generator.c 8.8 KB

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  1. /*
  2. *
  3. * NMEA library
  4. * URL: http://nmea.sourceforge.net
  5. * Author: Tim (xtimor@gmail.com)
  6. * Licence: http://www.gnu.org/licenses/lgpl.html
  7. * $Id: generator.c 17 2008-03-11 11:56:11Z xtimor $
  8. *
  9. */
  10. #include "nmea/gmath.h"
  11. #include "nmea/generate.h"
  12. #include "nmea/generator.h"
  13. #include "nmea/context.h"
  14. #include <string.h>
  15. #include <stdlib.h>
  16. #if defined(NMEA_WIN) && defined(_MSC_VER)
  17. # pragma warning(disable: 4100) /* unreferenced formal parameter */
  18. #endif
  19. double nmea_random(double min, double max)
  20. {
  21. static double rand_max = RAND_MAX;
  22. double rand_val = rand();
  23. double bounds = max - min;
  24. return min + (rand_val * bounds) / rand_max;
  25. }
  26. /*
  27. * low level
  28. */
  29. int nmea_gen_init(nmeaGENERATOR *gen, nmeaINFO *info)
  30. {
  31. int RetVal = 1; int smask = info->smask;
  32. nmeaGENERATOR *igen = gen;
  33. nmea_zero_INFO(info);
  34. info->smask = smask;
  35. info->lat = NMEA_DEF_LAT;
  36. info->lon = NMEA_DEF_LON;
  37. while(RetVal && igen)
  38. {
  39. if(igen->init_call)
  40. RetVal = (*igen->init_call)(igen, info);
  41. igen = igen->next;
  42. }
  43. return RetVal;
  44. }
  45. int nmea_gen_loop(nmeaGENERATOR *gen, nmeaINFO *info)
  46. {
  47. int RetVal = 1;
  48. if(gen->loop_call)
  49. RetVal = (*gen->loop_call)(gen, info);
  50. if(RetVal && gen->next)
  51. RetVal = nmea_gen_loop(gen->next, info);
  52. return RetVal;
  53. }
  54. int nmea_gen_reset(nmeaGENERATOR *gen, nmeaINFO *info)
  55. {
  56. int RetVal = 1;
  57. if(gen->reset_call)
  58. RetVal = (*gen->reset_call)(gen, info);
  59. return RetVal;
  60. }
  61. void nmea_gen_destroy(nmeaGENERATOR *gen)
  62. {
  63. if(gen->next)
  64. {
  65. nmea_gen_destroy(gen->next);
  66. gen->next = 0;
  67. }
  68. if(gen->destroy_call)
  69. (*gen->destroy_call)(gen);
  70. free(gen);
  71. }
  72. void nmea_gen_add(nmeaGENERATOR *to, nmeaGENERATOR *gen)
  73. {
  74. if(to->next)
  75. nmea_gen_add(to->next, gen);
  76. else
  77. to->next = gen;
  78. }
  79. int nmea_generate_from(
  80. char *buff, int buff_sz,
  81. nmeaINFO *info,
  82. nmeaGENERATOR *gen,
  83. int generate_mask
  84. )
  85. {
  86. int retval;
  87. if(0 != (retval = nmea_gen_loop(gen, info)))
  88. retval = nmea_generate(buff, buff_sz, info, generate_mask);
  89. return retval;
  90. }
  91. /*
  92. * NOISE generator
  93. */
  94. int nmea_igen_noise_init(nmeaGENERATOR *gen, nmeaINFO *info)
  95. {
  96. return 1;
  97. }
  98. int nmea_igen_noise_loop(nmeaGENERATOR *gen, nmeaINFO *info)
  99. {
  100. int it;
  101. int in_use;
  102. info->sig = (int)nmea_random(1, 3);
  103. info->PDOP = nmea_random(0, 9);
  104. info->HDOP = nmea_random(0, 9);
  105. info->VDOP = nmea_random(0, 9);
  106. info->fix = (int)nmea_random(2, 3);
  107. info->lat = nmea_random(0, 100);
  108. info->lon = nmea_random(0, 100);
  109. info->speed = nmea_random(0, 100);
  110. info->direction = nmea_random(0, 360);
  111. info->declination = nmea_random(0, 360);
  112. info->elv = (int)nmea_random(-100, 100);
  113. info->satinfo.inuse = 0;
  114. info->satinfo.inview = 0;
  115. for(it = 0; it < 12; ++it)
  116. {
  117. info->satinfo.sat[it].id = it;
  118. info->satinfo.sat[it].in_use = in_use = (int)nmea_random(0, 3);
  119. info->satinfo.sat[it].elv = (int)nmea_random(0, 90);
  120. info->satinfo.sat[it].azimuth = (int)nmea_random(0, 359);
  121. info->satinfo.sat[it].sig = (int)(in_use?nmea_random(40, 99):nmea_random(0, 40));
  122. if(in_use)
  123. info->satinfo.inuse++;
  124. if(info->satinfo.sat[it].sig > 0)
  125. info->satinfo.inview++;
  126. }
  127. return 1;
  128. }
  129. int nmea_igen_noise_reset(nmeaGENERATOR *gen, nmeaINFO *info)
  130. {
  131. return 1;
  132. }
  133. /*
  134. * STATIC generator
  135. */
  136. int nmea_igen_static_loop(nmeaGENERATOR *gen, nmeaINFO *info)
  137. {
  138. nmea_time_now(&info->utc);
  139. return 1;
  140. };
  141. int nmea_igen_static_reset(nmeaGENERATOR *gen, nmeaINFO *info)
  142. {
  143. info->satinfo.inuse = 4;
  144. info->satinfo.inview = 4;
  145. info->satinfo.sat[0].id = 1;
  146. info->satinfo.sat[0].in_use = 1;
  147. info->satinfo.sat[0].elv = 50;
  148. info->satinfo.sat[0].azimuth = 0;
  149. info->satinfo.sat[0].sig = 99;
  150. info->satinfo.sat[1].id = 2;
  151. info->satinfo.sat[1].in_use = 1;
  152. info->satinfo.sat[1].elv = 50;
  153. info->satinfo.sat[1].azimuth = 90;
  154. info->satinfo.sat[1].sig = 99;
  155. info->satinfo.sat[2].id = 3;
  156. info->satinfo.sat[2].in_use = 1;
  157. info->satinfo.sat[2].elv = 50;
  158. info->satinfo.sat[2].azimuth = 180;
  159. info->satinfo.sat[2].sig = 99;
  160. info->satinfo.sat[3].id = 4;
  161. info->satinfo.sat[3].in_use = 1;
  162. info->satinfo.sat[3].elv = 50;
  163. info->satinfo.sat[3].azimuth = 270;
  164. info->satinfo.sat[3].sig = 99;
  165. return 1;
  166. }
  167. int nmea_igen_static_init(nmeaGENERATOR *gen, nmeaINFO *info)
  168. {
  169. info->sig = 3;
  170. info->fix = 3;
  171. nmea_igen_static_reset(gen, info);
  172. return 1;
  173. }
  174. /*
  175. * SAT_ROTATE generator
  176. */
  177. int nmea_igen_rotate_loop(nmeaGENERATOR *gen, nmeaINFO *info)
  178. {
  179. int it;
  180. int count = info->satinfo.inview;
  181. double deg = 360 / (count?count:1);
  182. double srt = (count?(info->satinfo.sat[0].azimuth):0) + 5;
  183. nmea_time_now(&info->utc);
  184. for(it = 0; it < count; ++it)
  185. {
  186. info->satinfo.sat[it].azimuth =
  187. (int)((srt >= 360)?srt - 360:srt);
  188. srt += deg;
  189. }
  190. return 1;
  191. };
  192. int nmea_igen_rotate_reset(nmeaGENERATOR *gen, nmeaINFO *info)
  193. {
  194. int it;
  195. double deg = 360 / 8;
  196. double srt = 0;
  197. info->satinfo.inuse = 8;
  198. info->satinfo.inview = 8;
  199. for(it = 0; it < info->satinfo.inview; ++it)
  200. {
  201. info->satinfo.sat[it].id = it + 1;
  202. info->satinfo.sat[it].in_use = 1;
  203. info->satinfo.sat[it].elv = 5;
  204. info->satinfo.sat[it].azimuth = (int)srt;
  205. info->satinfo.sat[it].sig = 80;
  206. srt += deg;
  207. }
  208. return 1;
  209. }
  210. int nmea_igen_rotate_init(nmeaGENERATOR *gen, nmeaINFO *info)
  211. {
  212. info->sig = 3;
  213. info->fix = 3;
  214. nmea_igen_rotate_reset(gen, info);
  215. return 1;
  216. }
  217. /*
  218. * POS_RANDMOVE generator
  219. */
  220. int nmea_igen_pos_rmove_init(nmeaGENERATOR *gen, nmeaINFO *info)
  221. {
  222. info->sig = 3;
  223. info->fix = 3;
  224. info->direction = info->declination = 0;
  225. info->speed = 20;
  226. return 1;
  227. }
  228. int nmea_igen_pos_rmove_loop(nmeaGENERATOR *gen, nmeaINFO *info)
  229. {
  230. nmeaPOS crd;
  231. info->direction += nmea_random(-10, 10);
  232. info->speed += nmea_random(-2, 3);
  233. if(info->direction < 0)
  234. info->direction = 359 + info->direction;
  235. if(info->direction > 359)
  236. info->direction -= 359;
  237. if(info->speed > 40)
  238. info->speed = 40;
  239. if(info->speed < 1)
  240. info->speed = 1;
  241. nmea_info2pos(info, &crd);
  242. nmea_move_horz(&crd, &crd, info->direction, info->speed / 3600);
  243. nmea_pos2info(&crd, info);
  244. info->declination = info->direction;
  245. return 1;
  246. };
  247. int nmea_igen_pos_rmove_destroy(nmeaGENERATOR *gen)
  248. {
  249. return 1;
  250. };
  251. /*
  252. * generator create
  253. */
  254. nmeaGENERATOR * __nmea_create_generator(int type, nmeaINFO *info)
  255. {
  256. nmeaGENERATOR *gen = 0;
  257. switch(type)
  258. {
  259. case NMEA_GEN_NOISE:
  260. if(0 == (gen = malloc(sizeof(nmeaGENERATOR))))
  261. nmea_error("Insufficient memory!");
  262. else
  263. {
  264. memset(gen, 0, sizeof(nmeaGENERATOR));
  265. gen->init_call = &nmea_igen_noise_init;
  266. gen->loop_call = &nmea_igen_noise_loop;
  267. gen->reset_call = &nmea_igen_noise_reset;
  268. }
  269. break;
  270. case NMEA_GEN_STATIC:
  271. case NMEA_GEN_SAT_STATIC:
  272. if(0 == (gen = malloc(sizeof(nmeaGENERATOR))))
  273. nmea_error("Insufficient memory!");
  274. else
  275. {
  276. memset(gen, 0, sizeof(nmeaGENERATOR));
  277. gen->init_call = &nmea_igen_static_init;
  278. gen->loop_call = &nmea_igen_static_loop;
  279. gen->reset_call = &nmea_igen_static_reset;
  280. }
  281. break;
  282. case NMEA_GEN_SAT_ROTATE:
  283. if(0 == (gen = malloc(sizeof(nmeaGENERATOR))))
  284. nmea_error("Insufficient memory!");
  285. else
  286. {
  287. memset(gen, 0, sizeof(nmeaGENERATOR));
  288. gen->init_call = &nmea_igen_rotate_init;
  289. gen->loop_call = &nmea_igen_rotate_loop;
  290. gen->reset_call = &nmea_igen_rotate_reset;
  291. }
  292. break;
  293. case NMEA_GEN_POS_RANDMOVE:
  294. if(0 == (gen = malloc(sizeof(nmeaGENERATOR))))
  295. nmea_error("Insufficient memory!");
  296. else
  297. {
  298. memset(gen, 0, sizeof(nmeaGENERATOR));
  299. gen->init_call = &nmea_igen_pos_rmove_init;
  300. gen->loop_call = &nmea_igen_pos_rmove_loop;
  301. gen->destroy_call = &nmea_igen_pos_rmove_destroy;
  302. }
  303. break;
  304. case NMEA_GEN_ROTATE:
  305. gen = __nmea_create_generator(NMEA_GEN_SAT_ROTATE, info);
  306. nmea_gen_add(gen, __nmea_create_generator(NMEA_GEN_POS_RANDMOVE, info));
  307. break;
  308. };
  309. return gen;
  310. }
  311. nmeaGENERATOR * nmea_create_generator(int type, nmeaINFO *info)
  312. {
  313. nmeaGENERATOR *gen = __nmea_create_generator(type, info);
  314. if(gen)
  315. nmea_gen_init(gen, info);
  316. return gen;
  317. }
  318. void nmea_destroy_generator(nmeaGENERATOR *gen)
  319. {
  320. nmea_gen_destroy(gen);
  321. }
  322. #if defined(NMEA_WIN) && defined(_MSC_VER)
  323. # pragma warning(default: 4100)
  324. #endif