Module_InternalComm.c 79 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 "main.h"
  31. #include "Module_InternalComm.h"
  32. #define FAIL_SPEC_COMM 1000
  33. #define ARRAY_SIZE(A) (sizeof(A) / sizeof(A[0]))
  34. #define PASS 1
  35. #define FAIL 0
  36. #define ON 1
  37. #define OFF 0
  38. struct SysConfigAndInfo *ShmSysConfigAndInfo;
  39. struct StatusCodeData *ShmStatusCodeData;
  40. struct PrimaryMcuData *ShmPrimaryMcuData;
  41. struct OCPP16Data *ShmOCPP16Data;
  42. struct Charger *ShmCharger;
  43. uint16_t stepIndex;
  44. void trim(char *s);
  45. int mystrcmp(char *p1,char *p2);
  46. void substr(char *dest, const char* src, unsigned int start, unsigned int cnt);
  47. void split(char **arr, char *str, const char *del);
  48. int StoreLogMsg(const char *fmt, ...)
  49. {
  50. char Buf[4096+256];
  51. char buffer[4096];
  52. time_t CurrentTime;
  53. struct tm *tm;
  54. va_list args;
  55. va_start(args, fmt);
  56. int rc = vsnprintf(buffer, sizeof(buffer), fmt, args);
  57. va_end(args);
  58. memset(Buf,0,sizeof(Buf));
  59. CurrentTime = time(NULL);
  60. tm=localtime(&CurrentTime);
  61. sprintf(Buf,"echo \"[%04d.%02d.%02d %02d:%02d:%02d] - %s\" >> /Storage/SystemLog/[%04d.%02d]SystemLog",
  62. tm->tm_year+1900,tm->tm_mon+1,tm->tm_mday,tm->tm_hour,tm->tm_min,tm->tm_sec,
  63. buffer,
  64. tm->tm_year+1900,tm->tm_mon+1);
  65. #ifdef SystemLogMessage
  66. system(Buf);
  67. #endif
  68. printf("[%04d.%02d.%02d %02d:%02d:%02d] - %s", tm->tm_year+1900,tm->tm_mon+1,tm->tm_mday,tm->tm_hour,tm->tm_min,tm->tm_sec, buffer);
  69. return rc;
  70. }
  71. int DiffTimeb(struct timeb ST, struct timeb ET)
  72. {
  73. //return milli-second
  74. unsigned int StartTime,StopTime;
  75. StartTime=(unsigned int)ST.time;
  76. StopTime=(unsigned int)ET.time;
  77. return (StopTime-StartTime)*1000+ET.millitm-ST.millitm;
  78. }
  79. //=================================
  80. // Common routine
  81. //=================================
  82. void trim(char *s)
  83. {
  84. int i=0, j, k, l=0;
  85. while((s[i]==' ')||(s[i]=='\t')||(s[i]=='\n'))
  86. i++;
  87. j = strlen(s)-1;
  88. while((s[j]==' ')||(s[j]=='\t')||(s[j]=='\n'))
  89. j--;
  90. if(i==0 && j==strlen(s)-1) { }
  91. else if(i==0) s[j+1] = '\0';
  92. else {
  93. for(k=i; k<=j; k++) s[l++] = s[k];
  94. s[l] = '\0';
  95. }
  96. }
  97. int mystrcmp(char *p1,char *p2)
  98. {
  99. while(*p1==*p2)
  100. {
  101. if(*p1=='\0' || *p2=='\0')
  102. break;
  103. p1++;
  104. p2++;
  105. }
  106. if(*p1=='\0' && *p2=='\0')
  107. return(PASS);
  108. else
  109. return(FAIL);
  110. }
  111. void substr(char *dest, const char* src, unsigned int start, unsigned int cnt)
  112. {
  113. strncpy(dest, src + start, cnt);
  114. dest[cnt] = 0;
  115. }
  116. void split(char **arr, char *str, const char *del)
  117. {
  118. char *s = strtok(str, del);
  119. while(s != NULL)
  120. {
  121. *arr++ = s;
  122. s = strtok(NULL, del);
  123. }
  124. }
  125. //==========================================
  126. // Init all share memory
  127. //==========================================
  128. int InitShareMemory()
  129. {
  130. int result = PASS;
  131. int MeterSMId;
  132. //Initial ShmSysConfigAndInfo
  133. if ((MeterSMId = shmget(ShmSysConfigAndInfoKey, sizeof(struct SysConfigAndInfo), 0777)) < 0)
  134. {
  135. #ifdef SystemLogMessage
  136. DEBUG_ERROR("shmget ShmSysConfigAndInfo NG\n");
  137. #endif
  138. result = FAIL;
  139. }
  140. else if ((ShmSysConfigAndInfo = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  141. {
  142. #ifdef SystemLogMessage
  143. DEBUG_ERROR("[shmat ShmSysConfigAndInfo NG\n");
  144. #endif
  145. result = FAIL;
  146. }
  147. //Initial ShmStatusCodeData
  148. if ((MeterSMId = shmget(ShmStatusCodeKey, sizeof(struct StatusCodeData), 0777)) < 0)
  149. {
  150. #ifdef SystemLogMessage
  151. DEBUG_ERROR("shmget ShmStatusCodeData NG\n");
  152. #endif
  153. result = FAIL;
  154. }
  155. else if ((ShmStatusCodeData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  156. {
  157. #ifdef SystemLogMessage
  158. DEBUG_ERROR("shmat ShmStatusCodeData NG\n");
  159. #endif
  160. result = FAIL;
  161. }
  162. //Initial ShmPrimaryMcuKey
  163. if ((MeterSMId = shmget(ShmPrimaryMcuKey, sizeof(struct PrimaryMcuData), IPC_CREAT | 0777)) < 0)
  164. {
  165. #ifdef SystemLogMessage
  166. DEBUG_ERROR("shmget ShmPrimaryMcuData NG\r\n");
  167. #endif
  168. result = FAIL;
  169. }
  170. else if ((ShmPrimaryMcuData = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  171. {
  172. #ifdef SystemLogMessage
  173. DEBUG_ERROR("shmat ShmPrimaryMcuData NG\r\n");
  174. #endif
  175. result = FAIL;
  176. }
  177. //Initial ShmOCPP16Data
  178. if ((MeterSMId = shmget(ShmOcppModuleKey, sizeof(struct OCPP16Data), 0777)) < 0)
  179. {
  180. #ifdef SystemLogMessage
  181. DEBUG_ERROR("shmget ShmOCPP16Data NG");
  182. #endif
  183. result = FAIL;
  184. }
  185. else if ((ShmOCPP16Data = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  186. {
  187. #ifdef SystemLogMessage
  188. DEBUG_ERROR("shmat ShmOCPP16Data NG");
  189. #endif
  190. result = FAIL;
  191. }
  192. else
  193. {}
  194. //Initial ShmCharger
  195. if ((MeterSMId = shmget(ShmChargerKey, sizeof(struct Charger), IPC_CREAT | 0777)) < 0)
  196. {
  197. #ifdef SystemLogMessage
  198. DEBUG_ERROR("shmget ShmChargerKey NG\r\n");
  199. #endif
  200. result = FAIL;
  201. }
  202. else if ((ShmCharger = shmat(MeterSMId, NULL, 0)) == (void *) -1)
  203. {
  204. #ifdef SystemLogMessage
  205. DEBUG_ERROR("shmat ShmChargerKey NG\r\n");
  206. #endif
  207. result = FAIL;
  208. }
  209. return result;
  210. }
  211. int InitComPort()
  212. {
  213. int fd;
  214. struct termios tios;
  215. fd = open("/dev/ttyS1", O_RDWR);
  216. if(fd<=0)
  217. {
  218. #ifdef SystemLogMessage
  219. DEBUG_ERROR("open /dev/ttyS1 NG\n");
  220. #endif
  221. return -1;
  222. }
  223. ioctl (fd, TCGETS, &tios);
  224. tios.c_cflag = B115200| CS8 | CLOCAL | CREAD;
  225. tios.c_lflag = 0;
  226. tios.c_iflag = 0;
  227. tios.c_oflag = 0;
  228. tios.c_cc[VMIN]=0;
  229. tios.c_cc[VTIME]=(unsigned char)5; // timeout 0.5 secod
  230. tios.c_lflag=0;
  231. tcflush(fd, TCIFLUSH);
  232. ioctl (fd, TCSETS, &tios);
  233. return fd;
  234. }
  235. int tranceive(int fd, unsigned char* cmd, unsigned char cmd_len, unsigned char* rx)
  236. {
  237. int len;
  238. //sleep(2); //required to make flush work, for some reason
  239. tcflush(fd,TCIOFLUSH);
  240. if(write(fd, cmd, cmd_len) >= cmd_len)
  241. {
  242. usleep(300000);
  243. len = read(fd, rx, 512);
  244. }
  245. else
  246. {
  247. #ifdef SystemLogMessage
  248. DEBUG_ERROR("Serial command %s response fail.\n", cmd);
  249. #endif
  250. }
  251. return len;
  252. }
  253. unsigned char Query_FW_Ver(unsigned char fd, unsigned char targetAddr, Ver *Ret_Buf)
  254. {
  255. unsigned char result = FAIL;
  256. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_FW_VER, 0x00, 0x00, 0x00};
  257. unsigned char rx[512];
  258. unsigned char chksum = 0x00;
  259. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  260. if(len > 6)
  261. {
  262. if (len < 6+(rx[4] | rx[5]<<8))
  263. return result;
  264. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  265. {
  266. chksum ^= rx[6+idx];
  267. }
  268. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  269. (rx[2] == tx[1]) &&
  270. (rx[1] == tx[2]) &&
  271. (rx[3] == tx[3]))
  272. {
  273. strncpy(Ret_Buf->Version_FW, (char *)rx+6, (rx[4] | rx[5]<<8));
  274. result = PASS;
  275. }
  276. }
  277. return result;
  278. }
  279. unsigned char Query_HW_Ver(unsigned char fd, unsigned char targetAddr, Ver *Ret_Buf)
  280. {
  281. unsigned char result = FAIL;
  282. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_HW_VER, 0x00, 0x00, 0x00};
  283. unsigned char rx[512];
  284. unsigned char chksum = 0x00;
  285. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  286. if(len > 6)
  287. {
  288. if (len < 6+(rx[4] | rx[5]<<8))
  289. return result;
  290. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  291. {
  292. chksum ^= rx[6+idx];
  293. }
  294. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  295. (rx[2] == tx[1]) &&
  296. (rx[1] == tx[2]) &&
  297. (rx[3] == tx[3]))
  298. {
  299. strncpy(Ret_Buf->Version_HW, (char *)rx+6, (rx[4] | rx[5]<<8));
  300. result = PASS;
  301. }
  302. }
  303. return result;
  304. }
  305. unsigned char Query_Present_InputVoltage(unsigned char fd, unsigned char targetAddr, PresentInputVoltage *Ret_Buf)
  306. {
  307. unsigned char result = FAIL;
  308. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_PRESENT_INPUTVOLTAGE, 0x00, 0x00, 0x00};
  309. unsigned char rx[512];
  310. unsigned char chksum = 0x00;
  311. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  312. if(len > 6)
  313. {
  314. if (len < 6+(rx[4] | rx[5]<<8))
  315. return result;
  316. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  317. {
  318. chksum ^= rx[6+idx];
  319. }
  320. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  321. (rx[2] == tx[1]) &&
  322. (rx[1] == tx[2]) &&
  323. (rx[3] == tx[3]))
  324. {
  325. Ret_Buf->inputType = rx[6];
  326. Ret_Buf->L1N_L12 =( rx[7] | (rx[8]<<8))/10.0;
  327. Ret_Buf->L2N_L23 =( rx[9] | (rx[10]<<8))/10.0;
  328. Ret_Buf->L3N_L31 =( rx[11] | (rx[12]<<8))/10.0;
  329. result = PASS;
  330. }
  331. }
  332. return result;
  333. }
  334. unsigned char Query_Present_OutputVoltage(unsigned char fd, unsigned char targetAddr, PresentOutputVoltage *Ret_Buf)
  335. {
  336. unsigned char result = FAIL;
  337. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_PRESENT_OUTPUTVOLTAGE, 0x00, 0x00, 0x00};
  338. unsigned char rx[512];
  339. unsigned char chksum = 0x00;
  340. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  341. if(len > 6)
  342. {
  343. if (len < 6+(rx[4] | rx[5]<<8))
  344. return result;
  345. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  346. {
  347. chksum ^= rx[6+idx];
  348. }
  349. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  350. (rx[2] == tx[1]) &&
  351. (rx[1] == tx[2]) &&
  352. (rx[3] == tx[3]))
  353. {
  354. Ret_Buf->behindFuse_Voltage_C1 =(rx[6] | (rx[7]<<8))/10.0;
  355. Ret_Buf->behindRelay_Voltage_C1 =(rx[8] | (rx[9]<<8))/10.0;
  356. if((rx[4] | rx[5]<<8) > 4)
  357. {
  358. Ret_Buf->behindFuse_Voltage_C2 =(rx[10] | (rx[11]<<8))/10.0;
  359. Ret_Buf->behindRelay_Voltage_C2 =(rx[12] | (rx[13]<<8))/10.0;
  360. }
  361. result = PASS;
  362. }
  363. }
  364. return result;
  365. }
  366. unsigned char Query_Fan_Speed(unsigned char fd, unsigned char targetAddr, FanSpeed *Ret_Buf)
  367. {
  368. unsigned char result = FAIL;
  369. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_FAN_SPEED, 0x00, 0x00, 0x00};
  370. unsigned char rx[512];
  371. unsigned char chksum = 0x00;
  372. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  373. if(len > 6)
  374. {
  375. if (len < 6+(rx[4] | rx[5]<<8))
  376. return result;
  377. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  378. {
  379. chksum ^= rx[6+idx];
  380. }
  381. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  382. (rx[2] == tx[1]) &&
  383. (rx[1] == tx[2]) &&
  384. (rx[3] == tx[3]))
  385. {
  386. for(int idx=0;idx<((rx[4] | rx[5]<<8)>>1);idx++)
  387. Ret_Buf->speed[idx] =(rx[6+(2*idx)] | (rx[6+(2*idx)+1]<<8));
  388. result = PASS;
  389. }
  390. }
  391. return result;
  392. }
  393. unsigned char Query_Temperature(unsigned char fd, unsigned char targetAddr, Temperature *Ret_Buf)
  394. {
  395. unsigned char result = FAIL;
  396. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_TEMPERATURE, 0x00, 0x00, 0x00};
  397. unsigned char rx[512];
  398. unsigned char chksum = 0x00;
  399. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  400. if(len > 6)
  401. {
  402. if (len < 6+(rx[4] | rx[5]<<8))
  403. return result;
  404. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  405. {
  406. chksum ^= rx[6+idx];
  407. }
  408. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  409. (rx[2] == tx[1]) &&
  410. (rx[1] == tx[2]) &&
  411. (rx[3] == tx[3]))
  412. {
  413. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  414. Ret_Buf->point[idx] = rx[6+idx] - 60;
  415. result = PASS;
  416. }
  417. }
  418. return result;
  419. }
  420. unsigned char Query_Aux_PowerVoltage(unsigned char fd, unsigned char targetAddr, AuxPower *Ret_Buf)
  421. {
  422. unsigned char result = FAIL;
  423. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_AUX_POWERVOLTAGE, 0x00, 0x00, 0x00};
  424. unsigned char rx[512];
  425. unsigned char chksum = 0x00;
  426. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  427. if(len > 6)
  428. {
  429. if (len < 6+(rx[4] | rx[5]<<8))
  430. return result;
  431. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  432. {
  433. chksum ^= rx[6+idx];
  434. }
  435. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  436. (rx[2] == tx[1]) &&
  437. (rx[1] == tx[2]) &&
  438. (rx[3] == tx[3]))
  439. {
  440. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  441. Ret_Buf->voltage[idx] = rx[6+idx];
  442. result = PASS;
  443. }
  444. }
  445. return result;
  446. }
  447. unsigned char Query_Relay_Output(unsigned char fd, unsigned char targetAddr, Relay *Ret_Buf)
  448. {
  449. unsigned char result = FAIL;
  450. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_RELAY_OUTPUT, 0x00, 0x00, 0x00};
  451. unsigned char rx[512];
  452. unsigned char chksum = 0x00;
  453. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  454. if(len > 6)
  455. {
  456. if (len < 6+(rx[4] | rx[5]<<8))
  457. return result;
  458. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  459. {
  460. chksum ^= rx[6+idx];
  461. }
  462. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  463. (rx[2] == tx[1]) &&
  464. (rx[1] == tx[2]) &&
  465. (rx[3] == tx[3]))
  466. {
  467. for(int idx_connector=0;idx_connector<(rx[4] | rx[5]<<8);idx_connector++)
  468. {
  469. for(int idx=0;idx<8;idx++)
  470. Ret_Buf->relay_status[idx_connector][idx] = (rx[6+idx_connector]>>idx) & 0x01;
  471. }
  472. result = PASS;
  473. }
  474. }
  475. return result;
  476. }
  477. unsigned char Query_Gfd_Adc(unsigned char fd, unsigned char targetAddr, Gfd *Ret_Buf)
  478. {
  479. unsigned char result = FAIL;
  480. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_GFD_ADC, 0x00, 0x00, 0x00};
  481. unsigned char rx[512];
  482. unsigned char chksum = 0x00;
  483. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  484. if(len > 6)
  485. {
  486. if (len < 6+(rx[4] | rx[5]<<8))
  487. return result;
  488. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  489. {
  490. chksum ^= rx[6+idx];
  491. }
  492. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  493. (rx[2] == tx[1]) &&
  494. (rx[1] == tx[2]) &&
  495. (rx[3] == tx[3]))
  496. {
  497. for(int idx_connector=0;idx_connector<((rx[4] | rx[5]<<8)>>2);idx_connector++)
  498. {
  499. Ret_Buf->adc_value_positive[idx_connector] = (rx[6+(4*idx_connector)] | rx[6+(4*idx_connector)+1]<<8);
  500. Ret_Buf->adc_value_negative[idx_connector] = (rx[6+(4*idx_connector)+2] | rx[6+(4*idx_connector)+3]<<8);;
  501. }
  502. result = PASS;
  503. }
  504. }
  505. return result;
  506. }
  507. unsigned char Query_Gpio_Input(unsigned char fd, unsigned char targetAddr, Gpio_in *Ret_Buf)
  508. {
  509. unsigned char result = FAIL;
  510. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_GPIO_INPUT, 0x00, 0x00, 0x00};
  511. unsigned char rx[512];
  512. unsigned char chksum = 0x00;
  513. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  514. if(len > 6)
  515. {
  516. if (len < 6+(rx[4] | rx[5]<<8))
  517. return result;
  518. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  519. {
  520. chksum ^= rx[6+idx];
  521. }
  522. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  523. (rx[2] == tx[1]) &&
  524. (rx[1] == tx[2]) &&
  525. (rx[3] == tx[3]))
  526. {
  527. Ret_Buf->AC_Connector = (rx[6] >> 0) & 0x01;
  528. Ret_Buf->AC_MainBreaker = (rx[6] >> 1) & 0x01;
  529. Ret_Buf->SPD = (rx[6] >> 2) & 0x01;
  530. Ret_Buf->Door_Open = (rx[6] >> 3) & 0x01;
  531. Ret_Buf->GFD[0] = (rx[6] >> 4) & 0x01;
  532. Ret_Buf->GFD[1] = (rx[6] >> 5) & 0x01;
  533. Ret_Buf->Button[0] = (rx[6] >> 6) & 0x01;
  534. Ret_Buf->Button[1] = (rx[6] >> 7) & 0x01;
  535. Ret_Buf->Button_Emergency = (rx[7] >> 0) & 0x01;
  536. result = PASS;
  537. }
  538. }
  539. return result;
  540. }
  541. unsigned char Query_Alarm_Log(unsigned char fd, unsigned char targetAddr, Alarm_Log *Ret_Buf)
  542. {
  543. unsigned char result = FAIL;
  544. unsigned char tx[10] = {0xaa, 0x00, targetAddr, CMD_QUERY_ALARM_LOG, 0x03, 0x00, Ret_Buf->logArea, Ret_Buf->alarmIndex&0xff, ((Ret_Buf->alarmIndex>>8)&0xff), 0x00};
  545. unsigned char rx[512];
  546. unsigned char chksum = Ret_Buf->logArea ^ (Ret_Buf->alarmIndex&0xff) ^ ((Ret_Buf->alarmIndex>>8)&0xff);
  547. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  548. if(len > 6)
  549. {
  550. if (len < 6+(rx[4] | rx[5]<<8))
  551. return result;
  552. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  553. {
  554. chksum ^= rx[6+idx];
  555. }
  556. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  557. (rx[2] == tx[1]) &&
  558. (rx[1] == tx[2]) &&
  559. (rx[3] == tx[3]))
  560. {
  561. memcpy(&Ret_Buf->log[0], &rx[8], 8);
  562. result = PASS;
  563. }
  564. }
  565. return result;
  566. }
  567. unsigned char Query_RTC(unsigned char fd, unsigned char targetAddr, Rtc *Ret_Buf)
  568. {
  569. unsigned char result = FAIL;
  570. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_RTC, 0x00, 0x00, 0x00};
  571. unsigned char rx[512];
  572. unsigned char chksum = 0x00;
  573. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  574. if(len > 6)
  575. {
  576. if (len < 6+(rx[4] | rx[5]<<8))
  577. return result;
  578. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  579. {
  580. chksum ^= rx[6+idx];
  581. }
  582. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  583. (rx[2] == tx[1]) &&
  584. (rx[1] == tx[2]) &&
  585. (rx[3] == tx[3]))
  586. {
  587. Ret_Buf->year = ((rx[6]-'0')*1000) + ((rx[7]-'0')*100) + ((rx[8]-'0')*10) + ((rx[9]-'0')*1);
  588. Ret_Buf->month = ((rx[10]-'0')*10) + ((rx[11]-'0')*1);
  589. Ret_Buf->day = ((rx[12]-'0')*10) + ((rx[13]-'0')*1);
  590. Ret_Buf->hour = ((rx[14]-'0')*10) + ((rx[15]-'0')*1);
  591. Ret_Buf->min = ((rx[16]-'0')*10) + ((rx[17]-'0')*1);
  592. Ret_Buf->sec = ((rx[18]-'0')*10) + ((rx[19]-'0')*1);
  593. result = PASS;
  594. }
  595. }
  596. return result;
  597. }
  598. unsigned char Query_AC_MCU_Status(unsigned char fd, unsigned char targetAddr, Ac_Primary_Mcu *Ret_Buf)
  599. {
  600. unsigned char result = FAIL;
  601. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_AC_STATUS, 0x00, 0x00, 0x00};
  602. unsigned char rx[512];
  603. unsigned char chksum = 0x00;
  604. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  605. if(len > 6)
  606. {
  607. if (len < 6+(rx[4] | rx[5]<<8))
  608. return result;
  609. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  610. {
  611. chksum ^= rx[6+idx];
  612. }
  613. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  614. (rx[2] == tx[1]) &&
  615. (rx[1] == tx[2]) &&
  616. (rx[3] == tx[3]))
  617. {
  618. Ret_Buf->cp_state = rx[6];
  619. Ret_Buf->current_limit = rx[7] | (rx[8]<<0x08);
  620. Ret_Buf->cp_voltage_positive = (rx[9] | (rx[10]<<0x08))/100.0;
  621. Ret_Buf->cp_voltage_negtive = (rx[11] | (rx[12]<<0x08))/100.0;
  622. Ret_Buf->locker_state = rx[13];
  623. Ret_Buf->relay_state = rx[14];
  624. Ret_Buf->shutter_state = rx[15];
  625. Ret_Buf->meter_state = rx[16];
  626. Ret_Buf->pp_state = rx[17];
  627. Ret_Buf->rating_current = rx[18];
  628. Ret_Buf->rotatory_switch = rx[19];
  629. result = PASS;
  630. }
  631. }
  632. return result;
  633. }
  634. unsigned char Query_AC_MCU_Alarm(unsigned char fd, unsigned char targetAddr, Ac_Primary_Mcu_Alarm *Ret_Buf)
  635. {
  636. unsigned char result = FAIL;
  637. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_AC_ALARM, 0x00, 0x00, 0x00};
  638. unsigned char rx[512];
  639. unsigned char chksum = 0x00;
  640. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  641. if(len > 6)
  642. {
  643. if (len < 6+(rx[4] | rx[5]<<8))
  644. return result;
  645. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  646. {
  647. chksum ^= rx[6+idx];
  648. }
  649. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  650. (rx[2] == tx[1]) &&
  651. (rx[1] == tx[2]) &&
  652. (rx[3] == tx[3]))
  653. {
  654. //rx[6]
  655. Ret_Buf->bits.OVP = (((rx[6]>>0)&0x01)?1:0);
  656. Ret_Buf->bits.UVP = (((rx[6]>>1)&0x01)?1:0);
  657. Ret_Buf->bits.OCP = (((rx[6]>>2)&0x01)?1:0);
  658. Ret_Buf->bits.OTP = (((rx[6]>>3)&0x01)?1:0);
  659. Ret_Buf->bits.gmi_fault = (((rx[6]>>4)&0x01)?1:0);
  660. Ret_Buf->bits.cp_fault = (((rx[6]>>5)&0x01)?1:0);
  661. Ret_Buf->bits.ac_leak = (((rx[6]>>6)&0x01)?1:0);
  662. Ret_Buf->bits.dc_leak = (((rx[6]>>7)&0x01)?1:0);
  663. //rx[7]
  664. Ret_Buf->bits.mcu_selftest_fail = (((rx[7]>>0)&0x01)?1:0);
  665. Ret_Buf->bits.handshaking_timeout = (((rx[7]>>1)&0x01)?1:0);
  666. Ret_Buf->bits.emergency_stop = (((rx[7]>>2)&0x01)?1:0);
  667. Ret_Buf->bits.relay_welding = (((rx[7]>>3)&0x01)?1:0);
  668. Ret_Buf->bits.leak_module_fail = (((rx[7]>>4)&0x01)?1:0);
  669. Ret_Buf->bits.shutter_fault = (((rx[7]>>5)&0x01)?1:0);
  670. Ret_Buf->bits.locker_fault = (((rx[7]>>6)&0x01)?1:0);
  671. Ret_Buf->bits.power_drop = (((rx[7]>>7)&0x01)?1:0);
  672. //rx[8] 3~7bits reserved
  673. Ret_Buf->bits.circuit_short = (((rx[8]>>0)&0x01)?1:0);
  674. Ret_Buf->bits.set_circuit = (((rx[8]>>1)&0x01)?1:0);
  675. Ret_Buf->bits.relay_drive_fault = (((rx[8]>>2)&0x01)?1:0);
  676. //rx[9] 0~7bits reserved
  677. result = PASS;
  678. }
  679. }
  680. return result;
  681. }
  682. unsigned char Query_Present_OutputCurrent(unsigned char fd, unsigned char targetAddr, Presentoutputcurrent *Ret_Buf)
  683. {
  684. unsigned char result = FAIL;
  685. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_PRESENT_OUTPUTCURRENT, 0x00, 0x00, 0x00};
  686. unsigned char rx[512];
  687. unsigned char chksum = 0x00;
  688. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  689. if(len > 0)
  690. {
  691. if(len < 6+(rx[4] | rx[5]<<8))
  692. return result;
  693. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  694. {
  695. chksum ^= rx[6+idx];
  696. }
  697. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  698. (rx[2] == tx[1]) &&
  699. (rx[1] == tx[2]) &&
  700. (rx[3] == tx[3]))
  701. {
  702. Ret_Buf->L1N_L12[0] = (rx[6] | (rx[7]<<8))/10.0;
  703. Ret_Buf->L2N_L23[0] = (rx[8] | (rx[9]<<8))/10.0;
  704. Ret_Buf->L3N_L31[0] = (rx[10] | (rx[11]<<8))/10.0;
  705. Ret_Buf->L1N_L12[1] = (rx[12] | (rx[13]<<8))/10.0;
  706. Ret_Buf->L2N_L23[1] = (rx[14] | (rx[15]<<8))/10.0;
  707. Ret_Buf->L3N_L31[1] = (rx[16] | (rx[17]<<8))/10.0;
  708. result = PASS;
  709. }
  710. }
  711. return result;
  712. }
  713. unsigned char Query_Ble_Config(unsigned char fd, unsigned char targetAddr, Ble_Config_Data *Ret_Buf)
  714. {
  715. unsigned char result = FAIL;
  716. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_BLE_CONFIG_DATA, 0x00, 0x00, 0x00};
  717. unsigned char rx[512];
  718. unsigned char chksum = 0x00;
  719. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  720. if(len > 0)
  721. {
  722. if(len < 6+(rx[4] | rx[5]<<8))
  723. return result;
  724. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  725. {
  726. chksum ^= rx[6+idx];
  727. }
  728. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  729. (rx[2] == tx[1]) &&
  730. (rx[1] == tx[2]) &&
  731. (rx[3] == tx[3]))
  732. {
  733. Ret_Buf->isLogin = (rx[6]?0x01:0x00);
  734. Ret_Buf->isRequestStart = (rx[7]?0x01:0x00);
  735. Ret_Buf->isRequestStop = (rx[8]?0x01:0x00);
  736. result = PASS;
  737. }
  738. }
  739. return result;
  740. }
  741. unsigned char Query_Ble_Central_ID(unsigned char fd, unsigned char targetAddr, Ble_Login_Central_Id *Ret_Buf)
  742. {
  743. unsigned char result = FAIL;
  744. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_BLE_CENTRAL_ID, 0x00, 0x00, 0x00};
  745. unsigned char rx[512];
  746. unsigned char chksum = 0x00;
  747. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  748. if(len > 0)
  749. {
  750. if(len < 6+(rx[4] | rx[5]<<8))
  751. return result;
  752. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  753. {
  754. chksum ^= rx[6+idx];
  755. }
  756. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  757. (rx[2] == tx[1]) &&
  758. (rx[1] == tx[2]) &&
  759. (rx[3] == tx[3]))
  760. {
  761. memset(Ret_Buf->id, 0x00, ARRAY_SIZE(Ret_Buf->id));
  762. memcpy(&Ret_Buf->id[0], &rx[6], (rx[4] | (rx[5]<<8)));
  763. result = PASS;
  764. }
  765. }
  766. return result;
  767. }
  768. unsigned char Query_Power_Consumption(unsigned char fd, unsigned char targetAddr, Power_Consumption *Ret_Buf)
  769. {
  770. unsigned char result = FAIL;
  771. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_POWER_CONSUMPTION, 0x00, 0x00, 0x00};
  772. unsigned char rx[512];
  773. unsigned char chksum = 0x00;
  774. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  775. if(len > 0)
  776. {
  777. if(len < 6+(rx[4] | rx[5]<<8))
  778. return result;
  779. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  780. {
  781. chksum ^= rx[6+idx];
  782. }
  783. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  784. (rx[2] == tx[1]) &&
  785. (rx[1] == tx[2]) &&
  786. (rx[3] == tx[3]))
  787. {
  788. Ret_Buf-> power_consumption = ((uint32_t)rx[6] | (((uint32_t)rx[7])<<8) | (((uint32_t)rx[8])<<16) | (((uint32_t)rx[9])<<24));
  789. result = PASS;
  790. }
  791. }
  792. return result;
  793. }
  794. unsigned char Config_Fan_Speed(unsigned char fd, unsigned char targetAddr, FanSpeed *Set_Buf)
  795. {
  796. unsigned char result = FAIL;
  797. unsigned char tx[15] = {0xaa, 0x00, targetAddr, CMD_CONFIG_FAN_SPEED, 0x08, 0x00, Set_Buf->speed[0]&0xff, (Set_Buf->speed[0]>>8)&0xff, Set_Buf->speed[1]&0xff, (Set_Buf->speed[1]>>8)&0xff, Set_Buf->speed[2]&0xff, (Set_Buf->speed[2]>>8)&0xff, Set_Buf->speed[3]&0xff, (Set_Buf->speed[3]>>8)&0xff, 0x00};
  798. unsigned char rx[512];
  799. unsigned char chksum = 0x00;
  800. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  801. chksum ^= tx[6+idx];
  802. tx[14] = chksum;
  803. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  804. if(len > 6)
  805. {
  806. if (len < 6+(rx[4] | rx[5]<<8))
  807. return result;
  808. chksum = 0x00;
  809. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  810. {
  811. chksum ^= rx[6+idx];
  812. }
  813. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  814. (rx[2] == tx[1]) &&
  815. (rx[1] == tx[2]) &&
  816. (rx[3] == tx[3]) &&
  817. (rx[6] == 0x01))
  818. {
  819. result = PASS;
  820. }
  821. }
  822. return result;
  823. }
  824. unsigned char Config_Serial_Number(unsigned char fd, unsigned char targetAddr, Evse_Id *Set_Buf)
  825. {
  826. unsigned char result = FAIL;
  827. unsigned char tx[27] = {0xaa, 0x00, targetAddr, CMD_CONFIG_SERIAL_NUMBER, 0x14, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  828. unsigned char rx[512];
  829. unsigned char chksum = 0x00;
  830. memcpy(&tx[14], &Set_Buf->serial_number[0], ARRAY_SIZE(Set_Buf->serial_number));
  831. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  832. chksum ^= tx[6+idx];
  833. tx[26] = chksum;
  834. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  835. if(len > 6)
  836. {
  837. chksum = 0x00;
  838. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  839. {
  840. chksum ^= rx[6+idx];
  841. }
  842. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  843. (rx[2] == tx[1]) &&
  844. (rx[1] == tx[2]) &&
  845. (rx[3] == tx[3]) &&
  846. (rx[6] == 0x01))
  847. {
  848. result = PASS;
  849. }
  850. }
  851. return result;
  852. }
  853. unsigned char Config_Model_Name(unsigned char fd, unsigned char targetAddr, Evse_Id *Set_Buf)
  854. {
  855. unsigned char result = FAIL;
  856. unsigned char tx[21] = {0xaa, 0x00, targetAddr, CMD_CONFIG_MODEL_NAME, 0x0e, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  857. unsigned char rx[512];
  858. unsigned char chksum = 0x00;
  859. memcpy(&tx[6], &Set_Buf->model_name[0], ARRAY_SIZE(Set_Buf->model_name));
  860. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  861. chksum ^= tx[6+idx];
  862. tx[20] = chksum;
  863. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  864. if(len > 6)
  865. {
  866. chksum = 0x00;
  867. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  868. {
  869. chksum ^= rx[6+idx];
  870. }
  871. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  872. (rx[2] == tx[1]) &&
  873. (rx[1] == tx[2]) &&
  874. (rx[3] == tx[3]) &&
  875. (rx[6] == 0x01))
  876. {
  877. result = PASS;
  878. }
  879. }
  880. return result;
  881. }
  882. unsigned char Config_Relay_Output(unsigned char fd, unsigned char targetAddr, Relay *Set_Buf)
  883. {
  884. unsigned char result = FAIL;
  885. unsigned char tx[9] = {0xaa, 0x00, targetAddr, CMD_CONFIG_RELAY_OUTPUT, 0x02, 0x00, 0x00, 0x00, 0x00};
  886. unsigned char rx[512];
  887. unsigned char chksum = 0x00;
  888. for(int idx_connector=0;idx_connector<2;idx_connector++)
  889. for(int idx = 0;idx<8;idx++)
  890. tx[6+idx_connector] |= ((Set_Buf->relay_status[idx_connector][idx]?0x01:0x00)<<idx);
  891. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  892. chksum ^= tx[6+idx];
  893. tx[8] = chksum;
  894. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  895. if(len > 6)
  896. {
  897. if (len < 6+(rx[4] | rx[5]<<8))
  898. return result;
  899. chksum = 0x00;
  900. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  901. {
  902. chksum ^= rx[6+idx];
  903. }
  904. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  905. (rx[2] == tx[1]) &&
  906. (rx[1] == tx[2]) &&
  907. (rx[3] == tx[3]) &&
  908. (rx[6] == 0x01))
  909. {
  910. result = PASS;
  911. }
  912. }
  913. return result;
  914. }
  915. unsigned char Config_Gpio_Output(unsigned char fd, unsigned char targetAddr, Gpio_out *Set_Buf)
  916. {
  917. unsigned char result = FAIL;
  918. unsigned char tx[9] = {0xaa, 0x00, targetAddr, CMD_CONFIG_GPIO_OUTPUT, 0x01, 0x00, 0x00, 0x00};
  919. unsigned char rx[512];
  920. unsigned char chksum = 0x00;
  921. tx[6] |= (Set_Buf->AC_Connector?0x01:0x00);
  922. for(int idx=0;idx<2;idx++)
  923. tx[6] |= (Set_Buf->Button_LED[idx]?0x01:0x00)<<(1+idx);
  924. for(int idx=0;idx<4;idx++)
  925. tx[6] |= (Set_Buf->System_LED[idx]?0x01:0x00)<<(3+idx);
  926. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  927. chksum ^= tx[6+idx];
  928. tx[14] = chksum;
  929. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  930. if(len > 6)
  931. {
  932. if (len < 6+(rx[4] | rx[5]<<8))
  933. return result;
  934. chksum = 0x00;
  935. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  936. {
  937. chksum ^= rx[6+idx];
  938. }
  939. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  940. (rx[2] == tx[1]) &&
  941. (rx[1] == tx[2]) &&
  942. (rx[3] == tx[3]) &&
  943. (rx[6] == tx[6]))
  944. {
  945. result = PASS;
  946. }
  947. }
  948. return result;
  949. }
  950. unsigned char Config_RTC(unsigned char fd, unsigned char targetAddr, Rtc *Set_Buf)
  951. {
  952. unsigned char result = FAIL;
  953. unsigned char tx[21];
  954. unsigned char rx[512];
  955. unsigned char chksum = 0x00;
  956. tx[0] = 0xaa;
  957. tx[1] = 0x00;
  958. tx[2] = targetAddr;
  959. tx[3] = CMD_CONFIG_RTC;
  960. tx[4] = 0x0e;
  961. tx[5] = 0x00;
  962. tx[6] = ((Set_Buf->year)/1000)+'0';
  963. tx[7] = ((Set_Buf->year)/100%10)+'0';
  964. tx[8] = ((Set_Buf->year)/10%10)+'0';
  965. tx[9] = (Set_Buf->year)%1000+'0';
  966. tx[10] = ((Set_Buf->month)/10)+'0';
  967. tx[11] = ((Set_Buf->month)%10)+'0';
  968. tx[12] = ((Set_Buf->day)/10)+'0';
  969. tx[13] = ((Set_Buf->day)%10)+'0';
  970. tx[14] = ((Set_Buf->hour)/10)+'0';
  971. tx[15] = ((Set_Buf->hour)%10)+'0';
  972. tx[16] = ((Set_Buf->min)/10)+'0';
  973. tx[17] = ((Set_Buf->min)%10)+'0';
  974. tx[18] = ((Set_Buf->sec)/10)+'0';
  975. tx[19] = ((Set_Buf->sec)%10)+'0';
  976. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  977. chksum ^= tx[6+idx];
  978. tx[20] = chksum;
  979. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  980. if(len > 6)
  981. {
  982. if (len < 6+(rx[4] | rx[5]<<8))
  983. return result;
  984. chksum = 0x00;
  985. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  986. {
  987. chksum ^= rx[6+idx];
  988. }
  989. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  990. (rx[2] == tx[1]) &&
  991. (rx[1] == tx[2]) &&
  992. (rx[3] == tx[3]) &&
  993. (rx[6] == 0x01))
  994. {
  995. result = PASS;
  996. }
  997. }
  998. return result;
  999. }
  1000. unsigned char Config_AC_MCU_LED(unsigned char fd, unsigned char targetAddr, Ac_Primary_Mcu_Led *Set_Buf)
  1001. {
  1002. unsigned char result = FAIL;
  1003. unsigned char tx[12] ;
  1004. unsigned char rx[512];
  1005. unsigned char chksum = 0x00;
  1006. tx[0] = 0xaa;
  1007. tx[1] = 0x00;
  1008. tx[2] = targetAddr;
  1009. tx[3] = CMD_CONFIG_AC_LED;
  1010. tx[4] = 0x05;
  1011. tx[5] = 0x00;
  1012. tx[6] = Set_Buf->mode;
  1013. tx[7] = ((Set_Buf->alarm_code>>0)&0xff);
  1014. tx[8] = ((Set_Buf->alarm_code>>8)&0xff);
  1015. tx[9] = ((Set_Buf->alarm_code>>16)&0xff);
  1016. tx[10] = ((Set_Buf->alarm_code>>24)&0xff);
  1017. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  1018. chksum ^= tx[6+idx];
  1019. tx[11] = chksum;
  1020. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1021. if(len > 6)
  1022. {
  1023. if (len < 6+(rx[4] | rx[5]<<8))
  1024. return result;
  1025. chksum = 0x00;
  1026. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  1027. {
  1028. chksum ^= rx[6+idx];
  1029. }
  1030. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1031. (rx[2] == tx[1]) &&
  1032. (rx[1] == tx[2]) &&
  1033. (rx[3] == tx[3]) &&
  1034. (rx[6] == 0x01))
  1035. {
  1036. result = PASS;
  1037. }
  1038. }
  1039. return result;
  1040. }
  1041. unsigned char Config_AC_MCU_LEGACY_REQUEST(unsigned char fd, unsigned char targetAddr, Legacy_Request *Set_Buf)
  1042. {
  1043. unsigned char result = FAIL;
  1044. unsigned char tx[9];
  1045. unsigned char rx[512];
  1046. unsigned char chksum = 0x00;
  1047. tx[0] = 0xaa;
  1048. tx[1] = 0x00;
  1049. tx[2] = targetAddr;
  1050. tx[3] = CMD_CONFIG_MCU_MODE;
  1051. tx[4] = 0x02;
  1052. tx[5] = 0x00;
  1053. tx[6] = Set_Buf->isLegacyRequest;
  1054. tx[7] = 0x00;
  1055. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  1056. chksum ^= tx[6+idx];
  1057. tx[8] = chksum;
  1058. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1059. if(len > 6)
  1060. {
  1061. if (len < 6+(rx[4] | rx[5]<<8))
  1062. return result;
  1063. chksum = 0x00;
  1064. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  1065. {
  1066. chksum ^= rx[6+idx];
  1067. }
  1068. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1069. (rx[2] == tx[1]) &&
  1070. (rx[1] == tx[2]) &&
  1071. (rx[3] == tx[3]) &&
  1072. (rx[6] == 0x01))
  1073. {
  1074. result = PASS;
  1075. }
  1076. }
  1077. return result;
  1078. }
  1079. unsigned char Config_AC_MCU_RESET_REQUEST(unsigned char fd, unsigned char targetAddr, Mcu_Reset_Request *Set_Buf)
  1080. {
  1081. unsigned char result = FAIL;
  1082. unsigned char tx[9];
  1083. unsigned char rx[512];
  1084. unsigned char chksum = 0x00;
  1085. tx[0] = 0xaa;
  1086. tx[1] = 0x00;
  1087. tx[2] = targetAddr;
  1088. tx[3] = CMD_CONFIG_MCU_RESET_REQUEST;
  1089. tx[4] = 0x02;
  1090. tx[5] = 0x00;
  1091. tx[6] = Set_Buf->isMcuResetRequest;
  1092. tx[7] = 0x00;
  1093. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  1094. chksum ^= tx[6+idx];
  1095. tx[8] = chksum;
  1096. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1097. if(len > 6)
  1098. {
  1099. if (len < 6+(rx[4] | rx[5]<<8))
  1100. return result;
  1101. chksum = 0x00;
  1102. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  1103. {
  1104. chksum ^= rx[6+idx];
  1105. }
  1106. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1107. (rx[2] == tx[1]) &&
  1108. (rx[1] == tx[2]) &&
  1109. (rx[3] == tx[3]) &&
  1110. (rx[6] == 0x01))
  1111. {
  1112. result = PASS;
  1113. }
  1114. }
  1115. return result;
  1116. }
  1117. unsigned char Query_AC_GUN_PLUGIN_TIMES(unsigned char fd, unsigned char targetAddr, Gun_Plugin_Times *Ret_Buf)
  1118. {
  1119. unsigned char result = FAIL;
  1120. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_QUERY_GUN_PLUGIN_TIMES, 0x00, 0x00, 0x00};
  1121. unsigned char rx[512];
  1122. unsigned char chksum = 0x00;
  1123. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1124. if(len > 0)
  1125. {
  1126. if(len < 6+(rx[4] | rx[5]<<8))
  1127. return result;
  1128. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  1129. {
  1130. chksum ^= rx[6+idx];
  1131. }
  1132. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1133. (rx[2] == tx[1]) &&
  1134. (rx[1] == tx[2]) &&
  1135. (rx[3] == tx[3]))
  1136. {
  1137. Ret_Buf-> GunPluginTimes = ((uint32_t)rx[6] | (((uint32_t)rx[7])<<8) | (((uint32_t)rx[8])<<16) | (((uint32_t)rx[9])<<24));
  1138. result = PASS;
  1139. }
  1140. }
  1141. return result;
  1142. }
  1143. unsigned char Config_AC_MaxCurrent_And_CpPwmDuty(unsigned char fd, unsigned char targetAddr, Ac_Primary_Mcu_Cp_Pwm_Duty*Set_Buf)
  1144. {
  1145. unsigned char result = FAIL;
  1146. unsigned char tx[9];
  1147. unsigned char rx[512];
  1148. unsigned char chksum = 0x00;
  1149. tx[0] = 0xaa;
  1150. tx[1] = 0x00;
  1151. tx[2] = targetAddr;
  1152. tx[3] = CMD_CONFIG_CURRENT_LINIT;
  1153. tx[4] = 0x05;
  1154. tx[5] = 0x00;
  1155. tx[6] = Set_Buf->max_current;
  1156. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  1157. chksum ^= tx[6+idx];
  1158. tx[8] = chksum;
  1159. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1160. if(len > 6)
  1161. {
  1162. chksum = 0x00;
  1163. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  1164. {
  1165. chksum ^= rx[6+idx];
  1166. }
  1167. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1168. (rx[2] == tx[1]) &&
  1169. (rx[1] == tx[2]) &&
  1170. (rx[3] == tx[3]) &&
  1171. (rx[6] == 0x01))
  1172. {
  1173. result = PASS;
  1174. }
  1175. }
  1176. return result;
  1177. }
  1178. unsigned char Update_Start(unsigned char fd, unsigned char targetAddr, unsigned int crc32)
  1179. {
  1180. unsigned char result = FAIL;
  1181. unsigned char tx[11] = {0xaa, 0x00, targetAddr, CMD_UPDATE_START, 0x04, 0x00, (crc32>>0)&0xff, (crc32>>8)&0xff, (crc32>>16)&0xff, (crc32>>24)&0xff, 0x00};
  1182. unsigned char rx[512];
  1183. unsigned char chksum = 0x00;
  1184. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  1185. chksum ^= tx[6+idx];
  1186. tx[10] = chksum;
  1187. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1188. if(len > 6)
  1189. {
  1190. if (len < 6+(rx[4] | rx[5]<<8))
  1191. return result;
  1192. chksum = 0x00;
  1193. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  1194. {
  1195. chksum ^= rx[6+idx];
  1196. }
  1197. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1198. (rx[2] == tx[1]) &&
  1199. (rx[1] == tx[2]) &&
  1200. (rx[3] == tx[3]) &&
  1201. (rx[6] == 0x00))
  1202. {
  1203. result = PASS;
  1204. }
  1205. }
  1206. return result;
  1207. }
  1208. unsigned char Update_Abord(unsigned char fd, unsigned char targetAddr)
  1209. {
  1210. unsigned char result = FAIL;
  1211. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_UPDATE_ABOARD, 0x04, 0x00, 0x00};
  1212. unsigned char rx[512];
  1213. unsigned char chksum = 0x00;
  1214. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1215. if(len > 6)
  1216. {
  1217. if (len < 6+(rx[4] | rx[5]<<8))
  1218. return result;
  1219. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  1220. {
  1221. chksum ^= rx[6+idx];
  1222. }
  1223. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1224. (rx[2] == tx[1]) &&
  1225. (rx[1] == tx[2]) &&
  1226. (rx[3] == tx[3]) &&
  1227. (rx[6] == 0x00))
  1228. {
  1229. result = PASS;
  1230. }
  1231. }
  1232. return result;
  1233. }
  1234. unsigned char Update_Transfer(unsigned char fd, unsigned char targetAddr, unsigned int startAddr, unsigned char *data, unsigned short int length)
  1235. {
  1236. unsigned char result = FAIL;
  1237. unsigned char tx[11 + length];
  1238. unsigned char rx[512];
  1239. unsigned char chksum = 0x00;
  1240. tx[0] = 0xaa;
  1241. tx[1] = 0x00;
  1242. tx[2] = targetAddr;
  1243. tx[3] = CMD_UPDATE_TRANSFER;
  1244. tx[4] = (4 + length) & 0xff;
  1245. tx[5] = ((4 + length)>>8) & 0xff;
  1246. tx[6] = (startAddr>>0) & 0xff;
  1247. tx[7] = (startAddr>>8) & 0xff;
  1248. tx[8] = (startAddr>>16) & 0xff;
  1249. tx[9] = (startAddr>>24) & 0xff;
  1250. memcpy(tx+10, data, length);
  1251. for(int idx=0;idx<(tx[4] | tx[5]<<8);idx++)
  1252. chksum ^= tx[6+idx];
  1253. tx[sizeof(tx)-1] = chksum;
  1254. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1255. if(len > 6)
  1256. {
  1257. if (len < 6+(rx[4] | rx[5]<<8))
  1258. return result;
  1259. for(int idx = 0;idx<(rx[4] | rx[5]<<8);idx++)
  1260. {
  1261. chksum ^= rx[6+idx];
  1262. }
  1263. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1264. (rx[2] == tx[1]) &&
  1265. (rx[1] == tx[2]) &&
  1266. (rx[3] == tx[3]) &&
  1267. (rx[6] == 0x00))
  1268. {
  1269. result = PASS;
  1270. }
  1271. }
  1272. return result;
  1273. }
  1274. unsigned char Update_Finish(unsigned char fd, unsigned char targetAddr)
  1275. {
  1276. unsigned char result = FAIL;
  1277. unsigned char tx[7] = {0xaa, 0x00, targetAddr, CMD_UPDATE_END, 0x04, 0x00, 0x00};
  1278. unsigned char rx[512];
  1279. unsigned char chksum = 0x00;
  1280. unsigned char len = tranceive(fd, tx, sizeof(tx), rx);
  1281. if(len > 6)
  1282. {
  1283. if (len < 6+(rx[4] | rx[5]<<8))
  1284. return result;
  1285. for(int idx=0;idx<(rx[4] | rx[5]<<8);idx++)
  1286. {
  1287. chksum ^= rx[6+idx];
  1288. }
  1289. if((chksum == rx[6+(rx[4] | rx[5]<<8)]) &&
  1290. (rx[2] == tx[1]) &&
  1291. (rx[1] == tx[2]) &&
  1292. (rx[3] == tx[3]) &&
  1293. (rx[6] == 0x01))
  1294. {
  1295. result = PASS;
  1296. }
  1297. }
  1298. return result;
  1299. }
  1300. //================================================
  1301. // Main process
  1302. //================================================
  1303. int main(void)
  1304. {
  1305. int Uart1Fd;
  1306. unsigned short int failCount[2] = {0,0};
  1307. if(InitShareMemory() == FAIL)
  1308. {
  1309. #ifdef SystemLogMessage
  1310. DEBUG_ERROR("InitShareMemory NG\n");
  1311. #endif
  1312. if(ShmStatusCodeData!=NULL)
  1313. {
  1314. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.FailToCreateShareMemory=1;
  1315. }
  1316. sleep(5);
  1317. return 0;
  1318. }
  1319. else
  1320. {
  1321. DEBUG_INFO("InitShareMemory OK.\r\n");
  1322. }
  1323. Uart1Fd=InitComPort();
  1324. if(Uart1Fd<0)
  1325. {
  1326. DEBUG_ERROR("InitComPort NG\n");
  1327. if(ShmStatusCodeData!=NULL)
  1328. {
  1329. ShmStatusCodeData->AlarmCode.AlarmEvents.bits.CsuInitFailed=1;
  1330. }
  1331. sleep(5);
  1332. return 0;
  1333. }
  1334. else
  1335. {
  1336. DEBUG_INFO("ttyS1 port open success.\r\n");
  1337. }
  1338. for(;;)
  1339. {
  1340. for(int gun_index=0;gun_index<AC_QUANTITY;gun_index++)
  1341. {
  1342. //===============================
  1343. // Query firmware version
  1344. //===============================
  1345. if(ShmCharger->gun_info[gun_index].mcuFlag.isReadFwVerPass != PASS)
  1346. {
  1347. if(Query_FW_Ver(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].ver) == PASS)
  1348. {
  1349. DEBUG_INFO("MCU-%d get firmware version : %s\r\n", gun_index, ShmCharger->gun_info[gun_index].ver.Version_FW);
  1350. memcpy(ShmPrimaryMcuData->version, ShmCharger->gun_info[gun_index].ver.Version_FW, sizeof(ShmPrimaryMcuData->version));
  1351. ShmCharger->gun_info[gun_index].mcuFlag.isReadFwVerPass = PASS;
  1352. failCount[gun_index] = 0;
  1353. }
  1354. else
  1355. {
  1356. DEBUG_WARN("MCU-%d get firmware version fail...%d\r\n", gun_index, failCount[gun_index]);
  1357. if(failCount[gun_index]<1000)
  1358. {
  1359. failCount[gun_index]++;
  1360. }
  1361. }
  1362. }
  1363. //===============================
  1364. // Config primary MCU serial number
  1365. //===============================
  1366. if(ShmCharger->gun_info[gun_index].mcuFlag.isSetSerialNumberPass != PASS)
  1367. {
  1368. memcpy(ShmCharger->evseId.serial_number, ShmSysConfigAndInfo->SysConfig.SerialNumber, ARRAY_SIZE(ShmCharger->evseId.serial_number));
  1369. if(Config_Serial_Number(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->evseId))
  1370. {
  1371. DEBUG_INFO("MCU-%d set serial number : %.12s\r\n",gun_index,ShmCharger->evseId.serial_number);
  1372. ShmCharger->gun_info[gun_index].mcuFlag.isSetSerialNumberPass = PASS;
  1373. failCount[gun_index] = 0;
  1374. }
  1375. else
  1376. {
  1377. DEBUG_WARN("MCU-%d set serial number fail...%d\r\n", gun_index, failCount[gun_index]);
  1378. if(failCount[gun_index]<1000)
  1379. {
  1380. failCount[gun_index]++;
  1381. }
  1382. }
  1383. }
  1384. //===============================
  1385. // Config primary MCU model name
  1386. //===============================
  1387. if(ShmCharger->gun_info[gun_index].mcuFlag.isSetModelNamePass != PASS)
  1388. {
  1389. memcpy(ShmCharger->evseId.model_name, ShmSysConfigAndInfo->SysConfig.ModelName, ARRAY_SIZE(ShmCharger->evseId.model_name));
  1390. if(Config_Model_Name(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->evseId))
  1391. {
  1392. DEBUG_INFO("MCU-%d set model name : %.14s\r\n",gun_index,ShmCharger->evseId.model_name);
  1393. ShmCharger->gun_info[gun_index].mcuFlag.isSetModelNamePass = PASS;
  1394. failCount[gun_index] = 0;
  1395. }
  1396. else
  1397. {
  1398. DEBUG_WARN("MCU-%d set model name fail...%d\r\n", gun_index, failCount[gun_index]);
  1399. if(failCount[gun_index]<1000)
  1400. {
  1401. failCount[gun_index]++;
  1402. }
  1403. }
  1404. }
  1405. /*
  1406. * Polling loop
  1407. */
  1408. if((stepIndex%2)==0)
  1409. {
  1410. /*
  1411. * High priority communication
  1412. */
  1413. //===============================
  1414. // Config primary MCU LED
  1415. //===============================
  1416. ShmCharger->gun_info[gun_index].primaryMcuLed.alarm_code = ShmCharger->gun_info[gun_index].systemAlarmCode.SystemAlarmCode;
  1417. if(Config_AC_MCU_LED(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].primaryMcuLed))
  1418. {
  1419. DEBUG_INFO("MCU-%d set Led mode : %d\r\n",gun_index, ShmCharger->gun_info[gun_index].primaryMcuLed.mode);
  1420. DEBUG_INFO("MCU-%d set Alarm code : %x\r\n",gun_index, ShmCharger->gun_info[gun_index].primaryMcuLed.alarm_code);
  1421. failCount[gun_index] = 0;
  1422. }
  1423. else
  1424. {
  1425. DEBUG_WARN("MCU-%d set led fail...%d\r\n", gun_index, failCount[gun_index]);
  1426. if(failCount[gun_index]<1000)
  1427. {
  1428. failCount[gun_index]++;
  1429. }
  1430. }
  1431. //===============================
  1432. // Config primary Legacy request
  1433. //===============================
  1434. if(Config_AC_MCU_LEGACY_REQUEST(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1),&ShmCharger->gun_info[gun_index].legacyRequest))
  1435. {
  1436. DEBUG_INFO("MCU-%d set relay request : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].legacyRequest.isLegacyRequest);
  1437. DEBUG_INFO("========================================\n");
  1438. failCount[gun_index] = 0;
  1439. }
  1440. else
  1441. {
  1442. DEBUG_WARN("MCU-%d set relay request fail...%d\r\n", gun_index, failCount[gun_index]);
  1443. if(failCount[gun_index]<1000)
  1444. failCount[gun_index]++;
  1445. }
  1446. //===============================
  1447. // Query primary MCU status
  1448. //===============================
  1449. if(Query_AC_MCU_Status(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].primaryMcuState))
  1450. {
  1451. if(ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PreviousSystemStatus != ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].SystemStatus)
  1452. {
  1453. DEBUG_INFO("MCU-%d get Pilot State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.cp_state);
  1454. DEBUG_INFO("MCU-%d get Pilot Duty : %.2f\r\n", gun_index, (float)ShmCharger->gun_info[gun_index].primaryMcuState.current_limit);
  1455. DEBUG_INFO("MCU-%d get Pilot Voltage Positive : %.2f\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_positive);
  1456. DEBUG_INFO("MCU-%d get Pilot Voltage Negative : %.2f\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_negtive);
  1457. DEBUG_INFO("MCU-%d get Locker State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.locker_state);
  1458. DEBUG_INFO("MCU-%d get Relay State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.relay_state);
  1459. DEBUG_INFO("MCU-%d get Shutter State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.shutter_state);
  1460. DEBUG_INFO("MCU-%d get Meter State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.meter_state);
  1461. DEBUG_INFO("MCU-%d get PP State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.pp_state);
  1462. DEBUG_INFO("MCU-%d get Rating Current : %.2f\r\n", gun_index, (float)ShmCharger->gun_info[gun_index].primaryMcuState.rating_current);
  1463. DEBUG_INFO("MCU-%d get Rotatory switch : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.rotatory_switch);
  1464. }
  1465. ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PilotState = ShmCharger->gun_info[gun_index].primaryMcuState.cp_state;
  1466. ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PilotDuty = (ShmCharger->gun_info[gun_index].primaryMcuState.current_limit>51?(unsigned char)((ShmCharger->gun_info[gun_index].primaryMcuState.current_limit/2.5)+64):(unsigned char)(ShmCharger->gun_info[gun_index].primaryMcuState.current_limit/0.6));
  1467. ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PilotVoltage = ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_positive;
  1468. ShmCharger->gun_info[gun_index].PilotVoltage.PilotVoltagePositive = ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_positive;
  1469. ShmCharger->gun_info[gun_index].PilotVoltage.PilotVoltageNegative = ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_negtive;
  1470. failCount[gun_index] = 0;
  1471. }
  1472. else
  1473. {
  1474. DEBUG_WARN("MCU-%d get status fail...%d\r\n", gun_index, failCount[gun_index]);
  1475. if(failCount[gun_index]<1000)
  1476. {
  1477. failCount[gun_index]++;
  1478. }
  1479. }
  1480. //===============================
  1481. // Query primary MCU Alarm code
  1482. //===============================
  1483. if(Query_AC_MCU_Alarm(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].primaryMcuAlarm))
  1484. {
  1485. DEBUG_INFO("MCU-%d get alarm OK...\r\n");
  1486. /*
  1487. // Byte[6]
  1488. // Byte[7]
  1489. // Byte[8] Alarm code 3~7 bits Reserved
  1490. // Byte[9] Alarm code 0~7 bits Reserved
  1491. */
  1492. //================================================
  1493. // Byte[6]
  1494. //================================================
  1495. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OVP == 0x01)
  1496. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<0;
  1497. else
  1498. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<0);
  1499. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.UVP == 0x01)
  1500. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<1;
  1501. else
  1502. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<1);
  1503. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OCP == 0x01)
  1504. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<2;
  1505. else
  1506. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<2);
  1507. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OTP == 0x01)
  1508. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<3;
  1509. else
  1510. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<3);
  1511. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.gmi_fault == 0x01)
  1512. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<4;
  1513. else
  1514. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<4);
  1515. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.cp_fault == 0x01)
  1516. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<5;
  1517. else
  1518. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<5);
  1519. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.ac_leak == 0x01)
  1520. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<6;
  1521. else
  1522. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<6);
  1523. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.dc_leak == 0x01)
  1524. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<7;
  1525. else
  1526. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<7);
  1527. //================================================
  1528. // Byte[7]
  1529. //================================================
  1530. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.mcu_selftest_fail == 0x01)
  1531. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<8;
  1532. else
  1533. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<8);
  1534. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.handshaking_timeout == 0x01)
  1535. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<9;
  1536. else
  1537. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<9);
  1538. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.emergency_stop == 0x01)
  1539. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<10;
  1540. else
  1541. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<10);
  1542. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_welding == 0x01)
  1543. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<11;
  1544. else
  1545. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<11);
  1546. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.leak_module_fail == 0x01)
  1547. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<12;
  1548. else
  1549. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<12);
  1550. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.shutter_fault == 0x01)
  1551. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<13;
  1552. else
  1553. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<13);
  1554. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.locker_fault == 0x01)
  1555. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<14;
  1556. else
  1557. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<14);
  1558. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.power_drop == 0x01)
  1559. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<15;
  1560. else
  1561. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<15);
  1562. //================================================
  1563. // Byte[8]
  1564. //================================================
  1565. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.circuit_short == 0x01)
  1566. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<16;
  1567. else
  1568. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<16);
  1569. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.set_circuit == 0x01)
  1570. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<17;
  1571. else
  1572. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<17);
  1573. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_drive_fault == 0x01)
  1574. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<18;
  1575. else
  1576. ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<18);
  1577. //================================================
  1578. // Byte[9]
  1579. //================================================
  1580. // Debug print out
  1581. if(ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PreviousSystemStatus != ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].SystemStatus)
  1582. {
  1583. DEBUG_INFO("MCU-%d get OVP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OVP);
  1584. DEBUG_INFO("MCU-%d get UVP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.UVP);
  1585. DEBUG_INFO("MCU-%d get OCP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OCP);
  1586. DEBUG_INFO("MCU-%d get OTP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OTP);
  1587. DEBUG_INFO("MCU-%d get gmi_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.gmi_fault);
  1588. DEBUG_INFO("MCU-%d get cp_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.cp_fault);
  1589. DEBUG_INFO("MCU-%d get ac_leak : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.ac_leak);
  1590. DEBUG_INFO("MCU-%d get dc_leak : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.dc_leak);
  1591. DEBUG_INFO("MCU-%d get mcu_selftest_fail : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.mcu_selftest_fail);
  1592. DEBUG_INFO("MCU-%d get handshaking_timeout : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.handshaking_timeout);
  1593. DEBUG_INFO("MCU-%d get emergency_stop : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.emergency_stop);
  1594. DEBUG_INFO("MCU-%d get relay_welding : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_welding);
  1595. DEBUG_INFO("MCU-%d get leak_module_fail : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.leak_module_fail);
  1596. DEBUG_INFO("MCU-%d get shutter_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.shutter_fault);
  1597. DEBUG_INFO("MCU-%d get locker_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.locker_fault);
  1598. DEBUG_INFO("MCU-%d get power_drop : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.power_drop);
  1599. DEBUG_INFO("MCU-%d get circuit_short : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.circuit_short);
  1600. DEBUG_INFO("MCU-%d get set_circuit : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.set_circuit);
  1601. DEBUG_INFO("MCU-%d get relay_drive_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_drive_fault);
  1602. DEBUG_INFO("MCU-%d get InputAlarmCode : %x\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode);
  1603. }
  1604. failCount[gun_index] = 0;
  1605. }
  1606. else
  1607. {
  1608. DEBUG_WARN("MCU-%d get alarm fail...%d\r\n", gun_index, failCount[gun_index]);
  1609. if(failCount[gun_index]<1000)
  1610. {
  1611. failCount[gun_index]++;
  1612. }
  1613. }
  1614. //===============================
  1615. // Config primary MCU reset request
  1616. //===============================
  1617. /*
  1618. if(Config_AC_MCU_RESET_REQUEST(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].mcuResetRequest))
  1619. {
  1620. DEBUG_INFO("MCU-%d set MCU reset Request : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].mcuResetRequest.isMcuResetRequest);
  1621. failCount[gun_index] = 0;
  1622. }
  1623. else
  1624. {
  1625. DEBUG_WARN("MCU-%d get MCU reset fail...%d\r\n", gun_index, failCount[gun_index]);
  1626. if(failCount[gun_index]<1000)
  1627. {
  1628. failCount[gun_index]++;
  1629. }
  1630. }
  1631. */
  1632. }
  1633. else
  1634. {
  1635. /*
  1636. * Normal priority communication
  1637. */
  1638. switch(stepIndex)
  1639. {
  1640. case 1:
  1641. //===============================
  1642. // Query present input voltage
  1643. //===============================
  1644. if(Query_Present_InputVoltage(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].inputVoltage) == PASS)
  1645. {
  1646. DEBUG_INFO("MCU-%d get input voltage : %f\r\n", gun_index, (float)ShmCharger->gun_info[gun_index].inputVoltage.L1N_L12);
  1647. ShmSysConfigAndInfo->SysInfo.InputVoltageR = ShmCharger->gun_info[gun_index].inputVoltage.L1N_L12;
  1648. ShmSysConfigAndInfo->SysInfo.InputVoltageS = ShmCharger->gun_info[gun_index].inputVoltage.L2N_L23;
  1649. ShmSysConfigAndInfo->SysInfo.InputVoltageT = ShmCharger->gun_info[gun_index].inputVoltage.L3N_L31;
  1650. failCount[gun_index] = 0;
  1651. }
  1652. else
  1653. {
  1654. DEBUG_WARN("MCU-%d get input voltage fail...%d\r\n", gun_index, failCount[gun_index]);
  1655. if(failCount[gun_index]<1000)
  1656. {
  1657. failCount[gun_index]++;
  1658. }
  1659. }
  1660. break;
  1661. case 3:
  1662. //===============================
  1663. // Query present output current
  1664. //===============================
  1665. if(Query_Present_OutputCurrent(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].outputCurrent) == PASS)
  1666. {
  1667. DEBUG_INFO("MCU-%d get output current : %f\r\n", gun_index, (float)ShmCharger->gun_info[gun_index].outputCurrent.L1N_L12[0]);
  1668. failCount[gun_index] = 0;
  1669. }
  1670. else
  1671. {
  1672. DEBUG_WARN("MCU-%d get output current fail...%d\r\n", gun_index, failCount[gun_index]);
  1673. if(failCount[gun_index]<1000)
  1674. failCount[gun_index]++;
  1675. }
  1676. break;
  1677. case 5:
  1678. //===============================
  1679. // Query gun plug-in times
  1680. //===============================
  1681. if(Query_AC_GUN_PLUGIN_TIMES(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].gunPluginTimes) == PASS)
  1682. {
  1683. DEBUG_INFO("MCU-%d get gun plugin times : %.2f\r\n", gun_index, (float)ShmCharger->gun_info[gun_index].gunPluginTimes.GunPluginTimes);
  1684. ShmSysConfigAndInfo->SysConfig.AcPlugInTimes = (float)ShmCharger->gun_info[gun_index].gunPluginTimes.GunPluginTimes;
  1685. failCount[gun_index] = 0;
  1686. }
  1687. else
  1688. {
  1689. DEBUG_WARN("MCU-%d get gun plugin times fail...%d\r\n", gun_index, failCount[gun_index]);
  1690. if(failCount[gun_index]<1000)
  1691. failCount[gun_index]++;
  1692. }
  1693. break;
  1694. case 7:
  1695. //===============================
  1696. // Query temperature
  1697. //===============================
  1698. if(Query_Temperature(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].temperature) == PASS)
  1699. {
  1700. DEBUG_INFO("MCU-%d get temperature : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].temperature.point[0]);
  1701. ShmSysConfigAndInfo->SysInfo.SystemAmbientTemp = ShmCharger->gun_info[gun_index].temperature.point[0];
  1702. failCount[gun_index] = 0;
  1703. }
  1704. else
  1705. {
  1706. DEBUG_WARN("MCU-%d get temperature fail...%d\r\n", gun_index, failCount[gun_index]);
  1707. if(failCount[gun_index]<1000)
  1708. {
  1709. failCount[gun_index]++;
  1710. }
  1711. }
  1712. break;
  1713. case 9:
  1714. //===============================
  1715. // Query primary MCU status
  1716. //===============================
  1717. // if(Query_AC_MCU_Status(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].primaryMcuState))
  1718. // {
  1719. // DEBUG_INFO("MCU-%d get Pilot State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.cp_state);
  1720. // DEBUG_INFO("MCU-%d get Pilot Duty : %.2f\r\n", gun_index, (float)ShmCharger->gun_info[gun_index].primaryMcuState.current_limit);
  1721. // DEBUG_INFO("MCU-%d get Pilot Voltage Positive : %.2f\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_positive);
  1722. // DEBUG_INFO("MCU-%d get Pilot Voltage Negative : %.2f\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_negtive);
  1723. // DEBUG_INFO("MCU-%d get Locker State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.locker_state);
  1724. // DEBUG_INFO("MCU-%d get Relay State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.relay_state);
  1725. // DEBUG_INFO("MCU-%d get Shutter State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.shutter_state);
  1726. // DEBUG_INFO("MCU-%d get Meter State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.meter_state);
  1727. // DEBUG_INFO("MCU-%d get PP State : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.pp_state);
  1728. // DEBUG_INFO("MCU-%d get Rating Current : %.2f\r\n", gun_index, (float)ShmCharger->gun_info[gun_index].primaryMcuState.rating_current);
  1729. // DEBUG_INFO("MCU-%d get Rotatory switch : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuState.rotatory_switch);
  1730. //
  1731. // ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PilotState = ShmCharger->gun_info[gun_index].primaryMcuState.cp_state;
  1732. // ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PilotDuty = (ShmCharger->gun_info[gun_index].primaryMcuState.current_limit>51?(unsigned char)((ShmCharger->gun_info[gun_index].primaryMcuState.current_limit/2.5)+64):(unsigned char)(ShmCharger->gun_info[gun_index].primaryMcuState.current_limit/0.6));
  1733. // ShmSysConfigAndInfo->SysInfo.AcChargingData[gun_index].PilotVoltage = ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_positive;
  1734. // ShmCharger->gun_info[gun_index].PilotVoltage.PilotVoltagePositive = ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_positive;
  1735. // ShmCharger->gun_info[gun_index].PilotVoltage.PilotVoltageNegative = ShmCharger->gun_info[gun_index].primaryMcuState.cp_voltage_negtive;
  1736. //
  1737. // failCount[gun_index] = 0;
  1738. // }
  1739. // else
  1740. // {
  1741. // DEBUG_WARN("MCU-%d get status fail...%d\r\n", gun_index, failCount[gun_index]);
  1742. // if(failCount[gun_index]<1000)
  1743. // {
  1744. // failCount[gun_index]++;
  1745. // }
  1746. // }
  1747. break;
  1748. case 11:
  1749. //===============================
  1750. // Query primary MCU Alarm code
  1751. //===============================
  1752. // if(Query_AC_MCU_Alarm(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].primaryMcuAlarm))
  1753. // {
  1754. // DEBUG_INFO("MCU-%d get alarm OK...\r\n");
  1755. // /*
  1756. // // Byte[6]
  1757. // // Byte[7]
  1758. // // Byte[8] Alarm code 3~7 bits Reserved
  1759. // // Byte[9] Alarm code 0~7 bits Reserved
  1760. // */
  1761. //
  1762. // //================================================
  1763. // // Byte[6]
  1764. // //================================================
  1765. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OVP == 0x01)
  1766. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<0;
  1767. // else
  1768. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<0);
  1769. //
  1770. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.UVP == 0x01)
  1771. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<1;
  1772. // else
  1773. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<1);
  1774. //
  1775. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OCP == 0x01)
  1776. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<2;
  1777. // else
  1778. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<2);
  1779. //
  1780. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OTP == 0x01)
  1781. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<3;
  1782. // else
  1783. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<3);
  1784. //
  1785. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.gmi_fault == 0x01)
  1786. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<4;
  1787. // else
  1788. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<4);
  1789. //
  1790. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.cp_fault == 0x01)
  1791. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<5;
  1792. // else
  1793. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<5);
  1794. //
  1795. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.ac_leak == 0x01)
  1796. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<6;
  1797. // else
  1798. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<6);
  1799. //
  1800. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.dc_leak == 0x01)
  1801. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<7;
  1802. // else
  1803. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<7);
  1804. //
  1805. // //================================================
  1806. // // Byte[7]
  1807. // //================================================
  1808. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.mcu_selftest_fail == 0x01)
  1809. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<8;
  1810. // else
  1811. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<8);
  1812. //
  1813. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.handshaking_timeout == 0x01)
  1814. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<9;
  1815. // else
  1816. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<9);
  1817. //
  1818. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.emergency_stop == 0x01)
  1819. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<10;
  1820. // else
  1821. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<10);
  1822. //
  1823. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_welding == 0x01)
  1824. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<11;
  1825. // else
  1826. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<11);
  1827. //
  1828. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.leak_module_fail == 0x01)
  1829. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<12;
  1830. // else
  1831. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<12);
  1832. //
  1833. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.shutter_fault == 0x01)
  1834. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<13;
  1835. // else
  1836. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<13);
  1837. //
  1838. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.locker_fault == 0x01)
  1839. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<14;
  1840. // else
  1841. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<14);
  1842. //
  1843. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.power_drop == 0x01)
  1844. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<15;
  1845. // else
  1846. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<15);
  1847. //
  1848. // //================================================
  1849. // // Byte[8]
  1850. // //================================================
  1851. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.circuit_short == 0x01)
  1852. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<16;
  1853. // else
  1854. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<16);
  1855. //
  1856. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.set_circuit == 0x01)
  1857. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<17;
  1858. // else
  1859. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<17);
  1860. //
  1861. // if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_drive_fault == 0x01)
  1862. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode |= 1<<18;
  1863. // else
  1864. // ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode &= ~(1<<18);
  1865. //
  1866. // //================================================
  1867. // // Byte[9]
  1868. // //================================================
  1869. // // Debug print out
  1870. // DEBUG_INFO("MCU-%d get OVP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OVP);
  1871. // DEBUG_INFO("MCU-%d get UVP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.UVP);
  1872. // DEBUG_INFO("MCU-%d get OCP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OCP);
  1873. // DEBUG_INFO("MCU-%d get OTP : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.OTP);
  1874. // DEBUG_INFO("MCU-%d get gmi_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.gmi_fault);
  1875. // DEBUG_INFO("MCU-%d get cp_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.cp_fault);
  1876. // DEBUG_INFO("MCU-%d get ac_leak : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.ac_leak);
  1877. // DEBUG_INFO("MCU-%d get dc_leak : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.dc_leak);
  1878. // DEBUG_INFO("MCU-%d get mcu_selftest_fail : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.mcu_selftest_fail);
  1879. // DEBUG_INFO("MCU-%d get handshaking_timeout : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.handshaking_timeout);
  1880. // DEBUG_INFO("MCU-%d get emergency_stop : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.emergency_stop);
  1881. // DEBUG_INFO("MCU-%d get relay_welding : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_welding);
  1882. // DEBUG_INFO("MCU-%d get leak_module_fail : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.leak_module_fail);
  1883. // DEBUG_INFO("MCU-%d get shutter_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.shutter_fault);
  1884. // DEBUG_INFO("MCU-%d get locker_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.locker_fault);
  1885. // DEBUG_INFO("MCU-%d get power_drop : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.power_drop);
  1886. // DEBUG_INFO("MCU-%d get circuit_short : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.circuit_short);
  1887. // DEBUG_INFO("MCU-%d get set_circuit : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.set_circuit);
  1888. // DEBUG_INFO("MCU-%d get relay_drive_fault : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.relay_drive_fault);
  1889. // DEBUG_INFO("MCU-%d get InputAlarmCode : %x\r\n", gun_index, ShmCharger->gun_info[gun_index].primaryMcuAlarm.InputAlarmCode);
  1890. //
  1891. // failCount[gun_index] = 0;
  1892. // }
  1893. // else
  1894. // {
  1895. // DEBUG_WARN("MCU-%d get alarm fail...%d\r\n", gun_index, failCount[gun_index]);
  1896. // if(failCount[gun_index]<1000)
  1897. // {
  1898. // failCount[gun_index]++;
  1899. // }
  1900. // }
  1901. break;
  1902. case 13:
  1903. //===============================
  1904. // Query primary MCU BLE config
  1905. //===============================
  1906. if(Query_Ble_Config(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].bleConfigData))
  1907. {
  1908. DEBUG_INFO("MCU-%d get isUserLogin : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].bleConfigData.isLogin);
  1909. DEBUG_INFO("MCU-%d get isRequestStartCharger : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].bleConfigData.isRequestStart);
  1910. DEBUG_INFO("MCU-%d get isRequestStopCharger : %d\r\n", gun_index, ShmCharger->gun_info[gun_index].bleConfigData.isRequestStop);
  1911. ShmSysConfigAndInfo->SysConfig.Bluetooth.isLogin = ShmCharger->gun_info[gun_index].bleConfigData.isLogin;
  1912. ShmSysConfigAndInfo->SysConfig.Bluetooth.isRequestStart = ShmCharger->gun_info[gun_index].bleConfigData.isRequestStart;
  1913. ShmSysConfigAndInfo->SysConfig.Bluetooth.isRequestStop = ShmCharger->gun_info[gun_index].bleConfigData.isRequestStop;
  1914. failCount[gun_index] = 0;
  1915. }
  1916. else
  1917. {
  1918. DEBUG_WARN("MCU-%d get ble config fail...%d\r\n", gun_index, failCount[gun_index]);
  1919. if(failCount[gun_index]<1000)
  1920. {
  1921. failCount[gun_index]++;
  1922. }
  1923. }
  1924. //===============================
  1925. // Query primary MCU ble login id
  1926. //===============================
  1927. if(Query_Ble_Central_ID(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].bleLoginCentralId))
  1928. {
  1929. DEBUG_INFO("MCU-%d get ble central id : %s\r\n", gun_index, ShmCharger->gun_info[gun_index].bleLoginCentralId.id);
  1930. memcpy(ShmSysConfigAndInfo->SysConfig.Bluetooth.LoginCentralID, ShmCharger->gun_info[gun_index].bleLoginCentralId.id, sizeof ShmSysConfigAndInfo->SysConfig.Bluetooth.LoginCentralID);
  1931. failCount[gun_index] = 0;
  1932. }
  1933. else
  1934. {
  1935. DEBUG_WARN("MCU-%d get ble login central id fail...%d\r\n", gun_index, failCount[gun_index]);
  1936. if(failCount[gun_index]<1000)
  1937. {
  1938. failCount[gun_index]++;
  1939. }
  1940. }
  1941. break;
  1942. case 15:
  1943. //===============================
  1944. // Query RTC
  1945. //===============================
  1946. if(Query_RTC(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].rtc))
  1947. {
  1948. struct timeb csuTime, mcuTime;
  1949. struct tm *tmCSU;
  1950. struct tm tmMcu;
  1951. ftime(&csuTime);
  1952. tmCSU = localtime(&csuTime.time);
  1953. tmMcu.tm_year = ShmCharger->gun_info[gun_index].rtc.year-1900;
  1954. tmMcu.tm_mon = ShmCharger->gun_info[gun_index].rtc.month-1;
  1955. tmMcu.tm_mday = ShmCharger->gun_info[gun_index].rtc.day;
  1956. tmMcu.tm_hour = ShmCharger->gun_info[gun_index].rtc.hour;
  1957. tmMcu.tm_min = ShmCharger->gun_info[gun_index].rtc.min;
  1958. tmMcu.tm_sec = ShmCharger->gun_info[gun_index].rtc.sec;
  1959. mcuTime.time = mktime(&tmMcu);
  1960. if(ShmCharger->gun_info[gun_index].bleConfigData.isLogin && !ShmOCPP16Data->OcppConnStatus)
  1961. {
  1962. if(abs(DiffTimeb(csuTime, mcuTime)) > 10000)
  1963. {
  1964. char cmdBuf[128];
  1965. sprintf(cmdBuf, "date -u -s \"%04d-%02d-%02d %02d:%02d:%02d\"", ShmCharger->gun_info[gun_index].rtc.year,
  1966. ShmCharger->gun_info[gun_index].rtc.month,
  1967. ShmCharger->gun_info[gun_index].rtc.day,
  1968. ShmCharger->gun_info[gun_index].rtc.hour,
  1969. ShmCharger->gun_info[gun_index].rtc.min,
  1970. ShmCharger->gun_info[gun_index].rtc.sec);
  1971. system(cmdBuf);
  1972. system("hwclock -w -u");
  1973. system("hwclock -s");
  1974. DEBUG_INFO("Sync from MCU-%d rtc OK...%04d-%02d-%02d %02d:%02d:%02d\r\n", gun_index,
  1975. ShmCharger->gun_info[gun_index].rtc.year,
  1976. ShmCharger->gun_info[gun_index].rtc.month,
  1977. ShmCharger->gun_info[gun_index].rtc.day,
  1978. ShmCharger->gun_info[gun_index].rtc.hour,
  1979. ShmCharger->gun_info[gun_index].rtc.min,
  1980. ShmCharger->gun_info[gun_index].rtc.sec);
  1981. }
  1982. }
  1983. else
  1984. {
  1985. if(abs(DiffTimeb(csuTime, mcuTime)) > 10000)
  1986. {
  1987. ShmCharger->gun_info[gun_index].rtc.year = tmCSU->tm_year+1900;
  1988. ShmCharger->gun_info[gun_index].rtc.month = tmCSU->tm_mon+1;
  1989. ShmCharger->gun_info[gun_index].rtc.day = tmCSU->tm_mday;
  1990. ShmCharger->gun_info[gun_index].rtc.hour = tmCSU->tm_hour;
  1991. ShmCharger->gun_info[gun_index].rtc.min = tmCSU->tm_hour;
  1992. ShmCharger->gun_info[gun_index].rtc.sec = tmCSU->tm_sec;
  1993. Config_RTC(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].rtc);
  1994. DEBUG_INFO("MCU-%d set rtc OK...%04d-%02d-%02d %02d:%02d:%02d\r\n", gun_index,
  1995. ShmCharger->gun_info[gun_index].rtc.year,
  1996. ShmCharger->gun_info[gun_index].rtc.month,
  1997. ShmCharger->gun_info[gun_index].rtc.day,
  1998. ShmCharger->gun_info[gun_index].rtc.hour,
  1999. ShmCharger->gun_info[gun_index].rtc.min,
  2000. ShmCharger->gun_info[gun_index].rtc.sec);
  2001. }
  2002. }
  2003. failCount[gun_index] = 0;
  2004. }
  2005. else
  2006. {
  2007. DEBUG_WARN("MCU-%d get rtc fail...%d\r\n", gun_index, failCount[gun_index]);
  2008. if(failCount[gun_index]<1000)
  2009. failCount[gun_index]++;
  2010. }
  2011. break;
  2012. case 17:
  2013. //===============================
  2014. // Query primary MCU power consumption
  2015. //===============================
  2016. if(Query_Power_Consumption(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].powerConsumption))
  2017. {
  2018. DEBUG_INFO("MCU-%d get power consumption : %f\r\n",gun_index, ((float)ShmCharger->gun_info[gun_index].powerConsumption.power_consumption/100.0));
  2019. failCount[gun_index] = 0;
  2020. }
  2021. else
  2022. {
  2023. DEBUG_WARN("MCU-%d get power consumption fail...%d\r\n", gun_index, failCount[gun_index]);
  2024. if(failCount[gun_index]<1000)
  2025. failCount[gun_index]++;
  2026. }
  2027. break;
  2028. case 19:
  2029. //===============================
  2030. // Upgrade MCU
  2031. //===============================
  2032. if(ShmCharger->gun_info[gun_index].mcuFlag.isMcuUpgradeReq)
  2033. {
  2034. unsigned char cmd[512];
  2035. if(Upgrade_UART(Uart1Fd, AC_WALLMOUNT_CONTROLLER, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), ShmCharger->fwUpgradeInfo.location, ShmCharger->fwUpgradeInfo.modelName))
  2036. {
  2037. DEBUG_INFO("MCU-%d upgrade firmware OK...%s\r\n", gun_index, ShmCharger->gun_info[gun_index].ver.Version_FW);
  2038. sleep(20);
  2039. ShmCharger->gun_info[gun_index].mcuFlag.isMcuUpgradeReq = OFF;
  2040. failCount[gun_index] = 0;
  2041. }
  2042. else
  2043. {
  2044. DEBUG_WARN("MCU-%d upgrade firmware fail...%d\r\n", gun_index, failCount[gun_index]);
  2045. if(failCount[gun_index]<1000)
  2046. failCount[gun_index]++;
  2047. }
  2048. sprintf((char*)cmd, "yes|rm %s", ShmCharger->fwUpgradeInfo.location);
  2049. system((char*)cmd);
  2050. }
  2051. break;
  2052. case 21:
  2053. //===============================
  2054. // Config primary set CP PWN duty
  2055. //===============================
  2056. // ShmCharger->gun_info[gun_index].primaryMcuCp_Pwn_Duty.max_current = 32;
  2057. // if(Config_AC_MaxCurrent_And_CpPwmDuty(Uart1Fd, (gun_index>0?ADDR_AC_PRIMARY_2:ADDR_AC_PRIMARY_1), &ShmCharger->gun_info[gun_index].primaryMcuCp_Pwn_Duty))
  2058. // {
  2059. // DEBUG_INFO("MCU-%d cp pwn duty : %d\r\n",gun_index, &ShmCharger->gun_info[gun_index].primaryMcuCp_Pwn_Duty.max_current);
  2060. // }
  2061. // else
  2062. // {
  2063. // DEBUG_WARN("MCU-%d set cp pwn duty fail...%d\r\n", gun_index, failCount[gun_index]);
  2064. // if(failCount[gun_index]<1000)
  2065. // {
  2066. // failCount[gun_index]++;
  2067. // }
  2068. // }
  2069. //
  2070. // if(failCount[gun_index]>=1000)
  2071. // {
  2072. // DEBUG_ERROR("Primary MCU-%d communication fault", gun_index);
  2073. // }
  2074. break;
  2075. default:
  2076. stepIndex = 0;
  2077. break;
  2078. }
  2079. }
  2080. stepIndex++;
  2081. //===============================
  2082. // Communication fail check
  2083. //===============================
  2084. if(failCount[gun_index] >= FAIL_SPEC_COMM)
  2085. {
  2086. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.comm_timeout == OFF)
  2087. {
  2088. DEBUG_ERROR("Primary MCU-%d communication fault", gun_index);
  2089. ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.comm_timeout = ON;
  2090. }
  2091. }
  2092. else
  2093. {
  2094. if(ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.comm_timeout == ON)
  2095. {
  2096. DEBUG_ERROR("Primary MCU-%d communication recover", gun_index);
  2097. ShmCharger->gun_info[gun_index].primaryMcuAlarm.bits.comm_timeout = OFF;
  2098. }
  2099. }
  2100. }
  2101. usleep(50000);
  2102. }
  2103. return FAIL;
  2104. }