tests.c 40 KB

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  1. /*
  2. * Copyright © 2014 Kosma Moczek <kosma@cloudyourcar.com>
  3. * This program is free software. It comes without any warranty, to the extent
  4. * permitted by applicable law. You can redistribute it and/or modify it under
  5. * the terms of the Do What The Fuck You Want To Public License, Version 2, as
  6. * published by Sam Hocevar. See the COPYING file for more details.
  7. */
  8. #pragma GCC diagnostic ignored "-Wmissing-field-initializers"
  9. #pragma GCC diagnostic ignored "-Wtype-limits"
  10. #include <stdlib.h>
  11. #include <string.h>
  12. #include <math.h>
  13. #include <check.h>
  14. #include "minmea.h"
  15. static const char *valid_sentences_nochecksum[] = {
  16. "$GPTXT,xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx",
  17. "$GPTXT,hello\n",
  18. "$GPTXT,hello\r",
  19. "$GPTXT,hello\r\n",
  20. "$GPTXT,hello\r\n\r\n",
  21. "$GPTXT,hello\n\r\r\n",
  22. NULL,
  23. };
  24. static const char *valid_sentences_checksum[] = {
  25. "$GPTXT,01,01,02,ANTSTATUS=INIT*25",
  26. "$GPRMC,,V,,,,,,,,,,N*53",
  27. "$GPVTG,,,,,,,,,N*30",
  28. "$GPGGA,,,,,,0,00,99.99,,,,,,*48",
  29. "$GPGSA,A,1,,,,,,,,,,,,,99.99,99.99,99.99*30",
  30. "$GPGLL,,,,,,V,N*64",
  31. "$GPXTE,A,A,0.67,L,N*6F",
  32. "$GPXTE,A,A,0.67,L,N*6f",
  33. "$GPGGA,123204.00,5106.94086,N,01701.51680,E,1,06,3.86,127.9,M,40.5,M,,*51",
  34. "$GPGSA,A,3,02,08,09,05,04,26,,,,,,,4.92,3.86,3.05*00",
  35. "$GPGSV,4,1,13,02,28,259,33,04,12,212,27,05,34,305,30,07,79,138,*7F",
  36. "$GPGSV,4,2,13,08,51,203,30,09,45,215,28,10,69,197,19,13,47,081,*76",
  37. "$GPGSV,4,3,13,16,20,040,17,26,08,271,30,28,01,168,18,33,24,219,27*74",
  38. "$GPGSV,4,4,13,39,31,170,27*40",
  39. "$GPGLL,5106.94086,N,01701.51680,E,123204.00,A,A*63",
  40. "$GPRMC,123205.00,A,5106.94085,N,01701.51689,E,0.016,,280214,,,A*7B",
  41. "$GPVTG,,T,,M,0.016,N,0.030,K,A*27",
  42. "$GPGST,024603.00,3.2,6.6,4.7,47.3,5.8,5.6,22.0*58",
  43. "$GPZDA,160012.71,11,03,2004,-1,00*7D",
  44. "$GNGBS,170556.00,3.0,2.9,8.3,,,,*5C",
  45. NULL,
  46. };
  47. static const char *invalid_sentences[] = {
  48. "$GPTXT,xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"
  49. "xxxxxxxxxxxxxxxxxxxxxxxxxxx",
  50. "$GPTXT,01,01,02,ANTSTATUS=INIT*26",
  51. "$GPRMC,,V,,,,,,,,,,N*532",
  52. "$GPVTG,,,,\xff,,,,,N*30",
  53. "$$GPGGA,,,,,,0,00,99.99,,,,,,*48",
  54. "GPGSA,A,1,,,,,,,,,,,,,99.99,99.99,99.99*30",
  55. "gps: $GPGLL,,,,,,V,N",
  56. "$GPXTE,A,A,0.67,L,N*6e",
  57. "$GPXTE,A,A,0.67,L,N*6g",
  58. "$GPTXT,hello\n ",
  59. "$GPTXT,hello\r*24",
  60. "$GPTXT,hello\r\n$",
  61. NULL,
  62. };
  63. START_TEST(test_minmea_checksum)
  64. {
  65. ck_assert_int_eq(minmea_checksum(""), 0x00);
  66. ck_assert_int_eq(minmea_checksum("$"), 0x00);
  67. ck_assert_int_eq(minmea_checksum("*"), 0x00);
  68. ck_assert_int_eq(minmea_checksum("$*"), 0x00);
  69. ck_assert_int_eq(minmea_checksum("$GPTXT,01,01,02,ANTSTATUS=INIT*25"), 0x25);
  70. ck_assert_int_eq(minmea_checksum("$GPTXT,01,01,02,ANTSTATUS=INIT"), 0x25);
  71. ck_assert_int_eq(minmea_checksum("GPTXT,01,01,02,ANTSTATUS=INIT*25"), 0x25);
  72. ck_assert_int_eq(minmea_checksum("GPTXT,01,01,02,ANTSTATUS=INIT"), 0x25);
  73. ck_assert_int_eq(minmea_checksum("$GPXTE,A,A,0.67,L,N*6F"), 0x6f);
  74. ck_assert_int_eq(minmea_checksum("GPXTE,A,A,0.67,L,N*6f"), 0x6f);
  75. }
  76. END_TEST
  77. START_TEST(test_minmea_check)
  78. {
  79. for (const char **sentence=valid_sentences_nochecksum; *sentence; sentence++) {
  80. ck_assert_msg(minmea_check(*sentence, false) == true, "%s", *sentence);
  81. ck_assert_msg(minmea_check(*sentence, true) == false, "%s", *sentence);
  82. }
  83. for (const char **sentence=valid_sentences_checksum; *sentence; sentence++) {
  84. ck_assert_msg(minmea_check(*sentence, false) == true, "%s", *sentence);
  85. ck_assert_msg(minmea_check(*sentence, true) == true, "%s", *sentence);
  86. }
  87. for (const char **sentence=invalid_sentences; *sentence; sentence++) {
  88. ck_assert_msg(minmea_check(*sentence, false) == false, "%s", *sentence);
  89. ck_assert_msg(minmea_check(*sentence, true) == false, "%s", *sentence);
  90. }
  91. }
  92. END_TEST
  93. START_TEST(test_minmea_scan_c)
  94. {
  95. char ch, extra;
  96. ck_assert(minmea_scan("A,123.45", "c", &ch) == true);
  97. ck_assert_int_eq(ch, 'A');
  98. ck_assert(minmea_scan("WUT,123.45", "c", &ch) == true);
  99. ck_assert_int_eq(ch, 'W');
  100. ck_assert(minmea_scan(",123.45", "c", &ch) == true);
  101. ck_assert_int_eq(ch, '\0');
  102. ck_assert(minmea_scan("A,B", "cc", &ch, &extra) == true);
  103. ck_assert_int_eq(ch, 'A');
  104. ck_assert_int_eq(extra, 'B');
  105. ck_assert(minmea_scan("C", "cc", &ch, &extra) == false);
  106. ck_assert(minmea_scan("D", "c;c", &ch, &extra) == true);
  107. ck_assert_int_eq(ch, 'D');
  108. ck_assert_int_eq(extra, '\0');
  109. ck_assert(minmea_scan("E,F", "c;c", &ch, &extra) == true);
  110. ck_assert_int_eq(ch, 'E');
  111. ck_assert_int_eq(extra, 'F');
  112. }
  113. END_TEST
  114. START_TEST(test_minmea_scan_d)
  115. {
  116. int direction;
  117. ck_assert(minmea_scan("K", "d", &direction) == false);
  118. ck_assert(minmea_scan("", "d", &direction) == true);
  119. ck_assert(minmea_scan(",foo", "d", &direction) == true);
  120. ck_assert_int_eq(direction, 0);
  121. ck_assert(minmea_scan("N", "d", &direction) == true);
  122. ck_assert_int_eq(direction, 1);
  123. ck_assert(minmea_scan("S,foo", "d", &direction) == true);
  124. ck_assert_int_eq(direction, -1);
  125. ck_assert(minmea_scan("W", "d", &direction) == true);
  126. ck_assert_int_eq(direction, -1);
  127. ck_assert(minmea_scan("E,foo", "d", &direction) == true);
  128. ck_assert_int_eq(direction, 1);
  129. }
  130. END_TEST
  131. START_TEST(test_minmea_scan_f)
  132. {
  133. struct minmea_float f;
  134. ck_assert(minmea_scan("-", "f", &f) == false);
  135. ck_assert(minmea_scan("10-", "f", &f) == false);
  136. ck_assert(minmea_scan("+-10", "f", &f) == false);
  137. ck_assert(minmea_scan("12..45", "f", &f) == false);
  138. ck_assert(minmea_scan("blah", "f", &f) == false);
  139. ck_assert(minmea_scan("12.3.4", "f", &f) == false);
  140. ck_assert(minmea_scan(",", "f", &f) == true);
  141. ck_assert_int_eq(f.scale, 0);
  142. ck_assert(minmea_scan("", "f", &f) == true);
  143. ck_assert_int_eq(f.scale, 0);
  144. ck_assert(minmea_scan("42", "f", &f) == true);
  145. ck_assert_int_eq(f.value, 42);
  146. ck_assert_int_eq(f.scale, 1);
  147. ck_assert(minmea_scan("15.345", "f", &f) == true);
  148. ck_assert_int_eq(f.value, 15345);
  149. ck_assert_int_eq(f.scale, 1000);
  150. ck_assert(minmea_scan("-1.23,V", "f", &f) == true);
  151. ck_assert_int_eq(f.value, -123);
  152. ck_assert_int_eq(f.scale, 100);
  153. /* the guaranteed range is 32 bits which translates to +-180 degrees
  154. * with 5 decimal digits. make sure we support that. */
  155. ck_assert(minmea_scan("18000.00000", "f", &f) == true);
  156. ck_assert_int_eq(f.value, 1800000000);
  157. ck_assert_int_eq(f.scale, 100000);
  158. ck_assert(minmea_scan("-18000.00000", "f", &f) == true);
  159. ck_assert_int_eq(f.value, -1800000000);
  160. ck_assert_int_eq(f.scale, 100000);
  161. if (sizeof(int_least32_t) == 4) {
  162. /* fits in 32 bits */
  163. ck_assert(minmea_scan("2147483647", "f", &f) == true);
  164. ck_assert_int_eq(f.value, 2147483647);
  165. ck_assert_int_eq(f.scale, 1);
  166. /* doesn't fit, truncate precision */
  167. ck_assert(minmea_scan("2147483.648", "f", &f) == true);
  168. ck_assert_int_eq(f.value, 214748364);
  169. ck_assert_int_eq(f.scale, 100);
  170. /* doesn't fit, bail out */
  171. ck_assert(minmea_scan("2147483648", "f", &f) == false);
  172. } else if (sizeof(int_least32_t) == 8) {
  173. /* Casting to int64_t is ugly, but otherwise we get this on machines with 32-bit int_least32_t:
  174. * error: comparison is always false due to limited range of data type [-Werror=type-limits] */
  175. /* fits in 64 bits */
  176. ck_assert(minmea_scan("9223372036854775807", "f", &f) == true);
  177. ck_assert_int_eq((int64_t) f.value, 9223372036854775807LL);
  178. ck_assert_int_eq(f.scale, 1);
  179. /* doesn't fit, truncate precision */
  180. ck_assert(minmea_scan("9223372036854775.808", "f", &f) == true);
  181. ck_assert_int_eq((int64_t) f.value, 922337203685477580LL);
  182. ck_assert_int_eq(f.scale, 100);
  183. /* doesn't fit, bail out */
  184. ck_assert(minmea_scan("9223372036854775808", "f", &f) == false);
  185. } else {
  186. ck_abort_msg("your platform is esoteric. please fix this unit test.");
  187. }
  188. /* optional f.values */
  189. ck_assert(minmea_scan("foo", "_;f", &f) == true);
  190. ck_assert_int_eq(f.scale, 0);
  191. ck_assert(minmea_scan("foo,", "_;f", &f) == true);
  192. ck_assert_int_eq(f.scale, 0);
  193. ck_assert(minmea_scan("foo,12.3", "_;f", &f) == true);
  194. ck_assert_int_eq(f.value, 123);
  195. ck_assert_int_eq(f.scale, 10);
  196. /* accept spaces at the start of the field. some modules do this, unfortunately. */
  197. ck_assert(minmea_scan(" -1.23,V", "f", &f) == true);
  198. ck_assert_int_eq(f.value, -123);
  199. ck_assert_int_eq(f.scale, 100);
  200. ck_assert(minmea_scan(" -4.56,V", "f", &f) == true);
  201. ck_assert_int_eq(f.value, -456);
  202. ck_assert_int_eq(f.scale, 100);
  203. ck_assert(minmea_scan("-3.33 ,V", "f", &f) == false);
  204. ck_assert(minmea_scan(" -3.33 ,V", "f", &f) == false);
  205. ck_assert(minmea_scan("-3. 33,V", "f", &f) == false);
  206. ck_assert(minmea_scan("0 .0,V", "f", &f) == false);
  207. }
  208. END_TEST
  209. START_TEST(test_minmea_scan_i)
  210. {
  211. int value, extra;
  212. // valid parses
  213. ck_assert(minmea_scan("14", "i", &value) == true);
  214. ck_assert_int_eq(value, 14);
  215. ck_assert(minmea_scan("-1234", "i", &value) == true);
  216. ck_assert_int_eq(value, -1234);
  217. // empty field
  218. ck_assert(minmea_scan("", "i", &value) == true);
  219. ck_assert_int_eq(value, 0);
  220. // invalid value
  221. ck_assert(minmea_scan("foo", "i", &value) == false);
  222. // missing field
  223. ck_assert(minmea_scan("41", "ii", &value, &extra) == false);
  224. /* optional values */
  225. ck_assert(minmea_scan("10", "i;i", &value, &extra) == true);
  226. ck_assert_int_eq(value, 10);
  227. ck_assert(minmea_scan("20,30", "i;i", &value, &extra) == true);
  228. ck_assert_int_eq(value, 20);
  229. ck_assert_int_eq(extra, 30);
  230. ck_assert(minmea_scan("42,foo", "i;i", &value, &extra) == false);
  231. }
  232. END_TEST
  233. START_TEST(test_minmea_scan_s)
  234. {
  235. char value[MINMEA_MAX_SENTENCE_LENGTH];
  236. ck_assert(minmea_scan(",bar,baz", "s", value) == true);
  237. ck_assert_str_eq(value, "");
  238. ck_assert(minmea_scan("foo,bar,baz", "s", value) == true);
  239. ck_assert_str_eq(value, "foo");
  240. ck_assert(minmea_scan("dummy", "_;s", value) == true);
  241. ck_assert_str_eq(value, "");
  242. ck_assert(minmea_scan("dummy,foo", "_;s", value) == true);
  243. ck_assert_str_eq(value, "foo");
  244. ck_assert(minmea_scan("dummy,", "_;s", value) == true);
  245. ck_assert_str_eq(value, "");
  246. }
  247. END_TEST
  248. START_TEST(test_minmea_scan_t)
  249. {
  250. char buf[7];
  251. buf[sizeof(buf)-1] = 0x42;
  252. ck_assert(minmea_scan("$GPRM,foo,bar,baz", "t", buf) == false);
  253. ck_assert(minmea_scan("GPRMC,foo,bar,baz", "t", buf) == false);
  254. ck_assert(minmea_scan("$GPRMC,foo,bar,baz", "t", buf) == true);
  255. ck_assert_str_eq(buf, "GPRMC");
  256. ck_assert(buf[sizeof(buf)-1] == 0x42);
  257. }
  258. END_TEST
  259. START_TEST(test_minmea_scan_D)
  260. {
  261. struct minmea_date d;
  262. ck_assert(minmea_scan("$GPXXX,3112", "_D", &d) == false);
  263. ck_assert(minmea_scan("$GPXXX,foobar", "_D", &d) == false);
  264. ck_assert(minmea_scan("$GPXXX,311299", "_D", &d) == true);
  265. ck_assert_int_eq(d.day, 31);
  266. ck_assert_int_eq(d.month, 12);
  267. ck_assert_int_eq(d.year, 99);
  268. ck_assert(minmea_scan("$GPXXX,,,,,,,,,nope", "_D", &d) == true);
  269. ck_assert_int_eq(d.day, -1);
  270. ck_assert_int_eq(d.month, -1);
  271. ck_assert_int_eq(d.year, -1);
  272. }
  273. END_TEST
  274. START_TEST(test_minmea_scan_T)
  275. {
  276. struct minmea_time t;
  277. ck_assert(minmea_scan("$GPXXX,2359", "_T", &t) == false);
  278. ck_assert(minmea_scan("$GPXXX,foobar", "_T", &t) == false);
  279. ck_assert(minmea_scan("$GPXXX,235960", "_T", &t) == true);
  280. ck_assert_int_eq(t.hours, 23);
  281. ck_assert_int_eq(t.minutes, 59);
  282. ck_assert_int_eq(t.seconds, 60);
  283. ck_assert_int_eq(t.microseconds, 0);
  284. ck_assert(minmea_scan("$GPXXX,213700.001", "_T", &t) == true);
  285. ck_assert_int_eq(t.hours, 21);
  286. ck_assert_int_eq(t.minutes, 37);
  287. ck_assert_int_eq(t.seconds, 0);
  288. ck_assert_int_eq(t.microseconds, 1000);
  289. ck_assert(minmea_scan("$GPXXX,,,,,,,nope", "_T", &t) == true);
  290. ck_assert_int_eq(t.hours, -1);
  291. ck_assert_int_eq(t.minutes, -1);
  292. ck_assert_int_eq(t.seconds, -1);
  293. ck_assert_int_eq(t.microseconds, -1);
  294. }
  295. END_TEST
  296. START_TEST(test_minmea_scan_complex1)
  297. {
  298. const char *sentence = "$GPGGA,123519,4807.038,N,01131.000,E,1,08,0.9,545.4,M,46.9,M,,*47\r\n";
  299. char type[6];
  300. struct minmea_time t;
  301. struct minmea_float latitude; int latitude_direction;
  302. struct minmea_float longitude; int longitude_direction;
  303. int fix_quality;
  304. int satellites;
  305. struct minmea_float hdop;
  306. struct minmea_float altitude; char altitude_units;
  307. struct minmea_float height; char height_units;
  308. ck_assert(minmea_scan(sentence, "tTfdfdiiffcfc__",
  309. type,
  310. &t,
  311. &latitude, &latitude_direction,
  312. &longitude, &longitude_direction,
  313. &fix_quality,
  314. &satellites,
  315. &hdop,
  316. &altitude, &altitude_units,
  317. &height, &height_units) == true);
  318. ck_assert_str_eq(type, "GPGGA");
  319. ck_assert_int_eq(t.hours, 12);
  320. ck_assert_int_eq(t.minutes, 35);
  321. ck_assert_int_eq(t.seconds, 19);
  322. ck_assert_int_eq(latitude.value, 4807038);
  323. ck_assert_int_eq(latitude.scale, 1000);
  324. ck_assert_int_eq(latitude_direction, 1);
  325. ck_assert_int_eq(longitude.value, 1131000);
  326. ck_assert_int_eq(longitude.scale, 1000);
  327. ck_assert_int_eq(longitude_direction, 1);
  328. ck_assert_int_eq(fix_quality, 1);
  329. ck_assert_int_eq(satellites, 8);
  330. ck_assert_int_eq(hdop.value, 9);
  331. ck_assert_int_eq(hdop.scale, 10);
  332. ck_assert_int_eq(altitude.value, 5454);
  333. ck_assert_int_eq(altitude.scale, 10);
  334. ck_assert_int_eq(altitude_units, 'M');
  335. ck_assert_int_eq(height.value, 469);
  336. ck_assert_int_eq(height.scale, 10);
  337. ck_assert_int_eq(height_units, 'M');
  338. }
  339. END_TEST
  340. START_TEST(test_minmea_scan_complex2)
  341. {
  342. const char *sentence = "$GPBWC,081837,,,,,,T,,M,,N,*13";
  343. char type[6];
  344. struct minmea_time t;
  345. struct minmea_float latitude; int latitude_direction;
  346. struct minmea_float longitude; int longitude_direction;
  347. struct minmea_float bearing_true; char bearing_true_mark;
  348. struct minmea_float bearing_magnetic; char bearing_magnetic_mark;
  349. struct minmea_float distance; char distance_units;
  350. char name[MINMEA_MAX_SENTENCE_LENGTH];
  351. ck_assert(minmea_scan(sentence, "tTfdfdfcfcfcs",
  352. type,
  353. &t,
  354. &latitude, &latitude_direction,
  355. &longitude, &longitude_direction,
  356. &bearing_true, &bearing_true_mark,
  357. &bearing_magnetic, &bearing_magnetic_mark,
  358. &distance, &distance_units,
  359. name) == true);
  360. ck_assert_str_eq(type, "GPBWC");
  361. ck_assert_int_eq(t.hours, 8);
  362. ck_assert_int_eq(t.minutes, 18);
  363. ck_assert_int_eq(t.seconds, 37);
  364. ck_assert_int_eq(latitude.scale, 0);
  365. ck_assert_int_eq(latitude_direction, 0);
  366. ck_assert_int_eq(longitude.scale, 0);
  367. ck_assert_int_eq(longitude_direction, 0);
  368. ck_assert_int_eq(bearing_true.scale, 0);
  369. ck_assert_int_eq(bearing_true_mark, 'T');
  370. ck_assert_int_eq(bearing_magnetic.scale, 0);
  371. ck_assert_int_eq(bearing_magnetic_mark, 'M');
  372. ck_assert_int_eq(distance.scale, 0);
  373. ck_assert_int_eq(distance_units, 'N');
  374. ck_assert_str_eq(name, "");
  375. }
  376. END_TEST
  377. START_TEST(test_minmea_scan_complex3)
  378. {
  379. const char *sentence = "$GPGST,024603.00,3.2,6.6,4.7,47.3,5.8,5.6,22.0*58";
  380. char type[6];
  381. struct minmea_time t;
  382. struct minmea_float rms_deviation;
  383. struct minmea_float semi_major_deviation;
  384. struct minmea_float semi_minor_deviation;
  385. struct minmea_float semi_major_orientation;
  386. struct minmea_float latitude_error_deviation;
  387. struct minmea_float longitude_error_deviation;
  388. struct minmea_float altitude_error_deviation;
  389. ck_assert(minmea_scan(sentence, "tTfffffff",
  390. type,
  391. &t,
  392. &rms_deviation,
  393. &semi_major_deviation,
  394. &semi_minor_deviation,
  395. &semi_major_orientation,
  396. &latitude_error_deviation,
  397. &longitude_error_deviation,
  398. &altitude_error_deviation) == true);
  399. ck_assert_str_eq(type, "GPGST");
  400. ck_assert_int_eq(t.hours, 2);
  401. ck_assert_int_eq(t.minutes, 46);
  402. ck_assert_int_eq(t.seconds, 3);
  403. ck_assert_int_eq(t.microseconds, 0);
  404. ck_assert_int_eq(rms_deviation.value, 32);
  405. ck_assert_int_eq(rms_deviation.scale, 10);
  406. ck_assert_int_eq(semi_major_deviation.value, 66);
  407. ck_assert_int_eq(semi_major_deviation.scale, 10);
  408. ck_assert_int_eq(semi_minor_deviation.value, 47);
  409. ck_assert_int_eq(semi_minor_deviation.scale, 10);
  410. ck_assert_int_eq(semi_major_orientation.value, 473);
  411. ck_assert_int_eq(semi_major_orientation.scale, 10);
  412. ck_assert_int_eq(latitude_error_deviation.value, 58);
  413. ck_assert_int_eq(latitude_error_deviation.scale, 10);
  414. ck_assert_int_eq(longitude_error_deviation.value, 56);
  415. ck_assert_int_eq(longitude_error_deviation.scale, 10);
  416. ck_assert_int_eq(altitude_error_deviation.value, 220);
  417. ck_assert_int_eq(altitude_error_deviation.scale, 10);
  418. }
  419. END_TEST
  420. START_TEST(test_minmea_parse_gbs1)
  421. {
  422. const char *sentence = "$GNGBS,170556.00,3.0,2.9,8.3,,,,";
  423. struct minmea_sentence_gbs frame = {};
  424. static const struct minmea_sentence_gbs expected = {
  425. .time = { 17, 5, 56, 0 },
  426. .err_latitude = { 30, 10 },
  427. .err_longitude = { 29, 10 },
  428. .err_altitude = { 83, 10 },
  429. .svid = 0,
  430. .prob = { 0, 0 },
  431. .bias = { 0, 0 },
  432. .stddev = { 0, 0 },
  433. };
  434. ck_assert(minmea_check(sentence, false) == true);
  435. ck_assert(minmea_check(sentence, true) == false);
  436. ck_assert(minmea_parse_gbs(&frame, sentence) == true);
  437. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  438. }
  439. END_TEST
  440. START_TEST(test_minmea_parse_rmc1)
  441. {
  442. const char *sentence = "$GPRMC,081836.75,A,3751.65,S,14507.36,E,000.0,360.0,130998,011.3,E";
  443. struct minmea_sentence_rmc frame = {};
  444. static const struct minmea_sentence_rmc expected = {
  445. .time = { 8, 18, 36, 750000 },
  446. .valid = true,
  447. .latitude = { -375165, 100 },
  448. .longitude = { 1450736, 100 },
  449. .speed = { 0, 10 },
  450. .course = { 3600, 10 },
  451. .date = { 13, 9, 98 },
  452. .variation = { 113, 10 },
  453. };
  454. ck_assert(minmea_check(sentence, false) == true);
  455. ck_assert(minmea_check(sentence, true) == false);
  456. ck_assert(minmea_parse_rmc(&frame, sentence) == true);
  457. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  458. }
  459. END_TEST
  460. START_TEST(test_minmea_parse_rmc2)
  461. {
  462. const char *sentence = "$GPRMC,,A,3751.65,N,14507.36,W,,,,,";
  463. struct minmea_sentence_rmc frame = {};
  464. static const struct minmea_sentence_rmc expected = {
  465. .time = { -1, -1, -1, -1 },
  466. .valid = true,
  467. .latitude = { 375165, 100 },
  468. .longitude = { -1450736, 100 },
  469. .date = { -1, -1, -1 },
  470. };
  471. ck_assert(minmea_check(sentence, false) == true);
  472. ck_assert(minmea_check(sentence, true) == false);
  473. ck_assert(minmea_parse_rmc(&frame, sentence) == true);
  474. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  475. }
  476. END_TEST
  477. START_TEST(test_minmea_parse_gga1)
  478. {
  479. const char *sentence = "$GPGGA,123519,4807.038,N,01131.000,E,1,08,0.9,545.4,M,46.9,M,,*47";
  480. struct minmea_sentence_gga frame = {};
  481. struct minmea_sentence_gga expected = {};
  482. expected.time = (struct minmea_time) { 12, 35, 19, 0 };
  483. expected.latitude = (struct minmea_float) { 4807038, 1000 };
  484. expected.longitude = (struct minmea_float) { 1131000, 1000 };
  485. expected.fix_quality = 1;
  486. expected.satellites_tracked = 8;
  487. expected.hdop = (struct minmea_float) { 9, 10 };
  488. expected.altitude = (struct minmea_float) { 5454, 10 };
  489. expected.altitude_units = 'M';
  490. expected.height = (struct minmea_float) { 469, 10 };
  491. expected.height_units = 'M';
  492. expected.dgps_age = (struct minmea_float) { 0, 0 };
  493. ck_assert(minmea_check(sentence, false) == true);
  494. ck_assert(minmea_check(sentence, true) == true);
  495. ck_assert(minmea_parse_gga(&frame, sentence) == true);
  496. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  497. }
  498. END_TEST
  499. START_TEST(test_minmea_parse_gst1)
  500. {
  501. const char *sentence = "$GPGST,024603.00,3.2,6.6,4.7,47.3,5.8,5.6,22.0*58";
  502. struct minmea_sentence_gst frame = {};
  503. struct minmea_sentence_gst expected = {
  504. .time = { 2, 46, 3, 0 },
  505. .rms_deviation = { 32, 10 },
  506. .semi_major_deviation = { 66, 10 },
  507. .semi_minor_deviation = { 47, 10 },
  508. .semi_major_orientation = { 473, 10 },
  509. .latitude_error_deviation = { 58, 10 },
  510. .longitude_error_deviation = { 56, 10 },
  511. .altitude_error_deviation = { 220, 10 },
  512. };
  513. ck_assert(minmea_check(sentence, false) == true);
  514. ck_assert(minmea_check(sentence, true) == true);
  515. ck_assert(minmea_parse_gst(&frame, sentence) == true);
  516. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  517. }
  518. END_TEST
  519. START_TEST(test_minmea_parse_gsa1)
  520. {
  521. const char *sentence = "$GPGSA,A,3,04,05,,09,12,,,24,,,,,2.5,1.3,2.1*39";
  522. struct minmea_sentence_gsa frame = {};
  523. static const struct minmea_sentence_gsa expected = {
  524. .mode = MINMEA_GPGSA_MODE_AUTO,
  525. .fix_type = MINMEA_GPGSA_FIX_3D,
  526. .sats = { 4, 5, 0, 9, 12, 0, 0, 24, 0, 0, 0, 0 },
  527. .pdop = { 25, 10 },
  528. .hdop = { 13, 10 },
  529. .vdop = { 21, 10 },
  530. };
  531. ck_assert(minmea_check(sentence, false) == true);
  532. ck_assert(minmea_check(sentence, true) == true);
  533. ck_assert(minmea_parse_gsa(&frame, sentence) == true);
  534. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  535. }
  536. END_TEST
  537. START_TEST(test_minmea_parse_gll1)
  538. {
  539. const char *sentence = "$GPGLL,3723.2475,N,12158.3416,W,161229.487,A,A*41";
  540. struct minmea_sentence_gll frame;
  541. struct minmea_sentence_gll expected;
  542. // clear structs before initialization to enable use of memcmp()
  543. // todo: add for other structs
  544. memset(&frame, 0, sizeof(frame));
  545. memset(&expected, 0, sizeof(expected));
  546. expected.latitude = (struct minmea_float){ 37232475, 10000 };
  547. expected.longitude = (struct minmea_float){ -121583416, 10000 };
  548. expected.time = (struct minmea_time){ 16, 12, 29, 487000 };
  549. expected.status = MINMEA_GLL_STATUS_DATA_VALID;
  550. expected.mode = MINMEA_FAA_MODE_AUTONOMOUS;
  551. ck_assert(minmea_check(sentence, false) == true);
  552. ck_assert(minmea_check(sentence, true) == true);
  553. ck_assert(minmea_parse_gll(&frame, sentence) == true);
  554. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  555. }
  556. END_TEST
  557. START_TEST(test_minmea_parse_gll2)
  558. {
  559. const char *sentence = "$GPGLL,4916.45,N,12311.12,W,225444,A";
  560. struct minmea_sentence_gll frame = {};
  561. struct minmea_sentence_gll expected = {
  562. .latitude = { 491645, 100 },
  563. .longitude = { -1231112, 100 },
  564. .time = { 22, 54, 44 },
  565. .status = MINMEA_GLL_STATUS_DATA_VALID,
  566. .mode = 0,
  567. };
  568. ck_assert(minmea_check(sentence, false) == true);
  569. ck_assert(minmea_check(sentence, true) == false);
  570. ck_assert(minmea_parse_gll(&frame, sentence) == true);
  571. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  572. }
  573. END_TEST
  574. START_TEST(test_minmea_parse_gsv1)
  575. {
  576. const char *sentence = "$GPGSV,3,3,11,22,42,067,42,24,14,311,43,27,05,244,00,,,,*4D";
  577. struct minmea_sentence_gsv frame = {};
  578. static const struct minmea_sentence_gsv expected = {
  579. .total_msgs = 3,
  580. .msg_nr = 3,
  581. .total_sats = 11,
  582. .sats = {
  583. {
  584. .nr = 22,
  585. .elevation = 42,
  586. .azimuth = 67,
  587. .snr = 42
  588. },
  589. {
  590. .nr = 24,
  591. .elevation = 14,
  592. .azimuth = 311,
  593. .snr = 43
  594. },
  595. {
  596. .nr = 27,
  597. .elevation = 5,
  598. .azimuth = 244,
  599. .snr = 0
  600. },
  601. {
  602. .nr = 0,
  603. .elevation = 0,
  604. .azimuth = 0,
  605. .snr = 0
  606. }
  607. }
  608. };
  609. ck_assert(minmea_check(sentence, false) == true);
  610. ck_assert(minmea_check(sentence, true) == true);
  611. ck_assert(minmea_parse_gsv(&frame, sentence) == true);
  612. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  613. }
  614. END_TEST
  615. START_TEST(test_minmea_parse_gsv2)
  616. {
  617. const char *sentence = "$GPGSV,4,2,11,08,51,203,30,09,45,215,28*75";
  618. struct minmea_sentence_gsv frame = {};
  619. static const struct minmea_sentence_gsv expected = {
  620. .total_msgs = 4,
  621. .msg_nr = 2,
  622. .total_sats = 11,
  623. .sats = {
  624. {
  625. .nr = 8,
  626. .elevation = 51,
  627. .azimuth = 203,
  628. .snr = 30
  629. },
  630. {
  631. .nr = 9,
  632. .elevation = 45,
  633. .azimuth = 215,
  634. .snr = 28
  635. },
  636. {
  637. .nr = 0,
  638. .elevation = 0,
  639. .azimuth = 0,
  640. .snr = 0
  641. },
  642. {
  643. .nr = 0,
  644. .elevation = 0,
  645. .azimuth = 0,
  646. .snr = 0
  647. }
  648. }
  649. };
  650. ck_assert(minmea_check(sentence, false) == true);
  651. ck_assert(minmea_check(sentence, true) == true);
  652. ck_assert(minmea_parse_gsv(&frame, sentence) == true);
  653. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  654. }
  655. END_TEST
  656. START_TEST(test_minmea_parse_gsv3)
  657. {
  658. const char *sentence = "$GPGSV,4,4,13,39,31,170,27*40";
  659. struct minmea_sentence_gsv frame = {};
  660. static const struct minmea_sentence_gsv expected = {
  661. .total_msgs = 4,
  662. .msg_nr = 4,
  663. .total_sats = 13,
  664. .sats = {
  665. {
  666. .nr = 39,
  667. .elevation = 31,
  668. .azimuth = 170,
  669. .snr = 27
  670. },
  671. {
  672. .nr = 0,
  673. .elevation = 0,
  674. .azimuth = 0,
  675. .snr = 0
  676. },
  677. {
  678. .nr = 0,
  679. .elevation = 0,
  680. .azimuth = 0,
  681. .snr = 0
  682. },
  683. {
  684. .nr = 0,
  685. .elevation = 0,
  686. .azimuth = 0,
  687. .snr = 0
  688. }
  689. }
  690. };
  691. ck_assert(minmea_check(sentence, false) == true);
  692. ck_assert(minmea_check(sentence, true) == true);
  693. ck_assert(minmea_parse_gsv(&frame, sentence) == true);
  694. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  695. }
  696. END_TEST
  697. START_TEST(test_minmea_parse_gsv4)
  698. {
  699. const char *sentence = "$GPGSV,4,4,13*7B";
  700. struct minmea_sentence_gsv frame = {};
  701. static const struct minmea_sentence_gsv expected = {
  702. .total_msgs = 4,
  703. .msg_nr = 4,
  704. .total_sats = 13,
  705. .sats = {
  706. {
  707. .nr = 0,
  708. .elevation = 0,
  709. .azimuth = 0,
  710. .snr = 0
  711. },
  712. {
  713. .nr = 0,
  714. .elevation = 0,
  715. .azimuth = 0,
  716. .snr = 0
  717. },
  718. {
  719. .nr = 0,
  720. .elevation = 0,
  721. .azimuth = 0,
  722. .snr = 0
  723. },
  724. {
  725. .nr = 0,
  726. .elevation = 0,
  727. .azimuth = 0,
  728. .snr = 0
  729. }
  730. }
  731. };
  732. ck_assert(minmea_check(sentence, false) == true);
  733. ck_assert(minmea_check(sentence, true) == true);
  734. ck_assert(minmea_parse_gsv(&frame, sentence) == true);
  735. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  736. }
  737. END_TEST
  738. START_TEST(test_minmea_parse_gsv5)
  739. {
  740. const char *sentence = "$GPGSV,4,1,13,02,28,259,33,04,12,212,27,05,34,305,30,07,79,138,*7F";
  741. struct minmea_sentence_gsv frame = {};
  742. static const struct minmea_sentence_gsv expected = {
  743. .total_msgs = 4,
  744. .msg_nr = 1,
  745. .total_sats = 13,
  746. .sats = {
  747. {
  748. .nr = 2,
  749. .elevation = 28,
  750. .azimuth = 259,
  751. .snr = 33
  752. },
  753. {
  754. .nr = 4,
  755. .elevation = 12,
  756. .azimuth = 212,
  757. .snr = 27
  758. },
  759. {
  760. .nr = 5,
  761. .elevation = 34,
  762. .azimuth = 305,
  763. .snr = 30
  764. },
  765. {
  766. .nr = 7,
  767. .elevation = 79,
  768. .azimuth = 138,
  769. .snr = 0
  770. }
  771. }
  772. };
  773. ck_assert(minmea_check(sentence, false) == true);
  774. ck_assert(minmea_check(sentence, true) == true);
  775. ck_assert(minmea_parse_gsv(&frame, sentence) == true);
  776. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  777. }
  778. END_TEST
  779. START_TEST(test_minmea_parse_vtg1)
  780. {
  781. const char *sentence = "$GPVTG,054.7,T,034.4,M,005.5,N,010.2,K*48";
  782. // clear structs before initialization to enable use of memcmp()
  783. struct minmea_sentence_vtg frame = {};
  784. struct minmea_sentence_vtg expected = {};
  785. expected = (struct minmea_sentence_vtg){
  786. .true_track_degrees = { 547, 10 },
  787. .magnetic_track_degrees = { 344, 10 },
  788. .speed_knots = { 55, 10 },
  789. .speed_kph = { 102, 10 },
  790. .faa_mode = 0,
  791. };
  792. ck_assert(minmea_check(sentence, false) == true);
  793. ck_assert(minmea_check(sentence, true) == true);
  794. ck_assert(minmea_parse_vtg(&frame, sentence) == true);
  795. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  796. }
  797. END_TEST
  798. START_TEST(test_minmea_parse_vtg2)
  799. {
  800. const char *sentence = "$GPVTG,188.36,T,,M,0.820,N,1.519,K,A*3F";
  801. // clear structs before initialization to enable use of memcmp()
  802. struct minmea_sentence_vtg frame = {};
  803. struct minmea_sentence_vtg expected = {};
  804. expected = (struct minmea_sentence_vtg){
  805. .true_track_degrees = { 18836, 100 },
  806. .magnetic_track_degrees = { 0, 0 },
  807. .speed_knots = { 820, 1000 },
  808. .speed_kph = { 1519, 1000 },
  809. .faa_mode = MINMEA_FAA_MODE_AUTONOMOUS,
  810. };
  811. ck_assert(minmea_check(sentence, false) == true);
  812. ck_assert(minmea_check(sentence, true) == true);
  813. ck_assert(minmea_parse_vtg(&frame, sentence) == true);
  814. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  815. }
  816. END_TEST
  817. START_TEST(test_minmea_parse_vtg3)
  818. {
  819. // https://github.com/kosma/minmea/issues/57
  820. const char *sentence = "$GNVTG,,,,,,,,,N*2E";
  821. // clear structs before initialization to enable use of memcmp()
  822. struct minmea_sentence_vtg frame = {};
  823. struct minmea_sentence_vtg expected = {};
  824. expected = (struct minmea_sentence_vtg){
  825. .true_track_degrees = { 0, 0 },
  826. .magnetic_track_degrees = { 0, 0 },
  827. .speed_knots = { 0, 0 },
  828. .speed_kph = { 0, 0 },
  829. .faa_mode = MINMEA_FAA_MODE_NOT_VALID,
  830. };
  831. ck_assert(minmea_check(sentence, false) == true);
  832. ck_assert(minmea_check(sentence, true) == true);
  833. ck_assert(minmea_parse_vtg(&frame, sentence) == true);
  834. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  835. }
  836. END_TEST
  837. START_TEST(test_minmea_parse_zda1)
  838. {
  839. const char *sentence = "$GPZDA,160012.71,11,03,2004,-1,00*7D";
  840. struct minmea_sentence_zda frame = {};
  841. struct minmea_sentence_zda expected = {};
  842. expected = (struct minmea_sentence_zda) {
  843. .time = { 16, 0, 12, 710000 },
  844. .date = { 11, 3, 2004 },
  845. .hour_offset = -1,
  846. .minute_offset = 0,
  847. };
  848. ck_assert(minmea_check(sentence, false) == true);
  849. ck_assert(minmea_check(sentence, true) == true);
  850. ck_assert(minmea_parse_zda(&frame, sentence) == true);
  851. ck_assert(!memcmp(&frame, &expected, sizeof(frame)));
  852. }
  853. END_TEST
  854. START_TEST(test_minmea_usage1)
  855. {
  856. const char *sentences[] = {
  857. "$GPRMC,081836,A,3751.65,S,14507.36,E,000.0,360.0,130998,011.3,E*62",
  858. "$GPGGA,123519,4807.038,N,01131.000,E,1,08,0.9,545.4,M,46.9,M,,*47",
  859. "$GNGSA,A,3,04,05,,09,12,,,24,,,,,2.5,1.3,2.1",
  860. "$GPGLL,3723.2475,N,12158.3416,W,161229.487,A,A*41",
  861. "$GPGST,024603.00,3.2,6.6,4.7,47.3,5.8,5.6,22.0*58",
  862. "$GPVTG,096.5,T,083.5,M,0.0,N,0.0,K,D*22",
  863. NULL,
  864. };
  865. for (const char **sentence=sentences; *sentence; sentence++) {
  866. switch (minmea_sentence_id(*sentence, false)) {
  867. case MINMEA_SENTENCE_RMC: {
  868. struct minmea_sentence_rmc frame;
  869. ck_assert(minmea_parse_rmc(&frame, *sentence) == true);
  870. } break;
  871. case MINMEA_SENTENCE_GGA: {
  872. struct minmea_sentence_gga frame;
  873. ck_assert(minmea_parse_gga(&frame, *sentence) == true);
  874. } break;
  875. case MINMEA_SENTENCE_GSA: {
  876. struct minmea_sentence_gsa frame;
  877. ck_assert(minmea_parse_gsa(&frame, *sentence) == true);
  878. } break;
  879. case MINMEA_SENTENCE_GLL: {
  880. struct minmea_sentence_gll frame;
  881. ck_assert(minmea_parse_gll(&frame, *sentence) == true);
  882. } break;
  883. case MINMEA_SENTENCE_GST: {
  884. struct minmea_sentence_gst frame;
  885. ck_assert(minmea_parse_gst(&frame, *sentence) == true);
  886. } break;
  887. case MINMEA_SENTENCE_VTG: {
  888. struct minmea_sentence_vtg frame;
  889. ck_assert(minmea_parse_vtg(&frame, *sentence) == true);
  890. } break;
  891. default: {
  892. } break;
  893. }
  894. char talker[3];
  895. char expected[3] = { (*sentence)[1], (*sentence)[2], '\0' };
  896. ck_assert(minmea_talker_id(talker, *sentence) == true);
  897. ck_assert_str_eq(talker, expected);
  898. }
  899. }
  900. END_TEST
  901. START_TEST(test_minmea_gettime)
  902. {
  903. struct minmea_date d = { 14, 2, 14 };
  904. struct minmea_time t = { 13, 0, 9, 123456 };
  905. struct tm tm;
  906. struct timespec ts;
  907. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  908. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  909. ck_assert_int_eq(tm.tm_year, 2014-1900);
  910. ck_assert_int_eq(tm.tm_mon, 1);
  911. ck_assert_int_eq(tm.tm_mday, 14);
  912. ck_assert_int_eq(tm.tm_hour, 13);
  913. ck_assert_int_eq(tm.tm_min, 0);
  914. ck_assert_int_eq(tm.tm_sec, 9);
  915. ck_assert_int_eq(ts.tv_sec, 1392382809);
  916. ck_assert_int_eq(ts.tv_nsec, 123456000);
  917. d.year = -1;
  918. ck_assert(minmea_getdatetime(&tm, &d, &t) != 0);
  919. ck_assert(minmea_gettime(&ts, &d, &t) != 0);
  920. d.year = 14;
  921. t.hours = -1;
  922. ck_assert(minmea_getdatetime(&tm, &d, &t) != 0);
  923. ck_assert(minmea_gettime(&ts, &d, &t) != 0);
  924. t.hours = 13;
  925. /* two digit year conversions */
  926. d.year = 80;
  927. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  928. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  929. ck_assert_int_eq(tm.tm_year, 1980-1900);
  930. ck_assert_int_eq(ts.tv_sec, 319381209); /* 1980 */
  931. d.year = 37;
  932. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  933. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  934. ck_assert_int_eq(tm.tm_year, 2037-1900);
  935. ck_assert_int_eq(ts.tv_sec, 2118229209); /* 2037 */
  936. /* skip >= 2038 tests on 32-bit time_t platforms */
  937. if (sizeof(time_t) == sizeof(int64_t)) {
  938. d.year = 79;
  939. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  940. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  941. ck_assert_int_eq(tm.tm_year, 2079-1900);
  942. ck_assert_int_eq(ts.tv_sec, 3443605209); /* 2079 */
  943. }
  944. /* four digit year conversions */
  945. d.year = 1979;
  946. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  947. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  948. ck_assert_int_eq(tm.tm_year, 1979-1900);
  949. ck_assert_int_eq(ts.tv_sec, 287845209);
  950. d.year = 1980;
  951. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  952. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  953. ck_assert_int_eq(tm.tm_year, 1980-1900);
  954. ck_assert_int_eq(ts.tv_sec, 319381209);
  955. d.year = 2037;
  956. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  957. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  958. ck_assert_int_eq(tm.tm_year, 2037-1900);
  959. ck_assert_int_eq(ts.tv_sec, 2118229209);
  960. /* skip >= 2038 tests on 32-bit time_t platforms */
  961. if (sizeof(time_t) == sizeof(int64_t)) {
  962. d.year = 2079;
  963. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  964. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  965. ck_assert_int_eq(tm.tm_year, 2079-1900);
  966. ck_assert_int_eq(ts.tv_sec, 3443605209);
  967. d.year = 2080;
  968. ck_assert(minmea_getdatetime(&tm, &d, &t) == 0);
  969. ck_assert(minmea_gettime(&ts, &d, &t) == 0);
  970. ck_assert_int_eq(tm.tm_year, 2080-1900);
  971. ck_assert_int_eq(ts.tv_sec, 3475141209);
  972. }
  973. }
  974. END_TEST
  975. START_TEST(test_minmea_rescale)
  976. {
  977. /* basic and edge cases. */
  978. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { 42, 0 }, 3), 0);
  979. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { 1234, 10 }, 1), 123);
  980. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { 1235, 10 }, 1), 124);
  981. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { 1234, 10 }, 1000), 123400);
  982. /* round towards zero. */
  983. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { -1234, 10 }, 1), -123);
  984. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { -1235, 10 }, 1), -124);
  985. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { -1236, 10 }, 1), -124);
  986. /* shouldn't overflow on large numbers. */
  987. ck_assert_int_eq(minmea_rescale(&(struct minmea_float) { 510693608, 100000 }, 10000), 51069361);
  988. }
  989. END_TEST
  990. /* The float values used in tests should be exactly representable under IEEE754;
  991. * false negatives will occur otherwise. */
  992. #define assert_float_eq(x, y) ck_assert(fabsf((x) - (y)) <= 0.0f)
  993. START_TEST(test_minmea_float)
  994. {
  995. ck_assert(isnan(minmea_tofloat(&(struct minmea_float) { 42, 0 })));
  996. assert_float_eq(minmea_tofloat(&(struct minmea_float) { 7, 1 }), 7.0f);
  997. assert_float_eq(minmea_tofloat(&(struct minmea_float) { -200, 100 }), -2.0f);
  998. assert_float_eq(minmea_tofloat(&(struct minmea_float) { 15, 10 }), 1.5f);
  999. }
  1000. END_TEST
  1001. START_TEST(test_minmea_coord)
  1002. {
  1003. ck_assert(isnan(minmea_tocoord(&(struct minmea_float) { 42, 0 })));
  1004. assert_float_eq(minmea_tocoord(&(struct minmea_float) { 4200, 1 }), 42.0f);
  1005. assert_float_eq(minmea_tocoord(&(struct minmea_float) { 420000, 100 }), 42.0f);
  1006. assert_float_eq(minmea_tocoord(&(struct minmea_float) { 423000, 100 }), 42.5f);
  1007. }
  1008. END_TEST
  1009. static Suite *minmea_suite(void)
  1010. {
  1011. Suite *s = suite_create ("minmea");
  1012. TCase *tc_checksum = tcase_create("minmea_checksum");
  1013. tcase_add_test(tc_checksum, test_minmea_checksum);
  1014. suite_add_tcase(s, tc_checksum);
  1015. TCase *tc_check = tcase_create("minmea_check");
  1016. tcase_add_test(tc_check, test_minmea_check);
  1017. suite_add_tcase(s, tc_check);
  1018. TCase *tc_scan = tcase_create("minmea_scan");
  1019. tcase_add_test(tc_scan, test_minmea_scan_c);
  1020. tcase_add_test(tc_scan, test_minmea_scan_d);
  1021. tcase_add_test(tc_scan, test_minmea_scan_f);
  1022. tcase_add_test(tc_scan, test_minmea_scan_i);
  1023. tcase_add_test(tc_scan, test_minmea_scan_s);
  1024. tcase_add_test(tc_scan, test_minmea_scan_t);
  1025. tcase_add_test(tc_scan, test_minmea_scan_D);
  1026. tcase_add_test(tc_scan, test_minmea_scan_T);
  1027. tcase_add_test(tc_scan, test_minmea_scan_complex1);
  1028. tcase_add_test(tc_scan, test_minmea_scan_complex2);
  1029. tcase_add_test(tc_scan, test_minmea_scan_complex3);
  1030. suite_add_tcase(s, tc_scan);
  1031. TCase *tc_parse = tcase_create("minmea_parse");
  1032. tcase_add_test(tc_parse, test_minmea_parse_gbs1);
  1033. tcase_add_test(tc_parse, test_minmea_parse_rmc1);
  1034. tcase_add_test(tc_parse, test_minmea_parse_rmc2);
  1035. tcase_add_test(tc_parse, test_minmea_parse_gga1);
  1036. tcase_add_test(tc_parse, test_minmea_parse_gsa1);
  1037. tcase_add_test(tc_parse, test_minmea_parse_gll1);
  1038. tcase_add_test(tc_parse, test_minmea_parse_gll2);
  1039. tcase_add_test(tc_parse, test_minmea_parse_gst1);
  1040. tcase_add_test(tc_parse, test_minmea_parse_gsv1);
  1041. tcase_add_test(tc_parse, test_minmea_parse_gsv2);
  1042. tcase_add_test(tc_parse, test_minmea_parse_gsv3);
  1043. tcase_add_test(tc_parse, test_minmea_parse_gsv4);
  1044. tcase_add_test(tc_parse, test_minmea_parse_gsv5);
  1045. tcase_add_test(tc_parse, test_minmea_parse_vtg1);
  1046. tcase_add_test(tc_parse, test_minmea_parse_vtg2);
  1047. tcase_add_test(tc_parse, test_minmea_parse_vtg3);
  1048. tcase_add_test(tc_parse, test_minmea_parse_zda1);
  1049. suite_add_tcase(s, tc_parse);
  1050. TCase *tc_usage = tcase_create("minmea_usage");
  1051. tcase_add_test(tc_usage, test_minmea_usage1);
  1052. suite_add_tcase(s, tc_usage);
  1053. TCase *tc_utils = tcase_create("minmea_utils");
  1054. tcase_add_test(tc_utils, test_minmea_gettime);
  1055. tcase_add_test(tc_utils, test_minmea_rescale);
  1056. tcase_add_test(tc_utils, test_minmea_float);
  1057. tcase_add_test(tc_utils, test_minmea_coord);
  1058. suite_add_tcase(s, tc_utils);
  1059. return s;
  1060. }
  1061. int main(void)
  1062. {
  1063. int number_failed;
  1064. Suite *s = minmea_suite();
  1065. SRunner *sr = srunner_create(s);
  1066. srunner_run_all(sr, CK_NORMAL);
  1067. number_failed = srunner_ntests_failed(sr);
  1068. srunner_free(sr);
  1069. return (number_failed == 0) ? EXIT_SUCCESS : EXIT_FAILURE;
  1070. }
  1071. /* vim: set ts=4 sw=4 et: */