Module_InternalComm.c 48 KB

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  1. #include <sys/time.h>
  2. #include <sys/timeb.h>
  3. #include <sys/types.h>
  4. #include <sys/stat.h>
  5. #include <sys/types.h>
  6. #include <sys/ioctl.h>
  7. #include <sys/socket.h>
  8. #include <sys/ipc.h>
  9. #include <sys/shm.h>
  10. #include <sys/shm.h>
  11. #include <sys/mman.h>
  12. #include <linux/wireless.h>
  13. #include <arpa/inet.h>
  14. #include <netinet/in.h>
  15. #include <unistd.h>
  16. #include <stdarg.h>
  17. #include <stdio.h> /*標準輸入輸出定義*/
  18. #include <stdlib.h> /*標準函數庫定義*/
  19. #include <unistd.h> /*Unix 標準函數定義*/
  20. #include <fcntl.h> /*檔控制定義*/
  21. #include <termios.h> /*PPSIX 終端控制定義*/
  22. #include <errno.h> /*錯誤號定義*/
  23. #include <errno.h>
  24. #include <string.h>
  25. #include <time.h>
  26. #include <ctype.h>
  27. #include <ifaddrs.h>
  28. #include <math.h>
  29. #include "../../define.h"
  30. #include "internalComm.h"
  31. #include <stdbool.h>
  32. #define ARRAY_SIZE(A) (sizeof(A) / sizeof(A[0]))
  33. #define PASS 1
  34. #define FAIL -1
  35. #define YES 1
  36. #define NO 0
  37. #define TEN_MINUTES 600
  38. #define ENV_TEMP_MIN 45
  39. #define ENV_TEMP_MAX 50
  40. struct SysConfigAndInfo *ShmSysConfigAndInfo;
  41. struct StatusCodeData *ShmStatusCodeData;
  42. struct FanModuleData *ShmFanModuleData;
  43. struct RelayModuleData *ShmRelayModuleData;
  44. struct CHAdeMOData *ShmCHAdeMOData;
  45. struct CcsData *ShmCcsData;
  46. struct PsuData *ShmPsuData;
  47. #define VIN_MAX_VOLTAGE 250 // 大於該值 : OVP
  48. #define VIN_MIN_VOLTAGE 150 // 小於該值 : UVP
  49. #define VIN_DROP_VOLTAGE 150 // 小於該值 : ac drop
  50. #define VOUT_MAX_VOLTAGE 750
  51. #define VOUT_MIN_VOLTAGE 150
  52. #define IOUT_MAX_CURRENT 50
  53. #define MAX_FAN_SPEED 13500
  54. #define MIN_FAN_SPEED 2800
  55. #define NORMAL_FAN_SPEED 7000
  56. // GFD Status
  57. #define GFD_IDLE 0
  58. #define GFD_CABLECHK 1
  59. #define GFD_PRECHARGE 2
  60. #define GFD_CHARGING 3
  61. // 最小切換 Relay 電壓
  62. #define SELF_TO_CHANGE_RELAY_STATUS 600
  63. // 透過電壓確認 Relay 是否搭上的依據電壓
  64. #define CHECK_RELAY_STATUS 300
  65. #define CHECK_RELAY_STATUS_GAP 100
  66. // 安全在停止充電程序中斷開 Relay 的電流
  67. #define SEFETY_SWITCH_RELAY_CUR 20
  68. // 確認 Relay Welding 電壓
  69. #define RELAY_WELDING_DET 300
  70. byte gunCount;
  71. // 槍資訊
  72. struct ChargingInfoData *_chargingData[CHAdeMO_QUANTITY + CCS_QUANTITY + GB_QUANTITY];
  73. byte gfdChkFailCount[CHAdeMO_QUANTITY + CCS_QUANTITY + GB_QUANTITY];
  74. bool _isOutputNoneMatch[CHAdeMO_QUANTITY + CCS_QUANTITY + GB_QUANTITY];
  75. struct timeval _checkOutputNoneMatchTimer[CHAdeMO_QUANTITY + CCS_QUANTITY + GB_QUANTITY];
  76. bool FindChargingInfoData(byte target, struct ChargingInfoData **chargingData);
  77. int Uart5Fd;
  78. char *relayRs485PortName = "/dev/ttyS5";
  79. unsigned short fanSpeedSmoothValue = 1000;
  80. bool isStopChargingCount = false;
  81. bool isSystemBooting = false;
  82. struct timeval _close_ac_contactor;
  83. struct timeval _priority_time;
  84. Ver ver;
  85. PresentInputVoltage inputVoltage;
  86. PresentOutputVoltage outputVoltage;
  87. FanSpeed fanSpeed;
  88. Temperature temperature;
  89. AuxPower auxPower;
  90. Gfd gfd_adc;
  91. Gfd_config gfd_config;
  92. Gpio_in gpio_in;
  93. Gpio_out gpio_out;
  94. Relay outputRelay;
  95. Relay regRelay;
  96. Rtc rtc;
  97. void PRINTF_FUNC(char *string, ...);
  98. int StoreLogMsg(const char *fmt, ...);
  99. unsigned long GetTimeoutValue(struct timeval _sour_time);
  100. #define DEBUG_INFO(format, args...) StoreLogMsg("[%s:%d][%s][Info] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  101. #define DEBUG_WARN(format, args...) StoreLogMsg("[%s:%d][%s][Warn] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  102. #define DEBUG_ERROR(format, args...) StoreLogMsg("[%s:%d][%s][Error] "format, __FILE__, __LINE__, __FUNCTION__, ##args)
  103. unsigned long GetTimeoutValue(struct timeval _sour_time)
  104. {
  105. struct timeval _end_time;
  106. gettimeofday(&_end_time, NULL);
  107. return 1000000 * (_end_time.tv_sec - _sour_time.tv_sec) + _end_time.tv_usec - _sour_time.tv_usec;
  108. }
  109. int StoreLogMsg(const char *fmt, ...)
  110. {
  111. char Buf[4096+256];
  112. char buffer[4096];
  113. time_t CurrentTime;
  114. struct tm *tm;
  115. va_list args;
  116. va_start(args, fmt);
  117. int rc = vsnprintf(buffer, sizeof(buffer), fmt, args);
  118. va_end(args);
  119. memset(Buf,0,sizeof(Buf));
  120. CurrentTime = time(NULL);
  121. tm=localtime(&CurrentTime);
  122. sprintf(Buf,"echo \"%04d-%02d-%02d %02d:%02d:%02d - %s\" >> /Storage/SystemLog/[%04d.%02d]SystemLog",
  123. tm->tm_year+1900,tm->tm_mon+1,tm->tm_mday,tm->tm_hour,tm->tm_min,tm->tm_sec,
  124. buffer,
  125. tm->tm_year+1900,tm->tm_mon+1);
  126. system(Buf);
  127. return rc;
  128. }
  129. int DiffTimeb(struct timeb ST, struct timeb ET)
  130. {
  131. //return milli-second
  132. unsigned int StartTime,StopTime;
  133. StartTime=(unsigned int)ST.time;
  134. StopTime=(unsigned int)ET.time;
  135. return (StopTime-StartTime)*1000+ET.millitm-ST.millitm;
  136. }
  137. unsigned short MaxValue(unsigned short value1, unsigned short value2)
  138. {
  139. return value1 >= value2 ? value1 : value2;
  140. }
  141. void PRINTF_FUNC(char *string, ...)
  142. {
  143. va_list args;
  144. char buffer[4096];
  145. va_start(args, string);
  146. vsnprintf(buffer, sizeof(buffer), string, args);
  147. va_end(args);
  148. if (DEBUG)
  149. printf("%s \n", buffer);
  150. else
  151. DEBUG_INFO("%s \n", buffer);
  152. }
  153. //==========================================
  154. // Communication Function
  155. //==========================================
  156. void GetFwAndHwVersion_Fan()
  157. {
  158. if(Query_FW_Ver(Uart5Fd, Addr.Fan, &ver) == PASS)
  159. {
  160. // FanModuleData
  161. strcpy((char *) ShmFanModuleData->version, ver.Version_FW);
  162. // SystemInfo
  163. strcpy((char *) ShmSysConfigAndInfo->SysInfo.FanModuleFwRev, ver.Version_FW);
  164. //PRINTF_FUNC("GetFwAndHwVersion_Fan s1 = %s \n", ver.Version_FW);
  165. }
  166. if (Query_HW_Ver(Uart5Fd, Addr.Fan, &ver) == PASS)
  167. {
  168. // SystemInfo
  169. strcpy((char *) ShmSysConfigAndInfo->SysInfo.FanModuleHwRev, ver.Version_FW);
  170. //PRINTF_FUNC("GetFwAndHwVersion_Fan s2 = %s \n", ver.Version_HW);
  171. }
  172. }
  173. void GetFwAndHwVersion_Relay()
  174. {
  175. if (Query_FW_Ver(Uart5Fd, Addr.Relay, &ver) == PASS)
  176. {
  177. // FanModuleData
  178. strcpy((char *) ShmRelayModuleData->version, ver.Version_FW);
  179. // SystemInfo
  180. strcpy((char *) ShmSysConfigAndInfo->SysInfo.RelayModuleFwRev, ver.Version_FW);
  181. //PRINTF_FUNC("GetFwAndHwVersion_Relay s1 = %s \n", ver.Version_FW);
  182. }
  183. if (Query_HW_Ver(Uart5Fd, Addr.Relay, &ver) == PASS)
  184. {
  185. // SystemInfo
  186. strcpy((char *) ShmSysConfigAndInfo->SysInfo.RelayModuleHwRev, ver.Version_FW);
  187. //PRINTF_FUNC("GetFwAndHwVersion_Relay s2 = %s \n", ver.Version_HW);
  188. }
  189. }
  190. void SetRtcData_Relay()
  191. {
  192. struct timeb csuTime;
  193. struct tm *tmCSU;
  194. ftime(&csuTime);
  195. tmCSU = localtime(&csuTime.time);
  196. // PRINTF_FUNC("Time : %04d-%02d-%02d %02d:%02d:%02d \n", tmCSU->tm_year + 1900,
  197. // tmCSU->tm_mon + 1, tmCSU->tm_mday, tmCSU->tm_hour, tmCSU->tm_min,
  198. // tmCSU->tm_sec);
  199. rtc.RtcData[0] = '0' + (tmCSU->tm_year + 1900) / 1000 % 10;
  200. rtc.RtcData[1] = '0' + (tmCSU->tm_year + 1900) / 100 % 10;
  201. rtc.RtcData[2] = '0' + (tmCSU->tm_year + 1900) / 10 % 10;
  202. rtc.RtcData[3] = '0' + (tmCSU->tm_year + 1900) / 1 % 10;
  203. rtc.RtcData[4] = '0' + (tmCSU->tm_mon + 1) / 10 % 10;
  204. rtc.RtcData[5] = '0' + (tmCSU->tm_mon + 1) / 1 % 10;
  205. rtc.RtcData[6] = '0' + (tmCSU->tm_mday) / 10 % 10;
  206. rtc.RtcData[7] = '0' + (tmCSU->tm_mday) / 1 % 10;
  207. rtc.RtcData[8] = '0' + (tmCSU->tm_hour) / 10 % 10;
  208. rtc.RtcData[9] = '0' + (tmCSU->tm_hour) / 1 % 10;
  209. rtc.RtcData[10] = '0' + (tmCSU->tm_min) / 10 % 10;
  210. rtc.RtcData[11] = '0' + (tmCSU->tm_min) / 1 % 10;
  211. rtc.RtcData[12] = '0' + (tmCSU->tm_sec) / 10 % 10;
  212. rtc.RtcData[13] = '0' + (tmCSU->tm_sec) / 1 % 10;
  213. if (Config_Rtc_Data(Uart5Fd, Addr.Relay, &rtc) == PASS)
  214. {
  215. //PRINTF_FUNC("SetRtc (RB) sucessfully. \n");
  216. }
  217. }
  218. void SetRtcData_Fan()
  219. {
  220. struct timeb csuTime;
  221. struct tm *tmCSU;
  222. ftime(&csuTime);
  223. tmCSU = localtime(&csuTime.time);
  224. // PRINTF_FUNC("Time : %04d-%02d-%02d %02d:%02d:%02d \n", tmCSU->tm_year + 1900,
  225. // tmCSU->tm_mon + 1, tmCSU->tm_mday, tmCSU->tm_hour, tmCSU->tm_min,
  226. // tmCSU->tm_sec);
  227. rtc.RtcData[0] = '0' + (tmCSU->tm_year + 1900) / 1000 % 10;
  228. rtc.RtcData[1] = '0' + (tmCSU->tm_year + 1900) / 100 % 10;
  229. rtc.RtcData[2] = '0' + (tmCSU->tm_year + 1900) / 10 % 10;
  230. rtc.RtcData[3] = '0' + (tmCSU->tm_year + 1900) / 1 % 10;
  231. rtc.RtcData[4] = '0' + (tmCSU->tm_mon + 1) / 10 % 10;
  232. rtc.RtcData[5] = '0' + (tmCSU->tm_mon + 1) / 1 % 10;
  233. rtc.RtcData[6] = '0' + (tmCSU->tm_mday) / 10 % 10;
  234. rtc.RtcData[7] = '0' + (tmCSU->tm_mday) / 1 % 10;
  235. rtc.RtcData[8] = '0' + (tmCSU->tm_hour) / 10 % 10;
  236. rtc.RtcData[9] = '0' + (tmCSU->tm_hour) / 1 % 10;
  237. rtc.RtcData[10] = '0' + (tmCSU->tm_min) / 10 % 10;
  238. rtc.RtcData[11] = '0' + (tmCSU->tm_min) / 1 % 10;
  239. rtc.RtcData[12] = '0' + (tmCSU->tm_sec) / 10 % 10;
  240. rtc.RtcData[13] = '0' + (tmCSU->tm_sec) / 1 % 10;
  241. if (Config_Rtc_Data(Uart5Fd, Addr.Fan, &rtc) == PASS)
  242. {
  243. //PRINTF_FUNC("SetRtc (FB) sucessfully. \n");
  244. }
  245. }
  246. void SetModelName_Fan()
  247. {
  248. if (Config_Model_Name(Uart5Fd, Addr.Fan, ShmSysConfigAndInfo->SysConfig.ModelName) == PASS)
  249. {
  250. PRINTF_FUNC("Set Model name PASS = %s \n", ShmSysConfigAndInfo->SysConfig.ModelName);
  251. }
  252. }
  253. // AC 三相輸入電壓
  254. void GetPresentInputVol()
  255. {
  256. if (Query_Present_InputVoltage(Uart5Fd, Addr.Relay, &inputVoltage) == PASS)
  257. {
  258. // resolution : 0.1
  259. ShmSysConfigAndInfo->SysInfo.InputVoltageR = ShmRelayModuleData->InputL1Volt = inputVoltage.L1N_L12;
  260. ShmSysConfigAndInfo->SysInfo.InputVoltageS = ShmRelayModuleData->InputL2Volt = inputVoltage.L2N_L23;
  261. ShmSysConfigAndInfo->SysInfo.InputVoltageT = ShmRelayModuleData->InputL3Volt = inputVoltage.L3N_L31;
  262. //********************************************************************************************************//
  263. // VIN < 170
  264. if (inputVoltage.L1N_L12 < VIN_MIN_VOLTAGE)
  265. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputUVP = YES;
  266. else
  267. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputUVP = NO;
  268. if (inputVoltage.L2N_L23 < VIN_MIN_VOLTAGE)
  269. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputUVP = YES;
  270. else
  271. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputUVP = NO;
  272. if (inputVoltage.L3N_L31 < VIN_MIN_VOLTAGE)
  273. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputUVP = YES;
  274. else
  275. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputUVP = NO;
  276. //********************************************************************************************************//
  277. // VIN > 250
  278. if (inputVoltage.L1N_L12 > VIN_MAX_VOLTAGE)
  279. {
  280. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputOVP = 0x01;
  281. }
  282. if (inputVoltage.L2N_L23 > VIN_MAX_VOLTAGE)
  283. {
  284. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputOVP = 0x01;
  285. }
  286. if (inputVoltage.L3N_L31 > VIN_MAX_VOLTAGE)
  287. {
  288. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputOVP = 0x01;
  289. }
  290. //********************************************************************************************************//
  291. // VIN < 150
  292. if (inputVoltage.L1N_L12 < VIN_DROP_VOLTAGE)
  293. {
  294. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputDrop = 0x01;
  295. }
  296. if (inputVoltage.L2N_L23 < VIN_DROP_VOLTAGE)
  297. {
  298. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputDrop = 0x01;
  299. }
  300. if (inputVoltage.L3N_L31 < VIN_DROP_VOLTAGE)
  301. {
  302. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputDrop = 0x01;
  303. }
  304. //********************************************************************************************************//
  305. // 150 <= VIN < 160
  306. // if (inputVoltage.L1N_L12 >= VIN_MIN_VOLTAGE && inputVoltage.L1N_L12 <= VIN_LOW_VOLTAGE)
  307. // {
  308. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputUVP = 0x00;
  309. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputOVP = 0x00;
  310. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputDrop = 0x00;
  311. // }
  312. // if (inputVoltage.L2N_L23 >= VIN_MIN_VOLTAGE && inputVoltage.L2N_L23 <= VIN_LOW_VOLTAGE)
  313. // {
  314. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputUVP = 0x00;
  315. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputOVP = 0x00;
  316. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputDrop = 0x00;
  317. // }
  318. // if (inputVoltage.L3N_L31 >= VIN_MIN_VOLTAGE && inputVoltage.L3N_L31 <= VIN_LOW_VOLTAGE)
  319. // {
  320. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputUVP = 0x00;
  321. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputOVP = 0x00;
  322. // ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputDrop = 0x00;
  323. // }
  324. }
  325. }
  326. // 左右槍的 Relay 前後的輸出電壓
  327. void GetPersentOutputVol()
  328. {
  329. if (Query_Present_OutputVoltage(Uart5Fd, Addr.Relay, &outputVoltage) == PASS)
  330. {
  331. // PRINTF_FUNC("Conn1 fuse 1 = %f \n", outputVoltage.behindFuse_Voltage_C1);
  332. // PRINTF_FUNC("Conn1 relay 1 = %f \n", outputVoltage.behindRelay_Voltage_C1);
  333. // PRINTF_FUNC("Conn2 fuse 2 = %f \n", outputVoltage.behindFuse_Voltage_C2);
  334. // PRINTF_FUNC("Conn2 relay 2 = %f \n", outputVoltage.behindRelay_Voltage_C2);
  335. //PRINTF_FUNC("outputVoltage.behindFuse_Voltage_C1 = %f \n", outputVoltage.behindFuse_Voltage_C1);
  336. //PRINTF_FUNC("outputVoltage.behindFuse_Voltage_C2 = %f \n", outputVoltage.behindFuse_Voltage_C2);
  337. ShmRelayModuleData->Gun1FuseOutputVolt = outputVoltage.behindFuse_Voltage_C1;
  338. ShmRelayModuleData->Gun1RelayOutputVolt = outputVoltage.behindRelay_Voltage_C1;
  339. ShmRelayModuleData->Gun2FuseOutputVolt = outputVoltage.behindFuse_Voltage_C2;
  340. ShmRelayModuleData->Gun2RelayOutputVolt = outputVoltage.behindRelay_Voltage_C2;
  341. for (int index = 0; index < gunCount; index++)
  342. {
  343. if (index == 0)
  344. {
  345. if (_chargingData[index]->Evboard_id == 0x01)
  346. {
  347. _chargingData[index]->FuseChargingVoltage = ShmRelayModuleData->Gun1FuseOutputVolt;
  348. _chargingData[index]->FireChargingVoltage = ShmRelayModuleData->Gun1RelayOutputVolt;
  349. }
  350. else if (_chargingData[index]->Evboard_id == 0x02)
  351. {
  352. _chargingData[index]->FuseChargingVoltage = ShmRelayModuleData->Gun2FuseOutputVolt;
  353. _chargingData[index]->FireChargingVoltage = ShmRelayModuleData->Gun2RelayOutputVolt;
  354. }
  355. }
  356. else if (index == 1)
  357. {
  358. _chargingData[index]->FuseChargingVoltage = ShmRelayModuleData->Gun2FuseOutputVolt;
  359. _chargingData[index]->FireChargingVoltage = ShmRelayModuleData->Gun2RelayOutputVolt;
  360. }
  361. unsigned short Ovp = 0;
  362. unsigned short Ocp = 0;
  363. //Ovp = MIN [VOUT_MAX_VOLTAGE, EV_BATTERY_VOLTAGE] // 最大輸出電壓與電池電壓最大值
  364. //Ocp = MIN [IOUT_MAX_CURRENT, EV_CURRENT_REQ] // 最大輸出電流與需求電流最小值
  365. if (_chargingData[index]->Type == _Type_Chademo)
  366. {
  367. Ovp = MaxValue(_chargingData[index]->MaximumChargingVoltage, _chargingData[index]->EvBatteryMaxVoltage);
  368. Ocp = MaxValue(_chargingData[index]->PresentChargingCurrent, ShmCHAdeMOData->ev[_chargingData[index]->type_index].ChargingCurrentRequest);
  369. if (_chargingData[index]->PresentChargingVoltage >= Ovp)
  370. {
  371. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemChademoOutputOVP = 0x01;
  372. }
  373. if (_chargingData[index]->PresentChargingCurrent >= Ocp)
  374. {
  375. //ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemChademoOutputOCP = 0x01;
  376. }
  377. }
  378. else if (_chargingData[index]->Type == _Type_CCS_2)
  379. {
  380. }
  381. }
  382. }
  383. }
  384. // 風扇速度
  385. void GetFanSpeed()
  386. {
  387. //PRINTF_FUNC("Get fan board speed \n");
  388. if (Query_Fan_Speed(Uart5Fd, Addr.Fan, &fanSpeed) == PASS)
  389. {
  390. ShmFanModuleData->PresentFan1Speed = fanSpeed.speed[0];
  391. ShmFanModuleData->PresentFan2Speed = fanSpeed.speed[1];
  392. ShmFanModuleData->PresentFan3Speed = fanSpeed.speed[2];
  393. ShmFanModuleData->PresentFan4Speed = fanSpeed.speed[3];
  394. // PRINTF_FUNC("SystemFanRotaSpeed_1 = %d \n", fanSpeed.speed[0]);
  395. // PRINTF_FUNC("SystemFanRotaSpeed_2 = %d \n", fanSpeed.speed[1]);
  396. // PRINTF_FUNC("SystemFanRotaSpeed_3 = %d \n", fanSpeed.speed[2]);
  397. // PRINTF_FUNC("SystemFanRotaSpeed_4 = %d \n", fanSpeed.speed[3]);
  398. // Config_Fan_Speed(Uart5Fd, Addr.Fan, &fanSpeed[0]);
  399. //SysInfoData (SystemFanRotaSpeed)
  400. }
  401. }
  402. // 讀取 Relay 狀態
  403. void GetRelayOutputStatus()
  404. {
  405. if (Query_Relay_Output(Uart5Fd, Addr.Relay, &regRelay) == PASS)
  406. {
  407. regRelay.relay_event.bits.AC_Contactor = ShmSysConfigAndInfo->SysInfo.AcContactorStatus;
  408. }
  409. }
  410. // 確認 K1 K2 relay 的狀態
  411. void CheckK1K2RelayOutput(byte index)
  412. {
  413. if (index == 0)
  414. {
  415. if (_chargingData[index]->Evboard_id == 0x01)
  416. {
  417. if (regRelay.relay_event.bits.Gun1_N == YES && regRelay.relay_event.bits.Gun1_P == YES)
  418. _chargingData[index]->RelayK1K2Status = YES;
  419. else
  420. _chargingData[index]->RelayK1K2Status = NO;
  421. if(_chargingData[index]->Type == _Type_CCS_2)
  422. {
  423. if (regRelay.relay_event.bits.Gun1_N == YES && regRelay.relay_event.bits.CCS_Precharge == YES)
  424. _chargingData[index]->RelayKPK2Status = YES;
  425. else
  426. _chargingData[index]->RelayKPK2Status = NO;
  427. }
  428. }
  429. else if (_chargingData[index]->Evboard_id == 0x02)
  430. {
  431. if (regRelay.relay_event.bits.Gun2_N == YES && regRelay.relay_event.bits.Gun2_P == YES)
  432. _chargingData[index]->RelayK1K2Status = YES;
  433. else
  434. _chargingData[index]->RelayK1K2Status = NO;
  435. if(_chargingData[index]->Type == _Type_CCS_2)
  436. {
  437. if (regRelay.relay_event.bits.Gun2_N == YES && regRelay.relay_event.bits.CCS_Precharge == YES)
  438. _chargingData[index]->RelayKPK2Status = YES;
  439. else
  440. _chargingData[index]->RelayKPK2Status = NO;
  441. }
  442. }
  443. }
  444. else if (index == 1)
  445. {
  446. if (regRelay.relay_event.bits.Gun2_N == YES && regRelay.relay_event.bits.Gun2_P == YES)
  447. _chargingData[index]->RelayK1K2Status = YES;
  448. else
  449. _chargingData[index]->RelayK1K2Status = NO;
  450. if(_chargingData[index]->Type == _Type_CCS_2)
  451. {
  452. if (regRelay.relay_event.bits.Gun2_N == YES && regRelay.relay_event.bits.CCS_Precharge == YES)
  453. _chargingData[index]->RelayKPK2Status = YES;
  454. else
  455. _chargingData[index]->RelayKPK2Status = NO;
  456. }
  457. }
  458. if (regRelay.relay_event.bits.Gun1_Parallel_N == YES && regRelay.relay_event.bits.Gun1_Parallel_P == YES)
  459. ShmSysConfigAndInfo->SysInfo.BridgeRelayStatus = YES;
  460. else
  461. ShmSysConfigAndInfo->SysInfo.BridgeRelayStatus = NO;
  462. // PRINTF_FUNC("Check Relay Output. index = %d, RelayKPK2Status = %d, BridgeRelayStatus = %d \n",
  463. // index, _chargingData[index]->RelayKPK2Status, ShmSysConfigAndInfo->SysInfo.BridgeRelayStatus);
  464. }
  465. void GetGfdAdc()
  466. {
  467. // define : 每 0.2 ~ 1 秒一次
  468. // occur : <= 75k 歐姆 @ 150 - 750 Vdc
  469. // warning : >= 100 歐姆 && <= 500 歐姆 @ 150-750 Vdc
  470. if (Query_Gfd_Adc(Uart5Fd, Addr.Relay, &gfd_adc) == PASS)
  471. {
  472. for (int i = 0; i < gunCount; i++)
  473. {
  474. if (i == 0)
  475. {
  476. _chargingData[i]->GroundFaultStatus = gfd_adc.result_conn1;
  477. if (_chargingData[i]->GroundFaultStatus == GFD_FAIL)
  478. {
  479. DEBUG_ERROR("GFD Fail. index = %d, R = %d, Vol = %d \n",
  480. i, gfd_adc.Resister_conn1, gfd_adc.voltage_conn1);
  481. PRINTF_FUNC("GFD Fail. index = %d, R = %d, Vol = %d \n",
  482. i, gfd_adc.Resister_conn1, gfd_adc.voltage_conn1);
  483. }
  484. }
  485. else if (i == 1)
  486. {
  487. _chargingData[i]->GroundFaultStatus = gfd_adc.result_conn2;
  488. if (_chargingData[i]->GroundFaultStatus == GFD_FAIL)
  489. {
  490. DEBUG_ERROR("GFD Fail. index = %d, R = %d, Vol = %d \n",
  491. i, gfd_adc.Resister_conn2, gfd_adc.voltage_conn2);
  492. PRINTF_FUNC("GFD Fail. index = %d, R = %d, Vol = %d \n",
  493. i, gfd_adc.Resister_conn2, gfd_adc.voltage_conn2);
  494. }
  495. }
  496. }
  497. //if (gfd_adc.result_conn1 != 0)
  498. {
  499. // PRINTF_FUNC("******************Resister_conn1 = %d, voltage_conn1 = %d, result_conn1 = %d, step = %d \n",
  500. // gfd_adc.Resister_conn1,
  501. // gfd_adc.voltage_conn1,
  502. // gfd_adc.result_conn1,
  503. // gfd_adc.rb_step_1);
  504. }
  505. }
  506. }
  507. void GetGpioInput()
  508. {
  509. if (Query_Gpio_Input(Uart5Fd, Addr.Aux, &gpio_in) == PASS)
  510. {
  511. // AC Contactor Status
  512. if (gpio_in.AC_MainBreaker == 1)
  513. {
  514. // AC Main Breaker ON
  515. PRINTF_FUNC("RB AC Main Breaker. \n");
  516. }
  517. if (gpio_in.SPD == 1)
  518. {
  519. // SPD (雷擊保護) ON
  520. PRINTF_FUNC("RB SPD. \n");
  521. }
  522. if (gpio_in.Door_Open == 1)
  523. {
  524. // Door Open
  525. PRINTF_FUNC("RB Door Open. \n");
  526. }
  527. if (gpio_in.GFD[0] == 1)
  528. {
  529. // GFD_1 Trigger
  530. }
  531. if (gpio_in.GFD[1] == 1)
  532. {
  533. // GFD_2 Trigger
  534. }
  535. if (gpio_in.AC_Drop == 1)
  536. {
  537. // AC Drop
  538. PRINTF_FUNC("RB AC Drop. \n");
  539. }
  540. if (gpio_in.Emergency_IO == 1)
  541. {
  542. // Emergency IO ON
  543. PRINTF_FUNC("RB Emergency IO ON. \n");
  544. }
  545. if (gpio_in.Button_Emergency_Press == 1)
  546. {
  547. // Emergency button Press
  548. }
  549. if (gpio_in.Button_On_Press == 1)
  550. {
  551. // On button Press
  552. }
  553. if (gpio_in.Button_Off_Press == 1)
  554. {
  555. // Off button Press
  556. }
  557. if (gpio_in.Key_1_Press == 1)
  558. {
  559. // key 1 press
  560. }
  561. if (gpio_in.Key_2_Press == 1)
  562. {
  563. // key 2 press
  564. }
  565. if (gpio_in.Key_3_Press == 1)
  566. {
  567. // key 3 press
  568. }
  569. if (gpio_in.Key_4_Press == 1)
  570. {
  571. // key 4 press
  572. }
  573. }
  574. }
  575. // 5V 12V 24V 48V
  576. void GetAuxPower()
  577. {
  578. if (Query_Aux_PowerVoltage(Uart5Fd, Addr.Fan, &auxPower) == PASS)
  579. {
  580. ShmSysConfigAndInfo->SysInfo.AuxPower48V = auxPower.voltage[0];
  581. ShmSysConfigAndInfo->SysInfo.AuxPower24V = auxPower.voltage[1];
  582. //ShmSysConfigAndInfo->SysInfo.AuxPower12V = auxPower.voltage[4];
  583. //ShmSysConfigAndInfo->SysInfo.AuxPower5V = auxPower.voltage[6];
  584. // aux power voltage
  585. //PRINTF_FUNC("aux1 = %x, \n", auxPower.voltage[0]);
  586. //PRINTF_FUNC("aux2 = %x, \n", auxPower.voltage[1]);
  587. }
  588. }
  589. void SetFanModuleSpeed()
  590. {
  591. // 調整風扇速度要漸進式 : 500 rpm/p
  592. if (ShmFanModuleData->PresentFan1Speed != ShmFanModuleData->SetFan1Speed ||
  593. ShmFanModuleData->PresentFan2Speed != ShmFanModuleData->SetFan2Speed ||
  594. ShmFanModuleData->PresentFan3Speed != ShmFanModuleData->SetFan3Speed ||
  595. ShmFanModuleData->PresentFan4Speed != ShmFanModuleData->SetFan4Speed)
  596. {
  597. FanSpeed _fanSpeed;
  598. unsigned short speed = ShmFanModuleData->PresentFan1Speed + fanSpeedSmoothValue;
  599. if (speed >= ShmFanModuleData->SetFan1Speed)
  600. speed = ShmFanModuleData->SetFan1Speed;
  601. _fanSpeed.speed[0] = speed;
  602. speed = ShmFanModuleData->PresentFan2Speed + fanSpeedSmoothValue;
  603. if (speed >= ShmFanModuleData->SetFan2Speed)
  604. speed = ShmFanModuleData->SetFan2Speed;
  605. _fanSpeed.speed[1] = speed;
  606. speed = ShmFanModuleData->PresentFan3Speed + fanSpeedSmoothValue;
  607. if (speed >= ShmFanModuleData->SetFan3Speed)
  608. speed = ShmFanModuleData->SetFan3Speed;
  609. _fanSpeed.speed[2] = speed;
  610. speed = ShmFanModuleData->PresentFan4Speed + fanSpeedSmoothValue;
  611. if (speed >= ShmFanModuleData->SetFan4Speed)
  612. speed = ShmFanModuleData->SetFan4Speed;
  613. _fanSpeed.speed[3] = speed;
  614. if (Config_Fan_Speed(Uart5Fd, Addr.Fan, &_fanSpeed) == PASS)
  615. {
  616. //PRINTF_FUNC("successfully Fan\n");
  617. }
  618. }
  619. }
  620. void SetRelayModuleFanSpeed()
  621. {
  622. // 調整風扇速度要漸進式 : 100 rpm/p
  623. if (ShmFanModuleData->PresentFan1Speed != ShmFanModuleData->SetFan1Speed)
  624. {
  625. FanSpeed _fanSpeed;
  626. unsigned short speed = 0;
  627. if (ShmFanModuleData->SetFan1Speed > ShmFanModuleData->PresentFan1Speed)
  628. {
  629. speed = ShmFanModuleData->PresentFan1Speed + fanSpeedSmoothValue;
  630. if (speed >= ShmFanModuleData->SetFan1Speed)
  631. speed = ShmFanModuleData->SetFan1Speed;
  632. }
  633. else
  634. {
  635. speed = ShmFanModuleData->PresentFan1Speed - fanSpeedSmoothValue;
  636. if (speed <= 0)
  637. speed = ShmFanModuleData->SetFan1Speed;
  638. }
  639. _fanSpeed.speed[0] = speed & 0xff;
  640. _fanSpeed.speed[1] = (speed >> 8) & 0xff;
  641. ShmFanModuleData->PresentFan1Speed = speed;
  642. Config_Fan_Speed(Uart5Fd, Addr.Relay, &_fanSpeed);
  643. }
  644. }
  645. void GetRelayModuleFanSpeed()
  646. {
  647. PRINTF_FUNC("Get fan board speed \n");
  648. if (Query_Fan_Speed(Uart5Fd, Addr.Relay, &fanSpeed) == PASS)
  649. {
  650. ShmFanModuleData->PresentFan1Speed = fanSpeed.speed[0] + (fanSpeed.speed[1] >> 8);
  651. PRINTF_FUNC("SystemFanRotaSpeed_1 = %d \n", fanSpeed.speed[0]);
  652. }
  653. }
  654. //==========================================
  655. // Common Function
  656. //==========================================
  657. void SetK1K2RelayStatus(byte index)
  658. {
  659. if (_chargingData[index]->SystemStatus < S_PREPARING_FOR_EVSE)
  660. {
  661. if (_chargingData[index]->Evboard_id == 0x01)
  662. {
  663. if(regRelay.relay_event.bits.Gun1_P == YES)
  664. outputRelay.relay_event.bits.Gun1_P = NO;
  665. else if (regRelay.relay_event.bits.Gun1_N == YES)
  666. outputRelay.relay_event.bits.Gun1_N = NO;
  667. if (_chargingData[index]->Type == _Type_CCS_2)
  668. {
  669. if(regRelay.relay_event.bits.CCS_Precharge == YES)
  670. outputRelay.relay_event.bits.CCS_Precharge = NO;
  671. }
  672. }
  673. else if (_chargingData[index]->Evboard_id == 0x02)
  674. {
  675. if(regRelay.relay_event.bits.Gun2_P == YES)
  676. outputRelay.relay_event.bits.Gun2_P = NO;
  677. else if (regRelay.relay_event.bits.Gun2_N == YES)
  678. outputRelay.relay_event.bits.Gun2_N = NO;
  679. if (_chargingData[index]->Type == _Type_CCS_2)
  680. {
  681. if(regRelay.relay_event.bits.CCS_Precharge == YES)
  682. outputRelay.relay_event.bits.CCS_Precharge = NO;
  683. }
  684. }
  685. }
  686. else if ((_chargingData[index]->SystemStatus >= S_PREPARING_FOR_EVSE && _chargingData[index]->SystemStatus <= S_CHARGING))
  687. {
  688. if (_chargingData[index]->Evboard_id == 0x01)
  689. {
  690. if(regRelay.relay_event.bits.Gun1_N == NO)
  691. outputRelay.relay_event.bits.Gun1_N = YES;
  692. else if (regRelay.relay_event.bits.Gun1_P == NO)
  693. outputRelay.relay_event.bits.Gun1_P = YES;
  694. }
  695. else if (_chargingData[index]->Evboard_id == 0x02)
  696. {
  697. if(regRelay.relay_event.bits.Gun2_N == NO)
  698. outputRelay.relay_event.bits.Gun2_N = YES;
  699. else if (regRelay.relay_event.bits.Gun2_P == NO)
  700. outputRelay.relay_event.bits.Gun2_P = YES;
  701. }
  702. }
  703. else if (_chargingData[index]->SystemStatus == S_COMPLETE)
  704. {
  705. if (_chargingData[index]->PresentChargingCurrent <= SEFETY_SWITCH_RELAY_CUR)
  706. {
  707. if (_chargingData[index]->Evboard_id == 0x01)
  708. {
  709. if(regRelay.relay_event.bits.Gun1_P == YES)
  710. outputRelay.relay_event.bits.Gun1_P = NO;
  711. else if (regRelay.relay_event.bits.Gun1_N == YES)
  712. outputRelay.relay_event.bits.Gun1_N = NO;
  713. }
  714. else if (_chargingData[index]->Evboard_id == 0x02)
  715. {
  716. if(regRelay.relay_event.bits.Gun2_P == YES)
  717. outputRelay.relay_event.bits.Gun2_P = NO;
  718. else if (regRelay.relay_event.bits.Gun2_N == YES)
  719. outputRelay.relay_event.bits.Gun2_N = NO;
  720. }
  721. }
  722. }
  723. else if (_chargingData[index]->SystemStatus == S_CCS_PRECHARGE_ST0)
  724. {
  725. if (_chargingData[index]->Evboard_id == 0x01)
  726. {
  727. if (_chargingData[index]->Type == _Type_CCS_2)
  728. {
  729. if (regRelay.relay_event.bits.CCS_Precharge == NO)
  730. outputRelay.relay_event.bits.CCS_Precharge = YES;
  731. else if (regRelay.relay_event.bits.CCS_Precharge == YES)
  732. outputRelay.relay_event.bits.Gun1_P = NO;
  733. }
  734. }
  735. else if (_chargingData[index]->Evboard_id == 0x02)
  736. {
  737. if (_chargingData[index]->Type == _Type_CCS_2)
  738. {
  739. if (regRelay.relay_event.bits.CCS_Precharge == NO)
  740. outputRelay.relay_event.bits.CCS_Precharge = YES;
  741. else if (regRelay.relay_event.bits.CCS_Precharge == YES)
  742. outputRelay.relay_event.bits.Gun2_P = NO;
  743. }
  744. }
  745. }
  746. else if (_chargingData[index]->SystemStatus == S_CCS_PRECHARGE_ST1)
  747. {
  748. if (_chargingData[index]->Evboard_id == 0x01)
  749. {
  750. if (_chargingData[index]->Type == _Type_CCS_2)
  751. {
  752. if (regRelay.relay_event.bits.Gun1_P == NO)
  753. outputRelay.relay_event.bits.Gun1_P = YES;
  754. else if(regRelay.relay_event.bits.Gun1_P == YES)
  755. outputRelay.relay_event.bits.CCS_Precharge = NO;
  756. }
  757. }
  758. else if (_chargingData[index]->Evboard_id == 0x02)
  759. {
  760. if (_chargingData[index]->Type == _Type_CCS_2)
  761. {
  762. if (regRelay.relay_event.bits.Gun2_P == NO)
  763. outputRelay.relay_event.bits.Gun2_P = YES;
  764. else if(regRelay.relay_event.bits.Gun2_P == YES)
  765. outputRelay.relay_event.bits.CCS_Precharge = NO;
  766. }
  767. }
  768. }
  769. }
  770. void CheckPhaseLossStatus(byte index)
  771. {
  772. if (ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL1InputUVP == YES ||
  773. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL2InputUVP == YES ||
  774. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.SystemL3InputUVP == YES)
  775. {
  776. _chargingData[index]->StopChargeFlag = YES;
  777. }
  778. }
  779. void SetParalleRelayStatus()
  780. {
  781. if (gunCount >= 2 && ShmSysConfigAndInfo->SysInfo.IsAlternatvieConf == NO)
  782. {
  783. if (_chargingData[0]->SystemStatus == S_BOOTING || _chargingData[1]->SystemStatus == S_BOOTING)
  784. {
  785. // 初始化~ 不搭橋接
  786. if (regRelay.relay_event.bits.Gun1_Parallel_P == YES)
  787. outputRelay.relay_event.bits.Gun1_Parallel_P = NO;
  788. else if (regRelay.relay_event.bits.Gun1_Parallel_N == YES)
  789. outputRelay.relay_event.bits.Gun1_Parallel_N = NO;
  790. }
  791. else
  792. {
  793. if (_chargingData[0]->IsReadyToCharging == YES ||
  794. _chargingData[1]->IsReadyToCharging == YES)
  795. {
  796. // ************需考慮在切換中 - 切開 relay 與搭回 relay 的時機點************
  797. if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_MAX)
  798. {
  799. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag < _REASSIGNED_RELAY_M_TO_A)
  800. {
  801. // 最大充 - 搭上橋接
  802. if (regRelay.relay_event.bits.Gun1_Parallel_N == NO)
  803. outputRelay.relay_event.bits.Gun1_Parallel_N = YES;
  804. else if (regRelay.relay_event.bits.Gun1_Parallel_P == NO)
  805. outputRelay.relay_event.bits.Gun1_Parallel_P = YES;
  806. }
  807. else
  808. {
  809. // 平均充 - 不搭
  810. if (regRelay.relay_event.bits.Gun1_Parallel_P == YES)
  811. outputRelay.relay_event.bits.Gun1_Parallel_P = NO;
  812. else if (regRelay.relay_event.bits.Gun1_Parallel_N == YES)
  813. outputRelay.relay_event.bits.Gun1_Parallel_N = NO;
  814. }
  815. }
  816. else if (ShmSysConfigAndInfo->SysInfo.MainChargingMode == _MAIN_CHARGING_MODE_AVER)
  817. {
  818. if (ShmSysConfigAndInfo->SysInfo.ReAssignedFlag < _REASSIGNED_RELAY_A_TO_M)
  819. {
  820. // 平均充 - 不搭
  821. if (regRelay.relay_event.bits.Gun1_Parallel_P == YES)
  822. outputRelay.relay_event.bits.Gun1_Parallel_P = NO;
  823. else if (regRelay.relay_event.bits.Gun1_Parallel_N == YES)
  824. outputRelay.relay_event.bits.Gun1_Parallel_N = NO;
  825. }
  826. else
  827. {
  828. // 最大充 - 搭上橋接
  829. if (regRelay.relay_event.bits.Gun1_Parallel_N == NO)
  830. outputRelay.relay_event.bits.Gun1_Parallel_N = YES;
  831. else if (regRelay.relay_event.bits.Gun1_Parallel_P == NO)
  832. outputRelay.relay_event.bits.Gun1_Parallel_P = YES;
  833. }
  834. }
  835. }
  836. }
  837. }
  838. }
  839. //==========================================
  840. // Init all share memory
  841. //==========================================
  842. int InitShareMemory()
  843. {
  844. int result = PASS;
  845. int MeterSMId;
  846. //creat ShmSysConfigAndInfo
  847. if ((MeterSMId = shmget(ShmSysConfigAndInfoKey, sizeof(struct SysConfigAndInfo), 0777)) < 0)
  848. {
  849. #ifdef SystemLogMessage
  850. DEBUG_ERROR("shmget ShmSysConfigAndInfo NG\n");
  851. #endif
  852. result = FAIL;
  853. }
  854. else if ((ShmSysConfigAndInfo = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  855. {
  856. #ifdef SystemLogMessage
  857. DEBUG_ERROR("[shmat ShmSysConfigAndInfo NG\n");
  858. #endif
  859. result = FAIL;
  860. }
  861. //creat ShmStatusCodeData
  862. if ((MeterSMId = shmget(ShmStatusCodeKey, sizeof(struct StatusCodeData), 0777)) < 0)
  863. {
  864. #ifdef SystemLogMessage
  865. DEBUG_ERROR("shmget ShmStatusCodeData NG\n");
  866. #endif
  867. result = FAIL;
  868. }
  869. else if ((ShmStatusCodeData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  870. {
  871. #ifdef SystemLogMessage
  872. DEBUG_ERROR("shmat ShmStatusCodeData NG\n");
  873. #endif
  874. result = FAIL;
  875. }
  876. //creat ShmFanModuleData
  877. if ((MeterSMId = shmget(ShmFanBdKey, sizeof(struct FanModuleData), 0777)) < 0)
  878. {
  879. #ifdef SystemLogMessage
  880. DEBUG_ERROR("shmget ShmFanModuleData NG\n");
  881. #endif
  882. result = FAIL;
  883. }
  884. else if ((ShmFanModuleData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  885. {
  886. #ifdef SystemLogMessage
  887. DEBUG_ERROR("shmat ShmFanModuleData NG\n");
  888. #endif
  889. result = FAIL;
  890. }
  891. memset(ShmFanModuleData,0,sizeof(struct FanModuleData));
  892. //creat ShmRelayModuleData
  893. if ((MeterSMId = shmget(ShmRelayBdKey, sizeof(struct RelayModuleData), 0777)) < 0)
  894. {
  895. #ifdef SystemLogMessage
  896. DEBUG_ERROR("shmget ShmRelayModuleData NG\n");
  897. #endif
  898. result = FAIL;
  899. }
  900. else if ((ShmRelayModuleData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  901. {
  902. #ifdef SystemLogMessage
  903. DEBUG_ERROR("shmat ShmRelayModuleData NG\n");
  904. #endif
  905. result = FAIL;
  906. }
  907. //creat ShmPsuData
  908. if ((MeterSMId = shmget(ShmPsuKey, sizeof(struct PsuData), 0777)) < 0)
  909. {
  910. #ifdef SystemLogMessage
  911. DEBUG_ERROR("shmget ShmPsuData NG \n");
  912. #endif
  913. result = FAIL;
  914. }
  915. else if ((ShmPsuData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  916. {
  917. #ifdef SystemLogMessage
  918. DEBUG_ERROR("shmat ShmPsuData NG \n");
  919. #endif
  920. result = FAIL;
  921. }
  922. memset(ShmPsuData,0,sizeof(struct PsuData));
  923. if(CHAdeMO_QUANTITY > 0)
  924. {
  925. if ((MeterSMId = shmget(ShmCHAdeMOCommKey, sizeof(struct CHAdeMOData), IPC_CREAT | 0777)) < 0)
  926. {
  927. #ifdef SystemLogMessage
  928. DEBUG_ERROR("[shmget ShmCHAdeMOData NG \n");
  929. #endif
  930. return FAIL;
  931. }
  932. else if ((ShmCHAdeMOData = shmat(MeterSMId, NULL, 0)) == (void *) -1) {
  933. #ifdef SystemLogMessage
  934. DEBUG_ERROR("shmat ShmCHAdeMOData NG \n");
  935. #endif
  936. return FAIL;
  937. }
  938. }
  939. if(CCS_QUANTITY > 0)
  940. {
  941. if ((MeterSMId = shmget(ShmCcsCommKey, sizeof(struct CcsData), IPC_CREAT | 0777)) < 0)
  942. {
  943. #ifdef SystemLogMessage
  944. DEBUG_ERROR("shmget ShmCcsData NG \n");
  945. #endif
  946. return FAIL;
  947. }
  948. else if ((ShmCcsData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  949. {
  950. #ifdef SystemLogMessage
  951. DEBUG_ERROR("shmat ShmCcsData NG \n");
  952. #endif
  953. return FAIL;
  954. }
  955. }
  956. return result;
  957. }
  958. int InitComPort()
  959. {
  960. int fd;
  961. struct termios tios;
  962. fd = open(relayRs485PortName, O_RDWR);
  963. if(fd <= 0)
  964. {
  965. #ifdef SystemLogMessage
  966. DEBUG_ERROR("Module_InternalComm. InitComPort NG\n");
  967. #endif
  968. if(ShmStatusCodeData!=NULL)
  969. {
  970. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.CsuInitFailed=1;
  971. }
  972. sleep(5);
  973. return -1;
  974. }
  975. ioctl (fd, TCGETS, &tios);
  976. tios.c_cflag = B115200 | CS8 | CLOCAL | CREAD;
  977. tios.c_lflag = 0;
  978. tios.c_iflag = 0;
  979. tios.c_oflag = 0;
  980. tios.c_cc[VMIN]=0;
  981. tios.c_cc[VTIME]=(byte)0; // timeout 0.5 second
  982. tios.c_lflag=0;
  983. tcflush(fd, TCIFLUSH);
  984. ioctl (fd, TCSETS, &tios);
  985. return fd;
  986. }
  987. //================================================
  988. // Main process
  989. //================================================
  990. bool FindChargingInfoData(byte target, struct ChargingInfoData **chargingData)
  991. {
  992. for (byte index = 0; index < CHAdeMO_QUANTITY; index++) {
  993. if (ShmSysConfigAndInfo->SysInfo.ChademoChargingData[index].Index
  994. == target) {
  995. chargingData[target] =
  996. &ShmSysConfigAndInfo->SysInfo.ChademoChargingData[index];
  997. return true;
  998. }
  999. }
  1000. for (byte index = 0; index < CCS_QUANTITY; index++) {
  1001. if (ShmSysConfigAndInfo->SysInfo.CcsChargingData[index].Index
  1002. == target) {
  1003. chargingData[target] =
  1004. &ShmSysConfigAndInfo->SysInfo.CcsChargingData[index];
  1005. return true;
  1006. }
  1007. }
  1008. for (byte index = 0; index < GB_QUANTITY; index++) {
  1009. if (ShmSysConfigAndInfo->SysInfo.GbChargingData[index].Index
  1010. == target) {
  1011. chargingData[target] =
  1012. &ShmSysConfigAndInfo->SysInfo.GbChargingData[index];
  1013. return true;
  1014. }
  1015. }
  1016. return false;
  1017. }
  1018. void Initialization()
  1019. {
  1020. bool isPass = false;
  1021. for (byte index = 0; index < ARRAY_SIZE(outputRelay.relay_event.relay_status); index++)
  1022. {
  1023. outputRelay.relay_event.relay_status[index] = 0x00;
  1024. }
  1025. while(!isPass)
  1026. {
  1027. isPass = true;
  1028. for (byte _index = 0; _index < gunCount; _index++)
  1029. {
  1030. if (!FindChargingInfoData(_index, &_chargingData[0]))
  1031. {
  1032. DEBUG_ERROR("EvComm (main) : FindChargingInfoData false \n");
  1033. isPass = false;
  1034. break;
  1035. }
  1036. }
  1037. }
  1038. }
  1039. bool IsNoneMatchRelayStatus()
  1040. {
  1041. bool result = false;
  1042. // PRINTF_FUNC("Real Relay, AC = %x, g1_p = %x, g1_n = %x, g2_p = %x, g2_n = %x, pre = %x, bri_p = %x, bri_n = %x \n",
  1043. // regRelay.relay_event.bits.AC_Contactor,
  1044. // regRelay.relay_event.bits.Gun1_P,
  1045. // regRelay.relay_event.bits.Gun1_N,
  1046. // regRelay.relay_event.bits.Gun2_P,
  1047. // regRelay.relay_event.bits.Gun2_N,
  1048. // regRelay.relay_event.bits.CCS_Precharge,
  1049. // regRelay.relay_event.bits.Gun1_Parallel_P,
  1050. // regRelay.relay_event.bits.Gun1_Parallel_N);
  1051. if ((regRelay.relay_event.bits.AC_Contactor != outputRelay.relay_event.bits.AC_Contactor) ||
  1052. (regRelay.relay_event.bits.CCS_Precharge != outputRelay.relay_event.bits.CCS_Precharge) ||
  1053. (regRelay.relay_event.bits.Gun1_P != outputRelay.relay_event.bits.Gun1_P) ||
  1054. (regRelay.relay_event.bits.Gun1_N != outputRelay.relay_event.bits.Gun1_N) ||
  1055. (regRelay.relay_event.bits.Gun2_P != outputRelay.relay_event.bits.Gun2_P) ||
  1056. (regRelay.relay_event.bits.Gun2_N != outputRelay.relay_event.bits.Gun2_N) ||
  1057. (regRelay.relay_event.bits.Gun1_Parallel_P != outputRelay.relay_event.bits.Gun1_Parallel_P) ||
  1058. (regRelay.relay_event.bits.Gun1_Parallel_N != outputRelay.relay_event.bits.Gun1_Parallel_N))
  1059. {
  1060. result = true;
  1061. }
  1062. return result;
  1063. }
  1064. void MatchRelayStatus()
  1065. {
  1066. // 因為 AC Contactor 沒有 Feedback,所以暫時先這樣處理
  1067. //regRelay.relay_event.bits.AC_Contactor = outputRelay.relay_event.bits.AC_Contactor;
  1068. ShmSysConfigAndInfo->SysInfo.AcContactorStatus = regRelay.relay_event.bits.AC_Contactor = outputRelay.relay_event.bits.AC_Contactor;
  1069. regRelay.relay_event.bits.CCS_Precharge = outputRelay.relay_event.bits.CCS_Precharge;
  1070. regRelay.relay_event.bits.Gun1_P = outputRelay.relay_event.bits.Gun1_P;
  1071. regRelay.relay_event.bits.Gun1_N = outputRelay.relay_event.bits.Gun1_N;
  1072. regRelay.relay_event.bits.Gun2_P = outputRelay.relay_event.bits.Gun2_P;
  1073. regRelay.relay_event.bits.Gun2_N = outputRelay.relay_event.bits.Gun2_N;
  1074. regRelay.relay_event.bits.Gun1_Parallel_P = outputRelay.relay_event.bits.Gun1_Parallel_P;
  1075. regRelay.relay_event.bits.Gun1_Parallel_N = outputRelay.relay_event.bits.Gun1_Parallel_N;
  1076. }
  1077. void CheckRelayStatusByADC()
  1078. {
  1079. if (ShmRelayModuleData->Gun1FuseOutputVolt > 0 && ShmRelayModuleData->Gun1RelayOutputVolt > 0 &&
  1080. (ShmRelayModuleData->Gun1FuseOutputVolt == ShmRelayModuleData->Gun1RelayOutputVolt))
  1081. {
  1082. // Relay 前後電壓一致
  1083. _chargingData[0]->RelayK1K2Status = 0x01;
  1084. }
  1085. else
  1086. _chargingData[0]->RelayK1K2Status = 0x00;
  1087. if (ShmRelayModuleData->Gun2FuseOutputVolt > 0 && ShmRelayModuleData->Gun2RelayOutputVolt > 0 &&
  1088. (ShmRelayModuleData->Gun2FuseOutputVolt == ShmRelayModuleData->Gun2RelayOutputVolt))
  1089. {
  1090. // Relay 前後電壓一致
  1091. _chargingData[1]->RelayK1K2Status = 0x01;
  1092. }
  1093. else
  1094. _chargingData[1]->RelayK1K2Status = 0x00;
  1095. }
  1096. void SetGfdConfig(byte index, byte resister)
  1097. {
  1098. gfd_config.index = index;
  1099. gfd_config.state = resister;
  1100. //PRINTF_FUNC("************************GFD Vol = %d, GFD Res = %d \n", gfd_config.reqVol, gfd_config.resister);
  1101. if (Config_Gfd_Value(Uart5Fd, Addr.Relay, &gfd_config) == PASS)
  1102. {
  1103. // PRINTF_FUNC("Set reqVol = %f, resister = %d \n",
  1104. // gfd_config.reqVol,
  1105. // gfd_config.resister);
  1106. }
  1107. }
  1108. void CableCheckDetected(byte index)
  1109. {
  1110. // Cable Check
  1111. // 當火線上的電壓 = 車端要求的電壓電流
  1112. // _chargingData[targetGun]->EvBatterytargetVoltage
  1113. // 才可以開始偵測 1s
  1114. // Warning : Rgfd <= 150 歐/V 假設電壓為 500V 則~ Rgfd <= 75000 歐
  1115. // Pre-Warning : 150 歐/V < Rgfd <= 500 歐/V 假設電壓為 500V 則 75000 歐 < Rgfd <= 250000
  1116. // SO Normal : Rgfd > 500 歐/V 假設電壓為 500 V 則 Rgfd > 250000 歐
  1117. if ((_chargingData[index]->SystemStatus >= S_PREPARING_FOR_EVSE && _chargingData[index]->SystemStatus <= S_CHARGING) ||
  1118. (_chargingData[index]->SystemStatus >= S_CCS_PRECHARGE_ST0 && _chargingData[index]->SystemStatus <= S_CCS_PRECHARGE_ST1))
  1119. {
  1120. if (_chargingData[index]->SystemStatus == S_PREPARING_FOR_EVSE)
  1121. {
  1122. SetGfdConfig(index, GFD_CABLECHK);
  1123. }
  1124. else if (_chargingData[index]->SystemStatus >= S_CCS_PRECHARGE_ST0 &&
  1125. _chargingData[index]->SystemStatus <= S_CCS_PRECHARGE_ST1)
  1126. {
  1127. SetGfdConfig(index, GFD_PRECHARGE);
  1128. }
  1129. else if (_chargingData[index]->SystemStatus <= S_CHARGING)
  1130. {
  1131. SetGfdConfig(index, GFD_CHARGING);
  1132. }
  1133. }
  1134. else if(_chargingData[index]->SystemStatus == S_COMPLETE || _chargingData[index]->SystemStatus == S_PREPARNING
  1135. || _chargingData[index]->SystemStatus == S_IDLE)
  1136. {
  1137. SetGfdConfig(index, GFD_IDLE);
  1138. }
  1139. }
  1140. void CheckOutputPowerOverCarReq(byte index)
  1141. {
  1142. float fireV = _chargingData[index]->FireChargingVoltage;
  1143. float carV = _chargingData[index]->EvBatterytargetVoltage;
  1144. if (_chargingData[index]->EvBatterytargetVoltage > 1500 &&
  1145. (_chargingData[index]->Type == _Type_Chademo ||
  1146. _chargingData[index]->Type == _Type_CCS_2 ||
  1147. _chargingData[index]->Type == _Type_GB))
  1148. {
  1149. if (fireV >= (carV + (carV * 0.1)))
  1150. {
  1151. PRINTF_FUNC("[Module_InternalComm]CheckOutputPowerOverCarReq NG : fire = %f, battery = %f \n",
  1152. _chargingData[index]->FireChargingVoltage, _chargingData[index]->EvBatterytargetVoltage);
  1153. DEBUG_ERROR("[Module_InternalComm]CheckOutputPowerOverCarReq NG : fire = %f, battery = %f \n",
  1154. _chargingData[index]->FireChargingVoltage, _chargingData[index]->EvBatterytargetVoltage);
  1155. _chargingData[index]->StopChargeFlag = YES;
  1156. }
  1157. }
  1158. }
  1159. void CheckOutputVolNoneMatchFire(byte index)
  1160. {
  1161. if (_chargingData[index]->EvBatterytargetVoltage > 1500 &&
  1162. (_chargingData[index]->Type == _Type_Chademo ||
  1163. _chargingData[index]->Type == _Type_CCS_2 ||
  1164. _chargingData[index]->Type == _Type_GB))
  1165. {
  1166. if ((_chargingData[index]->PresentChargingVoltage < _chargingData[index]->FireChargingVoltage - 300) ||
  1167. (_chargingData[index]->PresentChargingVoltage > _chargingData[index]->FireChargingVoltage + 300))
  1168. {
  1169. if (!_isOutputNoneMatch[index])
  1170. {
  1171. _isOutputNoneMatch[index] = YES;
  1172. gettimeofday(&_checkOutputNoneMatchTimer[index], NULL);
  1173. }
  1174. else
  1175. {
  1176. if ((GetTimeoutValue(_checkOutputNoneMatchTimer[index]) / 1000) >= 5000)
  1177. {
  1178. PRINTF_FUNC("[Module_InternalComm]CheckOutputVolNoneMatchFire NG (%d) : pre = %f, fire = %f \n",
  1179. index, _chargingData[index]->PresentChargingVoltage, _chargingData[index]->FireChargingVoltage);
  1180. DEBUG_ERROR("[Module_InternalComm]CheckOutputVolNoneMatchFire NG (%d): pre = %f, fire = %f \n",
  1181. index, _chargingData[index]->PresentChargingVoltage, _chargingData[index]->FireChargingVoltage);
  1182. _chargingData[index]->StopChargeFlag = YES;
  1183. }
  1184. }
  1185. }
  1186. else
  1187. _isOutputNoneMatch[index] = NO;
  1188. }
  1189. }
  1190. void GetPsuTempForFanSpeed()
  1191. {
  1192. char temp = 0;
  1193. for (byte index = 0; index < ShmPsuData->GroupCount; index++)
  1194. {
  1195. for (byte count = 0; count < ShmPsuData->PsuGroup[index].GroupPresentPsuQuantity; count++)
  1196. {
  1197. if (temp < ShmPsuData->PsuGroup[index].PsuModule[count].ExletTemp)
  1198. temp = ShmPsuData->PsuGroup[index].PsuModule[count].ExletTemp;
  1199. }
  1200. }
  1201. if (ShmFanModuleData->TestFanSpeed == NORMAL_FAN_SPEED)
  1202. {
  1203. if (temp >= ENV_TEMP_MAX)
  1204. ShmFanModuleData->TestFanSpeed = MAX_FAN_SPEED;
  1205. }
  1206. else if (ShmFanModuleData->TestFanSpeed == MAX_FAN_SPEED)
  1207. {
  1208. if (temp <= ENV_TEMP_MIN)
  1209. ShmFanModuleData->TestFanSpeed = NORMAL_FAN_SPEED;
  1210. }
  1211. else
  1212. ShmFanModuleData->TestFanSpeed = NORMAL_FAN_SPEED;
  1213. }
  1214. int main(void)
  1215. {
  1216. if(InitShareMemory() == FAIL)
  1217. {
  1218. #ifdef SystemLogMessage
  1219. DEBUG_ERROR("InitShareMemory NG\n");
  1220. #endif
  1221. if(ShmStatusCodeData!=NULL)
  1222. {
  1223. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.FailToCreateShareMemory=1;
  1224. }
  1225. sleep(5);
  1226. return 0;
  1227. }
  1228. gunCount = ShmSysConfigAndInfo->SysConfig.TotalConnectorCount;
  1229. // Open Uart5 for RB
  1230. Uart5Fd = InitComPort();
  1231. Initialization();
  1232. sleep(1);
  1233. if(Uart5Fd < 0)
  1234. {
  1235. PRINTF_FUNC("(Internal) open port error. \n");
  1236. return 0;
  1237. }
  1238. outputRelay.relay_event.bits.AC_Contactor = 0x00;
  1239. //outputRelay.relay_event.bits.CCS_Precharge = 0x00;
  1240. //outputRelay.relay_event.bits.Gun1_Parallel_P = 0x01;
  1241. //outputRelay.relay_event.bits.Gun1_Parallel_N = 0x01;
  1242. //outputRelay.relay_event.bits.Gun1_P = 0x01;
  1243. //outputRelay.relay_event.bits.Gun1_N = 0x01;
  1244. //outputRelay.relay_event.bits.Gun2_N = 0x01;
  1245. //outputRelay.relay_event.bits.Gun2_P = 0x01;
  1246. if(Config_Relay_Output(Uart5Fd, Addr.Relay, &outputRelay) != PASS)
  1247. PRINTF_FUNC("Config_Relay_Output fail \n");
  1248. bool printRelayStatus = false;
  1249. //return 0;
  1250. for(;;)
  1251. {
  1252. bool isCharging = false;
  1253. // 程序開始之前~ 必須先確定 FW 版本與硬體版本,確認後!!~ 該模組才算是真正的 Initial Comp.
  1254. if (ShmRelayModuleData->SelfTest_Comp == NO)
  1255. {
  1256. GetFwAndHwVersion_Relay();
  1257. SetRtcData_Relay();
  1258. sleep(1);
  1259. }
  1260. if (ShmFanModuleData->SelfTest_Comp == NO)
  1261. {
  1262. GetFwAndHwVersion_Fan();
  1263. SetModelName_Fan();
  1264. SetRtcData_Fan();
  1265. sleep(1);
  1266. gettimeofday(&_priority_time, NULL);
  1267. }
  1268. if (ShmRelayModuleData->SelfTest_Comp == YES)
  1269. {
  1270. // ==============優先權最高 10 ms ==============
  1271. // 輸出電壓
  1272. GetPersentOutputVol();
  1273. // 三相輸入電壓
  1274. GetPresentInputVol();
  1275. // 讀取當前 relay 狀態
  1276. GetRelayOutputStatus();
  1277. for (int i = 0; i < gunCount; i++)
  1278. {
  1279. // Cable check (Set)
  1280. CableCheckDetected(i);
  1281. // check k1 k2 relay 狀態
  1282. CheckK1K2RelayOutput(i);
  1283. // 依據當前各槍的狀態選擇 搭上/放開 Relay
  1284. SetK1K2RelayStatus(i);
  1285. if (ShmSysConfigAndInfo->SysConfig.PhaseLossPolicy == YES)
  1286. CheckPhaseLossStatus(i);
  1287. if (_chargingData[i]->SystemStatus == S_IDLE)
  1288. gfdChkFailCount[i] = 0;
  1289. if (_chargingData[i]->SystemStatus == S_BOOTING ||
  1290. (_chargingData[i]->SystemStatus >= S_PREPARNING && _chargingData[i]->SystemStatus <= S_COMPLETE) ||
  1291. (_chargingData[i]->SystemStatus >= S_CCS_PRECHARGE_ST0 && _chargingData[i]->SystemStatus <= S_CCS_PRECHARGE_ST1) ||
  1292. (ShmSysConfigAndInfo->SysInfo.PageIndex >= _LCM_AUTHORIZING && ShmSysConfigAndInfo->SysInfo.PageIndex <= _LCM_WAIT_FOR_PLUG))
  1293. {
  1294. _chargingData[i]->IsReadyToCharging = YES;
  1295. isCharging = true;
  1296. if (_chargingData[i]->SystemStatus == S_CHARGING)
  1297. {
  1298. CheckOutputPowerOverCarReq(i);
  1299. CheckOutputVolNoneMatchFire(i);
  1300. }
  1301. else
  1302. {
  1303. _isOutputNoneMatch[i] = NO;
  1304. }
  1305. }
  1306. else
  1307. _chargingData[i]->IsReadyToCharging = NO;
  1308. }
  1309. // Cable check (Get)
  1310. GetGfdAdc();
  1311. // 橋接 relay
  1312. SetParalleRelayStatus();
  1313. // 搭上 AC Contactor
  1314. if (isCharging)
  1315. outputRelay.relay_event.bits.AC_Contactor = YES;
  1316. else
  1317. outputRelay.relay_event.bits.AC_Contactor = NO;
  1318. if (isCharging)
  1319. {
  1320. isStopChargingCount = false;
  1321. outputRelay.relay_event.bits.AC_Contactor = YES;
  1322. }
  1323. else
  1324. {
  1325. if (!isStopChargingCount)
  1326. {
  1327. gettimeofday(&_close_ac_contactor, NULL);
  1328. isStopChargingCount = true;
  1329. }
  1330. else
  1331. {
  1332. if (!isSystemBooting ||
  1333. (outputRelay.relay_event.bits.AC_Contactor == YES && GetTimeoutValue(_close_ac_contactor) / 1000 >= (TEN_MINUTES * 1000)))
  1334. outputRelay.relay_event.bits.AC_Contactor = NO;
  1335. }
  1336. }
  1337. // 搭上/鬆開 Relay
  1338. // 放開 Relay 之前要先確認輸出的電壓電流是否已經降到某個值
  1339. if(IsNoneMatchRelayStatus())
  1340. {
  1341. if (!printRelayStatus)
  1342. {
  1343. PRINTF_FUNC("Match Relay Target, AC = %x, g1_p = %x, g1_n = %x, g2_p = %x, g2_n = %x, pre = %x, bri_p = %x, bri_n = %x \n",
  1344. outputRelay.relay_event.bits.AC_Contactor,
  1345. outputRelay.relay_event.bits.Gun1_P,
  1346. outputRelay.relay_event.bits.Gun1_N,
  1347. outputRelay.relay_event.bits.Gun2_P,
  1348. outputRelay.relay_event.bits.Gun2_N,
  1349. outputRelay.relay_event.bits.CCS_Precharge,
  1350. outputRelay.relay_event.bits.Gun1_Parallel_P,
  1351. outputRelay.relay_event.bits.Gun1_Parallel_N);
  1352. }
  1353. printRelayStatus = false;
  1354. if (Config_Relay_Output(Uart5Fd, Addr.Relay, &outputRelay))
  1355. {}
  1356. }
  1357. else
  1358. {
  1359. if (!printRelayStatus)
  1360. {
  1361. PRINTF_FUNC("Match Relay, AC = %x, g1_p = %x, g1_n = %x, g2_p = %x, g2_n = %x, pre = %x, bri_p = %x, bri_n = %x \n",
  1362. regRelay.relay_event.bits.AC_Contactor,
  1363. regRelay.relay_event.bits.Gun1_P,
  1364. regRelay.relay_event.bits.Gun1_N,
  1365. regRelay.relay_event.bits.Gun2_P,
  1366. regRelay.relay_event.bits.Gun2_N,
  1367. regRelay.relay_event.bits.CCS_Precharge,
  1368. regRelay.relay_event.bits.Gun1_Parallel_P,
  1369. regRelay.relay_event.bits.Gun1_Parallel_N);
  1370. }
  1371. printRelayStatus = true;
  1372. }
  1373. }
  1374. if (ShmFanModuleData->SelfTest_Comp == YES)
  1375. {
  1376. if (GetTimeoutValue(_priority_time) / 1000 >= 1000)
  1377. {
  1378. GetPsuTempForFanSpeed();
  1379. GetFanSpeed();
  1380. // printf("ShmFanModuleData->PresentFan1Speed = %d \n", ShmFanModuleData->PresentFan1Speed);
  1381. // printf("ShmFanModuleData->PresentFan2Speed = %d \n", ShmFanModuleData->PresentFan2Speed);
  1382. // printf("ShmFanModuleData->PresentFan3Speed = %d \n", ShmFanModuleData->PresentFan3Speed);
  1383. // printf("ShmFanModuleData->PresentFan4Speed = %d \n", ShmFanModuleData->PresentFan4Speed);
  1384. gettimeofday(&_priority_time, NULL);
  1385. if (isCharging)
  1386. {
  1387. if (ShmFanModuleData->PresentFan1Speed < MAX_FAN_SPEED ||
  1388. ShmFanModuleData->PresentFan2Speed < MAX_FAN_SPEED ||
  1389. ShmFanModuleData->PresentFan3Speed < MAX_FAN_SPEED ||
  1390. ShmFanModuleData->PresentFan4Speed < MAX_FAN_SPEED)
  1391. {
  1392. ShmFanModuleData->SetFan1Speed = MAX_FAN_SPEED;
  1393. ShmFanModuleData->SetFan2Speed = MAX_FAN_SPEED;
  1394. ShmFanModuleData->SetFan3Speed = MAX_FAN_SPEED;
  1395. ShmFanModuleData->SetFan4Speed = MAX_FAN_SPEED;
  1396. }
  1397. if (ShmFanModuleData->TestFanSpeed > 0)
  1398. {
  1399. ShmFanModuleData->SetFan1Speed = ShmFanModuleData->TestFanSpeed;
  1400. ShmFanModuleData->SetFan2Speed = ShmFanModuleData->TestFanSpeed;
  1401. ShmFanModuleData->SetFan3Speed = ShmFanModuleData->TestFanSpeed;
  1402. ShmFanModuleData->SetFan4Speed = ShmFanModuleData->TestFanSpeed;
  1403. }
  1404. }
  1405. else
  1406. {
  1407. if (ShmFanModuleData->PresentFan1Speed > MIN_FAN_SPEED ||
  1408. ShmFanModuleData->PresentFan2Speed < MAX_FAN_SPEED ||
  1409. ShmFanModuleData->PresentFan3Speed < MAX_FAN_SPEED ||
  1410. ShmFanModuleData->PresentFan4Speed < MAX_FAN_SPEED)
  1411. {
  1412. ShmFanModuleData->SetFan1Speed = MIN_FAN_SPEED;
  1413. ShmFanModuleData->SetFan2Speed = MIN_FAN_SPEED;
  1414. ShmFanModuleData->SetFan3Speed = MIN_FAN_SPEED;
  1415. ShmFanModuleData->SetFan4Speed = MIN_FAN_SPEED;
  1416. }
  1417. }
  1418. //PRINTF_FUNC("set fan = %d \n", ShmFanModuleData->SetFan1Speed);
  1419. SetFanModuleSpeed();
  1420. }
  1421. }
  1422. usleep(10000);
  1423. }
  1424. return FAIL;
  1425. }