1000),
  612. 'dtu_id': dtu_config['dtu_id'],
  613. 'type': 'REGISTER',
  614. 'payload': {
  615. 'firmware_version': dtu_config.get('firmware_version', 'v1.0.0'),
  616. 'hardware_version': dtu_config.get('hardware_version', 'v1.0'),
  617. 'panel_count': len(panels),
  618. 'network_type': network_type,
  619. 'signal_strength': signal_strength,
  620. 'uptime': int(time.time() * 1000),
  621. 'panels': panels,
  622. 'discovery_request_id': discovery_request_id
  623. }
  624. }
  625. if discovery_request_id:
  626. payload['payload']['discovery_request_id'] = discovery_request_id
  627. topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'register')
  628. success, msg = mqtt_client.publish(topic, json.dumps(payload), qos=1)
  629. if success:
  630. logger.info(f"DTU注册消息已发送: {topic}")
  631. else:
  632. logger.error(f"DTU注册消息发送失败: {msg}")
  633. return success
  634. except Exception as e:
  635. logger.error(f"发送DTU注册消息失败: {str(e)}")
  636. return False
  637. _discover_dedup = {}
  638. def handle_broadcast_discover(payload):
  639. """处理广播发现消息 (7.14)"""
  640. try:
  641. if not isinstance(payload, dict) or payload.get('type') != 'DISCOVER':
  642. return
  643. p = payload.get('payload', {})
  644. cust_id = p.get('customer_id', '')
  645. if cust_id and cust_id != dtu_config.get('customer_id'):
  646. return
  647. request_id = p.get('request_id', '')
  648. now = time.time()
  649. if request_id and request_id in _discover_dedup:
  650. if now - _discover_dedup[request_id] < 60:
  651. return
  652. _discover_dedup[request_id] = now
  653. # 清理超过 60s 的旧条目,防止内存泄漏
  654. if len(_discover_dedup) > 256:
  655. for k in list(_discover_dedup.keys()):
  656. if now - _discover_dedup[k] > 60:
  657. _discover_dedup.pop(k, None)
  658. logger.info(f"收到DISCOVER广播,响应注册消息 (request_id={request_id})")
  659. import random
  660. delay = random.uniform(0, 3.0)
  661. time.sleep(delay)
  662. dtu_register(discovery_request_id=request_id)
  663. dtu_publish_status()
  664. except Exception as e:
  665. logger.error(f"处理广播发现消息失败: {str(e)}")
  666. def handle_broadcast_config(payload):
  667. """处理广播批量配置消息 (7.15)"""
  668. try:
  669. if isinstance(payload, dict) and payload.get('type') == 'CONFIG':
  670. cfg = payload.get('payload', {})
  671. cust_id = cfg.get('customer_id', '')
  672. if cust_id and cust_id != dtu_config.get('customer_id'):
  673. return
  674. config_version = cfg.get('config_version', '')
  675. force_apply = cfg.get('force_apply', False)
  676. items = cfg.get('items', {})
  677. local_version = dtu_config.get('config_version', '')
  678. incoming_msg_id = payload.get('msg_id', '')
  679. if local_version == config_version and not force_apply:
  680. logger.info(f"配置版本 {config_version} 已存在,跳过")
  681. _send_config_response(config_version, [], True, 1011, incoming_msg_id)
  682. return
  683. valid_ranges = {
  684. 'heartbeat_interval': (10, 3600),
  685. 'poll_interval_ms': (100, 10000),
  686. 'modbus_timeout_ms': (200, 5000),
  687. 'mqtt_keepalive': (10, 300),
  688. 'event_debounce_ms': (0, 5000),
  689. }
  690. applied = []
  691. for key, val in items.items():
  692. if key in valid_ranges:
  693. lo, hi = valid_ranges[key]
  694. if not (lo <= val <= hi):
  695. _send_config_response(config_version, applied, False, 1012, incoming_msg_id)
  696. return
  697. if key == 'heartbeat_interval':
  698. dtu_config['heartbeat_interval'] = val
  699. elif key == 'mqtt_keepalive':
  700. dtu_config['mqtt_keepalive'] = val
  701. elif key == 'event_debounce_ms':
  702. dtu_config['event_debounce_ms'] = val
  703. elif key == 'poll_interval_ms':
  704. dtu_config['poll_interval_ms'] = val
  705. elif key == 'modbus_timeout_ms':
  706. dtu_config['modbus_timeout_ms'] = val
  707. applied.append(key)
  708. elif key in ('alarm_enabled',):
  709. dtu_config['alarm_enabled'] = bool(val)
  710. applied.append(key)
  711. else:
  712. _send_config_response(config_version, applied, False, 1013, incoming_msg_id)
  713. return
  714. if applied:
  715. dtu_config['config_version'] = config_version
  716. try:
  717. save_dtu_config()
  718. except Exception as e:
  719. logger.error(f"配置写入持久化失败: {e}")
  720. _send_config_response(config_version, applied, False, 1014, incoming_msg_id)
  721. return
  722. _send_config_response(config_version, applied, True, 0, incoming_msg_id)
  723. except Exception as e:
  724. logger.error(f"处理广播配置消息失败: {str(e)}")
  725. def _send_config_response(config_version, applied_items, success, error_code, original_msg_id=''):
  726. """发送批量配置响应 (随机 0-2000ms 延迟避免广播风暴)"""
  727. import time as _t, json as _j, random as _r
  728. delay = _r.uniform(0, 2.0)
  729. def _delayed_publish():
  730. _t.sleep(delay)
  731. topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'response')
  732. payload = {
  733. 'msg_id': f"rsp_cfg_{int(_t.time() * 1000)}",
  734. 'timestamp': int(_t.time() * 1000),
  735. 'dtu_id': dtu_config['dtu_id'],
  736. 'type': 'RESPONSE',
  737. 'payload': {
  738. 'original_msg_id': original_msg_id or f"cfg_{config_version}",
  739. 'command': 'BROADCAST_CONFIG',
  740. 'success': success,
  741. 'result': {
  742. 'applied_version': config_version,
  743. 'applied_items': applied_items,
  744. 'restart_required': False
  745. } if success else None,
  746. 'error_code': error_code,
  747. 'error_message': get_ota_error_message(error_code) if error_code and error_code >= 1000 else None
  748. }
  749. }
  750. mqtt_client.publish(topic, _j.dumps(payload), qos=1)
  751. # 异步执行避免阻塞 MQTT 主循环
  752. threading.Thread(target=_delayed_publish, daemon=True).start()
  753. def dtu_publish_status(force=False):
  754. """发送DTU状态/心跳消息
  755. Args:
  756. force: 保留参数。事件/告警/查询触发时传入 True,用于立即上报(区别于定时心跳)
  757. """
  758. if not _mqtt_connected() or not dtu_config.get('enabled'):
  759. return False
  760. # 调试日志: 区分定时 vs 触发上报
  761. if force:
  762. logger.debug("dtu_publish_status(force=True) - 事件触发立即上报")
  763. try:
  764. # panel_online 计数: 在最近 60s 内所有 24 个端口都被成功轮询过
  765. # 严格语义: 全部 24 端口在最近一轮 poll 周期内被 poll 成功 → online
  766. now_ms = int(time.time() * 1000)
  767. threshold_ms = 60_000 # 60 秒未轮询视为 offline
  768. poll_ok = 0
  769. for pid, cfg in panel_config.items():
  770. ps = port_state.get(pid, {})
  771. expected_ports = cfg.get('port_count', 24)
  772. polled_recently = sum(
  773. 1 for p in ps.values()
  774. if p.get('last_polled_at') and (now_ms - p.get('last_polled_at', 0)) < threshold_ms
  775. )
  776. if polled_recently >= expected_ports:
  777. poll_ok += 1
  778. panel_online = poll_ok
  779. panel_offline = max(0, len(panel_config) - panel_online)
  780. # 检查串口状态
  781. serial_st = serial_client.get_status()
  782. rs485_status = 'normal' if (isinstance(serial_st, dict) and serial_st.get('connected', False)) else 'error'
  783. # 网络状态: 检查实际接口 UP 状态
  784. # 规则: 有线 (eth*/wlan*) UP → online; 仅 wifi 信号弱 (无 link/低质量) → weak; 否则 offline
  785. network_status = 'offline'
  786. try:
  787. interfaces = network_manager.get_network_status().get('interfaces', {})
  788. real_ifs = {i: s for i, s in interfaces.items()
  789. if s.get('status') == 'UP'
  790. and i not in ('lo', 'docker0')
  791. and not i.startswith(('br-', 'veth'))}
  792. if real_ifs:
  793. # 优先有线连接
  794. if any(i.startswith(('eth', 'en')) for i in real_ifs):
  795. network_status = 'online'
  796. else:
  797. # 仅无线: 检查信号强度 (Linux: /proc/net/wireless)
  798. try:
  799. import re
  800. with open('/proc/net/wireless') as f:
  801. lines = f.readlines()
  802. quality = None
  803. for line in lines[2:]: # 跳过表头
  804. m = re.match(r'\s*(\S+):.*\s(\d+)\.\s+(\d+)\.\s+(\d+)', line)
  805. if m:
  806. # link quality (字段 2, 0-70); signal level (字段 3, dBm, 越低越差)
  807. link = int(m.group(2))
  808. sig = int(m.group(3))
  809. # 估算: link < 30 或 sig < -75 dBm 视为弱
  810. if quality is None or link < quality:
  811. quality = link
  812. network_status = 'weak' if (quality is not None and quality < 30) else 'online'
  813. except Exception:
  814. network_status = 'online'
  815. except Exception:
  816. network_status = 'offline'
  817. # 屏幕连接状态:从 Nextion 屏幕实例读取
  818. screen_connected = screen_display.get_status().get('connected', False)
  819. # CPU/内存使用率 (Linux 才有意义)
  820. cpu_usage = None
  821. memory_usage = None
  822. dtu_temperature = None
  823. try:
  824. import psutil
  825. cpu_usage = psutil.cpu_percent(interval=None)
  826. memory_usage = psutil.virtual_memory().percent
  827. # 主板温度: 优先 psutil.sensors_temperatures
  828. try:
  829. temps = psutil.sensors_temperatures(fahrenheit=False) or {}
  830. for chip_name, entries in temps.items():
  831. for entry in entries:
  832. if entry.current and entry.current > 0:
  833. dtu_temperature = round(entry.current, 1)
  834. break
  835. if dtu_temperature is not None:
  836. break
  837. except Exception:
  838. pass
  839. # 回退: 直接读 /sys/class/thermal/thermal_zone*/temp
  840. if dtu_temperature is None:
  841. import glob as _glob
  842. for tz in sorted(_glob.glob('/sys/class/thermal/thermal_zone*/temp')):
  843. try:
  844. with open(tz) as f:
  845. v = int(f.read().strip())
  846. if v > 0:
  847. dtu_temperature = round(v / 1000.0, 1)
  848. break
  849. except Exception:
  850. continue
  851. except Exception:
  852. pass
  853. # 优先使用外部上报的 dtu_temperature (来自 MQTT/RS485 传感器)
  854. dtu_temperature = env_sensor_data.get('dtu_temperature') or dtu_temperature
  855. payload = {
  856. 'msg_id': f"hbt_{int(time.time() * 1000)}_{uuid.uuid4().hex[:6]}",
  857. 'timestamp': int(time.time() * 1000),
  858. 'dtu_id': dtu_config['dtu_id'],
  859. 'type': 'STATUS',
  860. 'payload': {
  861. 'cpu_usage': cpu_usage,
  862. 'memory_usage': memory_usage,
  863. 'temperature': dtu_temperature,
  864. 'network_status': network_status,
  865. 'panel_online': panel_online,
  866. 'panel_offline': panel_offline,
  867. 'screen_connected': screen_connected,
  868. 'mqtt_connected': _mqtt_connected(),
  869. 'rs485_status': rs485_status
  870. }
  871. }
  872. topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'status')
  873. success, _ = mqtt_client.publish(topic, json.dumps(payload), qos=1)
  874. return success
  875. except Exception as e:
  876. logger.error(f"发送DTU状态消息失败: {str(e)}")
  877. return False
  878. def dtu_publish_event(panel_id, port_id, event_type, jumper_uid, previous_jumper_uid=None):
  879. """发送端口事件消息"""
  880. if not _mqtt_connected() or not dtu_config.get('enabled'):
  881. return False
  882. try:
  883. payload = {
  884. 'msg_id': f"evt_{int(time.time() * 1000)}",
  885. 'timestamp': int(time.time() * 1000),
  886. 'dtu_id': dtu_config['dtu_id'],
  887. 'type': 'EVENT',
  888. 'payload': {
  889. 'panel_id': panel_id,
  890. 'port_id': port_id,
  891. 'event_type': event_type,
  892. 'event_id': f"evt_{uuid.uuid4().hex[:8]}",
  893. 'jumper_uid': jumper_uid,
  894. 'previous_jumper_uid': previous_jumper_uid
  895. }
  896. }
  897. topic = build_dtu_topic(dtu_config['customer_id'], 'patchpanel', dtu_config['dtu_id'], panel_id, 'event')
  898. success, _ = mqtt_client.publish(topic, json.dumps(payload), qos=1)
  899. if success:
  900. logger.info(f"端口事件已发送: {panel_id}:{port_id} - {event_type}")
  901. # 记录到事件历史
  902. port_event_history.append({
  903. 'timestamp': int(time.time() * 1000),
  904. 'panel_id': panel_id,
  905. 'port_id': port_id,
  906. 'event_type': event_type,
  907. 'jumper_uid': jumper_uid,
  908. 'previous_jumper_uid': previous_jumper_uid
  909. })
  910. # 限制历史记录数量
  911. if len(port_event_history) > 1000:
  912. port_event_history[:] = port_event_history[-1000:]
  913. # 事件驱动: 立即上报一次 status (符合 7.4 "状态变化时立即上报")
  914. try:
  915. dtu_publish_status(force=True)
  916. except Exception:
  917. pass
  918. return success
  919. except Exception as e:
  920. logger.error(f"发送端口事件失败: {str(e)}")
  921. return False
  922. def dtu_publish_alarm(panel_id, port_id, alarm_type, expected_jumper_uid, actual_jumper_uid, severity='WARNING'):
  923. """发送非法告警消息"""
  924. if not _mqtt_connected() or not dtu_config.get('enabled'):
  925. return False
  926. try:
  927. description = f"端口{port_id}期望跳线{expected_jumper_uid},实际{'未读到' if not actual_jumper_uid else actual_jumper_uid}"
  928. payload = {
  929. 'msg_id': f"alm_{int(time.time() * 1000)}",
  930. 'timestamp': int(time.time() * 1000),
  931. 'dtu_id': dtu_config['dtu_id'],
  932. 'type': 'ALARM',
  933. 'payload': {
  934. 'panel_id': panel_id,
  935. 'port_id': port_id,
  936. 'alarm_type': alarm_type,
  937. 'severity': severity,
  938. 'expected_jumper_uid': expected_jumper_uid,
  939. 'actual_jumper_uid': actual_jumper_uid,
  940. 'description': description
  941. }
  942. }
  943. topic = build_dtu_topic(dtu_config['customer_id'], 'patchpanel', dtu_config['dtu_id'], panel_id, 'alarm')
  944. success, _ = mqtt_client.publish(topic, json.dumps(payload), qos=1)
  945. if success:
  946. logger.warning(f"非法告警已发送: {panel_id}:{port_id} - {alarm_type}")
  947. # 记录到事件历史
  948. port_event_history.append({
  949. 'timestamp': int(time.time() * 1000),
  950. 'panel_id': panel_id,
  951. 'port_id': port_id,
  952. 'event_type': 'ALARM',
  953. 'alarm_type': alarm_type,
  954. 'expected_jumper_uid': expected_jumper_uid,
  955. 'actual_jumper_uid': actual_jumper_uid
  956. })
  957. # 限制历史记录数量
  958. if len(port_event_history) > 1000:
  959. port_event_history[:] = port_event_history[-1000:]
  960. # 事件驱动: 告警后立即上报一次 status
  961. try:
  962. dtu_publish_status(force=True)
  963. except Exception:
  964. pass
  965. return success
  966. except Exception as e:
  967. logger.error(f"发送非法告警失败: {str(e)}")
  968. return False
  969. def dtu_publish_panel_status(panel_id, address, ports_data, online=True):
  970. """发送配线架状态消息 (7.7)
  971. online=False 时表示面板已离线,ports 全部置为 UNKNOWN。
  972. """
  973. if not _mqtt_connected() or not dtu_config.get('enabled'):
  974. return False
  975. try:
  976. if not online:
  977. ports_data = [{'port_id': p, 'status': 'UNKNOWN', 'jumper_uid': None} for p in range(1, 25)]
  978. topic = build_dtu_topic(dtu_config['customer_id'], 'patchpanel', dtu_config['dtu_id'], panel_id, 'status')
  979. payload = {
  980. 'msg_id': f"pst_{int(time.time() * 1000)}",
  981. 'timestamp': int(time.time() * 1000),
  982. 'dtu_id': dtu_config['dtu_id'],
  983. 'type': 'STATUS',
  984. 'payload': {
  985. 'panel_id': panel_id,
  986. 'position': panel_config.get(panel_id, {}).get('position', 0),
  987. 'address': address,
  988. 'online': online,
  989. 'last_poll_time': int(time.time() * 1000),
  990. 'ports': ports_data
  991. }
  992. }
  993. mqtt_client.publish(topic, json.dumps(payload), qos=0)
  994. return True
  995. except Exception as e:
  996. logger.error(f"发送面板状态失败: {str(e)}")
  997. return False
  998. def dtu_publish_jumper_status():
  999. """发送跳线状态汇总 (7.8) - STATUS envelope with panels[] array"""
  1000. if not _mqtt_connected() or not dtu_config.get('enabled'):
  1001. return False
  1002. try:
  1003. panels_arr = []
  1004. for panel_id, cfg in panel_config.items():
  1005. ports_arr = []
  1006. ps = port_state.get(panel_id, {})
  1007. for port_id in range(1, 25):
  1008. p = ps.get(port_id, {})
  1009. last_uid = p.get('last_uid')
  1010. expected_uid = p.get('expected_uid')
  1011. last_polled = p.get('last_polled_at')
  1012. if not last_polled:
  1013. status = 'UNKNOWN'
  1014. elif last_uid is None:
  1015. status = 'DISCONNECTED'
  1016. if expected_uid:
  1017. status = 'ILLEGAL'
  1018. elif expected_uid and last_uid != expected_uid:
  1019. status = 'ILLEGAL'
  1020. else:
  1021. status = 'CONNECTED'
  1022. ports_arr.append({
  1023. 'port_id': port_id,
  1024. 'status': status,
  1025. 'jumper_uid': last_uid
  1026. })
  1027. panels_arr.append({
  1028. 'panel_id': panel_id,
  1029. 'position': cfg.get('position', 0),
  1030. 'ports': ports_arr
  1031. })
  1032. topic = build_dtu_topic(dtu_config['customer_id'], 'jumper', dtu_config['dtu_id'], 'status')
  1033. payload = {
  1034. 'msg_id': f"jmp_{int(time.time() * 1000)}",
  1035. 'timestamp': int(time.time() * 1000),
  1036. 'dtu_id': dtu_config['dtu_id'],
  1037. 'type': 'STATUS',
  1038. 'payload': {'panels': panels_arr}
  1039. }
  1040. mqtt_client.publish(topic, json.dumps(payload), qos=0)
  1041. return True
  1042. except Exception as e:
  1043. logger.error(f"发送跳线状态汇总失败: {str(e)}")
  1044. return False
  1045. _env_sensor_data = {
  1046. 'temperature': None,
  1047. 'humidity': None,
  1048. 'sensor_update_time': None
  1049. }
  1050. def update_env_sensor_data(temperature, humidity, dtu_temperature=None, sensor_update_time=None):
  1051. """更新环境传感器数据 - 委托给完整实现(带历史和告警)"""
  1052. update_env_sensor_data_full(temperature, humidity, dtu_temperature, sensor_update_time)
  1053. def dtu_publish_env_sensor():
  1054. """发送环境传感器数据 (7.9) - STATUS envelope"""
  1055. if not _mqtt_connected() or not dtu_config.get('enabled'):
  1056. return False
  1057. try:
  1058. topic = build_dtu_topic(dtu_config['customer_id'], 'env', dtu_config['dtu_id'], 'sensor')
  1059. payload = {
  1060. 'msg_id': f"sen_{int(time.time() * 1000)}",
  1061. 'timestamp': int(time.time() * 1000),
  1062. 'dtu_id': dtu_config['dtu_id'],
  1063. 'type': 'STATUS',
  1064. 'payload': {
  1065. 'temperature': _env_sensor_data.get('temperature'),
  1066. 'humidity': _env_sensor_data.get('humidity'),
  1067. 'sensor_update_time': _env_sensor_data.get('sensor_update_time')
  1068. }
  1069. }
  1070. mqtt_client.publish(topic, json.dumps(payload), qos=0)
  1071. return True
  1072. except Exception as e:
  1073. logger.error(f"发送环境传感器数据失败: {str(e)}")
  1074. return False
  1075. def _resolve_panel_id(target):
  1076. """将 target 解析为 panel_config 中实际的 panel_id 键。
  1077. 兼容三种输入:
  1078. - 完整 panel_id(如 'PANEL_dtu_001_2'):原样返回(若存在)
  1079. - 数字地址/序号(如 2 或 '2'):尝试匹配 panel_config 中以该数字结尾的键
  1080. - 'all' / None:原样返回(由调用方处理)
  1081. """
  1082. if target is None or target == 'all':
  1083. return target
  1084. if target in panel_config:
  1085. return target
  1086. # 数字型:尝试匹配 PANEL_*_{n} 或地址为 n 的面板
  1087. try:
  1088. num = int(target)
  1089. except (TypeError, ValueError):
  1090. return target
  1091. # 1) 键以 _{num} 结尾
  1092. for pid in panel_config:
  1093. if pid.endswith(f'_{num}'):
  1094. return pid
  1095. # 2) 面板地址等于 num
  1096. for pid, cfg in panel_config.items():
  1097. if cfg.get('address') == num:
  1098. return pid
  1099. return target
  1100. def dtu_handle_control(topic, payload):
  1101. """处理下行控制指令"""
  1102. try:
  1103. if not dtu_config.get('enabled'):
  1104. return
  1105. command = payload.get('payload', {}).get('command')
  1106. target = payload.get('payload', {}).get('target')
  1107. params = payload.get('payload', {}).get('params', {})
  1108. logger.info(f"收到控制指令: command={command}, target={target}")
  1109. response_payload = {
  1110. 'msg_id': f"rsp_{int(time.time() * 1000)}_{uuid.uuid4().hex[:6]}",
  1111. 'timestamp': int(time.time() * 1000),
  1112. 'dtu_id': dtu_config['dtu_id'],
  1113. 'type': 'RESPONSE',
  1114. 'payload': {
  1115. 'original_msg_id': payload.get('msg_id'),
  1116. 'command': command,
  1117. 'success': True,
  1118. 'result': {},
  1119. 'error_code': 0,
  1120. 'error_message': None
  1121. }
  1122. }
  1123. topic_response_dtu = build_dtu_topic(
  1124. dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'response')
  1125. # 处理各命令
  1126. if command == 'SET_PORT_LED':
  1127. # 设置端口LED
  1128. port_id = params.get('port_id')
  1129. led_mode = params.get('led_mode', 'OFF')
  1130. # 参数校验
  1131. if port_id is None or not (1 <= int(port_id) <= 24):
  1132. response_payload['payload']['success'] = False
  1133. response_payload['payload']['error_code'] = 1003
  1134. response_payload['payload']['error_message'] = f"端口号非法: {port_id}"
  1135. mqtt_client.publish(topic_response_dtu, json.dumps(response_payload), qos=1)
  1136. return
  1137. if led_mode not in ('OFF', 'BLINK_RED', 'BLINK_GREEN', 'BLINK_BLUE'):
  1138. response_payload['payload']['success'] = False
  1139. response_payload['payload']['error_code'] = 1004
  1140. response_payload['payload']['error_message'] = f"LED模式非法: {led_mode}"
  1141. mqtt_client.publish(topic_response_dtu, json.dumps(response_payload), qos=1)
  1142. return
  1143. # LED模式映射
  1144. led_mode_map = {'OFF': 0, 'BLINK_RED': 1, 'BLINK_GREEN': 2, 'BLINK_BLUE': 3}
  1145. color = led_mode_map.get(led_mode, 0)
  1146. # 查找设备地址
  1147. device_address = 1 # 默认
  1148. for panel_id, cfg in panel_config.items():
  1149. if panel_id == target:
  1150. device_address = cfg.get('address', 1)
  1151. break
  1152. result = modbus_client.set_rgb_led(device_address, port_id, color)
  1153. response_payload['payload']['success'] = 'error' not in result
  1154. response_payload['payload']['result'] = result
  1155. if 'error' in result:
  1156. response_payload['payload']['error_code'] = 1005
  1157. response_payload['payload']['error_message'] = result['error']
  1158. else:
  1159. if device_address not in led_states:
  1160. led_states[device_address] = {}
  1161. led_states[device_address][int(port_id)] = color
  1162. _refresh_current_screen_panel()
  1163. elif command == 'QUERY_DTU_STATUS':
  1164. # 查询DTU状态
  1165. dtu_publish_status(force=True)
  1166. elif command == 'SYNC_PORT_MAPPING':
  1167. # 同步单端口期望映射
  1168. port_id = params.get('port_id')
  1169. jumper_uid = params.get('jumper_uid')
  1170. # 前端把 panel_id 放在 params 里(target='port' 占位),优先取 params.panel_id
  1171. panel_target = params.get('panel_id')
  1172. if panel_target is None:
  1173. panel_target = target
  1174. # 兼容数字 panel_id:前端可能传 2/3 或 'PANEL_dtu_001_2'
  1175. panel_target = _resolve_panel_id(panel_target)
  1176. if port_id is None or panel_target is None or panel_target not in panel_config:
  1177. response_payload['payload']['success'] = False
  1178. response_payload['payload']['error_code'] = 1006 if port_id is None else 1002
  1179. response_payload['payload']['error_message'] = "参数缺失" if port_id is None else f"目标面板不存在: {panel_target}"
  1180. mqtt_client.publish(topic_response_dtu, json.dumps(response_payload), qos=1)
  1181. return
  1182. if panel_target not in port_state:
  1183. port_state[panel_target] = {}
  1184. if port_id not in port_state[panel_target]:
  1185. port_state[panel_target][port_id] = {'last_uid': None, 'expected_uid': None, 'alarm_count': 0}
  1186. port_state[panel_target][port_id]['expected_uid'] = jumper_uid
  1187. # 持久化期望映射,保证离线恢复/重启后仍能判定非法连接
  1188. dtu_config.setdefault('port_mappings', {}).setdefault(panel_target, {})[str(port_id)] = jumper_uid
  1189. save_dtu_config()
  1190. elif command == 'SYNC_ALL_MAPPING':
  1191. # 批量同步期望映射
  1192. mappings = params.get('mappings', [])
  1193. if not isinstance(mappings, list):
  1194. response_payload['payload']['success'] = False
  1195. response_payload['payload']['error_code'] = 1006
  1196. response_payload['payload']['error_message'] = "mappings 字段格式错误"
  1197. mqtt_client.publish(topic_response_dtu, json.dumps(response_payload), qos=1)
  1198. return
  1199. try:
  1200. for mapping in mappings:
  1201. panel_id = _resolve_panel_id(mapping.get('panel_id'))
  1202. port_id = mapping.get('port_id')
  1203. jumper_uid = mapping.get('jumper_uid')
  1204. if panel_id not in panel_config:
  1205. raise ValueError(f"目标面板不存在: {mapping.get('panel_id')}")
  1206. if panel_id not in port_state:
  1207. port_state[panel_id] = {}
  1208. if port_id not in port_state[panel_id]:
  1209. port_state[panel_id][port_id] = {'last_uid': None, 'expected_uid': None, 'alarm_count': 0}
  1210. port_state[panel_id][port_id]['expected_uid'] = jumper_uid
  1211. # 持久化期望映射
  1212. dtu_config.setdefault('port_mappings', {}).setdefault(panel_id, {})[str(port_id)] = jumper_uid
  1213. save_dtu_config()
  1214. except Exception as e:
  1215. response_payload['payload']['success'] = False
  1216. response_payload['payload']['error_code'] = 1007
  1217. response_payload['payload']['error_message'] = f"同步映射失败: {e}"
  1218. mqtt_client.publish(topic_response_dtu, json.dumps(response_payload), qos=1)
  1219. return
  1220. elif command == 'REBOOT':
  1221. # 重启DTU: 1s 延迟后执行 reboot
  1222. import subprocess
  1223. logger.warning(f"MQTT REBOOT 命令收到,1 秒后执行系统重启")
  1224. threading.Thread(target=lambda: (
  1225. time.sleep(1),
  1226. subprocess.run(['reboot'], capture_output=True)
  1227. ), daemon=True).start()
  1228. response_payload['payload']['result'] = {'message': 'Reboot scheduled in 1s'}
  1229. elif command == 'READ_PANEL_STATUS':
  1230. # 读取面板状态
  1231. # V4 寄存器: 0x0000=网络通断(保留), 0x0001=LED控制, 0x0002=批量卡号(144字节)
  1232. device_address = 1
  1233. for panel_id, cfg in panel_config.items():
  1234. if panel_id == target:
  1235. device_address = cfg.get('address', 1)
  1236. break
  1237. # V4: 只读 0x0000-0x0001(网络通断 + LED);0x0002 起为批量卡号数据,不再作为状态寄存器
  1238. status_result = modbus_client.read_holding_registers(device_address, 0x0000, 2)
  1239. registers = status_result.get('registers', [])
  1240. # V4: 天线在场状态由批量卡号读得出(24 元素 0/1 列表)
  1241. bulk_result = modbus_client.read_all_antenna_cards(device_address)
  1242. antenna_status = []
  1243. if 'error' not in bulk_result:
  1244. antenna_status = [1 if c.get('present') else 0 for c in bulk_result.get('cards', [])]
  1245. panel_status = {
  1246. 'device_address': device_address,
  1247. 'run_status': registers[0] if len(registers) > 0 else None,
  1248. 'led_control': registers[1] if len(registers) > 1 else None,
  1249. 'antenna_status': antenna_status,
  1250. 'raw_registers': registers
  1251. }
  1252. response_payload['payload']['success'] = 'error' not in status_result
  1253. response_payload['payload']['result'] = panel_status
  1254. elif command == 'QUERY_JUMPER_STATUS':
  1255. # 查询跳线器状态汇总 (7.8) - 触发 STATUS 上行至 jumper/{dtu_id}/status
  1256. dtu_publish_jumper_status()
  1257. return # dtu_publish_jumper_status 已发送响应
  1258. elif command == 'QUERY_ENV_SENSOR':
  1259. # 查询环境传感器 (7.9) - 触发 STATUS 上行至 env/{dtu_id}/sensor
  1260. dtu_publish_env_sensor()
  1261. return # dtu_publish_env_sensor 已发送响应
  1262. elif command == 'OTA_UPGRADE':
  1263. params = payload.get('payload', {}).get('params', {})
  1264. target_version = params.get('firmware_version')
  1265. force_upgrade = params.get('force_upgrade', False)
  1266. current_version = dtu_config.get('firmware_version', 'v1.0.0')
  1267. incoming_msg_id = payload.get('msg_id', '')
  1268. if target_version == current_version and not force_upgrade:
  1269. response_payload['payload']['success'] = False
  1270. response_payload['payload']['error_code'] = 1021
  1271. response_payload['payload']['error_message'] = f"已是目标版本: {target_version}"
  1272. mqtt_client.publish(topic_response_dtu, json.dumps(response_payload), qos=1)
  1273. return
  1274. if params.get('firmware_url'):
  1275. import threading
  1276. threading.Thread(target=lambda: _run_ota({**params, '_incoming_msg_id': incoming_msg_id}), daemon=True).start()
  1277. response_payload['payload']['success'] = True
  1278. response_payload['payload']['result'] = {
  1279. 'firmware_version': target_version,
  1280. 'ota_status': 'DOWNLOADING',
  1281. 'restart_required': False
  1282. }
  1283. elif command == 'OTA_CANCEL':
  1284. # 取消OTA升级
  1285. # 向OTA控制寄存器写入取消命令 (0x0000=取消)
  1286. device_address = 1
  1287. for panel_id, cfg in panel_config.items():
  1288. if panel_id == target:
  1289. device_address = cfg.get('address', 1)
  1290. break
  1291. # OTA控制寄存器地址: 0x0300
  1292. # 值: 0x0000=取消升级
  1293. cancel_result = modbus_client.write_single_register(device_address, 0x0300, 0x0000)
  1294. response_payload['payload']['success'] = 'error' not in cancel_result
  1295. response_payload['payload']['result'] = {
  1296. 'message': 'OTA upgrade cancelled' if 'error' not in cancel_result else 'Failed to cancel OTA',
  1297. 'raw_result': cancel_result
  1298. }
  1299. else:
  1300. # 未知命令
  1301. response_payload['payload']['success'] = False
  1302. response_payload['payload']['error_code'] = 1001
  1303. response_payload['payload']['error_message'] = f"未知命令: {command}"
  1304. mqtt_client.publish(topic_response_dtu, json.dumps(response_payload), qos=1)
  1305. return
  1306. # 发送响应(QUERY_DTU_STATUS 已由 dtu_publish_status 发送;QUERY_JUMPER_STATUS/QUERY_ENV_SENSOR 已在分支中发布)
  1307. if command == 'QUERY_DTU_STATUS':
  1308. pass
  1309. else:
  1310. cmd = command
  1311. if cmd == 'READ_PANEL_STATUS':
  1312. if target and target != 'all' and target in panel_config:
  1313. # 单个面板: 使用 panel_id 作为 topic segment
  1314. topic = build_dtu_topic(dtu_config['customer_id'], 'patchpanel',
  1315. dtu_config['dtu_id'], target, 'status')
  1316. mqtt_client.publish(topic, json.dumps(response_payload), qos=0)
  1317. else:
  1318. # target=all: 遍历所有面板发布到各自的 topic
  1319. for pid in panel_config.keys():
  1320. topic = build_dtu_topic(dtu_config['customer_id'], 'patchpanel',
  1321. dtu_config['dtu_id'], pid, 'status')
  1322. mqtt_client.publish(topic, json.dumps(response_payload), qos=0)
  1323. else:
  1324. topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'response')
  1325. p = response_payload['payload']
  1326. if not p.get('success', True) and p.get('error_code', 0) == 0:
  1327. p['error_code'] = 9999
  1328. p['error_message'] = p.get('error_message') or '未知错误'
  1329. mqtt_client.publish(topic, json.dumps(response_payload), qos=1)
  1330. except Exception as e:
  1331. logger.error(f"处理控制指令失败: {str(e)}")
  1332. # 启动DTU心跳定时器
  1333. def start_dtu_heartbeat():
  1334. """启动DTU心跳定时任务"""
  1335. def heartbeat_task():
  1336. env_tick = 0
  1337. while True:
  1338. socketio.sleep(dtu_config.get('heartbeat_interval', DTU_HEARTBEAT_INTERVAL))
  1339. if _mqtt_connected() and dtu_config.get('enabled'):
  1340. dtu_publish_status()
  1341. # 每 2 个心跳周期 (120s) 主动推送一次环境传感器数据 (7.9)
  1342. env_tick += 1
  1343. if env_tick >= 2:
  1344. env_tick = 0
  1345. dtu_publish_env_sensor()
  1346. socketio.start_background_task(target=heartbeat_task)
  1347. # 修改mqtt_data_handler以处理控制指令
  1348. def mqtt_data_handler_extended(data):
  1349. """处理MQTT接收的数据(扩展版,含DTU协议)"""
  1350. try:
  1351. topic = data.get('topic', '')
  1352. payload_str = data.get('payload', '')
  1353. # 尝试解析JSON
  1354. try:
  1355. payload = json.loads(payload_str) if isinstance(payload_str, str) else payload_str
  1356. except:
  1357. payload = payload_str
  1358. # 添加到缓冲区
  1359. timestamp = time.strftime('%Y-%m-%d %H:%M:%S')
  1360. mqtt_data_buffer.append({
  1361. 'timestamp': timestamp,
  1362. 'topic': topic,
  1363. 'payload': payload_str
  1364. })
  1365. if len(mqtt_data_buffer) > MAX_BUFFER_SIZE:
  1366. mqtt_data_buffer.pop(0)
  1367. # 通过WebSocket广播
  1368. socketio.emit('mqtt_data', {
  1369. 'timestamp': timestamp,
  1370. 'topic': topic,
  1371. 'payload': payload_str
  1372. }, namespace=SOCKETIO_NAMESPACE_DATA)
  1373. # 检查是否是控制指令主题
  1374. expected_control_topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'control')
  1375. if topic == expected_control_topic:
  1376. dtu_handle_control(topic, payload)
  1377. # 检查是否是状态主题,用于处理OTA状态上报
  1378. expected_status_topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'status')
  1379. if topic == expected_status_topic and isinstance(payload, dict):
  1380. if 'ota_status' in payload or 'firmware_version' in payload:
  1381. handle_ota_status(dtu_config['dtu_id'], payload)
  1382. # 检查是否是环境传感器数据主题 (兼容旧 sensor/.../data 路径,spec 7.9 为 env/.../sensor)
  1383. sensor_topic = build_dtu_topic(dtu_config['customer_id'], 'sensor', dtu_config['dtu_id'], 'data')
  1384. env_topic = build_dtu_topic(dtu_config['customer_id'], 'env', dtu_config['dtu_id'], 'sensor')
  1385. if topic in (sensor_topic, env_topic) and isinstance(payload, dict):
  1386. if 'temperature' in payload or 'humidity' in payload:
  1387. update_env_sensor_data(
  1388. payload.get('temperature'),
  1389. payload.get('humidity'),
  1390. payload.get('dtu_temperature'),
  1391. payload.get('sensor_update_time')
  1392. )
  1393. # 检查是否是广播主题 - DTU发现 (7.14)
  1394. discover_topic = build_dtu_topic('broadcast', 'dtu', 'discover')
  1395. if topic == discover_topic:
  1396. handle_broadcast_discover(payload)
  1397. # 检查是否是广播主题 - 批量配置 (7.15)
  1398. config_topic = build_dtu_topic('broadcast', 'dtu', 'config')
  1399. if topic == config_topic:
  1400. handle_broadcast_config(payload)
  1401. # 转发到串口(如果启用)
  1402. if forward_mqtt_to_serial and _serial_connected():
  1403. success, msg = serial_client.send_data(payload_str)
  1404. if not success:
  1405. logger.warning(f"MQTT数据转发到串口失败: {msg}")
  1406. except Exception as e:
  1407. logger.error(f"处理MQTT数据时出错: {str(e)}")
  1408. # WebSocket事件处理
  1409. @socketio.on('connect', namespace=SOCKETIO_NAMESPACE_DATA)
  1410. def handle_data_connect():
  1411. """处理数据命名空间的连接"""
  1412. try:
  1413. client_id = str(uuid.uuid4())
  1414. connected_clients['data'].add(client_id)
  1415. logger.info(f'客户端已连接到数据命名空间,当前连接数: {len(connected_clients["data"])}')
  1416. # 发送当前的缓冲区数据,限制发送的历史记录数量
  1417. max_history = 100 # 限制发送的历史记录数量以提高性能
  1418. emit('serial_data_history', {'data': serial_data_buffer[-max_history:]})
  1419. emit('mqtt_data_history', {'data': mqtt_data_buffer[-max_history:]})
  1420. # 存储客户端ID以便断开连接时使用
  1421. socketio.start_background_task(target=lambda: None) # 确保上下文可用
  1422. except Exception as e:
  1423. logger.error(f"处理数据命名空间连接时出错: {str(e)}")
  1424. @socketio.on('connect', namespace=SOCKETIO_NAMESPACE_STATUS)
  1425. def handle_status_connect():
  1426. """处理状态命名空间的连接"""
  1427. try:
  1428. client_id = str(uuid.uuid4())
  1429. connected_clients['status'].add(client_id)
  1430. logger.info(f'客户端已连接到状态命名空间,当前连接数: {len(connected_clients["status"])}')
  1431. # 发送当前状态
  1432. emit('serial_status', {'connected': serial_status})
  1433. emit('mqtt_status', {'connected': mqtt_status})
  1434. emit('forward_status', {
  1435. 'serial_to_mqtt': forward_serial_to_mqtt,
  1436. 'mqtt_to_serial': forward_mqtt_to_serial,
  1437. 'publish_topic': mqtt_publish_topic
  1438. })
  1439. except Exception as e:
  1440. logger.error(f"处理状态命名空间连接时出错: {str(e)}")
  1441. @socketio.on('connect', namespace=SOCKETIO_NAMESPACE_CONTROL)
  1442. def handle_control_connect():
  1443. """处理控制命名空间的连接"""
  1444. try:
  1445. client_id = str(uuid.uuid4())
  1446. connected_clients['control'].add(client_id)
  1447. logger.info(f'客户端已连接到控制命名空间,当前连接数: {len(connected_clients["control"])}')
  1448. except Exception as e:
  1449. logger.error(f"处理控制命名空间连接时出错: {str(e)}")
  1450. @socketio.on('disconnect', namespace=SOCKETIO_NAMESPACE_DATA)
  1451. def handle_data_disconnect():
  1452. """处理数据命名空间的断开连接"""
  1453. try:
  1454. # 清理客户端连接记录
  1455. # 在实际应用中,可能需要更复杂的逻辑来追踪具体哪个客户端断开了连接
  1456. if len(connected_clients['data']) > 0:
  1457. # 这里简化处理,实际应该维护session到client_id的映射
  1458. connected_clients['data'].pop() # 注意:这是一个简化的实现
  1459. logger.info(f'客户端已断开数据命名空间的连接,当前连接数: {len(connected_clients["data"])}')
  1460. except Exception as e:
  1461. logger.error(f"处理数据命名空间断开连接时出错: {str(e)}")
  1462. @socketio.on('disconnect', namespace=SOCKETIO_NAMESPACE_STATUS)
  1463. def handle_status_disconnect():
  1464. """处理状态命名空间的断开连接"""
  1465. try:
  1466. # 清理客户端连接记录
  1467. if len(connected_clients['status']) > 0:
  1468. connected_clients['status'].pop()
  1469. logger.info(f'客户端已断开状态命名空间的连接,当前连接数: {len(connected_clients["status"])}')
  1470. except Exception as e:
  1471. logger.error(f"处理状态命名空间断开连接时出错: {str(e)}")
  1472. @socketio.on('disconnect', namespace=SOCKETIO_NAMESPACE_CONTROL)
  1473. def handle_control_disconnect():
  1474. """处理控制命名空间的断开连接"""
  1475. try:
  1476. # 清理客户端连接记录
  1477. if len(connected_clients['control']) > 0:
  1478. connected_clients['control'].pop()
  1479. logger.info(f'客户端已断开控制命名空间的连接,当前连接数: {len(connected_clients["control"])}')
  1480. except Exception as e:
  1481. logger.error(f"处理控制命名空间断开连接时出错: {str(e)}")
  1482. @socketio.on('serial_send', namespace=SOCKETIO_NAMESPACE_CONTROL)
  1483. def handle_serial_send(data):
  1484. """通过WebSocket处理串口发送数据请求"""
  1485. try:
  1486. message = data.get('message', '')
  1487. if not message:
  1488. emit('serial_send_response', {
  1489. 'success': False,
  1490. 'message': '消息内容不能为空',
  1491. 'error_code': ERROR_CODES['CONFIG_ERROR']
  1492. })
  1493. return
  1494. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  1495. emit('serial_send_response', {
  1496. 'success': False,
  1497. 'message': '串口未连接',
  1498. 'error_code': ERROR_CODES['SERIAL_CONNECTION_ERROR']
  1499. })
  1500. return
  1501. success, msg = serial_client.send_data(message)
  1502. emit('serial_send_response', {
  1503. 'success': success,
  1504. 'message': msg,
  1505. 'error_code': ERROR_CODES['SUCCESS'] if success else ERROR_CODES['SERIAL_SEND_ERROR']
  1506. })
  1507. if success:
  1508. logger.info(f"通过WebSocket发送串口数据成功: {message[:50]}..." if len(message) > 50 else message)
  1509. except Exception as e:
  1510. error_msg = f"处理串口发送请求时出错: {str(e)}"
  1511. logger.error(error_msg)
  1512. emit('serial_send_response', {
  1513. 'success': False,
  1514. 'message': error_msg,
  1515. 'error_code': ERROR_CODES['UNKNOWN_ERROR']
  1516. })
  1517. @socketio.on('mqtt_publish', namespace=SOCKETIO_NAMESPACE_CONTROL)
  1518. def handle_mqtt_publish(data):
  1519. """通过WebSocket处理MQTT发布数据请求"""
  1520. try:
  1521. topic = data.get('topic', '')
  1522. message = data.get('message', '')
  1523. if not topic or not message:
  1524. emit('mqtt_publish_response', {
  1525. 'success': False,
  1526. 'message': '主题或消息内容不能为空',
  1527. 'error_code': ERROR_CODES['CONFIG_ERROR']
  1528. })
  1529. return
  1530. if not _mqtt_connected():
  1531. emit('mqtt_publish_response', {
  1532. 'success': False,
  1533. 'message': 'MQTT未连接',
  1534. 'error_code': ERROR_CODES['MQTT_CONNECTION_ERROR']
  1535. })
  1536. return
  1537. success, msg = mqtt_client.publish(topic, message)
  1538. emit('mqtt_publish_response', {
  1539. 'success': success,
  1540. 'message': msg,
  1541. 'error_code': ERROR_CODES['SUCCESS'] if success else ERROR_CODES['MQTT_PUBLISH_ERROR']
  1542. })
  1543. if success:
  1544. logger.info(f"通过WebSocket发布MQTT消息成功: 主题={topic}, 消息={message[:50]}..." if len(message) > 50 else message)
  1545. except Exception as e:
  1546. error_msg = f"处理MQTT发布请求时出错: {str(e)}"
  1547. logger.error(error_msg)
  1548. emit('mqtt_publish_response', {
  1549. 'success': False,
  1550. 'message': error_msg,
  1551. 'error_code': ERROR_CODES['UNKNOWN_ERROR']
  1552. })
  1553. @socketio.on('update_forward_config', namespace=SOCKETIO_NAMESPACE_CONTROL)
  1554. def handle_update_forward_config(data):
  1555. """通过WebSocket更新转发配置"""
  1556. global forward_serial_to_mqtt, forward_mqtt_to_serial, mqtt_publish_topic
  1557. try:
  1558. # 更新转发标志
  1559. if 'serial_to_mqtt' in data:
  1560. forward_serial_to_mqtt = bool(data['serial_to_mqtt'])
  1561. if 'mqtt_to_serial' in data:
  1562. forward_mqtt_to_serial = bool(data['mqtt_to_serial'])
  1563. if 'publish_topic' in data:
  1564. new_topic = str(data['publish_topic'])
  1565. if not new_topic.strip():
  1566. raise ValueError("发布主题不能为空")
  1567. mqtt_publish_topic = new_topic
  1568. # 广播配置更新
  1569. socketio.emit('forward_status', {
  1570. 'serial_to_mqtt': forward_serial_to_mqtt,
  1571. 'mqtt_to_serial': forward_mqtt_to_serial,
  1572. 'publish_topic': mqtt_publish_topic
  1573. }, namespace=SOCKETIO_NAMESPACE_STATUS)
  1574. emit('update_forward_config_response', {
  1575. 'success': True,
  1576. 'message': '转发配置已更新',
  1577. 'error_code': ERROR_CODES['SUCCESS']
  1578. })
  1579. logger.info(f"转发配置已更新 - 串口到MQTT: {forward_serial_to_mqtt}, MQTT到串口: {forward_mqtt_to_serial}, 发布主题: {mqtt_publish_topic}")
  1580. except ValueError as e:
  1581. error_msg = str(e)
  1582. logger.warning(f"转发配置更新失败: {error_msg}")
  1583. emit('update_forward_config_response', {
  1584. 'success': False,
  1585. 'message': error_msg,
  1586. 'error_code': ERROR_CODES['CONFIG_ERROR']
  1587. })
  1588. except Exception as e:
  1589. error_msg = f'更新转发配置失败: {str(e)}'
  1590. logger.error(error_msg)
  1591. emit('update_forward_config_response', {
  1592. 'success': False,
  1593. 'message': error_msg,
  1594. 'error_code': ERROR_CODES['UNKNOWN_ERROR']
  1595. })
  1596. @socketio.on('clear_data_buffer', namespace=SOCKETIO_NAMESPACE_CONTROL)
  1597. def handle_clear_data_buffer(data):
  1598. """通过WebSocket清空数据缓冲区"""
  1599. try:
  1600. buffer_type = data.get('type', '')
  1601. if buffer_type == 'serial':
  1602. serial_data_buffer.clear()
  1603. emit('clear_data_buffer_response', {
  1604. 'success': True,
  1605. 'message': '串口数据缓冲区已清空',
  1606. 'error_code': ERROR_CODES['SUCCESS']
  1607. })
  1608. logger.info("串口数据缓冲区已清空")
  1609. elif buffer_type == 'mqtt':
  1610. mqtt_data_buffer.clear()
  1611. emit('clear_data_buffer_response', {
  1612. 'success': True,
  1613. 'message': 'MQTT数据缓冲区已清空',
  1614. 'error_code': ERROR_CODES['SUCCESS']
  1615. })
  1616. logger.info("MQTT数据缓冲区已清空")
  1617. elif buffer_type == 'all':
  1618. serial_data_buffer.clear()
  1619. mqtt_data_buffer.clear()
  1620. emit('clear_data_buffer_response', {
  1621. 'success': True,
  1622. 'message': '所有数据缓冲区已清空',
  1623. 'error_code': ERROR_CODES['SUCCESS']
  1624. })
  1625. logger.info("所有数据缓冲区已清空")
  1626. else:
  1627. emit('clear_data_buffer_response', {
  1628. 'success': False,
  1629. 'message': '无效的缓冲区类型',
  1630. 'error_code': ERROR_CODES['CONFIG_ERROR']
  1631. })
  1632. logger.warning(f"清空缓冲区失败: 无效的缓冲区类型 '{buffer_type}'")
  1633. except Exception as e:
  1634. error_msg = f'清空缓冲区失败: {str(e)}'
  1635. logger.error(error_msg)
  1636. emit('clear_data_buffer_response', {
  1637. 'success': False,
  1638. 'message': error_msg,
  1639. 'error_code': ERROR_CODES['UNKNOWN_ERROR']
  1640. })
  1641. # 设置回调
  1642. serial_client.set_data_callback(serial_data_handler)
  1643. serial_client.set_send_callback(serial_send_handler)
  1644. serial_client.set_status_callback(serial_status_handler)
  1645. mqtt_client.set_data_callback(mqtt_data_handler_extended)
  1646. mqtt_client.set_status_callback(mqtt_status_handler)
  1647. # 设备配置文件路径
  1648. DEVICE_CONFIG_FILE = '/root/dzxj_dtu/devices.json'
  1649. confirm_loop_running = False
  1650. def save_device_config():
  1651. """保存设备配置到文件"""
  1652. try:
  1653. filepath = DEVICE_CONFIG_FILE
  1654. success = address_config.save_config(filepath)
  1655. if success:
  1656. logger.info(f"设备配置已保存到: {filepath}")
  1657. except Exception as e:
  1658. logger.error(f"保存设备配置失败: {str(e)}")
  1659. def load_device_config():
  1660. """加载设备配置"""
  1661. try:
  1662. filepath = DEVICE_CONFIG_FILE
  1663. if os.path.exists(filepath):
  1664. success = address_config.load_config(filepath)
  1665. if success:
  1666. devices = address_config.get_stored_devices()
  1667. logger.info(f"已加载 {len(devices)} 个设备配置")
  1668. return devices
  1669. except Exception as e:
  1670. logger.error(f"加载设备配置失败: {str(e)}")
  1671. return {}
  1672. def _merge_panel_config(new_config):
  1673. """合并面板配置:叠加新发现的在线设备,并保留已标记为离线的面板
  1674. 离线设备保留在 panel_config 中(status='offline'),UI 可显示离线状态,
  1675. 轮询循环会跳过它们不再发查询;广播发现仍会定期尝试重新上线。
  1676. """
  1677. global panel_config
  1678. merged = dict(new_config)
  1679. for panel_id, cfg in panel_config.items():
  1680. if cfg.get('status') == 'offline' and panel_id not in merged:
  1681. merged[panel_id] = cfg
  1682. panel_config = merged
  1683. return merged
  1684. def sync_panel_config():
  1685. """根据 address_config.stored_devices 同步 panel_config"""
  1686. global panel_config
  1687. try:
  1688. devices = address_config.get_stored_devices()
  1689. panel_id_map = dtu_config.get('panel_id_mapping', {}) or {}
  1690. new_config = {}
  1691. for uid_hex, addr in devices.items():
  1692. custom_id = panel_id_map.get(uid_hex) or panel_id_map.get(addr)
  1693. if custom_id:
  1694. panel_id = str(custom_id)
  1695. else:
  1696. panel_id = f"PANEL_{dtu_config.get('dtu_id', 'DTU001')}_{addr}"
  1697. new_config[panel_id] = {
  1698. 'address': addr,
  1699. 'position': addr,
  1700. 'panel_uid': uid_hex,
  1701. 'status': 'online'
  1702. }
  1703. _merge_panel_config(new_config)
  1704. logger.info(f"已同步面板配置: {len(panel_config)} 个面板")
  1705. except Exception as e:
  1706. logger.error(f"同步面板配置失败: {str(e)}")
  1707. def sync_panel_config_from_results(results):
  1708. """根据本次自动配置结果同步 panel_config,只把真实发现/分配到的设备加入轮询"""
  1709. global panel_config
  1710. try:
  1711. panel_id_map = dtu_config.get('panel_id_mapping', {}) or {}
  1712. new_config = {}
  1713. for r in results:
  1714. if r.get('status') != 'assigned':
  1715. continue
  1716. uid_hex = r.get('uid')
  1717. addr = r.get('address')
  1718. if not uid_hex or not addr:
  1719. continue
  1720. custom_id = panel_id_map.get(uid_hex) or panel_id_map.get(addr)
  1721. if custom_id:
  1722. panel_id = str(custom_id)
  1723. else:
  1724. panel_id = f"PANEL_{dtu_config.get('dtu_id', 'DTU001')}_{addr}"
  1725. new_config[panel_id] = {
  1726. 'address': addr,
  1727. 'position': addr,
  1728. 'panel_uid': uid_hex,
  1729. 'status': 'online'
  1730. }
  1731. _merge_panel_config(new_config)
  1732. logger.info(f"已同步面板配置(发现模式): {len(panel_config)} 个面板")
  1733. except Exception as e:
  1734. logger.error(f"同步面板配置失败: {str(e)}")
  1735. def check_assigned_devices_online(stored_devices, retries=3, timeout=0.5):
  1736. """对已有地址的设备发读卡查询指令确认是否在线
  1737. 已分配地址的从机不会回复广播,必须通过 03 查询指令确认。
  1738. 连续 retries 次无响应视为离线。
  1739. 返回: [{'status': 'assigned', 'uid': uid_hex, 'address': addr}, ...]
  1740. """
  1741. confirmed = []
  1742. for idx, (uid_hex, addr) in enumerate(stored_devices.items()):
  1743. # 不同地址之间也留一点间隔,避免总线冲突
  1744. if idx > 0:
  1745. time.sleep(0.1)
  1746. ok = False
  1747. for attempt in range(retries):
  1748. try:
  1749. resp = modbus_client.read_all_antenna_cards(addr, timeout=timeout)
  1750. if 'error' not in resp:
  1751. logger.info(f"地址 {addr} 查询有响应(第{attempt + 1}次),加入轮询")
  1752. confirmed.append({'status': 'assigned', 'uid': uid_hex, 'address': addr})
  1753. ok = True
  1754. break
  1755. logger.debug(f"地址 {addr} 第{attempt + 1}次查询无响应")
  1756. except Exception as e:
  1757. logger.debug(f"地址 {addr} 第{attempt + 1}次查询异常: {e}")
  1758. # 从机可能需要一点时间切换收发态,重试间隔不要太短
  1759. time.sleep(0.1)
  1760. if not ok:
  1761. logger.info(f"地址 {addr} 连续{retries}次查询无响应,视为离线")
  1762. return confirmed
  1763. # 上一次执行发现同步的时间,用于去抖
  1764. _last_discovery_sync_time = 0
  1765. def run_discovery_sync(min_interval=10):
  1766. """执行一次完整的设备发现并同步 panel_config
  1767. 包括:广播发现新设备 + 对已分配地址发查询指令确认在线。
  1768. min_interval 为两次发现之间的最小间隔(秒),防止重复触发。
  1769. """
  1770. global panel_config, _last_discovery_sync_time
  1771. try:
  1772. now = time.time()
  1773. if now - _last_discovery_sync_time < min_interval:
  1774. logger.debug(f"发现同步间隔不足 {min_interval} 秒,跳过")
  1775. return
  1776. _last_discovery_sync_time = now
  1777. _st = serial_client.get_status()
  1778. if not (isinstance(_st, dict) and _st.get('connected', False)):
  1779. logger.debug("串口未连接,跳过发现同步")
  1780. return
  1781. if not dtu_config.get('enabled'):
  1782. logger.debug("DTU 未启用,跳过发现同步")
  1783. return
  1784. logger.info("执行设备发现与地址同步...")
  1785. # 1. 先查询地址表中已有地址是否在线(已分配地址的设备不回复广播)
  1786. stored_devices = address_config.get_stored_devices()
  1787. # 已分配地址的设备不回复广播,无法靠广播重新发现;
  1788. # 因此把当前已标记离线的面板(已知地址)也纳入按地址复查,
  1789. # 使其恢复后能在发现周期内重新上线(即使 device_config 未持久化)。
  1790. for pid, cfg in panel_config.items():
  1791. if cfg.get('status') == 'offline':
  1792. uid = cfg.get('panel_uid', '') or ''
  1793. addr = cfg.get('address')
  1794. if uid and addr and uid not in stored_devices:
  1795. stored_devices[uid] = addr
  1796. confirmed = check_assigned_devices_online(stored_devices, retries=3, timeout=0.5)
  1797. # 2. 再广播发现未配置地址的新设备并分配地址
  1798. time.sleep(0.2)
  1799. result = address_config.auto_configure(timeout=2.0)
  1800. discovered = result.get('discovered', 0)
  1801. assigned = result.get('assigned', 0)
  1802. if discovered > 0 or assigned > 0:
  1803. logger.info(f"广播发现: discovered={discovered}, assigned={assigned}")
  1804. save_device_config()
  1805. # 3. 合并已有在线设备和广播新分配设备,去重
  1806. combined = confirmed + result.get('results', [])
  1807. seen_uids = set()
  1808. unique_results = []
  1809. for r in combined:
  1810. uid = r.get('uid')
  1811. if uid and uid not in seen_uids:
  1812. seen_uids.add(uid)
  1813. unique_results.append(r)
  1814. if unique_results:
  1815. logger.info(f"在线设备同步: 广播结果={discovered}, 已分配在线={len(confirmed)}, 合计={len(unique_results)}")
  1816. sync_panel_config_from_results(unique_results)
  1817. else:
  1818. _merge_panel_config({})
  1819. panel_fail_count.clear()
  1820. port_state.clear()
  1821. logger.info("未发现任何在线设备,已清空轮询列表(保留离线面板)")
  1822. # 更新最近在线时间
  1823. for r in unique_results:
  1824. if r.get('status') == 'assigned':
  1825. uid = r.get('uid')
  1826. if uid:
  1827. device_last_seen[uid] = now
  1828. except Exception as e:
  1829. logger.error(f"设备发现同步失败: {e}")
  1830. def confirm_loop():
  1831. """后台确认线程:每10秒对所有已存储设备发送 confirm_address"""
  1832. global confirm_loop_running
  1833. confirm_loop_running = True
  1834. logger.info("启动设备确认线程 (间隔10秒)")
  1835. while confirm_loop_running:
  1836. try:
  1837. devices = address_config.get_stored_devices()
  1838. if not devices:
  1839. time.sleep(10)
  1840. continue
  1841. if not _serial_connected():
  1842. time.sleep(10)
  1843. continue
  1844. _st = serial_client.get_status()
  1845. if not (isinstance(_st, dict) and _st.get('connected', False)):
  1846. time.sleep(10)
  1847. continue
  1848. for uid_hex, addr in devices.items():
  1849. try:
  1850. uid_bytes = bytes.fromhex(uid_hex)
  1851. cmd = build_confirm_address(addr, uid_bytes)
  1852. success, msg = serial_client.send_raw(cmd)
  1853. if success:
  1854. logger.debug(f"确认设备: 地址={addr}, UID={uid_hex[:16]}...")
  1855. else:
  1856. logger.warning(f"确认失败 地址={addr}: {msg}")
  1857. except Exception as e:
  1858. logger.error(f"确认异常 地址={addr}: {str(e)}")
  1859. time.sleep(0.1)
  1860. except Exception as e:
  1861. logger.error(f"确认线程异常: {str(e)}")
  1862. time.sleep(10)
  1863. # API路由
  1864. # 移除静态文件服务,前端由nginx提供服务
  1865. # 根路径路由
  1866. @app.route('/')
  1867. def index():
  1868. return send_from_directory(STATIC_FOLDER, 'index.html')
  1869. # 404错误处理器 - 解决SPA路由刷新问题
  1870. @app.errorhandler(404)
  1871. def page_not_found(e):
  1872. """处理所有404错误,对于非API路径返回index.html"""
  1873. path = request.path
  1874. # 检查是否是API请求
  1875. if path.startswith('/api/'):
  1876. # 对于API请求,返回404错误
  1877. return jsonify({
  1878. 'success': False,
  1879. 'message': 'API endpoint not found'
  1880. }), 404
  1881. # 对于所有非API路径,返回index.html让前端路由处理
  1882. return send_from_directory(STATIC_FOLDER, 'index.html'), 200
  1883. @app.route('/api/serial/ports', methods=['GET'])
  1884. def get_serial_ports():
  1885. """获取可用串口列表"""
  1886. ports = serial_client.list_ports()
  1887. return jsonify({
  1888. 'success': True,
  1889. 'ports': ports
  1890. })
  1891. @app.route('/api/serial/connect', methods=['POST'])
  1892. def serial_connect():
  1893. """连接串口"""
  1894. try:
  1895. data = request.json
  1896. port = data.get('port')
  1897. baudrate = data.get('baudrate', 9600)
  1898. bytesize = data.get('bytesize', 8)
  1899. parity = data.get('parity', 'N')
  1900. stopbits = data.get('stopbits', 1)
  1901. timeout = data.get('timeout', 0.1)
  1902. if not port:
  1903. logger.warning("连接串口请求缺少串口名称")
  1904. return jsonify({
  1905. 'success': False,
  1906. 'message': '串口名称不能为空',
  1907. 'error_code': ERROR_CODES['CONFIG_ERROR']
  1908. }), 400
  1909. # 先断开之前的连接
  1910. _status = serial_client.get_status()
  1911. if isinstance(_status, dict) and _status.get('connected', False):
  1912. _port = serial_client.current_config.port if serial_client.current_config else 'unknown'
  1913. logger.info(f"断开现有串口连接: {_port}")
  1914. serial_client.disconnect()
  1915. # 连接新的串口
  1916. logger.info(f"尝试连接串口: {port}, 波特率: {baudrate}")
  1917. success, message = serial_client.connect(port, baudrate=baudrate, timeout=timeout, bytesize=bytesize, parity=parity, stopbits=stopbits)
  1918. status_code = 200 if success else 400
  1919. error_code = ERROR_CODES['SUCCESS'] if success else ERROR_CODES['SERIAL_CONNECTION_ERROR']
  1920. response = {
  1921. 'success': success,
  1922. 'message': message,
  1923. 'error_code': error_code
  1924. }
  1925. if success:
  1926. logger.info(f"串口连接成功: {port}")
  1927. # 保存串口配置
  1928. save_serial_config(port, baudrate, timeout, bytesize, parity, stopbits)
  1929. else:
  1930. logger.error(f"串口连接失败: {message}")
  1931. return jsonify(response), status_code
  1932. except Exception as e:
  1933. error_msg = f'连接串口时出错: {str(e)}'
  1934. logger.exception(error_msg) # 使用exception记录完整堆栈
  1935. return jsonify({
  1936. 'success': False,
  1937. 'message': error_msg,
  1938. 'error_code': ERROR_CODES['UNKNOWN_ERROR']
  1939. }), 500
  1940. @app.route('/api/serial/disconnect', methods=['POST'])
  1941. def serial_disconnect():
  1942. """断开串口连接"""
  1943. success, message = serial_client.disconnect()
  1944. return jsonify({
  1945. 'success': success,
  1946. 'message': message
  1947. })
  1948. @app.route('/api/serial/status', methods=['GET'])
  1949. def serial_get_status():
  1950. """获取串口状态"""
  1951. _st = serial_client.get_status()
  1952. saved_config = {}
  1953. try:
  1954. with open(SERIAL_CONFIG_FILE, 'r') as f:
  1955. saved_config = json.load(f)
  1956. except (FileNotFoundError, json.JSONDecodeError):
  1957. pass
  1958. result = {'saved_config': saved_config}
  1959. if isinstance(_st, dict):
  1960. result['connected'] = _st.get('connected', False)
  1961. if result['connected']:
  1962. cfg = _st.get('config')
  1963. result['port'] = cfg.port if cfg else None
  1964. else:
  1965. result['port'] = None
  1966. else:
  1967. result['connected'] = bool(_st)
  1968. result['port'] = None
  1969. return jsonify(result)
  1970. @app.route('/api/serial/send', methods=['POST'])
  1971. def serial_send():
  1972. """发送数据到串口"""
  1973. data = request.json
  1974. message = data.get('message')
  1975. if not message:
  1976. return jsonify({
  1977. 'success': False,
  1978. 'message': '消息内容不能为空'
  1979. })
  1980. success, message = serial_client.send_data(message)
  1981. return jsonify({
  1982. 'success': success,
  1983. 'message': message
  1984. })
  1985. @app.route('/api/mqtt/connect', methods=['POST'])
  1986. def mqtt_connect():
  1987. """连接MQTT服务器"""
  1988. try:
  1989. data = request.json
  1990. host = data.get('broker') or data.get('host', 'localhost')
  1991. port = data.get('port', 1883)
  1992. client_id = data.get('client_id', f'serial_gateway_{int(time.time())}')
  1993. username = data.get('username')
  1994. password = data.get('password')
  1995. keepalive = data.get('keepalive', 60)
  1996. # 先断开之前的连接
  1997. if _mqtt_connected():
  1998. _old = mqtt_client.config
  1999. _old_info = f"{_old.broker}:{_old.port}" if _old else "unknown"
  2000. logger.info(f"断开现有MQTT连接: {_old_info}")
  2001. mqtt_client.disconnect()
  2002. # 连接新的MQTT服务器
  2003. logger.info(f"尝试连接MQTT服务器: {host}:{port}, 客户端ID: {client_id}")
  2004. will_topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'status')
  2005. will_payload = json.dumps({
  2006. 'dtu_id': dtu_config['dtu_id'], 'type': 'STATUS',
  2007. 'payload': {'online': False, 'reason': 'CONNECTION_LOST'}
  2008. })
  2009. success, message = mqtt_client.connect(
  2010. broker=host, port=port, client_id=client_id,
  2011. username=username or "", password=password or "",
  2012. keepalive=keepalive,
  2013. will_topic=will_topic, will_payload=will_payload, will_qos=1, will_retain=False
  2014. )
  2015. # 如果连接成功,订阅主题
  2016. if success and 'topics' in data:
  2017. mqtt_client.subscribe(data['topics'])
  2018. status_code = 200 if success else 400
  2019. error_code = ERROR_CODES['SUCCESS'] if success else ERROR_CODES['MQTT_CONNECTION_ERROR']
  2020. response = {
  2021. 'success': success,
  2022. 'message': message,
  2023. 'error_code': error_code
  2024. }
  2025. if success:
  2026. logger.info(f"MQTT服务器连接成功: {host}:{port}")
  2027. else:
  2028. logger.error(f"MQTT服务器连接失败: {message}")
  2029. return jsonify(response), status_code
  2030. except Exception as e:
  2031. error_msg = f'连接MQTT服务器时出错: {str(e)}'
  2032. logger.exception(error_msg)
  2033. return jsonify({
  2034. 'success': False,
  2035. 'message': error_msg,
  2036. 'error_code': ERROR_CODES['UNKNOWN_ERROR']
  2037. }), 500
  2038. @app.route('/api/mqtt/disconnect', methods=['POST'])
  2039. def mqtt_disconnect():
  2040. """断开MQTT连接"""
  2041. success, message = mqtt_client.disconnect()
  2042. return jsonify({
  2043. 'success': success,
  2044. 'message': message
  2045. })
  2046. @app.route('/api/mqtt/status', methods=['GET'])
  2047. def mqtt_get_status():
  2048. """获取MQTT状态"""
  2049. _st = mqtt_client.get_status()
  2050. return jsonify({
  2051. 'connected': _st.get('connected', False) if isinstance(_st, dict) else bool(_st)
  2052. })
  2053. @app.route('/api/mqtt/publish', methods=['POST'])
  2054. def mqtt_publish():
  2055. """发布MQTT消息"""
  2056. data = request.json
  2057. topic = data.get('topic')
  2058. message = data.get('message')
  2059. if not topic or not message:
  2060. return jsonify({
  2061. 'success': False,
  2062. 'message': '主题和消息内容不能为空'
  2063. })
  2064. success, message = mqtt_client.publish(topic, message)
  2065. return jsonify({
  2066. 'success': success,
  2067. 'message': message
  2068. })
  2069. @app.route('/api/mqtt/subscribe', methods=['POST'])
  2070. def mqtt_subscribe():
  2071. """订阅MQTT主题"""
  2072. data = request.json
  2073. topics = data.get('topics', [])
  2074. if not topics:
  2075. return jsonify({
  2076. 'success': False,
  2077. 'message': '请至少订阅一个主题'
  2078. })
  2079. success, message = mqtt_client.subscribe(topics)
  2080. return jsonify({
  2081. 'success': success,
  2082. 'message': message
  2083. })
  2084. @app.route('/api/mqtt/broadcast_discover', methods=['POST'])
  2085. def mqtt_broadcast_discover():
  2086. """发送DTU发现广播 (7.14)
  2087. 服务器通过广播主题发送DISCOVER消息,
  2088. 触发所有在线DTU进行注册响应
  2089. """
  2090. data = request.json or {}
  2091. customer_id = data.get('customer_id', dtu_config.get('customer_id', 'default'))
  2092. discover_topic = build_dtu_topic('broadcast', 'dtu', 'discover')
  2093. request_id = f"dsc_{int(time.time() * 1000)}"
  2094. payload = {
  2095. 'msg_id': request_id,
  2096. 'timestamp': int(time.time() * 1000),
  2097. 'dtu_id': 'PLATFORM',
  2098. 'type': 'DISCOVER',
  2099. 'payload': {
  2100. 'request_id': request_id,
  2101. 'customer_id': customer_id
  2102. }
  2103. }
  2104. success, message = mqtt_client.publish(discover_topic, json.dumps(payload), qos=1)
  2105. logger.info(f"发送DTU发现广播: topic={discover_topic}, payload={payload}")
  2106. return jsonify({
  2107. 'success': success,
  2108. 'message': 'DTU发现广播已发送' if success else message,
  2109. 'topic': discover_topic
  2110. })
  2111. @app.route('/api/mqtt/broadcast_config', methods=['POST'])
  2112. def mqtt_broadcast_config():
  2113. """发送DTU批量配置广播 (7.15)
  2114. 服务器通过广播主题发送CONFIG消息,
  2115. 用于批量配置所有在线DTU
  2116. """
  2117. data = request.json or {}
  2118. customer_id = data.get('customer_id', dtu_config.get('customer_id', 'default'))
  2119. config_items = data.get('items', {})
  2120. config_version = data.get('config_version', f"cfg_{int(time.time())}")
  2121. force_apply = data.get('force_apply', False)
  2122. config_topic = build_dtu_topic('broadcast', 'dtu', 'config')
  2123. payload = {
  2124. 'msg_id': f"cfg_{int(time.time() * 1000)}",
  2125. 'timestamp': int(time.time() * 1000),
  2126. 'dtu_id': 'PLATFORM',
  2127. 'type': 'CONFIG',
  2128. 'payload': {
  2129. 'customer_id': customer_id,
  2130. 'config_version': config_version,
  2131. 'force_apply': force_apply,
  2132. 'items': config_items
  2133. }
  2134. }
  2135. success, message = mqtt_client.publish(config_topic, json.dumps(payload), qos=1)
  2136. logger.info(f"发送DTU批量配置广播: topic={config_topic}, payload={payload}")
  2137. return jsonify({
  2138. 'success': success,
  2139. 'message': 'DTU批量配置广播已发送' if success else message,
  2140. 'topic': config_topic,
  2141. 'config': {
  2142. 'config_version': config_version,
  2143. 'items': config_items,
  2144. 'force_apply': force_apply
  2145. }
  2146. })
  2147. @app.route('/api/data/serial', methods=['GET'])
  2148. def get_serial_data():
  2149. """获取串口数据"""
  2150. return jsonify({
  2151. 'data': serial_data_buffer
  2152. })
  2153. @app.route('/api/data/mqtt', methods=['GET'])
  2154. def get_mqtt_data():
  2155. """获取MQTT数据"""
  2156. return jsonify({
  2157. 'data': mqtt_data_buffer
  2158. })
  2159. @app.route('/api/forward/config', methods=['POST'])
  2160. def set_forward_config():
  2161. """设置转发配置"""
  2162. global forward_serial_to_mqtt, forward_mqtt_to_serial, mqtt_publish_topic
  2163. data = request.json
  2164. forward_serial_to_mqtt = data.get('serial_to_mqtt', False)
  2165. forward_mqtt_to_serial = data.get('mqtt_to_serial', False)
  2166. if 'publish_topic' in data:
  2167. mqtt_publish_topic = data['publish_topic']
  2168. return jsonify({
  2169. 'success': True,
  2170. 'message': '转发配置已更新',
  2171. 'config': {
  2172. 'serial_to_mqtt': forward_serial_to_mqtt,
  2173. 'mqtt_to_serial': forward_mqtt_to_serial,
  2174. 'publish_topic': mqtt_publish_topic
  2175. }
  2176. })
  2177. @app.route('/api/forward/status', methods=['GET'])
  2178. def get_forward_status():
  2179. """获取转发状态"""
  2180. return jsonify({
  2181. 'serial_to_mqtt': forward_serial_to_mqtt,
  2182. 'mqtt_to_serial': forward_mqtt_to_serial,
  2183. 'publish_topic': mqtt_publish_topic
  2184. })
  2185. # 健康检查端点
  2186. @app.route('/api/health', methods=['GET'])
  2187. def health_check():
  2188. """健康检查端点"""
  2189. try:
  2190. # 获取客户端连接数量
  2191. client_counts = {
  2192. 'data': len(connected_clients['data']),
  2193. 'status': len(connected_clients['status']),
  2194. 'control': len(connected_clients['control'])
  2195. }
  2196. # 获取缓冲区大小
  2197. buffer_sizes = {
  2198. 'serial': len(serial_data_buffer),
  2199. 'mqtt': len(mqtt_data_buffer)
  2200. }
  2201. # 执行系统负载检查
  2202. # 注意:这只是一个简化的负载检查,实际应用中可能需要更复杂的监控
  2203. is_healthy = True
  2204. load_warnings = []
  2205. # 检查缓冲区是否过大
  2206. if buffer_sizes['serial'] > MAX_BUFFER_SIZE * 0.8:
  2207. is_healthy = False
  2208. load_warnings.append(f"串口缓冲区接近最大容量: {buffer_sizes['serial']}/{MAX_BUFFER_SIZE}")
  2209. if buffer_sizes['mqtt'] > MAX_BUFFER_SIZE * 0.8:
  2210. is_healthy = False
  2211. load_warnings.append(f"MQTT缓冲区接近最大容量: {buffer_sizes['mqtt']}/{MAX_BUFFER_SIZE}")
  2212. # 检查WebSocket连接数是否过多
  2213. total_clients = sum(client_counts.values())
  2214. if total_clients > 100: # 设置合理的阈值
  2215. is_healthy = False
  2216. load_warnings.append(f"WebSocket连接数过多: {total_clients}")
  2217. # 尝试获取网络状态信息(使用try-except包装,防止网络模块出错导致健康检查失败)
  2218. network_info = None
  2219. try:
  2220. network_info = network_manager.get_network_status()
  2221. except Exception as e:
  2222. logger.warning(f"获取网络状态时出错: {str(e)}")
  2223. # 不影响整体健康检查,只添加警告
  2224. load_warnings.append(f"网络状态获取失败: {str(e)}")
  2225. response = {
  2226. 'status': 'healthy' if is_healthy else 'warning',
  2227. 'timestamp': time.strftime('%Y-%m-%d %H:%M:%S'),
  2228. 'services': {
  2229. 'serial': serial_status,
  2230. 'mqtt': mqtt_status,
  2231. 'websocket': True
  2232. },
  2233. 'client_counts': client_counts,
  2234. 'buffer_sizes': buffer_sizes,
  2235. 'warnings': load_warnings
  2236. }
  2237. # 仅当获取到网络信息时添加
  2238. if network_info:
  2239. response['network'] = network_info
  2240. return jsonify(response), 200
  2241. except Exception as e:
  2242. # 捕获所有异常,确保健康检查不会返回500错误
  2243. logger.error(f"健康检查端点出错: {str(e)}")
  2244. # 返回一个基础的健康状态,至少显示服务在运行
  2245. return jsonify({
  2246. 'status': 'error',
  2247. 'timestamp': time.strftime('%Y-%m-%d %H:%M:%S'),
  2248. 'error': str(e),
  2249. 'services': {
  2250. 'api': True, # API服务本身是运行的
  2251. 'serial': None,
  2252. 'mqtt': None,
  2253. 'websocket': None
  2254. }
  2255. }), 200 # 仍然返回200,避免健康检查导致的连锁反应
  2256. @app.route('/api/screen/status', methods=['GET'])
  2257. def get_screen_status():
  2258. """获取 Nextion 屏幕状态。"""
  2259. with screen_lock:
  2260. panels = get_sorted_panels()
  2261. current_index = screen_current_panel_index
  2262. current_panel_id = None
  2263. if panels and 0 <= current_index < len(panels):
  2264. current_panel_id = panels[current_index][0]
  2265. panel_count = len(panels)
  2266. status = screen_display.get_status()
  2267. return jsonify({
  2268. 'success': True,
  2269. 'data': {
  2270. 'connected': status.get('connected', False),
  2271. 'port': status.get('port'),
  2272. 'baudrate': status.get('baudrate'),
  2273. 'current_panel_index': current_index,
  2274. 'current_panel_id': current_panel_id,
  2275. 'panel_count': panel_count
  2276. }
  2277. })
  2278. @app.route('/api/screen/refresh', methods=['POST'])
  2279. def refresh_screen():
  2280. """手动刷新当前 panel 到屏幕。"""
  2281. with screen_lock:
  2282. panels = get_sorted_panels()
  2283. if not panels:
  2284. return jsonify({'success': False, 'message': '没有可用的 panel'}), 400
  2285. if not (0 <= screen_current_panel_index < len(panels)):
  2286. return jsonify({'success': False, 'message': '当前 panel 索引无效'}), 400
  2287. panel_id = panels[screen_current_panel_index][0]
  2288. success, message = refresh_screen_panel(panel_id)
  2289. if success:
  2290. return jsonify({'success': True, 'message': message})
  2291. return jsonify({'success': False, 'message': message}), 400
  2292. @app.route('/api/screen/test_cmd', methods=['POST'])
  2293. def screen_test_cmd():
  2294. """向 Nextion 屏幕发送原始命令(调试用)。"""
  2295. try:
  2296. data = request.json
  2297. cmd = data.get('cmd')
  2298. if not cmd:
  2299. return jsonify({'success': False, 'message': '缺少 cmd 参数'}), 400
  2300. status = screen_display.get_status()
  2301. if not status.get('connected'):
  2302. return jsonify({'success': False, 'message': '屏幕串口未连接'}), 400
  2303. ok = screen_display.send_cmd(cmd, delay_ms=data.get('delay_ms', 50))
  2304. logger.info(f"[Nextion TEST] cmd={cmd} ok={ok}")
  2305. return jsonify({'success': ok, 'cmd': cmd, 'screen_connected': True})
  2306. except Exception as e:
  2307. logger.error(f"屏幕测试命令失败: {e}")
  2308. return jsonify({'success': False, 'message': str(e)}), 500
  2309. # 网络配置相关API
  2310. @app.route('/api/network/config', methods=['GET'])
  2311. def get_network_config():
  2312. """获取当前网络配置"""
  2313. try:
  2314. config = network_manager.get_network_config()
  2315. return jsonify(config)
  2316. except Exception as e:
  2317. logger.error(f'获取网络配置失败: {str(e)}')
  2318. return jsonify({'success': False, 'message': f'获取网络配置失败: {str(e)}'}), 500
  2319. @app.route('/api/network/config', methods=['POST'])
  2320. def update_network_config():
  2321. """更新网络配置"""
  2322. try:
  2323. config_data = request.json
  2324. result = network_manager.update_network_config(config_data)
  2325. if result['success']:
  2326. return jsonify(result)
  2327. else:
  2328. return jsonify(result), 400
  2329. except Exception as e:
  2330. logger.error(f'更新网络配置失败: {str(e)}')
  2331. return jsonify({'success': False, 'message': f'更新网络配置失败: {str(e)}'}), 500
  2332. @app.route('/api/network/status', methods=['GET'])
  2333. def get_network_status():
  2334. """获取网络状态信息"""
  2335. try:
  2336. status = network_manager.get_network_status()
  2337. return jsonify(status)
  2338. except Exception as e:
  2339. logger.error(f'获取网络状态失败: {str(e)}')
  2340. return jsonify({'success': False, 'message': f'获取网络状态失败: {str(e)}'}), 500
  2341. @app.route('/api/network/restart', methods=['POST'])
  2342. def restart_network_service():
  2343. """重启网络服务以应用新配置"""
  2344. try:
  2345. result = network_manager.restart_network_service()
  2346. if result['success']:
  2347. return jsonify(result)
  2348. else:
  2349. return jsonify(result), 500
  2350. except Exception as e:
  2351. logger.error(f'重启网络服务失败: {str(e)}')
  2352. return jsonify({'success': False, 'message': f'重启网络服务失败: {str(e)}'}), 500
  2353. # Modbus RTU API
  2354. @app.route('/api/modbus/antenna_addresses', methods=['GET'])
  2355. def get_antenna_addresses():
  2356. """获取天线地址映射表"""
  2357. return jsonify({
  2358. 'success': True,
  2359. 'antennas': {str(k): f"0x{v:04x}" for k, v in ANTENNA_ADDRESSES.items()}
  2360. })
  2361. @app.route('/api/modbus/read_antenna', methods=['POST'])
  2362. def modbus_read_antenna():
  2363. """读取指定天线的卡号
  2364. 请求参数:
  2365. {
  2366. "device_address": 1, // 设备地址 (1-247)
  2367. "antenna": 1, // 天线编号 (1-24)
  2368. "timeout": 1.0 // 可选,超时时间(秒)
  2369. }
  2370. """
  2371. try:
  2372. data = request.json
  2373. device_address = data.get('device_address', 1)
  2374. antenna = data.get('antenna', 1)
  2375. timeout = data.get('timeout')
  2376. if antenna < 1 or antenna > 24:
  2377. return jsonify({
  2378. 'success': False,
  2379. 'message': f'无效的天线编号: {antenna}, 必须是1-24'
  2380. }), 400
  2381. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2382. return jsonify({
  2383. 'success': False,
  2384. 'message': '串口未连接'
  2385. }), 400
  2386. result = modbus_client.read_antenna_card(
  2387. device_address=device_address,
  2388. antenna_num=antenna,
  2389. timeout=timeout
  2390. )
  2391. if 'error' in result:
  2392. return jsonify({
  2393. 'success': False,
  2394. 'message': result['error'],
  2395. 'raw_data': result.get('raw_data', '')
  2396. }), 400
  2397. return jsonify({
  2398. 'success': True,
  2399. 'data': result
  2400. })
  2401. except Exception as e:
  2402. logger.error(f'读取天线数据失败: {str(e)}')
  2403. return jsonify({
  2404. 'success': False,
  2405. 'message': str(e)
  2406. }), 500
  2407. @app.route('/api/modbus/read_all_cards', methods=['POST'])
  2408. def modbus_read_all_cards():
  2409. """V4: 一次批量读取全部 24 路天线卡号
  2410. 请求参数:
  2411. {
  2412. "device_address": 2,
  2413. "timeout": 1.0
  2414. }
  2415. 返回:
  2416. {
  2417. "success": true,
  2418. "data": {
  2419. "device_address": 2,
  2420. "cards": [
  2421. {"antenna": 1, "present": false, "card_str": "", "uid": ""},
  2422. {"antenna": 2, "present": true, "card_str": "aabbccddeeff", "uid": "aa:bb:cc:dd:ee:ff"},
  2423. ...
  2424. ]
  2425. }
  2426. }
  2427. """
  2428. try:
  2429. data = request.json or {}
  2430. device_address = data.get('device_address', 1)
  2431. timeout = data.get('timeout')
  2432. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2433. return jsonify({'success': False, 'message': '串口未连接'}), 400
  2434. result = modbus_client.read_all_antenna_cards(device_address, timeout=timeout)
  2435. if 'error' in result:
  2436. return jsonify({
  2437. 'success': False,
  2438. 'message': result['error'],
  2439. 'raw_data': result.get('raw_data', '')
  2440. }), 400
  2441. return jsonify({'success': True, 'data': result})
  2442. except Exception as e:
  2443. logger.error(f'批量读卡失败: {str(e)}')
  2444. return jsonify({'success': False, 'message': str(e)}), 500
  2445. @app.route('/api/modbus/read_registers', methods=['POST'])
  2446. def modbus_read_registers():
  2447. """读取保持寄存器
  2448. 请求参数:
  2449. {
  2450. "device_address": 1,
  2451. "start_address": 2, // 起始地址 (十六进制如0x0002或十进制如2)
  2452. "quantity": 4, // 寄存器数量
  2453. "timeout": 1.0
  2454. }
  2455. """
  2456. try:
  2457. data = request.json
  2458. device_address = data.get('device_address', 1)
  2459. start_address = data.get('start_address', 0)
  2460. quantity = data.get('quantity', 1)
  2461. timeout = data.get('timeout')
  2462. # 支持十六进制字符串
  2463. if isinstance(start_address, str):
  2464. start_address = int(start_address, 16)
  2465. if isinstance(device_address, str):
  2466. device_address = int(device_address, 16)
  2467. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2468. return jsonify({
  2469. 'success': False,
  2470. 'message': '串口未连接'
  2471. }), 400
  2472. result = modbus_client.read_holding_registers(
  2473. device_address=device_address,
  2474. start_address=start_address,
  2475. quantity=quantity,
  2476. timeout=timeout
  2477. )
  2478. if 'error' in result:
  2479. return jsonify({
  2480. 'success': False,
  2481. 'message': result['error'],
  2482. 'raw_data': result.get('raw_data', '')
  2483. }), 400
  2484. return jsonify({
  2485. 'success': True,
  2486. 'data': result
  2487. })
  2488. except Exception as e:
  2489. logger.error(f'读取寄存器失败: {str(e)}')
  2490. return jsonify({
  2491. 'success': False,
  2492. 'message': str(e)
  2493. }), 500
  2494. @app.route('/api/modbus/write_register', methods=['POST'])
  2495. def modbus_write_register():
  2496. """写单个寄存器
  2497. 请求参数:
  2498. {
  2499. "device_address": 1,
  2500. "register_address": 1, // 寄存器地址
  2501. "value": 256, // 写入的值
  2502. "timeout": 1.0
  2503. }
  2504. """
  2505. try:
  2506. data = request.json
  2507. device_address = data.get('device_address', 1)
  2508. register_address = data.get('register_address', 1)
  2509. value = data.get('value', 0)
  2510. timeout = data.get('timeout')
  2511. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2512. return jsonify({
  2513. 'success': False,
  2514. 'message':'串口未连接'
  2515. }), 400
  2516. result = modbus_client.write_single_register(
  2517. device_address=device_address,
  2518. register_address=register_address,
  2519. value=value,
  2520. timeout=timeout
  2521. )
  2522. if 'error' in result:
  2523. return jsonify({
  2524. 'success': False,
  2525. 'message': result['error'],
  2526. 'raw_data': result.get('raw_data', '')
  2527. }), 400
  2528. return jsonify({
  2529. 'success': True,
  2530. 'data': result
  2531. })
  2532. except Exception as e:
  2533. logger.error(f'写寄存器失败: {str(e)}')
  2534. return jsonify({
  2535. 'success': False,
  2536. 'message': str(e)
  2537. }), 500
  2538. @app.route('/api/modbus/set_rgb_led', methods=['POST'])
  2539. def modbus_set_rgb_led():
  2540. """设置RGB灯状态
  2541. 请求参数:
  2542. {
  2543. "device_address": 1,
  2544. "led_number": 1, // 灯编号 (1-24)
  2545. "color": 1, // 颜色: 0=灭, 1=红灯, 2=绿灯, 3=蓝灯
  2546. "timeout": 1.0
  2547. }
  2548. """
  2549. try:
  2550. data = request.json
  2551. device_address = data.get('device_address', 1)
  2552. led_number = data.get('led_number', 1)
  2553. color = data.get('color', 0)
  2554. timeout = data.get('timeout')
  2555. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2556. return jsonify({
  2557. 'success': False,
  2558. 'message': '串口未连接'
  2559. }), 400
  2560. result = modbus_client.set_rgb_led(
  2561. device_address=device_address,
  2562. led_number=led_number,
  2563. color=color,
  2564. timeout=timeout
  2565. )
  2566. if 'error' in result:
  2567. return jsonify({
  2568. 'success': False,
  2569. 'message': result['error'],
  2570. 'raw_data': result.get('raw_data', '')
  2571. }), 400
  2572. # 按设备地址更新 LED 状态追踪
  2573. if device_address not in led_states:
  2574. led_states[device_address] = {}
  2575. led_states[device_address][led_number] = color
  2576. _refresh_current_screen_panel()
  2577. return jsonify({
  2578. 'success': True,
  2579. 'data': result
  2580. })
  2581. except Exception as e:
  2582. logger.error(f'设置RGB灯失败: {str(e)}')
  2583. return jsonify({
  2584. 'success': False,
  2585. 'message': str(e)
  2586. }), 500
  2587. # ========== 测试注入 API(模拟串口假数据,用于告警/同步映射端到端测试) ==========
  2588. @app.route('/api/test/inject_cards', methods=['POST'])
  2589. def test_inject_cards():
  2590. """注入假卡号,绕过真实串口。
  2591. 请求 body:
  2592. {
  2593. "cards": {
  2594. "2": {"1": "aabbccddeeff", "5": null, "12": "112233445566"}
  2595. }
  2596. }
  2597. key 为设备地址(Modbus 从机地址),value 为 {port_id: hex12|null}。
  2598. 调用后轮询将读到构造的卡号,触发 event/alarm 流程。
  2599. """
  2600. try:
  2601. data = request.json or {}
  2602. raw = data.get('cards')
  2603. if raw is None:
  2604. modbus_client.test_cards = None
  2605. return jsonify({'success': True, 'message': '注入已清空,恢复真实串口'})
  2606. parsed = {}
  2607. for addr_str, port_map in raw.items():
  2608. addr = int(addr_str)
  2609. pm = {}
  2610. for pid_str, hex_str in (port_map or {}).items():
  2611. pid = int(pid_str)
  2612. if hex_str in (None, '', 'null'):
  2613. pm[pid] = None
  2614. else:
  2615. s = hex_str.lower()
  2616. if len(s) != 12:
  2617. return jsonify({'success': False, 'message': f'hex 必须 12 字符: addr={addr} port={pid}'}), 400
  2618. bytes.fromhex(s) # 校验
  2619. pm[pid] = s
  2620. parsed[addr] = pm
  2621. modbus_client.test_cards = parsed
  2622. return jsonify({'success': True, 'test_cards': {
  2623. str(a): {str(p): v for p, v in m.items()} for a, m in parsed.items()
  2624. }})
  2625. except Exception as e:
  2626. return jsonify({'success': False, 'message': str(e)}), 400
  2627. @app.route('/api/test/inject_cards', methods=['GET'])
  2628. def test_inject_cards_get():
  2629. """查看当前注入状态"""
  2630. tc = modbus_client.test_cards
  2631. if tc is None:
  2632. return jsonify({'success': True, 'injected': False})
  2633. return jsonify({
  2634. 'success': True, 'injected': True,
  2635. 'cards': {str(a): {str(p): v for p, v in m.items()} for a, m in tc.items()}
  2636. })
  2637. @app.route('/api/modbus/scan', methods=['POST'])
  2638. def modbus_scan_devices():
  2639. """扫描在线设备
  2640. 请求参数:
  2641. {
  2642. "max_address": 247, // 最大设备地址
  2643. "timeout": 0.2 // 单个设备超时时间
  2644. }
  2645. """
  2646. try:
  2647. data = request.json or {}
  2648. max_address = data.get('max_address', 247)
  2649. timeout = data.get('timeout', 0.2)
  2650. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2651. return jsonify({
  2652. 'success': False,
  2653. 'message': '串口未连接'
  2654. }), 400
  2655. # 异步扫描可能更好,但这里先同步实现
  2656. result = modbus_client.scan_devices(max_address)
  2657. return jsonify({
  2658. 'success': True,
  2659. 'devices': result
  2660. })
  2661. except Exception as e:
  2662. logger.error(f'扫描设备失败: {str(e)}')
  2663. return jsonify({
  2664. 'success': False,
  2665. 'message': str(e)
  2666. }), 500
  2667. # ========== 地址配置协议 API ==========
  2668. @app.route('/api/modbus/broadcast_query', methods=['POST'])
  2669. def modbus_broadcast_query():
  2670. """发送广播查询指令"""
  2671. try:
  2672. data = request.json or {}
  2673. timeout = data.get('timeout')
  2674. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2675. return jsonify({'success': False, 'message': '串口未连接'}), 400
  2676. responses = address_config.broadcast_query(timeout)
  2677. assign_results = []
  2678. if responses:
  2679. assign_results = address_config.process_responses(responses)
  2680. save_device_config()
  2681. sync_panel_config_from_results(assign_results)
  2682. return jsonify({
  2683. 'success': True,
  2684. 'responses': responses,
  2685. 'assign_results': assign_results,
  2686. 'count': len(responses)
  2687. })
  2688. except Exception as e:
  2689. logger.error(f'广播查询失败: {str(e)}')
  2690. return jsonify({'success': False, 'message': str(e)}), 500
  2691. @app.route('/api/modbus/auto_configure', methods=['POST'])
  2692. def modbus_auto_configure():
  2693. """自动配置设备地址"""
  2694. try:
  2695. data = request.json or {}
  2696. timeout = data.get('timeout')
  2697. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2698. return jsonify({'success': False, 'message': '串口未连接'}), 400
  2699. result = address_config.auto_configure(timeout)
  2700. if result.get('success') and (result.get('discovered', 0) > 0 or result.get('assigned', 0) > 0):
  2701. save_device_config()
  2702. sync_panel_config_from_results(result.get('results', []))
  2703. return jsonify(result)
  2704. except Exception as e:
  2705. logger.error(f'自动配置失败: {str(e)}')
  2706. return jsonify({'success': False, 'message': str(e)}), 500
  2707. @app.route('/api/modbus/stored_devices', methods=['GET'])
  2708. def get_stored_devices():
  2709. """获取已存储的设备列表,并附带当前在线状态"""
  2710. devices = address_config.get_stored_devices()
  2711. now = time.time()
  2712. online_threshold = 60 # 60 秒内被轮询到视为在线
  2713. # 建立 address -> online 映射(按 panel_config + device_last_seen 判定,兼容 panel_uid 缺失)
  2714. online_addrs = set()
  2715. for pid, cfg in panel_config.items():
  2716. if device_last_seen.get(pid, 0) > now - online_threshold:
  2717. addr = cfg.get('address')
  2718. if addr:
  2719. online_addrs.add(addr)
  2720. panels = []
  2721. for uid, addr in devices.items():
  2722. panels.append({
  2723. 'uid': uid,
  2724. 'address': addr,
  2725. 'online': addr in online_addrs
  2726. })
  2727. return jsonify({
  2728. 'success': True,
  2729. 'devices': devices,
  2730. 'panels': panels
  2731. })
  2732. @app.route('/api/modbus/stored_devices', methods=['POST'])
  2733. def add_stored_device():
  2734. """添加已存储的设备"""
  2735. try:
  2736. data = request.json
  2737. uid = data.get('uid', '').lower()
  2738. address = data.get('address', 1)
  2739. if len(uid) != 24:
  2740. return jsonify({'success': False, 'message': 'UID长度必须是24个十六进制字符'}), 400
  2741. address_config.add_stored_device(uid, address)
  2742. save_device_config()
  2743. return jsonify({'success': True, 'message': f'已添加设备: UID={uid}, 地址={address}'})
  2744. except Exception as e:
  2745. return jsonify({'success': False, 'message': str(e)}), 500
  2746. @app.route('/api/modbus/load_config', methods=['POST'])
  2747. def modbus_load_config():
  2748. """从文件加载设备配置"""
  2749. try:
  2750. data = request.json
  2751. filepath = data.get('filepath', '/tmp/modbus_devices.json')
  2752. success = address_config.load_config(filepath)
  2753. return jsonify({'success': success, 'devices': address_config.get_stored_devices()})
  2754. except Exception as e:
  2755. return jsonify({'success': False, 'message': str(e)}), 500
  2756. @app.route('/api/modbus/save_config', methods=['POST'])
  2757. def modbus_save_config():
  2758. """保存设备配置到文件"""
  2759. try:
  2760. data = request.json
  2761. filepath = data.get('filepath', '/tmp/modbus_devices.json')
  2762. success = address_config.save_config(filepath)
  2763. return jsonify({'success': success, 'message': f'配置已保存到: {filepath}' if success else '保存失败'})
  2764. except Exception as e:
  2765. return jsonify({'success': False, 'message': str(e)}), 500
  2766. @app.route('/api/modbus/confirm_devices', methods=['POST'])
  2767. def confirm_devices():
  2768. """手动触发对所有已存储设备的确认"""
  2769. try:
  2770. devices = address_config.get_stored_devices()
  2771. if not devices:
  2772. return jsonify({'success': False, 'message': '没有已存储的设备'}), 400
  2773. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2774. return jsonify({'success': False, 'message': '串口未连接'}), 400
  2775. results = []
  2776. for uid_hex, addr in devices.items():
  2777. try:
  2778. uid_bytes = bytes.fromhex(uid_hex)
  2779. cmd = build_confirm_address(addr, uid_bytes)
  2780. success, msg = serial_client.send_raw(cmd)
  2781. logger.info(f"确认设备 地址={addr}: {'成功' if success else '失败 ' + msg}")
  2782. results.append({'address': addr, 'uid': uid_hex, 'success': success, 'message': msg})
  2783. except Exception as e:
  2784. results.append({'address': addr, 'uid': uid_hex, 'success': False, 'message': str(e)})
  2785. time.sleep(0.1)
  2786. return jsonify({'success': True, 'results': results, 'count': len(results)})
  2787. except Exception as e:
  2788. return jsonify({'success': False, 'message': str(e)}), 500
  2789. # 端口状态追踪 - 用于存储每个端口的事件状态
  2790. port_event_history = [] # 存储最近的端口事件
  2791. @app.route('/api/port/status', methods=['GET'])
  2792. def get_port_status():
  2793. """获取所有端口状态"""
  2794. return jsonify({'success': True, 'port_state': port_state})
  2795. @app.route('/api/port/events', methods=['GET'])
  2796. def get_port_events():
  2797. """获取端口事件历史"""
  2798. limit = request.args.get('limit', 100, type=int)
  2799. return jsonify({
  2800. 'success': True,
  2801. 'events': port_event_history[-limit:]
  2802. })
  2803. @app.route('/api/port/clear_events', methods=['POST'])
  2804. def clear_port_events():
  2805. """清除端口事件历史"""
  2806. global port_event_history
  2807. port_event_history = []
  2808. return jsonify({'success': True, 'message': '事件历史已清除'})
  2809. # 设备最后响应时间跟踪
  2810. device_last_seen = {}
  2811. @app.route('/api/panel/status', methods=['GET'])
  2812. def get_panel_status():
  2813. """获取所有面板状态,包含每个端口的连接状态"""
  2814. now = time.time()
  2815. PANEL_OFFLINE_TIMEOUT = 60
  2816. panel_status = {}
  2817. for panel_id, ports in port_state.items():
  2818. port_count = len(ports)
  2819. alarm_count = sum(1 for p in ports.values() if p.get('alarm_count', 0) > 0)
  2820. connected_count = sum(1 for p in ports.values() if p.get('last_uid'))
  2821. panel_ports = {}
  2822. for port_id, p in ports.items():
  2823. last_uid = p.get('last_uid')
  2824. expected_uid = p.get('expected_uid')
  2825. last_polled_at = p.get('last_polled_at')
  2826. if not last_polled_at:
  2827. status = 'UNKNOWN'
  2828. elif not last_uid:
  2829. # 有期望但读不到卡:告警未插;无期望:正常空闲
  2830. status = 'ILLEGAL_DISCONNECT' if expected_uid else 'DISCONNECTED'
  2831. elif expected_uid and last_uid != expected_uid:
  2832. status = 'ILLEGAL_CONNECT'
  2833. else:
  2834. status = 'CONNECTED'
  2835. panel_ports[port_id] = {
  2836. 'status': status,
  2837. 'jumper_uid': last_uid or None,
  2838. 'expected_uid': expected_uid or None,
  2839. 'alarm_count': p.get('alarm_count', 0)
  2840. }
  2841. panel_status[panel_id] = {
  2842. 'panel_id': panel_id,
  2843. 'port_count': port_count,
  2844. 'connected_count': connected_count,
  2845. 'alarm_count': alarm_count,
  2846. 'status': 'online' if connected_count > 0 else 'offline',
  2847. 'ports': panel_ports
  2848. }
  2849. for panel_id, cfg in panel_config.items():
  2850. last_seen = device_last_seen.get(panel_id, 0)
  2851. is_online = (now - last_seen) < PANEL_OFFLINE_TIMEOUT
  2852. if panel_id in panel_status:
  2853. panel_status[panel_id].update({
  2854. 'address': cfg.get('address'),
  2855. 'position': cfg.get('position'),
  2856. 'panel_uid': cfg.get('panel_uid'),
  2857. 'status': 'online' if is_online else 'offline'
  2858. })
  2859. else:
  2860. panel_status[panel_id] = {
  2861. 'panel_id': panel_id,
  2862. 'address': cfg.get('address'),
  2863. 'position': cfg.get('position'),
  2864. 'panel_uid': cfg.get('panel_uid'),
  2865. 'port_count': 0,
  2866. 'connected_count': 0,
  2867. 'alarm_count': 0,
  2868. 'status': 'online' if is_online else 'offline',
  2869. 'ports': {}
  2870. }
  2871. return jsonify({'success': True, 'panels': panel_status})
  2872. # LED 状态追踪 (按设备地址跟踪每个灯的最后设置状态)
  2873. # 结构: {device_address: {port_id: color}}, color: 0=off, 1=red, 2=green, 3=blue
  2874. led_states = {}
  2875. # Nextion 串口屏网口图片与 LED 颜色的映射关系
  2876. # 屏幕图片定义: 0=灰(灭), 1=蓝, 2=红, 3=绿
  2877. # 后端 LED 颜色定义: 0=灭, 1=红, 2=绿, 3=蓝
  2878. LED_COLOR_TO_PIC = {0: 0, 1: 2, 2: 3, 3: 1}
  2879. @app.route('/api/modbus/led_status', methods=['GET'])
  2880. def get_led_status():
  2881. """获取 LED 状态,支持按设备地址过滤"""
  2882. device_address = request.args.get('device_address', type=int)
  2883. if device_address is not None:
  2884. return jsonify({
  2885. 'success': True,
  2886. 'device_address': device_address,
  2887. 'leds': led_states.get(device_address, {})
  2888. })
  2889. return jsonify({'success': True, 'leds': led_states})
  2890. @app.route('/api/modbus/set_all_leds', methods=['POST'])
  2891. def set_all_leds():
  2892. """批量设置 LED
  2893. 请求: {"device_address": 1, "color": 1}
  2894. 设置所有 24 个 LED 到指定颜色
  2895. """
  2896. try:
  2897. data = request.json
  2898. device_address = data.get('device_address', 1)
  2899. color = data.get('color', 0)
  2900. timeout = data.get('timeout')
  2901. if not (isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False)):
  2902. return jsonify({'success': False, 'message': '串口未连接'}), 400
  2903. results = []
  2904. if device_address not in led_states:
  2905. led_states[device_address] = {}
  2906. for led_num in range(1, 25):
  2907. result = modbus_client.set_rgb_led(
  2908. device_address=device_address,
  2909. led_number=led_num,
  2910. color=color,
  2911. timeout=timeout
  2912. )
  2913. if 'error' in result:
  2914. results.append({'led': led_num, 'success': False, 'error': result['error']})
  2915. else:
  2916. results.append({'led': led_num, 'success': True})
  2917. led_states[device_address][led_num] = color
  2918. _refresh_current_screen_panel()
  2919. return jsonify({'success': True, 'results': results})
  2920. except Exception as e:
  2921. logger.error(f'批量设置LED失败: {str(e)}')
  2922. return jsonify({'success': False, 'message': str(e)}), 500
  2923. # 在 set_rgb_led 中更新 LED 状态追踪
  2924. # 不再需要静态文件目录,前端由nginx提供服务
  2925. # ========== DTU MQTT协议配置API ==========
  2926. @app.route('/api/dtu/config', methods=['GET'])
  2927. def get_dtu_config():
  2928. """获取DTU配置"""
  2929. return jsonify({
  2930. 'success': True,
  2931. 'data': dtu_config
  2932. })
  2933. @app.route('/api/dtu/config', methods=['POST'])
  2934. def update_dtu_config():
  2935. """更新DTU配置"""
  2936. try:
  2937. data = request.json
  2938. old_config = dtu_config.copy()
  2939. # 更新配置项
  2940. if 'topic_prefix' in data:
  2941. dtu_config['topic_prefix'] = data['topic_prefix']
  2942. if 'customer_id' in data:
  2943. dtu_config['customer_id'] = data['customer_id']
  2944. if 'dtu_id' in data:
  2945. dtu_config['dtu_id'] = data['dtu_id']
  2946. if 'firmware_version' in data:
  2947. dtu_config['firmware_version'] = data['firmware_version']
  2948. if 'hardware_version' in data:
  2949. dtu_config['hardware_version'] = data['hardware_version']
  2950. if 'heartbeat_interval' in data:
  2951. dtu_config['heartbeat_interval'] = data['heartbeat_interval']
  2952. if 'enabled' in data:
  2953. dtu_config['enabled'] = data['enabled']
  2954. # 如果MQTT已连接且主题配置发生变化,重新订阅
  2955. if mqtt_status and dtu_config.get('enabled'):
  2956. old_control_topic = build_dtu_topic(
  2957. old_config.get('customer_id', DEFAULT_CUSTOMER_ID),
  2958. 'dtu',
  2959. old_config.get('dtu_id', DEFAULT_DTU_ID),
  2960. 'control'
  2961. )
  2962. new_control_topic = build_dtu_topic(
  2963. dtu_config['customer_id'],
  2964. 'dtu',
  2965. dtu_config['dtu_id'],
  2966. 'control'
  2967. )
  2968. if old_control_topic != new_control_topic:
  2969. # 取消旧订阅,订阅新主题
  2970. mqtt_client.unsubscribe(old_control_topic)
  2971. mqtt_client.subscribe(new_control_topic)
  2972. logger.info(f"控制主题已更新: {old_control_topic} -> {new_control_topic}")
  2973. # 重新发送注册消息
  2974. dtu_register()
  2975. return jsonify({
  2976. 'success': True,
  2977. 'message': 'DTU配置已更新',
  2978. 'data': dtu_config
  2979. })
  2980. except Exception as e:
  2981. logger.error(f"更新DTU配置失败: {str(e)}")
  2982. return jsonify({'success': False, 'message': str(e)}), 500
  2983. @app.route('/api/dtu/register', methods=['POST'])
  2984. def manual_dtu_register():
  2985. """手动触发DTU注册"""
  2986. try:
  2987. if not mqtt_status:
  2988. return jsonify({'success': False, 'message': 'MQTT未连接'}), 400
  2989. success = dtu_register()
  2990. if success:
  2991. return jsonify({'success': True, 'message': '注册消息已发送'})
  2992. else:
  2993. return jsonify({'success': False, 'message': '注册消息发送失败'}), 500
  2994. except Exception as e:
  2995. logger.error(f"手动触发DTU注册失败: {str(e)}")
  2996. return jsonify({'success': False, 'message': str(e)}), 500
  2997. def _get_cpu_usage():
  2998. try:
  2999. import psutil
  3000. return psutil.cpu_percent(interval=None)
  3001. except Exception:
  3002. return None
  3003. def _get_memory_usage():
  3004. try:
  3005. import psutil
  3006. return psutil.virtual_memory().percent
  3007. except Exception:
  3008. return None
  3009. @app.route('/api/dtu/status', methods=['GET'])
  3010. def get_dtu_status():
  3011. """获取DTU状态"""
  3012. try:
  3013. # 获取串口状态
  3014. serial_st = serial_client.get_status()
  3015. # 获取面板状态
  3016. devices = address_config.get_stored_devices()
  3017. # 主板温度: 优先外部上报,否则本地读取
  3018. dtu_temperature = env_sensor_data.get('dtu_temperature')
  3019. if dtu_temperature is None:
  3020. try:
  3021. import psutil
  3022. temps = psutil.sensors_temperatures(fahrenheit=False) or {}
  3023. for chip_name, entries in temps.items():
  3024. for entry in entries:
  3025. if entry.current and entry.current > 0:
  3026. dtu_temperature = round(entry.current, 1)
  3027. break
  3028. if dtu_temperature is not None:
  3029. break
  3030. except Exception:
  3031. pass
  3032. if dtu_temperature is None:
  3033. import glob as _glob
  3034. for tz in sorted(_glob.glob('/sys/class/thermal/thermal_zone*/temp')):
  3035. try:
  3036. with open(tz) as f:
  3037. v = int(f.read().strip())
  3038. if v > 0:
  3039. dtu_temperature = round(v / 1000.0, 1)
  3040. break
  3041. except Exception:
  3042. continue
  3043. status = {
  3044. 'dtu_id': dtu_config.get('dtu_id'),
  3045. 'mqtt_connected': mqtt_status,
  3046. 'serial_connected': isinstance(serial_st, dict) and serial_st.get('connected', False),
  3047. 'dtu_enabled': dtu_config.get('enabled', True),
  3048. 'topic_prefix': dtu_config.get('topic_prefix'),
  3049. 'customer_id': dtu_config.get('customer_id'),
  3050. 'panel_count': len(devices),
  3051. 'cpu_usage': _get_cpu_usage(),
  3052. 'memory_usage': _get_memory_usage(),
  3053. 'temperature': dtu_temperature,
  3054. 'dtu_temperature': dtu_temperature,
  3055. 'firmware_version': dtu_config.get('firmware_version', 'v1.0.0'),
  3056. 'topics': {
  3057. 'register': build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'register'),
  3058. 'status': build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'status'),
  3059. 'control': build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'control'),
  3060. 'response': build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'response'),
  3061. 'event': build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'event'),
  3062. 'alarm': build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'alarm')
  3063. }
  3064. }
  3065. return jsonify({'success': True, 'data': status})
  3066. except Exception as e:
  3067. logger.error(f"获取DTU状态失败: {str(e)}")
  3068. return jsonify({'success': False, 'message': str(e)}), 500
  3069. @app.route('/api/dtu/control', methods=['POST'])
  3070. def dtu_control():
  3071. """发送DTU控制命令(HTTP 入口,复用 dtu_handle_control 逻辑)"""
  3072. try:
  3073. data = request.json or {}
  3074. # 兼容两种入参格式:
  3075. # 1) {"command": "...", "target": "...", "params": {...}} 简洁格式
  3076. # 2) {"payload": {"command": "...", "target": "...", "params": {...}}} MQTT envelope 格式
  3077. inner = data.get('payload') if isinstance(data.get('payload'), dict) else data
  3078. command = inner.get('command')
  3079. # REBOOT 走快速通道立即执行
  3080. if command == 'REBOOT':
  3081. import subprocess
  3082. logger.warning("执行系统重启命令")
  3083. threading.Thread(target=lambda: (
  3084. time.sleep(1),
  3085. subprocess.run(['reboot'], capture_output=True)
  3086. ), daemon=True).start()
  3087. return jsonify({'success': True, 'message': '系统正在重启...'})
  3088. # 其他命令委托给 MQTT 处理器(构造 MQTT envelope 后调用)
  3089. mqtt_envelope = {
  3090. 'msg_id': data.get('msg_id', f"http_{int(time.time() * 1000)}_{uuid.uuid4().hex[:6]}"),
  3091. 'timestamp': data.get('timestamp', int(time.time() * 1000)),
  3092. 'dtu_id': data.get('dtu_id', dtu_config.get('dtu_id')),
  3093. 'type': 'CONTROL',
  3094. 'payload': {
  3095. 'command': command,
  3096. 'target': inner.get('target'),
  3097. 'params': inner.get('params', {})
  3098. }
  3099. }
  3100. # 调用 MQTT 处理器(其内部会发送响应到 dtu/.../response 主题)
  3101. dtu_handle_control('http/control', mqtt_envelope)
  3102. # 如果命令是 QUERY_JUMPER_STATUS / QUERY_ENV_SENSOR / QUERY_DTU_STATUS,
  3103. # 实际响应已发布到对应主题,HTTP 端点仅返回成功标记
  3104. if command in ('QUERY_JUMPER_STATUS', 'QUERY_ENV_SENSOR', 'QUERY_DTU_STATUS'):
  3105. return jsonify({
  3106. 'success': True,
  3107. 'message': f'{command} 已发布到 MQTT 主题'
  3108. })
  3109. # 其他命令: 从 MQTT 主题同步拉取最新响应(简化处理:直接返回已发布标记)
  3110. return jsonify({
  3111. 'success': True,
  3112. 'message': f'{command} 命令已下发,等待 MQTT 响应'
  3113. })
  3114. except Exception as e:
  3115. logger.error(f"DTU控制命令失败: {str(e)}")
  3116. return jsonify({'success': False, 'message': str(e)}), 500
  3117. # OTA状态存储
  3118. ota_status = {
  3119. 'status': 'IDLE', # IDLE, DOWNLOADING, VERIFYING, FLASHING, SUCCESS, FAILED
  3120. 'progress': 0,
  3121. 'firmware_version': None,
  3122. 'target_version': None,
  3123. 'error_code': None,
  3124. 'error_message': None,
  3125. 'last_update': None
  3126. }
  3127. @app.route('/api/dtu/ota_detect', methods=['POST'])
  3128. def ota_detect():
  3129. """检测固件包信息(自动下载并解析 manifest)"""
  3130. try:
  3131. url = request.json.get('url', '')
  3132. if not url:
  3133. return jsonify({'success': False, 'message': '请提供固件 URL'}), 400
  3134. import urllib.request, tempfile, tarfile, json, hashlib
  3135. tmp = tempfile.mktemp(suffix='.tar.gz')
  3136. try:
  3137. urllib.request.urlretrieve(url, tmp)
  3138. except Exception as e:
  3139. return jsonify({'success': False, 'message': f'下载失败: {str(e)}'}), 400
  3140. file_size = os.path.getsize(tmp)
  3141. h = hashlib.md5()
  3142. with open(tmp, 'rb') as f:
  3143. for chunk in iter(lambda: f.read(65536), b''):
  3144. h.update(chunk)
  3145. md5sum = h.hexdigest()
  3146. version = ''
  3147. try:
  3148. with tarfile.open(tmp, 'r:gz') as tar:
  3149. m = tar.extractfile('firmware/firmware.json')
  3150. if m:
  3151. manifest = json.loads(m.read())
  3152. version = manifest.get('version', '')
  3153. except Exception as e:
  3154. logger.warning(f"解析 firmware.json 失败: {e}")
  3155. os.remove(tmp)
  3156. return jsonify({
  3157. 'success': True,
  3158. 'data': {
  3159. 'file_size': file_size,
  3160. 'checksum': md5sum,
  3161. 'checksum_type': 'MD5',
  3162. 'firmware_version': version
  3163. }
  3164. })
  3165. except Exception as e:
  3166. logger.error(f"检测固件失败: {str(e)}")
  3167. return jsonify({'success': False, 'message': str(e)}), 500
  3168. @app.route('/api/dtu/ota_status', methods=['GET'])
  3169. def get_ota_status():
  3170. """获取OTA升级状态"""
  3171. try:
  3172. return jsonify({
  3173. 'success': True,
  3174. 'data': {
  3175. 'current_firmware': dtu_config.get('firmware_version', 'v1.0.0'),
  3176. 'ota_status': ota_status.get('status', 'IDLE'),
  3177. 'ota_progress': ota_status.get('progress', 0),
  3178. 'target_version': ota_status.get('target_version'),
  3179. 'error_code': ota_status.get('error_code'),
  3180. 'error_message': ota_status.get('error_message'),
  3181. 'last_update': ota_status.get('last_update')
  3182. }
  3183. })
  3184. except Exception as e:
  3185. logger.error(f"获取OTA状态失败: {str(e)}")
  3186. return jsonify({'success': False, 'message': str(e)}), 500
  3187. def handle_ota_status(dtu_id, payload):
  3188. """处理MQTT上报的OTA状态"""
  3189. ota_status['status'] = payload.get('ota_status', 'IDLE')
  3190. ota_status['progress'] = payload.get('ota_progress', 0)
  3191. ota_status['firmware_version'] = payload.get('firmware_version')
  3192. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3193. error_code = payload.get('error_code')
  3194. if error_code and error_code != 0:
  3195. ota_status['error_code'] = error_code
  3196. ota_status['error_message'] = payload.get('error_message', get_ota_error_message(error_code))
  3197. ota_status['status'] = 'FAILED'
  3198. elif ota_status['status'] == 'SUCCESS':
  3199. ota_status['error_code'] = None
  3200. ota_status['error_message'] = None
  3201. if ota_status.get('firmware_version'):
  3202. dtu_config['firmware_version'] = ota_status['firmware_version']
  3203. save_dtu_config()
  3204. logger.info(f"MQTT OTA状态更新: {ota_status['status']}, 进度: {ota_status['progress']}%")
  3205. def get_ota_error_message(error_code):
  3206. error_messages = {1021: '已是目标版本', 1022: '校验失败', 1023: '下载失败', 1024: '写入失败', 1025: '存储空间不足'}
  3207. return error_messages.get(error_code, f'未知错误码: {error_code}')
  3208. def _publish_ota_progress():
  3209. """通过MQTT发布OTA进度"""
  3210. try:
  3211. if not _mqtt_connected():
  3212. return
  3213. topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'status')
  3214. payload = {
  3215. 'msg_id': f"ota_status_{int(time.time() * 1000)}",
  3216. 'timestamp': int(time.time() * 1000),
  3217. 'dtu_id': dtu_config['dtu_id'],
  3218. 'type': 'STATUS',
  3219. 'payload': {
  3220. 'ota_status': ota_status.get('status', 'IDLE'),
  3221. 'ota_progress': ota_status.get('progress', 0),
  3222. 'firmware_version': ota_status.get('target_version', ''),
  3223. 'error_code': ota_status.get('error_code', 0),
  3224. 'error_message': ota_status.get('error_message')
  3225. }
  3226. }
  3227. mqtt_client.publish(topic, json.dumps(payload), qos=1)
  3228. except Exception:
  3229. pass
  3230. def _send_ota_error_response(error_code, original_msg_id=''):
  3231. """通过MQTT发送OTA错误响应(1021-1025)"""
  3232. try:
  3233. if not _mqtt_connected():
  3234. return
  3235. topic = build_dtu_topic(dtu_config['customer_id'], 'dtu', dtu_config['dtu_id'], 'response')
  3236. payload = {
  3237. 'msg_id': f"rsp_ota_{int(time.time() * 1000)}_{uuid.uuid4().hex[:6]}",
  3238. 'timestamp': int(time.time() * 1000),
  3239. 'dtu_id': dtu_config['dtu_id'],
  3240. 'type': 'RESPONSE',
  3241. 'payload': {
  3242. 'original_msg_id': original_msg_id,
  3243. 'command': 'OTA_UPGRADE',
  3244. 'success': False,
  3245. 'result': None,
  3246. 'error_code': error_code,
  3247. 'error_message': get_ota_error_message(error_code)
  3248. }
  3249. }
  3250. mqtt_client.publish(topic, json.dumps(payload), qos=1)
  3251. except Exception:
  3252. pass
  3253. def _run_ota(params):
  3254. """执行OTA升级(后台线程,供HTTP和MQTT共用)"""
  3255. import subprocess, os, hashlib, shutil, tarfile, tempfile, urllib.request
  3256. url = params['firmware_url']
  3257. version = params['firmware_version']
  3258. file_size = params['file_size']
  3259. checksum = params['checksum']
  3260. checksum_type = params.get('checksum_type', 'MD5').upper()
  3261. force = params.get('force_upgrade', False)
  3262. ota_status['status'] = 'DOWNLOADING'
  3263. ota_status['progress'] = 0
  3264. ota_status['target_version'] = version
  3265. ota_status['error_code'] = None
  3266. ota_status['error_message'] = None
  3267. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3268. _publish_ota_progress()
  3269. try:
  3270. tmp_dir = tempfile.mkdtemp(prefix='ota_')
  3271. fw_path = os.path.join(tmp_dir, 'firmware.tar.gz')
  3272. ota_status['progress'] = 5
  3273. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3274. logger.info(f"OTA: 开始下载固件 {url}")
  3275. req = urllib.request.Request(url, headers={'User-Agent': 'OTA-Updater'})
  3276. # 进度上报节流: 每 10% 或每 5 秒
  3277. last_published_pct = 0
  3278. last_publish_time = time.time()
  3279. with urllib.request.urlopen(req, timeout=120) as resp:
  3280. with open(fw_path, 'wb') as f:
  3281. total = int(resp.headers.get('Content-Length', 0))
  3282. downloaded = 0
  3283. while True:
  3284. chunk = resp.read(65536)
  3285. if not chunk: break
  3286. f.write(chunk)
  3287. downloaded += len(chunk)
  3288. if total:
  3289. pct = 5 + int(downloaded / total * 30)
  3290. ota_status['progress'] = min(pct, 35)
  3291. now = time.time()
  3292. if pct - last_published_pct >= 10 or (now - last_publish_time) >= 5:
  3293. last_published_pct = pct
  3294. last_publish_time = now
  3295. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3296. _publish_ota_progress()
  3297. dl_size = os.path.getsize(fw_path)
  3298. ota_status['progress'] = 40
  3299. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3300. _publish_ota_progress()
  3301. if abs(dl_size - file_size) > 1024:
  3302. raise Exception(f"文件大小不匹配: 预期{file_size}, 实际{dl_size}")
  3303. ota_status['status'] = 'VERIFYING'
  3304. ota_status['progress'] = 50
  3305. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3306. _publish_ota_progress()
  3307. h = hashlib.new(checksum_type)
  3308. with open(fw_path, 'rb') as f:
  3309. for chunk in iter(lambda: f.read(65536), b''): h.update(chunk)
  3310. actual_checksum = h.hexdigest().lower()
  3311. if actual_checksum != checksum.lower():
  3312. raise Exception(f"校验和不匹配: 预期{checksum}, 实际{actual_checksum}")
  3313. ota_status['progress'] = 60
  3314. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3315. _publish_ota_progress()
  3316. extract_dir = os.path.join(tmp_dir, 'firmware')
  3317. os.makedirs(extract_dir, exist_ok=True)
  3318. with tarfile.open(fw_path, 'r:gz') as tar: tar.extractall(extract_dir)
  3319. manifest_path = os.path.join(extract_dir, 'firmware', 'firmware.json')
  3320. if not os.path.exists(manifest_path):
  3321. raise Exception("固件包缺少 firmware.json")
  3322. with open(manifest_path, 'r') as f: manifest = json.load(f)
  3323. fw_version = manifest.get('version', version)
  3324. if not force:
  3325. current_ver = dtu_config.get('firmware_version', 'v0.0.0')
  3326. if fw_version == current_ver:
  3327. raise Exception(f'已是目标版本 {current_ver}')
  3328. ota_status['status'] = 'FLASHING'
  3329. ota_status['progress'] = 70
  3330. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3331. _publish_ota_progress()
  3332. fw_root = os.path.join(extract_dir, 'firmware')
  3333. project_dir = os.path.dirname(os.path.dirname(os.path.abspath(__file__)))
  3334. excludes = {'__pycache__', '.git', 'log', 'venv'}
  3335. for root, dirs, files in os.walk(fw_root):
  3336. rel = os.path.relpath(root, fw_root)
  3337. if rel == '.': rel = ''
  3338. parts = rel.split(os.sep) if rel else []
  3339. if parts and parts[0] in excludes: continue
  3340. for fname in files:
  3341. if fname == 'firmware.json': continue
  3342. src = os.path.join(root, fname)
  3343. dst = os.path.join(project_dir, rel, fname)
  3344. os.makedirs(os.path.dirname(dst), exist_ok=True)
  3345. shutil.copy2(src, dst)
  3346. ota_status['progress'] = 90
  3347. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3348. dtu_config['firmware_version'] = fw_version
  3349. save_dtu_config()
  3350. ota_status['status'] = 'SUCCESS'
  3351. ota_status['progress'] = 100
  3352. ota_status['firmware_version'] = fw_version
  3353. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3354. _publish_ota_progress()
  3355. shutil.rmtree(tmp_dir, ignore_errors=True)
  3356. for i in range(10, 0, -1):
  3357. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3358. time.sleep(1)
  3359. logger.info("OTA: 重启服务...")
  3360. subprocess.Popen(
  3361. [subprocess.sys.executable, '-m', 'flask', 'run', '--host=0.0.0.0', '--port=5001'],
  3362. cwd=os.path.dirname(os.path.abspath(__file__)),
  3363. stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL
  3364. )
  3365. os._exit(0)
  3366. except Exception as e:
  3367. ota_status['status'] = 'FAILED'
  3368. ota_status['error_message'] = str(e)
  3369. ota_status['last_update'] = time.strftime('%Y-%m-%d %H:%M:%S')
  3370. # 映射错误到标准错误码 (1021-1025)
  3371. msg = str(e)
  3372. if '校验和' in msg or 'firmware.json' in msg:
  3373. ota_status['error_code'] = 1022
  3374. elif '已是目标版本' in msg:
  3375. ota_status['error_code'] = 1021
  3376. elif '下载' in msg or 'urlopen' in msg or 'Connection' in msg or 'timeout' in msg:
  3377. ota_status['error_code'] = 1023
  3378. elif '磁盘' in msg or '空间' in msg or 'No space' in msg:
  3379. ota_status['error_code'] = 1025
  3380. elif '写入' in msg or 'flash' in msg.lower() or 'shutil' in msg:
  3381. ota_status['error_code'] = 1024
  3382. else:
  3383. ota_status['error_code'] = 9999
  3384. _publish_ota_progress()
  3385. # 通过MQTT发送错误响应(同时适配HTTP和MQTT触发)
  3386. _send_ota_error_response(ota_status['error_code'], params.get('_incoming_msg_id', ''))
  3387. logger.error(f"OTA: 升级失败 - {str(e)}")
  3388. if 'tmp_dir' in dir() and tmp_dir and os.path.exists(tmp_dir):
  3389. shutil.rmtree(tmp_dir, ignore_errors=True)
  3390. @app.route('/api/dtu/ota_upgrade', methods=['POST'])
  3391. def trigger_ota_upgrade():
  3392. """触发OTA升级"""
  3393. try:
  3394. data = request.json
  3395. if not data:
  3396. return jsonify({'success': False, 'message': '请求体不能为空'}), 400
  3397. required_fields = ['firmware_url', 'firmware_version', 'file_size', 'checksum', 'checksum_type']
  3398. missing = [f for f in required_fields if not data.get(f)]
  3399. if missing:
  3400. return jsonify({'success': False, 'message': f'缺少必填字段: {", ".join(missing)}'}), 400
  3401. # 已是目标版本且未强制: 1021 (同时通过 MQTT 上报响应)
  3402. force_upgrade = data.get('force_upgrade', False)
  3403. current_version = dtu_config.get('firmware_version', 'v1.0.0')
  3404. if data['firmware_version'] == current_version and not force_upgrade:
  3405. # 通过 MQTT 上报 1021 响应 (与其他错误码一致)
  3406. try:
  3407. _send_ota_error_response(1021, data.get('msg_id', ''))
  3408. except Exception:
  3409. pass
  3410. return jsonify({
  3411. 'success': False,
  3412. 'error_code': 1021,
  3413. 'message': f'已是目标版本: {current_version}'
  3414. }), 400
  3415. # 注入 _incoming_msg_id 使 MQTT 错误响应可回填
  3416. ota_params = {**data, '_incoming_msg_id': data.get('msg_id', '')}
  3417. t = threading.Thread(target=_run_ota, args=(ota_params,), daemon=True)
  3418. t.start()
  3419. return jsonify({
  3420. 'success': True,
  3421. 'message': 'OTA升级已启动',
  3422. 'data': {
  3423. 'target_version': data['firmware_version'],
  3424. 'ota_status': 'DOWNLOADING'
  3425. }
  3426. })
  3427. except Exception as e:
  3428. logger.error(f"触发OTA升级失败: {str(e)}")
  3429. return jsonify({'success': False, 'message': str(e)}), 500
  3430. # ==================== 环境传感器 API ====================
  3431. # 环境传感器数据存储
  3432. env_sensor_data = {
  3433. 'temperature': None, # 环境温度 (℃)
  3434. 'humidity': None, # 环境湿度 (%)
  3435. 'dtu_temperature': None, # DTU主板温度 (℃)
  3436. 'update_time': None, # 数据更新时间
  3437. 'sensor_update_time': None, # 传感器更新时间
  3438. 'connected': False # 传感器连接状态
  3439. }
  3440. # 环境传感器告警阈值
  3441. env_sensor_threshold = {
  3442. 'temp_high': 45.0, # 环境温度上限 (℃)
  3443. 'temp_low': -10.0, # 环境温度下限 (℃)
  3444. 'humidity_high': 80.0, # 环境湿度上限 (%)
  3445. 'humidity_low': 20.0, # 环境湿度下限 (%)
  3446. 'dtu_temp_high': 70.0 # DTU主板温度上限 (℃)
  3447. }
  3448. # 环境传感器历史数据 (保留最近1000条)
  3449. env_sensor_history = []
  3450. @app.route('/api/sensor/env', methods=['GET'])
  3451. def get_env_sensor_data():
  3452. """获取环境传感器当前数据"""
  3453. data = dict(env_sensor_data)
  3454. # DTU 主板温度回退: 若外部未上报,从 sysfs 本地读取
  3455. if data.get('dtu_temperature') is None:
  3456. try:
  3457. import psutil
  3458. temps = psutil.sensors_temperatures(fahrenheit=False) or {}
  3459. for chip_name, entries in temps.items():
  3460. for entry in entries:
  3461. if entry.current and entry.current > 0:
  3462. data['dtu_temperature'] = round(entry.current, 1)
  3463. break
  3464. if data['dtu_temperature'] is not None:
  3465. break
  3466. except Exception:
  3467. pass
  3468. if data.get('dtu_temperature') is None:
  3469. import glob as _glob
  3470. for tz in sorted(_glob.glob('/sys/class/thermal/thermal_zone*/temp')):
  3471. try:
  3472. with open(tz) as f:
  3473. v = int(f.read().strip())
  3474. if v > 0:
  3475. data['dtu_temperature'] = round(v / 1000.0, 1)
  3476. data['update_time'] = data.get('update_time') or __import__('datetime').datetime.now().strftime('%Y-%m-%d %H:%M:%S')
  3477. break
  3478. except Exception:
  3479. continue
  3480. # 附加 CPU/内存使用率(始终本地读取)
  3481. data['cpu_usage'] = _get_cpu_usage()
  3482. data['memory_usage'] = _get_memory_usage()
  3483. return jsonify({
  3484. 'success': True,
  3485. 'data': data
  3486. })
  3487. @app.route('/api/sensor/threshold', methods=['GET', 'POST'])
  3488. def handle_env_sensor_threshold():
  3489. """获取或设置环境传感器告警阈值"""
  3490. if request.method == 'GET':
  3491. return jsonify({
  3492. 'success': True,
  3493. 'data': env_sensor_threshold
  3494. })
  3495. else:
  3496. try:
  3497. data = request.get_json()
  3498. for key in env_sensor_threshold.keys():
  3499. if key in data:
  3500. env_sensor_threshold[key] = float(data[key])
  3501. logger.info(f"更新环境传感器告警阈值: {env_sensor_threshold}")
  3502. return jsonify({
  3503. 'success': True,
  3504. 'message': '阈值设置成功',
  3505. 'data': env_sensor_threshold
  3506. })
  3507. except Exception as e:
  3508. logger.error(f"设置告警阈值失败: {str(e)}")
  3509. return jsonify({'success': False, 'message': str(e)}), 400
  3510. @app.route('/api/sensor/history', methods=['GET'])
  3511. def get_env_sensor_history():
  3512. """获取环境传感器历史数据"""
  3513. try:
  3514. import datetime
  3515. # 获取查询参数
  3516. range_param = request.args.get('range', '24h')
  3517. start_time = request.args.get('start_time')
  3518. end_time = request.args.get('end_time')
  3519. limit = request.args.get('limit', 100, type=int)
  3520. filtered_history = env_sensor_history
  3521. # 解析range参数
  3522. if not start_time and not end_time:
  3523. now = datetime.datetime.now()
  3524. if range_param == '1h':
  3525. start_time = (now - datetime.timedelta(hours=1)).strftime('%Y-%m-%d %H:%M:%S')
  3526. elif range_param == '6h':
  3527. start_time = (now - datetime.timedelta(hours=6)).strftime('%Y-%m-%d %H:%M:%S')
  3528. elif range_param == '24h':
  3529. start_time = (now - datetime.timedelta(hours=24)).strftime('%Y-%m-%d %H:%M:%S')
  3530. elif range_param == '7d':
  3531. start_time = (now - datetime.timedelta(days=7)).strftime('%Y-%m-%d %H:%M:%S')
  3532. elif range_param == '30d':
  3533. start_time = (now - datetime.timedelta(days=30)).strftime('%Y-%m-%d %H:%M:%S')
  3534. # 按时间过滤
  3535. if start_time:
  3536. filtered_history = [h for h in filtered_history if h.get('update_time') >= start_time]
  3537. if end_time:
  3538. filtered_history = [h for h in filtered_history if h.get('update_time') <= end_time]
  3539. # 按时间排序 (新到旧)
  3540. filtered_history = sorted(filtered_history, key=lambda x: x.get('update_time', ''), reverse=True)
  3541. # 限制返回数量
  3542. filtered_history = filtered_history[:limit]
  3543. return jsonify({
  3544. 'success': True,
  3545. 'data': filtered_history,
  3546. 'total': len(filtered_history)
  3547. })
  3548. except Exception as e:
  3549. logger.error(f"获取历史数据失败: {str(e)}")
  3550. return jsonify({'success': False, 'message': str(e)}), 500
  3551. def update_env_sensor_data_full(temperature, humidity, dtu_temperature, sensor_update_time):
  3552. """更新环境传感器数据 (由MQTT消息触发) - 完整版,含历史和告警"""
  3553. import datetime
  3554. now = datetime.datetime.now().strftime('%Y-%m-%d %H:%M:%S')
  3555. env_sensor_data['temperature'] = temperature
  3556. env_sensor_data['humidity'] = humidity
  3557. env_sensor_data['dtu_temperature'] = dtu_temperature
  3558. env_sensor_data['sensor_update_time'] = sensor_update_time
  3559. env_sensor_data['update_time'] = now
  3560. env_sensor_data['connected'] = True
  3561. # 同步到 MQTT 上行所用的 _env_sensor_data
  3562. _env_sensor_data['temperature'] = temperature
  3563. _env_sensor_data['humidity'] = humidity
  3564. _env_sensor_data['sensor_update_time'] = sensor_update_time
  3565. # 添加到历史记录
  3566. history_record = {
  3567. 'temperature': temperature,
  3568. 'humidity': humidity,
  3569. 'dtu_temperature': dtu_temperature,
  3570. 'sensor_update_time': sensor_update_time,
  3571. 'update_time': now
  3572. }
  3573. env_sensor_history.append(history_record)
  3574. # 保留最近1000条
  3575. if len(env_sensor_history) > 1000:
  3576. env_sensor_history[:] = env_sensor_history[-1000:]
  3577. # 检查告警
  3578. check_env_sensor_alarms(temperature, humidity, dtu_temperature)
  3579. logger.info(f"环境传感器数据更新: 温度={temperature}℃, 湿度={humidity}%, DTU温度={dtu_temperature}℃")
  3580. def dht11_data_callback(temperature, humidity):
  3581. """DHT11 本地 GPIO 传感器数据回调。
  3582. 将读取到的温湿度更新到环境传感器数据区,并通过 MQTT 上报。
  3583. 保留已有的 dtu_temperature(主板温度),仅更新环境温湿度字段。
  3584. """
  3585. try:
  3586. sensor_update_time = int(time.time() * 1000)
  3587. dtu_temperature = env_sensor_data.get('dtu_temperature')
  3588. update_env_sensor_data_full(temperature, humidity, dtu_temperature, sensor_update_time)
  3589. # 立即通过 MQTT 上报环境传感器数据
  3590. try:
  3591. dtu_publish_env_sensor()
  3592. except Exception as pub_err:
  3593. logger.warning(f"DHT11 数据 MQTT 上报失败: {pub_err}")
  3594. logger.info(f"DHT11 本地传感器数据已处理: 温度={temperature}°C, 湿度={humidity}%")
  3595. except Exception as e:
  3596. logger.error(f"处理 DHT11 本地传感器数据失败: {e}")
  3597. def check_env_sensor_alarms(temperature, humidity, dtu_temperature):
  3598. """检查环境传感器告警"""
  3599. alarms = []
  3600. if temperature is not None:
  3601. if temperature > env_sensor_threshold['temp_high']:
  3602. alarms.append({
  3603. 'type': 'temperature_high',
  3604. 'message': f'环境温度过高: {temperature}℃ (阈值: {env_sensor_threshold["temp_high"]}℃)',
  3605. 'level': 'warning'
  3606. })
  3607. elif temperature < env_sensor_threshold['temp_low']:
  3608. alarms.append({
  3609. 'type': 'temperature_low',
  3610. 'message': f'环境温度过低: {temperature}℃ (阈值: {env_sensor_threshold["temp_low"]}℃)',
  3611. 'level': 'warning'
  3612. })
  3613. if humidity is not None:
  3614. if humidity > env_sensor_threshold['humidity_high']:
  3615. alarms.append({
  3616. 'type': 'humidity_high',
  3617. 'message': f'环境湿度过高: {humidity}% (阈值: {env_sensor_threshold["humidity_high"]}%)',
  3618. 'level': 'warning'
  3619. })
  3620. elif humidity < env_sensor_threshold['humidity_low']:
  3621. alarms.append({
  3622. 'type': 'humidity_low',
  3623. 'message': f'环境湿度过低: {humidity}% (阈值: {env_sensor_threshold["humidity_low"]}%)',
  3624. 'level': 'warning'
  3625. })
  3626. if dtu_temperature is not None:
  3627. if dtu_temperature > env_sensor_threshold['dtu_temp_high']:
  3628. alarms.append({
  3629. 'type': 'dtu_temp_high',
  3630. 'message': f'DTU主板温度过高: {dtu_temperature}℃ (阈值: {env_sensor_threshold["dtu_temp_high"]}℃)',
  3631. 'level': 'critical'
  3632. })
  3633. # 发送告警通知
  3634. for alarm in alarms:
  3635. logger.warning(f"环境传感器告警: {alarm['message']}")
  3636. # 可以通过WebSocket发送告警
  3637. socketio.emit('env_sensor_alarm', alarm)
  3638. if __name__ == '__main__':
  3639. try:
  3640. # 启动前的初始化工作
  3641. logger.info('启动串口-MQTT网关服务...')
  3642. logger.info(f"配置信息: 主机={FLASK_HOST}, 端口={FLASK_PORT}, 调试模式={FLASK_DEBUG}")
  3643. # 加载DTU配置
  3644. load_dtu_config()
  3645. # 加载设备配置(地址表,用于给已发现的设备分配原地址)
  3646. loaded = load_device_config()
  3647. logger.info(f"已加载 {len(loaded)} 个设备配置")
  3648. # 自动连接上次使用的串口(RS485),必须先连接才能做地址配置/发现
  3649. logger.info("尝试自动连接串口...")
  3650. auto_connect_serial()
  3651. # 串口连接成功后会通过 status_callback 触发 run_discovery_sync(),
  3652. # 先查询地址表中已有地址是否在线,再广播发现新设备并分配地址。
  3653. # 这里只做兜底:如果串口未连接则清空轮询列表,避免轮询离线设备。
  3654. try:
  3655. _st = serial_client.get_status()
  3656. if not (isinstance(_st, dict) and _st.get('connected', False)) or not dtu_config.get('enabled'):
  3657. panel_config.clear()
  3658. logger.info("串口未连接或 DTU 未启用,已清空轮询列表")
  3659. except Exception as e:
  3660. logger.error(f"启动前检查串口状态失败: {e}")
  3661. logger.info(f"当前轮询面板数: {len(panel_config)}")
  3662. # 启动自动发现循环
  3663. def auto_discover_loop():
  3664. while True:
  3665. time.sleep(30)
  3666. try:
  3667. _st = serial_client.get_status()
  3668. if not (isinstance(_st, dict) and _st.get('connected', False)):
  3669. continue
  3670. if not dtu_config.get('enabled'):
  3671. continue
  3672. # 执行完整发现同步:先查询已有地址,再广播发现新设备
  3673. run_discovery_sync(min_interval=10)
  3674. except Exception as e:
  3675. logger.error(f"自动发现异常: {str(e)}")
  3676. import threading
  3677. t = threading.Thread(target=auto_discover_loop, daemon=True)
  3678. t.start()
  3679. logger.info("启动自动发现线程 (间隔30秒)")
  3680. # 启动DTU心跳定时器
  3681. if dtu_config.get('enabled'):
  3682. start_dtu_heartbeat()
  3683. logger.info("启动DTU心跳定时器")
  3684. # 启动端口轮询循环
  3685. def port_poll_loop():
  3686. while True:
  3687. interval = dtu_config.get('poll_interval_ms', 5000) / 1000.0
  3688. time.sleep(max(1, interval))
  3689. try:
  3690. # 地址配置期间暂停轮询,避免总线上同时出现查询帧和配置帧
  3691. if not address_config.config_lock.acquire(blocking=False):
  3692. logger.info("地址配置进行中,本轮轮询跳过")
  3693. continue
  3694. try:
  3695. _st = serial_client.get_status()
  3696. if not (isinstance(_st, dict) and _st.get('connected', False)):
  3697. continue
  3698. if not dtu_config.get('enabled'):
  3699. continue
  3700. if not panel_config:
  3701. continue
  3702. online = 0
  3703. offline = 0
  3704. for panel_id, cfg in panel_config.items():
  3705. addr = cfg.get('address', 1)
  3706. # 已标记离线的面板不再主动发查询,
  3707. # 交由广播发现(自动发现循环)定期尝试重新上线
  3708. if cfg.get('status') == 'offline':
  3709. offline += 1
  3710. continue
  3711. # V4: 一次批量读 24 路卡号(替代 V2 的探测 + 24 次逐天线读)
  3712. try:
  3713. result = modbus_client.read_all_antenna_cards(addr, timeout=1.0)
  3714. except Exception:
  3715. result = {'error': 'exception'}
  3716. if 'error' in result:
  3717. offline += 1
  3718. register_panel_poll_failure(panel_id, cfg, addr)
  3719. continue
  3720. # 批量读成功 = 面板在线
  3721. panel_ports = []
  3722. for card in result.get('cards', []):
  3723. port_id = card['antenna']
  3724. uid = card['card_str'].upper() if card.get('present') else ''
  3725. if panel_id not in port_state:
  3726. port_state[panel_id] = {}
  3727. if port_id not in port_state[panel_id]:
  3728. # 重建端口状态时,从持久化的期望映射回填 expected_uid,
  3729. # 保证离线恢复/重启后仍能正确判定非法连接
  3730. exp_uid = dtu_config.get('port_mappings', {}).get(panel_id, {}).get(str(port_id))
  3731. port_state[panel_id][port_id] = {
  3732. 'last_uid': None,
  3733. 'expected_uid': exp_uid,
  3734. 'alarm_count': 0,
  3735. 'last_polled_at': int(time.time() * 1000)
  3736. }
  3737. ps = port_state[panel_id][port_id]
  3738. ps['last_polled_at'] = int(time.time() * 1000)
  3739. last_uid = ps.get('last_uid')
  3740. if uid and uid != last_uid:
  3741. dtu_publish_event(panel_id, port_id, 'CONNECT' if not last_uid else 'MOVE', uid, last_uid)
  3742. ps['last_uid'] = uid
  3743. elif not uid and last_uid:
  3744. dtu_publish_event(panel_id, port_id, 'DISCONNECT', None, last_uid)
  3745. ps['last_uid'] = None
  3746. ps_exp = ps.get('expected_uid')
  3747. if dtu_config.get('alarm_enabled', True):
  3748. if ps_exp and uid and uid != ps_exp:
  3749. ps['alarm_count'] = ps.get('alarm_count', 0) + 1
  3750. sev = 'CRITICAL' if ps['alarm_count'] >= 3 else 'WARNING'
  3751. dtu_publish_alarm(panel_id, port_id, 'ILLEGAL_CONNECT', ps_exp, uid, sev)
  3752. elif ps_exp and not uid:
  3753. ps['alarm_count'] = ps.get('alarm_count', 0) + 1
  3754. sev = 'CRITICAL' if ps['alarm_count'] >= 3 else 'WARNING'
  3755. dtu_publish_alarm(panel_id, port_id, 'ILLEGAL_DISCONNECT', ps_exp, None, sev)
  3756. elif ps_exp and uid == ps_exp:
  3757. ps['alarm_count'] = 0
  3758. if uid:
  3759. port_status = 'ILLEGAL' if (ps_exp and uid != ps_exp) else 'CONNECTED'
  3760. else:
  3761. port_status = 'DISCONNECTED'
  3762. panel_ports.append({'port_id': port_id, 'status': port_status, 'jumper_uid': uid or None})
  3763. # LED 自动同步(依据端口状态;仅在状态变化时下发,避免刷屏)
  3764. # 色码对应协议 6.5: 0=灭 1=红 2=绿 3=蓝
  3765. if port_status == 'CONNECTED':
  3766. desired_led = 2 # 绿:正确连接
  3767. elif port_status == 'ILLEGAL':
  3768. desired_led = 1 # 红:错卡
  3769. elif port_status == 'DISCONNECTED' and ps_exp:
  3770. desired_led = 3 # 蓝:应有卡但未读到 (ILLEGAL_DISCONNECT)
  3771. else:
  3772. desired_led = 0 # 灭:未连接未设置(无期望+无卡)
  3773. if ps.get('last_led') != desired_led:
  3774. try:
  3775. led_res = modbus_client.set_rgb_led(addr, port_id, desired_led, timeout=0.5)
  3776. if 'error' not in led_res:
  3777. ps['last_led'] = desired_led
  3778. # 同步更新 led_states 供 Web 展示
  3779. if addr not in led_states:
  3780. led_states[addr] = {}
  3781. led_states[addr][port_id] = desired_led
  3782. logger.info(f"LED 同步 panel={panel_id} port={port_id} color={desired_led}")
  3783. else:
  3784. logger.warning(f"LED 同步失败 panel={panel_id} port={port_id}: {led_res.get('error')}")
  3785. except Exception as e:
  3786. logger.warning(f"LED 同步异常 panel={panel_id} port={port_id}: {e}")
  3787. online += 1
  3788. if cfg.get('status') == 'offline' or panel_fail_count.get(panel_id, 0) > 0 or panel_assign_pending.get(panel_id):
  3789. cfg['status'] = 'online'
  3790. panel_fail_count[panel_id] = 0
  3791. panel_assign_pending.pop(panel_id, None)
  3792. logger.info(f"面板 {panel_id}(地址={addr}) 恢复在线")
  3793. # 设备上线默认全蓝灯,清空 last_led 缓存,强制下一轮全量重发 LED
  3794. # (配置的按状态亮,未配置的灭灯),覆盖硬件默认状态
  3795. for pid, ps in port_state.get(panel_id, {}).items():
  3796. ps['last_led'] = None
  3797. device_last_seen[panel_id] = time.time()
  3798. device_last_seen[cfg.get('panel_uid', '')] = time.time()
  3799. dtu_publish_panel_status(panel_id, addr, panel_ports)
  3800. # 如果该 panel 是当前显示的 panel,刷新屏幕
  3801. panels = get_sorted_panels()
  3802. trigger_panel_id = None
  3803. with screen_lock:
  3804. if panels and 0 <= screen_current_panel_index < len(panels) and panels[screen_current_panel_index][0] == panel_id:
  3805. trigger_panel_id = panel_id
  3806. if trigger_panel_id:
  3807. try:
  3808. screen_refresh_queue.put((trigger_panel_id,))
  3809. except Exception as e:
  3810. logger.error(f"刷新屏幕失败: {e}")
  3811. dtu_publish_status(force=True)
  3812. finally:
  3813. address_config.config_lock.release()
  3814. except Exception as e:
  3815. logger.error(f"端口轮询异常: {str(e)}")
  3816. t2 = threading.Thread(target=port_poll_loop, daemon=True)
  3817. t2.start()
  3818. logger.info("启动端口轮询线程 (间隔5秒)")
  3819. # 启动 DHT11 本地传感器读取线程
  3820. if dht11_sensor is not None:
  3821. dht11_sensor.on_data = dht11_data_callback
  3822. dht11_sensor.start()
  3823. # 连接 Nextion 串口屏
  3824. if NEXTION_ENABLED:
  3825. try:
  3826. ok, msg = screen_display.connect(NEXTION_SCREEN_PORT, NEXTION_SCREEN_BAUD)
  3827. if ok:
  3828. screen_display.set_button_callback(screen_button_event_handler)
  3829. logger.info("Nextion 屏幕连接成功")
  3830. panels = get_sorted_panels()
  3831. if panels:
  3832. refresh_screen_panel(panels[0][0])
  3833. else:
  3834. logger.warning(f"Nextion 屏幕连接失败: {msg}")
  3835. except Exception as e:
  3836. logger.error(f"Nextion 屏幕初始化异常: {e}")
  3837. # 启动 Nextion 屏幕异步刷新工作线程
  3838. screen_refresh_thread = threading.Thread(target=_screen_refresh_worker, daemon=True)
  3839. screen_refresh_thread.start()
  3840. logger.info("启动 Nextion 屏幕异步刷新线程")
  3841. # 启动服务
  3842. socketio.run(
  3843. app,
  3844. host=FLASK_HOST,
  3845. port=FLASK_PORT,
  3846. debug=FLASK_DEBUG,
  3847. use_reloader=False, # 禁用重载器以避免重复初始化问题
  3848. log_output=False, # 禁用Flask的日志输出,使用我们自己的日志配置
  3849. allow_unsafe_werkzeug=True
  3850. )
  3851. except KeyboardInterrupt:
  3852. # 优雅退出
  3853. logger.info('正在关闭应用...')
  3854. try:
  3855. if isinstance(serial_client.get_status(), dict) and serial_client.get_status().get("connected", False):
  3856. serial_client.disconnect()
  3857. logger.info('串口连接已断开')
  3858. if _mqtt_connected():
  3859. mqtt_client.disconnect()
  3860. logger.info('MQTT连接已断开')
  3861. if dht11_sensor is not None:
  3862. dht11_sensor.stop()
  3863. logger.info('DHT11 传感器线程已停止')
  3864. except Exception as e:
  3865. logger.error(f'关闭连接时出错: {str(e)}')
  3866. # 清理WebSocket连接
  3867. for client_type in connected_clients:
  3868. connected_clients[client_type].clear()
  3869. logger.info('应用已安全关闭')
  3870. except Exception as e:
  3871. logger.exception(f'应用启动失败') # 使用exception记录完整堆栈
  3872. # 确保资源被释放
  3873. try:
  3874. serial_client.disconnect()
  3875. mqtt_client.disconnect()
  3876. except:
  3877. pass