GpsData.c 12 KB

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  1. /************************************************************************************
  2. * File Name: GpsData.c
  3. * Function Describe:处理GPS模块发回的数据,提取到sutGpsInfo
  4. * Relate Module:
  5. * Explain:
  6. * Writer: ShiLiangWen
  7. * Date: 2015.5.26
  8. $GPGGA,235957.003,,,,,0,0,,,M,,M,,*44
  9. $GPGSA,A,1,,,,,,,,,,,,,,,*1E
  10. $GPGSV,1,1,00*79
  11. $GPRMC,235957.003,V,,,,,0.00,0.00,050180,,,N*4D
  12. *************************************************************************************/
  13. #define THIS_FILE_ID 10
  14. //--------------------------------------------------------------------------------------------
  15. #include "includes.h"
  16. SUT_GPS_INF sutGpsInfo;
  17. unsigned int gps_array[9];
  18. unsigned char Gps_speed_index=0;
  19. /*************************************************************************************
  20. *
  21. **************************************************************************************/
  22. int HEX_2_INT32(int hex_val)
  23. {
  24. char tmp_buf[13] = {0};
  25. int val;
  26. snprintf(tmp_buf, sizeof(tmp_buf), "%x", hex_val);
  27. val = atoi (tmp_buf);
  28. return val;
  29. }
  30. /*************************************************************************************
  31. *
  32. **************************************************************************************/
  33. static unsigned char translate_digitAscii_to_bcd(char *ascii_number, unsigned char len, char *bcd_number)
  34. {
  35. int i, j;
  36. char temp[10] = ""; /* extra + and NULL */
  37. unsigned char bcd_index = 0; /* Index into output bcd_number */
  38. int num_len = len;
  39. /* Translate or skip over invalid characters */
  40. for (i = 0, j = 0; i < num_len; i++)
  41. {
  42. temp[j++] = ascii_number[i] & 0x0F;
  43. }
  44. ascii_number[len] = 0;
  45. /* Now that temp has the bcd codes in natural order... Squish them together
  46. * and reverse the order per bcd coding.
  47. */
  48. for (i = 0; i < j; i+=2)
  49. bcd_number[bcd_index++] = ((char)(temp[i] << 4)) | temp[i+1];
  50. bcd_number[len] = 0;
  51. return 0;
  52. }
  53. /*=====================================
  54. UTC time:hms status latitue north? longitue east? 速度(节) 方位角 UTC time 磁偏角 方向 模式 checksum
  55. $GPRMC hhmmss.sss A/V ddmm.mmmm N/S dddmm.mmmm E/W speed aspect ddmmyy 000-180 E/W A/D/E/N *hh
  56. For example: $GPRMC,024813.640,A,3158.4608,N,11848.3737,E,10.05,324.27,150706,,,A*50
  57. */
  58. #define GPRMC_UTC1_TOKEN_INDEX 0
  59. #define GPRMC_STATUS_TOKEN_INDEX 1
  60. #define GPRMC_LATITUE_TOKEN_INDEX 2
  61. #define GPRMC_NORTH_TOKEN_INDEX 3
  62. #define GPRMC_longitue_TOKEN_INDEX 4
  63. #define GPRMC_EAST_TOKEN_INDEX 5
  64. #define GPRMC_SPEED_TOKEN_INDEX 6
  65. #define GPRMC_ASPECT_TOKEN_INDEX 7
  66. #define GPRMC_UTC2_TOKEN_INDEX 8
  67. /*************************************************************************************
  68. *
  69. **************************************************************************************/
  70. void process_gps_data(char *buf,uint32_t size) //这里的buf就是从GPRMC,后开始
  71. {
  72. char tmp_char[16] = {0};
  73. char bcd_tmp[8] = {0};
  74. char *token[16] = {NULL};
  75. char size_each_token[16] = {0};
  76. unsigned char hh,hl;
  77. unsigned char token_index = 0;
  78. int i = 0;
  79. int index = 0;
  80. int dig_bit_num = 0;
  81. int ptr_each = 0;
  82. unsigned short speed;
  83. unsigned short aspect;
  84. // char* g_cGetlongitude=NULL;
  85. // char* g_cGetlatitude=NULL;
  86. double speed_jie = 0.0;
  87. token[token_index] = buf;
  88. RunMake(THIS_FILE_ID);
  89. while(index < size )
  90. {
  91. if(buf[index] == ',')
  92. {
  93. size_each_token[token_index] = ptr_each;
  94. if(ptr_each == 0)
  95. token[token_index] = NULL;
  96. //*(token[token_index] + ptr_each) = 0; //
  97. ptr_each = 0;
  98. token_index++;
  99. token[token_index] = buf+index+1; //skip this ','
  100. if(*(token[token_index]+1) == '*')
  101. {
  102. size_each_token[token_index] = 1; //cut of *hh\r\n
  103. }
  104. }
  105. else
  106. {
  107. ptr_each++;
  108. }
  109. index++;
  110. }
  111. RunMake(THIS_FILE_ID);
  112. //UTC time:hms
  113. if(token[GPRMC_UTC1_TOKEN_INDEX])
  114. {
  115. strncpy((char*)tmp_char,(char*)token[0],size_each_token[0]);
  116. translate_digitAscii_to_bcd(tmp_char,6,bcd_tmp); //去掉.xx
  117. //小时需要加8 因为北京是东8区
  118. hl=bcd_tmp[0]&0x0f;
  119. hh=bcd_tmp[0]&0xf0;
  120. hl+=8;
  121. if(hl>=10){
  122. hl-=10;
  123. hh+=0x10;
  124. //if(hh>0x20)hh=0; 处理GPS时间问题 V520_P1
  125. }
  126. sutGpsInfo.hour=(hh | hl);
  127. sutGpsInfo.minu = bcd_tmp[1];
  128. sutGpsInfo.sec = bcd_tmp[2];
  129. }
  130. RunMake(THIS_FILE_ID);
  131. //Fix status
  132. if(token[GPRMC_STATUS_TOKEN_INDEX])
  133. {
  134. memset(tmp_char , 0 ,sizeof(tmp_char));
  135. strncpy((char*)tmp_char,(char*)token[1],size_each_token[1]);
  136. //if(*tmp_char == 'A'){
  137. if(*tmp_char == 'A'){
  138. sutGpsInfo.isGpsValid = 1;
  139. //SlwTrace(INF,"sutGpsInfo.isGpsValid1!",1);
  140. }else{
  141. sutGpsInfo.isGpsValid = 0;
  142. }
  143. }
  144. RunMake(THIS_FILE_ID);
  145. if(sutGpsInfo.isGpsValid == 0)return;
  146. //latitude 纬度
  147. /*=====================================
  148. UTC time:hms status latitue north? longitue east? 速度(节) 方位角 UTC time 磁偏角 方向 模式 checksum
  149. $GPRMC hhmmss.ss A/V ddmm.mmmm N/S dddmm.mmmm E/W speed aspect ddmmyy 000-180 E/W A/D/E/N *hh
  150. For example: $GPRMC,024813.640,A,3158.4608,N,11848.3737,E,010.5,324.7,150706,,,A*50
  151. */
  152. if(token[GPRMC_LATITUE_TOKEN_INDEX])
  153. {
  154. RunMake(THIS_FILE_ID);
  155. memset(tmp_char , 0 ,sizeof(tmp_char));
  156. memset(bcd_tmp , 0 ,sizeof(bcd_tmp));
  157. strncpy((char*)(tmp_char+1),(char*)token[2],size_each_token[2]);
  158. tmp_char[0] = '0';
  159. RunMake(THIS_FILE_ID);
  160. for(i = 5; i < 8;i++)
  161. tmp_char[i] = tmp_char[i+1];
  162. tmp_char[8] = 0; //小数点后面去掉最后1位
  163. translate_digitAscii_to_bcd(tmp_char,8,bcd_tmp); //去掉.xx
  164. //North or south
  165. memset(tmp_char , 0 ,sizeof(tmp_char));
  166. if(token[GPRMC_NORTH_TOKEN_INDEX])
  167. {
  168. strncpy((char*)tmp_char,(char*)token[3],size_each_token[3]);
  169. // if(*tmp_char == 'S')
  170. // bcd_tmp[0] |= 0x80;
  171. sutGpsInfo.NSFlag=*tmp_char;
  172. sutGpsInfo.latitue = (bcd_tmp[3] | (bcd_tmp[2] << 8) |(bcd_tmp[1] << 16) |(bcd_tmp[0] << 24));
  173. }
  174. RunMake(THIS_FILE_ID);
  175. }
  176. //longitude 经度
  177. if(token[GPRMC_longitue_TOKEN_INDEX])
  178. {
  179. memset(tmp_char , 0 ,sizeof(tmp_char));
  180. memset(bcd_tmp , 0 ,sizeof(bcd_tmp));
  181. RunMake(THIS_FILE_ID);
  182. strncpy((char*)tmp_char,(char*)token[4],size_each_token[4]);
  183. for(i = 5; i < 8;i++)
  184. tmp_char[i] = tmp_char[i+1];
  185. tmp_char[8] = 0;
  186. translate_digitAscii_to_bcd(tmp_char,8,bcd_tmp); //去掉.xx
  187. RunMake(THIS_FILE_ID);
  188. //east or west
  189. if(token[GPRMC_EAST_TOKEN_INDEX])
  190. {
  191. memset(tmp_char , 0 ,sizeof(tmp_char));
  192. strncpy((char*)tmp_char,(char*)token[5],size_each_token[5]);
  193. // if(*tmp_char == 'W')
  194. // bcd_tmp[0] |= 0x80;
  195. sutGpsInfo.EWFlag=*tmp_char;
  196. sutGpsInfo.longitue = (bcd_tmp[3] | (bcd_tmp[2] << 8) |(bcd_tmp[1] << 16) |(bcd_tmp[0] << 24));
  197. }
  198. }
  199. //Speed
  200. if(token[GPRMC_SPEED_TOKEN_INDEX])
  201. {
  202. RunMake(THIS_FILE_ID);
  203. memset(tmp_char , 0 ,sizeof(tmp_char));
  204. strncpy((char*)tmp_char,(char*)token[GPRMC_SPEED_TOKEN_INDEX],size_each_token[GPRMC_SPEED_TOKEN_INDEX]);
  205. index = 0;
  206. while(index < size_each_token[GPRMC_SPEED_TOKEN_INDEX])
  207. {
  208. if(tmp_char[index] == '.')
  209. break;
  210. index++;
  211. }
  212. dig_bit_num = size_each_token[GPRMC_SPEED_TOKEN_INDEX]-index-1;
  213. //这里,index代表小数点前有多少位,dig_bit_num代表小数点后面有多少位
  214. RunMake(THIS_FILE_ID);
  215. //ol_debug("dig_bit_num:%d,all len:%d",dig_bit_num,size_each_token[GPRMC_SPEED_TOKEN_INDEX]);
  216. #if 0
  217. if(index == 3)
  218. {
  219. speed_jie = (tmp_char[0]-0x30)*100
  220. + (tmp_char[1]-0x30)*10
  221. + (tmp_char[2]-0x30);
  222. }
  223. else if(index == 2)
  224. {
  225. speed_jie = (tmp_char[0]-0x30)*10
  226. + (tmp_char[1]-0x30);
  227. }
  228. else
  229. speed_jie = (tmp_char[0]-0x30);
  230. if(dig_bit_num > 0)
  231. speed_jie += (tmp_char[index+1]-0x30)*0.1;
  232. #else
  233. speed_jie = atoi(tmp_char);
  234. if(dig_bit_num>0)
  235. speed_jie += (tmp_char[index+1]-0x30)*0.1;
  236. #endif
  237. speed = (unsigned short)(speed_jie*1.852);
  238. sutGpsInfo.speed = ( ((speed/100)<<8) | (((speed /10)%10)<<4) | (speed %10) );
  239. //////////////////////////////
  240. // gps_array[Gps_speed_index]=sutGpsInfo.speed;
  241. // Gps_speed_index++;
  242. // if(Gps_speed_index==9) Gps_speed_index=0;
  243. //ol_debug("speed_jie to speed:%d,xinan speed:%d",speed,sutGpsInfo.speed);
  244. }
  245. RunMake(THIS_FILE_ID);
  246. //Aspect 方向
  247. if(token[GPRMC_ASPECT_TOKEN_INDEX])
  248. {
  249. memset(tmp_char , 0 ,sizeof(tmp_char));
  250. strncpy((char*)tmp_char,(char*)token[GPRMC_ASPECT_TOKEN_INDEX],size_each_token[GPRMC_ASPECT_TOKEN_INDEX]);
  251. #if 0
  252. aspect = (unsigned short)((tmp_char[0]-0x30)*100
  253. + (tmp_char[1]-0x30)*10
  254. + (tmp_char[2]-0x30));
  255. //aspect = 150;
  256. sutGpsInfo.aspect= ( ((aspect/100) << 8) | (((aspect /10)%10)<<4) | (aspect %10) );
  257. #else
  258. aspect=atoi(tmp_char);
  259. aspect %=360;
  260. sutGpsInfo.aspect= ( ((aspect/100) << 8) | (((aspect /10)%10)<<4) | (aspect %10) );
  261. #endif
  262. }
  263. RunMake(THIS_FILE_ID);
  264. //UTC2
  265. if(token[GPRMC_UTC2_TOKEN_INDEX])
  266. {
  267. memset(tmp_char , 0 ,sizeof(tmp_char));
  268. memset(bcd_tmp , 0 ,sizeof(bcd_tmp));
  269. strncpy((char*)tmp_char,(char*)token[GPRMC_UTC2_TOKEN_INDEX],size_each_token[GPRMC_UTC2_TOKEN_INDEX]);
  270. translate_digitAscii_to_bcd(tmp_char,6,bcd_tmp);
  271. sutGpsInfo.day = bcd_tmp[0];
  272. sutGpsInfo.month= bcd_tmp[1];
  273. sutGpsInfo.year = bcd_tmp[2];
  274. }
  275. }
  276. #ifdef GPS_DEBUG_VALID
  277. static unsigned char sucTimeH,sucTimeL;
  278. static unsigned long susTime=(7*3600+30*60+0);
  279. static unsigned long sucLatitue=0x02237542;//;
  280. static unsigned long sucLongitue=0x11401316;//;
  281. #endif
  282. /*************************************************************************************
  283. * 根据GPS模块返回的nema数据,提取并放入sutGpsInfo中
  284. **************************************************************************************/
  285. void process_nema(char *nema)
  286. {
  287. static int susTime=61200;
  288. uint8_t sucTimeH,sucTimeL;
  289. static unsigned char sucCt=0;
  290. int len;
  291. if(nema[0]!='$' || nema[3]!='R' || nema[5]!='C')return;
  292. if(++sucCt>2){
  293. sucCt=0;
  294. }
  295. len=strlen(&nema[7]);
  296. if(len>(UART3_RX_BUFFER_SIZE-10)){
  297. SlwTrace(INF,"UART2RECV OVER!",1);
  298. }
  299. process_gps_data(&nema[7],len);
  300. sutGpsInfo.isGpsWork=1;
  301. sutGpsInfo.GpsInactiveCt=0;
  302. #if 1
  303. #ifdef GPS_DEBUG_VALID
  304. SlwTrace(DEBUG,"GPS_DEBUG_VALID!!!");
  305. if(sutGpsInfo.isGpsValid==0){
  306. sutGpsInfo.isGpsValid=1;
  307. sutGpsInfo.latitue=sucLatitue;
  308. sutGpsInfo.longitue=sucLongitue;
  309. sutGpsInfo.speed=0x4321;
  310. sutGpsInfo.aspect=0x7654;
  311. sutGpsInfo.StatisticsMile=0x123456;
  312. sutGpsInfo.year=0x15;
  313. sutGpsInfo.month=0x07;
  314. sutGpsInfo.day=0x26;
  315. susTime++;
  316. sutGpsInfo.hour=(unsigned char)(susTime/3600);
  317. sutGpsInfo.minu=(unsigned char)((susTime%3600)/60);
  318. sutGpsInfo.sec=(unsigned char)(susTime%60);
  319. sucTimeH=sutGpsInfo.hour/10;
  320. sucTimeL=sutGpsInfo.hour%10;
  321. sutGpsInfo.hour=(sucTimeH<<4)+sucTimeL;
  322. sucTimeH=sutGpsInfo.minu/10;
  323. sucTimeL=sutGpsInfo.minu%10;
  324. sutGpsInfo.minu=(sucTimeH<<4)+sucTimeL;
  325. sucTimeH=sutGpsInfo.sec/10;
  326. sucTimeL=sutGpsInfo.sec%10;
  327. sutGpsInfo.sec=(sucTimeH<<4)+sucTimeL;
  328. }
  329. #endif
  330. #else
  331. sutGpsInfo.isGpsValid=1;
  332. sutGpsInfo.latitue=0x4A993;//305555
  333. sutGpsInfo.longitue=0x1260DC;//1204444
  334. sutGpsInfo.speed=0x4321;
  335. sutGpsInfo.aspect=0x7654;
  336. sutGpsInfo.StatisticsMile=0x123456;
  337. sutGpsInfo.year=0x17;
  338. sutGpsInfo.month=0x11;
  339. sutGpsInfo.day=0x20;
  340. susTime++;
  341. sutGpsInfo.hour=(unsigned char)(susTime/3600);
  342. sutGpsInfo.minu=(unsigned char)((susTime%3600)/60);
  343. sutGpsInfo.sec=(unsigned char)(susTime%60);
  344. sucTimeH=sutGpsInfo.hour/10;
  345. sucTimeL=sutGpsInfo.hour%10;
  346. sutGpsInfo.hour=(sucTimeH<<4)+sucTimeL;
  347. sucTimeH=sutGpsInfo.minu/10;
  348. sucTimeL=sutGpsInfo.minu%10;
  349. sutGpsInfo.minu=(sucTimeH<<4)+sucTimeL;
  350. sucTimeH=sutGpsInfo.sec/10;
  351. sucTimeL=sutGpsInfo.sec%10;
  352. sutGpsInfo.sec=(sucTimeH<<4)+sucTimeL;
  353. sutGpsInfo.NSFlag = 'N';
  354. sutGpsInfo.EWFlag = 'E';
  355. #endif
  356. }