Module_PsuComm.c 44 KB

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  1. #include "Module_PsuComm.h"
  2. #define ARRAY_SIZE(A) (sizeof(A) / sizeof(A[0]))
  3. #define PASS 1
  4. #define FAIL -1
  5. #define YES 1
  6. #define NO 0
  7. #define DERATING 30
  8. #define ELEMENT_NOT_FIND 255
  9. #define CHK_VOL_RANGE 50
  10. #define CHK_CUR_RANGE 10
  11. #define DERATING_RANGE 100
  12. #define ZERO_CURRENT 10 // 該值須保持最小為 1A
  13. #define ZERO_VOLTAGE 50
  14. #define STOP_CURRENT 30
  15. #define PSU_MIN_CUR 100
  16. #define EQUAL 0
  17. struct SysConfigAndInfo *ShmSysConfigAndInfo;
  18. struct StatusCodeData *ShmStatusCodeData;
  19. struct PsuData *ShmPsuData;
  20. bool libInitialize = false;
  21. byte getAvailableCapOffset = 5;
  22. byte deratingKeepCount = 0;
  23. float carReqVol = 0;
  24. float carReqCur = 0;
  25. float evseOutVol = 0;
  26. float evseOutCur = 0;
  27. void PRINTF_FUNC(char *string, ...);
  28. int StoreLogMsg(const char *fmt, ...);
  29. #define DEBUG_INFO(format, args...) StoreLogMsg("[%s:%d][%s][Info] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  30. #define DEBUG_WARN(format, args...) StoreLogMsg("[%s:%d][%s][Warn] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  31. #define DEBUG_ERROR(format, args...) StoreLogMsg("[%s:%d][%s][Error] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  32. unsigned long GetTimeoutValue(struct timeval _sour_time);
  33. unsigned long GetTimeoutValue(struct timeval _sour_time)
  34. {
  35. struct timeval _end_time;
  36. gettimeofday(&_end_time, NULL);
  37. return 1000000 * (_end_time.tv_sec - _sour_time.tv_sec) + _end_time.tv_usec - _sour_time.tv_usec;
  38. }
  39. int StoreLogMsg(const char *fmt, ...)
  40. {
  41. char Buf[4096+256];
  42. char buffer[4096];
  43. time_t CurrentTime;
  44. struct tm *tm;
  45. va_list args;
  46. va_start(args, fmt);
  47. int rc = vsnprintf(buffer, sizeof(buffer), fmt, args);
  48. va_end(args);
  49. memset(Buf,0,sizeof(Buf));
  50. CurrentTime = time(NULL);
  51. tm=localtime(&CurrentTime);
  52. sprintf(Buf,"echo \"%04d-%02d-%02d %02d:%02d:%02d - %s\" >> /Storage/SystemLog/[%04d.%02d]SystemLog",
  53. tm->tm_year+1900,tm->tm_mon+1,tm->tm_mday,tm->tm_hour,tm->tm_min,tm->tm_sec,
  54. buffer,
  55. tm->tm_year+1900,tm->tm_mon+1);
  56. system(Buf);
  57. return rc;
  58. }
  59. void PRINTF_FUNC(char *string, ...)
  60. {
  61. va_list args;
  62. char buffer[4096];
  63. va_start(args, string);
  64. vsnprintf(buffer, sizeof(buffer), string, args);
  65. va_end(args);
  66. if (ShmSysConfigAndInfo->SysConfig.SwitchDebugFlag == YES)
  67. printf("%s \n", buffer);
  68. else
  69. DEBUG_INFO("%s \n", buffer);
  70. }
  71. //=================================
  72. // Common routine
  73. //=================================
  74. size_t FindIndex(const int a[], size_t size, int value, byte group)
  75. {
  76. size_t index = 0;
  77. while ( index < size && a[index] != value ) ++index;
  78. return (index == size ? ELEMENT_NOT_FIND : group);
  79. }
  80. byte FindTargetGroup(byte address)
  81. {
  82. byte _group = ELEMENT_NOT_FIND;
  83. if (ShmPsuData->GroupCount == 1)
  84. _group = 0;
  85. else
  86. {
  87. _group = FindIndex(connector_1, ShmPsuData->PsuGroup[0].GroupPresentPsuQuantity, address, 0);
  88. if (_group == ELEMENT_NOT_FIND)
  89. _group = FindIndex(connector_2, ShmPsuData->PsuGroup[1].GroupPresentPsuQuantity, address, 1);
  90. }
  91. return _group;
  92. }
  93. bool IsOverModuleCount(byte count)
  94. {
  95. bool result = false;
  96. if (count >= ShmPsuData->SystemPresentPsuQuantity)
  97. result = true;
  98. return result;
  99. }
  100. //=================================
  101. // Save data to share memory Function
  102. //=================================
  103. bool FindChargingInfoData(byte target, struct ChargingInfoData **chargingData)
  104. {
  105. for (byte index = 0; index < CHAdeMO_QUANTITY; index++)
  106. {
  107. if (ShmSysConfigAndInfo->SysInfo.ChademoChargingData[index].Index == target)
  108. {
  109. chargingData[target] = &ShmSysConfigAndInfo->SysInfo.ChademoChargingData[index];
  110. return true;
  111. }
  112. }
  113. for (byte index = 0; index < CCS_QUANTITY; index++)
  114. {
  115. if (ShmSysConfigAndInfo->SysInfo.CcsChargingData[index].Index == target)
  116. {
  117. chargingData[target] = &ShmSysConfigAndInfo->SysInfo.CcsChargingData[index];
  118. return true;
  119. }
  120. }
  121. for (byte index = 0; index < GB_QUANTITY; index++)
  122. {
  123. if (ShmSysConfigAndInfo->SysInfo.GbChargingData[index].Index == target)
  124. {
  125. chargingData[target] = &ShmSysConfigAndInfo->SysInfo.GbChargingData[index];
  126. return true;
  127. }
  128. }
  129. return false;
  130. }
  131. //=================================
  132. // Alarm code mapping to share memory Function
  133. //=================================
  134. // 檢查 Byte 中某個 Bit 的值
  135. // _byte : 欲改變的 byte
  136. // _bit : 該 byte 的第幾個 bit
  137. unsigned char mask_table[] = { 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80 };
  138. unsigned char DetectBitValue(unsigned char _byte, unsigned char _bit)
  139. {
  140. return ( _byte & mask_table[_bit] ) != 0x00;
  141. }
  142. void AbnormalStopAnalysis(byte gun_index, int errCode)
  143. {
  144. for (char i = 0; i < 3; i++)
  145. {
  146. unsigned char byteIndex = (errCode >> (8 * i)) & 0xff;
  147. for (char bitIndex = 0; bitIndex < 8; bitIndex++)
  148. {
  149. if(DetectBitValue(byteIndex , bitIndex) == 1)
  150. {
  151. switch(byteIndex)
  152. {
  153. case 0:
  154. {
  155. if (bitIndex == 0)
  156. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuOutputShortCircuit = YES;
  157. else if (bitIndex == 5)
  158. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuDcSideShutDown = YES;
  159. }
  160. break;
  161. case 1:
  162. {
  163. if (bitIndex == 1)
  164. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuFailureAlarm = YES;
  165. else if (bitIndex == 2)
  166. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuProtectionAlarm = YES;
  167. else if (bitIndex == 3)
  168. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuFanFailureAlarm = YES;
  169. else if (bitIndex == 4)
  170. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuCriticalPointOTP = YES;
  171. else if (bitIndex == 5)
  172. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuDcSideShutDown = YES;
  173. }
  174. break;
  175. case 2:
  176. {
  177. if (bitIndex == 0)
  178. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuPowerLimitedState = YES;
  179. else if (bitIndex == 1)
  180. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuDuplicateID = YES;
  181. else if (bitIndex == 2)
  182. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuThreePhaseOnputImbalance = YES;
  183. else if (bitIndex == 3)
  184. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuThreePhaseInputInadequate = YES;
  185. else if (bitIndex == 4)
  186. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuThreePhaseInputInadequate = YES;
  187. else if (bitIndex == 5)
  188. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuInputUVP = YES;
  189. else if (bitIndex == 6)
  190. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuInputOVP = YES;
  191. }
  192. break;
  193. }
  194. }
  195. // else
  196. // {
  197. // switch (byteIndex) {
  198. // case 0: {
  199. // if (bitIndex == 0)
  200. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuOutputShortCircuit = NO;
  201. // else if (bitIndex == 5)
  202. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuDcSideShutDown = NO;
  203. // }
  204. // break;
  205. // case 1: {
  206. // if (bitIndex == 1)
  207. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuFailureAlarm = NO;
  208. // else if (bitIndex == 2)
  209. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuProtectionAlarm = NO;
  210. // else if (bitIndex == 3)
  211. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuFanFailureAlarm = NO;
  212. // else if (bitIndex == 4)
  213. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuCriticalPointOTP = NO;
  214. // else if (bitIndex == 5)
  215. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuDcSideShutDown = NO;
  216. // }
  217. // break;
  218. // case 2: {
  219. // if (bitIndex == 1)
  220. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuDuplicateID = NO;
  221. // if (bitIndex == 2)
  222. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuThreePhaseOnputImbalance = NO;
  223. // else if (bitIndex == 3)
  224. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuThreePhaseInputInadequate = NO;
  225. // else if (bitIndex == 4)
  226. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuThreePhaseInputInadequate = NO;
  227. // else if (bitIndex == 5)
  228. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuInputUVP = NO;
  229. // else if (bitIndex == 6)
  230. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.PsuInputOVP = NO;
  231. // }
  232. // break;
  233. // }
  234. // }
  235. }
  236. }
  237. }
  238. //=================================
  239. // Callback Function
  240. //=================================
  241. void GetStatusCallback(byte group, byte address, byte temp, int alarm)
  242. {
  243. if (IsOverModuleCount(address))
  244. return;
  245. byte group1 = FindTargetGroup(address);
  246. if (group1 == 1)
  247. address -= ShmPsuData->PsuGroup[group1 - 1].GroupPresentPsuQuantity;
  248. ShmPsuData->PsuGroup[group1].PsuModule[address].CriticalTemp1 = temp;
  249. ShmPsuData->PsuGroup[group1].PsuModule[address].CriticalTemp2 = temp;
  250. ShmPsuData->PsuGroup[group1].PsuModule[address].CriticalTemp3 = temp;
  251. ShmPsuData->PsuGroup[group1].PsuModule[address].ExletTemp = temp;
  252. ShmPsuData->PsuGroup[group1].PsuModule[address].AlarmCode = alarm;
  253. AbnormalStopAnalysis(group1, alarm);
  254. //printf("alarm = %d \n", alarm);
  255. }
  256. void GetModuleCountCallback(byte group, byte count)
  257. {
  258. if (group == SYSTEM_CMD)
  259. ShmPsuData->SystemPresentPsuQuantity = count;
  260. else
  261. {
  262. ShmPsuData->PsuGroup[group].GroupPresentPsuQuantity = count;
  263. }
  264. }
  265. void GetMaxPowerAndCur(unsigned char mode, int ratingCur, int *pow, int *cur)
  266. {
  267. unsigned short maxCurrent = ShmSysConfigAndInfo->SysConfig.MaxChargingCurrent * 10;
  268. unsigned short maxPower = ShmSysConfigAndInfo->SysConfig.MaxChargingPower * 10;
  269. if (mode == _MAIN_CHARGING_MODE_AVER)
  270. {
  271. maxCurrent /= 2;
  272. maxPower /= 2;
  273. }
  274. if (maxPower != 0 && maxPower <= *pow)
  275. *pow = maxPower;
  276. if (maxCurrent != 0 && maxCurrent <= *cur)
  277. *cur = maxCurrent;
  278. if (ratingCur != 0 && ratingCur <= *cur)
  279. *cur = ratingCur;
  280. }
  281. void GetAvailableCapCallback(byte address, short maxVol, short minVol, short maxCur, short totalPow)
  282. {
  283. int _groupPower = 0, _groupCurrent = 0;
  284. byte group = FindTargetGroup(address);
  285. if (group == 1)
  286. address -= ShmPsuData->PsuGroup[group - 1].GroupPresentPsuQuantity;
  287. if (chargingInfo[group]->DeratingChargingCurrent == 0)
  288. ShmPsuData->PsuGroup[group].PsuModule[address].AvailableCurrent = PSU_MIN_CUR;
  289. else
  290. ShmPsuData->PsuGroup[group].PsuModule[address].AvailableCurrent = maxCur;
  291. ShmPsuData->PsuGroup[group].PsuModule[address].AvailablePower = totalPow;
  292. for (byte index = 0; index < ShmPsuData->PsuGroup[group].GroupPresentPsuQuantity; index++)
  293. {
  294. _groupCurrent += ShmPsuData->PsuGroup[group].PsuModule[index].AvailableCurrent;
  295. _groupPower += ShmPsuData->PsuGroup[group].PsuModule[index].AvailablePower;
  296. }
  297. // 各群得到最大輸出能力 (電流、Power)
  298. ShmPsuData->PsuGroup[group].GroupAvailableCurrent = _groupCurrent;
  299. ShmPsuData->PsuGroup[group].GroupAvailablePower = _groupPower;
  300. chargingInfo[group]->MaximumChargingVoltage = maxVol;
  301. int _power = 0, _current = 0, _ratingcurrent = 0;
  302. for (byte index = 0; index < ShmPsuData->GroupCount; index++)
  303. {
  304. _power += ShmPsuData->PsuGroup[index].GroupAvailablePower;
  305. _current += ShmPsuData->PsuGroup[index].GroupAvailableCurrent;
  306. _ratingcurrent += chargingInfo[index]->DeratingChargingCurrent;
  307. }
  308. ShmPsuData->SystemAvailableCurrent = _current;
  309. ShmPsuData->SystemAvailablePower = _power;
  310. if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_AVER ||
  311. (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag >= _REASSIGNED_GET_NEW_CAP &&
  312. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag <= _REASSIGNED_RELAY_M_TO_A))
  313. {
  314. int halfPow = ShmPsuData->PsuGroup[group].GroupAvailablePower;
  315. int halfCur = ShmPsuData->PsuGroup[group].GroupAvailableCurrent;
  316. int ratingCur = chargingInfo[group]->DeratingChargingCurrent;
  317. GetMaxPowerAndCur(_MAIN_CHARGING_MODE_AVER, ratingCur, &halfPow, &halfCur);
  318. // if ((ShmSysConfigAndInfo->SysInfo.ReAssignedFlag >= _REASSIGNED_GET_NEW_CAP &&
  319. // ShmSysConfigAndInfo->SysInfo.ReAssignedFlag <= _REASSIGNED_RELAY_M_TO_A))
  320. // {
  321. // chargingInfo[group]->AvailableChargingCurrent = DERATING_RANGE;
  322. // chargingInfo[group]->AvailableChargingPower = ShmPsuData->PsuGroup[group].GroupAvailablePower;
  323. // }
  324. // else
  325. {
  326. // 以下狀況 -> 槍資訊中的最大輸出能力,為該群的輸出能力
  327. // 1. 如不是最大充
  328. // 2. 智能切換成均充過程
  329. chargingInfo[group]->AvailableChargingCurrent = halfCur;
  330. chargingInfo[group]->AvailableChargingPower = halfPow;
  331. }
  332. }
  333. else if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_MAX)
  334. {
  335. GetMaxPowerAndCur(_MAIN_CHARGING_MODE_MAX, _ratingcurrent, &_power, &_current);
  336. if (ShmSysConfigAndInfo->SysInfo.IsAlternatvieConf == YES)
  337. {
  338. for (byte count = 0; count < ShmSysConfigAndInfo->SysConfig.TotalConnectorCount; count++)
  339. {
  340. chargingInfo[count]->MaximumChargingVoltage = maxVol;
  341. chargingInfo[count]->AvailableChargingCurrent = _current;
  342. chargingInfo[count]->AvailableChargingPower = _power;
  343. }
  344. }
  345. else
  346. {
  347. // 如果是最大充,該槍資訊中的輸出能力為各群輸出能力的和
  348. chargingInfo[group]->AvailableChargingCurrent = _current;
  349. chargingInfo[group]->AvailableChargingPower = _power;
  350. }
  351. }
  352. }
  353. void GetFwCallback(byte address, short dcSwVer, short pfcSwVer, short hwVer)
  354. {
  355. if (IsOverModuleCount(address))
  356. return;
  357. byte group = FindTargetGroup(address);
  358. sprintf((char *)ShmPsuData->PsuVersion[address].FwPrimaryVersion, "DC %d.%02d", (dcSwVer & 0xFF00) >> 8, dcSwVer & 0xFF);
  359. sprintf((char *)ShmPsuData->PsuVersion[address].FwSecondVersion, "PFC %d.%02d", (pfcSwVer & 0xFF00) >> 8, pfcSwVer & 0xFF);
  360. if (group == 1)
  361. address -= ShmPsuData->PsuGroup[group - 1].GroupPresentPsuQuantity;
  362. sprintf((char *)ShmPsuData->PsuGroup[group].PsuModule[address].FwVersion, "DC %d.%02d", (dcSwVer & 0xFF00) >> 8, dcSwVer & 0xFF);
  363. //DEBUG_INFO("fw Ver. = %s \n", ShmPsuData->PsuGroup[group].PsuModule[address].FwVersion);
  364. }
  365. void GetInputVoltageCallback(byte address, unsigned short vol1, unsigned short vol2, unsigned short vol3)
  366. {
  367. if (IsOverModuleCount(address))
  368. return;
  369. byte group = FindTargetGroup(address);
  370. if (group == 1)
  371. address -= ShmPsuData->PsuGroup[group - 1].GroupPresentPsuQuantity;
  372. ShmPsuData->PsuGroup[group].PsuModule[address].InputVoltageL1 = vol1;
  373. ShmPsuData->PsuGroup[group].PsuModule[address].InputVoltageL2 = vol2;
  374. ShmPsuData->PsuGroup[group].PsuModule[address].InputVoltageL3 = vol3;
  375. }
  376. void GetPresentOutputCallback(byte group, unsigned short outVol, unsigned short outCur)
  377. {
  378. unsigned short outputVol = outVol;
  379. unsigned short outputCur = outCur;
  380. // PSU Group - 電壓
  381. ShmPsuData->PsuGroup[group].GroupPresentOutputVoltage = outputVol;
  382. // PSU Group - 電流
  383. ShmPsuData->PsuGroup[group].GroupPresentOutputCurrent = outputCur;
  384. if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_MAX)
  385. {
  386. outputVol = 0;
  387. outputCur = 0;
  388. for (byte index = 0; index < ShmPsuData->GroupCount; index++)
  389. {
  390. if (ShmPsuData->PsuGroup[index].GroupPresentOutputVoltage > outputVol)
  391. outputVol = ShmPsuData->PsuGroup[index].GroupPresentOutputVoltage;
  392. outputCur += ShmPsuData->PsuGroup[index].GroupPresentOutputCurrent;
  393. }
  394. // 黑白機
  395. if (ShmSysConfigAndInfo->SysInfo.IsAlternatvieConf == YES)
  396. {
  397. for (byte count = 0; count < ShmSysConfigAndInfo->SysConfig.TotalConnectorCount; count++)
  398. {
  399. float _vol_buf = outputVol;
  400. float _cur_buf = outputCur;
  401. // EVSE - 電壓
  402. _vol_buf /= 10;
  403. chargingInfo[count]->PresentChargingVoltage = _vol_buf;
  404. // EVSE - 電流
  405. _cur_buf /= 10;
  406. chargingInfo[count]->PresentChargingCurrent = _cur_buf;
  407. }
  408. }
  409. if ((chargingInfo[group]->SystemStatus >= S_PREPARING_FOR_EVSE && chargingInfo[group]->SystemStatus <= S_COMPLETE) ||
  410. (chargingInfo[group]->SystemStatus >= S_CCS_PRECHARGE_ST0 && chargingInfo[group]->SystemStatus <= S_CCS_PRECHARGE_ST1))
  411. {
  412. float _vol_buf = outputVol;
  413. float _cur_buf = outputCur;
  414. // EVSE - 電壓
  415. _vol_buf /= 10;
  416. chargingInfo[group]->PresentChargingVoltage = _vol_buf;
  417. // EVSE - 電流
  418. _cur_buf /= 10;
  419. chargingInfo[group]->PresentChargingCurrent = _cur_buf;
  420. }
  421. }
  422. else
  423. {
  424. float _vol_buf = ShmPsuData->PsuGroup[group].GroupPresentOutputVoltage;
  425. float _cur_buf = ShmPsuData->PsuGroup[group].GroupPresentOutputCurrent;
  426. // EVSE - 電壓
  427. _vol_buf /= 10;
  428. chargingInfo[group]->PresentChargingVoltage = _vol_buf;
  429. // EVSE - 電流
  430. _cur_buf /= 10;
  431. chargingInfo[group]->PresentChargingCurrent = _cur_buf;
  432. }
  433. // PRINTF_FUNC("Gun_%d, PresentChargingCurrent = %f \n", group,
  434. // chargingInfo[group]->PresentChargingCurrent);
  435. }
  436. void GetFanSpeedCallback(byte address, unsigned int fanSpeed)
  437. {
  438. if (IsOverModuleCount(address))
  439. return;
  440. byte group = FindTargetGroup(address);
  441. if (group == 1)
  442. address -= ShmPsuData->PsuGroup[group - 1].GroupPresentPsuQuantity;
  443. ShmPsuData->PsuGroup[group].PsuModule[address].FanSpeed_1 = fanSpeed;
  444. ShmPsuData->PsuGroup[group].PsuModule[address].FanSpeed_2 = fanSpeed;
  445. ShmPsuData->PsuGroup[group].PsuModule[address].FanSpeed_3 = fanSpeed;
  446. ShmPsuData->PsuGroup[group].PsuModule[address].FanSpeed_4 = fanSpeed;
  447. }
  448. void GetIavailableCallback(byte address, unsigned short Iavail, unsigned short Vext)
  449. {
  450. if (IsOverModuleCount(address))
  451. return;
  452. //PRINTF_FUNC("address = %d, Iavail = %d \n", address, Iavail);
  453. byte group = FindTargetGroup(address);
  454. if (group == 1)
  455. address -= ShmPsuData->PsuGroup[group - 1].GroupPresentPsuQuantity;
  456. //PRINTF_FUNC("group = %d, address_%d, Iavail = %d \n", group, address, Iavail);
  457. ShmPsuData->PsuGroup[group].PsuModule[address].IAvailableCurrent = Iavail;
  458. bool isPass = true;
  459. int totalCur = 0;
  460. if (Iavail == 0)
  461. {
  462. for (byte count = 0; count < 2; count++)
  463. {
  464. chargingInfo[group]->SampleChargingCur[count] = Iavail;
  465. }
  466. }
  467. else
  468. {
  469. // 該群的可輸出電流
  470. for (byte index = 0; index < ShmPsuData->PsuGroup[group].GroupPresentPsuQuantity; index++)
  471. {
  472. totalCur += ShmPsuData->PsuGroup[group].PsuModule[index].IAvailableCurrent;
  473. }
  474. for (byte count = 0; count < 2; count++)
  475. {
  476. if (chargingInfo[group]->SampleChargingCur[count] == 0)
  477. {
  478. chargingInfo[group]->SampleChargingCur[count] = totalCur;
  479. return;
  480. }
  481. else
  482. {
  483. if (chargingInfo[group]->SampleChargingCur[count] != totalCur)
  484. {
  485. chargingInfo[group]->SampleChargingCur[count] = totalCur;
  486. isPass = false;
  487. continue;
  488. }
  489. }
  490. }
  491. }
  492. if (isPass)
  493. {
  494. //PRINTF_FUNC("rating pass value = %d \n", totalCur);
  495. chargingInfo[group]->DeratingChargingCurrent = totalCur;
  496. }
  497. }
  498. //==========================================
  499. // Init all share memory
  500. //==========================================
  501. int InitShareMemory()
  502. {
  503. int result = PASS;
  504. int MeterSMId;
  505. //creat ShmSysConfigAndInfo
  506. if ((MeterSMId = shmget(ShmSysConfigAndInfoKey, sizeof(struct SysConfigAndInfo), 0777)) < 0)
  507. {
  508. #ifdef SystemLogMessage
  509. DEBUG_ERROR("shmget ShmSysConfigAndInfo NG %d \n");
  510. #endif
  511. result = FAIL;
  512. }
  513. else if ((ShmSysConfigAndInfo = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  514. {
  515. #ifdef SystemLogMessage
  516. DEBUG_ERROR("shmat ShmSysConfigAndInfo NG \n");
  517. #endif
  518. result = FAIL;
  519. }
  520. else
  521. {}
  522. //creat ShmStatusCodeData
  523. if ((MeterSMId = shmget(ShmStatusCodeKey, sizeof(struct StatusCodeData), 0777)) < 0)
  524. {
  525. #ifdef SystemLogMessage
  526. DEBUG_ERROR("shmget ShmStatusCodeData NG \n");
  527. #endif
  528. result = FAIL;
  529. }
  530. else if ((ShmStatusCodeData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  531. {
  532. #ifdef SystemLogMessage
  533. DEBUG_ERROR("shmat ShmStatusCodeData NG \n");
  534. #endif
  535. result = FAIL;
  536. }
  537. else
  538. {}
  539. //creat ShmPsuData
  540. if ((MeterSMId = shmget(ShmPsuKey, sizeof(struct PsuData), 0777)) < 0)
  541. {
  542. #ifdef SystemLogMessage
  543. DEBUG_ERROR("shmget ShmPsuData NG \n");
  544. #endif
  545. result = FAIL;
  546. }
  547. else if ((ShmPsuData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  548. {
  549. #ifdef SystemLogMessage
  550. DEBUG_ERROR("shmat ShmPsuData NG \n");
  551. #endif
  552. result = FAIL;
  553. }
  554. memset(ShmPsuData,0,sizeof(struct PsuData));
  555. return result;
  556. }
  557. //================================================
  558. // Main process
  559. //================================================
  560. void InitialPsuData()
  561. {
  562. ShmPsuData->SystemPresentPsuQuantity = 0;
  563. for (byte _groupCount = 0; _groupCount < ARRAY_SIZE(ShmPsuData->PsuGroup); _groupCount++)
  564. {
  565. ShmPsuData->PsuGroup[_groupCount].GroupPresentPsuQuantity = 0;
  566. ShmPsuData->PsuGroup[_groupCount].GroupAvailablePower = 0;
  567. ShmPsuData->PsuGroup[_groupCount].GroupAvailableCurrent = 0;
  568. }
  569. ShmPsuData->Work_Step = _INIT_PSU_STATUS;
  570. }
  571. void Initialization()
  572. {
  573. bool isPass = false;
  574. while(!isPass)
  575. {
  576. isPass = true;
  577. for (byte _index = 0; _index < _gunCount; _index++)
  578. {
  579. if (!FindChargingInfoData(_index, &chargingInfo[0]))
  580. {
  581. DEBUG_ERROR("Module_PsuComm : FindChargingInfoData false \n");
  582. isPass = false;
  583. break;
  584. }
  585. }
  586. }
  587. if (ShmSysConfigAndInfo->SysInfo.IsAlternatvieConf == YES)
  588. ShmPsuData->GroupCount = 1;
  589. else
  590. ShmPsuData->GroupCount = _gunCount;
  591. char EvsePower[2];
  592. EvsePower[2] = '\0';
  593. char count = 0;
  594. byte psuTarIndex = 0;
  595. // 解析 ModelName 取得各槍各有幾個 PSU 及編號
  596. if (strlen((char *) ShmSysConfigAndInfo->SysConfig.ModelName) >= 6)
  597. {
  598. strncpy(EvsePower, (char *)(ShmSysConfigAndInfo->SysConfig.ModelName + 4), 2);
  599. if (strcmp(EvsePower, "15") == EQUAL)
  600. count = 5;
  601. else if (strcmp(EvsePower, "30") == EQUAL)
  602. count = 1;
  603. else if (strcmp(EvsePower, "60") == EQUAL)
  604. count = 2;
  605. else if (strcmp(EvsePower, "18") == EQUAL)
  606. count = 6;
  607. else if (strcmp(EvsePower, "36") == EQUAL)
  608. count = 12;
  609. if (count > 0)
  610. {
  611. if (ShmPsuData->GroupCount == 1)
  612. conn_1_count = count;
  613. else if (ShmPsuData->GroupCount == 2)
  614. {
  615. if(count % 2 > 0)
  616. conn_1_count = (count / 2) + 1;
  617. else
  618. conn_1_count = (count / 2);
  619. conn_2_count = count - conn_1_count;
  620. }
  621. for(byte psuIndex = 0; psuIndex < conn_1_count; psuIndex++)
  622. {
  623. connector_1[psuIndex] = psuTarIndex;
  624. psuTarIndex++;
  625. }
  626. for(byte psuIndex = 0; psuIndex < conn_2_count; psuIndex++)
  627. {
  628. connector_2[psuIndex] = psuTarIndex;
  629. psuTarIndex++;
  630. }
  631. for(byte psuIndex = 0; psuIndex < conn_1_count; psuIndex++)
  632. PRINTF_FUNC("Connector 1 - Number = %d \n", connector_1[psuIndex]);
  633. for(byte psuIndex = 0; psuIndex < conn_2_count; psuIndex++)
  634. PRINTF_FUNC("Connector 2 - Number = %d \n", connector_2[psuIndex]);
  635. }
  636. else
  637. DEBUG_ERROR("Module_PsuComm : Can't parsing model name. \n");
  638. }
  639. }
  640. void CheckSmartChargingStep(bool isWaitingAver, bool isCharging)
  641. {
  642. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_PREPARE_M_TO_A)
  643. {
  644. if (isWaitingAver)
  645. {
  646. if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_MAX)
  647. {
  648. PRINTF_FUNC("=============Smart Charging : _REASSIGNED_GET_NEW_CAP============= Step 2 \n");
  649. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_GET_NEW_CAP;
  650. }
  651. else
  652. {
  653. PRINTF_FUNC("=============Smart Charging : _REASSIGNED_NONE============= Step 0 \n");
  654. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_NONE;
  655. }
  656. }
  657. }
  658. else if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_PREPARE_A_TO_M)
  659. {
  660. if (isCharging)
  661. {
  662. if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_AVER)
  663. {
  664. PRINTF_FUNC("=============Smart Charging : _REASSIGNED_ADJUST_A_TO_M============= Step 12 \n");
  665. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_ADJUST_A_TO_M;
  666. }
  667. else
  668. {
  669. PRINTF_FUNC("=============Smart Charging_1 : _REASSIGNED_COMP============= Step 15 \n");
  670. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_COMP;
  671. }
  672. }
  673. else
  674. {
  675. PRINTF_FUNC("=============Smart Charging_2 : _REASSIGNED_COMP============= Step 15 \n");
  676. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_COMP;
  677. }
  678. }
  679. }
  680. int main(void)
  681. {
  682. if(InitShareMemory() == FAIL)
  683. {
  684. #ifdef SystemLogMessage
  685. DEBUG_ERROR("InitShareMemory NG\n");
  686. #endif
  687. if(ShmStatusCodeData != NULL)
  688. {
  689. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.FailToCreateShareMemory = 1;
  690. }
  691. sleep(5);
  692. return 0;
  693. }
  694. PRINTF_FUNC("InitShareMemory OK\n");
  695. // register callback function
  696. RefreshStatus(&GetStatusCallback);
  697. RefreshModuleCount(&GetModuleCountCallback);
  698. RefreshAvailableCap(&GetAvailableCapCallback);
  699. RefreshFwVersion(&GetFwCallback);
  700. RefreshInputVol(&GetInputVoltageCallback);
  701. RefreshGetOutput(&GetPresentOutputCallback);
  702. RefreshFanInfo(&GetFanSpeedCallback);
  703. RefreshIavailable(&GetIavailableCallback);
  704. sleep(2);
  705. _gunCount = ShmSysConfigAndInfo->SysConfig.TotalConnectorCount;
  706. // initial object
  707. InitialPsuData();
  708. Initialization();
  709. libInitialize = InitialCommunication();
  710. byte isInitialComp = NO;
  711. PRINTF_FUNC("ALTERNATIVE_CONG = %d \n", ShmSysConfigAndInfo->SysInfo.IsAlternatvieConf);
  712. //main loop
  713. while (libInitialize)
  714. {
  715. // 斷電狀態
  716. if (ShmSysConfigAndInfo->SysInfo.AcContactorStatus == NO)
  717. {
  718. //一但 AC Off PSU 斷電全部的 PSU Group ID 會全部清 0
  719. if (!isInitialComp)
  720. {
  721. InitialPsuData();
  722. ShmPsuData->Work_Step = INITIAL_START;
  723. isInitialComp = YES;
  724. }
  725. sleep(1);
  726. continue;
  727. }
  728. else
  729. isInitialComp = NO;
  730. // 自檢失敗
  731. if (ShmPsuData->Work_Step == _NO_WORKING)
  732. {
  733. PRINTF_FUNC("== PSU == self test fail. \n");
  734. sleep(5);
  735. }
  736. switch(ShmPsuData->Work_Step)
  737. {
  738. case INITIAL_START:
  739. {
  740. PRINTF_FUNC("== PSU == INITIAL_START \n");
  741. gettimeofday(&_cmdSubPriority_time, NULL);
  742. sleep(5);
  743. SwitchPower(SYSTEM_CMD, PSU_POWER_OFF);
  744. ShmPsuData->Work_Step = GET_PSU_COUNT;
  745. }
  746. break;
  747. case GET_PSU_COUNT:
  748. {
  749. int time = GetTimeoutValue(_cmdSubPriority_time) / 1000;
  750. byte moduleCount = 0;
  751. if (time > 2000)
  752. {
  753. PRINTF_FUNC("== PSU == indexCount = %d, moduleCount = %d, sysCount = %d\n",
  754. ShmPsuData->GroupCount, moduleCount, ShmPsuData->SystemPresentPsuQuantity);
  755. // if (ShmPsuData->GroupCount == 0)
  756. // ShmPsuData->GroupCount = ShmSysConfigAndInfo->SysConfig.TotalConnectorCount;
  757. // 分別取各群模組數量
  758. for (byte index = 0; index < ShmPsuData->GroupCount; index++)
  759. {
  760. // 總和各群模組數量
  761. moduleCount += ShmPsuData->PsuGroup[index].GroupPresentPsuQuantity;
  762. // 取各群模組數量
  763. GetModuleCount(index);
  764. // 取版號
  765. GetModuleVer(index);
  766. }
  767. // 發送取得目前全部模組數量
  768. GetModuleCount(SYSTEM_CMD);
  769. // 判斷系統數量與各群數量一致
  770. if(moduleCount == ShmPsuData->SystemPresentPsuQuantity && moduleCount > 0)
  771. {
  772. PRINTF_FUNC("Psu Count = %d \n", moduleCount);
  773. if (ShmSysConfigAndInfo->SysInfo.BootingStatus == BOOTTING)
  774. {
  775. // 電樁在 Booting 的狀態 - 自檢
  776. PRINTF_FUNC("== PSU == GET_SYS_CAP \n");
  777. ShmPsuData->Work_Step = GET_SYS_CAP;
  778. }
  779. else
  780. {
  781. PRINTF_FUNC("== PSU == _WORK_CHARGING \n");
  782. ShmPsuData->Work_Step = _WORK_CHARGING;
  783. //sdlu test
  784. gettimeofday(&_test_time, NULL);
  785. }
  786. }
  787. _getCapDelayCount = 3;
  788. gettimeofday(&_cmdSubPriority_time, NULL);
  789. }
  790. }
  791. break;
  792. case GET_SYS_CAP:
  793. {
  794. int time = GetTimeoutValue(_cmdSubPriority_time) / 1000;
  795. if (time > 1000)
  796. {
  797. for (byte index = 0; index < ShmPsuData->GroupCount; index++)
  798. {
  799. // Pooling Status
  800. GetStatus(index);
  801. // 取系統總輸出能力
  802. GetModuleCap(index);
  803. }
  804. _getCapDelayCount--;
  805. gettimeofday(&_cmdSubPriority_time, NULL);
  806. }
  807. // 判斷系統輸出額定功率與電流
  808. if (ShmPsuData->SystemAvailablePower > 0 && ShmPsuData->SystemAvailableCurrent > 0 &&
  809. _getCapDelayCount <= 0)
  810. {
  811. PRINTF_FUNC("SystemAvailableCurrent = %d, SystemAvailablePower = %d \n",
  812. ShmPsuData->SystemAvailableCurrent, ShmPsuData->SystemAvailablePower);
  813. PRINTF_FUNC("== PSU == BOOTING_COMPLETE \n");
  814. ShmPsuData->Work_Step = BOOTING_COMPLETE;
  815. }
  816. }
  817. break;
  818. case BOOTING_COMPLETE:
  819. {
  820. bool isSelfTestPass = true;
  821. for (byte groupIndex = 0; groupIndex < _gunCount; groupIndex++)
  822. {
  823. if (chargingInfo[groupIndex]->SystemStatus == S_BOOTING)
  824. {
  825. isSelfTestPass = false;
  826. }
  827. }
  828. if (isSelfTestPass)
  829. ShmPsuData->Work_Step = _WORK_CHARGING;
  830. sleep(1);
  831. }
  832. break;
  833. case _WORK_CHARGING:
  834. {
  835. int time = GetTimeoutValue(_cmdSubPriority_time) / 1000;
  836. // 低 Priority 的指令
  837. if (time > 1500)
  838. {
  839. isCharging = false;
  840. isWaitingAver = false;
  841. isReadToCharging = false;
  842. for (byte index = 0; index < ShmPsuData->GroupCount; index++)
  843. {
  844. // Pooling Status
  845. GetStatus(index);
  846. // 取系統總輸出能力
  847. GetModuleCap(index);
  848. // 取得模塊輸入電壓
  849. GetModuleInput(index);
  850. // 取得模塊輸出額定電流能力
  851. GetModuleIavailable(index);
  852. if (chargingInfo[index]->SystemStatus == S_CHARGING)
  853. {
  854. isCharging = true;
  855. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_PREPARE_M_TO_A)
  856. {
  857. if (toAverVolPoint > 0 &&
  858. toAverVolPoint == chargingInfo[index]->EvBatterytargetCurrent)
  859. {
  860. // 欲最大充 -> 均充需要等待充電中的輸出電流拉高到目標電流
  861. if ((chargingInfo[index]->PresentChargingCurrent * 10) >=
  862. chargingInfo[index]->EvBatterytargetCurrent - CHK_CUR_RANGE)
  863. {
  864. if (toAverVolCount == 0)
  865. isWaitingAver = true;
  866. else
  867. toAverVolCount--;
  868. }
  869. }
  870. else
  871. {
  872. toAverVolPoint = chargingInfo[index]->EvBatterytargetCurrent;
  873. toAverVolCount = 3;
  874. }
  875. }
  876. else
  877. {
  878. toAverVolPoint = 0;
  879. toAverVolCount = 3;
  880. }
  881. }
  882. if ((chargingInfo[index]->SystemStatus >= S_PREPARING_FOR_EVSE && chargingInfo[index]->SystemStatus <= S_CHARGING) ||
  883. (chargingInfo[index]->SystemStatus >= S_CCS_PRECHARGE_ST0 && chargingInfo[index]->SystemStatus <= S_CCS_PRECHARGE_ST1))
  884. {
  885. isReadToCharging = true;
  886. }
  887. }
  888. gettimeofday(&_cmdSubPriority_time, NULL);
  889. CheckSmartChargingStep(isWaitingAver, isCharging);
  890. }
  891. for (byte groupIndex = 0; groupIndex < _gunCount; groupIndex++)
  892. {
  893. GetModuleOutput(groupIndex);
  894. // 針對各槍當前狀態,傳送需要回傳的資料指令
  895. if (((chargingInfo[groupIndex]->SystemStatus >= S_PREPARING_FOR_EVSE && chargingInfo[groupIndex]->SystemStatus <= S_CHARGING) && chargingInfo[groupIndex]->RelayK1K2Status) ||
  896. (chargingInfo[groupIndex]->SystemStatus >= S_PREPARING_FOR_EVSE && chargingInfo[groupIndex]->SystemStatus <= S_CHARGING && chargingInfo[groupIndex]->Type == _Type_GB) ||
  897. (chargingInfo[groupIndex]->SystemStatus >= S_CCS_PRECHARGE_ST0 && chargingInfo[groupIndex]->SystemStatus <= S_CCS_PRECHARGE_ST1))
  898. {
  899. if (chargingInfo[groupIndex]->EvBatterytargetVoltage > 0 &&
  900. carReqVol != chargingInfo[groupIndex]->EvBatterytargetVoltage)
  901. {
  902. carReqVol = chargingInfo[groupIndex]->EvBatterytargetVoltage;
  903. DEBUG_INFO("ev need vol = %f \n", chargingInfo[groupIndex]->EvBatterytargetVoltage);
  904. }
  905. if (chargingInfo[groupIndex]->EvBatterytargetCurrent > 0 &&
  906. carReqCur != chargingInfo[groupIndex]->EvBatterytargetCurrent)
  907. {
  908. carReqCur = chargingInfo[groupIndex]->EvBatterytargetCurrent;
  909. DEBUG_INFO("ev need cur = %f \n", chargingInfo[groupIndex]->EvBatterytargetCurrent);
  910. }
  911. if (time > 1500)
  912. {
  913. if (chargingInfo[groupIndex]->FireChargingVoltage > 0 &&
  914. evseOutVol != (chargingInfo[groupIndex]->FireChargingVoltage / 10))
  915. {
  916. evseOutVol = (chargingInfo[groupIndex]->FireChargingVoltage / 10);
  917. PRINTF_FUNC("groupIndex = %d, evse output vol = %f \n", groupIndex,
  918. chargingInfo[groupIndex]->FireChargingVoltage);
  919. }
  920. if ((chargingInfo[groupIndex]->PresentChargingCurrent * 10) > 0 &&
  921. evseOutCur != (chargingInfo[groupIndex]->PresentChargingCurrent * 10))
  922. {
  923. evseOutCur = (chargingInfo[groupIndex]->PresentChargingCurrent * 10);
  924. PRINTF_FUNC("groupIndex = %d, evse output cur = %f \n", groupIndex,
  925. (chargingInfo[groupIndex]->PresentChargingCurrent * 10));
  926. }
  927. }
  928. if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_MAX)
  929. {
  930. // PRINTF_FUNC("index = %d, SystemStatus = %d, Ev = %f, curCur = %f \n", groupIndex,
  931. // chargingInfo[groupIndex]->SystemStatus, chargingInfo[groupIndex]->EvBatterytargetCurrent,
  932. // (chargingInfo[groupIndex]->PresentChargingCurrent * 10));
  933. // 智能判斷 Start -----------------------------------------------------------
  934. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_GET_NEW_CAP)
  935. {
  936. if (ShmPsuData->SystemAvailableCurrent != chargingInfo[groupIndex]->AvailableChargingCurrent)
  937. {
  938. // 車端要求電流為該充電槍的額定輸出電流的範圍內
  939. if (chargingInfo[groupIndex]->EvBatterytargetCurrent <= chargingInfo[groupIndex]->AvailableChargingCurrent ||
  940. deratingKeepCount >= DERATING)
  941. {
  942. // 車端降載完成
  943. PRINTF_FUNC("=============Smart Charging : _REASSIGNED_ADJUST_M_TO_A============= Step 3 \n");
  944. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_ADJUST_M_TO_A;
  945. gettimeofday(&_derating_time, NULL);
  946. deratingKeepCount = 0;
  947. }
  948. else
  949. {
  950. deratingKeepCount++;
  951. }
  952. }
  953. }
  954. else if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_ADJUST_M_TO_A)
  955. {
  956. bool isChanged = false;
  957. // 需求電流不降低的情況下 -> 依然要切
  958. if (chargingInfo[groupIndex]->AvailableChargingCurrent < chargingInfo[groupIndex]->EvBatterytargetCurrent)
  959. {
  960. PRINTF_FUNC("** _REASSIGNED_ADJUST_M_TO_A ** Gun_%d, AvailableChargingCurrent = %f, EvBatterytargetCurrent = %f \n", groupIndex,
  961. (chargingInfo[groupIndex]->PresentChargingCurrent * 10),
  962. chargingInfo[groupIndex]->AvailableChargingCurrent);
  963. for (byte subIndex = 0; subIndex < ShmPsuData->GroupCount; subIndex++)
  964. {
  965. if (chargingInfo[subIndex]->SystemStatus == S_REASSIGN)
  966. {
  967. if ((chargingInfo[subIndex]->PresentChargingCurrent * 10) <= CHK_CUR_RANGE)
  968. isChanged = true;
  969. break;
  970. }
  971. }
  972. // 這狀況下輸出端的電流載滿載衝的狀況下,並不會降電流
  973. // 所以只能拉載到該槍端的最大輸出能力
  974. if ((chargingInfo[groupIndex]->PresentChargingCurrent * 10) >= chargingInfo[groupIndex]->AvailableChargingCurrent - CHK_CUR_RANGE ||
  975. (chargingInfo[groupIndex]->PresentChargingCurrent * 10) <= CHK_CUR_RANGE)
  976. {
  977. isChanged = true;
  978. }
  979. }
  980. else if (((chargingInfo[groupIndex]->PresentChargingCurrent * 10) >= ShmPsuData->PsuGroup[groupIndex].GroupPresentOutputCurrent - CHK_CUR_RANGE) &&
  981. ((chargingInfo[groupIndex]->PresentChargingCurrent * 10) <= ShmPsuData->PsuGroup[groupIndex].GroupPresentOutputCurrent + CHK_CUR_RANGE))
  982. {
  983. isChanged = true;
  984. }
  985. if (isChanged)
  986. {
  987. PRINTF_FUNC("** _REASSIGNED_ADJUST_M_TO_A ** Gun_%d, PresentChargingCurrent = %f, GroupPresentOutputCurrent = %d \n", groupIndex,
  988. (chargingInfo[groupIndex]->PresentChargingCurrent * 10),
  989. ShmPsuData->PsuGroup[groupIndex].GroupPresentOutputCurrent);
  990. // 輸出端與車端要求電流接近
  991. PRINTF_FUNC("=============Smart Charging : _REASSIGNED_RELAY_M_TO_A============= Step 4 \n");
  992. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_RELAY_M_TO_A;
  993. }
  994. }
  995. if (ShmPsuData->SystemAvailablePower > 0)
  996. {
  997. // 調整輸出電流 : 漸進調整方式
  998. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag >= _REASSIGNED_ADJUST_M_TO_A)
  999. {
  1000. // 當前充電中的目標電壓
  1001. float targetVol = chargingInfo[groupIndex]->EvBatterytargetVoltage;
  1002. // 當前充電中的目標電流
  1003. //float targetCur = 0;
  1004. // 準備切出去的模塊電流
  1005. float deratingCur = 0;
  1006. byte reassignIndex = ELEMENT_NOT_FIND;
  1007. // 找到等待分配的槍
  1008. for (byte subIndex = 0; subIndex < ShmPsuData->GroupCount; subIndex++)
  1009. {
  1010. if (chargingInfo[subIndex]->SystemStatus == S_REASSIGN)
  1011. {
  1012. reassignIndex = subIndex;
  1013. }
  1014. }
  1015. if (reassignIndex != ELEMENT_NOT_FIND)
  1016. {
  1017. //int derating = GetTimeoutValue(_derating_time) / 1000;
  1018. //if (derating > 1000)
  1019. {
  1020. if (ShmPsuData->PsuGroup[reassignIndex].GroupPresentOutputCurrent > 0)
  1021. {
  1022. deratingCur = ShmPsuData->PsuGroup[reassignIndex].GroupPresentOutputCurrent - DERATING_RANGE;
  1023. if (deratingCur <= CHK_CUR_RANGE)
  1024. deratingCur = CHK_CUR_RANGE;
  1025. PresentOutputVol(reassignIndex, targetVol, deratingCur);
  1026. gettimeofday(&_derating_time, NULL);
  1027. }
  1028. }
  1029. // ***********直接降低要移除的模塊電流即可*************
  1030. // 因為爬的速度沒有降的速度快,所以採兩倍速度爬升
  1031. // targetCur = ShmPsuData->PsuGroup[groupIndex].GroupPresentOutputCurrent + (DERATING_RANGE * 2);
  1032. // if (targetCur >= chargingInfo[groupIndex]->EvBatterytargetCurrent)
  1033. // targetCur = chargingInfo[groupIndex]->EvBatterytargetCurrent;
  1034. if (targetVol == 0)
  1035. {
  1036. SwitchPower(SYSTEM_CMD, PSU_POWER_OFF);
  1037. FlashLed(SYSTEM_CMD, PSU_FLASH_NORMAL);
  1038. }
  1039. else
  1040. {
  1041. SwitchPower(SYSTEM_CMD, PSU_POWER_ON);
  1042. FlashLed(SYSTEM_CMD, PSU_FLASH_ON);
  1043. }
  1044. }
  1045. }
  1046. else
  1047. {
  1048. // 該充電槍的目標電壓與目標電流
  1049. PresentOutputVol(SYSTEM_CMD,
  1050. chargingInfo[groupIndex]->EvBatterytargetVoltage,
  1051. chargingInfo[groupIndex]->EvBatterytargetCurrent);
  1052. if (chargingInfo[groupIndex]->EvBatterytargetVoltage == 0)
  1053. {
  1054. SwitchPower(SYSTEM_CMD, PSU_POWER_OFF);
  1055. FlashLed(SYSTEM_CMD, PSU_FLASH_NORMAL);
  1056. }
  1057. else
  1058. {
  1059. SwitchPower(SYSTEM_CMD, PSU_POWER_ON);
  1060. FlashLed(SYSTEM_CMD, PSU_FLASH_ON);
  1061. }
  1062. }
  1063. }
  1064. }
  1065. else if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_AVER)
  1066. {
  1067. // 智能判斷 Start -----------------------------------------------------------
  1068. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_ADJUST_A_TO_M)
  1069. {
  1070. bool balanceVol = true;
  1071. for (byte subIndex = 0; subIndex < ShmPsuData->GroupCount; subIndex++)
  1072. {
  1073. if (chargingInfo[subIndex]->SystemStatus == S_IDLE ||
  1074. chargingInfo[subIndex]->SystemStatus == S_RESERVATION)
  1075. {
  1076. // 各群電壓接近平衡
  1077. if (((chargingInfo[subIndex]->PresentChargingVoltage * 10) < (chargingInfo[groupIndex]->PresentChargingVoltage * 10) - ZERO_VOLTAGE) ||
  1078. ((chargingInfo[subIndex]->PresentChargingVoltage * 10) < chargingInfo[groupIndex]->EvBatterytargetVoltage - CHK_VOL_RANGE))
  1079. {
  1080. PRINTF_FUNC("** _REASSIGNED_ADJUST_A_TO_M ** Gun_%d, PresentChargingVoltage = %f, PresentChargingVoltage_V = %f, EvBatterytargetVoltage = %f \n", subIndex,
  1081. (chargingInfo[subIndex]->PresentChargingVoltage * 10),
  1082. ((chargingInfo[groupIndex]->PresentChargingVoltage * 10) - ZERO_VOLTAGE),
  1083. (chargingInfo[groupIndex]->EvBatterytargetVoltage - CHK_VOL_RANGE));
  1084. balanceVol = false;
  1085. }
  1086. break;
  1087. }
  1088. }
  1089. if (balanceVol)
  1090. {
  1091. // 閒置端與車端要求電壓接近
  1092. PRINTF_FUNC("=============Smart Charging : _REASSIGNED_RELAY_A_TO_M============= Step 13 \n");
  1093. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_RELAY_A_TO_M;
  1094. gettimeofday(&_averageComp_time, NULL);
  1095. }
  1096. }
  1097. else if(ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_WAITING)
  1098. {
  1099. int avrTime = GetTimeoutValue(_averageComp_time) / 1000;
  1100. if (avrTime > 10000)
  1101. {
  1102. // 閒置端與車端要求電壓接近
  1103. PRINTF_FUNC("=============Smart Charging_0 : _REASSIGNED_COMP============= Step 15 \n");
  1104. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_COMP;
  1105. }
  1106. }
  1107. if (chargingInfo[groupIndex]->AvailableChargingCurrent > 0)
  1108. {
  1109. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag == _REASSIGNED_ADJUST_A_TO_M)
  1110. {
  1111. for (byte subIndex = 0; subIndex < ShmPsuData->GroupCount; subIndex++)
  1112. {
  1113. if (chargingInfo[subIndex]->SystemStatus == S_IDLE ||
  1114. chargingInfo[subIndex]->SystemStatus == S_RESERVATION)
  1115. {
  1116. // 閒置模塊升壓
  1117. PresentOutputVol(subIndex,
  1118. chargingInfo[groupIndex]->EvBatterytargetVoltage,
  1119. ZERO_CURRENT);
  1120. }
  1121. else
  1122. {
  1123. // 充電中的模塊維持輸出
  1124. PresentOutputVol(subIndex,
  1125. chargingInfo[subIndex]->EvBatterytargetVoltage,
  1126. chargingInfo[subIndex]->EvBatterytargetCurrent);
  1127. }
  1128. if (chargingInfo[groupIndex]->EvBatterytargetVoltage == 0)
  1129. {
  1130. SwitchPower(subIndex, PSU_POWER_OFF);
  1131. FlashLed(subIndex, PSU_FLASH_NORMAL);
  1132. }
  1133. else
  1134. {
  1135. SwitchPower(subIndex, PSU_POWER_ON);
  1136. FlashLed(subIndex, PSU_FLASH_ON);
  1137. }
  1138. }
  1139. }
  1140. else
  1141. {
  1142. PresentOutputVol(groupIndex,
  1143. chargingInfo[groupIndex]->EvBatterytargetVoltage,
  1144. chargingInfo[groupIndex]->EvBatterytargetCurrent);
  1145. if (chargingInfo[groupIndex]->EvBatterytargetVoltage == 0)
  1146. {
  1147. SwitchPower(groupIndex, PSU_POWER_OFF);
  1148. FlashLed(groupIndex, PSU_FLASH_NORMAL);
  1149. }
  1150. else
  1151. {
  1152. SwitchPower(groupIndex, PSU_POWER_ON);
  1153. FlashLed(groupIndex, PSU_FLASH_ON);
  1154. }
  1155. }
  1156. }
  1157. }
  1158. }
  1159. else if (chargingInfo[groupIndex]->SystemStatus >= S_TERMINATING &&
  1160. chargingInfo[groupIndex]->SystemStatus <= S_COMPLETE)
  1161. {
  1162. if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_MAX)
  1163. {
  1164. if (!isCharging)
  1165. {
  1166. SwitchPower(SYSTEM_CMD, PSU_POWER_OFF);
  1167. FlashLed(SYSTEM_CMD, PSU_FLASH_NORMAL);
  1168. if (chargingInfo[groupIndex]->SystemStatus == S_COMPLETE)
  1169. {
  1170. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag >= _REASSIGNED_PREPARE_M_TO_A &&
  1171. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag <= _REASSIGNED_RELAY_M_TO_A)
  1172. {
  1173. // 代表在切換的過程中,停止充電了
  1174. if ((chargingInfo[groupIndex]->PresentChargingCurrent * 10) <= STOP_CURRENT)
  1175. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_RELAY_M_TO_A;
  1176. }
  1177. }
  1178. }
  1179. else if (chargingInfo[groupIndex]->SystemStatus == S_COMPLETE)
  1180. {
  1181. // 代表充電的槍依舊在充電,欲進入充電的槍取消充電了
  1182. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag >= _REASSIGNED_PREPARE_M_TO_A &&
  1183. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag <= _REASSIGNED_RELAY_M_TO_A)
  1184. {
  1185. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_NONE;
  1186. }
  1187. }
  1188. }
  1189. else if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_AVER)
  1190. {
  1191. if (!isReadToCharging)
  1192. {
  1193. SwitchPower(SYSTEM_CMD, PSU_POWER_OFF);
  1194. FlashLed(SYSTEM_CMD, PSU_FLASH_NORMAL);
  1195. }
  1196. else
  1197. {
  1198. SwitchPower(groupIndex, PSU_POWER_OFF);
  1199. FlashLed(groupIndex, PSU_FLASH_NORMAL);
  1200. }
  1201. ShmSysConfigAndInfo->SysInfo.ReAssignedFlag = _REASSIGNED_NONE;
  1202. }
  1203. }
  1204. }
  1205. break;
  1206. }
  1207. }
  1208. usleep(20000);
  1209. }
  1210. return FAIL;
  1211. }