rtl_adsb.c 12 KB

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  1. /*
  2. * rtl-sdr, turns your Realtek RTL2832 based DVB dongle into a SDR receiver
  3. * Copyright (C) 2012 by Steve Markgraf <steve@steve-m.de>
  4. * Copyright (C) 2012 by Hoernchen <la@tfc-server.de>
  5. * Copyright (C) 2012 by Kyle Keen <keenerd@gmail.com>
  6. * Copyright (C) 2012 by Youssef Touil <youssef@sdrsharp.com>
  7. * Copyright (C) 2012 by Ian Gilmour <ian@sdrsharp.com>
  8. *
  9. * This program is free software: you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License as published by
  11. * the Free Software Foundation, either version 2 of the License, or
  12. * (at your option) any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  21. */
  22. #include <errno.h>
  23. #include <signal.h>
  24. #include <string.h>
  25. #include <stdio.h>
  26. #include <stdlib.h>
  27. #include <math.h>
  28. #ifndef _WIN32
  29. #include <unistd.h>
  30. #else
  31. #include <Windows.h>
  32. #include <fcntl.h>
  33. #include <io.h>
  34. #include "getopt/getopt.h"
  35. #endif
  36. #include <semaphore.h>
  37. #include <pthread.h>
  38. #include <libusb.h>
  39. #include "rtl-sdr.h"
  40. #ifdef _WIN32
  41. #define sleep Sleep
  42. #endif
  43. #define ADSB_RATE 2000000
  44. #define ADSB_FREQ 1090000000
  45. #define DEFAULT_ASYNC_BUF_NUMBER 12
  46. #define DEFAULT_BUF_LENGTH (16 * 16384)
  47. #define AUTO_GAIN -100
  48. static pthread_t demod_thread;
  49. static sem_t data_ready;
  50. static volatile int do_exit = 0;
  51. static rtlsdr_dev_t *dev = NULL;
  52. /* look up table, could be made smaller */
  53. uint8_t pyth[129][129];
  54. /* todo, bundle these up in a struct */
  55. uint8_t *buffer;
  56. int verbose_output = 0;
  57. int short_output = 0;
  58. double quality = 1.0;
  59. int allowed_errors = 5;
  60. FILE *file;
  61. int adsb_frame[14];
  62. #define preamble_len 16
  63. #define long_frame 112
  64. #define short_frame 56
  65. void usage(void)
  66. {
  67. fprintf(stderr,
  68. "rtl_adsb, a simple ADS-B decoder\n\n"
  69. "Use:\trtl_adsb [-R] [-g gain] [-p ppm] [output file]\n"
  70. "\t[-d device_index (default: 0)]\n"
  71. "\t[-V verbove output (default: off)]\n"
  72. "\t[-S show short frames (default: off)]\n"
  73. "\t[-Q quality (0: no sanity checks, 0.5: half bit, 1: one bit (default), 2: two bits)]\n"
  74. "\t[-e allowed_errors (default: 5)]\n"
  75. "\t[-g tuner_gain (default: automatic)]\n"
  76. "\t[-p ppm_error (default: 0)]\n"
  77. "\tfilename (a '-' dumps samples to stdout)\n"
  78. "\t (omitting the filename also uses stdout)\n\n"
  79. "Streaming with netcat:\n"
  80. "\trtl_adsb | netcat -lp 8080\n"
  81. "\twhile true; do rtl_adsb | nc -lp 8080; done\n"
  82. "Streaming with socat:\n"
  83. "\trtl_adsb | socat -u - TCP4:sdrsharp.com:47806\n"
  84. "\n");
  85. exit(1);
  86. }
  87. #ifdef _WIN32
  88. BOOL WINAPI
  89. sighandler(int signum)
  90. {
  91. if (CTRL_C_EVENT == signum) {
  92. fprintf(stderr, "Signal caught, exiting!\n");
  93. do_exit = 1;
  94. rtlsdr_cancel_async(dev);
  95. return TRUE;
  96. }
  97. return FALSE;
  98. }
  99. #else
  100. static void sighandler(int signum)
  101. {
  102. fprintf(stderr, "Signal caught, exiting!\n");
  103. do_exit = 1;
  104. rtlsdr_cancel_async(dev);
  105. }
  106. #endif
  107. void display(int *frame, int len)
  108. {
  109. int i, df;
  110. if (!short_output && len <= short_frame) {
  111. return;}
  112. df = (frame[0] >> 3) & 0x1f;
  113. if (quality == 0.0 && !(df==11 || df==17 || df==18 || df==19)) {
  114. return;}
  115. fprintf(file, "*");
  116. for (i=0; i<((len+7)/8); i++) {
  117. fprintf(file, "%02x", frame[i]);}
  118. fprintf(file, ";\r\n");
  119. if (!verbose_output) {
  120. return;}
  121. fprintf(file, "DF=%i CA=%i\n", df, frame[0] & 0x07);
  122. fprintf(file, "ICAO Address=%06x\n", frame[1] << 16 | frame[2] << 8 | frame[3]);
  123. if (len <= short_frame) {
  124. return;}
  125. fprintf(file, "PI=0x%06x\n", frame[11] << 16 | frame[12] << 8 | frame[13]);
  126. fprintf(file, "Type Code=%i S.Type/Ant.=%x\n", (frame[4] >> 3) & 0x1f, frame[4] & 0x07);
  127. fprintf(file, "--------------\n");
  128. }
  129. void pyth_precompute(void)
  130. {
  131. int x, y;
  132. for (x=0; x<129; x++) {
  133. for (y=0; y<129; y++) {
  134. pyth[x][y] = (uint8_t)round(sqrt(x*x + y*y));
  135. }}
  136. }
  137. inline uint8_t abs8(uint8_t x)
  138. /* do not subtract 128 from the raw iq, this handles it */
  139. {
  140. if (x >= 128) {
  141. return x - 128;}
  142. return 128 - x;
  143. }
  144. int magnitute(uint8_t *buf, int len)
  145. /* takes i/q, changes buf in place, returns new len */
  146. {
  147. int i;
  148. for (i=0; i<len; i+=2) {
  149. buf[i/2] = pyth[abs8(buf[i])][abs8(buf[i+1])];
  150. }
  151. return len/2;
  152. }
  153. inline uint8_t single_manchester(uint8_t a, uint8_t b, uint8_t c, uint8_t d)
  154. /* takes 4 consecutive real samples, return 0 or 1, 255 on error */
  155. {
  156. int bit, bit_p;
  157. bit_p = a > b;
  158. bit = c > d;
  159. if (quality == 0.0) {
  160. return bit;}
  161. if (quality == 0.5) {
  162. if ( bit && bit_p && b > c) {
  163. return 255;}
  164. if (!bit && !bit_p && b < c) {
  165. return 255;}
  166. return bit;
  167. }
  168. if (quality == 1.0) {
  169. if ( bit && bit_p && c > b) {
  170. return 1;}
  171. if ( bit && !bit_p && d < b) {
  172. return 1;}
  173. if (!bit && bit_p && d > b) {
  174. return 0;}
  175. if (!bit && !bit_p && c < b) {
  176. return 0;}
  177. return 255;
  178. }
  179. if ( bit && bit_p && c > b && d < a) {
  180. return 1;}
  181. if ( bit && !bit_p && c > a && d < b) {
  182. return 1;}
  183. if (!bit && bit_p && c < a && d > b) {
  184. return 0;}
  185. if (!bit && !bit_p && c < b && d > a) {
  186. return 0;}
  187. return 255;
  188. }
  189. inline uint8_t min8(uint8_t a, uint8_t b)
  190. {
  191. return a<b ? a : b;
  192. }
  193. inline uint8_t max8(uint8_t a, uint8_t b)
  194. {
  195. return a>b ? a : b;
  196. }
  197. inline int preamble(uint8_t *buf, int len, int i)
  198. /* returns 0/1 for preamble at index i */
  199. {
  200. int i2;
  201. uint8_t low = 0;
  202. uint8_t high = 255;
  203. for (i2=0; i2<preamble_len; i2++) {
  204. switch (i2) {
  205. case 0:
  206. case 2:
  207. case 7:
  208. case 9:
  209. //high = min8(high, buf[i+i2]);
  210. high = buf[i+i2];
  211. break;
  212. default:
  213. //low = max8(low, buf[i+i2]);
  214. low = buf[i+i2];
  215. break;
  216. }
  217. if (high <= low) {
  218. return 0;}
  219. }
  220. return 1;
  221. }
  222. void manchester(uint8_t *buf, int len)
  223. /* overwrites magnitude buffer with valid bits (255 on errors) */
  224. {
  225. /* a and b hold old values to verify local manchester */
  226. uint8_t a=0, b=0;
  227. uint8_t bit;
  228. int i, i2, start, errors;
  229. // todo, allow wrap across buffers
  230. i = 0;
  231. while (i < len) {
  232. /* find preamble */
  233. for ( ; i < (len - preamble_len); i++) {
  234. if (!preamble(buf, len, i)) {
  235. continue;}
  236. a = buf[i];
  237. b = buf[i+1];
  238. for (i2=0; i2<preamble_len; i2++) {
  239. buf[i+i2] = 253;}
  240. i += preamble_len;
  241. break;
  242. }
  243. i2 = start = i;
  244. errors = 0;
  245. /* mark bits until encoding breaks */
  246. for ( ; i < len; i+=2, i2++) {
  247. bit = single_manchester(a, b, buf[i], buf[i+1]);
  248. a = buf[i];
  249. b = buf[i+1];
  250. if (bit == 255) {
  251. errors += 1;
  252. if (errors > allowed_errors) {
  253. buf[i2] = 255;
  254. break;
  255. } else {
  256. bit = a > b;
  257. /* these don't have to match the bit */
  258. a = 0;
  259. b = 255;
  260. }
  261. }
  262. buf[i] = buf[i+1] = 254; /* to be overwritten */
  263. buf[i2] = bit;
  264. }
  265. }
  266. }
  267. void messages(uint8_t *buf, int len)
  268. {
  269. int i, i2, start, preamble_found;
  270. int data_i, index, shift, frame_len;
  271. // todo, allow wrap across buffers
  272. for (i=0; i<len; i++) {
  273. if (buf[i] > 1) {
  274. continue;}
  275. frame_len = long_frame;
  276. data_i = 0;
  277. for (index=0; index<14; index++) {
  278. adsb_frame[index] = 0;}
  279. for(; i<len && buf[i]<=1 && data_i<frame_len; i++, data_i++) {
  280. if (buf[i]) {
  281. index = data_i / 8;
  282. shift = 7 - (data_i % 8);
  283. adsb_frame[index] |= (uint8_t)(1<<shift);
  284. }
  285. if (data_i == 7) {
  286. if (adsb_frame[0] == 0) {
  287. break;}
  288. if (adsb_frame[0] & 0x80) {
  289. frame_len = long_frame;}
  290. else {
  291. frame_len = short_frame;}
  292. }
  293. }
  294. if (data_i < (frame_len-1)) {
  295. continue;}
  296. display(adsb_frame, frame_len);
  297. fflush(file);
  298. }
  299. }
  300. static void rtlsdr_callback(unsigned char *buf, uint32_t len, void *ctx)
  301. {
  302. int dr_val;
  303. if (do_exit) {
  304. return;}
  305. memcpy(buffer, buf, len);
  306. sem_getvalue(&data_ready, &dr_val);
  307. if (dr_val <= 0) {
  308. sem_post(&data_ready);}
  309. }
  310. static void *demod_thread_fn(void *arg)
  311. {
  312. int len;
  313. while (!do_exit) {
  314. sem_wait(&data_ready);
  315. len = magnitute(buffer, DEFAULT_BUF_LENGTH);
  316. manchester(buffer, len);
  317. messages(buffer, len);
  318. }
  319. rtlsdr_cancel_async(dev);
  320. return 0;
  321. }
  322. int main(int argc, char **argv)
  323. {
  324. #ifndef _WIN32
  325. struct sigaction sigact;
  326. #endif
  327. char *filename = NULL;
  328. int n_read, r, opt;
  329. int i, gain = AUTO_GAIN; /* tenths of a dB */
  330. uint32_t dev_index = 0;
  331. int device_count;
  332. int ppm_error = 0;
  333. char vendor[256], product[256], serial[256];
  334. sem_init(&data_ready, 0, 0);
  335. pyth_precompute();
  336. while ((opt = getopt(argc, argv, "d:g:p:e:Q:VS")) != -1)
  337. {
  338. switch (opt) {
  339. case 'd':
  340. dev_index = atoi(optarg);
  341. break;
  342. case 'g':
  343. gain = (int)(atof(optarg) * 10);
  344. break;
  345. case 'p':
  346. ppm_error = atoi(optarg);
  347. break;
  348. case 'V':
  349. verbose_output = 1;
  350. break;
  351. case 'S':
  352. short_output = 1;
  353. break;
  354. case 'e':
  355. allowed_errors = atoi(optarg);
  356. break;
  357. case 'Q':
  358. quality = atof(optarg);
  359. break;
  360. default:
  361. usage();
  362. return 0;
  363. }
  364. }
  365. if (argc <= optind) {
  366. filename = "-";
  367. } else {
  368. filename = argv[optind];
  369. }
  370. buffer = malloc(DEFAULT_BUF_LENGTH * sizeof(uint8_t));
  371. device_count = rtlsdr_get_device_count();
  372. if (!device_count) {
  373. fprintf(stderr, "No supported devices found.\n");
  374. exit(1);
  375. }
  376. fprintf(stderr, "Found %d device(s):\n", device_count);
  377. for (i = 0; i < device_count; i++) {
  378. rtlsdr_get_device_usb_strings(i, vendor, product, serial);
  379. fprintf(stderr, " %d: %s, %s, SN: %s\n", i, vendor, product, serial);
  380. }
  381. fprintf(stderr, "\n");
  382. fprintf(stderr, "Using device %d: %s\n",
  383. dev_index, rtlsdr_get_device_name(dev_index));
  384. r = rtlsdr_open(&dev, dev_index);
  385. if (r < 0) {
  386. fprintf(stderr, "Failed to open rtlsdr device #%d.\n", dev_index);
  387. exit(1);
  388. }
  389. #ifndef _WIN32
  390. sigact.sa_handler = sighandler;
  391. sigemptyset(&sigact.sa_mask);
  392. sigact.sa_flags = 0;
  393. sigaction(SIGINT, &sigact, NULL);
  394. sigaction(SIGTERM, &sigact, NULL);
  395. sigaction(SIGQUIT, &sigact, NULL);
  396. sigaction(SIGPIPE, &sigact, NULL);
  397. #else
  398. SetConsoleCtrlHandler( (PHANDLER_ROUTINE) sighandler, TRUE );
  399. #endif
  400. if (strcmp(filename, "-") == 0) { /* Write samples to stdout */
  401. file = stdout;
  402. #ifdef _WIN32
  403. _setmode(_fileno(file), _O_BINARY);
  404. #endif
  405. } else {
  406. file = fopen(filename, "wb");
  407. if (!file) {
  408. fprintf(stderr, "Failed to open %s\n", filename);
  409. exit(1);
  410. }
  411. }
  412. /* Set the tuner gain */
  413. if (gain == AUTO_GAIN) {
  414. r = rtlsdr_set_tuner_gain_mode(dev, 0);
  415. } else {
  416. r = rtlsdr_set_tuner_gain_mode(dev, 1);
  417. r = rtlsdr_set_tuner_gain(dev, gain);
  418. }
  419. if (r != 0) {
  420. fprintf(stderr, "WARNING: Failed to set tuner gain.\n");
  421. } else if (gain == AUTO_GAIN) {
  422. fprintf(stderr, "Tuner gain set to automatic.\n");
  423. } else {
  424. fprintf(stderr, "Tuner gain set to %0.2f dB.\n", gain/10.0);
  425. }
  426. r = rtlsdr_set_freq_correction(dev, ppm_error);
  427. r = rtlsdr_set_agc_mode(dev, 1);
  428. /* Set the tuner frequency */
  429. r = rtlsdr_set_center_freq(dev, ADSB_FREQ);
  430. if (r < 0) {
  431. fprintf(stderr, "WARNING: Failed to set center freq.\n");}
  432. else {
  433. fprintf(stderr, "Tuned to %u Hz.\n", ADSB_FREQ);}
  434. /* Set the sample rate */
  435. fprintf(stderr, "Sampling at %u Hz.\n", ADSB_RATE);
  436. r = rtlsdr_set_sample_rate(dev, ADSB_RATE);
  437. if (r < 0) {
  438. fprintf(stderr, "WARNING: Failed to set sample rate.\n");}
  439. /* Reset endpoint before we start reading from it (mandatory) */
  440. r = rtlsdr_reset_buffer(dev);
  441. if (r < 0) {
  442. fprintf(stderr, "WARNING: Failed to reset buffers.\n");}
  443. /* flush old junk */
  444. sleep(1);
  445. rtlsdr_read_sync(dev, NULL, 4096, NULL);
  446. pthread_create(&demod_thread, NULL, demod_thread_fn, (void *)(NULL));
  447. rtlsdr_read_async(dev, rtlsdr_callback, (void *)(NULL),
  448. DEFAULT_ASYNC_BUF_NUMBER,
  449. DEFAULT_BUF_LENGTH);
  450. if (do_exit) {
  451. fprintf(stderr, "\nUser cancel, exiting...\n");}
  452. else {
  453. fprintf(stderr, "\nLibrary error %d, exiting...\n", r);}
  454. rtlsdr_cancel_async(dev);
  455. if (file != stdout) {
  456. fclose(file);}
  457. rtlsdr_close(dev);
  458. free(buffer);
  459. return r >= 0 ? r : -r;
  460. }