AppTaskCan.c 39 KB

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  1. /*
  2. * @Author: chenjie
  3. * @Date: 2022-10-27
  4. * @LastEditTime: 2022-11-10
  5. * @LastEditors: chenjie
  6. * @Description:
  7. * @FilePath: \S32K146_4G\code\app\AppTaskCan.c
  8. * Copyright (c) 2022 by chenjie, All Rights Reserved.
  9. */
  10. #include "AppTaskCan.h"
  11. #include "AppFuncLib.h"
  12. #ifdef APP_CAN_ENABLE
  13. static uint8 BattSendFlg = 0;
  14. static void UDSAnsFunc(uint8 *rawData);
  15. static void UdsAns(bool PosFlg, uint8 UdsService, uint8 UdsSubService, uint8 Idx, uint8 *AnsData, uint8 AnsDataLen);
  16. static void BattSendFunc(void);
  17. void CanTask(void *pvParameters)
  18. {
  19. uint32 timerCANIdle = 0x00;
  20. uint32 timerCounterNow = 0;
  21. (void)pvParameters;
  22. CanIf_bRxFlag = false;
  23. Can_Msg_Type_Data CanRxMsg;
  24. CanRecvQueueHandle1 = xQueueCreate(100, sizeof(Can_Msg_Type_Data));
  25. BaseType_t ret = pdFALSE;
  26. GsensorInit();
  27. while (1)
  28. {
  29. do
  30. {
  31. memset(&CanRxMsg, 0, sizeof(CanRxMsg));
  32. ret = xQueueReceive(CanRecvQueueHandle1, &CanRxMsg, 1);
  33. if (ret == pdPASS)
  34. {
  35. timerCANIdle = 0x00;
  36. if (IsJumptoBootloader(CanRxMsg.id, CanRxMsg.data))
  37. {
  38. DoRoutinePositiveAnswer();
  39. RequestEnterBootloader();
  40. SystemSoftwareReset();
  41. break;
  42. }
  43. else
  44. {
  45. BcuDecodeFunction(CanRxMsg.id, CanRxMsg.data); // can协议解析
  46. }
  47. }
  48. if (timerCANIdle > 20000)
  49. {
  50. timerCANIdle = 0;
  51. xSemaphoreGive(sleep_mutex);
  52. }
  53. } while (ret == pdPASS);
  54. if ((TimerCounter - timerCounterNow) >= 100)
  55. {
  56. // timerCANIdle = timerCANIdle + 100;
  57. BcuRxDiagnose();
  58. timerCounterNow = TimerCounter;
  59. }
  60. }
  61. }
  62. // 注意解码超限问题
  63. void BcuDecodeFunction(uint32 ID, uint8 *rawData)
  64. {
  65. switch (ID)
  66. {
  67. case 0x1801D0F3:
  68. BMS_ReqVIN = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0x3);
  69. BMS_ReqHVOff = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 2) & 0x3);
  70. BcuRxFlag[0] = 0x01;
  71. break;
  72. case 0x1801D8F3:
  73. BMS_SoftwareVersion = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  74. BMS_HardwareVersion = (UINT16)(((*(UINT8 *)(rawData + 2)) | (*(UINT8 *)(rawData + 3) << 8)) & 0xFFFF);
  75. BMS_ProtocolEditionH = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0x3);
  76. BMS_ProtocolEditionL = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 2) & 0xF);
  77. BcuRxFlag[1] = 0x01;
  78. break;
  79. case 0x1880D0F3:
  80. BMS_CharDevNum = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xF);
  81. BMS_FtPosRly = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 4) & 0x1);
  82. BMS_FtNegRly = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 5) & 0x1);
  83. BMS_FtPosCharRly1 = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 6) & 0x1);
  84. BMS_FtNegCharRly1 = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 7) & 0x1);
  85. BMS_FtPosCharRly2 = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0x1);
  86. BMS_FtNegCharRly2 = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 1) & 0x1);
  87. BMS_FtHeatRly1 = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 2) & 0x1);
  88. BMS_FtHeatRly2 = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 3) & 0x1);
  89. BMS_StPosRly = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 4) & 0x3);
  90. BMS_StNegRly = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 6) & 0x3);
  91. BMS_StPreCharRly = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0x3);
  92. BMS_StPosCharRly1 = (UINT8)(((*(UINT8 *)(rawData + 2)) >> 2) & 0x3);
  93. BMS_StNegCharRly1 = (UINT8)(((*(UINT8 *)(rawData + 2)) >> 4) & 0x3);
  94. BMS_StPosCharRly2 = (UINT8)(((*(UINT8 *)(rawData + 2)) >> 6) & 0x3);
  95. BMS_StNegCharRly2 = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0x3);
  96. BMS_FtAuxRelayWeld = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 2) & 0x1);
  97. BMS_BraOpenCirc = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 3) & 0x1);
  98. BMS_FtBackCharCurrOutLim = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 4) & 0x3);
  99. BMS_FtPosRlyOpen = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 6) & 0x1);
  100. BMS_FtNegRlyOpen = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 7) & 0x1);
  101. BMS_FtPosCharRly1Open = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0x1);
  102. BMS_FtPosCharRly2Open = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 1) & 0x1);
  103. BMS_FtNegCharRly1Open = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 2) & 0x1);
  104. BMS_FtNegCharRly2Open = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 3) & 0x1);
  105. BMS_FtTMSContClose = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 4) & 0x1);
  106. BMS_FtTMSContOpen = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 5) & 0x1);
  107. BMS_FtTMS = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 6) & 0x1);
  108. BMS_Ft24VSpy = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 7) & 0x1);
  109. BMS_FtPACKSelfProt = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0x1);
  110. BMS_FtCharSockTempOver = (UINT8)(((*(UINT8 *)(rawData + 5)) >> 1) & 0x3);
  111. BMS_FtTempOutCtrl = (UINT8)(((*(UINT8 *)(rawData + 5)) >> 3) & 0x1);
  112. BMS_StPosHeatRly = (UINT8)(((*(UINT8 *)(rawData + 5)) >> 4) & 0x3);
  113. BMS_StNegHeatRly = (UINT8)(((*(UINT8 *)(rawData + 5)) >> 6) & 0x3);
  114. BMS_CharSysNum = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xF);
  115. BMS_FtCode = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  116. BcuRxFlag[2] = 0x01;
  117. break;
  118. case 0x1881D0F3:
  119. BMS_ST1CheckSum = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF);
  120. BMS_ST1Counter = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xF);
  121. BMS_Mode = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 4) & 0x3);
  122. BMS_AuxRlySt = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 6) & 0x1);
  123. BMS_BattBalaSt = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 7) & 0x1);
  124. BMS_CharGunSt = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0x1);
  125. BMS_CharMode = (UINT8)(((*(UINT8 *)(rawData + 2)) >> 1) & 0x3);
  126. BMS_CharSt = (UINT8)(((*(UINT8 *)(rawData + 2)) >> 3) & 0x3);
  127. BMS_FtLvl = (UINT8)(((*(UINT8 *)(rawData + 2)) >> 5) & 0x3);
  128. BMS_FtCellTempDiff = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0x3);
  129. BMS_FtCellTempHigh = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 2) & 0x3);
  130. BMS_FtPACKOverVolt = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 4) & 0x3);
  131. BMS_FtPACKUndeVolt = (UINT8)(((*(UINT8 *)(rawData + 3)) >> 6) & 0x3);
  132. BMS_FtSOCLow = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0x3);
  133. BMS_FtCellOverVolt = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 2) & 0x3);
  134. BMS_FtCellUndeVolt = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 4) & 0x3);
  135. BMS_FtIns = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 6) & 0x3);
  136. BMS_FtCellOverVoltDiff = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0x3);
  137. BMS_FtCharCurrOver = (UINT8)(((*(UINT8 *)(rawData + 5)) >> 2) & 0x3);
  138. BMS_FtDisCharCurrOver = (UINT8)(((*(UINT8 *)(rawData + 5)) >> 4) & 0x3);
  139. BMS_FtCellTempLow = (UINT8)(((*(UINT8 *)(rawData + 5)) >> 6) & 0x3);
  140. BMS_FtBranVoltDifOver = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0x3);
  141. BMS_FtBMSHardWare = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 2) & 0x3);
  142. BMS_FtSOCHigh = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 4) & 0x1);
  143. BMS_FtSOCJump = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 5) & 0x1);
  144. BMS_FtInCom = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 6) & 0x1);
  145. BMS_FtSysMism = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 7) & 0x1);
  146. BMS_FtHvIntLock = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0x1);
  147. BMS_FtSmoke = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 1) & 0x1);
  148. BMS_FtFire = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 2) & 0x1);
  149. BMS_FtNum = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 3) & 0x1F);
  150. BcuRxFlag[3] = 0x01;
  151. break;
  152. case 0x1882D0F3:
  153. BMS_PackSOC = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF);
  154. BMS_PackSOH = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  155. BMS_PackCurr = (UINT16)(((*(UINT8 *)(rawData + 2)) | (*(UINT8 *)(rawData + 3) << 8)) & 0xFFFF);
  156. BMS_MaxCharCurr = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  157. BMS_MaxDisCharCurr = (UINT16)(((*(UINT8 *)(rawData + 6)) | (*(UINT8 *)(rawData + 7) << 8)) & 0xFFFF);
  158. BcuRxFlag[4] = 0x01;
  159. break;
  160. case 0x1883D0F3:
  161. BMS_PosIns = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  162. BMS_NegIns = (UINT16)(((*(UINT8 *)(rawData + 2)) | (*(UINT8 *)(rawData + 3) << 8)) & 0xFFFF);
  163. BMS_BattVolt = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  164. BMS_LinkVolt = (UINT16)(((*(UINT8 *)(rawData + 6)) | (*(UINT8 *)(rawData + 7) << 8)) & 0xFFFF);
  165. BcuRxFlag[5] = 0x01;
  166. break;
  167. case 0x1884D0F3:
  168. BMS_MaxCellTemp = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF);
  169. BMS_MinCellTemp = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  170. BMS_AverCellTemp = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  171. BMS_MaxCellTempCSC = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  172. BMS_MaxCellTempNum = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0xFF);
  173. BMS_MinCellTempCSC = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0xFF);
  174. BMS_MinCellTempNum = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  175. BcuRxFlag[6] = 0x01;
  176. break;
  177. case 0x1885D0F3:
  178. BMS_MaxCellVolt = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  179. BMS_MaxCellVoltCSC = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  180. BMS_MaxCellVoltNum = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  181. BMS_AverCellVolt = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  182. BcuRxFlag[7] = 0x01;
  183. break;
  184. case 0x1886D0F3:
  185. BMS_MinCellVolt = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  186. BMS_MinCellVoltCSC = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  187. BMS_MinCellVoltNum = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  188. BMS_ContChrgCurr = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  189. BMS_ContDisCharCurr = (UINT16)(((*(UINT8 *)(rawData + 6)) | (*(UINT8 *)(rawData + 7) << 8)) & 0xFFFF);
  190. BcuRxFlag[8] = 0x01;
  191. break;
  192. case 0x1887D0F3:
  193. BMS_CharReqVolt = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  194. BMS_CharReqCurr = (UINT16)(((*(UINT8 *)(rawData + 2)) | (*(UINT8 *)(rawData + 3) << 8)) & 0xFFFF);
  195. BMS_SysInsRes = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  196. BMS_InsDeteSt = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0x1);
  197. BMS_FtCharInsLow = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 1) & 0x1);
  198. BMS_FtCurrSenr = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 2) & 0x1);
  199. BMS_FtHeatingFilm = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 3) & 0x1);
  200. BMS_FtMainLoopPreChar = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 4) & 0x1);
  201. BMS_FtAuxLoopPreChar = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 5) & 0x1);
  202. BMS_FtACANLost = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 6) & 0x1);
  203. BMS_FtDCDC = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 7) & 0x1);
  204. BMS_FtSOCDif = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0x1);
  205. BMS_FtCellOverDisChar = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 1) & 0x1);
  206. BMS_FtCharOver = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 2) & 0x3);
  207. BMS_FtContDisCharCurrOverLoad = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 4) & 0x3);
  208. BMS_FtContCharCurrOverLoad = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 6) & 0x3);
  209. BcuRxFlag[9] = 0x01;
  210. break;
  211. case 0x1888D0F3:
  212. BMS_MaxDisCharPwr = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  213. BMS_MaxCharPwr = (UINT16)(((*(UINT8 *)(rawData + 2)) | (*(UINT8 *)(rawData + 3) << 8)) & 0xFFFF);
  214. BMS_ContDisCharPwr = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  215. BMS_ContCharPwr = (UINT16)(((*(UINT8 *)(rawData + 6)) | (*(UINT8 *)(rawData + 7) << 8)) & 0xFFFF);
  216. BcuRxFlag[10] = 0x01;
  217. break;
  218. case 0x1889D0F3:
  219. BMS_InstEngyCons = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  220. BMS_TotalEngyCons = (UINT16)(((*(UINT8 *)(rawData + 2)) | (*(UINT8 *)(rawData + 3) << 8)) & 0xFFFF);
  221. BMS_SOE = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  222. BMS_RmanCharTime = (UINT16)(((*(UINT8 *)(rawData + 6)) | (*(UINT8 *)(rawData + 7) << 8)) & 0xFFFF);
  223. BcuRxFlag[11] = 0x01;
  224. break;
  225. case 0x188AD0F3:
  226. BMS_Gun1DCNegTemp = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF);
  227. BMS_Gun1DCPosTemp = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  228. BMS_Gun2DCNegTemp = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  229. BMS_Gun2DCPosTemp = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  230. BMS_CurrHeatSt = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0x3);
  231. BMS_CurrCoolSt = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 2) & 0x3);
  232. BMS_FtCharCnct = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 4) & 0x1);
  233. BMS_FtOverDisCharCurrDuringChar = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 5) & 0x1);
  234. BMS_FtCharNTC = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 6) & 0x1);
  235. BMS_FtELock = (UINT8)(((*(UINT8 *)(rawData + 4)) >> 7) & 0x1);
  236. BMS_CharNum = (UINT16)(((*(UINT8 *)(rawData + 5)) | (*(UINT8 *)(rawData + 6) << 8)) & 0xFFFF);
  237. BcuRxFlag[12] = 0x01;
  238. break;
  239. case 0x18C1D0F3:
  240. BMS_CellVoltFramNum = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF);
  241. BMS_CSC_Code = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  242. if (BMS_CellVoltFramNum == 0 || BMS_CellVoltFramNum > 128)
  243. {
  244. break;
  245. }
  246. for (UINT8 i = 0; i < 3; i++)
  247. {
  248. BMS_CellVolt[(BMS_CellVoltFramNum - 1) * 3 + i] = (UINT16)(((*(UINT8 *)(rawData + i * 2 + 2)) | (*(UINT8 *)(rawData + i * 2 + 3) << 8)) & 0xFFFF);
  249. }
  250. BcuRxFlag[13] = 0x01;
  251. break;
  252. case 0x18C2D0F3:
  253. BMS_CellTempFramNum = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF);
  254. BMS_CSC_Code = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  255. if (BMS_CellTempFramNum == 0 || BMS_CellTempFramNum > 12)
  256. {
  257. break;
  258. }
  259. for (UINT8 i = 0; i < 6; i++)
  260. {
  261. if (((BMS_CellTempFramNum - 1) * 6 + i) < sizeof(BMS_CellTemp))
  262. {
  263. BMS_CellTemp[(BMS_CellTempFramNum - 1) * 6 + i] = (UINT8)(((*(UINT8 *)(rawData + 2 + i))) & 0xFF);
  264. if (BMS_CellTemp[(BMS_CellTempFramNum - 1) * 6 + i] <= (0xFF - 10) && BMS_CellTemp[(BMS_CellTempFramNum - 1) * 6 + i] >= 10)
  265. {
  266. BMS_CellTemp[(BMS_CellTempFramNum - 1) * 6 + i] = BMS_CellTemp[(BMS_CellTempFramNum - 1) * 6 + i] - 10; // the tcp offset is -40, while the can message offset is -50
  267. }
  268. }
  269. }
  270. BcuRxFlag[14] = 0x01;
  271. break;
  272. case 0x18E1D0F3:
  273. BMS_Checksum = 0;
  274. for (UINT8 i = 1; i < 8; i++)
  275. {
  276. BMS_Checksum = (UINT8)(((*(UINT8 *)(rawData + i))) & 0xFF) ^ BMS_Checksum;
  277. }
  278. if (BMS_Checksum == (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF))
  279. {
  280. BMS_PackComp = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0x7);
  281. BMS_BattCodeLeng = (UINT8)(((*(UINT8 *)(rawData + 1)) >> 3) & 0x1F);
  282. BMS_SN[0] = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  283. BMS_SN[1] = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  284. BMS_SN[2] = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0xFF);
  285. BMS_SN[3] = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0xFF);
  286. BMS_SN[4] = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  287. BMS_SN[5] = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  288. }
  289. BcuRxFlag[15] = 0x01;
  290. break;
  291. case 0x18E2D0F3:
  292. BMS_Checksum = 0;
  293. for (UINT8 i = 1; i < 8; i++)
  294. {
  295. BMS_Checksum = (UINT8)(((*(UINT8 *)(rawData + i))) & 0xFF) ^ BMS_Checksum;
  296. }
  297. if (BMS_Checksum == (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF))
  298. {
  299. BMS_SN[6] = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  300. BMS_SN[7] = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  301. BMS_SN[8] = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  302. BMS_SN[9] = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0xFF);
  303. BMS_SN[10] = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0xFF);
  304. BMS_SN[11] = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  305. BMS_SN[12] = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  306. }
  307. BcuRxFlag[16] = 0x01;
  308. break;
  309. case 0x18E3D0F3:
  310. BMS_Checksum = 0;
  311. for (UINT8 i = 1; i < 8; i++)
  312. {
  313. BMS_Checksum = (UINT8)(((*(UINT8 *)(rawData + i))) & 0xFF) ^ BMS_Checksum;
  314. }
  315. if (BMS_Checksum == (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF))
  316. {
  317. BMS_SN[13] = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  318. BMS_SN[14] = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  319. BMS_SN[15] = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  320. BMS_SN[16] = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0xFF);
  321. BMS_SN[17] = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0xFF);
  322. BMS_SN[18] = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  323. BMS_SN[19] = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  324. }
  325. BcuRxFlag[17] = 0x01;
  326. break;
  327. case 0x18E4D0F3:
  328. BMS_Checksum = 0;
  329. for (UINT8 i = 1; i < 8; i++)
  330. {
  331. BMS_Checksum = (UINT8)(((*(UINT8 *)(rawData + i))) & 0xFF) ^ BMS_Checksum;
  332. }
  333. if (BMS_Checksum == (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF))
  334. {
  335. BMS_SN[20] = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  336. BMS_SN[21] = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  337. BMS_SN[22] = (UINT8)(((*(UINT8 *)(rawData + 3))) & 0xFF);
  338. BMS_SN[23] = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0xFF);
  339. BMS_SN[24] = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0xFF);
  340. BMS_SN[25] = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  341. BMS_SN[26] = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  342. }
  343. BcuRxFlag[18] = 0x01;
  344. break;
  345. case 0x18E5D0F3:
  346. BMS_BattRateCap = (UINT16)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8)) & 0xFFFF);
  347. BMS_BattRateVolt = (UINT16)(((*(UINT8 *)(rawData + 2)) | (*(UINT8 *)(rawData + 3) << 8)) & 0xFFFF);
  348. BMS_BattRateEngy = (UINT16)(((*(UINT8 *)(rawData + 4)) | (*(UINT8 *)(rawData + 5) << 8)) & 0xFFFF);
  349. BMS_BattType = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xF);
  350. BMS_CoolType = (UINT8)(((*(UINT8 *)(rawData + 6)) >> 4) & 0x3);
  351. BcuRxFlag[19] = 0x01;
  352. break;
  353. case 0x18E6D0F3:
  354. BMS_CSC_Total = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0xFF);
  355. BMS_CellTotal = (UINT16)(((*(UINT8 *)(rawData + 1)) | (*(UINT8 *)(rawData + 2) << 8)) & 0xFFFF);
  356. BMS_TempTotal = (UINT16)(((*(UINT8 *)(rawData + 3)) | (*(UINT8 *)(rawData + 4) << 8)) & 0xFFFF);
  357. BMS_CellVoltLevel = (UINT8)(((*(UINT8 *)(rawData + 5))) & 0xFF);
  358. BMS_CellMinVolt = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  359. BMS_CellMaxVolt = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  360. BcuRxFlag[20] = 0x01;
  361. break;
  362. case 0x18F1D0F3:
  363. BMS_TotalCharEngy = (UINT32)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8) | (*(UINT8 *)(rawData + 2) << 16) | (*(UINT8 *)(rawData + 3) << 24)) & 0xFFFFFF);
  364. BMS_TotalDisCharEngy = (UINT32)(((*(UINT8 *)(rawData + 3)) | (*(UINT8 *)(rawData + 4) << 8) | (*(UINT8 *)(rawData + 5) << 16) | (*(UINT8 *)(rawData + 6) << 24)) & 0xFFFFFF);
  365. BMS_SingleCharEngy = (UINT16)(((*(UINT8 *)(rawData + 6)) | (*(UINT8 *)(rawData + 7) << 8)) & 0xFFFF);
  366. BcuRxFlag[21] = 0x01;
  367. break;
  368. case 0x18F2D0F3:
  369. BMS_TotalBackCharEngy = (UINT32)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8) | (*(UINT8 *)(rawData + 2) << 16) | (*(UINT8 *)(rawData + 3) << 24)) & 0xFFFFFF);
  370. BMS_TotalStaCharEngy = (UINT32)(((*(UINT8 *)(rawData + 3)) | (*(UINT8 *)(rawData + 4) << 8) | (*(UINT8 *)(rawData + 5) << 16) | (*(UINT8 *)(rawData + 6) << 24)) & 0xFFFFFF);
  371. BcuRxFlag[22] = 0x01;
  372. break;
  373. case 0x18F3D0F3:
  374. BMS_TotalGunCharEngy = (UINT32)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8) | (*(UINT8 *)(rawData + 2) << 16) | (*(UINT8 *)(rawData + 3) << 24)) & 0xFFFFFF);
  375. BMS_TotalGunCharCapy = (UINT32)(((*(UINT8 *)(rawData + 3)) | (*(UINT8 *)(rawData + 4) << 8) | (*(UINT8 *)(rawData + 5) << 16) | (*(UINT8 *)(rawData + 6) << 24)) & 0xFFFFFF);
  376. BcuRxFlag[23] = 0x01;
  377. break;
  378. case 0x18F4D0F3:
  379. BMS_TotalCharCapy = (UINT32)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8) | (*(UINT8 *)(rawData + 2) << 16) | (*(UINT8 *)(rawData + 3) << 24)) & 0xFFFFFF);
  380. BMS_TotalDisCharCapy = (UINT32)(((*(UINT8 *)(rawData + 3)) | (*(UINT8 *)(rawData + 4) << 8) | (*(UINT8 *)(rawData + 5) << 16) | (*(UINT8 *)(rawData + 6) << 24)) & 0xFFFFFF);
  381. BMS_SingleCharCapy = (UINT16)(((*(UINT8 *)(rawData + 6)) | (*(UINT8 *)(rawData + 7) << 8)) & 0xFFFF);
  382. BcuRxFlag[24] = 0x01;
  383. break;
  384. case 0x18F5D0F3:
  385. BMS_TotalBackCharCapy = (UINT32)(((*(UINT8 *)(rawData + 0)) | (*(UINT8 *)(rawData + 1) << 8) | (*(UINT8 *)(rawData + 2) << 16) | (*(UINT8 *)(rawData + 3) << 24)) & 0xFFFFFF);
  386. BMS_TotalStaCharCapy = (UINT32)(((*(UINT8 *)(rawData + 3)) | (*(UINT8 *)(rawData + 4) << 8) | (*(UINT8 *)(rawData + 5) << 16) | (*(UINT8 *)(rawData + 6) << 24)) & 0xFFFFFF);
  387. BMS_HVBranNum = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  388. BMS_SingleHVBranchCellNum = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  389. BcuRxFlag[25] = 0x01;
  390. break;
  391. case 0x18FF45F4:
  392. BMS_ReqMode = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0x3);
  393. BMS_HVCmd = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 2) & 0x3);
  394. BMS_ChgSts = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 4) & 0x3);
  395. BMS_HVRelaySts = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 6) & 0x3);
  396. BMS_HVVolt = (UINT16)(((*(UINT8 *)(rawData + 1)) | (*(UINT8 *)(rawData + 2) << 8)) & 0xFFFF);
  397. BMS_SetTemp = (UINT8)(((*(UINT8 *)(rawData + 4))) & 0xFF);
  398. BMS_Life = (UINT8)(((*(UINT8 *)(rawData + 6))) & 0xFF);
  399. BMS_CRC = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0xFF);
  400. BcuRxFlag[26] = 0x01;
  401. break;
  402. case 0x18FFC13A:
  403. TMS_WorkStatus = (UINT8)(((*(UINT8 *)(rawData + 0))) & 0x3);
  404. TMS_HVRelayST = (UINT8)(((*(UINT8 *)(rawData + 0)) >> 2) & 0x3);
  405. TMS_OutletTemp = (UINT8)(((*(UINT8 *)(rawData + 1))) & 0xFF);
  406. TMS_InletTemp = (UINT8)(((*(UINT8 *)(rawData + 2))) & 0xFF);
  407. TMS_ReqPow = (UINT16)(((*(UINT8 *)(rawData + 5)) | (*(UINT8 *)(rawData + 6) << 8)) & 0xFFFF);
  408. TMS_ErrCode = (UINT8)(((*(UINT8 *)(rawData + 7))) & 0x3F);
  409. TMS_FaultLevel = (UINT8)(((*(UINT8 *)(rawData + 7)) >> 6) & 0x3);
  410. BcuRxFlag[27] = 0x01;
  411. break;
  412. case 0x1C00EDEA:
  413. UDSAnsFunc(rawData);
  414. break;
  415. default:
  416. break;
  417. }
  418. }
  419. static void UDSAnsFunc(uint8 *rawData)
  420. {
  421. static uint8 UdsStates = 1;
  422. uint8 Data[8] = {0};
  423. memcpy(Data, rawData, 8);
  424. uint8 UdsService = 0;
  425. uint8 UdsSubService = 0;
  426. UdsService = Data[0];
  427. UdsSubService = Data[1];
  428. uint8 AnsData[24] = {0};
  429. static uint8 deviceSnRecvFlg = 0;
  430. switch (UdsService)
  431. {
  432. case 0x10: // 模式切换
  433. {
  434. if (UdsSubService == 0x01)
  435. {
  436. UdsStates = 0x01; // 关闭UDS诊断
  437. UdsAns(true, UdsService, UdsSubService, 0x00, NULL, 0);
  438. }
  439. else if (UdsSubService == 0x02)
  440. {
  441. if (UdsStates == 0x01 || UdsStates == 0x02)
  442. {
  443. UdsStates = 0x02; // 打开UDS诊断
  444. UdsAns(true, UdsService, UdsSubService, 0x00, NULL, 0);
  445. }
  446. else
  447. {
  448. UdsAns(false, UdsService, UdsSubService, 0x00, NULL, 0);
  449. }
  450. }
  451. break;
  452. }
  453. case 0x11: // 控制
  454. {
  455. if (UdsStates == 0x02)
  456. {
  457. switch (UdsSubService)
  458. {
  459. case 0x01: // 重启
  460. {
  461. AnsData[0] = AppSwVersion >> 24;
  462. AnsData[1] = AppSwVersion >> 16;
  463. AnsData[2] = AppSwVersion >> 8;
  464. AnsData[3] = AppSwVersion >> 0;
  465. UdsAns(true, UdsService, UdsSubService, 0x00, AnsData, 4);
  466. AppConfigInfo.appSaveFlg = true;
  467. vTaskDelay(pdMS_TO_TICKS(1000));
  468. SystemSoftwareReset();
  469. break;
  470. }
  471. default:
  472. {
  473. UdsAns(false, UdsService, UdsSubService, 0x00, NULL, 0);
  474. break;
  475. }
  476. }
  477. }
  478. else
  479. {
  480. UdsAns(false, UdsService, UdsSubService, 0x00, NULL, 0);
  481. }
  482. break;
  483. }
  484. case 0x22: // 查询
  485. {
  486. if (UdsStates == 0x02)
  487. {
  488. switch (UdsSubService)
  489. {
  490. case 0x01: // 版本号查询
  491. {
  492. AnsData[0] = AppSwVersion >> 24;
  493. AnsData[1] = AppSwVersion >> 16;
  494. AnsData[2] = AppSwVersion >> 8;
  495. AnsData[3] = AppSwVersion >> 0;
  496. UdsAns(true, UdsService, UdsSubService, 0x00, AnsData, 4);
  497. break;
  498. }
  499. case 0x02: // SN号码查询
  500. {
  501. memcpy(AnsData, AppConfigInfo.deviceSn, 17);
  502. for (uint8 i = 0; i < 5; i++)
  503. {
  504. UdsAns(true, UdsService, UdsSubService, i, &AnsData[i * 4], 4);
  505. }
  506. break;
  507. }
  508. case 0x03: // ICCID查询
  509. {
  510. memcpy(AnsData, IccidNum, 20);
  511. for (uint8 i = 0; i < 5; i++)
  512. {
  513. UdsAns(true, UdsService, UdsSubService, i, &AnsData[i * 4], 4);
  514. }
  515. break;
  516. }
  517. case 0x04: // IMEI查询
  518. {
  519. memcpy(AnsData, ImeiNum, 15);
  520. for (uint8 i = 0; i < 4; i++)
  521. {
  522. UdsAns(true, UdsService, UdsSubService, i, &AnsData[i * 4], 4);
  523. }
  524. break;
  525. }
  526. case 0x05: // 驻网状态查询
  527. {
  528. AnsData[0] = RegChkRet;
  529. UdsAns(true, UdsService, UdsSubService, 0x00, AnsData, 1);
  530. break;
  531. }
  532. case 0x06: // 联网状态查询
  533. {
  534. AnsData[0] = SocketId;
  535. UdsAns(true, UdsService, UdsSubService, 0x00, AnsData, 1);
  536. break;
  537. }
  538. case 0x07: // 定位信息查询
  539. {
  540. GPSInfo GpsRecvData;
  541. if (xQueuePeek(GpsDataQueueHandle, &GpsRecvData, 0) == pdPASS)
  542. {
  543. AnsData[0] = GpsRecvData.locateMark;
  544. AnsData[4] = GpsRecvData.longitude[0];
  545. AnsData[5] = GpsRecvData.longitude[1];
  546. AnsData[6] = GpsRecvData.longitude[2];
  547. AnsData[7] = GpsRecvData.longitude[3];
  548. AnsData[8] = GpsRecvData.latitude[0];
  549. AnsData[9] = GpsRecvData.latitude[1];
  550. AnsData[10] = GpsRecvData.latitude[2];
  551. AnsData[11] = GpsRecvData.latitude[3];
  552. AnsData[12] = GpsRecvData.altitude[0];
  553. AnsData[13] = GpsRecvData.altitude[1];
  554. AnsData[14] = GpsRecvData.satelliteNum;
  555. for (uint8 i = 0; i < 4; i++)
  556. {
  557. UdsAns(true, UdsService, UdsSubService, i, &AnsData[i * 4], 4);
  558. }
  559. break;
  560. }
  561. else
  562. {
  563. AnsData[0] = 0xFF;
  564. UdsAns(true, UdsService, UdsSubService, 0x00, AnsData, 1);
  565. }
  566. break;
  567. }
  568. case 0x08: // 温度检测查询
  569. {
  570. UdsAns(true, UdsService, UdsSubService, 0x00, AnsData, 1);
  571. break;
  572. }
  573. case 0x09: // 电池信息查询
  574. {
  575. UdsAns(true, UdsService, UdsSubService, 0x00, AnsData, 1);
  576. BattSendFlg = 1;
  577. break;
  578. }
  579. case 0x0A: // 三轴数据查询
  580. {
  581. AnsData[0] = xyzData[0] >> 8;
  582. AnsData[1] = xyzData[0] >> 0;
  583. AnsData[2] = xyzData[1] >> 8;
  584. AnsData[3] = xyzData[1] >> 0;
  585. AnsData[4] = xyzData[2] >> 8;
  586. AnsData[5] = xyzData[2] >> 0;
  587. for (uint8 i = 0; i < 2; i++)
  588. {
  589. UdsAns(true, UdsService, UdsSubService, i, &AnsData[i * 4], 4);
  590. }
  591. break;
  592. }
  593. } // switch
  594. } // if
  595. else
  596. {
  597. UdsAns(false, UdsService, UdsSubService, 0x00, NULL, 0);
  598. }
  599. break;
  600. }
  601. case 0x27: // 控制
  602. {
  603. if (UdsStates == 0x02)
  604. {
  605. }
  606. else
  607. {
  608. UdsAns(false, UdsService, UdsSubService, 0x00, NULL, 0);
  609. }
  610. break;
  611. }
  612. case 0x2E: // 写入
  613. {
  614. if (UdsStates == 0x02)
  615. {
  616. switch (UdsSubService)
  617. {
  618. case 0x01:
  619. {
  620. setbit(deviceSnRecvFlg, Data[3]);
  621. if (Data[3] < 0x04)
  622. {
  623. memcpy(&AppConfigInfo.deviceSn[Data[3] * 4], &Data[4], 4);
  624. UdsAns(true, UdsService, UdsSubService, 0x00, &Data[3], 1);
  625. }
  626. else if (Data[3] == 0x04)
  627. {
  628. memcpy(&AppConfigInfo.deviceSn[Data[3] * 4], &Data[4], 1);
  629. UdsAns(true, UdsService, UdsSubService, 0x00, &Data[3], 1);
  630. }
  631. if (deviceSnRecvFlg == 0x1F)
  632. {
  633. deviceSnRecvFlg = 0;
  634. AppConfigInfo.appSaveFlg = true;
  635. AppConfigInfo.eolFlg = true;
  636. }
  637. break;
  638. }
  639. }
  640. }
  641. else
  642. {
  643. UdsAns(false, UdsService, UdsSubService, 0x00, NULL, 0);
  644. }
  645. break;
  646. }
  647. case 0x31: // 控制
  648. {
  649. if (UdsStates == 0x02)
  650. {
  651. }
  652. else
  653. {
  654. UdsAns(false, UdsService, UdsSubService, 0x00, NULL, 0);
  655. }
  656. break;
  657. }
  658. default:
  659. break;
  660. }
  661. return;
  662. }
  663. static void UdsAns(bool PosFlg, uint8 UdsService, uint8 UdsSubService, uint8 Idx, uint8 *AnsData, uint8 AnsDataLen)
  664. {
  665. Can_Msg_Type CanTxMsg;
  666. uint32 CanAnsId = 0x1C00EAED;
  667. uint8 SendData[8] = {0};
  668. if (PosFlg)
  669. {
  670. SendData[0] = 0x78;
  671. SendData[1] = UdsService;
  672. SendData[2] = UdsSubService;
  673. SendData[3] = Idx;
  674. if (AnsData != NULL && AnsDataLen != 0x00)
  675. {
  676. memcpy(&SendData[4], AnsData, AnsDataLen);
  677. }
  678. }
  679. else
  680. {
  681. SendData[0] = 0x7F;
  682. SendData[1] = UdsService;
  683. SendData[2] = UdsSubService;
  684. SendData[3] = 0x00;
  685. }
  686. CanTxMsg.id = CanAnsId;
  687. CanTxMsg.idFrame = CAN_EXTENDED_ID_TYPE;
  688. CanTxMsg.sdu = SendData;
  689. CanTxMsg.length = 8;
  690. CanIf_SendMessage(CAN1, CanTxMsg);
  691. }
  692. static void BattSendFunc(void)
  693. {
  694. // Can_Msg_Type CanTxMsg;
  695. // uint32 CanAnsId = 0;
  696. // uint8 SendData[8] = {0};
  697. // static uint8 SendStep = 0;
  698. // static uint8 SendCounter = 0;
  699. // switch (SendStep)
  700. // {
  701. // case 0x00:
  702. // {
  703. // SendStep++;
  704. // break;
  705. // }
  706. // case 0x01:
  707. // {
  708. // CanAnsId = 0x1C01EAED;
  709. // SendData[0] = battHeatState;
  710. // SendData[1] = battFanState;
  711. // SendData[2] = battRelayState;
  712. // SendData[3] = battConverState;
  713. // SendStep++;
  714. // break;
  715. // }
  716. // case 0x02:
  717. // {
  718. // uint16 ErrorTemp ;
  719. // ErrorTemp = GetErrorNum(ErrorArray,sizeof(ErrorArray)/2);
  720. // CanAnsId = 0x1C09EAED;
  721. // SendData[0] = battWorkState;
  722. // SendData[1] = ErrorTemp>>8;
  723. // SendData[2] = ErrorTemp;
  724. // SendData[3] = 0;
  725. // SendData[4] = 0;
  726. // SendData[5] = 0;
  727. // SendData[6] = 0;
  728. // SendData[7] = 0;
  729. // SendStep++;
  730. // break;
  731. // }
  732. // case 0x03:
  733. // {
  734. // CanAnsId = 0x1C0AEAED;
  735. // uint16 SocTemp = battSOC*10;
  736. // SendData[0] = battI>>8;
  737. // SendData[1] = battI;
  738. // SendData[2] = battPackVol>>8;
  739. // SendData[3] = battPackVol;
  740. // SendData[4] = SocTemp>>8;
  741. // SendData[5] = SocTemp;
  742. // SendData[6] = battSOH;
  743. // SendData[7] = battMOSSwitchState;
  744. // SendStep++;
  745. // break;
  746. // }
  747. // case 0x04:
  748. // {
  749. // CanAnsId = 0x1C10EAED + (SendCounter<<16);
  750. // if((SendCounter*8 + 7)>BMS_TEMPNUM)
  751. // {
  752. // SendCounter = 0;
  753. // SendStep++;
  754. // break;
  755. // }
  756. // else
  757. // {
  758. // SendData[0] = battCellTemp[SendCounter*8 + 0];
  759. // SendData[1] = battCellTemp[SendCounter*8 + 1];
  760. // SendData[2] = battCellTemp[SendCounter*8 + 2];
  761. // SendData[3] = battCellTemp[SendCounter*8 + 3];
  762. // SendData[4] = battCellTemp[SendCounter*8 + 4];
  763. // SendData[5] = battCellTemp[SendCounter*8 + 5];
  764. // SendData[6] = battCellTemp[SendCounter*8 + 6];
  765. // SendData[7] = battCellTemp[SendCounter*8 + 7];
  766. // }
  767. // break;
  768. // }
  769. // case 0x05:
  770. // {
  771. // CanAnsId = 0x1CA0EAED + (SendCounter<<16);
  772. // if((SendCounter*4 + 3)>BMS_CELLNUM)
  773. // {
  774. // SendCounter = 0;
  775. // SendStep++;
  776. // break;
  777. // }
  778. // else
  779. // {
  780. // SendData[0] = battCellU[SendCounter*4 + 0]>>8;
  781. // SendData[1] = battCellU[SendCounter*4 + 0];
  782. // SendData[2] = battCellU[SendCounter*4 + 1]>>8;
  783. // SendData[3] = battCellU[SendCounter*4 + 1];
  784. // SendData[4] = battCellU[SendCounter*4 + 2]>>8;
  785. // SendData[5] = battCellU[SendCounter*4 + 2];
  786. // SendData[6] = battCellU[SendCounter*4 + 3]>>8;
  787. // SendData[7] = battCellU[SendCounter*4 + 3];
  788. // }
  789. // break;
  790. // }
  791. // default:
  792. // {
  793. // SendStep = 0;
  794. // BattSendFlg = 0;
  795. // return;
  796. // break;
  797. // }
  798. // }
  799. // CanTxMsg.id = CanAnsId;
  800. // CanTxMsg.idFrame = CAN_EXTENDED_ID_TYPE;
  801. // CanTxMsg.sdu = SendData;
  802. // CanTxMsg.length = 8;
  803. // CanIf_SendMessage(CAN1, CanTxMsg);
  804. }
  805. void BcuRxDiagnose(void) // 100ms调用一次
  806. {
  807. static UINT32 TimeCounter = 0; // ms
  808. TimeCounter = TimeCounter + 10; //
  809. for (UINT8 i = 0; i < sizeof(BcuInTable) / 4; i++)
  810. {
  811. if (BcuRxFlag[i] == 1) // received msg, and clear the error conter
  812. {
  813. BcuRxErrorCounter[i] = 0;
  814. BcuRxFlag[i] = 0;
  815. continue;
  816. }
  817. if (BcuRxErrorCounter[i] < 3)
  818. {
  819. BcuRxShortError[i] = 0;
  820. BcuRxLongError[i] = 0;
  821. }
  822. else if (BcuRxErrorCounter[i] >= 3 && BcuRxErrorCounter[i] < 13)
  823. {
  824. BcuRxShortError[i] = 1;
  825. BcuRxLongError[i] = 0;
  826. }
  827. else if (BcuRxErrorCounter[i] >= 13)
  828. {
  829. BcuRxShortError[i] = 0;
  830. BcuRxLongError[i] = 1;
  831. BcuRxMsgSetInvalidValue(BcuInTable[i]);
  832. BcuRxErrorCounter[i] = 0;
  833. }
  834. else if (BcuRxErrorCounter[i] == 0xFF)
  835. {
  836. BcuRxErrorCounter[i] = 0xFE;
  837. }
  838. }
  839. if (TimeCounter % 100 == 0) // period <=100ms
  840. {
  841. BcuRxErrorCounter[0]++; // can msg 0x1801D0F3
  842. // if(BcuRxErrorCounter[0]>=13)
  843. BcuRxErrorCounter[2]++; // can msg 0x1880D0F3
  844. // if(BcuRxErrorCounter[2]>=13)
  845. BcuRxErrorCounter[3]++; // can msg 0x1881D0F3
  846. // if(BcuRxErrorCounter[3]>=13)
  847. BcuRxErrorCounter[4]++; // can msg 0x1882D0F3
  848. // if(BcuRxErrorCounter[4]>=13)
  849. BcuRxErrorCounter[5]++; // can msg 0x1883D0F3
  850. // if(BcuRxErrorCounter[5]>=13)
  851. BcuRxErrorCounter[6]++; // can msg 0x1884D0F3
  852. // if(BcuRxErrorCounter[6]>=13)
  853. BcuRxErrorCounter[7]++; // can msg 0x1885D0F3
  854. // if(BcuRxErrorCounter[7]>=13)
  855. BcuRxErrorCounter[8]++; // can msg 0x1886D0F3
  856. // if(BcuRxErrorCounter[8]>=13)
  857. BcuRxErrorCounter[9]++; // can msg 0x1887D0F3
  858. // if(BcuRxErrorCounter[9]>=13)
  859. BcuRxErrorCounter[10]++; // can msg 0x1888D0F3
  860. // if(BcuRxErrorCounter[10]>=13)
  861. BcuRxErrorCounter[13]++; // can msg 0x18C1D0F3
  862. // if(BcuRxErrorCounter[13]>=13)
  863. BcuRxErrorCounter[14]++; // can msg 0x18C2D0F3
  864. // if(BcuRxErrorCounter[14]>=13)
  865. BcuRxErrorCounter[19]++; // can msg 0x18E5D0F3
  866. // if(BcuRxErrorCounter[19]>=13)
  867. BcuRxErrorCounter[20]++; // can msg 0x18E6D0F3
  868. // if(BcuRxErrorCounter[20]>=13)
  869. }
  870. if (TimeCounter % 1000 == 0) // period ==1000ms
  871. {
  872. BcuRxErrorCounter[11]++; // can msg 0x1889D0F3
  873. // if(BcuRxErrorCounter[11]>=13)
  874. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[11]);
  875. BcuRxErrorCounter[12]++; // can msg 0x188AD0F3
  876. // if(BcuRxErrorCounter[12]>=13)
  877. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[12]);
  878. BcuRxErrorCounter[15]++; // can msg 0x18E1D0F3
  879. // if(BcuRxErrorCounter[15]>=13)
  880. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[15]);
  881. BcuRxErrorCounter[16]++; // can msg 0x18E2D0F3
  882. // if(BcuRxErrorCounter[16]>=13)
  883. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[16]);
  884. BcuRxErrorCounter[17]++; // can msg 0x18E3D0F3
  885. // if(BcuRxErrorCounter[17]>=13)
  886. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[17]);
  887. BcuRxErrorCounter[18]++; // can msg 0x18E4D0F3
  888. // if(BcuRxErrorCounter[18]>=13)
  889. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[18]);
  890. BcuRxErrorCounter[26]++; // can msg 0x18FF45F4
  891. // if(BcuRxErrorCounter[26]>=13)
  892. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[26]);
  893. BcuRxErrorCounter[27]++; // can msg 0x18FFC13A
  894. // if(BcuRxErrorCounter[27]>=13)
  895. // printf("can msg 0x%x lost,cycle time1000ms\n",COMInTable[27]);
  896. }
  897. if (TimeCounter % 30000 == 0) // period ==30000ms
  898. {
  899. BcuRxErrorCounter[1]++; // can msg 0x1801D8F3
  900. // if(BcuRxErrorCounter[1]>=13)
  901. // printf("can msg 0x%x lost,cycle time30000ms\n",COMInTable[1]);
  902. }
  903. }
  904. void BcuRxMsgSetInvalidValue(uint32 ID)
  905. {
  906. switch (ID)
  907. {
  908. case 0x1801D0F3:
  909. BMS_ReqVIN = 0xFF;
  910. BMS_ReqHVOff = 0xFF;
  911. break;
  912. case 0x1801D8F3:
  913. BMS_SoftwareVersion = 0xFFFF;
  914. BMS_HardwareVersion = 0xFFFF;
  915. BMS_ProtocolEditionH = 0xFF;
  916. BMS_ProtocolEditionL = 0xFF;
  917. break;
  918. case 0x1880D0F3:
  919. BMS_CharDevNum = 0xFF;
  920. BMS_FtPosRly = 0xFF;
  921. BMS_FtNegRly = 0xFF;
  922. BMS_FtPosCharRly1 = 0xFF;
  923. BMS_FtNegCharRly1 = 0xFF;
  924. BMS_FtPosCharRly2 = 0xFF;
  925. BMS_FtNegCharRly2 = 0xFF;
  926. BMS_FtHeatRly1 = 0xFF;
  927. BMS_FtHeatRly2 = 0xFF;
  928. BMS_StPosRly = 0xFF;
  929. BMS_StNegRly = 0xFF;
  930. BMS_StPreCharRly = 0xFF;
  931. BMS_StPosCharRly1 = 0xFF;
  932. BMS_StNegCharRly1 = 0xFF;
  933. BMS_StPosCharRly2 = 0xFF;
  934. BMS_StNegCharRly2 = 0xFF;
  935. BMS_FtAuxRelayWeld = 0xFF;
  936. BMS_BraOpenCirc = 0xFF;
  937. BMS_FtBackCharCurrOutLim = 0xFF;
  938. BMS_FtPosRlyOpen = 0xFF;
  939. BMS_FtNegRlyOpen = 0xFF;
  940. BMS_FtPosCharRly1Open = 0xFF;
  941. BMS_FtPosCharRly2Open = 0xFF;
  942. BMS_FtNegCharRly1Open = 0xFF;
  943. BMS_FtNegCharRly2Open = 0xFF;
  944. BMS_FtTMSContClose = 0xFF;
  945. BMS_FtTMSContOpen = 0xFF;
  946. BMS_FtTMS = 0xFF;
  947. BMS_Ft24VSpy = 0xFF;
  948. BMS_FtPACKSelfProt = 0xFF;
  949. BMS_FtCharSockTempOver = 0xFF;
  950. BMS_FtTempOutCtrl = 0xFF;
  951. BMS_StPosHeatRly = 0xFF;
  952. BMS_StNegHeatRly = 0xFF;
  953. BMS_CharSysNum = 0xFF;
  954. BMS_FtCode = 0xFF;
  955. break;
  956. case 0x1881D0F3:
  957. BMS_ST1CheckSum = 0xFF;
  958. BMS_ST1Counter = 0xFF;
  959. BMS_Mode = 0xFF;
  960. BMS_AuxRlySt = 0xFF;
  961. BMS_BattBalaSt = 0xFF;
  962. BMS_CharGunSt = 0xFF;
  963. BMS_CharMode = 0xFF;
  964. BMS_CharSt = 0xFF;
  965. BMS_FtLvl = 0xFF;
  966. BMS_FtCellTempDiff = 0xFF;
  967. BMS_FtCellTempHigh = 0xFF;
  968. BMS_FtPACKOverVolt = 0xFF;
  969. BMS_FtPACKUndeVolt = 0xFF;
  970. BMS_FtSOCLow = 0xFF;
  971. BMS_FtCellOverVolt = 0xFF;
  972. BMS_FtCellUndeVolt = 0xFF;
  973. BMS_FtIns = 0xFF;
  974. BMS_FtCellOverVoltDiff = 0xFF;
  975. BMS_FtCharCurrOver = 0xFF;
  976. BMS_FtDisCharCurrOver = 0xFF;
  977. BMS_FtCellTempLow = 0xFF;
  978. BMS_FtBranVoltDifOver = 0xFF;
  979. BMS_FtBMSHardWare = 0xFF;
  980. BMS_FtSOCHigh = 0xFF;
  981. BMS_FtSOCJump = 0xFF;
  982. BMS_FtInCom = 0xFF;
  983. BMS_FtSysMism = 0xFF;
  984. BMS_FtHvIntLock = 0xFF;
  985. BMS_FtSmoke = 0xFF;
  986. BMS_FtFire = 0xFF;
  987. BMS_FtNum = 0xFF;
  988. break;
  989. case 0x1882D0F3:
  990. BMS_PackSOC = 0xFF;
  991. BMS_PackSOH = 0xFF;
  992. BMS_PackCurr = 0xFFFF;
  993. BMS_MaxCharCurr = 0xFFFF;
  994. BMS_MaxDisCharCurr = 0xFFFF;
  995. break;
  996. case 0x1883D0F3:
  997. BMS_PosIns = 0xFFFF;
  998. BMS_NegIns = 0xFFFF;
  999. BMS_BattVolt = 0xFFFF;
  1000. BMS_LinkVolt = 0xFFFF;
  1001. break;
  1002. case 0x1884D0F3:
  1003. BMS_MaxCellTemp = 0xFF;
  1004. BMS_MinCellTemp = 0xFF;
  1005. BMS_AverCellTemp = 0xFF;
  1006. BMS_MaxCellTempCSC = 0xFF;
  1007. BMS_MaxCellTempNum = 0xFF;
  1008. BMS_MinCellTempCSC = 0xFF;
  1009. BMS_MinCellTempNum = 0xFF;
  1010. break;
  1011. case 0x1885D0F3:
  1012. BMS_MaxCellVolt = 0xFFFF;
  1013. BMS_MaxCellVoltCSC = 0xFF;
  1014. BMS_MaxCellVoltNum = 0xFF;
  1015. BMS_AverCellVolt = 0xFFFF;
  1016. break;
  1017. case 0x1886D0F3:
  1018. BMS_MinCellVolt = 0xFFFF;
  1019. BMS_MinCellVoltCSC = 0xFF;
  1020. BMS_MinCellVoltNum = 0xFF;
  1021. BMS_ContChrgCurr = 0xFFFF;
  1022. BMS_ContDisCharCurr = 0xFFFF;
  1023. break;
  1024. case 0x1887D0F3:
  1025. BMS_CharReqVolt = 0xFFFF;
  1026. BMS_CharReqCurr = 0xFFFF;
  1027. BMS_SysInsRes = 0xFFFF;
  1028. BMS_InsDeteSt = 0xFF;
  1029. BMS_FtCharInsLow = 0xFF;
  1030. BMS_FtCurrSenr = 0xFF;
  1031. BMS_FtHeatingFilm = 0xFF;
  1032. BMS_FtMainLoopPreChar = 0xFF;
  1033. BMS_FtAuxLoopPreChar = 0xFF;
  1034. BMS_FtACANLost = 0xFF;
  1035. BMS_FtDCDC = 0xFF;
  1036. BMS_FtSOCDif = 0xFF;
  1037. BMS_FtCellOverDisChar = 0xFF;
  1038. BMS_FtCharOver = 0xFF;
  1039. BMS_FtContDisCharCurrOverLoad = 0xFF;
  1040. BMS_FtContCharCurrOverLoad = 0xFF;
  1041. break;
  1042. case 0x1888D0F3:
  1043. BMS_MaxDisCharPwr = 0xFFFF;
  1044. BMS_MaxCharPwr = 0xFFFF;
  1045. BMS_ContDisCharPwr = 0xFFFF;
  1046. BMS_ContCharPwr = 0xFFFF;
  1047. break;
  1048. case 0x1889D0F3:
  1049. BMS_InstEngyCons = 0xFFFF;
  1050. BMS_TotalEngyCons = 0xFFFF;
  1051. BMS_SOE = 0xFFFF;
  1052. BMS_RmanCharTime = 0xFFFF;
  1053. break;
  1054. case 0x188AD0F3:
  1055. BMS_Gun1DCNegTemp = 0xFF;
  1056. BMS_Gun1DCPosTemp = 0xFF;
  1057. BMS_Gun2DCNegTemp = 0xFF;
  1058. BMS_Gun2DCPosTemp = 0xFF;
  1059. BMS_CurrHeatSt = 0xFF;
  1060. BMS_CurrCoolSt = 0xFF;
  1061. BMS_FtCharCnct = 0xFF;
  1062. BMS_FtOverDisCharCurrDuringChar = 0xFF;
  1063. BMS_FtCharNTC = 0xFF;
  1064. BMS_FtELock = 0xFF;
  1065. BMS_CharNum = 0xFFFF;
  1066. break;
  1067. case 0x18C1D0F3:
  1068. BMS_CellVoltFramNum = 0xFF;
  1069. for (UINT16 i = 0; i < sizeof(BMS_CellVolt) / 2; i++)
  1070. {
  1071. BMS_CellVolt[i] = 0xFFFF;
  1072. }
  1073. break;
  1074. case 0x18C2D0F3:
  1075. BMS_CellTempFramNum = 0xFF;
  1076. BMS_CSC_Code = 0xFF;
  1077. for (UINT8 i = 0; i < sizeof(BMS_CellTemp); i++)
  1078. {
  1079. BMS_CellTemp[i] = 0xFF;
  1080. }
  1081. break;
  1082. case 0x18E1D0F3:
  1083. BMS_Checksum = 0xFF;
  1084. BMS_PackComp = 0xFF;
  1085. BMS_BattCodeLeng = 0xFF;
  1086. BMS_SN[0] = 0xFF;
  1087. BMS_SN[1] = 0xFF;
  1088. BMS_SN[2] = 0xFF;
  1089. BMS_SN[3] = 0xFF;
  1090. BMS_SN[4] = 0xFF;
  1091. BMS_SN[5] = 0xFF;
  1092. break;
  1093. case 0x18E2D0F3:
  1094. BMS_Checksum = 0xFF;
  1095. BMS_SN[6] = 0xFF;
  1096. BMS_SN[7] = 0xFF;
  1097. BMS_SN[8] = 0xFF;
  1098. BMS_SN[9] = 0xFF;
  1099. BMS_SN[10] = 0xFF;
  1100. BMS_SN[11] = 0xFF;
  1101. BMS_SN[12] = 0xFF;
  1102. break;
  1103. case 0x18E3D0F3:
  1104. BMS_Checksum = 0xFF;
  1105. BMS_SN[13] = 0xFF;
  1106. BMS_SN[14] = 0xFF;
  1107. BMS_SN[15] = 0xFF;
  1108. BMS_SN[16] = 0xFF;
  1109. BMS_SN[17] = 0xFF;
  1110. BMS_SN[18] = 0xFF;
  1111. BMS_SN[19] = 0xFF;
  1112. break;
  1113. case 0x18E4D0F3:
  1114. BMS_Checksum = 0xFF;
  1115. BMS_SN[20] = 0xFF;
  1116. BMS_SN[21] = 0xFF;
  1117. BMS_SN[22] = 0xFF;
  1118. BMS_SN[23] = 0xFF;
  1119. BMS_SN[24] = 0xFF;
  1120. BMS_SN[25] = 0xFF;
  1121. BMS_SN[26] = 0xFF;
  1122. break;
  1123. case 0x18E5D0F3:
  1124. BMS_BattRateCap = 0xFFFF;
  1125. BMS_BattRateVolt = 0xFFFF;
  1126. BMS_BattRateEngy = 0xFFFF;
  1127. BMS_BattType = 0xFF;
  1128. BMS_CoolType = 0xFF;
  1129. break;
  1130. case 0x18E6D0F3:
  1131. BMS_CSC_Total = 0xFF;
  1132. // BMS_CellTotal = BMS_CELL_MAX_NUM;
  1133. // BMS_TempTotal = BMS_TEMP_MAX_NUM;
  1134. BMS_CellVoltLevel = 0xFF;
  1135. BMS_CellMinVolt = 0xFF;
  1136. BMS_CellMaxVolt = 0xFF;
  1137. break;
  1138. case 0x18F1D0F3:
  1139. BMS_TotalCharEngy = 0xFFFFFFFF;
  1140. BMS_TotalDisCharEngy = 0xFFFFFFFF;
  1141. BMS_SingleCharEngy = 0xFFFF;
  1142. break;
  1143. case 0x18F2D0F3:
  1144. BMS_TotalBackCharEngy = 0xFFFFFFFF;
  1145. BMS_TotalStaCharEngy = 0xFFFFFFFF;
  1146. break;
  1147. case 0x18F3D0F3:
  1148. BMS_TotalGunCharEngy = 0xFFFFFFFF;
  1149. BMS_TotalGunCharCapy = 0xFFFFFFFF;
  1150. break;
  1151. case 0x18F4D0F3:
  1152. BMS_TotalCharCapy = 0xFFFFFFFF;
  1153. BMS_TotalDisCharCapy = 0xFFFFFFFF;
  1154. BMS_SingleCharCapy = 0xFFFF;
  1155. break;
  1156. case 0x18F5D0F3:
  1157. BMS_TotalBackCharCapy = 0xFFFFFFFF;
  1158. BMS_TotalStaCharCapy = 0xFFFFFFFF;
  1159. BMS_HVBranNum = 0xFF;
  1160. BMS_SingleHVBranchCellNum = 0xFF;
  1161. break;
  1162. case 0x18FF45F4:
  1163. BMS_ReqMode = 0xFF;
  1164. BMS_HVCmd = 0xFF;
  1165. BMS_ChgSts = 0xFF;
  1166. BMS_HVRelaySts = 0xFF;
  1167. BMS_HVVolt = 0xFFFF;
  1168. BMS_SetTemp = 0xFF;
  1169. BMS_Life = 0xFF;
  1170. BMS_CRC = 0xFF;
  1171. break;
  1172. case 0x18FFC13A:
  1173. TMS_WorkStatus = 0xFF;
  1174. TMS_HVRelayST = 0xFF;
  1175. TMS_OutletTemp = 0xFF;
  1176. TMS_InletTemp = 0xFF;
  1177. TMS_ReqPow = 0xFFFF;
  1178. TMS_ErrCode = 0xFF;
  1179. TMS_FaultLevel = 0xFF;
  1180. break;
  1181. default:
  1182. break;
  1183. }
  1184. }
  1185. #endif