BlueToothMode.py 18 KB

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  1. import asyncio
  2. import time
  3. from bleak import BleakScanner, BleakClient
  4. import threading
  5. from collections import deque
  6. from networkx import is_connected
  7. from utils.SingletonType import SingletonType
  8. from .RemoteControlV2 import RemoteControlV2
  9. from .BaseClass import BaseClass
  10. from sockets.connect_manager import ConnectionManager
  11. class BlueToothMode(BaseClass,metaclass=SingletonType):
  12. instance = None
  13. init_flag = None
  14. def __init__(self, websocket_manager: ConnectionManager):
  15. super().__init__(websocket_manager)
  16. """此处设计为,如果已经存在实例时,不再执行初始化"""
  17. if self.init_flag:
  18. return
  19. else:
  20. self.init_flag = True
  21. self.msg_type = "blue_tooth"
  22. self.remote_control_v2 = RemoteControlV2(self, websocket_manager)
  23. # 用于存储找到的目标设备的地址
  24. self.target_device_address = None
  25. self._lock = threading.Lock()
  26. self.connect_state = False
  27. self.receive_data = b""
  28. self.devices = {}
  29. self.devices_name = {}
  30. self.last_value = None
  31. self.retry_num = 0
  32. self.last_error = ""
  33. def __new__(cls, *args, **kwargs):
  34. """如果当前没有实例时,调用父类__new__方法,生成示例,有则返回保存的内存地址。"""
  35. if not cls.instance:
  36. cls.instance = super().__new__(cls)
  37. return cls.instance
  38. def print_error(self, text, *args):
  39. if text != self.last_error:
  40. self.last_error = text
  41. print(text)
  42. async def scan_for_esp32(self):
  43. """扫描附近的BLE设备,并寻找ESP32"""
  44. # print("打印连接状态", self.connect_state)
  45. if self.connect_state == True:
  46. return
  47. # self.sendSocketMessage(
  48. # code=0, msg="遥控设备V2 未连接", data=None, device_status=-1
  49. # )
  50. # print("Scanning for ESP32 devices...*****************")
  51. # print("打印连接状态2", self.connect_state)
  52. try:
  53. devices = await BleakScanner.discover()
  54. except BaseException as e:
  55. self.print_error("蓝牙疑似未打开,{}".format(e))
  56. self.sendSocketMessage(
  57. code=0, msg="蓝牙疑似未打开,{}".format(e), data=None, device_status=-1
  58. )
  59. return
  60. for d in devices:
  61. # print(f"Device: {d.name} - Address: {d.address}")
  62. # 假设ESP32的广播名称包含"ESP32-S3"字符串
  63. if d.name:
  64. if "ESP32-S3" in d.name:
  65. if d.address not in self.devices:
  66. self.devices_name[d.name] = d.address
  67. self.devices[d.address] = {
  68. "name": d.name,
  69. "client": None,
  70. "send_queue": deque(maxlen=20),
  71. "recv_queue": deque(maxlen=20),
  72. "receive_data": b"",
  73. "connect_state": True,
  74. }
  75. self.print_error(
  76. f"Found device: {d.name} - Address: {d.address}"
  77. )
  78. asyncio.create_task(self.connect_and_listen(d.address))
  79. self.connect_state = True
  80. # 注册到遥控器等上位机
  81. def connect_device(self, address, name):
  82. print("注册到遥控器等上位机", address, name)
  83. if "remote" in name:
  84. self.remote_control_v2.to_connect_bluetooth(address, is_test=False)
  85. # 关闭连接
  86. def disconnect_device(self, address, name):
  87. print("关闭蓝牙连接", address, name)
  88. if "remote" in name:
  89. self.print_error("71 关闭蓝牙连接{}-{}".format(address, name))
  90. self.remote_control_v2.close_bluetooth_connect()
  91. self.connect_state = False
  92. self.receive_data = b""
  93. self.devices = {}
  94. self.devices_name = {}
  95. self.last_value = None
  96. self.retry_num = 0
  97. self.last_error = ""
  98. async def handle_disconnect(self, client):
  99. """处理断开连接事件"""
  100. self.print_error("Device was disconnected.")
  101. # 尝试重新连接
  102. while not client.is_connected:
  103. try:
  104. self.print_error("Attempting to reconnect...")
  105. await client.connect()
  106. except Exception as e:
  107. self.print_error(f"Failed to reconnect: {e}")
  108. await asyncio.sleep(5) # 等待一段时间再重试
  109. async def notification_handler(self, address, characteristic, data: bytearray):
  110. """处理接收到的通知数据"""
  111. with self._lock:
  112. #
  113. # if data == bytearray(b'UU\x01c\x9c'):
  114. # self.devices[address]['send_queue'].append(bytearray(b'UU\x01c\x9c'))
  115. # pass
  116. # else:
  117. # # print("60 data:", address, data)
  118. self.devices[address]["recv_queue"].append(data)
  119. self.devices[address]["connect_state"] = True
  120. async def write_characteristic(self, client, characteristic_uuid, data):
  121. """向指定特征写入数据"""
  122. try:
  123. await client.write_gatt_char(characteristic_uuid, data)
  124. except BaseException as e:
  125. self.print_error("write_characteristic error ", e)
  126. async def connect_and_listen(self, address):
  127. """连接到指定地址的ESP32设备并监听通知"""
  128. self.print_error("""连接到指定地址的ESP32设备并监听通知""")
  129. while True:
  130. # try:
  131. if len(self.devices) == 0:
  132. break
  133. async with BleakClient(address) as client:
  134. if not client.is_connected:
  135. self.print_error("Failed to connect to the device.")
  136. self.devices[address]["connect_state"] = False
  137. self.disconnect_device(
  138. address=address, name=self.devices[address]["name"]
  139. )
  140. continue
  141. if len(self.devices) == 0:
  142. break
  143. self.devices[address]["connect_state"] = True
  144. self.print_error(f"Connected to {address}")
  145. # 获取服务和特征(假设你已经知道要监听的特征UUID)
  146. services = await client.get_services()
  147. for service in services:
  148. for char in service.characteristics:
  149. if "notify" in char.properties:
  150. self.print_error(
  151. f"Subscribing to characteristic: {char.uuid}"
  152. )
  153. await client.start_notify(
  154. char,
  155. lambda char, data: asyncio.create_task(
  156. self.notification_handler(address, char, data)
  157. ),
  158. )
  159. # 进入一个简单的循环,保持连接
  160. self.print_error(
  161. "进入一个简单的循环 保持连接", self.devices[address]["name"]
  162. )
  163. self.connect_device(
  164. address=address, name=self.devices[address]["name"]
  165. )
  166. self.retry_num += 1
  167. while True:
  168. if not client.is_connected:
  169. self.print_error(
  170. f"Device {address} disconnected unexpectedly."
  171. )
  172. with self._lock:
  173. self.disconnect_device(
  174. address=address, name=self.devices[address]["name"]
  175. )
  176. if len(self.devices) == 0:
  177. break
  178. self.devices[address]["connect_state"] = False
  179. break
  180. if len(self.devices) == 0:
  181. break
  182. if self.devices[address]["send_queue"]:
  183. with self._lock:
  184. send_data = self.devices[address][
  185. "send_queue"
  186. ].popleft()
  187. # print("-----------> send_data:", self.change_hex_to_10_int(send_data))
  188. await self.write_characteristic(
  189. client, char.uuid, send_data
  190. )
  191. await asyncio.sleep(0.01)
  192. await asyncio.sleep(0.02)
  193. # except Exception as e:
  194. # with self._lock:
  195. # self.disconnect_device(
  196. # address=address, name=self.devices[address]["name"]
  197. # )
  198. # self.devices[address]["connect_state"] = False
  199. # print(f"Error during connection or listening: {e}")
  200. # await asyncio.sleep(2) # 发生错误时等待一段时间再重试
  201. async def main_func(self):
  202. """主函数"""
  203. # address = "24:EC:4A:26:4B:BE"
  204. # _name = "ESP32-S3-remote"
  205. # self.devices[address] = {'name': _name,
  206. # 'client': None,
  207. # 'send_queue': [],
  208. # 'recv_queue': [],
  209. # "receive_data": b"",
  210. # "connect_state": True,
  211. # }
  212. # self.devices_name[_name] = address
  213. # asyncio.create_task(self.connect_and_listen(address))
  214. if self.connect_state == True:
  215. print('蓝牙已连接,不可重新连接')
  216. message = {
  217. "_type": "show_info",
  218. "plugins_mode": "remote_control",
  219. "data": "遥控设备V2 打开蓝牙成功",
  220. }
  221. self.sendSocketMessage(
  222. code=0, msg="遥控设备V2 打开蓝牙成功", data=message, device_status=2
  223. )
  224. return
  225. await self.scan_for_esp32()
  226. # 定期重新扫描以发现新设备
  227. while True:
  228. if self.devices:
  229. await asyncio.sleep(20)
  230. else:
  231. await asyncio.sleep(3)
  232. await self.scan_for_esp32()
  233. def run(self):
  234. self.print_error("开启蓝牙扫描")
  235. asyncio.run(self.main_func())
  236. def write_cmd(self, address, data: list):
  237. buf = []
  238. buf.extend([0x55, 0x55, (0xFF & len(data))])
  239. buf.extend(data)
  240. buf.extend([0xFF & ~sum(data)])
  241. self.send_data(address, bytes(buf))
  242. def send_data(self, address, byte_list: bytes):
  243. chunk_size = 20
  244. chunks = [
  245. byte_list[i : i + chunk_size] for i in range(0, len(byte_list), chunk_size)
  246. ]
  247. try:
  248. with self._lock:
  249. for chunk in chunks:
  250. self.devices[address]["send_queue"].append(chunk)
  251. except Exception as e:
  252. self.devices[address]["connect_state"] = False
  253. self.print_error(f"Error sending notification: {address},{e}")
  254. def change_hex_to_int(self, _bytearray):
  255. return " ".join([hex(x)[2:].zfill(2) for x in _bytearray])
  256. def change_hex_to_10_int(self, _bytearray):
  257. return " ".join([str(int(x)) for x in _bytearray])
  258. def read_cmd(self, time_out=10):
  259. data_list = []
  260. for device_name in self.devices_name:
  261. address = self.devices_name[device_name]
  262. # print(self.devices[address]['connect_state'])
  263. while self.devices[address]["recv_queue"]:
  264. receive_data = self.read_cmd_one(address)
  265. if receive_data:
  266. data_list.append(
  267. {
  268. "device_name": device_name,
  269. "address": address,
  270. "receive_data": receive_data,
  271. }
  272. )
  273. return data_list
  274. def read_cmd_one(self, address):
  275. # 获取所有缓冲区的字节
  276. if not self.devices[address]["connect_state"]:
  277. return
  278. # print("读取数据....")
  279. while 1:
  280. receive_data = self.devices[address]["receive_data"]
  281. # print("166 receive_data", receive_data)
  282. if self.devices[address]["recv_queue"]:
  283. with self._lock:
  284. read_d = self.devices[address]["recv_queue"].popleft()
  285. # print("170 read_d", read_d)
  286. receive_data += read_d
  287. self.devices[address]["receive_data"] = receive_data
  288. if not receive_data:
  289. return None
  290. if len(receive_data) < 4:
  291. break
  292. # print("--------receive_data",self.change_hex_to_10_int(receive_data))
  293. if receive_data[0] == 0x55 and receive_data[1] == 0x55:
  294. data_len = receive_data[2]
  295. if len(receive_data) < data_len + 4:
  296. # n += 1
  297. # if n > time_out:
  298. # time.sleep(0.001)
  299. # return False
  300. # continue
  301. return
  302. _data = receive_data[3 : data_len + 4]
  303. # 更新缓存区
  304. with self._lock:
  305. self.devices[address]["receive_data"] = receive_data[data_len + 4 :]
  306. receive_data = receive_data[data_len + 4 :]
  307. # 校验数据
  308. if 0xFF & ~sum(_data[:-1]) == _data[-1]:
  309. return _data[:-1]
  310. else:
  311. print("数据异常,丢弃")
  312. return False
  313. else:
  314. # 起始位不是 55 55 进行移除
  315. while receive_data:
  316. if len(receive_data) == 1:
  317. if receive_data[0] == 0x55:
  318. break
  319. else:
  320. with self._lock:
  321. self.devices[address]["receive_data"] = b""
  322. receive_data = b""
  323. else:
  324. if receive_data[0] == 0x55 and receive_data[1] == 0x55:
  325. break
  326. else:
  327. with self._lock:
  328. self.devices[address]["receive_data"] = receive_data[1:]
  329. receive_data = receive_data[1:]
  330. def analysis_received_data(self):
  331. receive_data = self.read_cmd(time_out=5)
  332. if not receive_data:
  333. return
  334. else:
  335. # print("receive_data:", receive_data)
  336. # print("read2 receive_data {}".format(self.change_hex_to_int(receive_data)))
  337. pass
  338. for data in receive_data:
  339. address = data["address"]
  340. rec_data = data["receive_data"]
  341. # print("read address {}".format(address))
  342. # print("read receive_data {}".format(self.change_hex_to_int(rec_data)))
  343. # 数据 结构 command,按命令解析
  344. if rec_data[0] == 1:
  345. # 扫码数据
  346. bar_code = rec_data[1:].decode()
  347. bar_code = bar_code.replace("\r", "")
  348. bar_code = bar_code.replace("\n", "")
  349. print("bar_code:", bar_code)
  350. return
  351. if rec_data[0] == 2:
  352. print("read receive_data {}".format(self.change_hex_to_int(rec_data)))
  353. return
  354. if rec_data[0] == 90:
  355. print(
  356. "read receive_data-90 {}".format(self.change_hex_to_int(rec_data))
  357. )
  358. return
  359. if rec_data[0] == 99:
  360. blue_mode.write_cmd(address, [99])
  361. # print("发送心跳包")
  362. return
  363. if rec_data[0] == 111:
  364. print(
  365. "{} receive_data-111 {}".format(
  366. self.retry_num, self.change_hex_to_10_int(rec_data)
  367. )
  368. )
  369. value = (
  370. rec_data[1] << 24
  371. | rec_data[2] << 16
  372. | rec_data[3] << 8
  373. | rec_data[4]
  374. )
  375. if self.last_value is None:
  376. self.last_value = value
  377. else:
  378. self.last_value += 1
  379. if self.last_value == value:
  380. flag = True
  381. else:
  382. flag = False
  383. print(
  384. "{} value:{},last_value;{},flag:{}\n".format(
  385. self.retry_num, value, self.last_value, flag
  386. )
  387. )
  388. if __name__ == "__main__":
  389. blue_mode = BlueToothMode(None)
  390. threading.Thread(target=blue_mode.run, args=()).start()
  391. print("=" * 50)
  392. n = 0
  393. time.sleep(1)
  394. k = 0
  395. last_t = time.time()
  396. while 1:
  397. time.sleep(0.001)
  398. s = time.time()
  399. address = "24:EC:4A:26:4B:BE"
  400. blue_mode.analysis_received_data()
  401. n += 1
  402. if n == 500:
  403. print(s - last_t)
  404. for i in range(3):
  405. k += 1
  406. data = [
  407. 111,
  408. 0xFF & k >> 24,
  409. 0xFF & k >> 16,
  410. 0xFF & k >> 8,
  411. 0xFF & k,
  412. ]
  413. data.extend([x for x in range(100, 130)])
  414. blue_mode.write_cmd(address=address, data=data)
  415. print("send_value:{}".format(k))
  416. data = [90]
  417. blue_mode.write_cmd(address=address, data=data)
  418. n = 0
  419. last_t = s