MsgHndlrTask.c 30 KB

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  1. /*
  2. * Brief: Receive message from Interface and send response to original interface.
  3. Process all IPMI standard command and oem command.
  4. * Author: Jimbo_Zhang@outlook.com
  5. * Date: 2019-9-13, the Mid-autumn Festival;
  6. */
  7. #include <stdio.h>
  8. #include <sys/stat.h>
  9. #include <sys/socket.h>
  10. #include <sys/un.h>
  11. #include <sys/prctl.h>
  12. #include <errno.h>
  13. #include <fcntl.h>
  14. #include <stdio.h>
  15. #include <stdlib.h>
  16. #include <unistd.h>
  17. #include <string.h>
  18. #include <pthread.h>
  19. #include "MsgHndlr.h"
  20. #include "PDKCmds.h"
  21. #include "App.h"
  22. #include "PICMG.h"
  23. #include "Bridge.h"
  24. #include "SensorEvent.h"
  25. #include "Chassis.h"
  26. #include "Storage.h"
  27. #include "cmdselect.h"
  28. #include "com_IPMI_App.h"
  29. #include "com_IPMI_Storage.h"
  30. #include "com_IPMI_SDR.h"
  31. #include "DeviceConfig.h"
  32. //#include "main.h"
  33. #include <string.h>
  34. #include "main.h"
  35. static void ProcessIPMIReq (MsgPkt_T* pReq, MsgPkt_T* pRes);
  36. static void PendingBridgeResTimerTask (void);
  37. static void PendingSeqNoTimerTask (void);
  38. MsgHndlrTbl_T m_MsgHndlrTbl [] = //notice!
  39. {
  40. { NETFN_APP, g_App_CmdHndlr },
  41. { NETFN_CHASSIS, g_Chassis_CmdHndlr },
  42. { NETFN_BRIDGE, g_Bridge_CmdHndlr },
  43. { NETFN_SENSOR, g_SensorEvent_CmdHndlr },
  44. { NETFN_STORAGE, g_Storage_CmdHndlr },
  45. { NETFN_TRANSPORT, g_Config_CmdHndlr },
  46. // { NETFN_AMI, (CmdHndlrMap_T*)g_AMI_CmdHndlr },
  47. { 0, 0 },
  48. };
  49. GroupExtnMsgHndlrTbl_T m_GroupExtnMsgHndlrTbl [] = //jimbo add
  50. {
  51. {0, 0},
  52. };
  53. TimerTaskTbl_T m_TimerTaskTbl [20] =
  54. {
  55. // { 1, PEFTimerTask },
  56. // { 1, PETAckTimerTask },
  57. // { 1, PEFStartDlyTimerTask },
  58. { 1, SessionTimerTask },
  59. // { 1, PendingBridgeResTimerTask },
  60. // { 1, PendingSeqNoTimerTask },
  61. // { 1, FlashTimerTask },
  62. // #if FRB_SUPPORT == 1
  63. // { 1, FRB3TimerTask },
  64. // #endif /* #if FRB_SUPPORT == 1 */
  65. //
  66. // #if SERIAL_MODEM_CONNECTION_ACTIVITY != UNIMPLEMENTED
  67. // { 2, SerialModemPingTask },
  68. // #endif /* SERIAL_MODEM_CONNECTION_ACTIVITY */
  69. //
  70. // { 1, MonitorPassword },
  71. { 1, UDSSessionTimerTask },
  72. };
  73. //PendingBridgedResTbl_T m_PendingBridgedResTbl[MAX_PENDING_BRIDGE_RES];
  74. PendingBridgedResTbl_T m_PendingBridgedResTbl[MAX_PENDING_BRIDGE_TBL][MAX_PENDING_BRIDGE_RES];
  75. PendingSeqNoTbl_T m_PendingSeqNoTbl[16][MAX_PENDING_SEQ_NO];
  76. KCSBridgeResInfo_T m_KCSBridgeResInfo;
  77. int gFd_MsgHndlrIfc;
  78. TLS_T g_tls;
  79. /*!
  80. \brief Message handler Task. Process all standard and oem ipmi message form interface, and send response back.
  81. \param[in] none
  82. \param[out] none
  83. \retval none
  84. */
  85. void *MsgHndlrTask( void *pArg )
  86. {
  87. MsgPkt_T reqMsgPkt;
  88. MsgPkt_T resMsgPkt;
  89. uint8_t channelinit = 0xF;
  90. printf("MsgHndlrTask start...\r\n");
  91. prctl(PR_SET_NAME,__FUNCTION__,0,0,0);
  92. //create
  93. if(-1 != access(MSG_HNDLR_Q, F_OK))
  94. {
  95. remove(MSG_HNDLR_Q);
  96. }
  97. if(0 != mkfifo (MSG_HNDLR_Q, 0777))
  98. {
  99. printf("%s: Create %s fifo failed! %s\n", __FUNCTION__, MSG_HNDLR_Q, strerror(errno));
  100. return (void*)-1;
  101. }
  102. gFd_MsgHndlrIfc = open (MSG_HNDLR_Q, O_RDWR);
  103. if(-1 == gFd_MsgHndlrIfc)
  104. {
  105. printf("%s: Open %s fifo failed! %s\n", __FUNCTION__, MSG_HNDLR_Q, strerror(errno));
  106. return (void*)-1;
  107. }
  108. pthread_key_create(&g_tls.CurSessionID,NULL);
  109. pthread_key_create(&g_tls.CurPrivLevel,NULL);
  110. pthread_key_create(&g_tls.CurChannel,NULL);
  111. pthread_key_create(&g_tls.CurKCSIfcNum,NULL);
  112. pthread_key_create(&g_tls.CurSessionType,NULL);
  113. pthread_key_create(&g_tls.OwnerLUN,NULL);
  114. pthread_setspecific(g_tls.CurChannel,&channelinit);
  115. while(1)
  116. {
  117. while(GetMsg(gFd_MsgHndlrIfc, &reqMsgPkt, WAIT_INFINITE) != 0);
  118. // printf("===> Mrx: ");
  119. // int i;
  120. // for(i=0;i<reqMsgPkt.Size;i++)
  121. // printf("%#x ", reqMsgPkt.Data[i]);
  122. // printf("\n");
  123. pthread_setspecific(g_tls.CurChannel,&reqMsgPkt.Channel);
  124. pthread_setspecific(g_tls.CurPrivLevel,&reqMsgPkt.Privilege);
  125. pthread_setspecific(g_tls.CurSessionID,&reqMsgPkt.SessionID);
  126. pthread_setspecific(g_tls.CurSessionType,&reqMsgPkt.SessionType);
  127. pthread_setspecific(g_tls.OwnerLUN,&reqMsgPkt.NetFnLUN);
  128. SwapIPMIMsgHdr ((IPMIMsgHdr_T*)reqMsgPkt.Data, (IPMIMsgHdr_T*)resMsgPkt.Data);
  129. ProcessIPMIReq(&reqMsgPkt, &resMsgPkt);
  130. /* Skip current request if no response from Command Handler */
  131. if ((reqMsgPkt.SrcQ == gFd_LanResQ) && (sizeof(IPMIMsgHdr_T) == resMsgPkt.Size) && (NORMAL_RESPONSE == resMsgPkt.Param) )
  132. {
  133. continue;
  134. }
  135. if ((reqMsgPkt.SrcQ == gFdUdsRes) && (resMsgPkt.Size == sizeof(IPMIUDSMsg_T)) && (NORMAL_RESPONSE == resMsgPkt.Param) )
  136. {
  137. continue;
  138. }
  139. if(g_BMCInfo.IpmiConfig.UDSIfcSupport == 0x01 && (reqMsgPkt.SrcQ == gFdUdsRes))
  140. {
  141. //UDS 数据包不需要checksum
  142. SwapUDSIPMIMsg(&reqMsgPkt,&resMsgPkt);
  143. }
  144. else
  145. {
  146. //update checksum2
  147. resMsgPkt.Data[resMsgPkt.Size] = CalculateCheckSum2(resMsgPkt.Data, resMsgPkt.Size);
  148. resMsgPkt.Size++;
  149. }
  150. if(SYS_IFC_CHANNEL == reqMsgPkt.Channel)
  151. {
  152. /* Skip current request if no response from Command Handler */
  153. if (!resMsgPkt.Size && (NO_RESPONSE == resMsgPkt.Param) )
  154. {
  155. continue;
  156. }
  157. resMsgPkt.SessionID = reqMsgPkt.SessionID;
  158. }
  159. //int i;
  160. // printf("===> Mtx to %d: ", resMsgPkt.SrcQ);
  161. // for(i=0;i<resMsgPkt.Size;i++)
  162. // printf("%#x ", resMsgPkt.Data[i]);
  163. // printf("\n");
  164. //send response pkt to source queue.
  165. PostMsg(resMsgPkt.SrcQ, &resMsgPkt);
  166. }
  167. }
  168. /**
  169. *@fn ValidateMsgHdr
  170. *@brief Validates the Message header and keeps track of the messages that has been bridged
  171. *@param pReq Request packet of the command to be executed
  172. *@return Returns -1 in case of the response to the bridged message
  173. * Returns 0 otherwise
  174. */
  175. int
  176. ValidateMsgHdr (MsgPkt_T* pReq)
  177. {
  178. int j;
  179. uint8_t PBTbl = PRIMARY_PB_TBL;
  180. IPMIMsgHdr_T* pIPMIMsgReq = (IPMIMsgHdr_T*)&pReq->Data;
  181. ChannelInfo_T* pChannelInfo;
  182. uint8_t SeqNum = NET_FN(pIPMIMsgReq->RqSeqLUN);
  183. int Queuefd = 0;
  184. /* Check for the request message LUN */
  185. switch (pReq->NetFnLUN & 0x03)
  186. {
  187. case BMC_LUN_00:
  188. if (0 == (pReq->NetFnLUN & 0x04))
  189. {
  190. return 0; //IPMB做从
  191. }
  192. PBTbl = ( (pReq->Channel == SECONDARY_IPMB_CHANNEL) ? SECONDARY_PB_TBL : PRIMARY_PB_TBL );
  193. if ( (TRUE == m_PendingBridgedResTbl[PBTbl][SeqNum].Used) &&
  194. (NET_FN(pIPMIMsgReq->NetFnLUN) == NET_FN((m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.NetFnLUN + 0x04))) &&
  195. (pIPMIMsgReq->Cmd == m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.Cmd) &&
  196. (pIPMIMsgReq->ReqAddr == m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.ResAddr))
  197. {
  198. /* Change the requester's address, sequence number and LUN */
  199. pIPMIMsgReq->ResAddr = m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.ReqAddr;
  200. pIPMIMsgReq->RqSeqLUN = m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.RqSeqLUN;
  201. pReq->Param = BRIDGING_REQUEST;
  202. if (m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFd_LanIfcQ)
  203. {
  204. /* Calculate the Second CheckSum */
  205. pReq->Data[ pReq->Size - 1 ] = CalculateCheckSum2( pReq->Data, pReq->Size - 1 );
  206. pReq->Data[2] = (~(pReq->Data[0] + pReq->Data[1])) +1; //2's complement checksum
  207. for (j=pReq->Size - 1; j>=0; j--)
  208. {
  209. pReq->Data[j+1] = pReq->Data[j];
  210. }
  211. pReq->Data[0] = m_PendingBridgedResTbl[PBTbl][SeqNum].SrcSessionHandle;
  212. pReq->Size++;
  213. pReq->Cmd = PAYLOAD_IPMI_MSG;
  214. Queuefd = gFd_LanIfcQ;
  215. }
  216. else if(m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFdUdsIfc)
  217. {
  218. pReq->Cmd = PAYLOAD_IPMI_MSG;
  219. pReq->Socket = m_PendingBridgedResTbl[PBTbl][SeqNum].UDSSocket;
  220. memcpy(&pReq->Data[sizeof(IPMIUDSMsg_T)], &pReq->Data[0], pReq->Size);
  221. memcpy(&pReq->Data[0], &m_PendingBridgedResTbl[PBTbl][SeqNum].ResMsgHdr.UDSMsgHdr, sizeof(IPMIUDSMsg_T));
  222. pReq->Size += sizeof(IPMIUDSMsg_T);
  223. //pReq->Size++;
  224. //pReq->Data[pReq->Size-1] = 0;
  225. ((IPMIUDSMsg_T*)&pReq->Data[0])->IPMIMsgLen = pReq->Size;
  226. Queuefd = gFdUdsIfc;
  227. }
  228. else
  229. {
  230. Queuefd = m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ;
  231. }
  232. /* Post the data to Destination Interface queue */
  233. // printf("===> ValidateMsgHdr post message to %d\n", Queuefd);
  234. PostMsg (Queuefd, pReq);
  235. m_PendingBridgedResTbl[PBTbl][SeqNum].Used = FALSE;
  236. m_PendingBridgedResTbl[PBTbl][SeqNum].ResDataOk = 0;
  237. }
  238. return -1;
  239. case BMC_LUN_01:
  240. case BMC_LUN_10:
  241. case BMC_LUN_11:
  242. //TODO:
  243. default:
  244. return -1;
  245. }
  246. }
  247. /**
  248. *@fn ProcessIPMIReq
  249. *@brief Processes the requested IPMI command
  250. *@param pReq Request of the command
  251. *@param pRes Response for the requested command
  252. *@return none
  253. */
  254. static void
  255. ProcessIPMIReq (MsgPkt_T* pReq, MsgPkt_T* pRes)
  256. {
  257. CmdHndlrMap_T * pCmdHndlrMap;
  258. uint32_t HdrOffset = 0;
  259. uint8_t CmdOverride = 1;
  260. int8_t MsgHndlrMapGot=0;
  261. uint8_t PBTbl = PRIMARY_PB_TBL;
  262. // msgHndlr_dbg_printf ("Processing IPMI Packet.\r\n");
  263. /* Set the Cmd and Net function in response packet */
  264. pRes->Cmd = pReq->Cmd;
  265. pRes->NetFnLUN = pReq->NetFnLUN;
  266. pRes->Channel = pReq->Channel;
  267. pRes->SrcQ = pReq->SrcQ;
  268. pRes->Socket = pReq->Socket;
  269. /* Normal IPMI Command response */
  270. pRes->Param = PARAM_NORMAL_RESPONSE;
  271. if ((SYS_IFC_CHANNEL != pReq->Channel) && (USB_CHANNEL != pReq->Channel) && (UDS_CHANNEL != pReq->Channel))
  272. {
  273. //printf("log 1, pReq->Channel: %#x\n", pReq->Channel);
  274. HdrOffset = sizeof (IPMIMsgHdr_T);
  275. pReq->Size = pReq->Size - HdrOffset - 1; //remove header and checksum2
  276. }
  277. if(UDS_CHANNEL == pReq->Channel)
  278. {
  279. //printf("log 2, pReq->Size: %d, HdrOffset: %d\n", pReq->Size, HdrOffset);
  280. //UDS数据没有校验,UDSHeader + data
  281. HdrOffset = sizeof(IPMIUDSMsg_T);
  282. pReq->Size = pReq->Size -HdrOffset;
  283. }
  284. SwapIPMIMsgHdr((IPMIMsgHdr_T*)pReq->Data, (IPMIMsgHdr_T*)pRes->Data);
  285. pRes->Size = HdrOffset + sizeof(uint8_t); //+ ccode
  286. pthread_setspecific(g_tls.CurSessionID,&pReq->SessionID);
  287. if(IsCommandEnabled(NET_FN(pReq->NetFnLUN), &pReq->Data[HdrOffset], pReq->Cmd) != 0)
  288. {
  289. pRes->Data [HdrOffset] = CC_INV_CMD;
  290. printf ("Invalid Net Function 0x%x or Invalid Command 0x%x\n",NET_FN(pReq->NetFnLUN), pReq->Cmd);
  291. pRes->Size;// += 2; //??? why
  292. return;
  293. }
  294. //Get oem command map
  295. MsgHndlrMapGot = PDKGetOEMMsgHndlrMap(NET_FN(pReq->NetFnLUN),&pCmdHndlrMap);
  296. if(MsgHndlrMapGot == 0)
  297. {
  298. CmdOverride = GetCmdHndlr(pReq,pRes,pCmdHndlrMap,HdrOffset,CmdOverride,&pCmdHndlrMap);
  299. }
  300. //get standard ipmi command map
  301. if((CmdOverride == 0 || MsgHndlrMapGot == -1) ) //OEM commands have no command map.
  302. {
  303. if (0 != GetMsgHndlrMap (NET_FN (pReq->NetFnLUN), &pCmdHndlrMap))
  304. {
  305. if (0 != GroupExtnGetMsgHndlrMap (NET_FN (pReq->NetFnLUN), pReq->Data [HdrOffset], &pCmdHndlrMap) )
  306. {
  307. pRes->Data [HdrOffset] = CC_INV_CMD;
  308. printf ("MsgHndlr.c : Invalid Net Function 0x%x or Invalid Command 0x%x\n",NET_FN(pReq->NetFnLUN), pReq->Cmd);
  309. pRes->Size;// += 2;
  310. return;
  311. }
  312. }
  313. if(GetCmdHndlr(pReq,pRes,pCmdHndlrMap,HdrOffset,CmdOverride,&pCmdHndlrMap) == FALSE)
  314. {
  315. pRes->Data [HdrOffset] = CC_INV_CMD;
  316. pRes->Size;// += 2; //??? why
  317. return;
  318. }
  319. }
  320. /* Check for the request size */
  321. if (0xff != pCmdHndlrMap->ReqLen)
  322. {
  323. /* Check for invalid request size */
  324. if (pCmdHndlrMap->ReqLen != pReq->Size)
  325. {
  326. printf("Warning: Request data len error, require %d\n", pCmdHndlrMap->ReqLen);
  327. pRes->Data [HdrOffset] = CC_REQ_INV_LEN;
  328. pRes->Size;// += 2; //??? why
  329. return;
  330. }
  331. }
  332. pRes->Size = pCmdHndlrMap->CmdHndlr (&pReq->Data [HdrOffset], pReq->Size, &pRes->Data [HdrOffset]) + HdrOffset;
  333. //prepare response data for send message command
  334. if( (CMD_SEND_MSG == pReq->Cmd) && (NETFN_APP == pReq->NetFnLUN >> 2))
  335. {
  336. int Offset = 0;
  337. uint8_t SeqNum = g_BMCInfo.SendMsgSeqNum;
  338. if ((0 == pRes->Size) &&
  339. ((g_BMCInfo.IpmiConfig.PrimaryIPMBSupport == 0x01 && PRIMARY_IPMB_CHANNEL == pRes->Channel) ||
  340. (g_BMCInfo.IpmiConfig.SecondaryIPMBSupport == 0x01 && SECONDARY_IPMB_CHANNEL == pRes->Channel)) )
  341. {
  342. pRes->Param = PARAM_NO_RESPONSE;
  343. Offset = HdrOffset + 2; //ccode + checksum2
  344. }
  345. else if (HdrOffset == pRes->Size)
  346. {
  347. Offset = HdrOffset + 1; // + checksum2
  348. }
  349. PBTbl = ( ((pReq->Data[sizeof (IPMIMsgHdr_T)] & 0x0F) == SECONDARY_IPMB_CHANNEL) ? SECONDARY_PB_TBL : PRIMARY_PB_TBL );
  350. int i;
  351. while(TRUE)
  352. {
  353. if ( (TRUE == m_PendingBridgedResTbl[PBTbl][SeqNum].Used)
  354. && (0 == memcmp (&m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr, &pReq->Data[Offset], sizeof (IPMIMsgHdr_T))) )
  355. {
  356. if(m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFd_LanIfcQ)
  357. {
  358. memcpy (&m_PendingBridgedResTbl[PBTbl][SeqNum].ResMsgHdr, pRes->Data, sizeof (IPMIMsgHdr_T));
  359. }
  360. else if(m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFdUdsIfc)
  361. {
  362. SwapUDSIPMIMsg ( pReq, pRes);
  363. memcpy (&m_PendingBridgedResTbl[PBTbl][SeqNum].ResMsgHdr, pRes->Data, sizeof (IPMIUDSMsg_T));
  364. m_PendingBridgedResTbl[PBTbl][SeqNum].UDSSocket = pRes->Socket;
  365. // printf("log666 \n");
  366. // for(i=0;i<sizeof (IPMIUDSMsg_T);i++)
  367. // printf("%#x ", pRes->Data[i]);
  368. // printf("\n");
  369. }
  370. m_PendingBridgedResTbl[PBTbl][SeqNum].ResDataOk = 1;
  371. break;
  372. }
  373. else
  374. {
  375. SeqNum = (SeqNum - 1) & 0x3F;
  376. if(SeqNum == g_BMCInfo.SendMsgSeqNum)
  377. {
  378. break;
  379. }
  380. }
  381. }
  382. }
  383. return;
  384. }
  385. /**
  386. *@fn CalculateChecksum2
  387. *@brief Calculates the checksum
  388. *@param Pkt Pointer to the data for the checksum to be calculated
  389. *@param Len Size of data for checksum calculation
  390. *@return Returns the checksum value
  391. */
  392. uint8_t CalculateCheckSum2 (uint8_t* Pkt, uint32_t Len)
  393. {
  394. uint8_t Sum;
  395. uint32_t i;
  396. /* Get Checksum 2 */
  397. Sum = 0;
  398. for (i = 3; i < Len; i++)
  399. {
  400. Sum += Pkt [i];
  401. }
  402. return (uint8_t)(0xFF & (0x100 - Sum));
  403. }
  404. /**
  405. *@fn GetMsgHndlrMap
  406. *@brief Gets the exact command Handler by comparing NetFn
  407. *@param Netfn -NetFunction of the Cmd to execute
  408. *@param pCmdHndlrMap Pointer to the Command Handler
  409. *@return Returns 0 on success
  410. * Returns -1 on failure
  411. */
  412. int
  413. GetMsgHndlrMap (uint8_t NetFn, CmdHndlrMap_T ** pCmdHndlrMap)
  414. {
  415. int i;
  416. /* Get the command handler corresponding to the net function */
  417. for (i = 0; i < sizeof(m_MsgHndlrTbl)/sizeof(m_MsgHndlrTbl[0]); i++) //pBMCInfo->MsgHndlrTblSize
  418. {
  419. if (m_MsgHndlrTbl [i].NetFn == NetFn) { break; }
  420. }
  421. /* Check if we have not found our net function */
  422. if (i == sizeof(m_MsgHndlrTbl)/sizeof(m_MsgHndlrTbl[0]) )
  423. {
  424. return -1;
  425. }
  426. /* Get the handler corresponding to the command */
  427. *pCmdHndlrMap = (CmdHndlrMap_T*)m_MsgHndlrTbl [i].CmdHndlrMap;
  428. return 0;
  429. }
  430. /**
  431. *@fn GetCmdHndlr
  432. *@brief Picks up the exact command to execute by comparing Cmd no.
  433. *@param pReq Request buffer for the command
  434. *@param pRes Response buffer for the command
  435. *@param pCmdHndlrMap
  436. *@param HdrOffset
  437. *@param CmdOverride
  438. *@param CmdHndlr
  439. *@return Returns TRUE on success
  440. * Returns FALSE on failure
  441. */
  442. int GetCmdHndlr(MsgPkt_T* pReq,MsgPkt_T* pRes,CmdHndlrMap_T* pCmdHndlrMap,
  443. uint32_t HdrOffset,uint8_t CmdOverride,CmdHndlrMap_T** CmdHndrl )
  444. {
  445. int i=0;
  446. while (1)
  447. {
  448. /**
  449. * If we reached the end of the Command Handler map - invalid command
  450. **/
  451. if (0 == pCmdHndlrMap->CmdHndlr)
  452. {
  453. if(CmdOverride == FALSE)
  454. {
  455. pRes->Data [HdrOffset] = CC_INV_CMD;
  456. printf( "Warning: MsgHndlr.c : Invalid Command %#x\r\n", pReq->Cmd );
  457. }
  458. return FALSE;
  459. }
  460. if (pCmdHndlrMap->Cmd == pReq->Cmd)
  461. {
  462. break;
  463. }
  464. i++;
  465. pCmdHndlrMap++;
  466. }
  467. *CmdHndrl = pCmdHndlrMap;
  468. return TRUE;
  469. }
  470. /**
  471. *@fn GroupExtnGetMsgHndlrMap
  472. *@brief Gets the exact command Handler by comparing NetFn
  473. *@param Netfn -NetFunction of the Cmd to execute
  474. *@GroupExtnCode - Group Extension code
  475. *@param pCmdHndlrMap Pointer to the Command Handler
  476. *@return Returns 0 on success
  477. * Returns -1 on failure
  478. */
  479. int
  480. GroupExtnGetMsgHndlrMap (uint8_t NetFn, uint8_t GroupExtnCode, CmdHndlrMap_T ** pCmdHndlrMap)
  481. {
  482. int i;
  483. /* Get the command handler corresponding to the net function */
  484. for (i = 0; i < sizeof (m_GroupExtnMsgHndlrTbl) / sizeof (m_GroupExtnMsgHndlrTbl [0]); i++)
  485. {
  486. if ((m_GroupExtnMsgHndlrTbl [i].NetFn == NetFn) && (m_GroupExtnMsgHndlrTbl [i].GroupExtnCode == GroupExtnCode))
  487. {
  488. break;
  489. }
  490. }
  491. /* Check if we have not found our net function */
  492. if (i == sizeof (m_GroupExtnMsgHndlrTbl) / sizeof (m_GroupExtnMsgHndlrTbl[0]))
  493. {
  494. return -1;
  495. }
  496. // printf("---> GroupExtnGetMsgHndlrMap successful, i=%d\n",i);
  497. /* Get the handler corresponding to the command */
  498. *pCmdHndlrMap = (CmdHndlrMap_T*)m_GroupExtnMsgHndlrTbl [i].CmdHndlrMap;
  499. return 0;
  500. }
  501. /*------------------------------------------------------------------
  502. *@fn RespondSendMessage
  503. *@brief Frames the Response packet when a IPMB destination is
  504. * unavialable
  505. *
  506. *@param pReq: Request Message Packet address
  507. *@param Status Status of SendIPMBPkt method
  508. *@param BMCInst: BMC Instance Number
  509. *
  510. *@return none
  511. *-----------------------------------------------------------------*/
  512. void RespondSendMessage ( MsgPkt_T* pReq, uint8_t Status)
  513. {
  514. uint8_t PBTbl = PRIMARY_PB_TBL;
  515. MsgPkt_T ResPkt;
  516. IPMIMsgHdr_T* pIPMIResHdr = ( IPMIMsgHdr_T*)ResPkt.Data;
  517. IPMIMsgHdr_T* pIPMIReqHdr = ( IPMIMsgHdr_T*)pReq->Data;
  518. uint8_t SeqNum = NET_FN(pIPMIReqHdr->RqSeqLUN); //IPMB的sequence
  519. int QueueFd;
  520. int HdrOffset = 0;
  521. //printf("---> RespondSendMessage Status = %d, log111\n", Status);
  522. /* Check for pending responses */
  523. PBTbl = ( (pReq->Channel == SECONDARY_IPMB_CHANNEL) ? SECONDARY_PB_TBL : PRIMARY_PB_TBL );
  524. if ( (TRUE == m_PendingBridgedResTbl[PBTbl][SeqNum].Used) &&
  525. (NET_FN(pIPMIReqHdr->NetFnLUN) == NET_FN(m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.NetFnLUN )) &&
  526. (pIPMIReqHdr->Cmd == m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.Cmd) &&
  527. (pIPMIReqHdr->ResAddr == m_PendingBridgedResTbl[PBTbl][SeqNum].ReqMsgHdr.ResAddr) )
  528. {
  529. //printf("---> RespondSendMessage/ m_PendingBridgedResTbl: PBTbl: %d, SeqNum %d, log222\n", PBTbl, SeqNum);
  530. // int i;
  531. // for(i=0;i<6;i++)
  532. // printf("%#x ", ((uint8_t*)&m_PendingBridgedResTbl[PBTbl][SeqNum].ResMsgHdr.IPMIMsgHdr)[i]);
  533. // printf("\n");
  534. uint32_t tcnt = 0;
  535. while(m_PendingBridgedResTbl[PBTbl][SeqNum].ResDataOk == 0)
  536. {
  537. usleep(1);
  538. tcnt++;
  539. if(tcnt > 100000)
  540. {
  541. printf("Warning: %s-%s Response data not ok!\n", __FILE__, __FUNCTION__);
  542. break; //100ms
  543. }
  544. }
  545. if((m_PendingBridgedResTbl[PBTbl][SeqNum].OriginSrc == ORIGIN_INT_REQ) && (Status == STATUS_OK))
  546. {
  547. return;
  548. }
  549. if(m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFd_LanIfcQ)
  550. {
  551. memcpy (pIPMIResHdr, &m_PendingBridgedResTbl[PBTbl][SeqNum].ResMsgHdr.IPMIMsgHdr, sizeof (IPMIMsgHdr_T));
  552. HdrOffset = sizeof(IPMIMsgHdr_T);
  553. }
  554. else if(m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFdUdsIfc)
  555. {
  556. memcpy (pIPMIResHdr, &m_PendingBridgedResTbl[PBTbl][SeqNum].ResMsgHdr.UDSMsgHdr, sizeof (IPMIUDSMsg_T));
  557. HdrOffset = sizeof(IPMIUDSMsg_T);
  558. }
  559. else
  560. {
  561. //SwapIPMIMsgHdr ( pIPMIReqHdr, pIPMIResHdr);
  562. //QueueFd = m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ;
  563. memcpy (pIPMIResHdr, &m_PendingBridgedResTbl[PBTbl][SeqNum].ResMsgHdr.IPMIMsgHdr, sizeof (IPMIMsgHdr_T));
  564. HdrOffset = sizeof(IPMIMsgHdr_T);
  565. }
  566. if (STATUS_OK == Status)
  567. {
  568. if ( ( m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFd_PrimaryIpmbIfcQ) ||
  569. (m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFd_SecondaryIpmbIfcQ) ||
  570. (ORIGIN_SENDMSG != m_PendingBridgedResTbl[PBTbl][SeqNum].OriginSrc) )
  571. {
  572. return;
  573. }
  574. ResPkt.Data [HdrOffset] = CC_NORMAL;
  575. }
  576. else if (STATUS_FAIL == Status)
  577. {
  578. ResPkt.Data [HdrOffset] = CC_NO_ACK_FROM_SLAVE;
  579. }
  580. else
  581. {
  582. ResPkt.Data [HdrOffset] = CC_UNSPECIFIED_ERR;
  583. }
  584. ResPkt.Size = HdrOffset + 1; // IPMI Header + Completion Code
  585. ResPkt.Cmd = pIPMIResHdr->Cmd;
  586. ResPkt.NetFnLUN = pIPMIReqHdr->NetFnLUN;
  587. ResPkt.Channel = pReq->Channel;
  588. //UDS不需要checksum
  589. if(m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ != gFdUdsIfc)
  590. {
  591. /* Calculate the Second CheckSum */
  592. ResPkt.Data[ResPkt.Size] = CalculateCheckSum2 (ResPkt.Data, ResPkt.Size);
  593. ResPkt.Size++; //+ Second Checksum
  594. }
  595. ResPkt.Param = BRIDGING_REQUEST;
  596. if (m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFd_LanIfcQ)
  597. {
  598. QueueFd = gFd_LanResQ;
  599. }
  600. else if(m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ == gFdUdsIfc)
  601. {
  602. ((IPMIUDSMsg_T*)&ResPkt.Data[0])->IPMIMsgLen = ResPkt.Size;
  603. ResPkt.Socket = m_PendingBridgedResTbl[PBTbl][SeqNum].UDSSocket;
  604. QueueFd = gFdUdsRes;
  605. }
  606. else
  607. {
  608. QueueFd = m_PendingBridgedResTbl[PBTbl][SeqNum].DestQ;
  609. }
  610. if (STATUS_OK != Status)
  611. {
  612. m_PendingBridgedResTbl[PBTbl][SeqNum].Used = FALSE;
  613. m_PendingBridgedResTbl[PBTbl][SeqNum].ResDataOk = 0;
  614. }
  615. // /* Post the data to Destination Interface queue */
  616. // int i;
  617. // printf("===> RespondSendMessage post to %d: ", QueueFd);
  618. // for(i=0;i<ResPkt.Size;i++)
  619. // printf("%#x ", ResPkt.Data[i]);
  620. // printf("\n");
  621. PostMsg (QueueFd, &ResPkt);
  622. }
  623. }
  624. /**
  625. *@fn PendingBridgeResTimerTask
  626. *@brief Sends the timeout message to response queue
  627. * if the message does not turn out within send message timeout
  628. *@return none
  629. */
  630. static void
  631. PendingBridgeResTimerTask (void)
  632. {
  633. uint8_t i;
  634. uint8_t PBTbl = PRIMARY_PB_TBL;
  635. int QueueFd = 0;
  636. printf("-> PendingBridgeResTimerTask\n");
  637. /* Check for any pending responses */
  638. for( PBTbl=0; PBTbl < MAX_PENDING_BRIDGE_TBL; PBTbl++)
  639. {
  640. for (i = 0; i < sizeof (m_PendingBridgedResTbl[0])/sizeof (m_PendingBridgedResTbl[0][0]); i++)
  641. {
  642. if (TRUE == m_PendingBridgedResTbl[PBTbl][i].Used)
  643. {
  644. m_PendingBridgedResTbl[PBTbl][i].TimeOut--;
  645. if (0 == m_PendingBridgedResTbl[PBTbl][i].TimeOut)
  646. {
  647. MsgPkt_T Timeout;
  648. IPMIMsgHdr_T* pIPMIMsgHdr = (IPMIMsgHdr_T*) Timeout.Data;
  649. /* Fill the response packet */
  650. SwapIPMIMsgHdr (&m_PendingBridgedResTbl[PBTbl][i].ReqMsgHdr, pIPMIMsgHdr);
  651. // slog(LANQueueName,"%s%d",LAN_IFC_Q,BMCInst);
  652. // sprintf(PrimaryIPMBQueueName,"%s%d",IPMB_PRIMARY_IFC_Q,BMCInst);
  653. // sprintf(SecondaryIPMBQueueName,"%s%d",IPMB_SECONDARY_IFC_Q,BMCInst);
  654. // sprintf(SerialQueueName,"%s%d",SERIAL_IFC_Q,BMCInst);
  655. if(PBTbl == PRIMARY_PB_TBL)
  656. {
  657. pIPMIMsgHdr->ReqAddr = g_BMCInfo.PrimaryIPMBAddr;
  658. }
  659. else if(PBTbl == SECONDARY_PB_TBL)
  660. {
  661. pIPMIMsgHdr->ReqAddr = g_BMCInfo.SecondaryIPMBAddr;
  662. }
  663. else
  664. {
  665. printf("Invalid PBTbl\n");;//pIPMIMsgHdr->ReqAddr = pBMCInfo->IpmiConfig.BMCSlaveAddr;
  666. }
  667. Timeout.Data [sizeof(IPMIMsgHdr_T)] = CC_TIMEOUT;
  668. Timeout.Size = sizeof (IPMIMsgHdr_T) + 1 + 1; // IPMI Header + Completion Code + Second Checksum
  669. /* Calculate the Second CheckSum */
  670. Timeout.Data[Timeout.Size - 1] = CalculateCheckSum2 (Timeout.Data, Timeout.Size-1);
  671. Timeout.Param = BRIDGING_REQUEST;
  672. if (m_PendingBridgedResTbl[PBTbl][i].DestQ == gFd_LanIfcQ)
  673. {
  674. int j;
  675. for (j = Timeout.Size - 1; j >= 0; --j)
  676. {
  677. Timeout.Data [j+1] = Timeout.Data [j];
  678. }
  679. Timeout.Data[0] = m_PendingBridgedResTbl[PBTbl][i].SrcSessionHandle;
  680. Timeout.Size++;
  681. Timeout.Cmd = PAYLOAD_IPMI_MSG;
  682. QueueFd = gFd_LanIfcQ;
  683. }
  684. // else if (0 == strcmp ((char *)m_PendingBridgedResTbl[PBTbl][i].DestQ, SerialQueueName))
  685. // {
  686. // int j;
  687. // for (j = Timeout.Size - 1; j >= 0; --j)
  688. // {
  689. // Timeout.Data [j+1] = Timeout.Data [j];
  690. // }
  691. // Timeout.Data[0] = m_PendingBridgedResTbl[PBTbl][i].SrcSessionHandle;
  692. // Timeout.Size++;
  693. // Timeout.Cmd = PAYLOAD_IPMI_MSG;
  694. // strcpy(QueueName, SERIAL_IFC_Q);
  695. // }
  696. // else if (g_BMCInfo.IpmiConfig.PrimaryIPMBSupport == 1 && m_PendingBridgedResTbl[PBTbl][i].DestQ == gFd_PrimaryIpmbIfcQ)
  697. // {
  698. // int j;
  699. // for (j = Timeout.Size - 1; j >= 0; --j)
  700. // {
  701. // Timeout.Data [j + sizeof (IPMIMsgHdr_T) + 1] = Timeout.Data [j];
  702. // }
  703. // memcpy (Timeout.Data, &m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr, sizeof (IPMIMsgHdr_T));
  704. // Timeout.Data[sizeof (IPMIMsgHdr_T)] = CC_NORMAL;
  705. // Timeout.Size++;
  706. // QueueFd = gFd_PrimaryIpmbIfcQ;
  707. // }
  708. // else if (g_BMCInfo.IpmiConfig.SecondaryIPMBSupport == 1 && m_PendingBridgedResTbl[PBTbl][i].DestQ == gFd_SecondaryIpmbIfcQ)
  709. // {
  710. // int j;
  711. // for (j = Timeout.Size - 1; j >= 0; --j)
  712. // {
  713. // Timeout.Data [j + sizeof (IPMIMsgHdr_T) + 1] = Timeout.Data [j];
  714. // }
  715. // memcpy (Timeout.Data, &m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr.IPMIMsgHdr, sizeof (IPMIMsgHdr_T));
  716. // Timeout.Data[sizeof (IPMIMsgHdr_T)] = CC_NORMAL;
  717. // Timeout.Size++;
  718. // QueueFd = gFd_SecondaryIpmbIfcQ;
  719. // }
  720. else if (m_PendingBridgedResTbl[PBTbl][i].DestQ = gFdUdsIfc)
  721. {
  722. printf("---> UDS pending bridge TimeOut\n");
  723. int j;
  724. UDSSessionTbl_T *pUDSSessionInfo = NULL;
  725. for (j = sizeof (IPMIMsgHdr_T); j < Timeout.Size ;j++)
  726. {
  727. Timeout.Data [j + sizeof (IPMIUDSMsg_T)-sizeof (IPMIMsgHdr_T)] = Timeout.Data [j];
  728. }
  729. Timeout.Size = Timeout.Size + sizeof (IPMIUDSMsg_T)- sizeof (IPMIMsgHdr_T);
  730. m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr.UDSMsgHdr.IPMIMsgLen = Timeout.Size;
  731. memcpy (Timeout.Data, &m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr.UDSMsgHdr, sizeof (IPMIUDSMsg_T));
  732. Timeout.NetFnLUN = m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr.UDSMsgHdr.NetFnLUN;
  733. Timeout.SessionID = m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr.UDSMsgHdr.SessionID;
  734. Timeout.Cmd = m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr.UDSMsgHdr.Cmd;
  735. pUDSSessionInfo = GetUDSSessionInfo (UDS_SESSION_ID_INFO,&Timeout.SessionID);
  736. if(pUDSSessionInfo != NULL)
  737. {
  738. Timeout.Socket = pUDSSessionInfo->UDSSocket;
  739. }
  740. QueueFd = m_PendingBridgedResTbl[PBTbl][i].DestQ;
  741. }
  742. else
  743. {
  744. int j;
  745. for (j = Timeout.Size - 1; j >= 0; --j)
  746. {
  747. Timeout.Data [j + sizeof (IPMIMsgHdr_T) + 1] = Timeout.Data [j];
  748. }
  749. memcpy (Timeout.Data, &m_PendingBridgedResTbl[PBTbl][i].ResMsgHdr.IPMIMsgHdr, sizeof (IPMIMsgHdr_T));
  750. Timeout.Data[sizeof (IPMIMsgHdr_T)] = CC_TIMEOUT;
  751. QueueFd = m_PendingBridgedResTbl[PBTbl][i].DestQ;
  752. }
  753. /* Post the data to Destination Interface queue */
  754. PostMsg (QueueFd, &Timeout);
  755. m_PendingBridgedResTbl[PBTbl][i].Used = FALSE;
  756. printf( "MsgHndlr: clean pending index = %d.\n", i );
  757. }
  758. }
  759. }
  760. }
  761. }
  762. /**
  763. *@fn PendingSeqNoTimerTask
  764. *@brief Timertask which helpful in IPMB sequence number validation
  765. *@return none
  766. */
  767. static void
  768. PendingSeqNoTimerTask (void)
  769. {
  770. uint8_t i,j;
  771. printf("-> PendingSeqNoTimerTask\n");
  772. /* Check for any Sequence Number expiraied */
  773. for (i = 0; i < sizeof (m_PendingSeqNoTbl)/sizeof (m_PendingSeqNoTbl[0]); i++)
  774. {
  775. for (j = 0; j < sizeof (m_PendingSeqNoTbl[0])/sizeof (m_PendingSeqNoTbl[0][0]); j++)
  776. {
  777. if (TRUE == m_PendingSeqNoTbl[i][j].Used)
  778. {
  779. m_PendingSeqNoTbl[i][j].TimeOut--;
  780. if (0 == m_PendingSeqNoTbl[i][j].TimeOut)
  781. {
  782. m_PendingSeqNoTbl[i][j].Used = FALSE;
  783. }
  784. }
  785. }
  786. }
  787. }
  788. /**
  789. *@fn SwapIPMIMsgHdr
  790. *@brief Swaps the header and copies into response
  791. *@param pIPMIMsgReq Header of the Request
  792. *@param pIPMIMsgRes Header of the response
  793. *@return none
  794. */
  795. void
  796. SwapIPMIMsgHdr (IPMIMsgHdr_T* pIPMIMsgReq, IPMIMsgHdr_T* pIPMIMsgRes)
  797. {
  798. pIPMIMsgRes->ResAddr = pIPMIMsgReq->ReqAddr;
  799. pIPMIMsgRes->NetFnLUN = (pIPMIMsgReq->NetFnLUN & 0xFC) + 0x04;
  800. pIPMIMsgRes->NetFnLUN |= pIPMIMsgReq->RqSeqLUN & 0x03;
  801. /* Calculate the Checksum for above two bytes */
  802. pIPMIMsgRes->ChkSum = (~(pIPMIMsgRes->ResAddr + pIPMIMsgRes->NetFnLUN) + 1);
  803. pIPMIMsgRes->ReqAddr = pIPMIMsgReq->ResAddr;
  804. pIPMIMsgRes->RqSeqLUN = (pIPMIMsgReq->RqSeqLUN & 0xFC);
  805. pIPMIMsgRes->RqSeqLUN |= (pIPMIMsgReq->NetFnLUN & 0x03);
  806. pIPMIMsgRes->Cmd = pIPMIMsgReq->Cmd;
  807. return;
  808. }
  809. /*
  810. UDS data format, LSB first
  811. uint32_t + uint16_t + uint8_t + uint8_t + uint8_t + uint8_t* + uint8_t + uint8_t
  812. SessionID + IPMIMsgLen + NetFnLUN + Cmd + ChannelNum + Data[n] + checksum + 0(多余的,想办法去掉)
  813. */
  814. /**
  815. * *@fn Swap UDSIPMIMsg
  816. * *@brief Swaps the header and copies into response
  817. * *@param pIPMIMsgReq Header of the Request
  818. * *@param pIPMIMsgRes Header of the response
  819. * *@return none
  820. * */
  821. void
  822. SwapUDSIPMIMsg ( MsgPkt_T* pIPMIMsgReq, MsgPkt_T* pIPMIMsgRes)
  823. {
  824. IPMIUDSMsg_T *pIPMIUDSMsgRes = (IPMIUDSMsg_T *)&pIPMIMsgRes->Data[0];
  825. IPMIUDSMsg_T *pIPMIUDSMsgReq = (IPMIUDSMsg_T *)&pIPMIMsgReq->Data[0];
  826. pIPMIMsgRes->NetFnLUN = pIPMIMsgReq->NetFnLUN;
  827. pIPMIMsgRes->Cmd = pIPMIMsgReq->Cmd;
  828. pIPMIMsgRes->Channel = pIPMIMsgReq->Channel;
  829. pIPMIMsgRes->SessionID = pIPMIMsgReq->SessionID;
  830. pIPMIMsgRes->Socket = pIPMIMsgReq->Socket;
  831. pIPMIUDSMsgRes->NetFnLUN = pIPMIMsgReq->NetFnLUN;
  832. pIPMIUDSMsgRes->Cmd = pIPMIMsgReq->Cmd;
  833. pIPMIUDSMsgRes->ChannelNum = pIPMIMsgReq->Channel;
  834. pIPMIUDSMsgRes->SessionID = pIPMIMsgReq->SessionID;
  835. pIPMIUDSMsgRes->IPMIMsgLen = pIPMIMsgRes->Size;
  836. return;
  837. }