TerminalSlave485_jt808.c 24 KB

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  1. /*********************************************************
  2. //file :hd_dev_gpio.c
  3. //author :boly
  4. //date :2021/10/21
  5. //version :V1.0
  6. //brief :GSP HARD层GPIO接口C文件
  7. *********************************************************/
  8. /* Includes-----------------------------------------------------------------------------------*/
  9. #define APP_TERMINALSLAVE485_JT808_USE
  10. #define JT808_FRAM_HEAD_ID 0xA2
  11. #ifdef APP_TERMINALSLAVE485_JT808_USE
  12. /* Includes-----------------------------------------------------------------------------------*/
  13. #include "TerminalSlave485.h"
  14. #include "TerminalSlave485_jt808.h"
  15. #include "CollectMaster485.h"
  16. #include "ScreenMaster485.h"
  17. #include "KeySlave485.h"
  18. #include "Elec_Seal.h"
  19. #include "usart.h"
  20. #include "Data_deal.h"
  21. #include "Randomcode.h"
  22. #include "spi.h"
  23. #include "Dwin.h"
  24. #include "DS1302.h"
  25. #include "leaf_ota.h"
  26. #include "md5c.h"
  27. #include "cmsis_os.h"
  28. #include "func_ram_record.h"
  29. #include "func_queue_record.h"
  30. /* Private macro------------------------------------------------------------------------------*/
  31. /* Private typedef----------------------------------------------------------------------------*/
  32. #pragma pack(1)
  33. typedef struct SEND_DATA_UNIT_STC
  34. {
  35. uint32_t flowID; //发送数据ID
  36. uint32_t lenth; //发送数据长度
  37. uint32_t send_cnt; //发送计数器
  38. uint8_t buf[DATA_UNIT_SIZE - sizeof(uint32_t)*3]; //发送数据缓冲区
  39. }SEND_DATA_UNIT_STC;
  40. typedef struct JT808_DATA_OBJ
  41. {
  42. uint32_t flowID; //Y为32Bit的流水号-高位在前,此流水号来源于控制板主动上报的传感器数据包内,如A1封装
  43. uint32_t back_cnt; //接收超时计数
  44. uint32_t link_cnt; //连接计数器
  45. uint32_t link_ok; //连接标志位
  46. SEND_DATA_UNIT_STC send_data;
  47. }JT808_DATA_OBJ;
  48. #pragma pack()
  49. /* Private define-----------------------------------------------------------------------------*/
  50. /* Private variables--------------------------------------------------------------------------*/
  51. Pass41SensorScanParam_TypeDef Pass41SensorScanParam;
  52. JT808_DATA_OBJ jt808_obj = {
  53. .flowID = 1,
  54. .back_cnt = 0, //接收超时计数
  55. .link_cnt = 0,
  56. .link_ok = 0,
  57. .send_data.flowID = 0,
  58. .send_data.lenth = 0,
  59. .send_data.buf = {0},
  60. };
  61. extern uint8_t Cang_IO_tbak[4][64];
  62. extern uint32_t overflow_cnt_bak;
  63. extern unsigned char overflow_flag_bak;
  64. extern uint8_t Cang01_IO[64];
  65. extern uint8_t Cang02_IO[64];
  66. extern uint8_t Cang03_IO[64];
  67. extern uint8_t Cang04_IO[64];
  68. extern uint8_t Cang05_IO[64];
  69. extern uint8_t Cang06_IO[64];
  70. extern uint8_t Cang07_IO[64];
  71. extern uint8_t Cang08_IO[64];
  72. extern uint32_t overflow_cnt;
  73. extern int LiquidSenSorStatus;
  74. /* Private function prototypes----------------------------------------------------------------*/
  75. int jt808_Build_0x02_TimeCmd(uint8_t *pBuf);
  76. int jt808_Build_0x01_flowID(uint8_t *pBuf, uint32_t flow_id);
  77. int jt808_Build_0x61_ManHole_Big_SW(uint8_t *pBuf);
  78. int jt808_Build_0x62_ManHole_Small_SW(uint8_t *pBuf);
  79. int jt808_Build_0x63_Dump_info(uint8_t *pBuf);
  80. int jt808_Build_0x64_HaiDiFa(uint8_t *pBuf);
  81. int jt808_Build_0x6d_Cang_info(uint8_t *pBuf);
  82. int jt808_Build_0x70_Sealing(uint8_t *pBuf);
  83. int jt808_Build_0x71_DumpBox_info(uint8_t *pBuf);
  84. int jt808_Build_0x72_ManHole_Box_info(uint8_t *pBuf);
  85. int jt808_Build_0x6C_liquid_level(uint8_t *pBuf);
  86. int jt808_Build_0x73_liquid_air_high(uint8_t *pBuf);
  87. void jt808_update_0x40_data(void);
  88. int jt808_BuildSealTxCmd(uint8_t *pBuf, uint8_t *pEmergencyflag); // 40命令
  89. void mem_swap(uint8_t *des,int len)
  90. {
  91. int i,tlen;
  92. uint8_t dat;
  93. tlen = (len>>1);
  94. len--;
  95. for(i=0;i<tlen;i++)
  96. {
  97. dat = des[i];
  98. des[i] = des[len-i];
  99. des[len-i]=dat;
  100. }
  101. return;
  102. }
  103. /**
  104. ***************************************
  105. * 构建A1命令数据 -- hex制式
  106. * 输入:
  107. * pBuf-构建数据的存放首地址
  108. * pEmergy,如果是数据有变动,表示紧急上报,将标记存于此地址
  109. * flowID, 流水id值
  110. * 返回: 构建数据的字节总数
  111. ***************************************
  112. */
  113. int jt808_Build_Ax_Cmd(uint8_t *pBuf, uint32_t flowID, uint8_t *pEmergencyflag)
  114. {
  115. int send_pos=0;
  116. unsigned char emergencyflag=0;
  117. unsigned char Lrc_temp;
  118. unsigned char overflow_flag=0;
  119. unsigned char temp_i = 0x00;
  120. UNUSED(Lrc_temp);
  121. UNUSED(temp_i);
  122. jt808_update_0x40_data();
  123. //标识头 总长度 紧急上报位 数据状态 仓数
  124. pBuf[send_pos++] = JT808_FRAM_HEAD_ID;
  125. pBuf[send_pos++] = 120;
  126. if(StoreNumber>0)
  127. {
  128. if(memcmp(Cang_IO_tbak[0],Cang01_IO,64))
  129. {
  130. emergencyflag=0x80;
  131. }
  132. memcpy(Cang_IO_tbak[0],Cang01_IO,64);
  133. }
  134. if(StoreNumber>1)
  135. {
  136. if(memcmp(Cang_IO_tbak[1],Cang02_IO,64))
  137. {
  138. emergencyflag=0x80;
  139. }
  140. memcpy(Cang_IO_tbak[1],Cang02_IO,64);
  141. }
  142. if(StoreNumber>2)
  143. {
  144. if(memcmp(Cang_IO_tbak[2],Cang03_IO,64))
  145. {
  146. emergencyflag=0x80;
  147. }
  148. memcpy(Cang_IO_tbak[2],Cang03_IO,64);
  149. }
  150. if(StoreNumber>3)
  151. {
  152. if(memcmp(Cang_IO_tbak[3],Cang04_IO,64))
  153. {
  154. emergencyflag=0x80;
  155. }
  156. memcpy(Cang_IO_tbak[3],Cang04_IO,64);
  157. }
  158. if(StoreNumber>4)
  159. {
  160. if(memcmp(Cang_IO_tbak[4],Cang05_IO,64))
  161. {
  162. emergencyflag=0x80;
  163. }
  164. memcpy(Cang_IO_tbak[4],Cang05_IO,64);
  165. }
  166. if(StoreNumber > 5)
  167. {
  168. StoreNumber = 5;
  169. }
  170. if((overflow_cnt==0) && (overflow_cnt==overflow_cnt_bak))
  171. {
  172. overflow_flag=0;
  173. }
  174. else
  175. {
  176. overflow_flag=1;
  177. }
  178. overflow_cnt_bak=overflow_cnt;
  179. if(overflow_flag_bak!=overflow_flag)
  180. {
  181. emergencyflag=0x80;
  182. }
  183. overflow_flag_bak=overflow_flag;
  184. pBuf[send_pos++] = emergencyflag; //紧急上报位
  185. pBuf[send_pos++] = 0x00; //数据状态:00正常;01未收到数据;02乱码
  186. pBuf[send_pos++] = StoreNumber;
  187. pBuf[send_pos++] = 0x22;
  188. pBuf[send_pos++] = overflow_flag;
  189. //61 人孔大盖 开关
  190. send_pos += jt808_Build_0x61_ManHole_Big_SW((uint8_t *)pBuf+send_pos);
  191. //62 人孔小盖 开关
  192. send_pos += jt808_Build_0x62_ManHole_Small_SW((uint8_t *)pBuf+send_pos);
  193. //63 卸油阀 开关
  194. send_pos += jt808_Build_0x63_Dump_info((uint8_t *)pBuf+send_pos);
  195. //64 底阀 开关
  196. send_pos += jt808_Build_0x64_HaiDiFa((uint8_t *)pBuf+send_pos);
  197. //73 液位空高
  198. send_pos += jt808_Build_0x73_liquid_air_high((uint8_t *)pBuf+send_pos);
  199. //6C 液位
  200. send_pos += jt808_Build_0x6C_liquid_level((uint8_t *)pBuf+send_pos);
  201. //71 卸油箱门 开关
  202. send_pos += jt808_Build_0x71_DumpBox_info((uint8_t *)pBuf+send_pos);
  203. //72 人孔箱护罩 开关
  204. send_pos += jt808_Build_0x72_ManHole_Box_info((uint8_t *)pBuf+send_pos);
  205. //01 流水号 4字节 整数
  206. send_pos += jt808_Build_0x01_flowID((uint8_t *)pBuf+send_pos, flowID);
  207. //02 时间戳 6字节 字符串 BCD[6] YY-MM-DD-hh-mm-ss(GMT+8 时间,本标准中之后涉及的时间均采用此时区)
  208. send_pos += jt808_Build_0x02_TimeCmd((uint8_t *)pBuf+send_pos);
  209. //数据帧长度
  210. pBuf[1] = send_pos-2;
  211. #if 0
  212. while (send_pos<(120+2))
  213. {
  214. pBuf[send_pos++] = 0;
  215. };
  216. #endif
  217. if (pEmergencyflag) *pEmergencyflag = emergencyflag;
  218. return send_pos;
  219. }
  220. /**
  221. ***************************************
  222. * 更新老协议0x40系统状态
  223. * 输入:void
  224. * 返回: void
  225. ***************************************
  226. */
  227. uint8_t JT808_0x40_buf[256]={0};//大小+1 136
  228. uint8_t JT808_0x40_len = 0;
  229. void jt808_update_0x40_data(void)
  230. {
  231. uint8_t JT808_emergencyflag = 0;
  232. JT808_0x40_len = jt808_BuildSealTxCmd(JT808_0x40_buf, &JT808_emergencyflag);
  233. return;
  234. }
  235. /**
  236. ***************************************
  237. * 构建73 液位空高模拟量
  238. * 输入:pBuf-构建数据的存放首地址
  239. * 返回: 构建数据的字节总数
  240. ***************************************
  241. */
  242. int jt808_Build_0x73_liquid_air_high(uint8_t *pBuf)
  243. {
  244. int idx=0;
  245. int j;
  246. pBuf[idx++] = 0x73;
  247. do {
  248. uint8_t st = 1;
  249. if (LiquidSenSorStatus == 500) {st = 0x81;}
  250. else if (LiquidSenSorStatus == 501) {st = 0x82;}
  251. pBuf[idx++] = st; //数据状态:0x01正常; 0x81未收到数据; 0x02乱码
  252. }while(0);
  253. for (j = 0; j < StoreNumber; ++j)
  254. {
  255. uni_float uni_0x93;
  256. int k;
  257. uni_0x93.flo_Data = ExpansionRatio[j];
  258. if(j==0)
  259. uni_0x93.flo_Data -= T2C_ALL_Sensor_Data01.MoniLiang_Data_Every_Cang[0];
  260. else if(j==1)
  261. uni_0x93.flo_Data -= T2C_ALL_Sensor_Data02.MoniLiang_Data_Every_Cang[0];
  262. for (k = 0; k < 4; ++k)
  263. {
  264. pBuf[idx++] = uni_0x93.array_u8[3 - k];
  265. }
  266. }
  267. return idx;
  268. }
  269. /**
  270. ***************************************
  271. * 构建6C 液位模拟量
  272. * 输入:pBuf-构建数据的存放首地址
  273. * 返回: 构建数据的字节总数
  274. ***************************************
  275. */
  276. int jt808_Build_0x6C_liquid_level(uint8_t *pBuf)
  277. {
  278. int idx=0;
  279. int j;
  280. pBuf[idx++] = 0x6C;
  281. pBuf[idx++] = 1;
  282. for (j = 0; j < StoreNumber; ++j)
  283. {
  284. uni_float uni_0x93;
  285. int k;
  286. if(j==0)
  287. uni_0x93.flo_Data = T2C_ALL_Sensor_Data01.MoniLiang_Data_Every_Cang[0];
  288. else
  289. uni_0x93.flo_Data = T2C_ALL_Sensor_Data02.MoniLiang_Data_Every_Cang[0];
  290. for (k = 0; k < 4; ++k)
  291. {
  292. pBuf[idx++] = uni_0x93.array_u8[3 - k];
  293. }
  294. }
  295. return idx;
  296. }
  297. /**
  298. ***************************************
  299. * 构建6D 仓状态
  300. * 输入:pBuf-构建数据的存放首地址
  301. * 返回: 构建数据的字节总数
  302. ***************************************
  303. */
  304. int jt808_Build_0x6d_Cang_info(uint8_t *pBuf)
  305. {
  306. int idx=0;
  307. int i = 0;
  308. pBuf[idx++] = 0x6D; //类型
  309. for (i = 0; i < StoreNumber; i++)
  310. {
  311. //pBuf[idx++] = 1; //每仓数量
  312. //Sealing_Data.Sealing_state_oiltype[i] :仓状态与油品:
  313. //Sealing_Data.Sealing_state_oiltype[i] = (Byte_high<<4)|Byte_low;
  314. //高4位值1:装油,2:有油,3:卸油,4:空仓(无油),低4位代表油品,高四位非等于4(空仓)值默认1,否则为0;
  315. pBuf[idx++] = (Sealing_Data.Sealing_state_oiltype[i] &0xf0)>> 4;
  316. }
  317. return idx;
  318. }
  319. /**
  320. ***************************************
  321. * 构建61 人孔大盖 开关状态
  322. * 输入:pBuf-构建数据的存放首地址
  323. * 返回: 构建数据的字节总数
  324. ***************************************
  325. */
  326. int jt808_Build_0x61_ManHole_Big_SW(uint8_t *pBuf)
  327. {
  328. int idx=0;
  329. int i,j;
  330. if(((Config_info_all.ManHole_Big_info/StoreNumber) == 0)
  331. ||((Config_info_all.ManHole_Big_info&0x80)==0x80))
  332. {
  333. return 0;
  334. }
  335. pBuf[idx++] = 0x61;
  336. for (i = 0; i < StoreNumber; i++)
  337. {
  338. pBuf[idx++] = Config_info_all.ManHole_Big_info/StoreNumber;
  339. for(j=0;j<Config_info_all.ManHole_Big_info/StoreNumber;++j)
  340. {
  341. pBuf[idx++] = Cang_IO_tbak[i][indexDaGai01+10*j];
  342. }
  343. }
  344. return idx;
  345. }
  346. /**
  347. ***************************************
  348. * 构建62 人孔小盖 开关状态
  349. * 输入:pBuf-构建数据的存放首地址
  350. * 返回: 构建数据的字节总数
  351. ***************************************
  352. */
  353. int jt808_Build_0x62_ManHole_Small_SW(uint8_t *pBuf)
  354. {
  355. int idx=0;
  356. int i,j;
  357. if(((Config_info_all.ManHole_small_info/StoreNumber) == 0)
  358. ||((Config_info_all.ManHole_small_info&0x80)==0x80))
  359. {
  360. return 0;
  361. }
  362. pBuf[idx++] = 0x62;
  363. for (i = 0; i < StoreNumber; i++)
  364. {
  365. pBuf[idx++] = Config_info_all.ManHole_small_info/StoreNumber;
  366. for(j=0;j<Config_info_all.ManHole_small_info/StoreNumber;++j)
  367. {
  368. pBuf[idx++] = Cang_IO_tbak[i][indexXiaoGai01+10*j];
  369. }
  370. }
  371. return idx;
  372. }
  373. /**
  374. ***************************************
  375. * 构建63 卸油阀 开关
  376. * 输入:pBuf-构建数据的存放首地址
  377. * 返回: 构建数据的字节总数
  378. ***************************************
  379. */
  380. int jt808_Build_0x63_Dump_info(uint8_t *pBuf)
  381. {
  382. int idx=0;
  383. int i,j;
  384. if(((Config_info_all.Dump_info/StoreNumber) == 0)
  385. ||((Config_info_all.Dump_info&0x80)==0x80))
  386. {
  387. return 0;
  388. }
  389. pBuf[idx++] = 0x63;
  390. for (i = 0; i < StoreNumber; i++)
  391. {
  392. pBuf[idx++] = Config_info_all.Dump_info/StoreNumber;
  393. for(j=0;j<Config_info_all.Dump_info/StoreNumber;++j)
  394. {
  395. pBuf[idx++] = Cang_IO_tbak[i][indexXieYouFa01+10*j];
  396. }
  397. }
  398. return idx;
  399. }
  400. /**
  401. ***************************************
  402. * 构建72 人孔箱护罩 开关
  403. * 输入:pBuf-构建数据的存放首地址
  404. * 返回: 构建数据的字节总数
  405. ***************************************
  406. */
  407. int jt808_Build_0x72_ManHole_Box_info(uint8_t *pBuf)
  408. {
  409. int idx=0;
  410. int i,j;
  411. if(((Config_info_all.ManHole_Big_info/StoreNumber) == 0)
  412. ||((Config_info_all.ManHole_Big_info&0x80)==0x80))
  413. {
  414. return 0;
  415. }
  416. pBuf[idx++] = 0x72;
  417. for (i = 0; i < StoreNumber; i++)
  418. {
  419. pBuf[idx++] = Config_info_all.ManHole_Big_info/StoreNumber;
  420. for(j=0;j<Config_info_all.ManHole_Big_info/StoreNumber;++j)
  421. {
  422. pBuf[idx++] = Cang_IO_tbak[i][indexDaGai01+10*j];
  423. }
  424. }
  425. return idx;
  426. }
  427. /**
  428. ***************************************
  429. * 构建71 卸油箱门 开关
  430. * 输入:pBuf-构建数据的存放首地址
  431. * 返回: 构建数据的字节总数
  432. ***************************************
  433. */
  434. int jt808_Build_0x71_DumpBox_info(uint8_t *pBuf)
  435. {
  436. int idx=0;
  437. int i,j;
  438. if(((Config_info_all.Dump_info/StoreNumber) == 0)
  439. ||((Config_info_all.Dump_info&0x80)==0x80))
  440. {
  441. return 0;
  442. }
  443. pBuf[idx++] = 0x71;
  444. for (i = 0; i < StoreNumber; i++)
  445. {
  446. pBuf[idx++] = Config_info_all.Dump_info/StoreNumber;
  447. for(j=0;j<Config_info_all.Dump_info/StoreNumber;++j)
  448. {
  449. pBuf[idx++] = Cang_IO_tbak[i][indexXieYouFa01+10*j];
  450. }
  451. }
  452. return idx;
  453. }
  454. /**
  455. ***************************************
  456. * 构建64 底阀 开关
  457. * 输入:pBuf-构建数据的存放首地址
  458. * 返回: 构建数据的字节总数
  459. ***************************************
  460. */
  461. int jt808_Build_0x64_HaiDiFa(uint8_t *pBuf)
  462. {
  463. int idx=0;
  464. int i,j;
  465. if(((Config_info_all.HaiDiFa_info/StoreNumber) == 0)
  466. ||((Config_info_all.HaiDiFa_info&0x80)==0x80))
  467. {
  468. return 0;
  469. }
  470. pBuf[idx++] = 0x64;
  471. for (i = 0; i < StoreNumber; i++)
  472. {
  473. pBuf[idx++] = Config_info_all.HaiDiFa_info/StoreNumber;
  474. for(j=0;j<Config_info_all.HaiDiFa_info/StoreNumber;++j)
  475. {
  476. pBuf[idx++] = Cang_IO_tbak[i][indexHaiDiFa01+10*j];
  477. }
  478. }
  479. return idx;
  480. }
  481. /**
  482. ***************************************
  483. * 构建70 铅封状态
  484. * 输入:pBuf-构建数据的存放首地址
  485. * 返回: 构建数据的字节总数
  486. ***************************************
  487. */
  488. int jt808_Build_0x70_Sealing(uint8_t *pBuf)
  489. {
  490. int idx=0;
  491. int i = 0;
  492. pBuf[idx++] = 0x70; //类型
  493. for (i = 0; i < StoreNumber; i++)
  494. {
  495. //pBuf[idx++] = 1; //每仓数量
  496. //Sealing_Data.Sealing_Mode[i] :仓状态与油品:
  497. //1仓铅封状态/装油模式:高4位值1: 施封状态,值2:解封状态,值3:破封状态,值4:施封并输入密码超限,值5:非法破封;
  498. // 低4位(装油情况下)值1:上装,值2:下装;
  499. pBuf[idx++] = (Sealing_Data.Sealing_Mode[i] &0xf0)>> 4;
  500. }
  501. return idx;
  502. }
  503. /**
  504. ***************************************
  505. * 构建01 流水号 4字节 整数
  506. * 输入:pBuf-构建数据的存放首地址
  507. * 返回: 构建数据的字节总数
  508. ***************************************
  509. */
  510. int jt808_Build_0x01_flowID(uint8_t *pBuf,uint32_t flow_id)
  511. {
  512. int idx=0;
  513. // 2022-8-25, 新增加的子命令
  514. // 01, 流水号
  515. // 02, 时间戳
  516. do {
  517. pBuf[idx++] = 0x01;
  518. pBuf[idx++] = (flow_id>>24) & 0xff;
  519. pBuf[idx++] = (flow_id>>16) & 0xff;
  520. pBuf[idx++] = (flow_id>>8) & 0xff;
  521. pBuf[idx++] = (flow_id>>0) & 0xff;
  522. }while(0);
  523. return idx;
  524. }
  525. /**
  526. ***************************************
  527. * 构建20命令数据 时间戳 -- hex制式
  528. * 输入:pBuf-构建数据的存放首地址
  529. * 返回: 构建数据的字节总数
  530. ***************************************
  531. */
  532. extern SDateTime m_datetime;
  533. int jt808_Build_0x02_TimeCmd(uint8_t *pBuf)
  534. {
  535. int send_pos=0;
  536. //02 时间戳 6字节 字符串 BCD[6] YY-MM-DD-hh-mm-ss(GMT+8 时间,本标准中之后涉及的时间均采用此时区)
  537. pBuf[send_pos++] = 0x02;
  538. pBuf[send_pos++] = HEXtoBCD(m_datetime.year);
  539. pBuf[send_pos++] = HEXtoBCD(m_datetime.month);
  540. pBuf[send_pos++] = HEXtoBCD(m_datetime.day);
  541. pBuf[send_pos++] = HEXtoBCD(m_datetime.hour);
  542. pBuf[send_pos++] = HEXtoBCD(m_datetime.min);
  543. pBuf[send_pos++] = HEXtoBCD(m_datetime.sec);
  544. return send_pos;
  545. }
  546. /**
  547. ***************************************
  548. * 构建40命令数据 电子铅封 -- hex制式
  549. * 输入:pBuf-构建数据的存放首地址
  550. * 返回: 构建数据的字节总数
  551. ***************************************
  552. */
  553. int jt808_BuildSealTxCmd(uint8_t *pBuf, uint8_t *pEmergencyflag) // 40命令
  554. {
  555. Return_data *ret;
  556. int n = 0;
  557. uint8_t emergencyflag = 0;
  558. *pBuf++ = 0x40;
  559. ret = Seal_Tx_Readvalue(0,0);
  560. *pBuf++ = ret->length/2; // 调用返回的数据是asii制式的,所以真实的hex数是其一半
  561. for(n=0; n < ret->length/2 && n < 100; n++) {
  562. pBuf[n] = MODBUS_ASCII_AsciiToHex(ret->data + 2*n);
  563. }
  564. emergencyflag = pBuf[0];
  565. if(pEmergencyflag) *pEmergencyflag = emergencyflag;
  566. return n+2;
  567. }
  568. /**
  569. ***************************************
  570. * 构建91命令数据 IO状态 -- hex制式
  571. * 输入:pBuf-构建数据的存放首地址
  572. * 返回: 构建数据的字节总数
  573. ***************************************
  574. */
  575. int jt808_Build91Cmd(uint8_t *pBuf, uint8_t *pEmergencyflag)
  576. {
  577. Return_data *ret;
  578. int n = 0;
  579. uint8_t emergencyflag = 0;
  580. *pBuf++ = 0x91;
  581. ret = IO_Tx_Readvalue(0,0);
  582. *pBuf++ = ret->length/2; // 调用返回的数据是asii制式的,所以真实的hex数是其一半
  583. for(n=0; n < ret->length/2 && n < 100; n++) {
  584. pBuf[n] = MODBUS_ASCII_AsciiToHex(ret->data + 2*n);
  585. }
  586. emergencyflag = pBuf[0];
  587. if(pEmergencyflag) *pEmergencyflag = emergencyflag;
  588. return n+2;
  589. }
  590. /**
  591. ***************************************
  592. * 检测当前连接状态
  593. * 输入:无
  594. * 返回: 无
  595. ***************************************
  596. */
  597. void jt808_link_check(void)
  598. {
  599. if(jt808_obj.back_cnt < (Pass41SensorScanParam.nstep*Pass41SensorScanParam.step))
  600. {
  601. jt808_obj.link_cnt++;
  602. }
  603. else
  604. {
  605. jt808_obj.link_cnt = 0;
  606. }
  607. if(jt808_obj.link_cnt > 0)
  608. {
  609. jt808_obj.link_ok = true;
  610. }
  611. else
  612. {
  613. jt808_obj.link_ok = false;
  614. }
  615. return;
  616. }
  617. /**
  618. ***************************************
  619. * 将缓冲区数据帧内容,放入串口发送数据缓冲区
  620. * 输入:无
  621. * 返回: 无
  622. ***************************************
  623. */
  624. void jt808_send_buf_data(void)
  625. {
  626. if(jt808_obj.send_data.lenth == 0)
  627. {
  628. return;
  629. }
  630. //将缓冲区数据帧内容,放入串口发送数据缓冲区
  631. memcpy(USART1_TX_BUF,jt808_obj.send_data.buf,jt808_obj.send_data.lenth);
  632. //发送次数进行累加
  633. jt808_obj.send_data.send_cnt++;
  634. //打上补发标记
  635. USART1_TX_BUF[3] |= 0x80;
  636. //通过串口将数据发送出去
  637. TerminalSlave485_Send_Data(USART1_TX_BUF,jt808_obj.send_data.lenth);
  638. return;
  639. }
  640. /**
  641. ***************************************
  642. * 处理接收到的返回数据帧
  643. * 输入:无
  644. * 返回: 无
  645. ***************************************
  646. */
  647. JT808_DataBack_DATA jt808_data_back = {0};
  648. void jt808_recv_func_DataBack(uint8_t * buf ,uint8_t len)
  649. {
  650. uint32_t read_len = 0;
  651. jt808_obj.back_cnt = 0;
  652. memcpy(&jt808_data_back, buf ,sizeof(jt808_data_back));
  653. mem_swap((uint8_t *)&(jt808_data_back.flowID),sizeof(jt808_data_back.flowID));
  654. if(jt808_data_back.flowID == jt808_obj.send_data.flowID)
  655. {
  656. //清除发送缓冲区数据
  657. memset((void *)&(jt808_obj.send_data), 0x00, sizeof(jt808_obj.send_data));
  658. #if USE_QUEUE_RECORD==1
  659. if(func_record_queue_flash_get() == true)
  660. {
  661. read_len = func_record_queue_read((void *)&(jt808_obj.send_data), (uint32_t)DATA_UNIT_SIZE);
  662. }
  663. else
  664. #endif
  665. #if USE_RAM_RECORD==1
  666. {
  667. //从内存数据栈中读取缓冲数据
  668. read_len = func_ram_record_delete((void *)&(jt808_obj.send_data), DATA_UNIT_SIZE);
  669. }
  670. #else
  671. {
  672. ;
  673. }
  674. #endif
  675. if( read_len != DATA_UNIT_SIZE)
  676. {
  677. memset((void *)&(jt808_obj.send_data), 0x00, sizeof(jt808_obj.send_data));
  678. }
  679. else if( jt808_obj.send_data.buf[0] != JT808_FRAM_HEAD_ID)
  680. {
  681. memset((void *)&(jt808_obj.send_data), 0x00, sizeof(jt808_obj.send_data));
  682. }
  683. //如果本帧数据重发次数大于5,则清除本帧数据
  684. if(jt808_obj.send_data.send_cnt > 5)
  685. {
  686. memset((void *)&(jt808_obj.send_data), 0x00, sizeof(jt808_obj.send_data));
  687. }
  688. }
  689. return;
  690. }
  691. /**
  692. ***************************************
  693. * 将发送序列ID放入FRAM
  694. * 输入:当前发送序列号
  695. * 返回: 无
  696. ***************************************
  697. */
  698. void jt808_save_Scan_flowID(uint32_t flowID)
  699. {
  700. FM25L16B_Write_N_Bytes(FRAM_ADDR_Scan_flowID, (uint8_t *)&flowID, sizeof(flowID));
  701. return;
  702. }
  703. /**
  704. ***************************************
  705. * 初始化数据帧序列ID
  706. * 输入:发送序列号指针地址
  707. * 返回: 无
  708. ***************************************
  709. */
  710. void jt808_read_Scan_flowID(uint32_t * flowID)
  711. {
  712. FM25L16B_Read_N_Bytes(FRAM_ADDR_Scan_flowID, (uint8_t *)flowID, sizeof(flowID));
  713. return;
  714. }
  715. /**
  716. ***************************************
  717. * 将发送缓冲区中的数据,放入RAM,并将当前
  718. * 产生的数据放入缓冲区
  719. * 输入:无
  720. * 返回: 无
  721. ***************************************
  722. */
  723. void jt808_save_send_data(uint8_t * buf ,uint16_t len)
  724. {
  725. if(jt808_obj.send_data.flowID != 0)
  726. {
  727. #if USE_QUEUE_RECORD==1
  728. if(func_record_queue_flash_get() == true)
  729. {
  730. func_record_queue_write((uint8_t *)&(jt808_obj.send_data) , DATA_UNIT_SIZE);
  731. }
  732. else
  733. #endif
  734. #if USE_RAM_RECORD==1
  735. {
  736. func_ram_record_write((uint8_t *)&(jt808_obj.send_data) , DATA_UNIT_SIZE);
  737. }
  738. #else
  739. {
  740. ;
  741. }
  742. #endif
  743. memset((void *)&(jt808_obj.send_data), 0x00, sizeof(jt808_obj.send_data));
  744. }
  745. jt808_obj.send_data.flowID = jt808_obj.flowID;
  746. jt808_obj.send_data.lenth = len;
  747. if(len > sizeof(jt808_obj.send_data.buf))
  748. {
  749. len = sizeof(jt808_obj.send_data.buf);
  750. }
  751. memset(jt808_obj.send_data.buf, 0x00, sizeof(jt808_obj.send_data.buf));
  752. memcpy(jt808_obj.send_data.buf, buf, len);
  753. return;
  754. }
  755. /**
  756. ***************************************
  757. * xy,新透传,41串口透传,模拟F3轮询传感器
  758. * 按照周期1构建数据,按照周期2发送数据
  759. * 输入:无
  760. * 返回: 无
  761. * 发送区的格式为:
  762. * 数据负载类别,1Byte
  763. * 传感器命令数据包数,1Byte
  764. * 具体的各个命令数据包,NByte
  765. ***************************************
  766. */
  767. void jt808_DoInternalSensorScanAndPost(void)
  768. {
  769. int xlen=0, ylen=0;
  770. uint8_t emergencyflag=0;
  771. uint8_t *pSendBuf = USART1_TX_BUF;
  772. static int step = 0;
  773. static int nstep = 0;
  774. if(++step % Pass41SensorScanParam.step == 0)
  775. {
  776. for(int n=0; n<Pass41SensorScanParam.cmd_num; n++) {
  777. switch (Pass41SensorScanParam.cmd_arr[n]){
  778. case 0x40:
  779. xlen = jt808_BuildSealTxCmd(pSendBuf, emergencyflag?NULL:&emergencyflag);
  780. pSendBuf += xlen;
  781. ylen += xlen;
  782. break;
  783. case 0x91:
  784. xlen = jt808_Build91Cmd(pSendBuf, emergencyflag?NULL:&emergencyflag);
  785. pSendBuf += xlen;
  786. ylen += xlen;
  787. break;
  788. case JT808_FRAM_HEAD_ID:
  789. xlen = jt808_Build_Ax_Cmd(pSendBuf, jt808_obj.flowID, emergencyflag?NULL:&emergencyflag);
  790. pSendBuf += xlen;
  791. ylen += xlen;
  792. break;
  793. default:
  794. break;
  795. }
  796. }
  797. if(emergencyflag)
  798. {
  799. TerminalSlave485_Send_Data(USART1_TX_BUF, ylen);
  800. //保存发送数据
  801. jt808_save_send_data(USART1_TX_BUF, ylen);
  802. nstep = 0;
  803. emergencyflag = 0;
  804. jt808_obj.flowID++;
  805. jt808_save_Scan_flowID(jt808_obj.flowID);
  806. }
  807. else
  808. {
  809. if(++nstep % Pass41SensorScanParam.nstep == 0)
  810. {
  811. TerminalSlave485_Send_Data(USART1_TX_BUF,ylen);
  812. //保存发送数据
  813. jt808_save_send_data(USART1_TX_BUF,ylen);
  814. //检测当前连接状态,每一大循环执行一次
  815. jt808_link_check();
  816. jt808_obj.flowID++;
  817. jt808_save_Scan_flowID(jt808_obj.flowID);
  818. }
  819. else if(nstep % Pass41SensorScanParam.nstep == (Pass41SensorScanParam.nstep/2))
  820. {
  821. //重发缓冲区数据
  822. if(jt808_obj.link_ok == true) //如果连接正常,则重发数据;
  823. {
  824. jt808_send_buf_data();
  825. }
  826. }
  827. }
  828. }
  829. jt808_obj.back_cnt++;
  830. return;
  831. }
  832. /**
  833. ***************************************
  834. * 初始化发送配置参数
  835. * 输入:无
  836. * 返回: 无
  837. ***************************************
  838. */
  839. void jt808_InitSensorScanParam(void)
  840. {
  841. uint8_t data[16];
  842. FM25L16B_Read_N_Bytes(FRAM_ADDR_Scan_Param, data, 16);
  843. if(data[0] == 0x5A){
  844. uint8_t *buf = data+1;
  845. Pass41SensorScanParam.enable = 1;
  846. if(buf[0] > 1 && buf[1] > 0){
  847. Pass41SensorScanParam.step = buf[0];
  848. Pass41SensorScanParam.nstep = buf[1];
  849. if(buf[2] > 0 && buf[2] <= 8){
  850. Pass41SensorScanParam.cmd_num = buf[2];
  851. for (int n = 0; n < Pass41SensorScanParam.cmd_num; n++){
  852. Pass41SensorScanParam.cmd_arr[n] = buf[3+n];
  853. }
  854. }else{
  855. Pass41SensorScanParam.cmd_num = 2;
  856. Pass41SensorScanParam.cmd_arr[0] = 0x40;
  857. Pass41SensorScanParam.cmd_arr[1] = 0x91;
  858. }
  859. }else{
  860. Pass41SensorScanParam.step = 5;
  861. Pass41SensorScanParam.nstep = 6;
  862. Pass41SensorScanParam.cmd_num = 2;
  863. Pass41SensorScanParam.cmd_arr[0] = 0x40;
  864. Pass41SensorScanParam.cmd_arr[1] = 0x91;
  865. }
  866. }else{
  867. Pass41SensorScanParam.enable = 0;
  868. Pass41SensorScanParam.step = 5;
  869. Pass41SensorScanParam.nstep = 6;
  870. Pass41SensorScanParam.cmd_num = 1;
  871. Pass41SensorScanParam.cmd_arr[0] = JT808_FRAM_HEAD_ID;
  872. }
  873. //初始化发送序列ID
  874. jt808_read_Scan_flowID(&(jt808_obj.flowID));
  875. }
  876. /**
  877. ***************************************
  878. * 初始化发送配置参数
  879. * 输入:无
  880. * 返回: 无
  881. ***************************************
  882. */
  883. uint8_t jt808_Build_Read_WorkSt(uint8_t * PayLoad)
  884. {
  885. uint8_t idx = 0;
  886. PayLoad[idx++] = func_record_queue_flash_get();
  887. PayLoad[idx++] = jt808_obj.link_ok;
  888. uint32_t msg_num = 0;
  889. if(PayLoad[0] == true)
  890. {
  891. msg_num = func_record_queue_obj_cnt();
  892. }
  893. else
  894. {
  895. msg_num = func_ram_obj_num(DATA_UNIT_SIZE);
  896. }
  897. PayLoad[idx++] = (msg_num>>24)&0xff;
  898. PayLoad[idx++] = (msg_num>>16)&0xff;
  899. PayLoad[idx++] = (msg_num>>8)&0xff;
  900. PayLoad[idx++] = (msg_num)&0xff;
  901. return idx;
  902. }
  903. #endif /*************APP_TERMINALSLAVE485_JT808_USE*******************/