reader.go 7.9 KB

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  1. package uhf
  2. import (
  3. "context"
  4. "encoding/binary"
  5. "encoding/hex"
  6. "errors"
  7. "fmt"
  8. "wails-app/internal/dao"
  9. "wails-app/internal/global"
  10. common "wails-app/internal/model/common"
  11. "wails-app/internal/service"
  12. "wails-app/internal/service/parking"
  13. "sync"
  14. "time"
  15. )
  16. // Reader 通用读写接口(串口和TCP都实现它)
  17. type Reader interface {
  18. Connect() error
  19. Disconnect() error
  20. SendData([]byte) error
  21. ReadData() ([]byte, error)
  22. IsConnected() bool
  23. // ===================== 加入继电器接口 =====================
  24. CloseRelay1(validTime byte) error
  25. ReleaseRelay1() error
  26. CloseRelay2(validTime byte) error
  27. ReleaseRelay2() error
  28. }
  29. // 上报数据模型
  30. type ReportData struct {
  31. DeviceCode string `json:"device_code"` // 设备编码
  32. Hex string `json:"hex"` // 原始报文
  33. Epcs []string `json:"epcs"` // 解析出的EPC列表
  34. RSSI int `json:"rssi"` // 信号强度
  35. Antenna int `json:"antenna"` // 天线号
  36. Timestamp int64 `json:"timestamp"` // 上报时间
  37. }
  38. // 全局设备管理器(管理所有已连接的设备)
  39. var DeviceManager = &Manager{
  40. devices: make(map[string]*DeviceHandler),
  41. }
  42. // init 注入道闸控制回调(避免循环依赖)
  43. func init() {
  44. parking.GateOpener = DeviceManager.OpenGateByDeviceCode
  45. }
  46. type Manager struct {
  47. mu sync.RWMutex
  48. devices map[string]*DeviceHandler
  49. }
  50. // DeviceHandler 每个设备的处理实例(包含读写器和协程)
  51. type DeviceHandler struct {
  52. reader Reader
  53. device *dao.UHFReader
  54. ctx context.Context
  55. cancel context.CancelFunc
  56. dataChan chan *ReportData
  57. isRunning bool
  58. }
  59. // Register 注册设备
  60. func (m *Manager) Register(code string, h *DeviceHandler) {
  61. m.mu.Lock()
  62. defer m.mu.Unlock()
  63. m.devices[code] = h
  64. }
  65. // Unregister 注销设备
  66. func (m *Manager) Unregister(code string) {
  67. m.mu.Lock()
  68. defer m.mu.Unlock()
  69. delete(m.devices, code)
  70. }
  71. // Get 获取设备
  72. func (m *Manager) Get(code string) (*DeviceHandler, bool) {
  73. m.mu.RLock()
  74. defer m.mu.RUnlock()
  75. h, ok := m.devices[code]
  76. return h, ok
  77. }
  78. // OpenGate 开闸(公开方法,供外部触发源调用,如摄像头识别、手动进出场)
  79. func (h *DeviceHandler) OpenGate(validTime byte) error {
  80. return h.reader.CloseRelay1(validTime)
  81. }
  82. // OpenGateByDeviceCode 通过设备编码直接开闸(便捷方法)
  83. func (m *Manager) OpenGateByDeviceCode(deviceCode string, validTime byte) error {
  84. h, ok := m.Get(deviceCode)
  85. if !ok {
  86. return fmt.Errorf("设备未连接: %s", deviceCode)
  87. }
  88. return h.OpenGate(validTime)
  89. }
  90. // ===================== 复用原有CRC和解析函数(无需修改)=====================
  91. func uiCrc16Cal(pucY []byte, ucX uint8) uint16 {
  92. const PRESET_VALUE = 0xFFFF
  93. const POLYNOMIAL = 0x8408
  94. var uiCrcValue uint16 = PRESET_VALUE
  95. for ucI := uint8(0); ucI < ucX; ucI++ {
  96. uiCrcValue = uiCrcValue ^ uint16(pucY[ucI])
  97. for ucJ := uint8(0); ucJ < 8; ucJ++ {
  98. if uiCrcValue&0x0001 != 0 {
  99. uiCrcValue = (uiCrcValue >> 1) ^ POLYNOMIAL
  100. } else {
  101. uiCrcValue = uiCrcValue >> 1
  102. }
  103. }
  104. }
  105. return (uiCrcValue << 8) | (uiCrcValue >> 8)
  106. }
  107. // StartDeviceHandler 启动单个设备的读写协程
  108. func StartDeviceHandler(device *dao.UHFReader) error {
  109. // 1. 根据连接类型创建读写器
  110. var r Reader
  111. switch device.ConnectType {
  112. case "serial":
  113. r = NewSerialReader(device.COMPort, device.BaudRate)
  114. case "tcp":
  115. r = NewTCPReader(device.IPAddress, device.Port)
  116. default:
  117. return fmt.Errorf("不支持的连接类型: %s", device.ConnectType)
  118. }
  119. // 2. 连接设备
  120. if err := r.Connect(); err != nil {
  121. return err
  122. }
  123. // 3. 创建上下文和handler
  124. ctx, cancel := context.WithCancel(context.Background())
  125. h := &DeviceHandler{
  126. reader: r,
  127. device: device,
  128. ctx: ctx,
  129. cancel: cancel,
  130. dataChan: make(chan *ReportData, 200), // 适当加大
  131. isRunning: true,
  132. }
  133. // 4. 注册到管理器
  134. DeviceManager.Register(device.DeviceCode, h)
  135. // 5. 启动读写协程
  136. go func() {
  137. defer func() {
  138. h.isRunning = false
  139. _ = r.Disconnect()
  140. close(h.dataChan)
  141. DeviceManager.Unregister(device.DeviceCode)
  142. global.GVA_LOG.Info("设备已停止 code:" + device.DeviceCode)
  143. }()
  144. for {
  145. select {
  146. case <-ctx.Done():
  147. return
  148. default:
  149. buf, err := r.ReadData()
  150. if err != nil {
  151. global.GVA_DB.Model(device).Update("status", "offline")
  152. _ = r.Disconnect() // 先断开
  153. time.Sleep(2 * time.Second)
  154. if err := r.Connect(); err != nil {
  155. continue
  156. }
  157. global.GVA_DB.Model(device).Update("status", "online")
  158. continue
  159. }
  160. if len(buf) == 0 {
  161. continue
  162. }
  163. // 解析上报数据
  164. report, err := parseReportData(device.DeviceCode, buf)
  165. if err != nil {
  166. continue
  167. }
  168. // 推送(不丢死,也不阻塞)
  169. select {
  170. case h.dataChan <- report:
  171. default:
  172. global.GVA_LOG.Warn("通道已满,丢弃数据 device" + device.DeviceCode)
  173. }
  174. }
  175. }
  176. }()
  177. // 6. 启动业务处理协程
  178. go func() {
  179. for {
  180. select {
  181. case <-ctx.Done():
  182. return
  183. case report, ok := <-h.dataChan:
  184. if !ok {
  185. return
  186. }
  187. handleReportData(report)
  188. }
  189. }
  190. }()
  191. global.GVA_DB.Model(device).Update("status", "online")
  192. return nil
  193. }
  194. // parseReportData 解析上报数据
  195. func parseReportData(deviceCode string, buf []byte) (*ReportData, error) {
  196. if len(buf) < 25 || buf[0] != 0xCF {
  197. return nil, errors.New("无效帧")
  198. }
  199. dataWithoutCRC := buf[:len(buf)-2]
  200. recvCRC := binary.LittleEndian.Uint16(buf[len(buf)-2:])
  201. calcCRC := uiCrc16Cal(dataWithoutCRC, uint8(len(dataWithoutCRC)))
  202. if recvCRC != calcCRC {
  203. return nil, errors.New("CRC校验失败")
  204. }
  205. rssi := int(buf[6])
  206. antenna := int(buf[22])
  207. epc := hex.EncodeToString(buf[11:23])
  208. fmt.Printf(hex.EncodeToString(buf))
  209. return &ReportData{
  210. DeviceCode: deviceCode,
  211. Hex: hex.EncodeToString(buf),
  212. Epcs: []string{epc},
  213. RSSI: rssi,
  214. Antenna: antenna,
  215. Timestamp: time.Now().Unix(),
  216. }, nil
  217. }
  218. // handleReportData 处理UHF读取到的标签(精简版:只做解析+防抖,业务逻辑委托给 PassageService)
  219. func handleReportData(report *ReportData) {
  220. if len(report.Epcs) == 0 {
  221. return
  222. }
  223. epc := report.Epcs[0]
  224. fmt.Println("<UNK>", epc)
  225. // 委托给统一的进出场服务(所有触发方式共用同一入口)
  226. result, err := service.ServiceGroupApp.ParkingServiceGroup.PassageService.HandlePassage(common.PassageRequest{
  227. RFIDTag: epc,
  228. DeviceCode: report.DeviceCode,
  229. })
  230. if err != nil {
  231. fmt.Printf("⚠️ 进出场处理失败 | 设备:%s EPC:%s 错误:%v\n", report.DeviceCode, epc, err)
  232. return
  233. }
  234. fmt.Printf("✅ 进出场成功 | 方向:%s 车牌:%s 费用:%.2f\n", result.Direction, result.PlateNumber, result.Fee)
  235. }
  236. // ==============================
  237. // 继电器控制(完整支持 Relay1 & Relay2)
  238. // ==============================
  239. const (
  240. RELAY_OP_RELEASE = 0x01
  241. RELAY_OP_CLOSE = 0x02
  242. )
  243. // CloseRelay1 开闸
  244. func (s *SerialReader) CloseRelay1(validTime byte) error {
  245. frame := buildRelayFrame(0x0077, 1, RELAY_OP_CLOSE, validTime)
  246. _, err := s.SendAndRecv(frame)
  247. return err
  248. }
  249. // ReleaseRelay1
  250. func (s *SerialReader) ReleaseRelay1() error {
  251. frame := buildRelayFrame(0x0077, 1, RELAY_OP_RELEASE, 0)
  252. _, err := s.SendAndRecv(frame)
  253. return err
  254. }
  255. // CloseRelay2 关闸
  256. func (s *SerialReader) CloseRelay2(validTime byte) error {
  257. frame := buildRelayFrame(0x0078, 2, RELAY_OP_CLOSE, validTime)
  258. _, err := s.SendAndRecv(frame)
  259. return err
  260. }
  261. // ReleaseRelay2
  262. func (s *SerialReader) ReleaseRelay2() error {
  263. frame := buildRelayFrame(0x0078, 2, RELAY_OP_RELEASE, 0)
  264. _, err := s.SendAndRecv(frame)
  265. return err
  266. }
  267. // buildRelayFrame 构建指令
  268. func buildRelayFrame(cmd uint16, relayNum byte, option byte, validTime byte) []byte {
  269. frame := []byte{
  270. 0xCF, 0xFF,
  271. byte(cmd >> 8), byte(cmd & 0xFF),
  272. 0x03, // len
  273. relayNum, // 1=继电器1 2=继电器2
  274. option,
  275. validTime,
  276. }
  277. crc := uiCrc16Cal(frame, uint8(len(frame)))
  278. frame = append(frame, byte(crc&0xFF), byte(crc>>8))
  279. return frame
  280. }