myData.go 7.0 KB

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  1. package initialize
  2. import (
  3. "encoding/hex"
  4. "net"
  5. "os"
  6. "runtime"
  7. "runtime/debug"
  8. "server/dao"
  9. "server/logger"
  10. "server/modbus"
  11. "server/model"
  12. "server/service"
  13. "server/utils"
  14. "strconv"
  15. "strings"
  16. "sync"
  17. "syscall"
  18. "time"
  19. )
  20. type ModbusHandler struct {
  21. queue *modbus.MlQueue
  22. }
  23. var _handlerOnce sync.Once
  24. var _handlerSingle *ModbusHandler
  25. func GetHandler() *ModbusHandler {
  26. _handlerOnce.Do(func() {
  27. _handlerSingle = &ModbusHandler{
  28. queue: modbus.NewQueue(10000),
  29. }
  30. })
  31. return _handlerSingle
  32. }
  33. func InitInductanceTCP() {
  34. lis, err := net.Listen("tcp", ":60001")
  35. if err != nil {
  36. logger.Get().Fatalln("Failed to listen on port 60001:", err)
  37. } else {
  38. logger.Get().Println("inductanceTCP启动成功")
  39. model.InductanceTCP = lis
  40. }
  41. go StartInductanceTCP()
  42. }
  43. func StartInductanceTCP() {
  44. logger.Get().Println("进入StartInductanceTCP")
  45. handler := GetHandler()
  46. for {
  47. logger.Get().Println("进入InductanceTCP循环")
  48. conn, err := model.InductanceTCP.Accept()
  49. if err != nil {
  50. logger.Get().Errorf("Accept error: %v", err)
  51. // 根据实际情况决定是否继续循环
  52. continue
  53. }
  54. remoteAddr := conn.RemoteAddr().String()
  55. logger.Get().Printf("lis Accept conn = %s\n", remoteAddr)
  56. deviceId, err := GetDeviceId(conn)
  57. if err != nil {
  58. logger.Get().Errorf("Error getting device ID from %s: %v", remoteAddr, err)
  59. conn.Close()
  60. continue
  61. }
  62. model.Mutex.Lock()
  63. if existingConn, exists := model.ConnectionMap[deviceId]; exists {
  64. logger.Get().Printf("Connection from %s already exists for deviceId %d, closing new connection\n", remoteAddr, deviceId)
  65. existingConn.Close() // 关闭旧连接
  66. delete(model.ConnectionMap, deviceId) // 清理旧连接
  67. }
  68. model.ConnectionMap[deviceId] = conn
  69. model.Mutex.Unlock()
  70. // 使用新的协程处理新的连接
  71. go handler.ReadAndHandle(conn, deviceId)
  72. go handler.Handler()
  73. }
  74. }
  75. func GetDeviceId(conn net.Conn) (id string, err error) {
  76. // 发送 Modbus RTU 帧
  77. //FE 04 03 EE 00 08 85 B2
  78. data, err := utils.WriteAndReadDevice(modbus.ReadDeviceId, conn, 9, 2)
  79. if err != nil {
  80. return
  81. }
  82. return string(data), err
  83. }
  84. func (o *ModbusHandler) ReadAndHandle(conn net.Conn, deviceId string) {
  85. for {
  86. buffer := make([]byte, 1024)
  87. n, err := conn.Read(buffer)
  88. if err != nil {
  89. if isConnReset(err) {
  90. logger.Get().Error("连接被远程主机强制关闭")
  91. } else if os.IsTimeout(err) {
  92. logger.Get().Error("读取操作超时")
  93. } else {
  94. // 处理其他类型的错误
  95. logger.Get().Errorf("读取错误: %s\n", err)
  96. }
  97. return
  98. }
  99. queueData := model.QueueData{
  100. Id: deviceId,
  101. Value: buffer[:n],
  102. }
  103. ok, cnt := o.queue.Put(&queueData)
  104. if ok {
  105. continue
  106. } else {
  107. logger.Get().Errorf("HandlerData:查询队列失败,队列消息数量:%d", cnt)
  108. runtime.Gosched()
  109. }
  110. }
  111. }
  112. func isConnReset(err error) bool {
  113. if opErr, ok := err.(*net.OpError); ok {
  114. if opErr.Err == syscall.ECONNRESET {
  115. return true // Unix-like 系统上的 ECONNRESET
  116. } else if runtime.GOOS == "windows" {
  117. // Windows 上的 WSAECONNRESET 通常是通过错误消息识别的
  118. if se, ok := opErr.Err.(*os.SyscallError); ok {
  119. if errno, ok := se.Err.(syscall.Errno); ok {
  120. if errno == 10054 { // 10054 对应 WSAECONNRESET
  121. return true
  122. }
  123. }
  124. } else if strings.Contains(opErr.Err.Error(), "WSAECONNRESET") {
  125. // 如果错误消息包含 WSAECONNRESET,也认为是连接被重置
  126. return true
  127. }
  128. }
  129. }
  130. return false
  131. }
  132. func (o *ModbusHandler) Handler() interface{} {
  133. defer func() {
  134. if err := recover(); err != nil {
  135. go GetHandler().Handler()
  136. logger.Get().Errorf("MqttHandler.Handler:发生异常:%s", string(debug.Stack()))
  137. }
  138. }()
  139. for {
  140. msg, ok, quantity := o.queue.Get()
  141. if !ok {
  142. time.Sleep(10 * time.Millisecond)
  143. continue
  144. } else if quantity > 1000 {
  145. logger.Get().Errorf("数据队列累积过多,请注意优化,当前队列条数:%d", quantity)
  146. }
  147. queueData, ok := msg.(*model.QueueData)
  148. if !ok {
  149. logger.Get().Errorln("Type assertion failed: msg is not of type model.QueueDat")
  150. return nil
  151. }
  152. // 信息处理返回
  153. parseData(queueData)
  154. // 对数据进行修改
  155. }
  156. }
  157. func parseData(data *model.QueueData) {
  158. reg, dev, err := utils.GetDataByDeviceId(data.Id)
  159. if err != nil {
  160. logger.Get().Errorln("Error getting register and device:", err)
  161. return
  162. }
  163. toString := hex.EncodeToString(data.Value)
  164. switch toString[0:2] {
  165. case "fe":
  166. switch toString[4:8] { // 开关灯
  167. case "0000", "0001", "0002", "0003", "0004", "0005", "0006", "0007":
  168. if toString[8:12] == "0000" {
  169. for i, loop := range dev.DeviceLoops {
  170. loop.State = 0
  171. dev.DeviceLoops[i] = loop
  172. }
  173. } else if toString[8:12] == "ff00" {
  174. for i, loop := range dev.DeviceLoops {
  175. loop.State = 1
  176. dev.DeviceLoops[i] = loop
  177. }
  178. }
  179. }
  180. switch toString[2:6] {
  181. case "0101":
  182. for i, device := range reg.Devices {
  183. if device.Sn == data.Id {
  184. if reg.Devices[i].State != 1 {
  185. reg.Devices[i].State = 1
  186. service.Cron{}.RelayOnOffTimeTaskSn(data.Id)
  187. }
  188. reg.Devices[i].OnlineTime = time.Now()
  189. for i2, _ := range device.DeviceLoops {
  190. if toString[6:8] == "ff" || toString[6:8] == "0f" {
  191. device.DeviceLoops[i2].State = 1
  192. } else if toString[6:8] == "00" {
  193. device.DeviceLoops[i2].State = 0
  194. }
  195. }
  196. }
  197. }
  198. regions, err := utils.SaveRegionOnData(reg)
  199. err = service.SaveData(regions)
  200. if err != nil {
  201. logger.Get().Errorln("设备回路状态" + err.Error())
  202. return
  203. }
  204. }
  205. case "01":
  206. switch toString[2:6] {
  207. case "0336":
  208. logger.Get().Println(data.Id + "----" + toString)
  209. batteryVoltage, _ := strconv.ParseInt(toString[6:10], 16, 64)
  210. batteryCurrent, _ := strconv.ParseInt(toString[10:14], 16, 64)
  211. batteryPlateVoltage, _ := strconv.ParseInt(toString[38:42], 16, 64)
  212. sun := dao.Sun{
  213. DeviceId: dev.Sn,
  214. BatteryVoltage: float64(batteryVoltage) / 100,
  215. BatteryCurrent: int(batteryCurrent),
  216. BatteryPlateVoltage: float64(batteryPlateVoltage) / 100,
  217. }
  218. for i, device := range reg.Devices {
  219. if device.Sn == dev.Sn {
  220. reg.Devices[i].Sun = sun
  221. }
  222. }
  223. regions, err := utils.SaveRegionOnData(reg)
  224. err = service.SaveData(regions)
  225. if err != nil {
  226. logger.Get().Println("太阳能数据保存" + err.Error())
  227. return
  228. }
  229. //电池
  230. //if float64(batteryVoltage)/100 < 5 {
  231. // data1 := modbus.DeviceSwitch(8, 1)
  232. // utils.WriteDevice(data1, model.ConnectionMap[data.Id])
  233. //} else {
  234. // data1 := modbus.DeviceSwitch(8, 0)
  235. // utils.WriteDevice(data1, model.ConnectionMap[data.Id])
  236. //}
  237. }
  238. }
  239. switch toString[0:4] {
  240. case "4c43":
  241. bytes, err := hex.DecodeString(toString[4:])
  242. if err != nil {
  243. logger.Get().Errorln("Error decoding bytes:", err)
  244. return
  245. }
  246. for i, device := range reg.Devices {
  247. if device.Sn == string(bytes) {
  248. reg.Devices[i].State = 1
  249. reg.Devices[i].OnlineTime = time.Now()
  250. }
  251. }
  252. regions, err := utils.SaveRegionOnData(reg)
  253. err = service.SaveData(regions)
  254. if err != nil {
  255. logger.Get().Errorln("心跳" + err.Error())
  256. return
  257. }
  258. }
  259. }