Api.c 16 KB

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  1. #include <stdint.h>
  2. #include <stdio.h>
  3. #include <string.h>
  4. #include <stdlib.h>
  5. #include <unistd.h>
  6. #include <sys/socket.h>
  7. #include <fcntl.h>
  8. #include <net/if.h>
  9. #include <netinet/in.h>
  10. #include <sys/ioctl.h>
  11. #include "main.h"
  12. #include "Api.h"
  13. #include "SDRRecord.h"
  14. #include "SELRecord.h"
  15. #include "SEL.h"
  16. #include "MsgHndlr.h"
  17. int InitSdrConfig(void)
  18. {
  19. printf("Init SDR Config...\r\n");
  20. g_BMCInfo.SDRConfig.SDRError = 0;
  21. g_BMCInfo.SDRConfig.UpdatingSDR = FALSE;
  22. g_BMCInfo.SDRConfig.UpdatingChannel = 0;
  23. g_BMCInfo.SDRConfig.TrackPOffset = 0;
  24. g_BMCInfo.SDRConfig.TrackRecID = 0;
  25. g_BMCInfo.SDRConfig.ReservationID = 0;
  26. g_BMCInfo.SDRConfig.IPMB_Seqnum = 0;
  27. g_BMCInfo.SDRConfig.PartAddbytes = 0;
  28. g_BMCInfo.SDRConfig.LatestRecordID = 0;
  29. g_BMCInfo.SDRConfig.NumMarkedRecords = 0;
  30. g_BMCInfo.SDRConfig.SDRRAM = (SDRRepository_T*)g_BMCInfo.pSDR;
  31. g_BMCInfo.SDRConfig.RepositoryInfo.Version = 0x51;
  32. g_BMCInfo.SDRConfig.RepositoryInfo.RecCt = ((SDRRepository_T*)g_BMCInfo.SDRConfig.SDRRAM)->NumRecords;
  33. g_BMCInfo.SDRConfig.RepositoryInfo.FreeSpace = 0xffff;
  34. g_BMCInfo.SDRConfig.RepositoryInfo.AddTimeStamp = 0;
  35. g_BMCInfo.SDRConfig.RepositoryInfo.EraseTimeStamp = 0;
  36. g_BMCInfo.SDRConfig.RepositoryInfo.OpSupport = 0x23;
  37. //TODO:
  38. g_BMCInfo.SDRConfig.RepositoryAllocInfo.NumAllocUnits = 0;
  39. g_BMCInfo.SDRConfig.RepositoryAllocInfo.AllocUnitSize = 0;
  40. g_BMCInfo.SDRConfig.RepositoryAllocInfo.NumFreeAllocUnits = 0;
  41. g_BMCInfo.SDRConfig.RepositoryAllocInfo.LargestFreeBlock = 0;
  42. g_BMCInfo.SDRConfig.RepositoryAllocInfo.MaxRecSize = 0;
  43. return 0;
  44. }
  45. int InitSelConfig(void)
  46. {
  47. printf("InitSelConfig...\n");
  48. g_BMCInfo.SELConfig.SelReservationID = 0;;
  49. g_BMCInfo.SELConfig.LastEvtTS = 0;
  50. g_BMCInfo.SELConfig.PartialAddRecordID = 0;
  51. g_BMCInfo.SELConfig.PartialAddRecOffset = 0;
  52. g_BMCInfo.SELConfig.PartialAdd = 0;
  53. g_BMCInfo.SELConfig.SenMonSELFlag = 0;
  54. g_BMCInfo.SELConfig.MaxSELRecord = MAX_SEL_RECORD;
  55. // g_BMCInfo.SELConfig.RsrvIDCancelled = FALSE;
  56. g_BMCInfo.SELConfig.SELOverFlow = FALSE;
  57. g_BMCInfo.SELConfig.selalmostfull = 0;
  58. // SELEventRecord_T SelPartialAddRecord;
  59. // g_BMCInfo.SELConfig.SELEventMsg [16];
  60. return 0;
  61. }
  62. int PlatformInit(void)
  63. {
  64. uint8_t PrimaryIPMBBusNum, SecondaryIPMBBusNum;
  65. printf("Init Platform...\r\n");
  66. // //hardware init
  67. // GPIO_InitTypeDef GPIO_InitStruct;
  68. // GPIO_InitStruct.Pin = GA0_PIN | GA1_PIN | GA2_PIN | GA3_PIN | GA4_PIN | RACKID2_PIN;
  69. // GPIO_InitStruct.Mode = GPIO_MODE_INPUT;
  70. // GPIO_InitStruct.Pull = GPIO_NOPULL;
  71. // GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
  72. // stm32_gpio_init(GPIOH, &GPIO_InitStruct);
  73. // GPIO_InitStruct.Pin = GAP_PIN | RACKID1_PIN | RACKID3_PIN | RACKID4_PIN | RACKID5_PIN;
  74. // stm32_gpio_init(GPIOI, &GPIO_InitStruct);
  75. g_BMCInfo.SelfTestByte = 0;
  76. g_BMCInfo.SlotID = PDK_GetSlotID();
  77. g_BMCInfo.ChassisID = PDK_GetChassisID();
  78. g_BMCInfo.ChassisIdentify = FALSE;
  79. //init DevGUID
  80. g_BMCInfo.DeviceGUID[0] = 0x01;
  81. g_BMCInfo.DeviceGUID[1] = 0x01;
  82. g_BMCInfo.DeviceGUID[2] = 0x01;
  83. g_BMCInfo.DeviceGUID[3] = 0x01;
  84. g_BMCInfo.DeviceGUID[4] = 0x01;
  85. g_BMCInfo.DeviceGUID[5] = 0x01;
  86. g_BMCInfo.DeviceGUID[6] = 0x01;
  87. g_BMCInfo.DeviceGUID[7] = 0x01;
  88. g_BMCInfo.DeviceGUID[8] = 0x01;
  89. g_BMCInfo.DeviceGUID[9] = 0x01;
  90. g_BMCInfo.DeviceGUID[10] = 0x01;
  91. g_BMCInfo.DeviceGUID[11] = 0x01;
  92. g_BMCInfo.DeviceGUID[12] = 0x01;
  93. g_BMCInfo.DeviceGUID[13] = 0x01;
  94. g_BMCInfo.DeviceGUID[14] = 0x01;
  95. g_BMCInfo.DeviceGUID[15] = 0x01;
  96. g_BMCInfo.FwMajorVer = FW_VERSION_MAJOR;
  97. g_BMCInfo.FwMinorVer = FW_VERSION_MINOR;
  98. g_BMCInfo.SendMsgSeqNum = 0;
  99. // g_BMCInfo.OemFlags.BladeWorkMode = BLADE_IPMC;
  100. // g_BMCInfo.OemFlags.chassisManageFnEnable = 0;
  101. // g_BMCInfo.OemFlags.thisBladeIndex = 0;
  102. // g_BMCInfo.OemFlags.bladeStatus = 1; //0: not present, 1: normal, 2: error, others: reserved.
  103. g_BMCInfo.HealthLevel = SENSOR_STATUS_NORMAL;
  104. g_BMCInfo.SensorSharedMem.SensorTick= 0;
  105. g_BMCInfo.SenConfig.PowerOnTick = 0;
  106. g_BMCInfo.SenConfig.SysResetTick = 0;
  107. g_BMCInfo.CurTimerTick = 0;
  108. g_BMCInfo.CurTimerSecond = 0;
  109. g_BMCInfo.BootValidMinutes = 0;
  110. return 0;
  111. }
  112. int InitTimerTaskTbl(void)
  113. {
  114. printf("InitTimerTaskTbl...\n");
  115. g_BMCInfo.TimerTaskTblSize = 9;
  116. memcpy(g_BMCInfo.TimerTaskTbl, m_TimerTaskTbl,sizeof(m_TimerTaskTbl));
  117. }
  118. int Init_SessionTbl(void)
  119. {
  120. printf("Init_SessionTbl...\n");
  121. g_BMCInfo.IpmiConfig.MaxSession = 10;
  122. g_BMCInfo.IpmiConfig.SessionTimeOut = 10; //10s
  123. g_BMCInfo.IpmiConfig.SendMsgTimeout = 10; //10s
  124. /*Allocating Memory to hold session Table informations */
  125. g_BMCInfo.SessionTblInfo.SessionTbl = (SessionInfo_T *) malloc(sizeof(SessionInfo_T)*( g_BMCInfo.IpmiConfig.MaxSession + 1));
  126. if(g_BMCInfo.SessionTblInfo.SessionTbl == NULL)
  127. {
  128. printf("Error in allocating memory for SessionTbl \n");
  129. return 1;
  130. }
  131. /*Initialize the Session Table memory */
  132. memset(g_BMCInfo.SessionTblInfo.SessionTbl,0,sizeof(SessionInfo_T)*(g_BMCInfo.IpmiConfig.MaxSession + 1));
  133. /*Allocating Memory to hold UDS session Table informations */
  134. g_BMCInfo.UDSSessionTblInfo.UDSSessionTbl = (UDSSessionTbl_T *) malloc(sizeof(UDSSessionTbl_T)*(g_BMCInfo.IpmiConfig.MaxSession + 1));
  135. if(g_BMCInfo.UDSSessionTblInfo.UDSSessionTbl == NULL)
  136. {
  137. printf("Error in allocating memory for SessionTbl \n");
  138. return 1;
  139. }
  140. /*Initialize the UDS Session Table memory */
  141. memset(g_BMCInfo.UDSSessionTblInfo.UDSSessionTbl,0,sizeof(UDSSessionTbl_T)*(g_BMCInfo.IpmiConfig.MaxSession + 1));
  142. }
  143. const char FirstPowerOnStr[] = "First power on the bmc";
  144. int Init_IPMI_FRU_SDR_SEL(void)
  145. {
  146. int i;
  147. uint32_t sdrSize =
  148. sizeof(SDRRepository_T) + sizeof(HdrMgmtCtrlrDevLocator_T) + sizeof(HdrFullSensorRec_T)*SENSOR_NUMBERS;
  149. uint32_t selSize = sizeof(SELRepository_T) + sizeof(SELRec_T)*MAX_SEL_RECORD ;
  150. uint8_t* pSDR = NULL;
  151. uint8_t* pSEL = NULL;
  152. g_BMCInfo.pSDR = malloc(sdrSize);
  153. if((g_BMCInfo.pSDR == NULL) && (sdrSize != 0))
  154. {
  155. printf("g_BMCInfo.pSDR Malloc failed!\r\n");
  156. }
  157. g_BMCInfo.pSEL = malloc(selSize);
  158. if((g_BMCInfo.pSEL == NULL) && (selSize != 0))
  159. {
  160. printf("g_BMCInfo.pSEL Malloc failed!\r\n");
  161. }
  162. // FLASH_GetIPMI(&g_BMCInfo.IpmiConfig);
  163. // if(strncmp(g_BMCInfo.IpmiConfig.FirstPowerOnStr, FirstPowerOnStr, sizeof(FirstPowerOnStr)) != 0)
  164. if(1)
  165. {
  166. //first power on
  167. printf("BMC first power on!\r\n");
  168. /************************** Init IPMI ******************************/
  169. memcpy(g_BMCInfo.IpmiConfig.FirstPowerOnStr, FirstPowerOnStr, sizeof(FirstPowerOnStr));
  170. g_BMCInfo.IpmiConfig.SerialIfcSupport = SERIAL_IFC_SUPPORT;
  171. g_BMCInfo.IpmiConfig.SerialTerminalSupport = SERIAL_TERMINAL_SUPPORT;
  172. g_BMCInfo.IpmiConfig.LANIfcSupport = LAN_IFC_SUPPORT;
  173. g_BMCInfo.IpmiConfig.SYSIfcSupport = SYS_IFC_SUPPORT;
  174. g_BMCInfo.IpmiConfig.GrpExtnSupport = GROUP_EXTERN_SUPPORT;
  175. g_BMCInfo.IpmiConfig.UDSIfcSupport = UDS_IFC_SUPPORT;
  176. g_BMCInfo.IpmiConfig.ChassisTimerInterval = CHASSIS_TIMER_INTERVAL;
  177. g_BMCInfo.IpmiConfig.PowerCycleInterval = PWR_CYCLE_INTERVAL;
  178. g_BMCInfo.IpmiConfig.FanControlInterval = FAN_CONTROL_INTERVAL;
  179. g_BMCInfo.IpmiConfig.RearmSetSensorThreshold = REARM_SET_SENSOR_THRESHOLD;
  180. g_BMCInfo.IpmiConfig.SELTimeUTCOffset = 8*60;
  181. //IPMB
  182. g_BMCInfo.IpmiConfig.PrimaryIPMBSupport = PRIMARY_IPMB_SUPPORT;
  183. g_BMCInfo.IpmiConfig.SecondaryIPMBSupport = SECONDARY_IPMB_SUPPORT;
  184. g_BMCInfo.IpmiConfig.PrimaryIPMBBus = PRIMARY_IPMB_BUS;
  185. g_BMCInfo.IpmiConfig.SecondaryIPMBBus = SECONDARY_IPMB_BUS;
  186. g_BMCInfo.IpmiConfig.PrimaryIPMBAddr = PRIMARY_IPMB_ADDR;
  187. g_BMCInfo.IpmiConfig.SecondaryIPMBAddr = SECONDARY_IPMB_ADDR;
  188. //Init FRU
  189. memcpy(&g_BMCInfo.FRU, &Default_FRUData, sizeof(OemFRUData_T));
  190. /************************ Init SDR *************************************/
  191. pSDR = g_BMCInfo.pSDR;
  192. //init SDR repository header
  193. ((SDRRepository_T*)pSDR)->Signature[0] = 0x00;
  194. ((SDRRepository_T*)pSDR)->Signature[1] = 0x11;
  195. ((SDRRepository_T*)pSDR)->Signature[2] = 0x22;
  196. ((SDRRepository_T*)pSDR)->Signature[3] = 0x33;
  197. ((SDRRepository_T*)pSDR)->NumRecords = SENSOR_NUMBERS + 1;
  198. ((SDRRepository_T*)pSDR)->Size = sdrSize;
  199. ((SDRRepository_T*)pSDR)->AddTimeStamp = 0;
  200. ((SDRRepository_T*)pSDR)->EraseTimeStamp = 0;
  201. //init MgmtCtrlrDevLocator SDR
  202. pSDR += sizeof(SDRRepository_T);
  203. ((HdrMgmtCtrlrDevLocator_T*)pSDR)->Valid = 1;
  204. ((HdrMgmtCtrlrDevLocator_T*)pSDR)->Len = sizeof(HdrMgmtCtrlrDevLocator_T);
  205. memcpy(&(((HdrMgmtCtrlrDevLocator_T*)pSDR)->MgmtCtrlrDevLocator), &bmc_sdr, sizeof(MgmtCtrlrDevLocator_T));
  206. //init FullSensorRec SDR
  207. pSDR += sizeof(HdrMgmtCtrlrDevLocator_T);
  208. for(i=0;i<SENSOR_NUMBERS;i++)
  209. {
  210. ((HdrFullSensorRec_T*)pSDR)->Valid = 1;
  211. ((HdrFullSensorRec_T*)pSDR)->Len = sizeof(HdrFullSensorRec_T);
  212. memcpy(&(((HdrFullSensorRec_T*)pSDR)->FullSensorRec), &full_sdr_tbl[i], sizeof(FullSensorRec_T));
  213. pSDR += sizeof(HdrFullSensorRec_T);
  214. }
  215. /******************************* Init SEL *************************************/
  216. pSEL = g_BMCInfo.pSEL;
  217. ((SELRepository_T*)pSEL)->Signature[0] = 0x00;
  218. ((SELRepository_T*)pSEL)->Signature[1] = 0x11;
  219. ((SELRepository_T*)pSEL)->Signature[2] = 0x22;
  220. ((SELRepository_T*)pSEL)->Signature[3] = 0x33;
  221. ((SELRepository_T*)pSEL)->NumRecords = 0;
  222. ((SELRepository_T*)pSEL)->Padding = 0;
  223. ((SELRepository_T*)pSEL)->AddTimeStamp = 0;
  224. ((SELRepository_T*)pSEL)->EraseTimeStamp = 0;
  225. ((SELRepository_T*)pSEL)->FirstRecID = 0;
  226. ((SELRepository_T*)pSEL)->LastRecID = 0;
  227. ((SELRepository_T*)pSEL)->SELIndex = 0;
  228. ((SELRepository_T*)pSEL)->SELRecord = (SELRec_T*)(pSEL + sizeof(SELRepository_T));
  229. UpdateFlash();
  230. }
  231. else
  232. {
  233. // //Init FRU
  234. // FLASH_GetFRU(&g_BMCInfo.FRU);
  235. // //Init SDR
  236. // FLASH_GetSDR(g_BMCInfo.pSDR, sdrSize);
  237. // //Init SEL
  238. // FLASH_GetSEL(g_BMCInfo.pSEL, selSize);
  239. }
  240. return 0;
  241. }
  242. int Init_UserInfoTbl(void)
  243. {
  244. int i;
  245. if(1) //first power on
  246. {
  247. memset(g_BMCInfo.UserInfoTbl, 0x0, sizeof(UserInfo_T)*MAX_USER_NUM);
  248. g_BMCInfo.UserInfoTbl[0].UserId = 1;
  249. strcpy(g_BMCInfo.UserInfoTbl[0].UserName, "admin");
  250. strcpy(g_BMCInfo.UserInfoTbl[0].UserPassword, "admin");
  251. g_BMCInfo.UserInfoTbl[0].UserStatus = TRUE;
  252. g_BMCInfo.CurrentNoUser = 1;
  253. g_BMCInfo.pUserInfo = NULL;
  254. FlushUserInfoTbl();
  255. }
  256. else
  257. {
  258. UpdateUserInfoTble();
  259. g_BMCInfo.CurrentNoUser = 0;
  260. for(i=0;i<MAX_USER_NUM;i++)
  261. {
  262. if((g_BMCInfo.UserInfoTbl[i].UserId != 0) && (g_BMCInfo.UserInfoTbl[i].UserStatus == TRUE))
  263. g_BMCInfo.CurrentNoUser++;
  264. }
  265. g_BMCInfo.pUserInfo = NULL;
  266. }
  267. }
  268. int UpdateFlash(void)
  269. {
  270. //TODO:
  271. return 0;
  272. }
  273. int SetSysTime(uint32_t *timeSecond)
  274. {
  275. g_BMCInfo.SELTimeSecond = *timeSecond;
  276. return 0;
  277. }
  278. int GetSysTime(void)
  279. {
  280. return g_BMCInfo.SELTimeSecond;
  281. }
  282. int PostEventMessage (uint8_t *EventMsg,uint8_t size)
  283. {
  284. uint8_t SelReq [sizeof(SELEventRecord_T)];
  285. uint8_t SelRes [sizeof(AddSELRes_T)];
  286. SELEventRecord_T* SelRecord = ( SELEventRecord_T*) SelReq;
  287. SelRecord->hdr.Type = 0x02;
  288. SelRecord->hdr.TimeStamp = GetSysTime ();
  289. memcpy (SelRecord->GenID, EventMsg, size);
  290. LockedAddSELEntry(SelReq, sizeof (SELEventRecord_T), SelRes);
  291. return 0;
  292. }
  293. uint8_t PDK_GetSlotID(void)
  294. {
  295. uint8_t SlotID = 0;
  296. uint8_t check = 0;
  297. if(stm32_gpio_read(GA0_PORT, GA0_PIN) == GPIO_PIN_RESET)
  298. SlotID |= 0x01;
  299. if(stm32_gpio_read(GA1_PORT, GA1_PIN) == GPIO_PIN_RESET)
  300. SlotID |= 0x02;
  301. if(stm32_gpio_read(GA2_PORT, GA2_PIN) == GPIO_PIN_RESET)
  302. SlotID |= 0x04;
  303. if(stm32_gpio_read(GA3_PORT, GA3_PIN) == GPIO_PIN_RESET)
  304. SlotID |= 0x08;
  305. if(stm32_gpio_read(GA4_PORT, GA4_PIN) == GPIO_PIN_RESET)
  306. SlotID |= 0x10;
  307. if(stm32_gpio_read(GAP_PORT, GAP_PIN) == GPIO_PIN_RESET)
  308. SlotID |= 0x20;
  309. int i;
  310. for(i=0;i<6;i++)
  311. check ^= (SlotID>>i)&0x01;
  312. if(check == 0)
  313. printf("Slot ID check error! GAP = %#x, GA[4:0] = %#x.\n", (SlotID>>5), (SlotID&0x1f));
  314. return SlotID&0x1f;
  315. }
  316. uint8_t PDK_GetChassisID(void)
  317. {
  318. uint8_t ChassisID = 0;
  319. if(stm32_gpio_read(RACKID0_PORT, RACKID0_PIN) == GPIO_PIN_SET)
  320. ChassisID |= 0x01;
  321. if(stm32_gpio_read(RACKID1_PORT, RACKID1_PIN) == GPIO_PIN_SET)
  322. ChassisID |= 0x02;
  323. if(stm32_gpio_read(RACKID2_PORT, RACKID2_PIN) == GPIO_PIN_SET)
  324. ChassisID |= 0x04;
  325. if(stm32_gpio_read(RACKID3_PORT, RACKID3_PIN) == GPIO_PIN_SET)
  326. ChassisID |= 0x08;
  327. if(stm32_gpio_read(RACKID4_PORT, RACKID4_PIN) == GPIO_PIN_SET)
  328. ChassisID |= 0x10;
  329. if(stm32_gpio_read(RACKID5_PORT, RACKID5_PIN) == GPIO_PIN_SET)
  330. ChassisID |= 0x20;
  331. return ChassisID;
  332. }
  333. int PDK_PowerOffChassis(void)
  334. {
  335. printf("Api power off chassis\n");
  336. g_BMCInfo.PowerGoodFlag = 0;
  337. }
  338. int PDK_PowerOnChassis(void)
  339. {
  340. printf("power on chassis\n");
  341. g_BMCInfo.PowerGoodFlag = 1;
  342. }
  343. int PDK_SoftOffChassis(void)
  344. {
  345. printf("soft off chassis\n");;
  346. }
  347. int PDK_PowerCycleChassis(void)
  348. {
  349. printf("power cycle chassis\n");;
  350. }
  351. int PDK_ResetChassis(void)
  352. {
  353. printf("power reset chassis\n");;
  354. }
  355. int PDK_DiagInterruptChassis(void)
  356. {
  357. printf("power diag chassis\n");;
  358. }
  359. int PDK_FanControl(void)
  360. {
  361. ;
  362. }
  363. //设置IP地址
  364. /*
  365. * 函数名称 : int setip(char *ip)
  366. * 函数功能 : 设置系统IP地址
  367. * 参 数 :
  368. *char *ip :设置的IP地址,以点分十进制的字符串方式表示,如“192.168.0.5”
  369. * 返 回 值 : 0 : 成功 ; -1 : 失败
  370. */
  371. int setip(char *ip)
  372. {
  373. struct ifreq temp;
  374. struct sockaddr_in *addr;
  375. int fd = 0;
  376. int ret = -1;
  377. strcpy(temp.ifr_name, "eth0");
  378. if((fd=socket(AF_INET, SOCK_STREAM, 0))<0)
  379. {
  380. return -1;
  381. }
  382. addr = (struct sockaddr_in *)&(temp.ifr_addr);
  383. addr->sin_family = AF_INET;
  384. addr->sin_addr.s_addr = inet_addr(ip);
  385. ret = ioctl(fd, SIOCSIFADDR, &temp);
  386. close(fd);
  387. if(ret < 0)
  388. return -1;
  389. return 0;
  390. }
  391. //获取IP地址
  392. /*
  393. * 函数名称 : char * getip(char *ip_buf)
  394. * 函数功能 : 获取系統IP地址
  395. * 参 数 :
  396. *char *ip_buf :用来存放IP地址的内存空间
  397. * 返 回 值 : ip_buf : 存放IP地址的内存地址
  398. */
  399. char* getip(char *ip_buf)
  400. {
  401. struct ifreq temp;
  402. struct sockaddr_in *myaddr;
  403. int fd = 0;
  404. int ret = -1;
  405. strcpy(temp.ifr_name, "eth0");
  406. if((fd=socket(AF_INET, SOCK_STREAM, 0))<0)
  407. {
  408. return NULL;
  409. }
  410. ret = ioctl(fd, SIOCGIFADDR, &temp);
  411. close(fd);
  412. if(ret < 0)
  413. return NULL;
  414. myaddr = (struct sockaddr_in *)&(temp.ifr_addr);
  415. strcpy(ip_buf, (char*)inet_ntoa(myaddr->sin_addr));
  416. return ip_buf;
  417. }
  418. char* getmac(char *mac_buf)
  419. {
  420. struct ifreq temp;
  421. struct sockaddr_in *myaddr;
  422. int fd = 0;
  423. int ret = -1;
  424. strcpy(temp.ifr_name, "eth0");
  425. if((fd=socket(AF_INET, SOCK_STREAM, 0))<0)
  426. {
  427. return NULL;
  428. }
  429. if(ioctl(fd,SIOCGIFHWADDR,&temp)<0)
  430. {
  431. printf("Get mac address ioctl fail!\n");
  432. }
  433. else
  434. {
  435. sprintf(mac_buf, "%02x:%02x:%02x:%02x:%02x:%02x\n",
  436. (unsigned char)temp.ifr_hwaddr.sa_data[0],
  437. (unsigned char)temp.ifr_hwaddr.sa_data[1],
  438. (unsigned char)temp.ifr_hwaddr.sa_data[2],
  439. (unsigned char)temp.ifr_hwaddr.sa_data[3],
  440. (unsigned char)temp.ifr_hwaddr.sa_data[4],
  441. (unsigned char)temp.ifr_hwaddr.sa_data[5]);
  442. }
  443. close(fd);
  444. return mac_buf;
  445. }
  446. int FlushUserInfoTbl(void)
  447. {
  448. sf_sector_erase(5, USERTBL_FLASH_ADDR);
  449. sf_write(5, USERTBL_FLASH_ADDR, (uint8_t*)g_BMCInfo.UserInfoTbl, sizeof(UserInfo_T)*MAX_USER_NUM);
  450. return 0;
  451. }
  452. int UpdateUserInfoTble(void)
  453. {
  454. sf_read(5, USERTBL_FLASH_ADDR, (uint8_t*)g_BMCInfo.UserInfoTbl, sizeof(UserInfo_T)*MAX_USER_NUM);
  455. return 0;
  456. }