tt808.c 27 KB

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  1. #include "tt808.h"
  2. #include "usart.h"
  3. #include "key.h"
  4. #include <stdio.h>
  5. #include <time.h>
  6. #include <stdlib.h>
  7. #include <string.h>
  8. #include "rtc.h"
  9. #include "database.h"
  10. //*整型
  11. int rlt;
  12. uint16_t uploadtime=0; //上传时间
  13. uint16_t hccd = 0;//ascii个数(*2)
  14. uint8_t header[12]; //处理头部
  15. uint8_t index_2c = 0;
  16. uint8_t MIPurc[100]; //接收平台数据
  17. uint8_t MIPurc1[100]; //接收平台数据
  18. uint8_t MIPurcXXTCSJ[100];//平台下行透传数据
  19. uint8_t speedBegin=0;
  20. uint8_t speedEnd=0;
  21. uint8_t speed[10]; //处理头部
  22. uint8_t DTUurc[100]; //接收平台数据
  23. uint8_t DTUurc1[15]; //接收平台数据
  24. int pushpullcount = 0;
  25. double dSpeed=0;
  26. double dlatitude=0;
  27. double dlongitude=0;
  28. char cSpeed[10];
  29. char clatitude[15];
  30. char clongitude[15];
  31. char csatellitesNum[5];
  32. char MGNSSLOC[100]; //接收定位数据
  33. char CSQ[12]; //接收定位数据
  34. char MGNSSLOC_time[6]; //接收定位数据
  35. uint32_t Stamp =0;
  36. uint8_t GNSSdata[40]={0};
  37. //*结构体
  38. TT808 tt808;
  39. extern TipsFlag tipsflag;
  40. extern Menu_table menu;
  41. extern bool refresh;
  42. extern LockInfo lockinfo;
  43. //*布尔
  44. bool authFlag = false;
  45. bool GnssFlag = false;
  46. bool Offline = false;
  47. bool Retrans = false;
  48. bool Online = false;
  49. bool reIME = false;
  50. bool reAuth = false;//回复权限
  51. /**
  52. 时间 纬度(北纬) 经度(东经) 水平精度因子 海拔高度 定位类型(1无,2 2d,3 3d) 运动角度 水平运动速度(KM/h) 水平运动速度(Knots) 日月年 卫星数量 差分定位标识(1单点,2差分)
  53. eg.+MGNSSLOC: 015032.301,3014.8605N,12001.9250E,1.8, 17.6, 3, 0.00, 3.6, 1.9, 080424, 12, 1
  54. */
  55. void reconn(void)
  56. {
  57. char TCPconnvalue[120];
  58. TcpConn(TCPconnvalue, 1, JLPTIP, JLPTPORT,0); //cid=1 tcpConnmode=0 普通模式
  59. if(sendCmd_4G(TCPconnvalue, "+MIPOPEN: 1,0", 1, 1)) //TCP连接 0普通模式 2缓存模式 1透传模式
  60. {
  61. printf("重连成功\r\n");
  62. }
  63. }
  64. uint8_t Messagetemp_length=0;
  65. uint8_t MessageHandleData[100]; //放入封装后数据
  66. uint8_t tcppacket[100]; //消息数据
  67. void MessageHandle(uint16_t MessageID)
  68. {
  69. Flash_ReadBytes((uint16_t*)&(tt808.LSH),tt808serialNum,1);//读取loc头部是否发生写入
  70. if(tt808.LSH==0xFFFF)
  71. {
  72. tt808.LSH=0;//初始未写入
  73. }
  74. uint16_t MessageAttributeData = Messagetemp_length;
  75. MessageAttributeData |= ( Messagetemp_length | (TCPJMFSNULL<<10)); // 将长度左移3位后和加密方式进行按位或操作(001 RSA ,000 无加密)
  76. header[0] = ((MessageID>>8)&0xff);
  77. header[1] = (MessageID&0xff); //消息ID
  78. header[2] = ((MessageAttributeData>>8)&0xff);
  79. header[3] = (MessageAttributeData&0xff); //消息属性
  80. //*test phoneNumxy
  81. //*work phoneNum
  82. if(phonenull)
  83. {
  84. header[4] = 0x00;
  85. header[5] = 0x00;
  86. header[6] = 0x16;
  87. header[7] = 0x00;
  88. header[8] = 0x00;
  89. header[9] = 0x08; //“手机号”
  90. phonenum[0]=0x0000;
  91. phonenum[1]=0x1600;
  92. phonenum[2]=0x0008;
  93. }
  94. else
  95. {
  96. header[4] = (phonenum[0]>>8)&0xff;
  97. header[5] = (phonenum[0])&0xff;
  98. header[6] = (phonenum[1]>>8)&0xff;
  99. header[7] = (phonenum[1])&0xff;
  100. header[8] = (phonenum[2]>>8)&0xff;
  101. header[9] = (phonenum[2])&0xff; //“手机号”
  102. }
  103. header[10] = ((tt808.LSH>>8)&0xff);
  104. header[11] = (tt808.LSH&0xff);
  105. int index = 0;
  106. tcppacket[index++] = TT808FLAG; // Set the headflag 0x7E
  107. for (int i = 0; i < 12; i++) {
  108. tcppacket[index++] = header[i];
  109. }
  110. // Copy message body to packet
  111. for (size_t i = 0; i < Messagetemp_length; i++) {
  112. tcppacket[index++] = MessageHandleData[i];
  113. }
  114. tcppacket[index++] = xorBytes(&tcppacket[1],12+Messagetemp_length);; // Set the checksum
  115. tcppacket[index++] = TT808FLAG; // Set the flag at the end
  116. for (int i = 0; i < index; i++) {
  117. printf("%02X ", tcppacket[i]); // 以十六进制格式打印每个元素
  118. }
  119. printf("\r\n");
  120. //#if open4G ==1
  121. char TCPvalue[120];
  122. char *ptr = TCPvalue;
  123. ptr += sprintf(ptr, "AT+MIPSEND=1,%d,\"",index);
  124. for (int i = 0; i < index; i++) {
  125. ptr += sprintf(ptr, "%02X", tcppacket[i]);
  126. }
  127. sprintf(ptr, "\"\r\n");//TCPvalue
  128. if(sendCmd_4G(TCPvalue, "+MIPSEND:", 1, 1))//发送
  129. {
  130. printf("#等待回应\r\n");
  131. }
  132. //#endif
  133. tt808.LSH+=1;//需做写入处理
  134. Flash_WriteBytes((uint16_t*)&(tt808.LSH),tt808serialNum,1);
  135. }
  136. uint16_t swapBytes16(uint16_t value) {
  137. return (value >> 8) | (value << 8);
  138. }
  139. uint32_t swapBytes32(uint32_t value) {
  140. return ((value & 0xFF) << 24) | ((value & 0xFF00) << 8) |
  141. ((value >> 8) & 0xFF00) | ((value >> 24) & 0xFF);
  142. }
  143. /**
  144. * @breaf 消息体封装
  145. * Message[] 消息数据; length 消息数据长度; outMessage[] 封装后消息数据; MessageID 消息ID
  146. */
  147. extern BtFrame btframe;
  148. uint8_t Message_bodydata(uint8_t *Message, uint8_t length, uint8_t outMessage[],uint16_t MessageID)
  149. {
  150. int index = 0;
  151. uint8_t temp_length = 0;//加首尾 25/23/crc
  152. if(MessageID==MessageID_authentication || MessageID==MessageID_heartbeat || MessageID==MessageID_Getauth)//不加头尾(鉴权、心跳、获取权限)
  153. {
  154. temp_length = length;//不加首尾
  155. uint8_t temp_Message[temp_length];
  156. for (int i = 0; i < length; i++) {
  157. temp_Message[index++] = Message[i]; // 将消息头拷贝到报文中
  158. }
  159. temp_length = index;
  160. for(int i =0;i<temp_length;i++)
  161. {
  162. outMessage[i]=temp_Message[i];
  163. }
  164. }
  165. else if(MessageID==MessageID_location)//终端地址0200 补传0704
  166. {
  167. temp_length = length;//不加首尾
  168. //状态标志/纬度/经度/速度
  169. uint8_t temp_Message[temp_length];
  170. for (int i = 0; i < length; i++) {
  171. temp_Message[index++] = Message[i]; // 将消息头拷贝到报文中
  172. }
  173. for(int i =0;i<temp_length;i++)
  174. {
  175. outMessage[i]=temp_Message[i];
  176. }
  177. }
  178. else if(MessageID==MessageID_Retrans)// 补传0704+5
  179. {
  180. temp_length = length;//不加首尾
  181. uint8_t temp_Message[temp_length];
  182. temp_Message[index++] = 0x00;
  183. temp_Message[index++] = 0x01;
  184. temp_Message[index++] = 0x00;
  185. temp_Message[index++] = 0x00;
  186. temp_Message[index++] = 0x22;
  187. for (int i = 0; i < length; i++) {
  188. temp_Message[index++] = Message[i]; // 将消息头拷贝到报文中
  189. }
  190. for(int i =0;i<temp_length;i++)
  191. {
  192. outMessage[i]=temp_Message[i];
  193. }
  194. }
  195. else if(MessageID==MessageID_uploadLock)//上传锁信息
  196. {
  197. temp_length = length+9;//加4字节操作时间+4字节userIDbtframe.userId+1byte操作类型
  198. uint8_t temp_Message[temp_length];
  199. for (int i = 0; i < length; i++) {
  200. temp_Message[index++] = Message[i]; // 将消息头拷贝到报文中
  201. }
  202. uint32_t ntime = dblocptr->location.timeStamp;//现在时间
  203. temp_Message[index++]=(ntime>>24) & 0xff;
  204. temp_Message[index++]=(ntime>>16) & 0xff;
  205. temp_Message[index++]=(ntime>>8) & 0xff;
  206. temp_Message[index++]= ntime & 0xff;
  207. temp_Message[index++]=(btframe.userId>>24) & 0xff;
  208. temp_Message[index++]=(btframe.userId>>16) & 0xff;
  209. temp_Message[index++]=(btframe.userId>>8) & 0xff;
  210. temp_Message[index++]=(btframe.userId) & 0xff;
  211. temp_Message[index++] = macsetptr->sta;
  212. for(int i =0;i<temp_length;i++)
  213. {
  214. outMessage[i]=temp_Message[i];
  215. }
  216. }
  217. else//加首尾
  218. {
  219. temp_length = length+3;//加首尾 25/23/crc
  220. uint8_t temp_Message[temp_length];
  221. temp_Message[index++]=temp_length;
  222. temp_Message[index++]=0x2A;
  223. for (int i = 0; i < length; i++) {
  224. temp_Message[index++] = Message[i]; // 将消息头拷贝到报文中
  225. }
  226. temp_Message[index++]=0x23;
  227. temp_Message[index++]=xorBytes(&temp_Message[1],temp_length-1);
  228. temp_length = index;
  229. for(int i =0;i<temp_length;i++)
  230. {
  231. outMessage[i]=temp_Message[i];
  232. }
  233. }
  234. return temp_length;
  235. }
  236. /*需要传入消息体长度sizeof(Message)/sizeof(Message[0]);*/
  237. void tt808FsFunc(uint8_t* Message, uint8_t length, uint16_t MessageID)
  238. {
  239. HAL_Delay(200);
  240. Messagetemp_length = Message_bodydata(Message, length, MessageHandleData, MessageID);
  241. MessageHandle(MessageID);
  242. }
  243. void printBytes(uint8_t *data, size_t length) {
  244. for (size_t i = 0; i < length; i++) {
  245. printf("%02x ", data[i]);
  246. }
  247. printf("\n");
  248. }
  249. // 函数用于提取第7到第8个逗号之间的字符串
  250. void extractString(char* receiveStr, char* result, uint8_t start, uint16_t end)
  251. {
  252. int comma_count = 0;
  253. int start_index = -1;
  254. int end_index = -1;
  255. int length = strlen(receiveStr);
  256. // 遍历字符串,统计逗号数量和记录起始和结束索引
  257. for (int i = 0; i < length; i++)
  258. {
  259. if (receiveStr[i] == ',')
  260. {
  261. comma_count++;
  262. if (comma_count == start)
  263. {
  264. start_index = i + 1; // 第start个逗号之后的字符
  265. }
  266. else if (comma_count == end)
  267. {
  268. if(start==1 && end==2)//*纬度去尾符号
  269. {
  270. end_index = i-1; // 第end个逗号之前的字符
  271. }
  272. else if(start==2 && end==3)//*经度去尾符号
  273. {
  274. end_index = i-1; // 第end个逗号之前的字符
  275. }
  276. else
  277. {
  278. end_index = i; // 第end个逗号之前的字符
  279. }
  280. break;
  281. }
  282. }
  283. }
  284. // 提取字符串并存储在result数组中
  285. if (start_index != -1 && end_index != -1 && start_index < end_index)
  286. {
  287. strncpy(result, receiveStr + start_index, end_index - start_index);
  288. result[end_index - start_index] = '\0'; // 添加字符串结束符
  289. }
  290. }
  291. void extractStringPoint(char* receiveStr, char* result, uint8_t start, uint16_t end)
  292. {
  293. int comma_count = 0;
  294. int start_index = -1;
  295. int end_index = -1;
  296. int length = strlen(receiveStr);
  297. // 遍历字符串,统计逗号数量和记录起始和结束索引
  298. for (int i = 0; i < length; i++)
  299. {
  300. if(start==0 && end==1)// = -> .
  301. {
  302. start_index = start; // 第start个逗号之后的字符
  303. if (receiveStr[i] == '.')
  304. {
  305. comma_count++;
  306. }
  307. else if (comma_count == end)
  308. {
  309. end_index = i-1; // 第end个逗号之前的字符
  310. break;
  311. }
  312. }
  313. else if(start==3 && end==4)
  314. {
  315. if (receiveStr[i] == '.')
  316. {
  317. comma_count++;
  318. if (comma_count == start)
  319. {
  320. start_index = i + 1; // 第start个逗号之后的字符
  321. }
  322. }
  323. else if(receiveStr[i] == ':')
  324. {
  325. end_index = i;
  326. }
  327. }
  328. else if(start==4 && end==5)
  329. {
  330. if (receiveStr[i] == ':')
  331. {
  332. comma_count=4;
  333. if (comma_count == start)
  334. {
  335. start_index = i+1; // 第start个逗号之后的字符
  336. }
  337. end_index = start_index+4;
  338. break;
  339. }
  340. }
  341. else
  342. {
  343. if (receiveStr[i] == '.')
  344. {
  345. comma_count++;
  346. if (comma_count == start)
  347. {
  348. start_index = i + 1; // 第start个逗号之后的字符
  349. }
  350. else if (comma_count == end)
  351. {
  352. end_index = i; // 第end个逗号之前的字符
  353. break;
  354. }
  355. }
  356. }
  357. }
  358. // 提取字符串并存储在result数组中
  359. if (start_index != -1 && end_index != -1 && start_index < end_index)
  360. {
  361. strncpy(result, receiveStr + start_index, end_index - start_index);
  362. result[end_index - start_index] = '\0'; // 添加字符串结束符
  363. }
  364. }
  365. double convertToDouble(char* str) {
  366. if(str == csatellitesNum)
  367. {
  368. uint8_t result;
  369. sscanf(str, "%hhu", &result);
  370. return result;
  371. }
  372. else
  373. {
  374. double result;
  375. sscanf(str, "%lf", &result);
  376. return result;
  377. }
  378. }
  379. char hex2asc(const char *hex)
  380. {
  381. char asc = 0;
  382. char a = (hex[0]>='A' && hex[0]<='F')?(hex[0]^32):hex[0];
  383. char b = (hex[1]>='A' && hex[1]<='F')?(hex[1]^32):hex[1];
  384. if ((a>='0' && a<='9' || a>='a' && a<='f') && (b>='0' && b<='9' || b>='a' && b<='f')){
  385. asc = ((('a'<=a && a<='f')?(a-'a')+10:a-'0')<<4)|(('a'<=b && b<='f')?(b-'a')+10:b-'0');
  386. }
  387. return asc;
  388. }
  389. uint8_t testHex2Asc(const char *hex) {
  390. char asc = hex2asc(hex);
  391. printf("Hex: %s\tASC: %d\n", hex, asc);
  392. return asc;
  393. }
  394. char *bin2hex(char *hex, const unsigned char *bin, int size)
  395. {
  396. size_t i;
  397. for(i=0; i<size; i++)
  398. {
  399. sprintf(hex+i*2, "%02x", bin[i]);
  400. }
  401. hex[i+i] = 0;
  402. return hex;
  403. }
  404. int hex2bin(unsigned char *bin, const char *hex)
  405. {
  406. const char *h = hex;
  407. unsigned char *b = bin;
  408. int rlt = 0;
  409. while(*h){
  410. *b++ = hex2asc(h);
  411. h = h + 2;
  412. rlt++;
  413. }
  414. return rlt;//长度
  415. }
  416. // 将单个十六进制数转换为 BCD 码
  417. uint8_t hexToBcd(uint8_t hex) {
  418. return ((hex / 10) << 4) | (hex % 10);
  419. }
  420. // 将整数数组中的所有十六进制数转换为 BCD 码
  421. void hexArrayToBcd(uint8_t* array, size_t length, uint8_t* out) {//时间用
  422. array[3]+=8;
  423. for (size_t i = 0; i < length; i++) {
  424. out[i] = hexToBcd(array[i]);
  425. }
  426. }
  427. void hexToBcd_arr(uint8_t* array, size_t length, uint8_t* out) {//通用
  428. for (size_t i = 0; i < length; i++) {
  429. out[i] = hexToBcd(array[i]);
  430. }
  431. }
  432. char input_strings[20]={0};
  433. char reIp0[10];
  434. char reIp1[10];
  435. char reIp2[10];
  436. char reIp3[10];
  437. char reIpP[10];
  438. Ipaddr ipaddr;
  439. MacSet macset;
  440. MacSet *macsetptr = &macset;
  441. char Newip[30];
  442. extern bool wdiFlag;
  443. //*485测试命令
  444. void Test485Re(void)
  445. {
  446. //*test485 模拟
  447. if(strncmp((char*)U1_485recvBuff, "+MIPURC: \"disconn\",1,1", strlen("+MIPURC: \"disconn\",1,1"))==0)//"disconn" 平台断连
  448. {
  449. Offline=true;
  450. uploaweork=false;
  451. printf("@U1与平台断开连接\r\n");
  452. memset(U1_485recvBuff,0,BUFFER_SIZE);
  453. }
  454. else if(strncmp((char*)U1_485recvBuff, "+MIPOPEN: 1,0", strlen("+MIPOPEN: 1,0"))==0)//连接平台
  455. {
  456. Offline=false;
  457. Online = true;
  458. uploaweork=true;
  459. printf("@U1设备已上线!!\r\n");
  460. refresh=true;
  461. memset(U1_485recvBuff,0,BUFFER_SIZE);
  462. }
  463. else if(strncmp((char*)&U1_485recvBuff, "DTU+FLASH=deleteloc", strlen("DTU+FLASH=deleteloc"))==0)//连接平台
  464. {
  465. dblocptr->headinfo.loc_pushIndex=0;
  466. dblocptr->headinfo.loc_pullIndex=0;
  467. Flash_WriteBytes((uint16_t*)&(dblocptr->headinfo),LocDbHeadStart,4);//更新刻度
  468. memset(U1_485recvBuff,0,BUFFER_SIZE);
  469. printf("更新刻度成功\r\n");
  470. }
  471. else if(strncmp((char*)U1_485recvBuff, "DTU+JT808_IMEI=", strlen("DTU+JT808_IMEI="))==0)//修改IME号
  472. {
  473. memcpy(DTUurc1,U1_485recvBuff+15,12);
  474. const char *hex = (const char *)DTUurc1; // 将 uint8_t * 转换为 const char *
  475. int size = strlen(hex) / 2; // 计算二进制数据的长度
  476. unsigned char *bin = (unsigned char *)malloc(size); // 分配足够的内存用于存储二进制数据
  477. rlt = hex2bin(bin, hex); // 调用hex2bin函数进行转换
  478. memcpy(DTUurc, bin, rlt); // 将 bin 中的 rlt 个字节复制到 MIPurc1 中 接收到的数据放入MIPurc1中
  479. free(bin); // 释放内存
  480. //memset(DTUurc1,0,100);
  481. memset(U1_485recvBuff,0,BUFFER_SIZE);
  482. reIME = true;
  483. HAL_Delay(500);
  484. }
  485. else if(strncmp((char*)U1_485recvBuff, "DTU+JT808_SERVER=", strlen("DTU+JT808_SERVER="))==0)
  486. {
  487. memcpy(input_strings,U1_485recvBuff+17,20);
  488. extractStringPoint(input_strings,reIp0,0,1);
  489. extractStringPoint(input_strings,reIp1,1,2);
  490. extractStringPoint(input_strings,reIp2,2,3);
  491. extractStringPoint(input_strings,reIp3,3,4);
  492. extractStringPoint(input_strings,reIpP,4,5);
  493. ipaddr.IP0 = atoi(reIp0);
  494. ipaddr.IP1 = atoi(reIp1);
  495. ipaddr.IP2 = atoi(reIp2);
  496. ipaddr.IP3 = atoi(reIp3);
  497. ipaddr.IPp = atoi(reIpP);
  498. //printf("%d.%d.%d.%d:%d",ipaddr.IP0,ipaddr.IP1,ipaddr.IP2,ipaddr.IP3,ipaddr.IPp);
  499. HAL_StatusTypeDef writeSta = Flash_WriteBytes((uint16_t*)&(ipaddr.IP0),ReIPAddr,5);
  500. if(writeSta == HAL_OK)
  501. {
  502. char *ptr = Newip;
  503. ptr += sprintf(ptr, "%d.", ipaddr.IP0);
  504. ptr += sprintf(ptr, "%d.", ipaddr.IP1);
  505. ptr += sprintf(ptr, "%d.", ipaddr.IP2);
  506. ptr += sprintf(ptr, "%d", ipaddr.IP3);
  507. printf("更换IP成功\r\n");
  508. }
  509. //ptr += sprintf(ptr, ":%d", ipaddr.IPp);
  510. //printf("%s\r\n",Newip);
  511. memset(U1_485recvBuff,0,BUFFER_SIZE);
  512. HAL_Delay(500);
  513. printf("即将重启\r\n");
  514. wdiFlag = true;
  515. }
  516. else if(strncmp((char*)U1_485recvBuff, "DTU+VER=?", strlen("DTU+VER=?"))==0)
  517. {
  518. printf("%s\r\n",version);
  519. memset(U1_485recvBuff,0,BUFFER_SIZE);
  520. }
  521. REPdaMode();//PDA 485 MQTT
  522. }
  523. void AtPRocess(char *value, char conn[],char connected[],char disconn[]) {
  524. // 使用snprintf代替sprintf以确保不会发生缓冲区溢出
  525. snprintf(conn, strlen(value) + 12, "AT+CONN=%s\r\n", value);
  526. snprintf(connected, strlen(value) + 14, "+CONNECTED:0,%s", value);
  527. snprintf(disconn, strlen(value) + 12, "+DISCONN:0,%s", value);
  528. printf("%s\r\n", conn);
  529. printf("%s\r\n", connected);
  530. printf("%s\r\n", disconn);
  531. }
  532. void Process_str_collections() {
  533. // 循环遍历从0到macCount-1的每个索引
  534. for (int i = 0; i < macset.macCount; i++) {
  535. AtPRocess(
  536. lockinfo.SNname[i],
  537. macset.SNCONN[i],
  538. macset.SNED[i],
  539. macset.SNDIS[i]
  540. );
  541. }
  542. }
  543. void processPdadata(char MACtemp[], uint8_t mactemp[],uint16_t mac[])
  544. {
  545. const char *hex = (const char *)MACtemp; // 将 uint8_t * 转换为 const char *
  546. int size = strlen(hex) / 2; // 计算二进制数据的长度
  547. unsigned char *bin = (unsigned char *)malloc(size); // 分配足够的内存用于存储二进制数据
  548. rlt = hex2bin(bin, hex); // 调用hex2bin函数进行转换
  549. memcpy(mactemp, bin, rlt); // 将 bin 中的 rlt 个字节复制到 MIPurc1 中 接收到的数据放入MIPurc1中
  550. free(bin); // 释放内存
  551. mac[0] = mactemp[0]<<8|mactemp[1];
  552. mac[1] = mactemp[2]<<8|mactemp[3];
  553. mac[2] = mactemp[4]<<8|mactemp[5];
  554. }
  555. #define MAC_LENGTH 12
  556. #define MAC_DB_ENTRY_SIZE 3
  557. void REPdaMode(void)
  558. {
  559. HAL_StatusTypeDef WriteSta;
  560. //*PDA需求 485写入MAC号
  561. if(strncmp((char*)U1_485recvBuff, "DTU+ADDMAC", strlen("DTU+ADDMAC"))==0)
  562. {
  563. macset.macCount=0;
  564. workedLock=0;
  565. memset(devices,0,8);
  566. erase_flash(MacDbBodyAddr);
  567. if(U1_485recvLength>12){
  568. memcpy(macset.MACtemp[0],U1_485recvBuff+11,12);
  569. processPdadata(macset.MACtemp[0],macset.mactemp[0],macset.mac[0]);
  570. WriteSta= Flash_WriteBytes(macsetptr->mac[0],MacDbBodyAddr,3);
  571. if(WriteSta== HAL_OK) macset.macCount += 1;}
  572. if(U1_485recvLength>25){
  573. memcpy(macset.MACtemp[1],U1_485recvBuff+24,12);
  574. processPdadata(macset.MACtemp[1],macset.mactemp[1],macset.mac[1]);
  575. WriteSta= Flash_WriteBytes(macsetptr->mac[1],MacDbBodyAddr+(macset.macCount*6),3);
  576. if(WriteSta== HAL_OK) macset.macCount += 1;}
  577. if(U1_485recvLength>38){
  578. memcpy(macset.MACtemp[2],U1_485recvBuff+37,12);
  579. processPdadata(macset.MACtemp[2],macset.mactemp[2],macset.mac[2]);
  580. WriteSta= Flash_WriteBytes(macsetptr->mac[2],MacDbBodyAddr+(macset.macCount*6),3);
  581. if(WriteSta== HAL_OK) macset.macCount += 1;}
  582. if(U1_485recvLength>51){
  583. memcpy(macset.MACtemp[3],U1_485recvBuff+50,12);
  584. processPdadata(macset.MACtemp[3],macset.mactemp[3],macset.mac[3]);
  585. WriteSta= Flash_WriteBytes(macsetptr->mac[3],MacDbBodyAddr+(macset.macCount*6),3);
  586. if(WriteSta== HAL_OK) macset.macCount += 1;}
  587. if(U1_485recvLength>64){
  588. memcpy(macset.MACtemp[4],U1_485recvBuff+63,12);
  589. processPdadata(macset.MACtemp[4],macset.mactemp[4],macset.mac[4]);
  590. WriteSta= Flash_WriteBytes(macsetptr->mac[4],MacDbBodyAddr+(macset.macCount*6),3);
  591. if(WriteSta== HAL_OK) macset.macCount += 1;}
  592. if(U1_485recvLength>77){
  593. memcpy(macset.MACtemp[5],U1_485recvBuff+76,12);
  594. processPdadata(macset.MACtemp[5],macset.mactemp[5],macset.mac[5]);
  595. WriteSta= Flash_WriteBytes(macsetptr->mac[5],MacDbBodyAddr+(macset.macCount*6),3);
  596. if(WriteSta== HAL_OK) macset.macCount += 1;}
  597. if(U1_485recvLength>90){
  598. memcpy(macset.MACtemp[6],U1_485recvBuff+89,12);
  599. processPdadata(macset.MACtemp[6],macset.mactemp[6],macset.mac[6]);
  600. WriteSta= Flash_WriteBytes(macsetptr->mac[6],MacDbBodyAddr+(macset.macCount*6),3);
  601. if(WriteSta== HAL_OK) macset.macCount += 1;}
  602. if(U1_485recvLength>103){
  603. memcpy(macset.MACtemp[7],U1_485recvBuff+102,12);
  604. processPdadata(macset.MACtemp[7],macset.mactemp[7],macset.mac[7]);
  605. WriteSta= Flash_WriteBytes(macsetptr->mac[7],MacDbBodyAddr+(macset.macCount*6),3);
  606. if(WriteSta== HAL_OK) macset.macCount += 1;}
  607. for(int i = 0; i < macset.macCount; i++) {
  608. memset(lockinfo.SNname[i], 0, 13);
  609. }
  610. if(WriteSta == HAL_OK)
  611. {
  612. printf("更新MAC存储完成共->%d\r\n",macset.macCount);
  613. }
  614. WriteSta = Flash_WriteBytes(&macsetptr->macCount,MacDbHeadAddr,1);
  615. if(WriteSta == HAL_OK)
  616. {
  617. printf("更新存储刻度完成\r\n");
  618. }
  619. ReadSNname();//更新
  620. Process_str_collections();//处理连接字符串
  621. memset(U1_485recvBuff,0,BUFFER_SIZE);
  622. }
  623. }
  624. bool snConnected[NUM_OF_DEVICES] = {false};
  625. void ReBTcall(void)
  626. {
  627. for (int i = 0; i < NUM_OF_DEVICES; ++i) {
  628. if (strncmp((char*)autoRe, macsetptr->SNED[i], strlen(macsetptr->SNED[i])) == 0) {
  629. snConnected[i] = true;
  630. memset(autoRe, 0, BUFFER_SIZE);
  631. break; // Exit the loop once a match is found
  632. }
  633. }
  634. }
  635. //*工作命令
  636. void ReMIPURC(void)//DTU
  637. {
  638. //*设备上线,发送成功
  639. if(strncmp((char*)U4_4GrecvBuff, "+MIPOPEN: 1,0", strlen("+MIPOPEN: 1,0"))==0)//连接平台
  640. {
  641. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  642. }
  643. ///*定位信息(MGNSS)
  644. else if(strncmp((char*)U4_4GrecvBuff, "+MGNSSURC: \"state\",1", strlen("+MGNSSURC: \"state\",1"))==0)
  645. {
  646. printf("@MGNSS设置成功\r\n");
  647. memset(U4_4GrecvBuff,0,strlen("+MGNSSURC: \"state\",1"));
  648. }
  649. else if(strncmp((char*)U4_4GrecvBuff, "+MGNSSURC: \"state\",0", strlen("+MGNSSURC: \"state\",0"))==0)//断开平台
  650. {
  651. printf("@主动取消GNSS\r\n");
  652. memset(U4_4GrecvBuff,0,strlen("+MGNSSURC: \"state\",0"));
  653. }
  654. ///*定位信息(基站)
  655. else if(((strncmp((char*)U4_4GrecvBuff, "+MGNSSLOC", strlen("+MGNSSLOC"))==0) || (strncmp((char*)U4_4GrecvBuff, "OK", strlen("OK"))==0)) && MgnssFlag) //监测平台回复+MGNSSLOC OK4f4b
  656. {
  657. memcpy(MGNSSLOC,&U4_4GrecvBuff[11],75);
  658. GnssFlag=true;
  659. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  660. }
  661. ///*掉线
  662. #if open4G ==1
  663. else if(strncmp((char*)U4_4GrecvBuff, "+MIPURC: \"disconn\",1,1", strlen("+MIPURC: \"disconn\",1,1"))==0)//"disconn" 平台断连
  664. {
  665. Offline=true;
  666. printf("@未发送成功,平台断开连接\r\n");
  667. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  668. uploaweork = false;
  669. reconn();//重连
  670. }
  671. else if((strncmp((char*)U4_4GrecvBuff, "+CPIN: SIM REMOVED", strlen("+CPIN: SIM REMOVED"))==0) || (strncmp((char*)U4_4GrecvBuff, "+CME ERROR: 10", strlen("+CME ERROR: 10"))==0) )//无SIM
  672. {
  673. //TODO
  674. printf("@SIM卡缺失\r\n");
  675. Offline=true;
  676. signal = false;
  677. menu.current = 0xBB;
  678. tipsflag = NoSIM;
  679. refresh=true;
  680. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  681. uploaweork = false;
  682. reconn();//重连
  683. }
  684. else if((strncmp((char*)U4_4GrecvBuff, "+MIPCALL: 1,0", strlen("+MIPCALL: 1,0"))==0))//意外断开平台连接!!!!//TCP未知错误
  685. {
  686. //TODO
  687. Offline=true;
  688. signal = false;
  689. printf("@与平台断开连接\r\n");
  690. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  691. uploaweork = false;
  692. reconn();//重连
  693. }
  694. else if( (strncmp((char*)U4_4GrecvBuff, "+CME ERROR: 550", strlen("+CME ERROR: 550"))==0))
  695. {
  696. Offline=true;
  697. signal = false;
  698. printf("@未发送成功->TCP/IP未知错误\r\n");
  699. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  700. uploaweork = false;
  701. reconn();//重连
  702. }
  703. else if((strncmp((char*)U4_4GrecvBuff, "+MIPOPEN: 1,571", strlen("+MIPOPEN: 1,571"))==0))//PDP激活失败
  704. {
  705. //TODO
  706. Offline=true;
  707. printf("@未发送成功,PDP激活失败\r\n");
  708. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  709. uploaweork = false;
  710. reconn();//重连
  711. }
  712. #endif
  713. else if(U4_4GrecvBuff[1]== 0x43 && U4_4GrecvBuff[2]== 0x53 && U4_4GrecvBuff[3]== 0x51)//CSQ 信号
  714. {
  715. memcpy(CSQ,U4_4GrecvBuff,U4_4GrecvLength);
  716. dblocptr->location.CSQ = (uint8_t)(CSQ[6]&0xf*10)+(CSQ[7]&0xf);
  717. memset(CSQ,0,12);
  718. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  719. }
  720. else if(strncmp((char*)U4_4GrecvBuff, "+MIPURC", strlen("+MIPURC"))==0) //监测平台回复+MIPURC:
  721. {
  722. uint8_t high_byte = (U4_4GrecvBuff[18]&0x0f) *10;
  723. uint8_t low_byte = U4_4GrecvBuff[19]&0x0f;
  724. hccd = high_byte + low_byte;
  725. memcpy(MIPurc1,&U4_4GrecvBuff[21],hccd*2);
  726. const char *hex = (const char *)MIPurc1; // 将 uint8_t * 转换为 const char *
  727. int size = strlen(hex) / 2; // 计算二进制数据的长度
  728. unsigned char *bin = (unsigned char *)malloc(size); // 分配足够的内存用于存储二进制数据
  729. rlt = hex2bin(bin, hex); // 调用hex2bin函数进行转换
  730. memcpy(MIPurc, bin, rlt); // 将 bin 中的 rlt 个字节复制到 MIPurc1 中 接收到的数据放入MIPurc1中
  731. free(bin); // 释放内存
  732. memset(U4_4GrecvBuff,0,BUFFER_SIZE);
  733. memset(MIPurc1,0,100);
  734. }
  735. }
  736. void MIPURCHandle(void)
  737. {
  738. #if open4G == 1
  739. if(MIPurc[0]==0x7E)
  740. {
  741. uint16_t PTXXID = MIPurc[1]<<8 | MIPurc[2]; //消息ID
  742. uint16_t xxtcLen = MIPurc[3]<<8 | MIPurc[4]; //数据长度
  743. uint16_t xxRE = MIPurc[15]<<8 | MIPurc[16]; //回复ID
  744. uint8_t YESorNO = MIPurc[17]; //00 success ; 01 fail
  745. if(PTXXID==XXID_pttyyd) //收到平台通用应答0x8001
  746. {
  747. if(xxRE == MessageID_authentication)//回复鉴权ID
  748. {
  749. if(YESorNO==YES)
  750. {
  751. printf("@鉴权应答yes\r\n");
  752. authFlag = true;
  753. Offline=false; //待判定假消息
  754. Online = true; //待判定假消息
  755. uploaweork=true;
  756. }
  757. else if(YESorNO==NO)
  758. {
  759. printf("@鉴权应答no\r\n");
  760. }
  761. memset(MIPurc,0,rlt);//rlt下发长度
  762. }
  763. else if(xxRE == MessageID_heartbeat)//回复鉴权ID
  764. {
  765. if(YESorNO==YES)
  766. {
  767. printf("@心跳应答yes\r\n");
  768. printf("@TCP连接成功!!\r\n");
  769. }
  770. else if(YESorNO==NO)
  771. {
  772. printf("@心跳应答no\r\n");
  773. }
  774. memset(MIPurc,0,rlt);//rlt下发长度
  775. }
  776. else if(xxRE == MessageID_location)//回复鉴权ID
  777. {
  778. if(YESorNO==YES)
  779. {
  780. printf("@地址应答yes\r\n");
  781. }
  782. else if(YESorNO==NO)
  783. {
  784. printf("@地址应答no\r\n");
  785. }
  786. memset(MIPurc,0,rlt);//rlt下发长度
  787. }
  788. else if(xxRE == MessageID_Getauth)//获取权限
  789. {
  790. if(YESorNO==YES)
  791. {
  792. printf("@权限应答yes\r\n");
  793. reAuth=true;
  794. }
  795. else if(YESorNO==NO)
  796. {
  797. printf("@权限应答no\r\n");
  798. reAuth=false;
  799. }
  800. memset(MIPurc,0,rlt);//rlt下发长度
  801. }
  802. else if(xxRE == MessageID_uploadLock)//锁信息上传
  803. {
  804. if(YESorNO==YES)
  805. {
  806. printf("@锁信息上传应答yes\r\n");
  807. }
  808. else if(YESorNO==NO)
  809. {
  810. printf("@锁信息上传应答no\r\n");
  811. }
  812. if(sendCmd_BT("AT+DISCONN=0\r\n","ERROR",1,1))
  813. {
  814. printf("已断开连接\r\n");
  815. }
  816. memset(MIPurc,0,rlt);//rlt下发长度
  817. }
  818. }
  819. else if(PTXXID == XXID_ptxxtc) //收到平台消息透传 8900
  820. {
  821. authFlag = true;
  822. Offline=false; //待判定假消息
  823. Online = true; //待判定假消息
  824. uploaweork=true;
  825. uint8_t tcsjLen = MIPurc[13];
  826. memcpy(MIPurcXXTCSJ,&MIPurc[13],xxtcLen);
  827. printf("@得到透传数据,%d\r\n",tcsjLen);
  828. memset(MIPurc,0,rlt);//rlt下发长度
  829. }
  830. }
  831. else if(authFlag)
  832. {
  833. authFlag = false;
  834. HAL_Delay(500);
  835. uint8_t test[] = {0x05}; //test心跳
  836. tt808FsFunc(test,1,MessageID_heartbeat); //test心跳
  837. }
  838. #endif
  839. else if(reIME)
  840. {
  841. reIME=false;
  842. phonenum[0] = DTUurc[0]<<8|DTUurc[1];
  843. phonenum[1] = DTUurc[2]<<8|DTUurc[3];
  844. phonenum[2] = DTUurc[4]<<8|DTUurc[5];
  845. phonenull =false;
  846. Flash_WriteBytes(phonenum,phoneNumADDR,3);//更新ime
  847. //memset(DTUurc,0,100);
  848. printf("IMEI设置完成\r\n");
  849. printf("即将重启\r\n");
  850. wdiFlag = true;
  851. }
  852. }
  853. time_t timestamp ;
  854. void time_bj(void)
  855. {
  856. struct tm timeinfo;
  857. timeinfo.tm_year = tt808.Rtime[0]+2000-1900;
  858. timeinfo.tm_mon = tt808.Rtime[1]-1;
  859. timeinfo.tm_mday = tt808.Rtime[2];
  860. timeinfo.tm_hour = tt808.Rtime[3]-8;
  861. timeinfo.tm_min = tt808.Rtime[4];
  862. timeinfo.tm_sec = tt808.Rtime[5];
  863. timestamp = mktime(&timeinfo);
  864. dblocptr->location.timeStamp = timestamp;
  865. }
  866. void ReU4Proces(void)
  867. {
  868. if(GnssFlag)
  869. {
  870. GnssFlag=false;
  871. RTCtime();//同步时间
  872. // 调用函数提取字符串
  873. extractString(MGNSSLOC, cSpeed,7 ,8);//采集
  874. dSpeed = convertToDouble(cSpeed); //转换浮点数
  875. dSpeed*=10;
  876. // 调用函数提取字符串
  877. extractString(MGNSSLOC, clatitude,1 ,2);//采集
  878. dlatitude = convertToDouble(clatitude); //转换浮点数
  879. uint32_t latitudetemp=convertGPS(dlatitude);
  880. dblocptr->location.latitudeH = (latitudetemp>>16)&0xFFFF;
  881. dblocptr->location.latitudeH = swapBytes16(dblocptr->location.latitudeH);//转换H字节
  882. dblocptr->location.latitudeL = (latitudetemp)&0xFFFF;
  883. dblocptr->location.latitudeL = swapBytes16(dblocptr->location.latitudeL);//转换L字节
  884. extractString(MGNSSLOC, clongitude,2 ,3);//采集
  885. dlongitude = convertToDouble(clongitude); //转换浮点数
  886. uint32_t longitudetemp=convertGPS(dlongitude);
  887. dblocptr->location.longitudeH = (longitudetemp>>16)&0xFFFF;
  888. dblocptr->location.longitudeH = swapBytes16(dblocptr->location.longitudeH);//转换H字节
  889. dblocptr->location.longitudeL = (longitudetemp)&0xFFFF;
  890. dblocptr->location.longitudeL = swapBytes16(dblocptr->location.longitudeL);//转换L字节
  891. // printf("%d\r\n",dblocptr->location.latitude);
  892. // printf("%d\r\n",dblocptr->location.longitude);
  893. // printf("%08X\r\n",dblocptr->location.latitude);
  894. // printf("%08X\r\n",dblocptr->location.longitude);
  895. extractString(MGNSSLOC, csatellitesNum,10 ,11);//采集卫星个数
  896. dblocptr->location.satellitesNum = convertToDouble(csatellitesNum); //转换浮点数
  897. //printf("%d",tt808.satellitesNum);
  898. dblocptr->location.speed = (uint16_t)dSpeed;
  899. memset(MGNSSLOC,0,100);
  900. }
  901. }
  902. //*离线蓝牙锁