flash_master.c 18 KB

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  1. /************************************************************************
  2. Project: Welling Motor Control Paltform
  3. Filename: flash_master.c
  4. Partner Filename: flash_master.h
  5. Description: flash master driver
  6. Complier: IAR Embedded Workbench for ARM 8.40.2
  7. CPU TYPE : STM32F30x
  8. *************************************************************************
  9. Copyright (c) 20 Welling Motor Technology(Shanghai) Co. Ltd.
  10. All rights reserved.
  11. *************************************************************************
  12. *************************************************************************
  13. Revising History (ECL of this file):
  14. M0_20220410, by Ling Baizhou, create this file;
  15. ************************************************************************/
  16. /************************************************************************
  17. Beginning of File, do not put anything above here except notes
  18. Compiler Directives:
  19. *************************************************************************/
  20. #ifndef _FLASH_MASTER_C
  21. #define _FLASH_MASTER_C_
  22. #endif
  23. /************************************************************************
  24. Included File
  25. *************************************************************************/
  26. //#include "syspar.h"
  27. #include "flash_master.h"
  28. //#include "at32f421.h"//#include "stm32f10x.h"
  29. #include "queue.h"
  30. #include "string.h"
  31. #include "user.h"
  32. #include "i2c_master.h"
  33. #include "MosResCalib.h"
  34. #include "ti_msp_dl_config.h"
  35. #define FLASH_PAGE_SIZE (0x400u) //1k扇区单位
  36. #define MAIN_SECTOR_SIZE ((uint32_t) 1024)
  37. //FLASH_PARA_TYPE flash_stPara;
  38. History_PARAMETER stHistoryPara;
  39. UWORD dataIndex;
  40. //从指定地址开始写入多个数据
  41. UBYTE pageNum_test=0;
  42. volatile DL_FLASHCTL_COMMAND_STATUS gCmdStatus;
  43. uint32_t gDataArray64[] = {0, 0};
  44. uint32_t countToWrite_MinSize=0;
  45. uint32_t countToWrite_remaiSize=0;
  46. UWORD uwFlash_IRQ_Enble=0;
  47. void flash_voMosResParaInit(void);
  48. void flash_voProductParaInit(void);
  49. // typedef struct
  50. // {
  51. // UWORD stMotorPara;
  52. // UWORD stBikePara;
  53. // UWORD stMControlPara;
  54. // UWORD stSensorPara;
  55. // UWORD stAssistPara;
  56. // UWORD flash_stPara;
  57. // UWORD EepromMosPara;
  58. // UWORD uwCRC;
  59. // UWORD uwCRC1;
  60. // } STRUCT_FLASHCHECK;
  61. inline void BSL_CI_disableCache(void)
  62. {
  63. DL_CORE_configInstruction(CPUSS_CTL_ICACHE_DISABLE,
  64. CPUSS_CTL_PREFETCH_DISABLE, CPUSS_CTL_LITEN_DISABLE);
  65. }
  66. inline void BSL_CI_enableCache(void)
  67. {
  68. DL_CORE_configInstruction(CPUSS_CTL_ICACHE_ENABLE,
  69. CPUSS_CTL_PREFETCH_ENABLE, CPUSS_CTL_LITEN_ENABLE);
  70. }
  71. //addr_end =1024整数倍-1
  72. uint8_t CMD_USER_API_Flash_Range_Erase(uint32_t addrStart,uint32_t addr_end)
  73. {
  74. uint8_t ret = 0;
  75. uint8_t erase_status = (uint8_t) 1;
  76. uint32_t main_flash_start_address = addrStart;
  77. uint32_t main_flash_end_address =addr_end;;
  78. uint32_t data_pointer;
  79. data_pointer = addrStart;
  80. /* Check if BSL is unlocked */
  81. /* If the address range is valid, then erase the memory range */
  82. if ((addrStart >= main_flash_start_address) &&
  83. (addr_end <= main_flash_end_address) && (addrStart <= addr_end))
  84. {
  85. // BSL_CI_disableCache();
  86. while (data_pointer <= addr_end) {
  87. DL_FlashCTL_unprotectSector(
  88. FLASHCTL, data_pointer, DL_FLASHCTL_REGION_SELECT_MAIN);
  89. DL_FlashCTL_eraseMemoryFromRAM(
  90. FLASHCTL, data_pointer, DL_FLASHCTL_COMMAND_SIZE_SECTOR);
  91. erase_status = erase_status &
  92. (uint8_t) DL_FlashCTL_waitForCmdDone(FLASHCTL);
  93. data_pointer = data_pointer + MAIN_SECTOR_SIZE;
  94. }
  95. // DL_FlashCTL_unprotectSector(
  96. // FLASHCTL, addr_end, DL_FLASHCTL_REGION_SELECT_MAIN);
  97. // DL_FlashCTL_eraseMemoryFromRAM(
  98. // FLASHCTL, addr_end, DL_FLASHCTL_COMMAND_SIZE_SECTOR);
  99. // erase_status =
  100. // erase_status & (uint8_t) DL_FlashCTL_waitForCmdDone(FLASHCTL);
  101. // BSL_CI_enableCache();
  102. /* Check if all flash sector erase got passed */
  103. if (erase_status == (uint8_t) 0)
  104. {
  105. ret = 2;
  106. }
  107. }
  108. else {
  109. ret = 3;
  110. }
  111. return ret;
  112. }
  113. //STRUCT_FLASHCHECK Flash_test={0x1234,0x5678,0x9012,0x2345,0x6789,0x1234,0x5678,0x9876,0x4321};
  114. // STRUCT_FLASHCHECK Flash_testread={0};
  115. ULONG endtAddress;
  116. void FLASH_voWriteMoreData(ULONG startAddress, UWORD *writeData, UWORD countToWrite, UBYTE Era_enble)
  117. {
  118. uint8_t gErrorType = (uint8_t) 1;
  119. UBYTE pageNum = (countToWrite-1)/(FLASH_PAGE_SIZE/2)+1;
  120. endtAddress=startAddress + countToWrite * 2-1;
  121. pageNum_test=pageNum;
  122. if (startAddress > FLASH_END
  123. || ((startAddress + countToWrite * 2-1) > (FLASH_END))
  124. || (countToWrite < 1)
  125. /*||(pageNum>1)*/)
  126. {
  127. return; //非法地址
  128. }
  129. /* Disable all interrupts */
  130. // DISABLE_IRQ; /* MCU Core and GPIO configuration */
  131. if(Era_enble!=0)
  132. {
  133. CMD_USER_API_Flash_Range_Erase(startAddress,startAddress+FLASH_PAGE_SIZE-1);
  134. }
  135. countToWrite_MinSize = countToWrite/4;
  136. countToWrite_remaiSize= countToWrite%4;
  137. for (dataIndex = 0; dataIndex < countToWrite_MinSize; dataIndex++)
  138. {
  139. gDataArray64[0]=(uint32_t)(writeData[dataIndex*4+1] <<16) +writeData[dataIndex*4];
  140. gDataArray64[1]=(uint32_t)(writeData[dataIndex*4+3] <<16) +writeData[dataIndex*4+2];
  141. DL_FlashCTL_unprotectSector(
  142. FLASHCTL, startAddress, DL_FLASHCTL_REGION_SELECT_MAIN);
  143. gCmdStatus = DL_FlashCTL_programMemoryFromRAM64WithECCGenerated(
  144. FLASHCTL, (startAddress + dataIndex * 8 ), &gDataArray64[0]);
  145. // if (gCmdStatus != DL_FLASHCTL_COMMAND_STATUS_PASSED) {
  146. // /* If command did not pass, set error flag. */
  147. // gErrorType = 15;
  148. // }
  149. // flash_halfword_program(startAddress + dataIndex * 2, writeData[dataIndex]);
  150. }
  151. if(countToWrite_remaiSize !=0)
  152. {
  153. if(countToWrite_remaiSize==1)
  154. {
  155. writeData[dataIndex*4+1]=0xffff;
  156. writeData[dataIndex*4+2]=0xffff;
  157. writeData[dataIndex*4+3]=0xffff;
  158. }
  159. else if(countToWrite_remaiSize==2)
  160. {
  161. writeData[dataIndex*4+2]=0xffff;
  162. writeData[dataIndex*4+3]=0xffff;
  163. }
  164. else if(countToWrite_remaiSize==3)
  165. {
  166. writeData[dataIndex*4+3]=0xffff;
  167. }
  168. gDataArray64[0]=(uint32_t)(writeData[dataIndex*4+1] <<16) +writeData[dataIndex*4];
  169. gDataArray64[1]=(uint32_t)(writeData[dataIndex*4+3] <<16) +writeData[dataIndex*4+2];
  170. DL_FlashCTL_unprotectSector(
  171. FLASHCTL, startAddress, DL_FLASHCTL_REGION_SELECT_MAIN);
  172. gCmdStatus = DL_FlashCTL_programMemoryFromRAM64WithECCGenerated(
  173. FLASHCTL, (startAddress + dataIndex * 8 ), &gDataArray64[0]);
  174. // if (gCmdStatus != DL_FLASHCTL_COMMAND_STATUS_PASSED) {
  175. // /* If command did not pass, set error flag. */
  176. // gErrorType = 22;
  177. // }
  178. }
  179. // flash_lock();// 上锁写保护
  180. /* Enable all interrupts */
  181. // if(uwFlash_IRQ_Enble!=0)
  182. // {
  183. // ENABLE_IRQ;
  184. // }
  185. }
  186. //读取指定地址的半字(16位数据)
  187. UWORD FLASH_ReadWord(ULONG address)
  188. {
  189. return *(__IO UWORD *)address;
  190. }
  191. //从指定地址开始读取多个数据
  192. void FLASH_voReadMoreData(ULONG startAddress, UWORD *readData, UWORD countToRead)
  193. {
  194. UWORD dataIndex;
  195. for (dataIndex = 0; dataIndex < countToRead; dataIndex++)
  196. {
  197. readData[dataIndex] = FLASH_ReadWord(startAddress + dataIndex * 2);
  198. }
  199. }
  200. /***************************************************************
  201. Function: flash_HistoryWrite
  202. Description: write ERROR_LOG to flash
  203. Call by: ;
  204. Input Variables: N/A
  205. Output/Return Variables: N/A
  206. Subroutine Call: N/A;
  207. Reference: N/A
  208. ****************************************************************/
  209. void flash_HistoryWrite(void)
  210. {
  211. UWORD countHistory_len = sizeof(History_PARAMETER) / 2; ;
  212. stHistoryPara.uwCRC = uart_uwCRCCcitt((UBYTE*)(&stHistoryPara), (countHistory_len-1)*2);
  213. FLASH_voWriteMoreData(StartServerManageHistory_Address, (UWORD *)(&stHistoryPara), countHistory_len,1);
  214. }
  215. /***************************************************************
  216. Function: flash_voErrorRead
  217. Description: read ERROR_LOG to flash
  218. Call by: ;
  219. Input Variables: N/A
  220. Output/Return Variables: N/A
  221. Subroutine Call: N/A;
  222. Reference: N/A
  223. ****************************************************************/
  224. void flash_HistoryRead(void)
  225. {
  226. UWORD countHistory_len = (sizeof(History_PARAMETER)) / 2;
  227. FLASH_voReadMoreData(StartServerManageHistory_Address, (UWORD *)(&stHistoryPara), countHistory_len);
  228. UWORD uwCRC = uart_uwCRCCcitt((UBYTE*)(&stHistoryPara), (countHistory_len-1)*2);
  229. if(stHistoryPara.uwCRC != uwCRC)
  230. {
  231. CodeHistoryParaDelete();
  232. mn_voEEHistoryParaUpdate();
  233. flash_HistoryWrite();//
  234. }
  235. }
  236. /***************************************************************
  237. Function: flash_voErrorWrite
  238. Description: write ERROR_LOG to flash
  239. Call by: ;
  240. Input Variables: N/A
  241. Output/Return Variables: N/A
  242. Subroutine Call: N/A;
  243. Reference: N/A
  244. ****************************************************************/
  245. void flash_voErrorWrite(void)
  246. {
  247. UWORD count_len = sizeof(ERROR_LOG) * QUEUE_SIZE/ 2;
  248. que_stFlashErrorLog.stLog[0].ubHead = que_stFlashErrorLog.ubHead;
  249. que_stFlashErrorLog.stLog[0].ubRear = que_stFlashErrorLog.ubRear;
  250. FLASH_voWriteMoreData(StartServerManageError_Address, (UWORD *)(&que_stFlashErrorLog.stLog), count_len,1);
  251. }
  252. /***************************************************************
  253. Function: flash_voErrorRead
  254. Description: read ERROR_LOG to flash
  255. Call by: ;
  256. Input Variables: N/A
  257. Output/Return Variables: N/A
  258. Subroutine Call: N/A;
  259. Reference: N/A
  260. ****************************************************************/
  261. void flash_voErrorRead(void)
  262. {
  263. UWORD count_len = sizeof(ERROR_LOG) * QUEUE_SIZE/ 2;
  264. FLASH_voReadMoreData(StartServerManageError_Address, (UWORD *)(&que_stFlashErrorLog.stLog), count_len);
  265. que_stFlashErrorLog.ubHead = que_stFlashErrorLog.stLog[0].ubHead;
  266. que_stFlashErrorLog.ubRear = que_stFlashErrorLog.stLog[0].ubRear;
  267. if(que_stFlashErrorLog.ubHead == 0xFF)
  268. {
  269. que_voInit(&que_stFlashErrorLog);
  270. }
  271. }
  272. /***************************************************************
  273. Function: flash_voErrorClear
  274. Description: Clear Err Address data-2k
  275. Call by: ;
  276. Input Variables: N/A
  277. Output/Return Variables: N/A
  278. Subroutine Call: N/A;
  279. Reference: N/A
  280. ****************************************************************/
  281. void flash_voErrorClear(void)
  282. {
  283. UBYTE erase_status;
  284. /* Disable all interrupts */
  285. // DISABLE_IRQ; /* MCU Core and GPIO configuration */
  286. // DL_FlashCTL_unprotectSector(
  287. // FLASHCTL, StartServerManageError_Address, DL_FLASHCTL_REGION_SELECT_MAIN);
  288. // gCmdStatus = DL_FlashCTL_eraseMemoryFromRAM(
  289. // FLASHCTL, StartServerManageError_Address, DL_FLASHCTL_COMMAND_SIZE_SECTOR);
  290. CMD_USER_API_Flash_Range_Erase(StartServerManageError_Address,EndServerManageError_Address);
  291. /* Enable all interrupts */
  292. // ENABLE_IRQ;
  293. }
  294. void flash_voSysParaWrite(void)
  295. {
  296. UWORD count_len = (sizeof(SYSTEM_PARAMETER2) ) / 2;
  297. UWORD tmpCRC;
  298. tmpCRC = Syspara2.uwCRC;
  299. Syspara2.uwCRC = uart_uwCRCCcitt((UBYTE*)(&Syspara2), (count_len-1)*2);
  300. if(Syspara2.uwCRC != tmpCRC)
  301. {
  302. FLASH_voWriteMoreData(StartServerManageSysPara_Address, (UWORD *)(&Syspara2), count_len,1);
  303. }
  304. //test
  305. // UWORD count_len = (sizeof(STRUCT_FLASHCHECK) ) / 2;
  306. // FLASH_voWriteMoreData(StartServerManageSysPara_Address, (UWORD *)(&Flash_test), count_len,1);
  307. }
  308. //UWORD count_len_test=0;
  309. void flash_voSysParaRead(void)
  310. {
  311. //test
  312. // UWORD count_len = (sizeof(STRUCT_FLASHCHECK)) / 2;
  313. // count_len_test=count_len;
  314. // FLASH_voReadMoreData(StartServerManageSysPara_Address, (UWORD *)(&Flash_testread), count_len);
  315. UWORD count_len = (sizeof(SYSTEM_PARAMETER2)) / 2;
  316. // count_len_test=count_len;
  317. FLASH_voReadMoreData(StartServerManageSysPara_Address, (UWORD *)(&Syspara2), count_len);
  318. UWORD uwCRC = uart_uwCRCCcitt((UBYTE*)(&Syspara2), (count_len-1)*2);
  319. if(Syspara2.uwCRC != uwCRC)
  320. {
  321. flash_voSysParaInit();
  322. }
  323. // //mos校准参数更新
  324. MosResInside.bllibFinishFlag=TRUE;
  325. memcpy(&MosCal_A.RES, &Syspara2.EepromMosPara.EEP_MOSA, sizeof(Syspara2.EepromMosPara.EEP_MOSA));
  326. memcpy(&MosCal_B.RES, &Syspara2.EepromMosPara.EEP_MOSB, sizeof(Syspara2.EepromMosPara.EEP_MOSB));
  327. memcpy(&MosCal_C.RES, &Syspara2.EepromMosPara.EEP_MOSC, sizeof(Syspara2.EepromMosPara.EEP_MOSC));
  328. MosResRead();
  329. }
  330. void flash_voSysParaInit(void)
  331. {
  332. /*重置所有的参数,不包括历史记录*/
  333. // SYSTEM_PARAMETER2 Sysparaint = SYSPARA2;
  334. Assist_PARAMETER FlashAssistPara= I2CAssistPara;
  335. MOTOR_PARAMETER FlashMotorPara=I2CMotorPara;
  336. BIKE_PARAMETER FlashBikePara=I2CBikePara;
  337. MControl_PARAMETER FlashMControlPara=I2CMControlPara;
  338. Sensor_PARAMETER FlashSensorPara=I2CSensorPara;
  339. Ride_PARAMETER FlashRidePara=I2CRidePara;
  340. BIKE_PARAMETER2 FlashBikePara2=I2CBikePara2;
  341. Syspara2.stAssistPara = FlashAssistPara;//Sysparaint.stAssistPara;
  342. Syspara2.stBikePara = FlashBikePara;//Sysparaint.stBikePara;
  343. Syspara2.stMControlPara = FlashMControlPara;//Sysparaint.stMControlPara;
  344. Syspara2.stMotorPara = FlashMotorPara;//Sysparaint.stMotorPara;
  345. Syspara2.stSensorPara = FlashSensorPara;//Sysparaint.stSensorPara;
  346. Syspara2.stRidePara=FlashRidePara;
  347. Syspara2.stBikePara2=FlashBikePara2;
  348. // memset(&Syspara2.flash_stPara.ubMotorVersion, 0, sizeof(FLASH_PARA_TYPE));
  349. SLONG Flash_TorqueAssGain[15][4] = TORQUE_ASSIST_DEFAULT;
  350. SLONG Flash_CadAssGain[5][4] = CADENCE_ASSIST_DEFAULT;
  351. memcpy(&Syspara2.flash_stPara.slTorqAssGain[0], &Flash_TorqueAssGain[0], sizeof(Flash_TorqueAssGain));
  352. memcpy(&Syspara2.flash_stPara.slCadAssGain[0], &Flash_CadAssGain[0], sizeof(Flash_CadAssGain));
  353. CodeParaInit();
  354. Can_voUpdateMC_UpcInfo();
  355. memcpy(&Syspara2.flash_stPara.stTestParaInfo, &MC_UpcInfo.stTestParaInfo, sizeof(MC_UpcInfo.stTestParaInfo));
  356. flash_voMosResParaInit();
  357. flash_voSysParaWrite();
  358. }
  359. //----mos内阻参数存储
  360. // void flash_voMosResParaRead(void)
  361. // {
  362. // UWORD count_len = (sizeof(MOSEEPROM_Struct)) / 2;
  363. // count_len_test=count_len;
  364. // FLASH_voReadMoreData(StartMosPara_Address, (UWORD *)(&Syspara2.EepromMosPara), count_len);
  365. // UWORD uwCRC = uart_uwCRCCcitt((UBYTE*)(&EepromMosPara), (count_len-1)*2);
  366. //
  367. // if(Syspara2.EepromMosPara.uwCRC != uwCRC)
  368. // {
  369. // flash_voMosResParaInit();
  370. // }
  371. // MosResInside.bllibFinishFlag=TRUE;
  372. // memcpy(&MosCal_A.RES, &Syspara2.EepromMosPara.EEP_MOSA, sizeof(Syspara2.EepromMosPara.EEP_MOSA));
  373. // memcpy(&MosCal_B.RES, &Syspara2.EepromMosPara.EEP_MOSB, sizeof(Syspara2.EepromMosPara.EEP_MOSB));
  374. // memcpy(&MosCal_C.RES, &Syspara2.EepromMosPara.EEP_MOSC, sizeof(Syspara2.EepromMosPara.EEP_MOSC));
  375. //
  376. // MosResRead();
  377. // }
  378. //
  379. // void flash_voMosResParaWrite(void)
  380. // {
  381. // UWORD count_len = (sizeof(MOSEEPROM_Struct) ) / 2;
  382. // UWORD tmpCRC;
  383. // tmpCRC = Syspara2.EepromMosPara.uwCRC;
  384. // Syspara2.EepromMosPara.uwCRC = uart_uwCRCCcitt((UBYTE*)(&Syspara2.EepromMosPara), (count_len-1)*2);
  385. // if(EepromMosPara.uwCRC != tmpCRC)
  386. // {
  387. // FLASH_voWriteMoreData(StartMosPara_Address, (UWORD *)(&Syspara2.EepromMosPara), count_len,1);
  388. // }
  389. // }
  390. void flash_voMosResParaInit(void)
  391. {
  392. Syspara2.EepromMosPara.EEP_K50=1245;
  393. Syspara2.EepromMosPara.EEP_K75=1393;
  394. Syspara2.EepromMosPara.EEP_K100=1540;
  395. Syspara2.EepromMosPara.EEP_K125=1704;
  396. Syspara2.EepromMosPara.EEP_K150=1868;
  397. Syspara2.EepromMosPara.EEP_MOSA.uwTEMP_RES0=3050;
  398. Syspara2.EepromMosPara.EEP_MOSA.uwTEMP_RES1=3424;
  399. Syspara2.EepromMosPara.EEP_MOSA.uwTEMP_RES2=3797;
  400. Syspara2.EepromMosPara.EEP_MOSA.uwTEMP_RES3=4249;
  401. Syspara2.EepromMosPara.EEP_MOSA.uwTEMP_RES4=4697;
  402. Syspara2.EepromMosPara.EEP_MOSA.uwTEMP_RES5=5197;
  403. Syspara2.EepromMosPara.EEP_MOSA.uwTEMP_RES6=5697;
  404. Syspara2.EepromMosPara.EEP_MOSB.uwTEMP_RES0=3050;
  405. Syspara2.EepromMosPara.EEP_MOSB.uwTEMP_RES1=3424;
  406. Syspara2.EepromMosPara.EEP_MOSB.uwTEMP_RES2=3797;
  407. Syspara2.EepromMosPara.EEP_MOSB.uwTEMP_RES3=4249;
  408. Syspara2.EepromMosPara.EEP_MOSB.uwTEMP_RES4=4697;
  409. Syspara2.EepromMosPara.EEP_MOSB.uwTEMP_RES5=5197;
  410. Syspara2.EepromMosPara.EEP_MOSB.uwTEMP_RES6=5697;
  411. Syspara2.EepromMosPara.EEP_MOSC.uwTEMP_RES0=3050;
  412. Syspara2.EepromMosPara.EEP_MOSC.uwTEMP_RES1=3424;
  413. Syspara2.EepromMosPara.EEP_MOSC.uwTEMP_RES2=3797;
  414. Syspara2.EepromMosPara.EEP_MOSC.uwTEMP_RES3=4249;
  415. Syspara2.EepromMosPara.EEP_MOSC.uwTEMP_RES4=4697;
  416. Syspara2.EepromMosPara.EEP_MOSC.uwTEMP_RES5=5197;
  417. Syspara2.EepromMosPara.EEP_MOSC.uwTEMP_RES6=5697;
  418. // Syspara2.MosResInside.bllibFinishFlag=FALSE;
  419. }
  420. void flash_voProductParaWrite(void)
  421. {
  422. UWORD count_len = (sizeof(PRODUCT_INFO_Struct) ) / 2;
  423. UWORD tmpCRC;
  424. tmpCRC = Productionpara.uwCRC;
  425. Productionpara.uwCRC = uart_uwCRCCcitt((UBYTE*)(&Productionpara), (count_len-1)*2);
  426. if(Productionpara.uwCRC != tmpCRC)
  427. {
  428. FLASH_voWriteMoreData(StartServerManageProtuct_Address, (UWORD *)(&Productionpara), count_len,1);
  429. }
  430. }
  431. void flash_voProductParaRead(void)
  432. {
  433. UWORD count_len = (sizeof(PRODUCT_INFO_Struct)) / 2;
  434. // count_len_test=count_len;
  435. FLASH_voReadMoreData(StartServerManageProtuct_Address, (UWORD *)(&Productionpara), count_len);
  436. UWORD uwCRC = uart_uwCRCCcitt((UBYTE*)(&Productionpara), (count_len-1)*2);
  437. if(Productionpara.uwCRC != uwCRC)
  438. {
  439. flash_voProductParaInit();
  440. }
  441. }
  442. void flash_voProductParaInit(void)
  443. {
  444. memset(&Productionpara.ubMotorVersion, 0, sizeof(PRODUCT_INFO_Struct));
  445. }