EC800.c 53 KB

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  1. //----------------------------说明
  2. // 程序使用hal库,数据传输使用的串口,串口设置为发送+dma,接收+dma+空闲中断的模式
  3. #include "EC800.h"
  4. //-----------------------------变量定义
  5. //---------
  6. ec800Date s_ec800Date = {
  7. .ip = "39.98.37.180",
  8. .port = 32449,
  9. .clientid = "NULL",
  10. .username = "hechun",
  11. .password = "admin123",
  12. // .username = "SZC30010-AE01",
  13. // .password = "qazSZC30010-AE01",
  14. };
  15. messageDate s_messageDate = {0};
  16. // 初始化故障结构体数组
  17. // 注:如果更改数组faults的大小,需要更改函数insertFaultItems中的限制条件大小,但都需要小于32
  18. Fault faults[12] = {
  19. {"0", "Out of fence fault"},
  20. {"1", "485 communication abnormality"},
  21. {"2", "MQTT communication failure"},
  22. {"3", "Gyroscope data anomaly"},
  23. {"4", "Car battery malfunction"},
  24. {"5", "4G module initialization failed"},
  25. {"6", "GPS positioning information lost."},
  26. {"7", "Upgrade failure fault"},
  27. {"8", "Overspeed fault"},
  28. {"9", "subscribe fail"},
  29. {"10", "publish fail"},
  30. {"11", "get location error"},
  31. };
  32. typedef struct{
  33. uint8_t maxSpeed; // 服务器下发的允许最大车速
  34. uint16_t year; // 上传时间 年
  35. uint8_t month; // 上传时间 月
  36. uint8_t day; // 上传时间 日
  37. uint8_t hour; // 上传时间 时
  38. uint8_t minute; // 上传时间 分
  39. uint8_t sec; // 上传时间 秒
  40. }recDate;
  41. recDate s_recDate = {0};
  42. nmea_msg s_nmea_msg = {0};
  43. nmea_utc_time s_nmea_utc_time = {0};
  44. // AT指令响应超时时间定义
  45. #define REC_TIMEOUT (10000) // 1ms
  46. //----------------------------------------------------------------------------------------------
  47. // 第一部分 通信接口处理部分
  48. /**
  49. * @brief 计算字符串的长度
  50. * @param str: 所需计算字符串的指针
  51. * @note
  52. * @retval 无
  53. */
  54. int EC800_calculateStringLength(const char* str) {
  55. int length = 0;
  56. while (str[length] != '\0') {
  57. length++;
  58. }
  59. return length;
  60. }
  61. /**
  62. * @brief 发送指令函数
  63. * @param command: 指令
  64. * @param enterNum: 进入函数次数,只有第一次的时候清除buff
  65. * @note
  66. * @retval 无
  67. */
  68. void EC800M_SendCommand(const char* command)
  69. {
  70. uint32_t stringLen = 0;
  71. // 进入临界区 挂起所有任务
  72. vTaskSuspendAll();
  73. stringLen = EC800_calculateStringLength(command);
  74. // 使用DMA
  75. // //等待发送状态OK
  76. // while(HAL_DMA_GetState(&hdma_usart3_tx) == HAL_DMA_STATE_BUSY) osDelay(1);
  77. // //发送数据
  78. // HAL_UART_Transmit_DMA(&huart3, (uint8_t*)command, stringLen);
  79. // 不使用发送dma
  80. HAL_UART_Transmit(&huart4, (uint8_t*)command, stringLen, 1000);
  81. // 使用中断
  82. // HAL_UART_Transmit_IT(&huart4, (uint8_t*)command, stringLen);
  83. // 退出临界区 恢复任务调度
  84. xTaskResumeAll();
  85. }
  86. /**
  87. * @brief 接收指令回复函数
  88. * @param haystack: 接收的字符串数据
  89. * @param needle: 正确回复的数据
  90. * @note
  91. * @retval 无
  92. */
  93. char* EC800M_RecRespond(char *haystack, const char *needle ){
  94. char* p = NULL;
  95. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  96. // __HAL_UART_ENABLE_IT(&huart4, UART_IT_IDLE);
  97. while(g_usart4_rx_sta == 0) osDelay(1);
  98. // __HAL_UART_DISABLE_IT(&huart4, UART_IT_IDLE); // 关闭空闲中断
  99. g_usart4_rx_sta= 0;
  100. p = strstr(haystack, needle);
  101. memset(haystack, 0, USART4_REC_LEN); // 清除数据buff
  102. HAL_UART_DMAStop(&huart4);
  103. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  104. return p;
  105. }
  106. // 自定义的搜索函数
  107. void* search_sequence(const void* haystack, size_t haystack_len, const void* needle, size_t needle_len) {
  108. const unsigned char* h = (const unsigned char*)haystack;
  109. const unsigned char* n = (const unsigned char*)needle;
  110. // 如果needle为空或haystack长度小于needle长度,则直接返回NULL
  111. if (needle_len == 0 || haystack_len < needle_len) {
  112. return NULL;
  113. }
  114. for (size_t i = 0; i <= haystack_len - needle_len; ++i) {
  115. size_t j;
  116. for (j = 0; j < needle_len; ++j) {
  117. if (h[i + j] != n[j]) {
  118. break; // 如果当前字符不匹配,则跳出内层循环
  119. }
  120. }
  121. if (j == needle_len) {
  122. return (void*)(h + i); // 找到匹配的序列,返回其在haystack中的位置
  123. }
  124. }
  125. // 如果遍历了整个haystack都没有找到匹配的序列,则返回NULL
  126. return NULL;
  127. }
  128. // 接收并比较响应字符串
  129. uint8_t Accept_and_Compare_Str(const char* needle){
  130. uint8_t temp = 0;
  131. static uint16_t timeOutCnt = 0; // 超时计数
  132. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  133. // __HAL_UART_ENABLE_IT(&huart4, UART_IT_IDLE);
  134. while(!temp) {
  135. osDelay(1);
  136. if(search_sequence(g_usart4_rx_buf, USART4_REC_LEN, needle, strlen(needle))){
  137. temp = 1;
  138. }
  139. if(search_sequence(g_usart4_rx_buf, USART4_REC_LEN, "ERROR", strlen("ERROR"))){
  140. temp = 2;
  141. }
  142. if(timeOutCnt < REC_TIMEOUT){
  143. timeOutCnt++;
  144. }else{
  145. timeOutCnt = 0;
  146. temp = 3;
  147. }
  148. }
  149. g_usart4_rx_sta = 0;
  150. HAL_UART_DMAStop(&huart4);
  151. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  152. // __HAL_UART_DISABLE_IT(&huart4, UART_IT_IDLE); // 关闭空闲中断
  153. return temp;
  154. }
  155. /**
  156. * @brief 接收使能函数
  157. * @note
  158. * @retval 无
  159. */
  160. void EC800_recEnable(void){
  161. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  162. __HAL_UART_ENABLE_IT(&huart4, UART_IT_IDLE);
  163. while(g_usart4_rx_sta == 0) osDelay(1);
  164. }
  165. //----------------------------------------------------------------------------------------------
  166. // 第二部分 应用部分的内部函数
  167. /**
  168. * @brief 提取检查信号响应字符串字段中的信号量并进行信号判断
  169. * @param data: 响应的信号量指针
  170. * @note
  171. * @retval 无
  172. */
  173. static uint8_t EC800_extractSignal(char *data){
  174. char *token;
  175. int field_1;
  176. // 使用strtok函数提取字段
  177. token = strtok(data, ":,");
  178. while (token != NULL) {
  179. field_1 = atoi(token); // 转换为整数类型
  180. token = strtok(NULL, ":,");
  181. memset(data, 0, USART4_REC_LEN); // 清除数据buff
  182. g_usart4_rx_sta = 0; // 清除接收状态
  183. if (field_1 < 31) {
  184. return 1;
  185. } else {
  186. return 0;
  187. }
  188. }
  189. return 0;
  190. }
  191. /**
  192. * @brief 检查模块信号
  193. * @param data: 响应的信号量指针
  194. * @note
  195. * @retval 无
  196. */
  197. void ModuleSigCheck(char *data){
  198. EC800M_SendCommand(AT_CMD_CSQ);
  199. int i = 8; // 从第7个字符开始(跳过 "+CSQ: ")
  200. if(Accept_and_Compare_Str(AT_RESP_OK) == 1){
  201. s_global_par.moduleSig = 0;
  202. // 遍历字符串,直到遇到非数字字符
  203. while (data[i] != '\0' && isdigit(data[i])) {
  204. s_global_par.moduleSig = s_global_par.moduleSig * 10 + (data[i] - '0');
  205. i++;
  206. }
  207. }
  208. memset(data, 0, USART4_REC_LEN); // 清除数据buff
  209. g_usart4_rx_sta = 0; // 清除接收状态
  210. }
  211. /**
  212. * @brief 获取IMSI号
  213. * @param 无
  214. * @note
  215. * @retval 1: imsi没有获取到 0;imsi获取到
  216. */
  217. uint8_t EC800_getIMSI(void){
  218. char* found = NULL;
  219. char number[16]; // 15 digits + 1 for null terminator
  220. int numberIndex = 0;
  221. int numberFound = 0;
  222. EC800M_SendCommand(AT_CIMI);
  223. EC800_recEnable();
  224. found = strstr(g_usart4_rx_buf, AT_RESP_OK);
  225. if (found != NULL) {
  226. // printf("IMSI is get\r\n");
  227. }else{
  228. // printf("IMSI is not get\r\n");
  229. return 1;
  230. }
  231. for (int i = 0; i < strlen(g_usart4_rx_buf); i++) {
  232. if (isdigit(g_usart4_rx_buf[i])) {
  233. number[numberIndex] = g_usart4_rx_buf[i];
  234. numberIndex++;
  235. if (numberIndex >= 15) {
  236. numberFound = 1;
  237. break;
  238. }
  239. }
  240. }
  241. number[numberIndex] = '\0';
  242. if (numberFound) {
  243. memcpy(s_messageDate.imsi, number, strlen(number));
  244. // printf("IMSI is: %s\n", number);
  245. } else {
  246. // printf("Error: Unable to extract the number\n");
  247. }
  248. return 0;
  249. }
  250. /**
  251. * @brief EC800M确认网络并链接MQTT服务器
  252. * @param NONE
  253. * @note
  254. * @retval 无
  255. */
  256. uint8_t linkStep = 0;
  257. void EC800M_link(void){
  258. uint8_t temp = 0;
  259. char command[100] = {0};
  260. static char errrCnt = 0; // 错误计数
  261. switch(linkStep){
  262. case 0: // 基础配置
  263. EC800M_SendCommand(AT_CMD_TEST);
  264. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  265. errrCnt = 0;
  266. // printf("Module status normal\r\n");
  267. }else{
  268. errrCnt++;
  269. // printf("Module status abnormal\r\n");
  270. }
  271. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  272. // 返回正常,则进入下一步,否则判断错误次数,进行重连
  273. linkStep = (errrCnt == 0) ? 1 : linkStep;
  274. break;
  275. case 1: // 获取ISMI号
  276. errrCnt = EC800_getIMSI();
  277. if(errrCnt == 0){
  278. linkStep = 2;
  279. }else{
  280. errrCnt = 0;
  281. }
  282. break;
  283. case 2:
  284. // 取消模块回显
  285. EC800M_SendCommand(AT_CMD_ATE0);
  286. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  287. errrCnt = 0;
  288. // printf("Cancel module echo\r\n");
  289. }else{
  290. errrCnt++;
  291. // printf("Failed to cancel module echo\r\n");
  292. }
  293. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  294. // 检查SIM是否正常
  295. EC800M_SendCommand(AT_CMD_CPIN);
  296. if (Accept_and_Compare_Str(AT_RESP_CPIN_READY) == 1) {
  297. errrCnt = 0;
  298. // printf("SIM card normal\r\n");
  299. }else{
  300. errrCnt++;
  301. // printf("SIM card abnormal\r\n");
  302. }
  303. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  304. // 检查信号
  305. EC800M_SendCommand(AT_CMD_CSQ);
  306. EC800_recEnable();
  307. temp = EC800_extractSignal(g_usart4_rx_buf);
  308. if (temp) {
  309. errrCnt = 0;
  310. // printf("signal normal\r\n");
  311. }else{
  312. errrCnt++;
  313. // printf("signal abnormal\r\n");
  314. }
  315. // 查询模组是否注册上GSM网络
  316. EC800M_SendCommand(AT_CMD_CREG);
  317. if((Accept_and_Compare_Str("+CREG: 0,1") == 1) || (Accept_and_Compare_Str("+CREG: 0,5") == 1)){
  318. errrCnt = 0;
  319. // printf("The module successfully registered on the GSM network\r\n");
  320. }else{
  321. errrCnt++;
  322. // printf("The module failed to register on the GSM network\r\n");
  323. }
  324. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  325. g_usart4_rx_sta = 0; // 清除接收状态
  326. // 关闭移动场景
  327. EC800M_SendCommand(AT_CMD_QIDEACT);
  328. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  329. errrCnt = 0;
  330. // printf("Successfully disabled mobile scene\r\n");
  331. }else{
  332. errrCnt++;
  333. // printf("Failed to disable mobile scene\r\n");
  334. }
  335. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  336. // 打开移动场景
  337. EC800M_SendCommand(AT_CMD_QIACT);
  338. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  339. errrCnt = 0;
  340. // printf("Successfully enabled mobile scene\r\n");
  341. }else{
  342. errrCnt++;
  343. // printf("Failed to enable mobile scene\r\n");
  344. }
  345. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  346. // 返回正常,则进入下一步,否则判断错误次数,进行重连
  347. linkStep = (errrCnt == 0) ? 8 : ((errrCnt > task_upload_times_2s) ? 0 : linkStep);
  348. break;
  349. case 8: // 连接MQTT服务器
  350. // 设置MQTT心跳
  351. sprintf(command, "AT+QMTCFG=\"qmtping\",%d,%d\r\n", client_idx, 30);
  352. EC800M_SendCommand(command);
  353. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  354. errrCnt = 0;
  355. // printf("MQTT heartbeat set successfully\r\n");
  356. }else{
  357. errrCnt++;
  358. // printf("Failed to set MQTT heartbeat\r\n");
  359. }
  360. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  361. // 设置MQTT接收数据的模式
  362. sprintf(command,"AT+QMTCFG=\"recv/mode\",%d,0,1\r\n", client_idx);
  363. EC800M_SendCommand(command);
  364. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  365. errrCnt = 0;
  366. // printf("Data receiving mode set successfully.\r\n");
  367. }else{
  368. errrCnt++;
  369. // printf("Failed to set data receiving mode\r\n");
  370. }
  371. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  372. // 设置QOS为1至少发送1次
  373. // sprintf(command,"AT+QMTCFG=\"will\",%d,1,1,0,255,255\r\n", client_idx);
  374. // EC800M_SendCommand(command);
  375. //
  376. // if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  377. //// printf("Data receiving mode set successfully.\r\n");
  378. // }else{
  379. // errrCnt++;
  380. //// printf("Failed to set data receiving mode\r\n");
  381. // }
  382. //
  383. // memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  384. //
  385. // if(errrCnt == 0){
  386. // linkStep = 11;
  387. // }else{
  388. // errrCnt = 0;
  389. // }
  390. // 为模块打开一个网络
  391. sprintf(command,"AT+QMTOPEN=0,\"%s\",%d\r\n", s_ec800Date.ip, s_ec800Date.port);
  392. EC800M_SendCommand(command);
  393. temp = Accept_and_Compare_Str(AT_RESP_QMTOPEN);
  394. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  395. if (temp == 1) {
  396. errrCnt = 0;
  397. // printf("Successfully opened a network for the module\r\n");
  398. }else{
  399. errrCnt++;
  400. // printf("Failed to open a network for the module\r\n");
  401. }
  402. // 连接MQTT服务器
  403. sprintf(command,"AT+QMTCONN=0,%s,%s,%s\r\n",s_ec800Date.clientid, s_ec800Date.username, s_ec800Date.password);
  404. EC800M_SendCommand(command);
  405. if (Accept_and_Compare_Str(AT_RESP_QMTCONN) == 1) {
  406. errrCnt = 0;
  407. // printf("Successfully connected to the MQTT server\r\n");
  408. }else{
  409. errrCnt++;
  410. // printf("Failed to connect to the MQTT server\r\n");
  411. }
  412. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  413. // 返回正常,则进入下一步,否则判断错误次数,进行重连
  414. linkStep = (errrCnt == 0) ? 13 : ((errrCnt > task_upload_times_2s) ? 0 : linkStep);
  415. break;
  416. default: break;
  417. }
  418. }
  419. /**
  420. * @brief EC800M初始化GNSS
  421. * @param NONE
  422. * @note
  423. * @retval 无
  424. */
  425. uint8_t gnssStep = 0;
  426. void EC800_gnss_init(void){
  427. static char errrCnt = 0; // 错误计数
  428. switch(gnssStep){
  429. case 0:
  430. // 通过调试串口输出NMEA语句
  431. EC800M_SendCommand(AT_QGPSCFG_out_port);
  432. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  433. errrCnt = 0;
  434. // printf("Outputting NMEA Sentences via Serial Debugging\r\n");
  435. }else{
  436. errrCnt++;
  437. // printf("The NMEA sentence output is set incorrectly\r\n");
  438. }
  439. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  440. // 启用/禁用通过 AT+QGPSGNMEA 获取 NMEA 语句
  441. EC800M_SendCommand(AT_QGPSCFG_nmeasrc);
  442. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  443. errrCnt = 0;
  444. // printf("Enabling NMEA sentence retrieval via AT+QGPSGNMEA\r\n");
  445. }else{
  446. errrCnt++;
  447. // printf("Failed to enable retrieving NMEA sentences via AT+QGPSGNMEA\r\n");
  448. }
  449. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  450. // 配置 NMEA 语句的输出类型 为 所有 格式
  451. EC800M_SendCommand(AT_QGPSCFG_gpsnmeatype);
  452. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  453. errrCnt = 0;
  454. // printf("Configuring the output type of NMEA sentences to all formats\r\n");
  455. }else{
  456. errrCnt++;
  457. // printf("Failed to configure the output type of NMEA sentences to all formats\r\n");
  458. }
  459. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  460. // 配置支持的 GNSS 卫星导航系统为 GPS + BeiDou
  461. EC800M_SendCommand(AT_QGPSCFG_gnssconfig);
  462. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  463. errrCnt = 0;
  464. // printf("Configuring the supported GNSS satellite navigation systems to GPS+BeiDou\r\n");
  465. }else{
  466. errrCnt++;
  467. // printf("Failed to configure the supported GNSS satellite navigation systems to GPS+BeiDou\r\n");
  468. }
  469. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  470. // 禁用 GNSS 自启动
  471. EC800M_SendCommand(AT_QGPSCFG_autogps);
  472. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  473. errrCnt = 0;
  474. // printf("Disable GNSS auto-start\r\n");
  475. }else{
  476. errrCnt++;
  477. // printf("Failed to disable GNSS auto-start\r\n");
  478. }
  479. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  480. // 启用 AP-Flash 快速热启动功能
  481. EC800M_SendCommand(AT_QGPSCFG_apflash);
  482. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  483. errrCnt = 0;
  484. // printf("Disable AP-Flash quick start function\r\n");
  485. }else{
  486. errrCnt++;
  487. // printf("Failed to disable AP-Flash quick start function\r\n");
  488. }
  489. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  490. // 关闭 GNSS
  491. EC800M_SendCommand(AT_QGPS_0);
  492. if (Accept_and_Compare_Str(AT_RESP_OK) != 3) {
  493. errrCnt = 0;
  494. // printf("Turn off the GNSS module\r\n");
  495. }else{
  496. errrCnt++;
  497. // printf("Failed to turn off the GNSS module\r\n");
  498. }
  499. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  500. // 打开 GNSS
  501. EC800M_SendCommand(AT_QGPS_1);
  502. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  503. errrCnt = 0;
  504. // printf("Turn on the GNSS module\r\n");
  505. }else{
  506. errrCnt++;
  507. // printf("Failed to turn on the GNSS module\r\n");
  508. }
  509. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  510. // 返回正常,则进入下一步,否则判断错误次数,进行重连
  511. gnssStep = (errrCnt == 0) ? 8 : ((errrCnt > task_upload_times_2s) ? 0 : gnssStep);
  512. break;
  513. case 8:
  514. EC800M_SendCommand(AT_QGPSDEL_1);
  515. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  516. errrCnt = 0;
  517. // printf("Turn on the GNSS module\r\n");
  518. }else{
  519. errrCnt++;
  520. // printf("Failed to turn on the GNSS module\r\n");
  521. }
  522. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  523. // 返回正常,则进入下一步,否则判断错误次数,进行重连
  524. gnssStep = (errrCnt == 0) ? 9 : ((errrCnt > task_upload_times_2s) ? 0 : gnssStep);
  525. break;
  526. default:
  527. break;
  528. }
  529. }
  530. //UTC时间转换为任意时区时间,如果是转换为北京时间,timezone传8即可
  531. void utc_to_local_time(nmea_utc_time* utc_time, int8_t timezone, nmea_utc_time* local_time)
  532. {
  533. int year,month,day,hour;
  534. int lastday = 0; //last day of this month 本月天数
  535. int lastlastday = 0; //last day of last month 上个月天数
  536. year = utc_time->year; //utc time
  537. month = utc_time->month;
  538. day = utc_time->date;
  539. hour = utc_time->hour + timezone;
  540. //1月大,2月小,3月大,4月小,5月大,6月小,7月大,8月大,9月小,10月大,11月小,12月大
  541. if(month==1 || month==3 || month==5 || month==7 || month==8 || month==10 || month==12)
  542. {
  543. lastday = 31;//本月天数
  544. lastlastday = 30;//这里应该补上上个月的天数
  545. if(month == 3)
  546. {
  547. if((year%400 == 0)||(year%4 == 0 && year%100 != 0))//if this is lunar year
  548. lastlastday = 29;
  549. else
  550. lastlastday = 28;
  551. }
  552. if(month == 8 || month == 1)//这里应该是8月和1月,因为8月和1月的上一个月(7月和12月)的天数是31天的
  553. lastlastday = 31;
  554. }
  555. else if(month == 4 || month == 6 || month == 9 || month == 11)
  556. {
  557. lastday = 30;
  558. lastlastday = 31;
  559. }
  560. else
  561. {
  562. lastlastday = 31;
  563. if((year%400 == 0)||(year%4 == 0 && year%100 != 0))
  564. lastday = 29;
  565. else
  566. lastday = 28;
  567. }
  568. if(hour >= 24)// if >24, day+1
  569. {
  570. hour -= 24;
  571. day += 1;
  572. if(day > lastday)// next month, day-lastday of this month
  573. {
  574. day -= lastday;
  575. month += 1;
  576. if(month > 12)// next year, month-12
  577. {
  578. month -= 12;
  579. year += 1;
  580. }
  581. }
  582. }
  583. if(hour < 0)// if <0, day-1
  584. {
  585. hour += 24;
  586. day -= 1;
  587. if(day < 1)// month-1, day=last day of last month
  588. {
  589. day = lastlastday;
  590. month -= 1;
  591. if(month < 1)// last year, month=12
  592. {
  593. month = 12;
  594. year -= 1;
  595. }
  596. }
  597. }
  598. // transfer value to local_time
  599. local_time->year = year;
  600. local_time->month = month;
  601. local_time->date = day;
  602. local_time->hour = hour;
  603. local_time->min = utc_time->min;
  604. local_time->sec = utc_time->sec;
  605. }
  606. /**
  607. * @brief 常用时间格式转时间戳
  608. * @param NONE
  609. * @note 要用utc时间进行转换,如果输入为北京时间的话,需要 hour-8;
  610. * @retval 无
  611. */
  612. uint32_t EC800_mktime (unsigned int year, unsigned int mon,
  613. unsigned int day, unsigned int hour,
  614. unsigned int min, unsigned int sec)
  615. {
  616. if (0 >= (int) (mon -= 2)){ /**//* 1..12 -> 11,12,1..10 */
  617. mon += 12; /**//* Puts Feb last since it has leap day */
  618. year -= 1;
  619. }
  620. return (((
  621. (unsigned long) (year/4 - year/100 + year/400 + 367*mon/12 + day) +
  622. year*365 - 719499
  623. )*24 + hour /**//* now have hours */
  624. )*60 + min /**//* now have minutes */
  625. )*60 + sec; /**//* finally seconds */
  626. }
  627. /**
  628. * @brief 读取GNSS的数据
  629. * @param NONE
  630. * @note
  631. * @retval 0:接收失败 1:接收成功
  632. */
  633. uint8_t EC800_readGnssDate(void){
  634. EC800M_SendCommand(AT_QGPSGNMEA_RMC);
  635. if (Accept_and_Compare_Str(AT_RESP_OK) == 1) {
  636. // printf("Location information received successfully\r\n");
  637. }else{
  638. // printf("Location information reception failed\r\n");
  639. return 0;
  640. }
  641. // printf("Location information:%s\r\n", g_usart4_rx_buf);
  642. NMEA_GNRMC_Analysis(&s_nmea_msg, (uint8_t*)g_usart4_rx_buf);
  643. utc_to_local_time(&(s_nmea_msg.utc), 8, &s_nmea_utc_time);
  644. // printf("timer-%d/%d/%d %d:%d:%d\r\n",s_nmea_utc_time.year,s_nmea_utc_time.month,s_nmea_utc_time.date,s_nmea_utc_time.hour,s_nmea_utc_time.min,s_nmea_utc_time.sec);
  645. s_messageDate.Timestamp = EC800_mktime(s_nmea_utc_time.year,s_nmea_utc_time.month,s_nmea_utc_time.date,s_nmea_utc_time.hour - 8,s_nmea_utc_time.min,s_nmea_utc_time.sec);
  646. g_usart4_rx_sta= 0;
  647. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff
  648. // printf("latitude:%d%d--longitude:%d%d\r\n", s_nmea_msg.latitude, s_nmea_msg.nshemi, s_nmea_msg.longitude, s_nmea_msg.ewhemi);
  649. /* 尝试获取互斥量,等待无限长时间 */
  650. if(osMutexAcquire(s_messageDate_locationHandle, 100) == osOK)
  651. {
  652. /* 安全地访问s_rs485RecDate结构体 */
  653. s_messageDate.latitude = s_nmea_msg.latitude;
  654. s_messageDate.nshemi = s_nmea_msg.nshemi;
  655. s_messageDate.longitude = s_nmea_msg.longitude;
  656. s_messageDate.ewhemi = s_nmea_msg.ewhemi;
  657. /* 访问完成,释放互斥量 */
  658. osMutexRelease(s_messageDate_locationHandle);
  659. }
  660. return 1;
  661. }
  662. /**
  663. * @brief EC800M订阅主题
  664. * @param topic1: 订阅的主题名称1字符串形式
  665. * @param topic2: 订阅的主题名称2字符串形式
  666. * @note
  667. * @retval 无
  668. */
  669. uint8_t EC800_subscribeToTopic(const char* topic1){
  670. char command[100] = {0};
  671. uint8_t recTemp = 0;
  672. sprintf(command, "AT+QMTSUB=0,1,\"%s\",0\r\n", topic1);
  673. EC800M_SendCommand(command);
  674. recTemp = Accept_and_Compare_Str(AT_RESP_QMTSUB);
  675. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  676. if (recTemp == 1) {
  677. // printf("Subscription to the topic successful\r\n");
  678. return 1;
  679. }else if (recTemp == 2){
  680. // printf("Subscription to the topic failed\r\n");
  681. return 0;
  682. }
  683. return 0;
  684. }
  685. /**
  686. * @brief EC800M发布消息
  687. * @param topic: 消息发布的主题 字符串形式
  688. * @param message: 发布的消息 字符串形式
  689. * @param len: 发布消息的字节长度
  690. * @note
  691. * @retval 无
  692. */
  693. uint8_t EC800_publishMessage(const char* topic, const char* message, uint16_t len){
  694. char command[100] = {0};
  695. char* responseCmd = ">";
  696. static uint8_t publishStep = 0;
  697. uint8_t recBack = 0;
  698. switch(publishStep){
  699. case 0:
  700. sprintf(command,"AT+QMTPUBEX=0,0,0,0,\"%s\",%d\r\n",topic,len);
  701. EC800M_SendCommand(command);
  702. if (Accept_and_Compare_Str(responseCmd) == 1) {
  703. // printf("The topic has been linked\r\n");
  704. publishStep = 1;
  705. }else{
  706. // printf("The topic link failed\r\n");
  707. publishStep = 0;
  708. }
  709. // break;
  710. case 1:
  711. EC800M_SendCommand(message);
  712. recBack = Accept_and_Compare_Str(AT_RESP_QMTPUBEX);
  713. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清空输入缓冲区
  714. if (recBack == 1) {
  715. publishStep = 0;
  716. // printf("The message has been successfully posted\r\n");
  717. }else{
  718. // printf("Message publication failed\r\n");
  719. publishStep = 0;
  720. }
  721. break;
  722. default:
  723. break;
  724. }
  725. return recBack;
  726. }
  727. // 将uint8_t数组中的ASCII码数据转换为字符串的函数
  728. void uint8ArrayToAsciiString(const uint8_t* array, size_t length, char* str) {
  729. for (size_t i = 0; i < length; ++i) {
  730. str[i] = (char)array[i]; // 直接将每个字节转换为字符
  731. }
  732. str[length] = '\0'; // 添加字符串结束符
  733. }
  734. /**
  735. * @brief 登录 topic
  736. * @param NONE
  737. * @note topic 101
  738. * @retval 无
  739. */
  740. uint8_t Login_Topic(void){
  741. cJSON *root = NULL;
  742. char *jsonString = NULL;
  743. uint8_t temp = 0;
  744. char command[50] = {0};
  745. // 定义对象 { }
  746. root = cJSON_CreateObject();
  747. // 插入元素,对应 键值对
  748. cJSON_AddItemToObject(root, "msgType", cJSON_CreateString("json"));
  749. cJSON_AddItemToObject(root, "imsi", cJSON_CreateString(s_messageDate.imsi));
  750. cJSON_AddItemToObject(root, "hardVersion", cJSON_CreateString(HARD_VERSION));
  751. cJSON_AddItemToObject(root, "softVersion", cJSON_CreateString(SOFT_VERSION));
  752. sprintf(command, "%x%x%x", s_messageDate.devId[0], s_messageDate.devId[1], s_messageDate.devId[2]);
  753. cJSON_AddItemToObject(root, "devId", cJSON_CreateString(command));
  754. memset(command, 0, 50);
  755. uint8ArrayToAsciiString(s_messageDate.VIN, sizeof(s_messageDate.VIN), command);
  756. cJSON_AddItemToObject(root, "hardwareId", cJSON_CreateString(command));
  757. cJSON_AddItemToObject(root, "protocolVersion", cJSON_CreateString(PROTOCOL_VERSION));
  758. cJSON_AddItemToObject(root, "devType", cJSON_CreateNumber(DEV_TYPE));
  759. cJSON_AddItemToObject(root, "txnNo", cJSON_CreateNumber(s_messageDate.Timestamp));
  760. // 将 JSON 对象转换为字符串
  761. jsonString = cJSON_Print(root);
  762. cJSON_Delete(root);
  763. temp = EC800_publishMessage("toServer/mqtt/101", jsonString, strlen(jsonString));
  764. free(jsonString);
  765. return temp;
  766. }
  767. /**
  768. * @brief 下位机请求围栏数据
  769. * @param NONE
  770. * @note topic 604
  771. * @retval 无
  772. */
  773. uint8_t requesting_Fence_Data(void){
  774. cJSON *root = NULL;
  775. char *jsonString = NULL;
  776. uint8_t temp = 0;
  777. char command[50] = {0};
  778. // 定义对象 { }
  779. root = cJSON_CreateObject();
  780. // 插入元素,对应 键值对
  781. cJSON_AddItemToObject(root, "msgType", cJSON_CreateString("json"));
  782. cJSON_AddItemToObject(root, "imsi", cJSON_CreateString(s_messageDate.imsi));
  783. cJSON_AddItemToObject(root, "hardVersion", cJSON_CreateString(HARD_VERSION));
  784. cJSON_AddItemToObject(root, "softVersion", cJSON_CreateString(SOFT_VERSION));
  785. sprintf(command, "%x%x%x", s_messageDate.devId[0], s_messageDate.devId[1], s_messageDate.devId[2]);
  786. cJSON_AddItemToObject(root, "devId", cJSON_CreateString(command));
  787. memset(command, 0, 50);
  788. uint8ArrayToAsciiString(s_messageDate.VIN, sizeof(s_messageDate.VIN), command);
  789. cJSON_AddItemToObject(root, "vin", cJSON_CreateString(command));
  790. cJSON_AddItemToObject(root, "protocolVersion", cJSON_CreateString(PROTOCOL_VERSION));
  791. cJSON_AddItemToObject(root, "txnNo", cJSON_CreateNumber(s_messageDate.Timestamp));
  792. cJSON_AddItemToObject(root, "devType", cJSON_CreateNumber(DEV_TYPE));
  793. // 将 JSON 对象转换为字符串
  794. jsonString = cJSON_Print(root);
  795. cJSON_Delete(root);
  796. temp = EC800_publishMessage("toServer/mqtt/604", jsonString, strlen(jsonString));
  797. free(jsonString);
  798. return temp;
  799. }
  800. /**
  801. * @brief 创建单个报警项的JSON对象
  802. * @param NONE
  803. * @note topic toServer/mqtt/501
  804. * @retval 无
  805. */
  806. cJSON* createAlarmItem(const char* id, uint32_t alarmTime, const char* alarmDesc, int alarmFlag) {
  807. cJSON* alarmItem = cJSON_CreateObject();
  808. cJSON_AddStringToObject(alarmItem, "id", id);
  809. cJSON_AddNumberToObject(alarmItem, "alarmTime", alarmTime);
  810. cJSON_AddStringToObject(alarmItem, "alarmDesc", alarmDesc);
  811. cJSON_AddNumberToObject(alarmItem, "alarmFlag", alarmFlag);
  812. return alarmItem;
  813. }
  814. /**
  815. * @brief 根据Malfunction的值插入故障元素
  816. * @param NONE
  817. * @note topic toServer/mqtt/501
  818. * @retval 无
  819. */
  820. void insertFaultItems(cJSON* alarmList, uint32_t Malfunction, uint32_t fault_timeStamp) {
  821. for (int i = 0; i < 32; i++) {
  822. if (Malfunction & (1 << i)) {
  823. // 确保i在数组的有效范围内
  824. if (i < 12) {
  825. cJSON_AddItemToArray(alarmList, createAlarmItem(faults[i].errid, fault_timeStamp, faults[i].errorInfo, 1));
  826. }
  827. }
  828. }
  829. }
  830. /**
  831. * @brief 故障数据上传
  832. * @param NONE
  833. * @note topic toServer/mqtt/501
  834. * @retval 无
  835. */
  836. uint8_t EC800_uploadFaultReport(uint32_t fault_time_stamp, uint32_t fault_Code){
  837. cJSON *root = NULL;
  838. char *jsonString = NULL;
  839. uint8_t temp = 0;
  840. char command[50] = {0};
  841. // 定义对象 { }
  842. root = cJSON_CreateObject();
  843. // 插入元素,对应 键值对
  844. cJSON_AddItemToObject(root, "msgType", cJSON_CreateString("json"));
  845. sprintf(command, "%x%x%x", s_messageDate.devId[0], s_messageDate.devId[1], s_messageDate.devId[2]);
  846. cJSON_AddItemToObject(root, "devId", cJSON_CreateString(command));
  847. cJSON_AddItemToObject(root, "txnNo", cJSON_CreateNumber(s_messageDate.Timestamp));
  848. cJSON_AddItemToObject(root, "devType", cJSON_CreateNumber(DEV_TYPE));
  849. // 插入故障元素
  850. cJSON* alarmList = cJSON_CreateArray();
  851. insertFaultItems(alarmList, fault_Code, fault_time_stamp);
  852. cJSON_AddItemToObject(root, "alarmList", alarmList);
  853. // 将 JSON 对象转换为字符串
  854. jsonString = cJSON_Print(root);
  855. cJSON_Delete(root);
  856. temp = EC800_publishMessage("toServer/mqtt/501", jsonString, strlen(jsonString));
  857. free(jsonString);
  858. return temp;
  859. }
  860. /**
  861. * @brief EC800M与服务器进行时间对时
  862. * @note
  863. * @retval 无
  864. */
  865. uint8_t EC800_time_calibration(void){
  866. cJSON *root = NULL;
  867. char *jsonString = NULL;
  868. uint8_t temp = 0;
  869. char command[50] = {0};
  870. // 定义对象 { }
  871. root = cJSON_CreateObject();
  872. // 插入元素,对应 键值对
  873. cJSON_AddItemToObject(root, "msgType", cJSON_CreateString("json"));
  874. cJSON_AddItemToObject(root, "imsi", cJSON_CreateString(s_messageDate.imsi));
  875. cJSON_AddItemToObject(root, "hardVersion", cJSON_CreateString(HARD_VERSION));
  876. cJSON_AddItemToObject(root, "softVersion", cJSON_CreateString(SOFT_VERSION));
  877. sprintf(command, "%x%x%x", s_messageDate.devId[0], s_messageDate.devId[1], s_messageDate.devId[2]);
  878. cJSON_AddItemToObject(root, "devId", cJSON_CreateString(command));
  879. cJSON_AddItemToObject(root, "protocolVersion", cJSON_CreateString(PROTOCOL_VERSION));
  880. cJSON_AddItemToObject(root, "txnNo", cJSON_CreateNumber(s_messageDate.Timestamp));
  881. cJSON_AddItemToObject(root, "devType", cJSON_CreateNumber(DEV_TYPE));
  882. // 将 JSON 对象转换为字符串
  883. jsonString = cJSON_Print(root);
  884. cJSON_Delete(root);
  885. temp = EC800_publishMessage("toServer/mqtt/105", jsonString, strlen(jsonString));
  886. free(jsonString);
  887. return temp;
  888. }
  889. /**
  890. * @brief 将服务器响应的字符串中的年月日进行分离
  891. * @note
  892. * @retval 无
  893. */
  894. void parseServerTime(char* str){
  895. char year[5];
  896. char month[3];
  897. char day[3];
  898. char hour[3];
  899. char minute[3];
  900. char second[3];
  901. strncpy(year, str, 4);
  902. year[4] = '\0';
  903. strncpy(month, str + 4, 2);
  904. month[2] = '\0';
  905. strncpy(day, str + 6, 2);
  906. day[2] = '\0';
  907. strncpy(hour, str + 8, 2);
  908. hour[2] = '\0';
  909. strncpy(minute, str + 10, 2);
  910. minute[2] = '\0';
  911. strncpy(second, str + 12, 2);
  912. second[2] = '\0';
  913. s_recDate.year = atoi(year);
  914. s_recDate.month = atoi(month);
  915. s_recDate.day = atoi(day);
  916. s_recDate.hour = atoi(hour);
  917. s_recDate.minute = atoi(minute);
  918. s_recDate.sec = atoi(second);
  919. s_messageDate.Timestamp = EC800_mktime(s_recDate.year,s_recDate.month,s_recDate.day,s_recDate.hour - 8,s_recDate.minute,s_recDate.sec);
  920. // printf("Year (int): %d\n", s_recDate.year);
  921. // printf("Month (int): %d\n", s_recDate.month);
  922. // printf("Day (int): %d\n", s_recDate.day);
  923. // printf("Hour (int): %d\n", s_recDate.hour);
  924. // printf("Minute (int): %d\n", s_recDate.minute);
  925. // printf("Second (int): %d\n", s_recDate.sec);
  926. }
  927. /**
  928. * @brief 解析对时数据帧的响应
  929. * @note
  930. * @retval 无
  931. */
  932. void EC800_parseRespondTime(cJSON *root, cJSON *item){
  933. uint8_t temp = 0;
  934. // 获取"resultCode"字段的值
  935. item = cJSON_GetObjectItem(root, "resultCode");
  936. if (item == NULL) {
  937. // printf("Field \"resultCode\" not found\n");
  938. }else{
  939. // 打印"resultCode"字段的值
  940. // printf("resultCode: %d\n", item->valueint);
  941. if((item->valueint) == 1){
  942. // printf("The upload of synchronized data was successful.\n");
  943. temp = 1; // 上传成功
  944. }else{
  945. // printf("The upload of synchronized data has failed.\n");
  946. }
  947. }
  948. if(temp == 1){
  949. item = cJSON_GetObjectItem(root, "serverTime");
  950. if (item == NULL) {
  951. // printf("Field \"serverTime\" not found\n");
  952. }else{
  953. // 打印"serverTime"字段的值
  954. // printf("serverTime: %s\n", item->valuestring);
  955. parseServerTime(item->valuestring);
  956. }
  957. }
  958. }
  959. /**
  960. * @brief EC800M上传实时数据
  961. * @note
  962. * @retval 无
  963. */
  964. uint8_t EC800_uploadRealDate(void){
  965. cJSON *root = NULL;
  966. char *jsonString = NULL;
  967. cJSON *rt000 = NULL;
  968. cJSON *rt000Object1 = NULL;
  969. char command[100] = {0};
  970. uint32_t temp = 0; // 临时存储
  971. // 定义对象 { }
  972. root = cJSON_CreateObject();
  973. //
  974. // 插入元素,对应 键值对
  975. cJSON_AddItemToObject(root, "msgType", cJSON_CreateString("json"));
  976. cJSON_AddItemToObject(root, "imsi", cJSON_CreateString(s_messageDate.imsi));
  977. cJSON_AddItemToObject(root, "hardVersion", cJSON_CreateString(HARD_VERSION));
  978. cJSON_AddItemToObject(root, "softVersion", cJSON_CreateString(SOFT_VERSION));
  979. sprintf(command, "%x%x%x", s_messageDate.devId[0], s_messageDate.devId[1], s_messageDate.devId[2]);
  980. cJSON_AddItemToObject(root, "devId", cJSON_CreateString(command));
  981. cJSON_AddItemToObject(root, "protocolVersion", cJSON_CreateString(PROTOCOL_VERSION));
  982. cJSON_AddItemToObject(root, "txnNo", cJSON_CreateNumber(s_messageDate.Timestamp));
  983. cJSON_AddItemToObject(root, "devType", cJSON_CreateNumber(DEV_TYPE));
  984. // 定义 { } 对象
  985. rt000Object1 = cJSON_CreateObject();
  986. cJSON_AddItemToObject(rt000Object1, "rt003", cJSON_CreateNumber(s_messageDate.vehicleStatus));
  987. cJSON_AddItemToObject(rt000Object1, "rt025", cJSON_CreateNumber((float)s_messageDate.demandVol / 10));
  988. cJSON_AddItemToObject(rt000Object1, "rt026", cJSON_CreateNumber((float)s_messageDate.demandCur / 10));
  989. // 判断是否不为空
  990. if(s_messageDate.VIN[0] != NULL){
  991. memset(command, 0, 50);
  992. uint8ArrayToAsciiString(s_messageDate.VIN, sizeof(s_messageDate.VIN), command);
  993. cJSON_AddItemToObject(rt000Object1, "rt027", cJSON_CreateString(command));
  994. }
  995. double point1Lat = (double)s_messageDate.latitude / 100000;
  996. double point1Lng = (double)s_messageDate.longitude / 100000;
  997. memset(command, 0, 50);
  998. snprintf(command, sizeof(command), "%.5f,%.5f", point1Lng, point1Lat);
  999. cJSON_AddItemToObject(rt000Object1, "rt028", cJSON_CreateString(command));
  1000. cJSON_AddItemToObject(rt000Object1, "rt029", cJSON_CreateNumber(s_messageDate.drivDirection));
  1001. cJSON_AddItemToObject(rt000Object1, "rt030", cJSON_CreateNumber(s_messageDate.vehicleSpeed));
  1002. temp = 0;
  1003. temp = (s_messageDate.dailyDrivTime >> 8) * 60 + (s_messageDate.dailyDrivTime & 0x00ff); // 转换单位为min
  1004. cJSON_AddItemToObject(rt000Object1, "rt031", cJSON_CreateNumber(temp));
  1005. cJSON_AddItemToObject(rt000Object1, "rt032", cJSON_CreateNumber(s_messageDate.dailyDrivMileage / 10));
  1006. temp = 0;
  1007. temp = ((s_messageDate.accTotalDrivTime_day * 24) + (s_messageDate.accTotalDrivTime_h_min >> 8)) * 60 + (s_messageDate.accTotalDrivTime_h_min & 0x00ff); // 转换单位为min
  1008. cJSON_AddItemToObject(rt000Object1, "rt033", cJSON_CreateNumber(temp));
  1009. cJSON_AddItemToObject(rt000Object1, "rt034", cJSON_CreateNumber((s_messageDate.accTotalMileage_h << 16) + s_messageDate.accTotalMileage_l));
  1010. temp = 0;
  1011. temp = (s_messageDate.runTime >> 8) * 60 + (s_messageDate.runTime & 0x00ff);
  1012. cJSON_AddItemToObject(rt000Object1, "rt035", cJSON_CreateNumber(temp));
  1013. // test use 发送转弯标志
  1014. // cJSON_AddItemToObject(rt000Object1, "rt036", cJSON_CreateNumber(s_global_par.moduleSig));
  1015. // 定义 [ ] 数组
  1016. rt000 = cJSON_CreateArray();
  1017. // 往数组中添加元素
  1018. cJSON_AddItemToArray(rt000, rt000Object1);
  1019. // 将子项插入根项中
  1020. cJSON_AddItemToObject(root, "rt000", rt000);
  1021. //
  1022. // 将 JSON 对象转换为字符串
  1023. jsonString = cJSON_Print(root);
  1024. cJSON_Delete(root);
  1025. temp = 0;
  1026. temp = EC800_publishMessage("toServer/mqtt/201", jsonString, strlen(jsonString));
  1027. free(jsonString);
  1028. return temp;
  1029. }
  1030. /**
  1031. * @brief 解析实时数据响应
  1032. * @note
  1033. * @retval 无
  1034. */
  1035. void EC800_respondRealDate(cJSON *root, cJSON *item){
  1036. // 获取"name"字段的值
  1037. item = cJSON_GetObjectItem(root, "resultCode");
  1038. if (item == NULL) {
  1039. // printf("Field \"resultCode\" not found\n");
  1040. }else{
  1041. // 打印"name"字段的值
  1042. // printf("resultCode: %d\n", item->valueint);
  1043. if((item->valueint) == 1){
  1044. // printf("Uploaded real-time data successfully\n");
  1045. }else{
  1046. // printf("The upload of real-time data has failed\n");
  1047. }
  1048. }
  1049. }
  1050. /**
  1051. * @brief 解析升級数据
  1052. * @note
  1053. * @retval 无
  1054. */
  1055. void EC800_respondUpdateDate(cJSON *root, cJSON *item, ftpInfo *p_ftpInfo){
  1056. /* 获取address对象 */
  1057. cJSON *hardwareUpdate = cJSON_GetObjectItem(root, "paramList");
  1058. if (hardwareUpdate == NULL) {
  1059. // printf("Failed to parse paramList data\n");
  1060. return ;
  1061. }
  1062. // 获取"name"字段的值
  1063. item = cJSON_GetObjectItem(hardwareUpdate, "function");
  1064. if (item == NULL) {
  1065. // printf("Field \"update\" not found\n");
  1066. }else{
  1067. // 打印"name"字段的值
  1068. // printf("function: %d\n", item->valueint);
  1069. // 1:表示固件更新 当后台下发升级指令,并且行车状态为静止态允许更新固件
  1070. if(((item->valueint) == 1) && (s_comData.driveStatus == 0x02)){
  1071. s_ec800Date.hardwareUpdate = 1; // 更新固件
  1072. // printf("update begin\n");
  1073. }else{
  1074. // printf("no update\n");
  1075. }
  1076. }
  1077. // 获取"ftpAddr"字段的值
  1078. item = cJSON_GetObjectItem(hardwareUpdate, "ftpAddr");
  1079. if (item == NULL) {
  1080. // printf("Field \"ftpAddr\" not found\n");
  1081. }else{
  1082. // printf("ftpAddr: %s\n", item->valuestring);
  1083. /* 复制字符串到ftpInfo结构体的ftpAddr成员 */
  1084. strncpy(p_ftpInfo->ftpAddr, item->valuestring, sizeof(p_ftpInfo->ftpAddr) - 1);
  1085. /* 确保字符串以空字符结尾 */
  1086. p_ftpInfo->ftpAddr[sizeof(p_ftpInfo->ftpAddr) - 1] = '\0';
  1087. }
  1088. // 获取"ftpPort"字段的值
  1089. item = cJSON_GetObjectItem(hardwareUpdate, "ftpPort");
  1090. if (item == NULL) {
  1091. // printf("Field \"ftpPort\" not found\n");
  1092. }else{
  1093. // 打印"name"字段的值
  1094. // printf("ftpPort: %d\n", item->valueint);
  1095. p_ftpInfo->ftpPort = item->valueint;
  1096. }
  1097. // 获取"account"字段的值
  1098. item = cJSON_GetObjectItem(hardwareUpdate, "account");
  1099. if (item == NULL) {
  1100. // printf("Field \"account\" not found\n");
  1101. }else{
  1102. // printf("account: %s\n", item->valuestring);
  1103. /* 复制字符串到ftpInfo结构体的ftpAddr成员 */
  1104. strncpy(p_ftpInfo->account, item->valuestring, sizeof(p_ftpInfo->ftpAddr) - 1);
  1105. /* 确保字符串以空字符结尾 */
  1106. p_ftpInfo->ftpAddr[sizeof(p_ftpInfo->account) - 1] = '\0';
  1107. }
  1108. // 获取"passWord"字段的值
  1109. item = cJSON_GetObjectItem(hardwareUpdate, "passWord");
  1110. if (item == NULL) {
  1111. // printf("Field \"passWord\" not found\n");
  1112. }else{
  1113. // printf("account: %s\n", item->valuestring);
  1114. /* 复制字符串到ftpInfo结构体的ftpAddr成员 */
  1115. strncpy(p_ftpInfo->passWord, item->valuestring, sizeof(p_ftpInfo->ftpAddr) - 1);
  1116. /* 确保字符串以空字符结尾 */
  1117. p_ftpInfo->ftpAddr[sizeof(p_ftpInfo->passWord) - 1] = '\0';
  1118. }
  1119. // 获取"passWord"字段的值
  1120. item = cJSON_GetObjectItem(hardwareUpdate, "textDirectory");
  1121. if (item == NULL) {
  1122. // printf("Field \"textDirectory\" not found\n");
  1123. }else{
  1124. // printf("textDirectory: %s\n", item->valuestring);
  1125. /* 复制字符串到ftpInfo结构体的ftpAddr成员 */
  1126. strncpy(p_ftpInfo->textDirectory, item->valuestring, sizeof(p_ftpInfo->ftpAddr) - 1);
  1127. /* 确保字符串以空字符结尾 */
  1128. p_ftpInfo->ftpAddr[sizeof(p_ftpInfo->textDirectory) - 1] = '\0';
  1129. }
  1130. // 获取"passWord"字段的值
  1131. item = cJSON_GetObjectItem(hardwareUpdate, "textName");
  1132. if (item == NULL) {
  1133. // printf("Field \"textName\" not found\n");
  1134. }else{
  1135. // printf("textName: %s\n", item->valuestring);
  1136. /* 复制字符串到ftpInfo结构体的ftpAddr成员 */
  1137. strncpy(p_ftpInfo->textName, item->valuestring, sizeof(p_ftpInfo->ftpAddr) - 1);
  1138. /* 确保字符串以空字符结尾 */
  1139. p_ftpInfo->ftpAddr[sizeof(p_ftpInfo->textName) - 1] = '\0';
  1140. }
  1141. }
  1142. /**
  1143. * @brief 解析围栏经纬度数据
  1144. * @note
  1145. * @param root: cJSON 根对象
  1146. * @param Latitude: 纬度数组
  1147. * @param Longitude: 经度数组
  1148. * @retval 成功返回1,失败返回0
  1149. */
  1150. int parse_Latitude_Longitude_Data(cJSON *root, double Latitude[], double Longitude[]) {
  1151. // 确保输入不为空
  1152. if (root == NULL) {
  1153. // printf("Root object is NULL\n");
  1154. return 0;
  1155. }
  1156. // 获取 polygonLat 数组
  1157. cJSON *polygonLat = cJSON_GetObjectItem(root, "polygonLat");
  1158. if (polygonLat == NULL || polygonLat->type != cJSON_Array) {
  1159. // printf("polygonLat is not an array or is missing\n");
  1160. return 0;
  1161. }
  1162. // 获取 polygonLng 数组
  1163. cJSON *polygonLng = cJSON_GetObjectItem(root, "polygonLon");
  1164. if (polygonLng == NULL || polygonLat->type != cJSON_Array) {
  1165. // printf("polygonLng is not an array or is missing\n");
  1166. return 0;
  1167. }
  1168. // 获取数组大小并检查是否匹配和是否超出预定义的最大大小
  1169. int polygonLatSize = cJSON_GetArraySize(polygonLat);
  1170. int polygonLngSize = cJSON_GetArraySize(polygonLng);
  1171. if (polygonLatSize != polygonLngSize || polygonLatSize > REC_COORDINATE_DEPTH) {
  1172. // printf("Array sizes mismatch or exceed maximum allowed size\n");
  1173. return 0;
  1174. }
  1175. // 解析 polygonLat 数组
  1176. for (int i = 0; i < polygonLatSize; ++i) {
  1177. cJSON *latItem = cJSON_GetArrayItem(polygonLat, i);
  1178. if (latItem == NULL || latItem->type != cJSON_Number) {
  1179. // printf("Lat item is not a number or is missing\n");
  1180. return 0;
  1181. }
  1182. Latitude[i] = latItem->valuedouble;
  1183. }
  1184. // 解析 polygonLng 数组
  1185. for (int i = 0; i < polygonLngSize; ++i) {
  1186. cJSON *lngItem = cJSON_GetArrayItem(polygonLng, i);
  1187. if (lngItem == NULL || lngItem->type != cJSON_Number) {
  1188. // printf("Lng item is not a number or is missing\n");
  1189. return 0;
  1190. }
  1191. Longitude[i] = lngItem->valuedouble;
  1192. }
  1193. // // 解析 speedLimit 字段
  1194. // cJSON* speedLimit = cJSON_GetObjectItem(root, "speedLimit");
  1195. // if (speedLimit == NULL) {
  1196. // printf("Field \"speedLimit\" not found\n");
  1197. // return 0;
  1198. // }else{
  1199. // s_param_boot.speed_limit = speedLimit->valueint;
  1200. // }
  1201. //
  1202. // // 解析 overspeedTimeout 字段
  1203. // cJSON* overspeedTimeout = cJSON_GetObjectItem(root, "overspeedTimeout");
  1204. // if (speedLimit == NULL) {
  1205. // printf("Field \"overspeedTimeout\" not found\n");
  1206. // return 0;
  1207. // }else{
  1208. // s_param_boot.overspeed_Timeout = speedLimit->valueint;
  1209. // }
  1210. //
  1211. // // 解析 fenceBreachTimeout 字段
  1212. // cJSON* fenceBreachTimeout = cJSON_GetObjectItem(root, "fenceBreachTimeout");
  1213. // if (speedLimit == NULL) {
  1214. // printf("Field \"fenceBreachTimeout\" not found\n");
  1215. // return 0;
  1216. // }else{
  1217. // s_param_boot.fenceBreach_Timeout = speedLimit->valueint;
  1218. // }
  1219. //
  1220. return 1; // 成功
  1221. }
  1222. /**
  1223. * @brief 解析登录响应
  1224. * @note
  1225. * @return
  1226. */
  1227. void parse_Login_Response(cJSON *root, cJSON *item){
  1228. // 获取"name"字段的值
  1229. item = cJSON_GetObjectItem(root, "resultCode");
  1230. if (item == NULL) {
  1231. // printf("Field \"resultCode\" not found\n");
  1232. }else{
  1233. // 打印"name"字段的值
  1234. // printf("resultCode: %d\n", item->valueint);
  1235. if((item->valueint) == 1){
  1236. s_messageDate.loginResult = 1; // 登录成功
  1237. // printf("Login response data successfully\n");
  1238. }else{
  1239. // printf("Login response has failed\n");
  1240. }
  1241. }
  1242. }
  1243. /**
  1244. * @brief 解析远程控制指令
  1245. * @note
  1246. * @return
  1247. */
  1248. void processRemoteControl(cJSON *root, cJSON *item){
  1249. global_par *p_global_par = &s_global_par;
  1250. // 解析paramList
  1251. cJSON* paramList = cJSON_GetObjectItem(root, "paramList");
  1252. if (cJSON_GetArraySize(paramList) == 0) {
  1253. // printf("paramList is empty\n");
  1254. return;
  1255. }
  1256. cJSON* firstParam = cJSON_GetArrayItem(paramList, 0);
  1257. if (!firstParam) {
  1258. // printf("paramList is empty\n");
  1259. return;
  1260. }
  1261. // 解析paramList中的第一个元素
  1262. cJSON* id = cJSON_GetObjectItem(firstParam, "id");
  1263. if (item == NULL){
  1264. // printf("id is not a string\n");
  1265. return;
  1266. }else{
  1267. // printf("id: %d\n", id->valueint);
  1268. }
  1269. item = cJSON_GetObjectItem(firstParam, "value");
  1270. if (item == NULL){
  1271. // printf("value is not a string\n");
  1272. return;
  1273. }else{
  1274. // printf("value: %d\n", item->valueint);
  1275. }
  1276. // 解析指令
  1277. switch(id->valueint){
  1278. case 0: // 超级权限
  1279. p_global_par->superUser = (item->valueint == 1);
  1280. break;
  1281. case 1: // 更新围栏数据
  1282. p_global_par->fence_update = (item->valueint == 1);
  1283. break;
  1284. case 2: // 车辆限速
  1285. s_param_boot.speed_limit = item->valueint;
  1286. break;
  1287. case 3: // 锁车
  1288. s_param_boot.car_lock_flag = (item->valueint == 1);
  1289. break;
  1290. default: break;
  1291. }
  1292. }
  1293. /**
  1294. * @brief 通信响应解析
  1295. * @param p_ec800Date: ec800Date结构体的指针数据
  1296. * @note
  1297. * @return 当前的控制命令
  1298. */
  1299. short EC800_respondParse(ec800Date *p_ec800Date){
  1300. cJSON *root = NULL;
  1301. cJSON *item = NULL;
  1302. uint8_t rec_back = 0;
  1303. uint16_t cmd = 0;
  1304. // 找到JSON数据的起始位置
  1305. const char* start = strchr(g_usart4_rx_buf, '{');
  1306. if (start == NULL) {
  1307. // printf("JSON data not found\n");
  1308. cJSON_Delete(root);
  1309. return 0;
  1310. }
  1311. // 解析JSON数据
  1312. root = cJSON_Parse(start);
  1313. if (root == NULL) {
  1314. // printf("Failed to parse JSON data\n");
  1315. cJSON_Delete(root);
  1316. return 0;
  1317. }
  1318. // 获取"controlCode"字段的值
  1319. item = cJSON_GetObjectItem(root, "controlCode");
  1320. if (item == NULL) {
  1321. // printf("Field \"devId\" not found\n");
  1322. }else{
  1323. // 打印"controlCode"字段的值
  1324. // printf("controlCode: %d\n", item->valueint);
  1325. cmd = item->valueint;
  1326. }
  1327. // 解析对应命令的对应数据
  1328. switch(cmd){
  1329. case 102:
  1330. parse_Login_Response(root, item);
  1331. break;
  1332. case 106:
  1333. EC800_parseRespondTime(root, item);
  1334. break;
  1335. case 202:
  1336. EC800_respondRealDate(root, item);
  1337. break;
  1338. case 602:
  1339. EC800_respondUpdateDate(root, item, &s_ftpInfo);
  1340. break;
  1341. case 605:
  1342. rec_back = parse_Latitude_Longitude_Data(root, polygonLat, polygonLng);
  1343. if(rec_back == 1){ // 接收成功
  1344. p_ec800Date->fenceRecSuccess = 1;
  1345. }
  1346. break;
  1347. case 502: // 告警响应
  1348. break;
  1349. case 601: // 远程控制
  1350. processRemoteControl(root, item);
  1351. break;
  1352. default :
  1353. break;
  1354. }
  1355. cJSON_Delete(root);
  1356. return (cmd);
  1357. }
  1358. //----------------------------------------------------------------------------------------------
  1359. // 第二部分 应用部分的外部接口
  1360. uint8_t stateStep = 0;
  1361. uint16_t timesCnt = 0; // 实时发送计数器
  1362. uint8_t respondSt = 0; // 响应状态指示 1: 为等待响应 2:成功响应
  1363. /**
  1364. * @brief EC800M状态转换与使用
  1365. * @note
  1366. * @retval 无
  1367. */
  1368. void EC800_stateTransition_use(void){
  1369. uint16_t right = 1; // 返回是否为正确
  1370. ec800Date *p_ec800Date = &s_ec800Date;
  1371. char command[100] = {0};
  1372. static uint8_t interCnt = 0; // 当前区间进入次数
  1373. global_par *p_global_par = &s_global_par;
  1374. static char errrCnt = 0; // 错误计数
  1375. switch(stateStep){
  1376. case 0: // 初始化模块
  1377. interCnt++;
  1378. EC800M_link();
  1379. // 初始化连接MQTT失败
  1380. if(interCnt > 15){
  1381. interCnt = 16;
  1382. p_global_par->InitFaultFlag_4G = 1;
  1383. }
  1384. // 初始化成功
  1385. if(linkStep == 13){
  1386. interCnt = 0; // 清除进入计数
  1387. p_global_par->InitFaultFlag_4G = 0;
  1388. stateStep = 1;
  1389. p_ec800Date->ec800InitFlag = 1; // 初始化完成
  1390. }else{
  1391. p_ec800Date->ec800InitFlag = 0; // 初始化未完成
  1392. }
  1393. break;
  1394. case 1: // 初始化GNSS
  1395. interCnt++;
  1396. EC800_gnss_init();
  1397. // 初始化GNSS失败
  1398. if(interCnt > 12){
  1399. interCnt = 16;
  1400. p_global_par->InitFaultFlag_4G = 1;
  1401. }
  1402. if(gnssStep == 8){
  1403. stateStep = 2;
  1404. interCnt = 0; // 清除进入计数
  1405. p_global_par->InitFaultFlag_4G = 0;
  1406. }
  1407. break;
  1408. case 2: // 订阅主题
  1409. sprintf(command, "toclient/%d/%x%x%x", DEV_TYPE, s_messageDate.devId[0], s_messageDate.devId[1], s_messageDate.devId[2]);
  1410. right = EC800_subscribeToTopic(command);
  1411. // 模块应答错误
  1412. if (right != 1) {
  1413. if (++errrCnt > task_upload_times_2s) {
  1414. errrCnt = task_upload_times_2s;
  1415. p_global_par->subscribe_fail = 1;
  1416. }
  1417. } else { // 模块应答正确
  1418. errrCnt = 0;
  1419. p_global_par->subscribe_fail = 0;
  1420. stateStep = 3;
  1421. }
  1422. break;
  1423. case 3: // 登录服务器主题
  1424. right = Login_Topic();
  1425. // 模块应答错误
  1426. if (right != 1) {
  1427. if (++errrCnt > task_upload_times_2s) {
  1428. errrCnt = task_upload_times_2s;
  1429. p_global_par->publish_fail = 1;
  1430. }
  1431. } else { // 模块应答正确
  1432. errrCnt = 0;
  1433. p_global_par->publish_fail = 0;
  1434. respondSt = 1; // 等待响应
  1435. stateStep = 8; // 去步骤6等待登录响应 收到登录响应后,发布实时消息
  1436. }
  1437. break;
  1438. case 4: // 下位机请求围栏数据
  1439. if(s_comData.vinRecSuccess == 1){ // 成功接收到车辆vin
  1440. right = requesting_Fence_Data();
  1441. // 模块应答错误
  1442. if (right != 1) {
  1443. if (++errrCnt > task_upload_times_2s) {
  1444. errrCnt = task_upload_times_2s;
  1445. p_global_par->publish_fail = 1;
  1446. }
  1447. } else { // 模块应答正确
  1448. errrCnt = 0;
  1449. p_global_par->publish_fail = 0;
  1450. respondSt = 1; // 等待响应
  1451. stateStep = 8; // 去步骤6等待登录响应 收到登录响应后,发布实时消息
  1452. }
  1453. }else{ // 初始化时与车通信故障 跳转上传实时信息,上报故障,跳过围栏获取
  1454. // if(BIT_CHECK(s_comData.Malfunction, com485)){
  1455. stateStep = 5;
  1456. // }
  1457. }
  1458. // 后台要求重新请求围栏数据,请求完成,清除标志
  1459. if(p_global_par->fence_update == 1){
  1460. p_global_par->fence_update = 0;
  1461. }
  1462. break;
  1463. case 5: // 与服务器对时
  1464. right = EC800_time_calibration();
  1465. // 模块应答错误
  1466. if (right != 1) {
  1467. if (++errrCnt > task_upload_times_2s) {
  1468. errrCnt = task_upload_times_2s;
  1469. p_global_par->publish_fail = 1;
  1470. }
  1471. } else { // 模块应答正确
  1472. errrCnt = 0;
  1473. p_global_par->publish_fail = 0;
  1474. respondSt = 1; // 等待响应
  1475. stateStep = 8; // 去步骤6等待登录响应 收到登录响应后,发布实时消息
  1476. }
  1477. break;
  1478. case 6:
  1479. // 检测模块信号
  1480. // ModuleSigCheck(g_usart4_rx_buf);
  1481. // 获取定位信息
  1482. right = EC800_readGnssDate();
  1483. // 模块应答错误
  1484. if (right != 1) {
  1485. if (++errrCnt > task_upload_times_2s) {
  1486. errrCnt = task_upload_times_2s;
  1487. p_global_par->get_location_error = 1;
  1488. }
  1489. } else { // 模块应答正确
  1490. errrCnt = 0;
  1491. p_global_par->get_location_error = 0;
  1492. stateStep = 7; // 去步骤6等待登录响应 收到登录响应后,发布实时消息
  1493. }
  1494. // 时间数据是否获取到
  1495. s_global_par.time_stamp_flag = (right == 1);
  1496. // 没有获取到定位信息 重复获取三次,网络存在,但gps信息不存在的情况
  1497. if((s_messageDate.latitude == 0) && (s_messageDate.longitude == 0)){
  1498. if(p_global_par->positionErrorCnt < 3){
  1499. p_global_par->positionErrorCnt++;
  1500. }else{
  1501. p_global_par->positionErrorCnt = 3;
  1502. stateStep = 7;
  1503. }
  1504. }else{
  1505. p_global_par->positionErrorCnt = 0;
  1506. stateStep = 7;
  1507. }
  1508. break;
  1509. case 7: // 发布消息
  1510. right = EC800_uploadRealDate();
  1511. // 模块应答错误
  1512. if (right != 1) {
  1513. if (++errrCnt > task_upload_times_2s) {
  1514. errrCnt = task_upload_times_2s;
  1515. p_global_par->publish_fail = 1;
  1516. }
  1517. } else { // 模块应答正确
  1518. errrCnt = 0;
  1519. p_global_par->publish_fail = 0;
  1520. stateStep = 8; // 去步骤6等待登录响应 收到登录响应后,发布实时消息
  1521. }
  1522. break;
  1523. case 8: // 接收消息
  1524. // 转弯行驶中
  1525. if(turnFlag == 1){
  1526. if(timesCnt < TURN_INTERVAL_TIME_MS){
  1527. timesCnt++;
  1528. }else{
  1529. timesCnt= 0;
  1530. stateStep = 6;
  1531. HAL_UART_DMAStop(&huart4);
  1532. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  1533. }
  1534. }else{ // 正常行驶中
  1535. if(timesCnt < PUBLISH_TIME_MS){
  1536. timesCnt++;
  1537. }else{
  1538. timesCnt= 0;
  1539. stateStep = 6;
  1540. HAL_UART_DMAStop(&huart4);
  1541. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  1542. }
  1543. }
  1544. // 后台要求重新请求围栏数据或者初始化获取到vin请求围栏数据
  1545. if((p_global_par->fence_update == 1) || ((s_comData.vinRecSuccess == 1) && (p_ec800Date->fenceRecSuccess == 0))){
  1546. stateStep = 4;
  1547. }
  1548. // 通信超时判断
  1549. if(respondSt == 1){ // 等待响应状态
  1550. if(p_global_par->mqttTimeoutCnt < PUBLISH_TIME_MS){
  1551. p_global_par->mqttTimeoutCnt ++;
  1552. }else{
  1553. p_global_par->mqttTimeoutCnt = PUBLISH_TIME_MS;
  1554. }
  1555. }else{
  1556. p_global_par->mqttTimeoutCnt = 0;
  1557. }
  1558. // 当MQTT通信异常且gnss回复错误的情况下,4g模块可能断线,重新连接4G模块
  1559. // stateStep = 0;
  1560. // linkStep = 0;
  1561. // gnssStep = 0;
  1562. break;
  1563. default:
  1564. break;
  1565. }
  1566. }
  1567. /**
  1568. * @brief 解析MQTT 链路层状态变化的 URC
  1569. * @note +QMTSTAT: <client_idx>,<err_code> err_code不为0,则重新连接
  1570. * @retval 无
  1571. */
  1572. void parse_mqttUrc(void){
  1573. int val1, val2 = 0;
  1574. // 检查字符串是否以"+QMTSTAT: "开头
  1575. if (strncmp(g_usart4_rx_buf, "+QMTSTAT: ", 10) == 0) {
  1576. // 使用sscanf从字符串中解析两个整数
  1577. if (sscanf(g_usart4_rx_buf + 10, "%d,%d", &val1, &val2) == 2) {
  1578. // 如果成功解析出两个整数,则判断
  1579. if(val1 != client_idx){
  1580. return;
  1581. }
  1582. if(val2 != 0){
  1583. // 需重新连接服务器
  1584. s_global_par.reconnect_server_flag = 1;
  1585. Write_paramArea();
  1586. }
  1587. }
  1588. }
  1589. // 如果字符串不符合格式或解析失败,则返回
  1590. return ;
  1591. }
  1592. /**
  1593. * @brief 判断是否执行重连MQTT服务器
  1594. * @note
  1595. * @retval 无
  1596. */
  1597. void reconnect_mqtt_server(void){
  1598. // 发布消息失败
  1599. if((BIT_CHECK(s_comData.Malfunction, publishFail))
  1600. || (BIT_CHECK(s_comData.Malfunction, subscribeFail))
  1601. || (BIT_CHECK(s_comData.Malfunction, getLocationError))
  1602. ){
  1603. BIT_CLEAR(s_comData.Malfunction, publishFail);
  1604. BIT_CLEAR(s_comData.Malfunction, subscribeFail);
  1605. s_global_par.subscribe_fail = 0;
  1606. s_global_par.publish_fail = 0;
  1607. s_global_par.get_location_error = 0;
  1608. BIT_CLEAR(s_comData.Malfunction, getLocationError);
  1609. // 步骤与标志清零
  1610. stateStep = 0;
  1611. linkStep = 0;
  1612. gnssStep = 0;
  1613. s_ec800Date.ec800InitFlag = 0;
  1614. }
  1615. }
  1616. /**
  1617. * @brief MQTT服务器数据接收处理
  1618. * @note
  1619. * @retval 无
  1620. */
  1621. void handleReceive(void) {
  1622. uint16_t right = 1; // 返回是否为正确
  1623. if(g_usart4_rx_sta!=0){
  1624. // HAL_UART_Transmit(&huart1, (uint8_t*)g_usart4_rx_buf, strlen(g_usart4_rx_buf), HAL_MAX_DELAY); // 打印数据除去URC
  1625. parse_mqttUrc(); // 解析MQTT 链路层状态变化的 URC
  1626. right = EC800_respondParse(&s_ec800Date);
  1627. if((right == CTR_CODE_LOGIN) && (s_messageDate.loginResult == 1)){ // 登录响应
  1628. stateStep = 4;
  1629. right = 0;
  1630. timesCnt = 0;
  1631. respondSt = 2; // 成功响应
  1632. }else if(right == CTR_CODE_LOGIN){ // 登录响应 未登录成功
  1633. stateStep = 3;
  1634. right = 0;
  1635. timesCnt = 0;
  1636. respondSt = 2; // 成功响应
  1637. }else if(right == CTR_CODE_FENCES){ // 围栏数据响应
  1638. stateStep = 5;
  1639. right = 0;
  1640. timesCnt = 0;
  1641. respondSt = 2; // 成功响应
  1642. }
  1643. else if(right == CTR_CODE_JUDETIME){ // 对时响应
  1644. stateStep = 6;
  1645. right = 0;
  1646. // timesCnt = 0;
  1647. respondSt = 2; // 成功响应
  1648. }else if((right == CTR_CODE_REMOTE) && (s_ec800Date.hardwareUpdate == 1)){ // 固件更新
  1649. stateStep = 0xff; // 停止占用4G模块
  1650. }
  1651. memset(g_usart4_rx_buf, 0, USART4_REC_LEN); // 清除数据buff,接收新的数据
  1652. g_usart4_rx_sta = 0; // 清除接收状态
  1653. HAL_UART_DMAStop(&huart4);
  1654. HAL_UART_Receive_DMA(&huart4, (uint8_t*)g_usart4_rx_buf, USART4_REC_LEN); //设置接收缓冲区
  1655. }
  1656. }