TcpTask.c 42 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894895896897898899900901902903904905906907908909910911912913914915916917918919920921922923924925926927928929930931932933934935936937938939940941942943944945946947948949950951952953954955956957958959960961962963964965966967968969970971972973974975976977978979980981982983984985986987988989990991992993994995996
  1. /****************************************************************************
  2. *
  3. * Copy right: Qx.Chen jie
  4. * File name: TcpTask.c
  5. * Description: 网络发送接收任务
  6. * History: 2021-03-07
  7. *
  8. ****************************************************************************/
  9. #include "bsp.h"
  10. #include "bsp_custom.h"
  11. #include "osasys.h"
  12. #include "ostask.h"
  13. #include "queue.h"
  14. #include "ps_event_callback.h"
  15. #include "app.h"
  16. #include "cmisim.h"
  17. #include "cmimm.h"
  18. #include "cmips.h"
  19. #include "sockets.h"
  20. #include "psifevent.h"
  21. #include "ps_lib_api.h"
  22. #include "lwip/netdb.h"
  23. //#include <cis_def.h>
  24. #include "debug_log.h"
  25. #include "slpman_ec616.h"
  26. #include "plat_config.h"
  27. #include "ec_tcpip_api.h"
  28. #include "MainTask.h"
  29. #include "TcpTask.h"
  30. #include "UartTask.h"
  31. #include "GpsTask.h"
  32. #include "Fota.h"
  33. #include "Signal.h"
  34. //全局变量输出区
  35. UINT32 TcpService = 0;
  36. UINT8 WorkFlag=0;
  37. //全局变量输入区
  38. extern UINT32 Timer_count;
  39. extern volatile BOOL Sleep_flag;
  40. extern osMutexId_t GpsMutex;
  41. extern UINT8 GpsData[20];
  42. extern AppNVMDataType AppNVMData;
  43. extern AppDataBody AppDataInfo;
  44. extern QueueHandle_t UartWriteCmdHandle;
  45. extern BOOL UartBattInfoRecvFlag;
  46. //局部变量申请
  47. AppSocketConnectionContext socContext = {-1, APP_SOCKET_CONNECTION_CLOSED};
  48. static StaticTask_t gProcess_Tcp_Task_t;
  49. static UINT8 gProcess_Tcp_TaskStack[PROC_TCP_TASK_STACK_SIZE];
  50. static QueueHandle_t psEventQueueHandle;//状态转换队列句柄
  51. static osThreadId_t TcpTaskId = NULL;
  52. static process_TCP gProcess_Tcp_Task = PROCESS_TCP_STATE_IDLE;
  53. #define PROC_TCP_STATE_SWITCH(a) (gProcess_Tcp_Task = a)
  54. static eventCallbackMessage_t *queueItem = NULL;
  55. static UINT8 gImsi[16] = {0};
  56. static UINT32 gCellID = 0;
  57. static QueueHandle_t TcpRecvHandle = NULL;
  58. static UINT8 TcpRecvEnd = 0;
  59. //Tcp线程堆栈申请区
  60. //函数声明区
  61. static void sendQueueMsg(UINT32 msgId, UINT32 xTickstoWait);
  62. static INT32 socketRegisterPSUrcCallback(urcID_t eventID, void *param, UINT32 paramLen);
  63. static void socketAppConnectionCallBack(UINT8 connectionEventType, void *bodyEvent);
  64. static void TcpDataInfoAssembleSend();
  65. static void TcpDataInfoRecvHandle();
  66. UINT8 bcc_chk(UINT8* data, UINT8 length);
  67. //线程任务区
  68. static void TcpTask(void* arg)
  69. {
  70. appSetEDRXSettingSync(0,5,1800000);
  71. appSetPSMSettingSync(1,3*60*60,10);
  72. appSetCFUN(1);
  73. psEventQueueHandle = xQueueCreate(APP_EVENT_QUEUE_SIZE, sizeof(eventCallbackMessage_t*));
  74. PROC_TCP_STATE_SWITCH(PROCESS_TCP_STATE_IDLE);
  75. if (psEventQueueHandle == NULL)
  76. {
  77. return;
  78. }
  79. if(TcpRecvHandle == NULL)
  80. {
  81. TcpRecvHandle = osMessageQueueNew(2,sizeof(TcpipConnectionRecvDataInd*), NULL);
  82. }
  83. if(Error_Mutex == NULL)
  84. {
  85. Error_Mutex = osMutexNew(NULL);
  86. }
  87. osDelay(5000);//等待驻网延时5s
  88. while (true)
  89. {
  90. osDelay(100);
  91. if(Sleep_flag)
  92. {
  93. sendQueueMsg(QMSG_ID_NW_IP_SUSPEND, 0);
  94. sendQueueMsg(QMSG_ID_SOCK_EXIT, 0);
  95. }
  96. else if(Timer_count%50==0 && TcpService==0x00 && AppNVMData.EOLState==1)
  97. {
  98. sendQueueMsg(QMSG_ID_SOCK_SENDPKG, 0);
  99. }
  100. else if(Timer_count%10==0)
  101. {
  102. TcpRecvEnd++;
  103. }
  104. if(TcpRecvEnd>=20)
  105. {
  106. TcpService = 0x00;
  107. TcpRecvEnd=0;
  108. }
  109. if (xQueueReceive(psEventQueueHandle, &queueItem, 0))
  110. {
  111. switch(queueItem->messageId)
  112. {
  113. case QMSG_ID_NW_IP_READY:
  114. if(socContext.id < 0)
  115. {
  116. struct addrinfo hints;
  117. struct addrinfo *servinfo = NULL;
  118. char *Tcp_ip_des;
  119. memset(&hints, 0, sizeof(hints));
  120. hints.ai_family = AF_INET;
  121. hints.ai_socktype = SOCK_STREAM;
  122. getaddrinfo(QX_TCP_ADD, NULL, &hints, &servinfo);
  123. Tcp_ip_des = ip4addr_ntoa((const ip4_addr_t *)(&(servinfo->ai_addr->sa_data[2])));
  124. #ifdef USING_PRINTF1
  125. printf("\nservinfo-%d:\n",servinfo->ai_addr->sa_len);
  126. for(int i=0;i<4;i++)
  127. printf("%d ",servinfo->ai_addr->sa_data[2+i]);
  128. printf("\nTcp_ip_des-%d:\n",sizeof(Tcp_ip_des));
  129. for(int i=0;i<16;i++)
  130. printf("%c",*(Tcp_ip_des+i));
  131. #endif
  132. socContext.id = tcpipConnectionCreate(TCPIP_CONNECTION_PROTOCOL_TCP, PNULL, 0, Tcp_ip_des, QX_TCP_PORT, socketAppConnectionCallBack);
  133. if (NULL != servinfo) {
  134. freeaddrinfo(servinfo);
  135. }
  136. }
  137. if(socContext.id >= 0)
  138. {
  139. socContext.status = APP_SOCKET_CONNECTION_CONNECTED;
  140. #ifdef USING_PRINTF
  141. printf("create connection %u success", socContext.id);
  142. #endif
  143. ECOMM_TRACE(UNILOG_PLA_APP, ecTestCaseTcpClient_2, P_INFO, 1, "create connection %u success", socContext.id);
  144. }
  145. else
  146. {
  147. sendQueueMsg(QMSG_ID_NW_IP_NOREACHABLE, 0);
  148. #ifdef USING_PRINTF
  149. printf("create connection fail\n");
  150. #endif
  151. ECOMM_TRACE(UNILOG_PLA_APP, ecTestCaseTcpClient_3, P_ERROR, 0, "create connection fail");
  152. }
  153. break;
  154. case QMSG_ID_NW_IP_NOREACHABLE:
  155. {
  156. Error_count++;
  157. appSetCFUN(0);
  158. osDelay(5000);
  159. appSetCFUN(1);
  160. osDelay(5000);
  161. sendQueueMsg(QMSG_ID_NW_IP_READY, 0);
  162. }
  163. break;
  164. case QMSG_ID_SOCK_SENDPKG:
  165. if (socContext.id >= 0 && socContext.status == APP_SOCKET_CONNECTION_CONNECTED)
  166. {
  167. TcpDataInfoAssembleSend();
  168. }
  169. else
  170. {
  171. sendQueueMsg(QMSG_ID_NW_IP_READY, 0);
  172. #ifdef USING_PRINTF
  173. printf("connection %u or status invalid", socContext.id, socContext.status);
  174. #endif
  175. ECOMM_TRACE(UNILOG_PLA_APP, ecTestCaseTcpClient_9, P_ERROR, 2, "connection %u or status invalid", socContext.id, socContext.status);
  176. }
  177. break;
  178. case QMSG_ID_SOCK_RECVPKG:
  179. TcpDataInfoRecvHandle();
  180. osDelay(100);
  181. TcpRecvEnd = 0;
  182. break;
  183. case QMSG_ID_NW_IP_SUSPEND:
  184. if (socContext.id >= 0 && socContext.status != APP_SOCKET_CONNECTION_CLOSED)
  185. {
  186. if(tcpipConnectionClose(socContext.id) < 0)
  187. {
  188. socContext.id = -1;
  189. socContext.status = APP_SOCKET_CONNECTION_CLOSED;
  190. #ifdef USING_PRINTF
  191. printf("close connection %u success", socContext.id);
  192. #endif
  193. ECOMM_TRACE(UNILOG_PLA_APP, ecTestCaseTcpClient_4, P_INFO, 1, "close connection %u success", socContext.id);
  194. }
  195. else
  196. {
  197. #ifdef USING_PRINTF
  198. printf("close connection %u fail", socContext.id);
  199. #endif
  200. ECOMM_TRACE(UNILOG_PLA_APP, ecTestCaseTcpClient_5, P_ERROR, 1, "close connection %u fail", socContext.id);
  201. }
  202. }
  203. else
  204. {
  205. #ifdef USING_PRINTF
  206. printf("connection %u or status invalid", socContext.id, socContext.status);
  207. #endif
  208. ECOMM_TRACE(UNILOG_PLA_APP, ecTestCaseTcpClient_6, P_ERROR, 2, "connection %u or status invalid", socContext.id, socContext.status);
  209. }
  210. break;
  211. case QMSG_ID_SOCK_EXIT:
  212. #ifdef USING_PRINTF
  213. printf("QMSG_ID_SOCK_EXIT queueItem->messageId:%x\n",queueItem->messageId);
  214. #endif
  215. #ifdef USING_PRINTF
  216. printf("socket exit\n");
  217. #endif
  218. appSetCFUN(0);
  219. free(queueItem);
  220. osDelay(1000);
  221. TcpTaskDeInit(arg);
  222. break;
  223. }
  224. free(queueItem);
  225. }
  226. }//while 循环
  227. }
  228. //Tcp线程初始化
  229. void TcpTaskInit(void *arg)
  230. {
  231. osThreadAttr_t task_attr;
  232. registerPSEventCallback(NB_GROUP_ALL_MASK, socketRegisterPSUrcCallback);
  233. memset(&task_attr,0,sizeof(task_attr));
  234. memset(gProcess_Tcp_TaskStack, 0xA5, PROC_TCP_TASK_STACK_SIZE);
  235. task_attr.name = "Tcp_Task";
  236. task_attr.stack_mem = gProcess_Tcp_TaskStack;
  237. task_attr.stack_size = PROC_TCP_TASK_STACK_SIZE;
  238. task_attr.priority = osPriorityBelowNormal7;
  239. task_attr.cb_mem = &gProcess_Tcp_Task_t;
  240. task_attr.cb_size = sizeof(StaticTask_t);
  241. TcpTaskId = osThreadNew(TcpTask, NULL, &task_attr);
  242. }
  243. void TcpTaskDeInit(void *arg)
  244. {
  245. osThreadTerminate(TcpTaskId);
  246. TcpTaskId = NULL;
  247. }
  248. /*------------------------------函数区域----------------------------------------------------------------------------------------------*/
  249. static void TcpDataInfoAssembleSend()
  250. { static UINT32 send_counter = 0;
  251. OsaUtcTimeTValue TimeStracture;
  252. UINT8 csq=0;
  253. INT8 snr=0;
  254. INT8 rsnr=0;
  255. INT16 Batt_current=0;
  256. UINT16 BattU=0;
  257. UINT8 temp=0;
  258. UINT16 DataLen=0;
  259. UINT8 BattSendFreq=6;
  260. UINT8 GpsSendFreq=1;
  261. UINT8 WorkState=0;
  262. UINT16 year;
  263. UINT8 month,day,hour,minute,sec;
  264. UINT16 ErrorTemp;
  265. UTC8TimeType UTC8TimeTcp;
  266. int i = 0;
  267. INT8 len = -1;
  268. WorkState = battWorkState;
  269. if(WorkState==0x00 && WorkFlag==0x01)
  270. {
  271. if(send_counter%(RUN_END_DELAY/5)==0)
  272. {
  273. WorkFlag=0x00;
  274. }
  275. }
  276. else if(WorkState==0x00 && WorkFlag==0x02)
  277. {
  278. if(send_counter%(CHRG_END_DELAY/5)==0)
  279. {
  280. WorkFlag=0x00;
  281. }
  282. }
  283. else
  284. {
  285. WorkFlag=WorkState;
  286. }
  287. switch(WorkFlag)
  288. {
  289. case 0x00:
  290. BattSendFreq = 30/5;
  291. GpsSendFreq = 30/5;
  292. break;
  293. case 0x01:
  294. GpsSendFreq = 10/5;
  295. BattSendFreq = 30/5;
  296. break;
  297. case 0x02:
  298. BattSendFreq = 10/5;
  299. GpsSendFreq = 30/5;
  300. break;
  301. default:
  302. BattSendFreq = 30/5;
  303. GpsSendFreq = 30/5;
  304. break;
  305. }
  306. if(send_counter%BattSendFreq==0)
  307. {
  308. BattMsgtoTcpType BattToTcpInfo;
  309. //osStatus_t result = osMutexAcquire(UartMutex, osWaitForever);
  310. appGetSystemTimeUtcSync(&TimeStracture);
  311. year=(TimeStracture.UTCtimer1&0xffff0000)>>16;
  312. month=(TimeStracture.UTCtimer1&0xff00)>>8;
  313. day=TimeStracture.UTCtimer1&0xff;
  314. hour=(TimeStracture.UTCtimer2&0xff000000)>>24;
  315. minute=(TimeStracture.UTCtimer2&0xff0000)>>16;
  316. sec=(TimeStracture.UTCtimer2&0xff00)>>8;
  317. UTCToBeijing((UTC8TimeType *)&UTC8TimeTcp,year,month,day,hour,minute,sec);
  318. appGetSignalInfoSync(&csq,&snr,&rsnr);
  319. DataLen= (UINT16)sizeof(BattToTcpInfo.battInfo);
  320. BattToTcpInfo.startSymbol[0] = TCP_START_SYM1;
  321. BattToTcpInfo.startSymbol[1] = TCP_START_SYM2;
  322. BattToTcpInfo.cmdSymbol = TCP_CMD_SYM;
  323. BattToTcpInfo.ansSymbol = TCP_ANS_SYM;
  324. memcpy(BattToTcpInfo.SN, AppNVMData.battSN,BATT_SN_LEN);
  325. BattToTcpInfo.encryptMethod = TCP_ENCPT_DISABLE; //not encrypt
  326. BattToTcpInfo.dataLength[0] = (DataLen>>8) & 0xFF;
  327. BattToTcpInfo.dataLength[1] = DataLen & 0xFF;
  328. #ifdef USING_PRINTF1
  329. printf("year:%x,month:%d,day:%d,hour:%d,minute:%d,second:%d\n",UTC8TimeTcp.year,UTC8TimeTcp.month,UTC8TimeTcp.day,UTC8TimeTcp.hour,UTC8TimeTcp.minute,UTC8TimeTcp.second);
  330. #endif
  331. BattToTcpInfo.battInfo.sendTimeUTC[0] = (UTC8TimeTcp.year - 0x07D0) & 0xFF; //year
  332. BattToTcpInfo.battInfo.sendTimeUTC[1] = UTC8TimeTcp.month & 0xFF; //month
  333. BattToTcpInfo.battInfo.sendTimeUTC[2] = UTC8TimeTcp.day & 0xFF; //day
  334. BattToTcpInfo.battInfo.sendTimeUTC[3] = UTC8TimeTcp.hour & 0xFF; //hour
  335. BattToTcpInfo.battInfo.sendTimeUTC[4] = UTC8TimeTcp.minute & 0xFF; //mins
  336. BattToTcpInfo.battInfo.sendTimeUTC[5] = UTC8TimeTcp.second & 0xFF; //sec
  337. BattToTcpInfo.battInfo.msgMark = BATTMSG;
  338. BattToTcpInfo.battInfo.msgCollectionTimeUTC[0] = (UTC8TimeTcp.year - 0x07D0) & 0xFF; //year
  339. BattToTcpInfo.battInfo.msgCollectionTimeUTC[1] = UTC8TimeTcp.month & 0xFF; //month
  340. BattToTcpInfo.battInfo.msgCollectionTimeUTC[2] = UTC8TimeTcp.day & 0xFF; //day
  341. BattToTcpInfo.battInfo.msgCollectionTimeUTC[3] = UTC8TimeTcp.hour & 0xFF; //hour
  342. BattToTcpInfo.battInfo.msgCollectionTimeUTC[4] = UTC8TimeTcp.minute & 0xFF; //mins
  343. BattToTcpInfo.battInfo.msgCollectionTimeUTC[5] = UTC8TimeTcp.second & 0xFF; //sec
  344. BattToTcpInfo.battInfo.signalStrength = csq ;
  345. //故障等级故障代码上传
  346. if(osOK==osMutexAcquire(Error_Mutex, 100))
  347. {
  348. UINT16 ErrorTemp=0x00;
  349. ErrorTemp = GetErrorNum((UINT16 *)ErrorNum,sizeof(ErrorNum));
  350. #ifdef USING_PRINTF1
  351. printf("Temp-Error:%d\n",ErrorTemp);
  352. #endif
  353. BattToTcpInfo.battInfo.errClass = 0x00;
  354. BattToTcpInfo.battInfo.errCode[0] = ErrorTemp>>8;
  355. BattToTcpInfo.battInfo.errCode[1] = ErrorTemp;
  356. }
  357. else
  358. {
  359. #ifdef USING_PRINTF1
  360. printf("Temp-Error:%d\n",ErrorTemp);
  361. #endif
  362. BattToTcpInfo.battInfo.errClass = 0x00;
  363. BattToTcpInfo.battInfo.errCode[0] = 0x00;
  364. BattToTcpInfo.battInfo.errCode[1] = 0x00;
  365. }
  366. osMutexRelease(Error_Mutex);
  367. BattToTcpInfo.battInfo.battI[0] = battI>>8;
  368. BattToTcpInfo.battInfo.battI[1] = battI & 0xFF;
  369. //电池内外电压保持一致
  370. BattToTcpInfo.battInfo.battLinkVol[0] = battPackVol >> 8;
  371. BattToTcpInfo.battInfo.battLinkVol[1] = battPackVol & 0xFF;
  372. BattToTcpInfo.battInfo.battPackVol[0] = battPackVol >> 8;
  373. BattToTcpInfo.battInfo.battPackVol[1] = battPackVol & 0xFF;
  374. BattToTcpInfo.battInfo.switchState = battMOSSwitchState;
  375. BattToTcpInfo.battInfo.battSOC = battSOC;
  376. BattToTcpInfo.battInfo.battSOH = battSOH;
  377. BattToTcpInfo.battInfo.batCellBalenceState[0] = (battBalanceoInfo>>24)&0xFF;
  378. BattToTcpInfo.battInfo.batCellBalenceState[1] = (battBalanceoInfo>>16)&0xFF;
  379. BattToTcpInfo.battInfo.batCellBalenceState[2] = (battBalanceoInfo>>8)&0xFF;
  380. BattToTcpInfo.battInfo.batCellBalenceState[3] = battBalanceoInfo&0xFF;
  381. BattToTcpInfo.battInfo.battCellNum= BATT_CELL_VOL_NUM ;
  382. for(i=0;i<BATT_CELL_VOL_NUM;i++)
  383. {
  384. BattToTcpInfo.battInfo.battCellU[i*2] = (battCellU[i]>>8) & 0xFF;
  385. BattToTcpInfo.battInfo.battCellU[i*2+1] = battCellU[i] & 0xFF;
  386. }
  387. BattToTcpInfo.battInfo.battTempNum = BATT_TEMP_NUM;
  388. for(i=0; i<BATT_TEMP_NUM; i++)
  389. {
  390. BattToTcpInfo.battInfo.battCellTemp[i] = battCellTemp[i];
  391. }
  392. BattToTcpInfo.battInfo.battWorkState = battWorkState;//电池状态,0表示静置,1表示放电,2表示充电
  393. BattToTcpInfo.battInfo.battHeatEnableState = battHeatEnableState;
  394. BattToTcpInfo.battInfo.battotherTempNum = BATT_OTHER_TEMP_NUM+NB_OTHER_TEMP_NUM;//其他温度编号(包含环境温度mos温度以及接插件温度)2021-03-24其他温度修改
  395. BattToTcpInfo.battInfo.battotherTemp[0] = MOSTemp;
  396. BattToTcpInfo.battInfo.battotherTemp[1] = packTemp;
  397. BattToTcpInfo.battInfo.battotherTemp[2] = fastChargeTemp;
  398. BattToTcpInfo.battInfo.battotherTemp[3] = normalChargeTemp;
  399. BattToTcpInfo.battInfo.battotherTemp[4] = heatTemp1;
  400. BattToTcpInfo.battInfo.battotherTemp[5] = heatTemp2;
  401. BattToTcpInfo.CRC = bcc_chk((UINT8 *)&BattToTcpInfo, sizeof(BattMsgtoTcpType)-1 );
  402. //osMutexRelease(UartMutex);
  403. if(UartBattInfoRecvFlag)
  404. {
  405. len = tcpipConnectionSend(socContext.id, (UINT8 *)&BattToTcpInfo, sizeof(BattToTcpInfo), 0, 0, 0);
  406. if(len>0)
  407. {
  408. TcpSendLen = 0x02 | TcpSendLen;
  409. }
  410. else
  411. {
  412. TcpSendLen = 0xFD & TcpSendLen;
  413. sendQueueMsg(QMSG_ID_NW_IP_SUSPEND, 0);
  414. }
  415. }
  416. }
  417. if(send_counter%GpsSendFreq==0)
  418. {
  419. GPSMsgtoTcpType GpsToTcpInfo;
  420. UINT16 Tac = 0;
  421. UINT32 CellId = 0;
  422. appGetLocationInfoSync(&Tac,&CellId);
  423. osStatus_t result = osMutexAcquire(GpsMutex, osWaitForever);
  424. appGetSystemTimeUtcSync(&TimeStracture);
  425. year=(TimeStracture.UTCtimer1&0xffff0000)>>16;
  426. month=(TimeStracture.UTCtimer1&0xff00)>>8;
  427. day=TimeStracture.UTCtimer1&0xff;
  428. hour=(TimeStracture.UTCtimer2&0xff000000)>>24;
  429. minute=(TimeStracture.UTCtimer2&0xff0000)>>16;
  430. sec=(TimeStracture.UTCtimer2&0xff00)>>8;
  431. UTCToBeijing((UTC8TimeType *)&UTC8TimeTcp,year,month,day,hour,minute,sec);
  432. DataLen= (UINT16)sizeof(GpsToTcpInfo.gpsInfo);
  433. GpsToTcpInfo.startSymbol[0] = TCP_START_SYM1;
  434. GpsToTcpInfo.startSymbol[1] = TCP_START_SYM2;
  435. GpsToTcpInfo.cmdSymbol = TCP_CMD_SYM;
  436. GpsToTcpInfo.ansSymbol = TCP_ANS_SYM;
  437. memcpy(GpsToTcpInfo.SN, AppNVMData.battSN,BATT_SN_LEN);
  438. GpsToTcpInfo.encryptMethod = TCP_ENCPT_DISABLE; //not encrypt
  439. GpsToTcpInfo.dataLength[0] = (DataLen>>8) & 0xFF;
  440. GpsToTcpInfo.dataLength[1] = DataLen & 0xFF;
  441. GpsToTcpInfo.gpsInfo.sendTimeUTC[0] = (UTC8TimeTcp.year - 0x07D0) & 0xFF; //year
  442. GpsToTcpInfo.gpsInfo.sendTimeUTC[1] = UTC8TimeTcp.month & 0xFF; //month
  443. GpsToTcpInfo.gpsInfo.sendTimeUTC[2] = UTC8TimeTcp.day & 0xFF; //day
  444. GpsToTcpInfo.gpsInfo.sendTimeUTC[3] = UTC8TimeTcp.hour & 0xFF; //hour
  445. GpsToTcpInfo.gpsInfo.sendTimeUTC[4] = UTC8TimeTcp.minute & 0xFF; //mins
  446. GpsToTcpInfo.gpsInfo.sendTimeUTC[5] = UTC8TimeTcp.second & 0xFF; //sec
  447. GpsToTcpInfo.gpsInfo.msgMark = GPSMSG;
  448. GpsToTcpInfo.gpsInfo.msgCollectionTimeUTC[0] = (UTC8TimeTcp.year - 0x07D0) & 0xFF; //year
  449. GpsToTcpInfo.gpsInfo.msgCollectionTimeUTC[1] = UTC8TimeTcp.month & 0xFF; //month
  450. GpsToTcpInfo.gpsInfo.msgCollectionTimeUTC[2] = UTC8TimeTcp.day & 0xFF; //day
  451. GpsToTcpInfo.gpsInfo.msgCollectionTimeUTC[3] = UTC8TimeTcp.hour & 0xFF; //hour
  452. GpsToTcpInfo.gpsInfo.msgCollectionTimeUTC[4] = UTC8TimeTcp.minute & 0xFF; //mins
  453. GpsToTcpInfo.gpsInfo.msgCollectionTimeUTC[5] = UTC8TimeTcp.second & 0xFF;
  454. memcpy((UINT8 *)&GpsToTcpInfo.gpsInfo.locateMark, GpsData,sizeof(GpsData));
  455. GpsToTcpInfo.gpsInfo.Tac[0] = Tac>>8;
  456. GpsToTcpInfo.gpsInfo.Tac[1] = Tac;
  457. GpsToTcpInfo.gpsInfo.CellId[0] = CellId>>24;
  458. GpsToTcpInfo.gpsInfo.CellId[1] = CellId>>16;
  459. GpsToTcpInfo.gpsInfo.CellId[2] = CellId>>8;
  460. GpsToTcpInfo.gpsInfo.CellId[3] = CellId;
  461. GpsToTcpInfo.CRC = bcc_chk((UINT8 *)&GpsToTcpInfo, sizeof(GPSMsgtoTcpType)-1 );
  462. osMutexRelease(GpsMutex);
  463. //if(GpsToTcpInfo.gpsInfo.locateMark==0x01)
  464. if(1)
  465. {
  466. len = tcpipConnectionSend(socContext.id, (UINT8 *)&GpsToTcpInfo, sizeof(GpsToTcpInfo), 0, 0, 0);
  467. if(len>0)
  468. {
  469. TcpSendLen = 0x04 | TcpSendLen;
  470. }
  471. else
  472. {
  473. TcpSendLen = 0xFB & TcpSendLen;
  474. sendQueueMsg(QMSG_ID_NW_IP_SUSPEND, 0);
  475. }
  476. }
  477. #ifdef USING_PRINTF1
  478. printf("GpsMsg:\n");
  479. UINT8* p = (UINT8 *)&GpsToTcpInfo;
  480. for(int i =0 ;i<sizeof(GpsToTcpInfo);i++)
  481. printf("%x ",*(p+i));
  482. #endif
  483. }
  484. if(send_counter==1)//版本信息上报
  485. {
  486. VersionMsgtoTcpType VerMsgToTcpInfo;
  487. CHAR iccid[20];
  488. CHAR imei[15];
  489. appGetIccidNumSync(iccid);
  490. appGetImeiNumSync(imei);
  491. appGetSystemTimeUtcSync(&TimeStracture);
  492. year=(TimeStracture.UTCtimer1&0xffff0000)>>16;
  493. month=(TimeStracture.UTCtimer1&0xff00)>>8;
  494. day=TimeStracture.UTCtimer1&0xff;
  495. hour=(TimeStracture.UTCtimer2&0xff000000)>>24;
  496. minute=(TimeStracture.UTCtimer2&0xff0000)>>16;
  497. sec=(TimeStracture.UTCtimer2&0xff00)>>8;
  498. UTCToBeijing((UTC8TimeType *)&UTC8TimeTcp,year,month,day,hour,minute,sec);
  499. DataLen= (UINT16)sizeof(VerMsgToTcpInfo.VerInfo);
  500. VerMsgToTcpInfo.startSymbol[0] = TCP_START_SYM1;
  501. VerMsgToTcpInfo.startSymbol[1] = TCP_START_SYM2;
  502. VerMsgToTcpInfo.cmdSymbol = TCP_CMD_SYM;
  503. VerMsgToTcpInfo.ansSymbol = TCP_ANS_SYM;
  504. memcpy(VerMsgToTcpInfo.SN, AppNVMData.battSN,BATT_SN_LEN);
  505. VerMsgToTcpInfo.encryptMethod = TCP_ENCPT_DISABLE; //not encrypt
  506. VerMsgToTcpInfo.dataLength[0] = (DataLen>>8) & 0xFF;
  507. VerMsgToTcpInfo.dataLength[1] = DataLen & 0xFF;
  508. VerMsgToTcpInfo.VerInfo.sendTimeUTC[0] = (UTC8TimeTcp.year - 0x07D0) & 0xFF; //year
  509. VerMsgToTcpInfo.VerInfo.sendTimeUTC[1] = UTC8TimeTcp.month & 0xFF; //month
  510. VerMsgToTcpInfo.VerInfo.sendTimeUTC[2] = UTC8TimeTcp.day & 0xFF; //day
  511. VerMsgToTcpInfo.VerInfo.sendTimeUTC[3] = UTC8TimeTcp.hour & 0xFF; //hour
  512. VerMsgToTcpInfo.VerInfo.sendTimeUTC[4] = UTC8TimeTcp.minute & 0xFF; //mins
  513. VerMsgToTcpInfo.VerInfo.sendTimeUTC[5] = UTC8TimeTcp.second & 0xFF; //sec
  514. VerMsgToTcpInfo.VerInfo.msgMark = VERSIONMSG;
  515. VerMsgToTcpInfo.VerInfo.msgCollectionTimeUTC[0] = (UTC8TimeTcp.year - 0x07D0) & 0xFF; //year
  516. VerMsgToTcpInfo.VerInfo.msgCollectionTimeUTC[1] = UTC8TimeTcp.month & 0xFF; //month
  517. VerMsgToTcpInfo.VerInfo.msgCollectionTimeUTC[2] = UTC8TimeTcp.day & 0xFF; //day
  518. VerMsgToTcpInfo.VerInfo.msgCollectionTimeUTC[3] = UTC8TimeTcp.hour & 0xFF; //hour
  519. VerMsgToTcpInfo.VerInfo.msgCollectionTimeUTC[4] = UTC8TimeTcp.minute & 0xFF; //mins
  520. VerMsgToTcpInfo.VerInfo.msgCollectionTimeUTC[5] = UTC8TimeTcp.second & 0xFF;
  521. memcpy(VerMsgToTcpInfo.VerInfo.ICCID,iccid,20);
  522. memcpy(VerMsgToTcpInfo.VerInfo.IMEI,imei,15);
  523. //osMutexAcquire(UartMutex, osWaitForever);//Bms版本号上传2021-03-24修改
  524. VerMsgToTcpInfo.VerInfo.BMSHwVersion[0] = bmsHwVersion /10;
  525. VerMsgToTcpInfo.VerInfo.BMSHwVersion[1] = bmsHwVersion%10;
  526. VerMsgToTcpInfo.VerInfo.BMSSwVersion[0] = 0;
  527. VerMsgToTcpInfo.VerInfo.BMSSwVersion[1] = 0;
  528. VerMsgToTcpInfo.VerInfo.BMSSwVersion[2] = bmsSwVersion/10;
  529. VerMsgToTcpInfo.VerInfo.BMSSwVersion[3] = bmsSwVersion%10;
  530. //osMutexRelease(UartMutex);
  531. VerMsgToTcpInfo.VerInfo.NBHwVersion[0] = (HWVERSION>>8)& 0xFF;
  532. VerMsgToTcpInfo.VerInfo.NBHwVersion[1] = (HWVERSION)& 0xFF;
  533. VerMsgToTcpInfo.VerInfo.BLVersion[0] = (BLSWVERSION>>24)& 0xFF;
  534. VerMsgToTcpInfo.VerInfo.BLVersion[1] = (BLSWVERSION>>16)& 0xFF;
  535. VerMsgToTcpInfo.VerInfo.BLVersion[2] = (BLSWVERSION>>8)& 0xFF;
  536. VerMsgToTcpInfo.VerInfo.BLVersion[3] = (BLSWVERSION)& 0xFF;
  537. VerMsgToTcpInfo.VerInfo.DRVVersion[0] = (DRVSWVERSION>>24)& 0xFF;
  538. VerMsgToTcpInfo.VerInfo.DRVVersion[1] = (DRVSWVERSION>>16)& 0xFF;
  539. VerMsgToTcpInfo.VerInfo.DRVVersion[2] = (DRVSWVERSION>>8)& 0xFF;
  540. VerMsgToTcpInfo.VerInfo.DRVVersion[3] = (DRVSWVERSION)& 0xFF;
  541. VerMsgToTcpInfo.VerInfo.APPVersion[0] = (APPSWVERSION>>24)& 0xFF;
  542. VerMsgToTcpInfo.VerInfo.APPVersion[1] = (APPSWVERSION>>16)& 0xFF;
  543. VerMsgToTcpInfo.VerInfo.APPVersion[2] = (APPSWVERSION>>8)& 0xFF;
  544. VerMsgToTcpInfo.VerInfo.APPVersion[3] = (APPSWVERSION)& 0xFF;
  545. VerMsgToTcpInfo.VerInfo.BmsType = BMS_MANUFACTURE;
  546. VerMsgToTcpInfo.VerInfo.BmsInfo = BMS_INFO;
  547. VerMsgToTcpInfo.VerInfo.DataModuleType = DATA_MODULE_TYPE;
  548. VerMsgToTcpInfo.CRC = bcc_chk((UINT8 *)&VerMsgToTcpInfo, sizeof(VerMsgToTcpInfo)-1 );
  549. if(NB_Fota_update_flag==FALSE)
  550. {
  551. len = tcpipConnectionSend(socContext.id, (UINT8 *)&VerMsgToTcpInfo, sizeof(VerMsgToTcpInfo), 0, 0, 0);
  552. if(len>0)
  553. {
  554. TcpSendLen = 0x01 | TcpSendLen;
  555. }
  556. else
  557. {
  558. send_counter = 0;
  559. TcpSendLen = 0xFE & TcpSendLen;
  560. sendQueueMsg(QMSG_ID_NW_IP_SUSPEND, 0);
  561. }
  562. }
  563. }
  564. if(send_counter==0)//发送本次文件中的调试信息
  565. {
  566. DebugMsgtoTcpType DebugMsgInfo;
  567. UINT8 *SendBuffer = NULL;
  568. UINT16 BufferLen = 0;
  569. BufferLen = Debug_GetSize();
  570. if(BufferLen>200)
  571. {
  572. Debug_Del_Logfile();
  573. #ifdef DEBUGLOG
  574. Debug_printf("Sys:%d\n",AppDataInfo.SysReStart);
  575. #endif
  576. BufferLen = Debug_GetSize();
  577. }
  578. UINT8 rbuf[BufferLen];
  579. Debug_Read_Logfile(rbuf,BufferLen);
  580. SendBuffer = malloc(BufferLen+sizeof(DebugMsgInfo));
  581. memcpy(SendBuffer+sizeof(DebugMsgInfo)-1, rbuf,BufferLen);
  582. appGetSystemTimeUtcSync(&TimeStracture);
  583. year=(TimeStracture.UTCtimer1&0xffff0000)>>16;
  584. month=(TimeStracture.UTCtimer1&0xff00)>>8;
  585. day=TimeStracture.UTCtimer1&0xff;
  586. hour=(TimeStracture.UTCtimer2&0xff000000)>>24;
  587. minute=(TimeStracture.UTCtimer2&0xff0000)>>16;
  588. sec=(TimeStracture.UTCtimer2&0xff00)>>8;
  589. UTCToBeijing((UTC8TimeType *)&UTC8TimeTcp,year,month,day,hour,minute,sec);
  590. DataLen=sizeof(DebugMsgInfo.DebugInfo) + BufferLen;
  591. DebugMsgInfo.startSymbol[0] = TCP_START_SYM1;
  592. DebugMsgInfo.startSymbol[1] = TCP_START_SYM2;
  593. DebugMsgInfo.cmdSymbol = TCP_CMD_SYM;
  594. DebugMsgInfo.ansSymbol = TCP_ANS_SYM;
  595. memcpy(DebugMsgInfo.SN, AppNVMData.battSN,BATT_SN_LEN);
  596. DebugMsgInfo.encryptMethod = TCP_ENCPT_DISABLE; //not encrypt
  597. DebugMsgInfo.dataLength[0] = (DataLen>>8) & 0xFF;
  598. DebugMsgInfo.dataLength[1] = DataLen & 0xFF;
  599. DebugMsgInfo.DebugInfo.sendTimeUTC[0] = (UTC8TimeTcp.year - 0x07D0) & 0xFF; //year
  600. DebugMsgInfo.DebugInfo.sendTimeUTC[1] = UTC8TimeTcp.month & 0xFF; //month
  601. DebugMsgInfo.DebugInfo.sendTimeUTC[2] = UTC8TimeTcp.day & 0xFF; //day
  602. DebugMsgInfo.DebugInfo.sendTimeUTC[3] = UTC8TimeTcp.hour & 0xFF; //hour
  603. DebugMsgInfo.DebugInfo.sendTimeUTC[4] = UTC8TimeTcp.minute & 0xFF; //mins
  604. DebugMsgInfo.DebugInfo.sendTimeUTC[5] = UTC8TimeTcp.second & 0xFF; //sec
  605. DebugMsgInfo.DebugInfo.msgMark = DEBUGMSG;
  606. DebugMsgInfo.DebugInfo.DebugLen[0] = BufferLen>>8;
  607. DebugMsgInfo.DebugInfo.DebugLen[1] = BufferLen;
  608. memcpy(SendBuffer,(UINT8 *)&DebugMsgInfo,sizeof(DebugMsgInfo)-1);
  609. DebugMsgInfo.CRC = bcc_chk(SendBuffer, BufferLen+sizeof(DebugMsgInfo)-1);
  610. memcpy(SendBuffer+BufferLen+sizeof(DebugMsgInfo)-1,&DebugMsgInfo.CRC,1);
  611. len = tcpipConnectionSend(socContext.id, SendBuffer, BufferLen+sizeof(DebugMsgInfo), 0, 0, 0);
  612. #ifdef USING_PRINTF1
  613. printf("DebugMsgInfo!\n");
  614. UINT8* p = SendBuffer;
  615. for(i =0 ;i<BufferLen+sizeof(DebugMsgInfo);i++)
  616. printf("%x ",*(p+i));
  617. #endif
  618. Debug_Del_Logfile();
  619. free(SendBuffer);
  620. }
  621. if(send_counter>0xffff)
  622. {
  623. send_counter = 0;
  624. }
  625. else
  626. {
  627. send_counter++;
  628. }
  629. }
  630. //Tcp数据接收处理函数
  631. static void TcpDataInfoRecvHandle()
  632. {
  633. TcpipConnectionRecvDataInd *TcpRecvData=NULL;
  634. osMessageQueueGet(TcpRecvHandle,&TcpRecvData,0,0);
  635. osDelay(100);
  636. Uart_Write_Data_Type UartWriteCmd;
  637. OsaUtcTimeTValue TimeStracture;
  638. UINT8 DataLen;
  639. UINT8 Tcp_Cmd;
  640. UINT8 Control_Cmd;
  641. UINT8 *Ptr;
  642. UINT8 TcpCmdAnswer[31];
  643. TcpCmdAnswer[0] = TCP_START_SYM1;
  644. TcpCmdAnswer[1] = TCP_START_SYM1;
  645. if(TcpRecvData!=NULL&&TcpRecvData->length!=0)
  646. {
  647. Ptr = TcpRecvData->data;
  648. if((*(Ptr+0)==TCP_START_SYM1)&&(*(Ptr+1)==TCP_START_SYM2))//服务器起始信息
  649. {
  650. Tcp_Cmd = *(Ptr+2);//命令标志
  651. if(*(Ptr+3)==0xFE)
  652. {
  653. TcpService=0x01;
  654. }
  655. switch (Tcp_Cmd)
  656. {
  657. case TCP_QUERY_SYM:
  658. break;
  659. case TCP_SETCMD_SYM:
  660. break;
  661. case TCP_CONCMD_SYM:
  662. {
  663. TcpCmdAnswer[2] = TCP_CONCMD_SYM;
  664. if(*(Ptr+30)==0x01)//远程升级命令
  665. {
  666. Fota_Func(Ptr,socContext.id);
  667. }
  668. else if(*(Ptr+30)==0x88)//BMS远程升级数据传输命令
  669. {
  670. Fota_Func(Ptr,socContext.id);
  671. }
  672. else if(*(Ptr+30)==0x80)//远程锁定命令
  673. {
  674. TcpCmdAnswer[3] = 0x01;
  675. memcpy(&TcpCmdAnswer[4],(Ptr+4),BATT_SN_LEN);
  676. TcpCmdAnswer[21] = TCP_ENCPT_DISABLE;
  677. TcpCmdAnswer[22] = 0x00;
  678. TcpCmdAnswer[23] = 0x06;
  679. memcpy(&TcpCmdAnswer[24],(Ptr+24),6);
  680. TcpCmdAnswer[30] = bcc_chk(TcpCmdAnswer,30);
  681. if(*(Ptr+31)==0x01)//0x01代表锁定
  682. {
  683. AppNVMData.appDataModify = TRUE;
  684. AppNVMData.isBattLocked = TRUE;
  685. tcpipConnectionSend(socContext.id,TcpCmdAnswer,31,0,0,0);
  686. }
  687. else if(*(Ptr+31)==0x02) //0x02代表解锁
  688. {
  689. AppNVMData.appDataModify = TRUE;
  690. AppNVMData.isBattLocked = FALSE;
  691. tcpipConnectionSend(socContext.id,TcpCmdAnswer,31,0,0,0);
  692. }
  693. TcpService=0x00;
  694. }
  695. else if(*(Ptr+30)==0x8A)//继电器控制
  696. {
  697. TcpCmdAnswer[3] = 0x01;
  698. memcpy(&TcpCmdAnswer[4],(Ptr+4),BATT_SN_LEN);
  699. TcpCmdAnswer[21] = TCP_ENCPT_DISABLE;
  700. TcpCmdAnswer[22] = 0x00;
  701. TcpCmdAnswer[23] = 0x06;
  702. memcpy(&TcpCmdAnswer[24],(Ptr+24),6);
  703. TcpCmdAnswer[30] = bcc_chk(TcpCmdAnswer,30);
  704. if(*(Ptr+31)==0x01)//0x01代表断开
  705. {
  706. AppDataInfo.appDataModify = TRUE;
  707. AppDataInfo.RelayControl = TRUE;
  708. tcpipConnectionSend(socContext.id,TcpCmdAnswer,31,0,0,0);
  709. }
  710. else if(*(Ptr+31)==0x00) //0x00代表关闭
  711. {
  712. AppDataInfo.appDataModify = TRUE;
  713. AppDataInfo.RelayControl = FALSE;
  714. tcpipConnectionSend(socContext.id,TcpCmdAnswer,31,0,0,0);
  715. }
  716. TcpService=0x00;
  717. }
  718. else if(*(Ptr+30)==0x89)//蜂鸣器控制
  719. {
  720. TcpCmdAnswer[3] = 0x01;
  721. memcpy(&TcpCmdAnswer[4],(Ptr+4),BATT_SN_LEN);
  722. TcpCmdAnswer[21] = TCP_ENCPT_DISABLE;
  723. TcpCmdAnswer[22] = 0x00;
  724. TcpCmdAnswer[23] = 0x06;
  725. memcpy(&TcpCmdAnswer[24],(Ptr+24),6);
  726. TcpCmdAnswer[30] = bcc_chk(TcpCmdAnswer,30);
  727. if(*(Ptr+31)==0x01)//0x01代表断开
  728. {
  729. BuzzerControl = TRUE;
  730. tcpipConnectionSend(socContext.id,TcpCmdAnswer,31,0,0,0);
  731. }
  732. else if(*(Ptr+31)==0x00) //0x00代表关闭
  733. {
  734. BuzzerControl = FALSE;
  735. tcpipConnectionSend(socContext.id,TcpCmdAnswer,31,0,0,0);
  736. }
  737. TcpService=0x00;
  738. }
  739. else
  740. {
  741. TcpCmdAnswer[3] = 0x0f;
  742. memcpy(&TcpCmdAnswer[4],(Ptr+4),BATT_SN_LEN);
  743. TcpCmdAnswer[21] = TCP_ENCPT_DISABLE;
  744. TcpCmdAnswer[22] = 0x00;
  745. TcpCmdAnswer[23] = 0x06;
  746. memcpy(&TcpCmdAnswer[24],(Ptr+24),6);
  747. TcpCmdAnswer[30] = bcc_chk(TcpCmdAnswer,30);
  748. tcpipConnectionSend(socContext.id,TcpCmdAnswer,31,0,0,0);
  749. }
  750. break;
  751. }
  752. default:
  753. {
  754. break;
  755. }
  756. }
  757. }
  758. }
  759. if(TcpRecvData!=NULL)
  760. {
  761. free(TcpRecvData);
  762. }
  763. TcpRecvData = NULL;
  764. }
  765. //TCP发送校验函数
  766. UINT8 bcc_chk(UINT8* data, UINT8 length)
  767. {
  768. UINT8 bcc_chk_return = 0x00;
  769. UINT8 count = 0;
  770. while (count<length)
  771. {
  772. bcc_chk_return^=data[count];
  773. count++;
  774. }
  775. return bcc_chk_return;
  776. }
  777. //Tcp 状态转换函数
  778. static void sendQueueMsg(UINT32 msgId, UINT32 xTickstoWait)
  779. {
  780. eventCallbackMessage_t *queueMsg = NULL;
  781. queueMsg = malloc(sizeof(eventCallbackMessage_t));
  782. queueMsg->messageId = msgId;
  783. if (psEventQueueHandle)
  784. {
  785. if (pdTRUE != xQueueSend(psEventQueueHandle, &queueMsg, xTickstoWait))
  786. {
  787. ECOMM_TRACE(UNILOG_PLA_APP, sendQueueMsg_1, P_ERROR, 0, "xQueueSend error");
  788. }
  789. }
  790. }
  791. //Tcp状态注册函数
  792. static INT32 socketRegisterPSUrcCallback(urcID_t eventID, void *param, UINT32 paramLen)
  793. {
  794. CmiSimImsiStr *imsi = NULL;
  795. CmiPsCeregInd *cereg = NULL;
  796. UINT8 rssi = 0, index = 0;
  797. NmAtiNetifInfo *netif = NULL;
  798. switch(eventID)
  799. {
  800. case NB_URC_ID_SIM_READY:
  801. {
  802. imsi = (CmiSimImsiStr *)param;
  803. memcpy(gImsi, imsi->contents, imsi->length);
  804. #ifdef USING_PRINTF
  805. printf("SIM ready(imsi=%s)\n",(UINT8 *)imsi->contents);
  806. #endif
  807. break;
  808. }
  809. case NB_URC_ID_MM_SIGQ:
  810. {
  811. rssi = *(UINT8 *)param;
  812. #ifdef USING_PRINTF
  813. printf("RSSI signal=%d\n",rssi);
  814. #endif
  815. break;
  816. }
  817. case NB_URC_ID_PS_BEARER_ACTED:
  818. {
  819. #ifdef USING_PRINTF
  820. printf("Default bearer activated\n");
  821. #endif
  822. break;
  823. }
  824. case NB_URC_ID_PS_BEARER_DEACTED:
  825. {
  826. #ifdef USING_PRINTF
  827. printf("Default bearer Deactivated\n");
  828. #endif
  829. break;
  830. }
  831. case NB_URC_ID_PS_CEREG_CHANGED:
  832. {
  833. cereg = (CmiPsCeregInd *)param;
  834. gCellID = cereg->celId;
  835. #ifdef USING_PRINTF
  836. printf("URCCallBack:CEREG changed act:%d celId:%d locPresent:%d tac:%d\n", cereg->act, cereg->celId, cereg->locPresent, cereg->tac);
  837. #endif
  838. break;
  839. }
  840. case NB_URC_ID_PS_NETINFO:
  841. {
  842. netif = (NmAtiNetifInfo *)param;
  843. if (netif->netStatus == NM_NETIF_ACTIVATED)
  844. sendQueueMsg(QMSG_ID_NW_IP_READY, 0);
  845. break;
  846. }
  847. }
  848. return 0;
  849. }
  850. //Tcpz连接状态回调函数
  851. static void socketAppConnectionCallBack(UINT8 connectionEventType, void *bodyEvent)
  852. {
  853. switch(connectionEventType)
  854. {
  855. case TCPIP_CONNECTION_STATUS_EVENT:
  856. {
  857. TcpipConnectionStatusInd *statusInd;
  858. statusInd = (TcpipConnectionStatusInd *)bodyEvent;
  859. if(statusInd != PNULL)
  860. {
  861. if(statusInd->status == TCPIP_CONNECTION_STATUS_CLOSED)
  862. {
  863. #ifdef USING_PRINTF
  864. printf("socketAppConnectionCallBack socket connection %u closed,cause %u", statusInd->connectionId, statusInd->cause);
  865. #endif
  866. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_1, P_ERROR, 2, "socketAppConnectionCallBack socket connection %u closed,cause %u", statusInd->connectionId, statusInd->cause);
  867. if(statusInd->connectionId == socContext.id)
  868. {
  869. socContext.id = -1;
  870. socContext.status = APP_SOCKET_CONNECTION_CLOSED;
  871. }
  872. }
  873. else if(statusInd->status == TCPIP_CONNECTION_STATUS_CONNECTING)
  874. {
  875. #ifdef USING_PRINTF
  876. printf("socketAppConnectionCallBack socket connection %u is connecting", statusInd->connectionId);
  877. #endif
  878. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_2, P_INFO, 1, "socketAppConnectionCallBack socket connection %u is connecting", statusInd->connectionId);
  879. if(statusInd->connectionId == socContext.id)
  880. {
  881. socContext.status = APP_SOCKET_CONNECTION_CONNECTING;
  882. }
  883. }
  884. else if(statusInd->status == TCPIP_CONNECTION_STATUS_CONNECTED)
  885. {
  886. #ifdef USING_PRINTF
  887. printf("socketAppConnectionCallBack socket connection %u is connected", statusInd->connectionId);
  888. #endif
  889. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_3, P_ERROR, 1, "socketAppConnectionCallBack socket connection %u is connected", statusInd->connectionId);
  890. if(statusInd->connectionId == socContext.id)
  891. {
  892. socContext.status = APP_SOCKET_CONNECTION_CONNECTED;
  893. }
  894. }
  895. }
  896. else
  897. {
  898. #ifdef USING_PRINTF
  899. printf("socketAppConnectionCallBack invalid connection status event");
  900. #endif
  901. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_4, P_ERROR, 0, "socketAppConnectionCallBack invalid connection status event");
  902. }
  903. break;
  904. }
  905. case TCPIP_CONNECTION_RECEIVE_EVENT:
  906. {
  907. TcpipConnectionRecvDataInd *rcvInd;
  908. TcpipConnectionRecvDataInd *rcvbuffer = NULL;
  909. rcvInd = (TcpipConnectionRecvDataInd *)bodyEvent;
  910. if(rcvInd != NULL)
  911. {
  912. rcvbuffer = malloc(sizeof(TcpipConnectionRecvDataInd));
  913. memcpy(rcvbuffer,rcvInd,sizeof(TcpipConnectionRecvDataInd));
  914. osMessageQueuePut(TcpRecvHandle,&rcvbuffer,0,1000);
  915. sendQueueMsg(QMSG_ID_SOCK_RECVPKG, 0);
  916. #ifdef USING_PRINTF
  917. uint8_t* Ptr;
  918. Ptr=rcvInd->data;
  919. printf("socket connection %u receive length %u data:", rcvInd->connectionId, rcvInd->length);
  920. // for(int i = 0;i<rcvInd->length;i++)
  921. // printf("%x ",*(Ptr+i));
  922. // printf("\n");
  923. #endif
  924. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_5, P_INFO, 2, "socketAppConnectionCallBack socket connection %u receive length %u data", rcvInd->connectionId, rcvInd->length);
  925. }
  926. else
  927. {
  928. #ifdef USING_PRINTF
  929. printf( "socketAppConnectionCallBack invalid connection rcv event");
  930. #endif
  931. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_6, P_ERROR, 0, "socketAppConnectionCallBack invalid connection rcv event");
  932. }
  933. break;
  934. }
  935. case TCPIP_CONNECTION_UL_STATUS_EVENT:
  936. {
  937. TcpipConnectionUlDataStatusInd *ulStatusInd;
  938. ulStatusInd = (TcpipConnectionUlDataStatusInd *)bodyEvent;
  939. if(ulStatusInd != PNULL)
  940. {
  941. if(ulStatusInd->status == Tcpip_Connection_UL_DATA_SUCCESS)
  942. {
  943. #ifdef USING_PRINTF
  944. printf( "socketAppConnectionCallBack socket connection %u sequence %u data has sent success", ulStatusInd->connectionId, ulStatusInd->sequence);
  945. #endif
  946. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_7, P_INFO, 2, "socketAppConnectionCallBack socket connection %u sequence %u data has sent success", ulStatusInd->connectionId, ulStatusInd->sequence);
  947. }
  948. else if(ulStatusInd->status == Tcpip_Connection_UL_DATA_FAIL)
  949. {
  950. #ifdef USING_PRINTF
  951. printf("socketAppConnectionCallBack socket connection %u sequence %u data has sent fail", ulStatusInd->connectionId, ulStatusInd->sequence);
  952. #endif
  953. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_8, P_WARNING, 2, "socketAppConnectionCallBack socket connection %u sequence %u data has sent fail", ulStatusInd->connectionId, ulStatusInd->sequence);
  954. }
  955. }
  956. else
  957. {
  958. #ifdef USING_PRINTF
  959. printf("socketAppConnectionCallBack invalid connection ul status event");
  960. #endif
  961. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_9, P_ERROR, 0, "socketAppConnectionCallBack invalid connection ul status event");
  962. }
  963. break;
  964. }
  965. default:
  966. #ifdef USING_PRINTF
  967. printf("socketAppConnectionCallBack invalid event type %u", connectionEventType);
  968. #endif
  969. ECOMM_TRACE(UNILOG_PLA_APP, socketAppConnectionCallBack_10, P_ERROR, 1, "socketAppConnectionCallBack invalid event type %u", connectionEventType);
  970. break;
  971. }
  972. }