Module_RatedCurrent.c 16 KB

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  1. #include <stdio.h>
  2. #include <stdlib.h>
  3. #include <stdint.h>
  4. #include <string.h>
  5. #include <stdarg.h>
  6. #include <time.h>
  7. #include <sys/timeb.h>
  8. #include "Module_RatedCurrent.h"
  9. //------------------------------------------------------------------------------
  10. //------------------------------------------------------------------------------
  11. #define PASS (1)
  12. #define FAIL (-1)
  13. #define log_info(format, args...) StoreLogMsg("[%s:%d][%s][Info] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  14. #define log_warn(format, args...) StoreLogMsg("[%s:%d][%s][Warn] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  15. #define log_error(format, args...) StoreLogMsg("[%s:%d][%s][Error] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  16. //------------------------------------------------------------------------------
  17. static SymStruct modelTable[] = {
  18. { "AC", MODEL_AC },
  19. { "AW", MODEL_AW },
  20. { "AP", MODEL_AP },
  21. { "AX", MODEL_AX },
  22. { "DW", MODEL_DW },
  23. { "DS", MODEL_DS },
  24. { "DM", MODEL_DM },
  25. { "DR", MODEL_DR },
  26. //{ "DM", MODEL_DM },
  27. { "DD", MODEL_DD },
  28. { "DO", MODEL_DO },
  29. { "DQ", MODEL_DQ },
  30. { "DK", MODEL_DK },
  31. { "DX", MODEL_DX },
  32. };
  33. static SymStruct regulationTable[] = {
  34. {"E", REG_CE},
  35. {"U", REG_UL},
  36. {"G", REG_GB},
  37. {"C", REG_CNS},
  38. {"J", REG_JARI},
  39. {"T", REG_TR25},
  40. {"K", REG_KC},
  41. {"B", REG_B},
  42. {"Z", REG_Z},
  43. {"M", REG_M},
  44. {"P", REG_P},
  45. {"I", REG_I},
  46. {"F", REG_F},
  47. {"L", REG_L},
  48. };
  49. static SymStruct powerTable[] = {
  50. {"30", POWER_30W},
  51. {"60", POWER_60W},
  52. {"80", POWER_80W},
  53. {"90", POWER_90W},
  54. {"12", POWER_120W},
  55. {"15", POWER_150W},
  56. {"16", POWER_160W},
  57. {"18", POWER_180W},
  58. {"24", POWER_240W},
  59. {"36", POWER_360W},
  60. {"48", POWER_480W},
  61. {"72", POWER_720W},
  62. };
  63. static SymStruct gunTypeTable[] = {
  64. {"0", GUN_TYPE_0},
  65. {"1", GUN_TYPE_1},
  66. {"2", GUN_TYPE_2},
  67. {"3", GUN_TYPE_3},
  68. {"4", GUN_TYPE_4},
  69. {"5", GUN_TYPE_5},
  70. {"6", GUN_TYPE_6},
  71. {"7", GUN_TYPE_7},
  72. {"8", GUN_TYPE_8},
  73. {"J", GUN_TYPE_J},
  74. {"U", GUN_TYPE_U},
  75. {"V", GUN_TYPE_V},
  76. {"E", GUN_TYPE_E},
  77. {"F", GUN_TYPE_F},
  78. {"G", GUN_TYPE_G},
  79. {"T", GUN_TYPE_T},
  80. {"D", GUN_TYPE_D},
  81. {"K", GUN_TYPE_K},
  82. {"M", GUN_TYPE_M},
  83. {"N", GUN_TYPE_N},
  84. {"P", GUN_TYPE_P},
  85. {"R", GUN_TYPE_R},
  86. {"C", GUN_TYPE_C},
  87. {"W", GUN_TYPE_W},
  88. {"B", GUN_TYPE_B},
  89. {"H", GUN_TYPE_H},
  90. {"A", GUN_TYPE_A},
  91. };
  92. //------------------------------------------------------------------------------
  93. static int StoreLogMsg(const char *fmt, ...)
  94. {
  95. char Buf[4096 + 256] = {0};
  96. char buffer[4096] = {0};
  97. int rc = 0;
  98. va_list args;
  99. struct timeb SeqEndTime;
  100. struct tm *tm;
  101. va_start(args, fmt);
  102. rc = vsnprintf(buffer, sizeof(buffer), fmt, args);
  103. va_end(args);
  104. ftime(&SeqEndTime);
  105. SeqEndTime.time = time(NULL);
  106. tm = localtime(&SeqEndTime.time);
  107. //if (ShmSysConfigAndInfo->SysConfig.SwitchDebugFlag == YES) {
  108. // sprintf(Buf, "%02d:%02d:%02d:%03d - %s",
  109. // tm->tm_hour, tm->tm_min, tm->tm_sec, SeqEndTime.millitm, buffer);
  110. // printf("%s \n", Buf);
  111. //} else {
  112. sprintf(Buf, "echo \"%04d-%02d-%02d %02d:%02d:%02d:%03d - %s\" >> /Storage/SystemLog/[%04d.%02d]SystemLog",
  113. tm->tm_year + 1900,
  114. tm->tm_mon + 1,
  115. tm->tm_mday,
  116. tm->tm_hour,
  117. tm->tm_min,
  118. tm->tm_sec,
  119. SeqEndTime.millitm,
  120. buffer,
  121. tm->tm_year + 1900,
  122. tm->tm_mon + 1);
  123. system(Buf);
  124. //}
  125. return rc;
  126. }
  127. static int keyfromstring(char *key, SymStruct *table, int tableCount)
  128. {
  129. int i = 0;
  130. //int loop = sizeof(table) / sizeof(SymStruct);
  131. SymStruct *sym = NULL;
  132. for (i = 0; i < tableCount; i++) {
  133. sym = (SymStruct *)&table[i];
  134. if (strcmp(sym->key, key) == 0) {
  135. //printf("val = %x\r\n", sym->val);
  136. return sym->val;
  137. }
  138. }
  139. return BADKEY;
  140. }
  141. //------------------------------------------------------------------------------
  142. static uint16_t defaultRatedCurrent(uint32_t gunType, int powerKey)
  143. {
  144. uint16_t ret = RC_0A;
  145. if(powerKey == BADKEY)
  146. powerKey = POWER_30W;
  147. switch (gunType) {
  148. case GUN_TYPE_J:
  149. if(powerKey == POWER_30W)
  150. ret = RC_60A;
  151. else if(powerKey >= POWER_60W)
  152. ret = RC_120A;
  153. break;
  154. case GUN_TYPE_U:
  155. case GUN_TYPE_E:
  156. if(powerKey == POWER_30W)
  157. ret = RC_60A;
  158. else if(powerKey == POWER_60W)
  159. ret = RC_120A;
  160. else if(powerKey > POWER_60W)
  161. ret = RC_200A;
  162. break;
  163. case GUN_TYPE_G:
  164. case GUN_TYPE_B:
  165. if(powerKey == POWER_30W)
  166. ret = RC_60A;
  167. else if(powerKey == POWER_60W)
  168. ret = RC_120A;
  169. else if(powerKey > POWER_60W)
  170. ret = RC_250A;
  171. break;
  172. case GUN_TYPE_M:
  173. case GUN_TYPE_N:
  174. if(powerKey == POWER_30W)
  175. ret = RC_80A;
  176. else if(powerKey == POWER_60W)
  177. ret = RC_120A;
  178. else if(powerKey > POWER_60W)
  179. ret = RC_200A;
  180. break;
  181. case GUN_TYPE_K:
  182. ret = RC_200A;
  183. break;
  184. case GUN_TYPE_V:
  185. case GUN_TYPE_F:
  186. case GUN_TYPE_P:
  187. case GUN_TYPE_R:
  188. ret = RC_500A;
  189. break;
  190. case GUN_TYPE_T:
  191. case GUN_TYPE_D:
  192. ret = RC_300A;
  193. break;
  194. case GUN_TYPE_H:
  195. ret = RC_500A;
  196. break;
  197. case GUN_TYPE_A:
  198. ret = RC_400A;
  199. break;
  200. case GUN_TYPE_0:
  201. ret = RC_0A;
  202. break;
  203. case GUN_TYPE_1:
  204. case GUN_TYPE_2:
  205. case GUN_TYPE_3:
  206. case GUN_TYPE_4:
  207. case GUN_TYPE_5:
  208. case GUN_TYPE_6:
  209. case GUN_TYPE_7:
  210. case GUN_TYPE_8:
  211. default:
  212. log_error("The gun type is not on the default current table\r\n");
  213. return RC_0A;
  214. break;
  215. }
  216. return ret;
  217. }
  218. static uint16_t exchangeRatingCur(uint32_t key)
  219. {
  220. switch (key) {
  221. //60A J
  222. case DW_CE_30_J:
  223. case DM_CE_30_J:
  224. case DW_CE_30_E:
  225. case DM_CE_30_E:
  226. //60A U
  227. case DW_UL_30_U:
  228. case DM_UL_30_U:
  229. case DW_CNS_30_U:
  230. case DM_CNS_30_U:
  231. //60A J
  232. case DW_UL_30_J:
  233. case DM_UL_30_J:
  234. case DW_CNS_30_J:
  235. case DM_CNS_30_J:
  236. //60A G
  237. case DM_CNS_30_G:
  238. case DS_UL_30_G:
  239. return RC_60A; //rating current 60A
  240. //80A M
  241. case DW_CE_30_M:
  242. case DM_CE_30_M:
  243. //80A N
  244. case DW_UL_30_N:
  245. case DM_UL_30_N:
  246. case DW_CNS_30_N:
  247. case DM_CNS_30_N:
  248. return RC_80A; //rating current 80A
  249. //120A J
  250. case DS_CE_60_J:
  251. case DS_CE_90_J:
  252. case DS_CE_120_J:
  253. case DS_CE_150_J:
  254. case DS_CE_180_J:
  255. case DS_UL_60_J:
  256. case DS_UL_90_J:
  257. case DS_UL_120_J:
  258. case DS_UL_150_J:
  259. case DS_UL_180_J:
  260. case DS_CNS_60_J:
  261. case DS_CNS_90_J:
  262. case DS_CNS_120_J:
  263. case DS_CNS_150_J:
  264. case DS_CNS_180_J:
  265. //120A U
  266. case DS_UL_60_U:
  267. case DS_CNS_60_U:
  268. //120A E
  269. case DS_CE_60_E:
  270. return RC_120A; //rating current 120A
  271. //200A U
  272. case DD_CE_180_U:
  273. case DD_CE_360_U:
  274. case DS_UL_90_U:
  275. case DS_UL_120_U:
  276. case DS_UL_150_U:
  277. case DS_UL_180_U:
  278. case DD_UL_360_U:
  279. case DS_CNS_90_U:
  280. case DS_CNS_120_U:
  281. case DS_CNS_150_U:
  282. case DS_CNS_180_U:
  283. case DD_CNS_180_U:
  284. case DD_CNS_360_U:
  285. //200A E
  286. case DS_CE_90_E:
  287. case DS_CE_120_E:
  288. case DS_CE_150_E:
  289. case DS_CE_180_E:
  290. //200A K
  291. case DS_CE_90_K:
  292. case DS_CE_120_K:
  293. case DS_CE_150_K:
  294. case DS_CE_180_K:
  295. case DD_CE_180_K:
  296. case DD_CE_360_K:
  297. case DS_UL_90_K:
  298. case DS_UL_120_K:
  299. case DS_UL_150_K:
  300. case DS_UL_180_K:
  301. case DD_UL_180_K:
  302. case DD_UL_360_K:
  303. return RC_200A; //rating current 200A
  304. //250A G
  305. case DS_CNS_120_G:
  306. return RC_250A;
  307. //300A T
  308. case DS_CE_90_T:
  309. case DS_CE_120_T:
  310. case DS_CE_150_T:
  311. case DS_CE_180_T:
  312. case DD_CE_180_T:
  313. case DD_CE_360_T:
  314. case DS_UL_90_T:
  315. case DS_UL_120_T:
  316. case DS_UL_150_T:
  317. case DS_UL_180_T:
  318. case DD_UL_180_T:
  319. case DD_UL_360_T:
  320. case DS_CNS_90_T:
  321. case DS_CNS_120_T:
  322. case DS_CNS_150_T:
  323. case DS_CNS_180_T:
  324. case DD_CNS_180_T:
  325. case DD_CNS_360_T:
  326. //300A D
  327. case DS_CE_90_D:
  328. case DS_CE_120_D:
  329. case DS_CE_150_D:
  330. case DS_CE_180_D:
  331. case DD_CE_180_D:
  332. case DD_CE_360_D:
  333. case DS_UL_90_D:
  334. case DS_UL_120_D:
  335. case DS_UL_150_D:
  336. case DS_UL_180_D:
  337. case DD_UL_180_D:
  338. case DD_UL_360_D:
  339. case DS_CNS_90_D:
  340. case DS_CNS_120_D:
  341. case DS_CNS_150_D:
  342. case DS_CNS_180_D:
  343. case DD_CNS_180_D:
  344. case DD_CNS_360_D:
  345. return RC_300A;
  346. //500A V
  347. case DD_CE_180_V:
  348. case DD_UL_180_V:
  349. case DD_CNS_180_V:
  350. case DD_CE_360_V:
  351. case DD_UL_360_V:
  352. case DD_CNS_360_V:
  353. case DO_CE_180_V:
  354. case DO_UL_180_V:
  355. case DO_CNS_180_V:
  356. case DO_CE_360_V:
  357. case DO_UL_360_V:
  358. case DO_CNS_360_V:
  359. //500A F
  360. case DD_CE_360_F:
  361. case DO_CE_360_F:
  362. //P
  363. case DD_CE_360_P:
  364. case DD_UL_360_R:
  365. case DD_CNS_360_R:
  366. return RC_500A; //rating current 500A
  367. default:
  368. return RC_0A; //rating current 200A
  369. }
  370. }
  371. static void exchangeGunTypeAndVolValue(uint8_t key, GunTypeAndVolInfo *gunAndVol)
  372. {
  373. GunTypeAndVolInfo *pGunAndVol = (GunTypeAndVolInfo *)gunAndVol;
  374. switch (key) {
  375. case GUN_TYPE_0:// : none
  376. case GUN_TYPE_1:// : IEC 62196-2 Type 1/SAE J1772 Plug
  377. case GUN_TYPE_2:// : IEC 62196-2 Type 1/SAE J1772 Socket
  378. case GUN_TYPE_3:// : IEC 62196-2 Type 2 Plug
  379. case GUN_TYPE_4:// : IEC 62196-2 Type 2 Socket
  380. case GUN_TYPE_5:// : GB/T AC Plug
  381. case GUN_TYPE_6:// : GB/T AC Socket
  382. case GUN_TYPE_7:// :CCS2 AC Plug
  383. case GUN_TYPE_8:// :Type E socket
  384. pGunAndVol->GunType = Gun_Type_AC;
  385. pGunAndVol->GunVoltage = VOL_CHADEMO;
  386. break;
  387. case GUN_TYPE_J:// : CHAdeMO
  388. case GUN_TYPE_K:
  389. pGunAndVol->GunType = Gun_Type_Chademo;
  390. pGunAndVol->GunVoltage = VOL_CHADEMO;
  391. break;
  392. case GUN_TYPE_U:// : Natural cooling CCS1 combo
  393. case GUN_TYPE_E:// : Natural cooling CCS2 combo
  394. case GUN_TYPE_V:// : Liquid cooling CCS1 combo
  395. case GUN_TYPE_F:// : Liquid cooling CCS2 combo
  396. case GUN_TYPE_T:// : Rema CCS1 300A
  397. case GUN_TYPE_D:// : Rema CCS2 300A
  398. case GUN_TYPE_M:// : CCS2 80A
  399. case GUN_TYPE_N:// : CCS1 80A
  400. case GUN_TYPE_P:// : Phoenix CCS2 500A 水冷
  401. case GUN_TYPE_R:// : Phoenix CCS1 500A 水冷
  402. pGunAndVol->GunType = Gun_Type_CCS_2;
  403. pGunAndVol->GunVoltage = VOL_CCS;
  404. break;
  405. case GUN_TYPE_G:// : GBT DC
  406. case GUN_TYPE_B:// : GBT YG PT1000
  407. case GUN_TYPE_H:// : WOER GBT 500A
  408. case GUN_TYPE_A:// : WOER GBT 400A
  409. pGunAndVol->GunType = Gun_Type_GB;
  410. pGunAndVol->GunVoltage = VOL_GBT;
  411. break;
  412. }
  413. }
  414. static int exchangePowerValue(uint8_t key)
  415. {
  416. switch (key) {
  417. case POWER_30W:
  418. return 300;
  419. case POWER_60W:
  420. return 600;
  421. case POWER_80W:
  422. return 800;
  423. case POWER_90W:
  424. return 900;
  425. case POWER_120W:
  426. return 1200;
  427. case POWER_150W:
  428. return 1500;
  429. case POWER_160W:
  430. return 1600;
  431. case POWER_180W:
  432. return 1800;
  433. case POWER_240W:
  434. return 2400;
  435. case POWER_360W:
  436. return 3600;
  437. case POWER_480W:
  438. return 4800;
  439. case POWER_720W:
  440. return 7200;
  441. default:
  442. log_error("Power is not defined, return 30kw\r\n");
  443. return 300;
  444. break;
  445. }
  446. }
  447. /**
  448. * [RatedCurrentParsing : Parsing Rating Current]
  449. * @param pModuleName [description]
  450. * @param pDestStruct [save parameter structure array]
  451. * @param parsingCount [parameter structure array count, array 0, 1 for DC Gun, 2 for AC Gun]
  452. * @return [return -1 is module name format non match.]
  453. */
  454. int RatedCurrentParsing(char *pModuleName, void *pDestStruct)
  455. {
  456. uint8_t gunTypeIndex = 0;
  457. uint8_t modelKey = 0;
  458. int reguKey = 0;
  459. int powerKey = 0;
  460. int gunTypeKey = 0;
  461. uint16_t ratingCurVal = 0;
  462. int i = 0;
  463. uint32_t ret = 0;
  464. char model[3] = {'\0'};
  465. char regulation[2] = {'\0'};
  466. char power[3] = {'\0'};
  467. char gunType[2] = {'\0'};
  468. ParsingRatedCur *pParsingInfo = NULL;
  469. RateCurInfo *pGunRateCurInfo = NULL;
  470. GunTypeAndVolInfo fGunAndVol = {0};
  471. if (pModuleName == NULL || (strlen(pModuleName) <= 0) || pDestStruct == NULL) {
  472. log_error("Failed to parse source\r\n");
  473. return FAIL;
  474. }
  475. pParsingInfo = (ParsingRatedCur *)pDestStruct;
  476. strncpy(model, &pModuleName[0], 2);
  477. model[2] = '\0';
  478. strncpy(regulation, &pModuleName[3], 1);
  479. regulation[1] = '\0';
  480. strncpy(power, &pModuleName[4], 2);
  481. power[2] = '\0';
  482. //get max power value
  483. powerKey = keyfromstring(&power[0], &powerTable[0], sizeof(powerTable) / sizeof(SymStruct));
  484. pParsingInfo->Power = exchangePowerValue(powerKey);
  485. pParsingInfo->GetGunCount = 0;
  486. for (i = 0; i < sizeof(pParsingInfo->ParsingInfo) / sizeof(RateCurInfo); i++) {
  487. pGunRateCurInfo = (RateCurInfo *)&pParsingInfo->ParsingInfo[pParsingInfo->GetGunCount];
  488. if (i == 0) {
  489. gunTypeIndex = DC_ONE;
  490. } else if (i == 1) {
  491. gunTypeIndex = DC_SEC;
  492. } else if (i == 2) {
  493. gunTypeIndex = AC_ONE;
  494. }
  495. strncpy(gunType, &pModuleName[gunTypeIndex], 1);
  496. gunType[1] = '\0';
  497. modelKey = keyfromstring(&model[0], &modelTable[0], sizeof(modelTable) / sizeof(SymStruct));
  498. reguKey = keyfromstring(&regulation[0], &regulationTable[0], sizeof(regulationTable) / sizeof(SymStruct));
  499. if ((gunTypeKey = keyfromstring(&gunType[0], &gunTypeTable[0], sizeof(gunTypeTable) / sizeof(SymStruct))) == GUN_TYPE_0) {
  500. log_error("Rated Current Parsing the type of gun is none\r\n");
  501. continue;
  502. //return FAIL;
  503. }
  504. ret = 0;
  505. ret = ((modelKey << 24) | (reguKey << 16) | (powerKey << 8) | gunTypeKey);
  506. ratingCurVal = exchangeRatingCur(ret);
  507. if (ratingCurVal == RC_0A) {
  508. ratingCurVal = defaultRatedCurrent(gunTypeKey, powerKey);
  509. }
  510. memset((uint8_t *)&fGunAndVol, 0, sizeof(GunTypeAndVolInfo));
  511. exchangeGunTypeAndVolValue(gunTypeKey, &fGunAndVol);
  512. pGunRateCurInfo->GunType = fGunAndVol.GunType;
  513. pGunRateCurInfo->Current = ratingCurVal;
  514. pGunRateCurInfo->Voltage = fGunAndVol.GunVoltage;
  515. pParsingInfo->GetGunCount++;
  516. //log_info("%d GunType = %d, Rating current = %d, Vol = %d, Power = %d\r\n",
  517. // i,
  518. // pGunRateCurInfo->GunType,
  519. // pGunRateCurInfo->Current,
  520. // pGunRateCurInfo->Voltage,
  521. // pGunRateCurInfo->Power);
  522. }
  523. return PASS;
  524. }
  525. //------------------------------------------------------------------------------
  526. //Test function
  527. //------------------------------------------------------------------------------
  528. void TestParsingRatingCurrent(void)
  529. {
  530. uint8_t i = 0;
  531. ParsingRatedCur fParsingRateCur = {0};
  532. RatedCurrentParsing("DDYC362V0UE2AD", &fParsingRateCur);
  533. log_info("Get gun = %d\r\n", fParsingRateCur.GetGunCount);
  534. for (i = 0; i < fParsingRateCur.GetGunCount; i++) {
  535. log_info("%d GunType = %d, Rating current = %d, Vol = %d, Power = %d\r\n",
  536. i,
  537. fParsingRateCur.ParsingInfo[i].GunType,
  538. fParsingRateCur.ParsingInfo[i].Current,
  539. fParsingRateCur.ParsingInfo[i].Voltage,
  540. fParsingRateCur.Power);
  541. }
  542. //log_info("%d GunType = %d, Rating current = %d, Vol = %d, Power = %d\r\n",
  543. // 0,
  544. // fGunRateCurInfo[0].GunType,
  545. // fGunRateCurInfo[0].Current,
  546. // fGunRateCurInfo[0].Voltage,
  547. // fGunRateCurInfo[0].Power);
  548. RatedCurrentParsing("DMYE301E00D2PH", &fParsingRateCur);
  549. log_info("Get gun = %d\r\n", fParsingRateCur.GetGunCount);
  550. for (i = 0; i < fParsingRateCur.GetGunCount; i++) {
  551. log_info("%d GunType = %d, Rating current = %d, Vol = %d, Power = %d\r\n",
  552. i,
  553. fParsingRateCur.ParsingInfo[i].GunType,
  554. fParsingRateCur.ParsingInfo[i].Current,
  555. fParsingRateCur.ParsingInfo[i].Voltage,
  556. fParsingRateCur.Power);
  557. }
  558. }