tsdecrypt reads and decrypts CSA encrypted incoming mpeg transport stream over UDP/RTP using code words obtained from OSCAM or similar CAM server. tsdecrypt communicates with CAM server using cs378x (camd35 over tcp) protocol or newcamd protocol. https://georgi.unixsol.org/programs/tsdecrypt/
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tsdecrypt.c 37KB

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  1. /*
  2. * tsdecrypt
  3. * Copyright (C) 2011-2012 Unix Solutions Ltd.
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License version 2
  7. * as published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License (COPYING file) for more details.
  13. *
  14. */
  15. #include <stdlib.h>
  16. #include <unistd.h>
  17. #include <getopt.h>
  18. #include <string.h>
  19. #include <ctype.h>
  20. #include <sys/types.h>
  21. #include <sys/stat.h>
  22. #include <signal.h>
  23. #include <fcntl.h>
  24. #include <errno.h>
  25. #include <syslog.h>
  26. #include <sys/resource.h>
  27. #include <openssl/rand.h>
  28. #include "libfuncs/libfuncs.h"
  29. #include "data.h"
  30. #include "util.h"
  31. #include "csa.h"
  32. #include "camd.h"
  33. #include "process.h"
  34. #include "udp.h"
  35. #include "notify.h"
  36. #include "filter.h"
  37. #define FIRST_REPORT_SEC 3
  38. #define PROGRAM_NAME "tsdecrypt"
  39. static const char *program_id = PROGRAM_NAME " v" VERSION " (" GIT_VER ", build " BUILD_ID " " DLIB ")";
  40. static int keep_running = 1;
  41. static FILE *log_file = NULL;
  42. static char *log_filename = NULL;
  43. static int local_syslog = 0;
  44. static int remote_syslog = 0;
  45. static int packet_from_file = 0;
  46. static int packet_buflen;
  47. static uint8_t packet_buf[256];
  48. static enum msg_type packet_type = ECM_MSG;
  49. extern int ai_family;
  50. static void do_log(FILE *f, time_t now, const char *msg) {
  51. char date[64];
  52. struct tm tm;
  53. // There is no need to show timestamps when debug options are used
  54. if (packet_from_file) {
  55. fprintf(f, "%s", msg);
  56. return;
  57. }
  58. localtime_r(&now, &tm);
  59. strftime(date, sizeof(date), "%F %H:%M:%S", localtime_r(&now, &tm));
  60. fprintf(f, "%s | %s", date, msg);
  61. }
  62. static void LOG_func(const char *msg) {
  63. time_t now = time(NULL);
  64. do_log(stderr, now, msg);
  65. if (log_file)
  66. do_log(log_file, now, msg);
  67. if (local_syslog)
  68. syslog(LOG_INFO, msg, strlen(msg));
  69. if (remote_syslog)
  70. LOG(msg);
  71. }
  72. static const char short_options[] = "i:d:N:Sl:L:F:I:RzM:T:W:O:o:t:rk:g:upwxyc:C:Y:Q:A:s:U:P:B:46eZ:Ef:a:X:H:G:KJ:D:jbhVn:m:";
  73. // Unused short options: aqv01235789
  74. static const struct option long_options[] = {
  75. { "ident", required_argument, NULL, 'i' },
  76. { "daemon", required_argument, NULL, 'd' },
  77. { "syslog", no_argument, NULL, 'S' },
  78. { "syslog-host", required_argument, NULL, 'l' },
  79. { "syslog-port", required_argument, NULL, 'L' },
  80. { "log-file", required_argument, NULL, 'F' },
  81. { "notify-program", required_argument, NULL, 'N' },
  82. { "input", required_argument, NULL, 'I' },
  83. { "input-rtp", no_argument, NULL, 'R' },
  84. { "input-ignore-disc", no_argument, NULL, 'z' },
  85. { "input-service", required_argument, NULL, 'M' },
  86. { "input-buffer", required_argument, NULL, 'T' },
  87. { "input-dump", required_argument, NULL, 'W' },
  88. { "output", required_argument, NULL, 'O' },
  89. { "output-intf", required_argument, NULL, 'o' },
  90. { "output-ttl", required_argument, NULL, 't' },
  91. { "output-rtp", no_argument, NULL, 'r' },
  92. { "output-rtp-ssrc", required_argument, NULL, 'k' },
  93. { "output-tos", required_argument, NULL, 'g' },
  94. { "no-output-on-error", no_argument, NULL, 'u' },
  95. { "no-output-filter", no_argument, NULL, 'p' },
  96. { "output-nit-pass", no_argument, NULL, 'y' },
  97. { "output-eit-pass", no_argument, NULL, 'w' },
  98. { "output-tdt-pass", no_argument, NULL, 'x' },
  99. { "ca-system", required_argument, NULL, 'c' },
  100. { "caid", required_argument, NULL, 'C' },
  101. { "const-cw", required_argument, NULL, 'Y' },
  102. { "biss-key", required_argument, NULL, 'Q' },
  103. { "camd-proto", required_argument, NULL, 'A' },
  104. { "camd-server", required_argument, NULL, 's' },
  105. { "camd-user", required_argument, NULL, 'U' },
  106. { "camd-pass", required_argument, NULL, 'P' },
  107. { "camd-des-key", required_argument, NULL, 'B' },
  108. { "ipv4", no_argument, NULL, '4' },
  109. { "ipv6", no_argument, NULL, '6' },
  110. { "emm", no_argument, NULL, 'e' },
  111. { "emm-pid", required_argument, NULL, 'Z' },
  112. { "emm-only", no_argument, NULL, 'E' },
  113. { "emm-report-time", required_argument, NULL, 'f' },
  114. { "emm-filter", required_argument, NULL, 'a' },
  115. { "ecm-pid", required_argument, NULL, 'X' },
  116. { "ecm-report-time", required_argument, NULL, 'H' },
  117. { "ecm-irdeto-type", required_argument, NULL, 'G' },
  118. { "ecm-no-log", no_argument , NULL, 'K' },
  119. { "cw-warn-time", required_argument, NULL, 'J' },
  120. { "debug", required_argument, NULL, 'D' },
  121. { "pid-report", no_argument, NULL, 'j' },
  122. { "bench", no_argument, NULL, 'b' },
  123. { "help", no_argument, NULL, 'h' },
  124. { "version", no_argument, NULL, 'V' },
  125. { "ecm-file", required_argument, NULL, 'n' },
  126. { "emm-file", required_argument, NULL, 'm' },
  127. { 0, 0, 0, 0 }
  128. };
  129. static void show_help(struct ts *ts) {
  130. printf("%s\n", program_id);
  131. printf("Copyright (C) 2011-2012 Unix Solutions Ltd.\n");
  132. printf("\n");
  133. printf(" Usage: " PROGRAM_NAME " [opts]\n");
  134. printf("\n");
  135. printf("Main options:\n");
  136. printf(" -i --ident <server> | Format PROVIDER/CHANNEL. Default: empty\n");
  137. printf(" -d --daemon <pidfile> | Daemonize program and write pid file.\n");
  138. printf(" -N --notify-program <prg> | Execute <prg> to report events. Default: empty\n");
  139. printf("\n");
  140. printf("Input options:\n");
  141. printf(" -I --input <source> | Where to read from. File or multicast address.\n");
  142. printf(" . -I 224.0.0.1:5000 (multicast receive)\n");
  143. printf(" . -I file.ts (read from file)\n");
  144. printf(" . -I - (read from stdin) (default)\n");
  145. printf(" -R --input-rtp | Enable RTP input\n");
  146. printf(" -z --input-ignore-disc | Do not report discontinuty errors in input.\n");
  147. printf(" -M --input-service <srvid> | Choose service id when input is MPTS.\n");
  148. printf(" -T --input-buffer <ms> | Set input buffer time in ms. Default: %u\n", ts->input_buffer_time);
  149. printf(" -W --input-dump <filename> | Save input stream in file.\n");
  150. printf("\n");
  151. printf("Output options:\n");
  152. printf(" -O --output <dest> | Where to send output. File or multicast address.\n");
  153. printf(" . -O 239.0.0.1:5000 (multicast send)\n");
  154. printf(" . -O file.ts (write to file)\n");
  155. printf(" . -O - (write to stdout) (default)\n");
  156. printf(" -o --output-intf <addr> | Set multicast output interface. Default: %s\n", inet_ntoa(ts->output.intf));
  157. printf(" -t --output-ttl <ttl> | Set multicast ttl. Default: %d\n", ts->output.ttl);
  158. printf(" -r --output-rtp | Enable RTP output.\n");
  159. printf(" -k --output-rtp-ssrc <id> | Set RTP SSRC. Default: %u\n", ts->rtp_ssrc);
  160. printf(" -g --output-tos <tos> | Set TOS value of output packets. Default: none\n");
  161. printf(" -u --no-output-on-error | Do not output data when the code word is missing.\n");
  162. printf(" -p --no-output-filter | Disable output filtering. Default: %s\n", ts->pid_filter ? "enabled" : "disabled");
  163. printf(" -y --output-nit-pass | Pass through NIT.\n");
  164. printf(" -w --output-eit-pass | Pass through EIT (EPG).\n");
  165. printf(" -x --output-tdt-pass | Pass through TDT/TOT.\n");
  166. printf("\n");
  167. printf("CA options:\n");
  168. printf(" -c --ca-system <ca_sys> | Process input EMM/ECM from <ca_sys>.\n");
  169. printf(" | Valid systems are: CONAX (default), CRYPTOWORKS,\n");
  170. printf(" . IRDETO, SECA (MEDIAGUARD), VIACCESS,\n");
  171. printf(" . VIDEOGUARD (NDS), NAGRA, DRECRYPT and BULCRYPT.\n");
  172. printf(" -C --caid <caid> | Set CAID. Default: Taken from --ca-system.\n");
  173. printf(" -Y --const-cw <codeword> | Set constant code word for decryption.\n");
  174. printf(" . Example cw: a1a2a3a4a5a6a7a8b1b2b3b4b5b6b7b8\n");
  175. printf(" -Q --biss-key <biss-key> | Set BISS key for decryption.\n");
  176. printf(" . Example key: 112233445566\n");
  177. printf("\n");
  178. printf("CAMD server options:\n");
  179. printf(" -A --camd-proto <proto> | Set CAMD network protocol.\n");
  180. printf(" . Valid protocols are: CS378X (default) and NEWCAMD\n");
  181. printf(" -s --camd-server <host> | Set CAMD server address. Default port: 2233\n");
  182. printf(" . Example IPv4 addr and port: 127.0.0.1:2233\n");
  183. printf(" . Example IPv6 addr and port: [2a00::1014]:2233\n");
  184. printf(" . Example hostname : example.com\n");
  185. printf(" . Example hostname and port : example.com:2233\n");
  186. printf(" . Example IPv4 hostname : ipv4.google.com\n");
  187. printf(" . Example IPv6 hostname : ipv6.google.com\n");
  188. printf(" -U --camd-user <user> | Set CAMD server user. Default: %s\n", ts->camd.user);
  189. printf(" -P --camd-pass <pass> | Set CAMD server password. Default: %s\n", ts->camd.pass);
  190. printf(" -B --camd-des-key <key> | Set DES key for newcamd protocol.\n");
  191. printf(" . Default: %s\n", ts->camd.newcamd.hex_des_key);
  192. printf(" -4 --ipv4 | Use only IPv4 addresses of the camd server.\n");
  193. printf(" -6 --ipv6 | Use only IPv6 addresses of the camd server.\n");
  194. printf("\n");
  195. printf("EMM options:\n");
  196. printf(" -e --emm | Enable sending EMM's to CAMD. Default: %s\n", ts->emm_send ? "enabled" : "disabled");
  197. printf(" -E --emm-only | Send only EMMs to CAMD, skipping ECMs and without\n");
  198. printf(" . decoding the input stream.\n");
  199. printf(" -Z --emm-pid <pid> | Force EMM pid. Default: none\n");
  200. printf(" -f --emm-report-time <sec> | Report each <sec> seconds how much EMMs have been\n");
  201. printf(" . received/processed. Set <sec> to 0 to disable\n");
  202. printf(" . the reports. Default: %d sec\n", ts->emm_report_interval);
  203. printf(" -a --emm-filter <filter> | Add EMM filter defined by <filter>.\n");
  204. printf(" . This option can be used multiple times (max:%u).\n", MAX_FILTERS);
  205. printf(" . See FILTERING file for more info.\n");
  206. printf("\n");
  207. printf("ECM options:\n");
  208. printf(" -X --ecm-pid <pid> | Force ECM pid. Default: none\n");
  209. printf(" -H --ecm-report-time <sec> | Report each <sec> how much ECMs and CWs have been\n");
  210. printf(" . processed/skipped. Set <sec> to 0 to disable\n");
  211. printf(" . the reports. Default: %d sec\n", ts->ecm_report_interval);
  212. printf(" -G --ecm-irdeto-type <int> | Process IRDETO ECMs with type X /0-3/. Default: %d\n", ts->irdeto_ecm);
  213. printf(" -K --ecm-no-log | Disable ECM and code words logging.\n");
  214. printf(" -J --cw-warn-time <sec> | Warn if no valid code word has been received.\n");
  215. printf(" . Set <sec> to 0 to disable. Default: %d sec\n", ts->cw_warn_sec);
  216. printf("\n");
  217. printf("Logging options:\n");
  218. printf(" -S --syslog | Log messages using syslog.\n");
  219. printf(" -l --syslog-host <host> | Syslog server address. Default: disabled\n");
  220. printf(" -L --syslog-port <port> | Syslog server port. Default: %d\n", ts->syslog_port);
  221. printf(" -F --log-file <filename> | Log to file <filename>.\n");
  222. printf(" -D --debug <level> | Message debug level.\n");
  223. printf(" . 0 = default messages\n");
  224. printf(" . 1 = show PSI tables\n");
  225. printf(" . 2 = show EMMs\n");
  226. printf(" . 3 = show duplicate ECMs\n");
  227. printf(" . 4 = packet debug\n");
  228. printf(" . 5 = packet debug + packet dump\n");
  229. printf("\n");
  230. printf("Debugging options:\n");
  231. printf(" -n --ecm-file <file.txt> | Read ECM from text file.\n");
  232. printf(" -m --emm-file <file.txt> | Read EMM from text file.\n");
  233. printf("\n");
  234. printf("Misc options:\n");
  235. printf(" -j --pid-report | Report how much packets were received.\n");
  236. printf(" -b --bench | Benchmark decrypton.\n");
  237. printf(" -h --help | Show help screen.\n");
  238. printf(" -V --version | Show program version.\n");
  239. printf("\n");
  240. }
  241. static int parse_io_param(struct io *io, char *opt, int open_flags, mode_t open_mode) {
  242. io->type = WTF_IO;
  243. char *p = strrchr(opt, ':');
  244. if (!p) {
  245. io->type = FILE_IO;
  246. if (strcmp(opt, "-") != 0) {
  247. io->fd = open(opt, open_flags, open_mode);
  248. if (io->fd < 0) {
  249. fprintf(stderr, "ERROR: Can not open file (%s): %s\n", opt, strerror(errno));
  250. exit(EXIT_FAILURE);
  251. }
  252. }
  253. io->fname = strdup(opt);
  254. return 0;
  255. }
  256. *p = 0x00;
  257. io->type = NET_IO;
  258. io->port = atoi(p + 1);
  259. if (inet_aton(opt, &io->addr) == 0)
  260. return 1;
  261. return 0;
  262. }
  263. static void parse_options(struct ts *ts, int argc, char **argv) {
  264. int j, i, ca_err = 0, server_err = 1, input_addr_err = 0, output_addr_err = 0, output_intf_err = 0, ident_err = 0, port_set = 0;
  265. while ((j = getopt_long(argc, argv, short_options, long_options, NULL)) != -1) {
  266. char *p = NULL;
  267. switch (j) {
  268. case 'i': // -- ident
  269. ts->ident = optarg;
  270. break;
  271. case 'd': // --daemon
  272. ts->pidfile = optarg;
  273. break;
  274. case 'N': // --notify-program
  275. ts->notify_program = optarg;
  276. break;
  277. case 'S': // --syslog
  278. ts->syslog_active = 1;
  279. ts->syslog_remote = 0;
  280. break;
  281. case 'l': // --syslog-host
  282. ts->syslog_host = optarg;
  283. ts->syslog_active = 1;
  284. ts->syslog_remote = 1;
  285. break;
  286. case 'L': // --syslog-port
  287. ts->syslog_port = atoi(optarg);
  288. break;
  289. case 'F': // --log-file
  290. log_filename = optarg;
  291. break;
  292. case 'I': // --input
  293. input_addr_err = parse_io_param(&ts->input, optarg, O_RDONLY, 0);
  294. break;
  295. case 'R': // --input-rtp
  296. ts->rtp_input = !ts->rtp_input;
  297. break;
  298. case 'z': // --input-ignore-disc
  299. ts->ts_discont = !ts->ts_discont;
  300. break;
  301. case 'M': // --input-service
  302. ts->forced_service_id = strtoul(optarg, NULL, 0) & 0xffff;
  303. break;
  304. case 'T': // --input-buffer
  305. ts->input_buffer_time = strtoul(optarg, NULL, 0);
  306. break;
  307. case 'W': // --input-dump
  308. ts->input_dump_filename = optarg;
  309. break;
  310. case 'O': // --output
  311. output_addr_err = parse_io_param(&ts->output, optarg,
  312. O_CREAT | O_WRONLY | O_TRUNC,
  313. S_IRUSR | S_IWUSR | S_IRGRP | S_IROTH);
  314. break;
  315. case 'o': // --output-intf
  316. if (inet_aton(optarg, &ts->output.intf) == 0)
  317. output_intf_err = 1;
  318. break;
  319. case 't': // --output-ttl
  320. ts->output.ttl = atoi(optarg);
  321. break;
  322. case 'r': // --output-rtp
  323. ts->rtp_output = 1;
  324. break;
  325. case 'k': // --output-rtp-ssrc
  326. ts->rtp_ssrc = strtoul(optarg, NULL, 0);
  327. break;
  328. case 'g': // --output-tos
  329. ts->output.tos = (uint8_t)strtol(optarg, NULL, 0);
  330. break;
  331. case 'u': // --no-output-on-error
  332. ts->no_output_on_error = !ts->no_output_on_error;
  333. break;
  334. case 'p': // --no-output-filter
  335. ts->pid_filter = !ts->pid_filter;
  336. break;
  337. case 'y': // --output-nit-pass
  338. ts->nit_passthrough = !ts->nit_passthrough;
  339. break;
  340. case 'w': // --output-eit-pass
  341. ts->eit_passthrough = !ts->eit_passthrough;
  342. break;
  343. case 'x': // --output-tdt-pass
  344. ts->tdt_passthrough = !ts->tdt_passthrough;
  345. break;
  346. case 'c': // --ca-system
  347. if (strcasecmp("IRDETO", optarg) == 0)
  348. ts->req_CA_sys = CA_IRDETO;
  349. else if (strcasecmp("CONNAX", optarg) == 0 || strcasecmp("CONAX", optarg) == 0)
  350. ts->req_CA_sys = CA_CONAX;
  351. else if (strcasecmp("CRYPTOWORKS", optarg) == 0)
  352. ts->req_CA_sys = CA_CRYPTOWORKS;
  353. else if (strcasecmp("SECA", optarg) == 0 || strcasecmp("MEDIAGUARD", optarg) == 0)
  354. ts->req_CA_sys = CA_SECA;
  355. else if (strcasecmp("VIACCESS", optarg) == 0)
  356. ts->req_CA_sys = CA_VIACCESS;
  357. else if (strcasecmp("VIDEOGUARD", optarg) == 0 || strcasecmp("NDS", optarg) == 0)
  358. ts->req_CA_sys = CA_VIDEOGUARD;
  359. else if (strcasecmp("NAGRA", optarg) == 0)
  360. ts->req_CA_sys = CA_NAGRA;
  361. else if (strcasecmp("DRE-CRYPT", optarg) == 0 || strcasecmp("DRECRYPT", optarg) == 0)
  362. ts->req_CA_sys = CA_DRECRYPT;
  363. else if (strcasecmp("BULCRYPT", optarg) == 0)
  364. ts->req_CA_sys = CA_BULCRYPT;
  365. else
  366. ca_err = 1;
  367. break;
  368. case 'C': // --caid
  369. ts->forced_caid = strtoul(optarg, NULL, 0) & 0xffff;
  370. break;
  371. case 'Y': // --const-cw
  372. ts->camd.constant_codeword = 1;
  373. if (strlen(optarg) > 2 && optarg[0] == '0' && optarg[1] == 'x')
  374. optarg += 2;
  375. if (strlen(optarg) != CODEWORD_LENGTH * 2) {
  376. fprintf(stderr, "ERROR: Constant code word should be %u characters long.\n", CODEWORD_LENGTH * 2);
  377. exit(EXIT_FAILURE);
  378. }
  379. if (decode_hex_string(optarg, ts->camd.key->cw, strlen(optarg)) < 0) {
  380. fprintf(stderr, "ERROR: Invalid hex string for constant code word: %s\n", optarg);
  381. exit(EXIT_FAILURE);
  382. }
  383. camd_set_cw(ts, ts->camd.key->cw, 0);
  384. ts->camd.key->is_valid_cw = 1;
  385. break;
  386. case 'Q': // --biss-key
  387. ts->camd.constant_codeword = 1;
  388. if (strlen(optarg) > 2 && optarg[0] == '0' && optarg[1] == 'x')
  389. optarg += 2;
  390. uint8_t *key = ts->camd.key->cw;
  391. // Sometimes the BISS keys are entered with their checksums already calculated (16 symbols, 8 bytes)
  392. // This is the same as constant cw with the same key for even and odd
  393. if (strlen(optarg) == (BISSKEY_LENGTH + 2) * 2) {
  394. if (decode_hex_string(optarg, key, strlen(optarg)) < 0) {
  395. fprintf(stderr, "ERROR: Invalid hex string for BISS key: %s\n", optarg);
  396. exit(EXIT_FAILURE);
  397. }
  398. } else {
  399. // BISS key without checksum (12 symbols, 6 bytes)
  400. if (strlen(optarg) != BISSKEY_LENGTH * 2) {
  401. fprintf(stderr, "ERROR: BISS key should be %u characters long.\n", BISSKEY_LENGTH * 2);
  402. exit(EXIT_FAILURE);
  403. }
  404. if (decode_hex_string(optarg, key, strlen(optarg)) < 0) {
  405. fprintf(stderr, "ERROR: Invalid hex string for BISS key: %s\n", optarg);
  406. exit(EXIT_FAILURE);
  407. }
  408. // Calculate BISS KEY crc
  409. memmove(key + 4, key + 3, 3);
  410. key[3] = (uint8_t)(key[0] + key[1] + key[2]);
  411. key[7] = (uint8_t)(key[4] + key[5] + key[6]);
  412. }
  413. // Even and odd keys are the same
  414. memcpy(key + 8, key, 8);
  415. camd_set_cw(ts, ts->camd.key->cw, 0);
  416. ts->camd.key->is_valid_cw = 1;
  417. break;
  418. case 'A': // --camd-proto
  419. if (strcasecmp(optarg, "cs378x") == 0) {
  420. camd_proto_cs378x(&ts->camd.ops);
  421. } else if (strcasecmp(optarg, "newcamd") == 0) {
  422. camd_proto_newcamd(&ts->camd.ops);
  423. } else {
  424. fprintf(stderr, "Unknown CAMD protocol: %s\n", optarg);
  425. exit(EXIT_FAILURE);
  426. }
  427. break;
  428. case 's': // --camd-server
  429. server_err = 0;
  430. ts->camd.hostname = optarg;
  431. if (optarg[0] == '[') { // Detect IPv6 static address
  432. p = strrchr(optarg, ']');
  433. if (!p) {
  434. fprintf(stderr, "ERROR: Invalid IPv6 address format: %s\n", optarg);
  435. exit(EXIT_FAILURE);
  436. }
  437. ts->camd.hostname = optarg + 1; // Remove first [
  438. *p = 0x00; // Remove last ]
  439. char *p2 = strchr(p + 1, ':');
  440. if (p2) {
  441. *p2 = 0x00;
  442. ts->camd.service = p2 + 1;
  443. port_set = 1;
  444. }
  445. } else {
  446. p = strrchr(optarg, ':');
  447. if (p) {
  448. *p = 0x00;
  449. ts->camd.service = p + 1;
  450. port_set = 1;
  451. }
  452. }
  453. break;
  454. case 'U': // --camd-user
  455. if (strlen(optarg) < 64)
  456. ts->camd.user = optarg;
  457. break;
  458. case 'P': // --camd-pass
  459. ts->camd.pass = optarg;
  460. break;
  461. case 'B': // --camd-des-key
  462. if (strlen(optarg) > 2 && optarg[0] == '0' && optarg[1] == 'x')
  463. optarg += 2;
  464. if (strlen(optarg) != DESKEY_LENGTH) {
  465. fprintf(stderr, "ERROR: des key should be %u characters long.\n", DESKEY_LENGTH);
  466. exit(EXIT_FAILURE);
  467. }
  468. strncpy(ts->camd.newcamd.hex_des_key, optarg, sizeof(ts->camd.newcamd.hex_des_key) - 1);
  469. ts->camd.newcamd.hex_des_key[sizeof(ts->camd.newcamd.hex_des_key) - 1] = 0;
  470. break;
  471. case '4': // --ipv4
  472. ai_family = AF_INET;
  473. break;
  474. case '6': // --ipv6
  475. ai_family = AF_INET6;
  476. break;
  477. case 'e': // --emm
  478. ts->emm_send = !ts->emm_send;
  479. break;
  480. case 'Z': // --emm-pid
  481. ts->forced_emm_pid = strtoul(optarg, NULL, 0) & 0x1fff;
  482. break;
  483. case 'E': // --emm-only
  484. ts->emm_only = 1;
  485. ts->emm_send = 1;
  486. break;
  487. case 'f': // --emm-report-time
  488. ts->emm_report_interval = strtoul(optarg, NULL, 10);
  489. if (ts->emm_report_interval > 86400)
  490. ts->emm_report_interval = 86400;
  491. break;
  492. case 'a': // --emm-filter
  493. if (ts->emm_filters_num + 1 > MAX_FILTERS) {
  494. fprintf(stderr, "ERROR: Maximum allowed filters are %d.\n", MAX_FILTERS);
  495. exit(EXIT_FAILURE);
  496. }
  497. if (filter_parse(optarg, &ts->emm_filters[ts->emm_filters_num])) {
  498. ts->emm_filters_num++;
  499. } else {
  500. fprintf(stderr, "ERROR: Can't parse EMM filter: %s\n", optarg);
  501. exit(EXIT_FAILURE);
  502. }
  503. break;
  504. case 'X': // --ecm-pid
  505. ts->forced_ecm_pid = strtoul(optarg, NULL, 0) & 0x1fff;
  506. break;
  507. case 'H': // --ecm-report-time
  508. ts->ecm_report_interval = strtoul(optarg, NULL, 10);
  509. if (ts->ecm_report_interval > 86400)
  510. ts->ecm_report_interval = 86400;
  511. break;
  512. case 'G': // --ecm-irdeto-type
  513. ts->irdeto_ecm = atoi(optarg);
  514. break;
  515. case 'K': // --ecm-no-log
  516. ts->ecm_cw_log = !ts->ecm_cw_log;
  517. break;
  518. case 'J': // --cw-warn-time
  519. ts->cw_warn_sec = strtoul(optarg, NULL, 10);
  520. if (ts->cw_warn_sec > 86400)
  521. ts->cw_warn_sec = 86400;
  522. ts->cw_last_warn= ts->cw_last_warn + ts->cw_warn_sec;
  523. break;
  524. case 'D': // --debug
  525. ts->debug_level = atoi(optarg);
  526. if (ts->debug_level > 0)
  527. ts->pid_report = 1;
  528. break;
  529. case 'j': // --pid-report
  530. ts->pid_report = 1;
  531. break;
  532. case 'b': // --bench
  533. csa_benchmark();
  534. exit(EXIT_SUCCESS);
  535. case 'n': // --ecm-file
  536. case 'm': // --emm-file
  537. packet_from_file = 1;
  538. packet_buflen = file_hex2buf(optarg, packet_buf, sizeof(packet_buf));
  539. if (!packet_buflen) {
  540. fprintf(stderr, "ERROR: Can't init packet from file.\n");
  541. exit(1);
  542. }
  543. packet_type = j == 'n' ? ECM_MSG : EMM_MSG;
  544. break;
  545. case 'h': // --help
  546. show_help(ts);
  547. exit(EXIT_SUCCESS);
  548. case 'V': // --version
  549. printf("%s\n", program_id);
  550. exit(EXIT_SUCCESS);
  551. }
  552. }
  553. if (!ts->ident) {
  554. if (ts->syslog_active || ts->notify_program)
  555. ident_err = 1;
  556. }
  557. if (packet_from_file) {
  558. int err = 0;
  559. if (!ts->forced_caid) {
  560. fprintf(stderr, "ERROR: CAID was not set. Use --caid option.\n");
  561. err++;
  562. }
  563. if (!ts->forced_service_id) {
  564. fprintf(stderr, "ERROR: Service id was not set. Use --input-service option.\n");
  565. err++;
  566. }
  567. if (err)
  568. exit(EXIT_FAILURE);
  569. ts->threaded = 0;
  570. input_addr_err = 0;
  571. output_addr_err = 0;
  572. ts->input.type = FILE_IO;
  573. ts->input.fd = 0;
  574. ts->output.type = FILE_IO;
  575. ts->output.fd = 1;
  576. ts->pid_filter = 0;
  577. ts->emm_send = 1;
  578. ts->emm_report_interval = 0;
  579. ts->ecm_report_interval = 0;
  580. ts->cw_warn_sec = 0;
  581. ts->camd.no_reconnect = 1;
  582. ts->camd.check_emm_errors = 1;
  583. ts->emm_filters_num = 0;
  584. }
  585. // Constant codeword is special. Disable conflicting options
  586. if (ts->camd.constant_codeword) {
  587. server_err = 0; // No server settings are required
  588. ts->forced_caid = 0;
  589. ts->forced_ecm_pid = 0;
  590. ts->forced_emm_pid = 0;
  591. ts->emm_send = 0;
  592. ts->emm_report_interval = 0;
  593. ts->ecm_report_interval = 0;
  594. ts->cw_warn_sec = 0;
  595. }
  596. if (ident_err || ca_err || server_err || input_addr_err || output_addr_err || ts->input.type == WTF_IO || ts->output.type == WTF_IO) {
  597. show_help(ts);
  598. if (ident_err)
  599. fprintf(stderr, "ERROR: Ident is not set, please use --ident option.\n");
  600. if (ca_err)
  601. fprintf(stderr, "ERROR: Requested CA system is unsupported.\n");
  602. if (server_err)
  603. fprintf(stderr, "ERROR: CAMD server address is not set or it is invalid.\n");
  604. if (input_addr_err)
  605. fprintf(stderr, "ERROR: Input IP address is invalid.\n");
  606. if (output_addr_err)
  607. fprintf(stderr, "ERROR: Output IP address is invalid.\n");
  608. if (output_intf_err)
  609. fprintf(stderr, "ERROR: Output interface address is invalid.\n");
  610. exit(EXIT_FAILURE);
  611. }
  612. if (decode_hex_string(ts->camd.newcamd.hex_des_key, ts->camd.newcamd.bin_des_key, DESKEY_LENGTH) < 0) {
  613. fprintf(stderr, "ERROR: Invalid hex string for des key: %s\n", ts->camd.newcamd.hex_des_key);
  614. exit(EXIT_FAILURE);
  615. }
  616. if (ts->camd.ops.proto == CAMD_NEWCAMD && !port_set) {
  617. fprintf(stderr, "ERROR: CAMD server port is not set. Use --camd-server %s:xxxx to set the port.\n", ts->camd.hostname);
  618. exit(EXIT_FAILURE);
  619. }
  620. if (log_filename) {
  621. log_file = fopen(log_filename, "a");
  622. if (!log_file) {
  623. fprintf(stderr, "ERROR: Can't open log file %s: %s\n", log_filename, strerror(errno));
  624. exit(EXIT_FAILURE);
  625. }
  626. }
  627. if (ts->ident)
  628. ts_LOGf("Ident : %s\n", ts->ident);
  629. if (ts->notify_program)
  630. ts_LOGf("Notify prg : %s\n", ts->notify_program);
  631. if (ts->pidfile)
  632. ts_LOGf("Daemonize : %s pid file.\n", ts->pidfile);
  633. if (ts->syslog_active) {
  634. if (ts->syslog_remote)
  635. ts_LOGf("Syslog : %s:%d\n", ts->syslog_host, ts->syslog_port);
  636. else
  637. ts_LOGf("Syslog : enabled\n");
  638. } else {
  639. if (!packet_from_file)
  640. ts_LOGf("Syslog : disabled\n");
  641. }
  642. if (!ts->camd.constant_codeword) {
  643. if (ts->forced_caid)
  644. ts->req_CA_sys = ts_get_CA_sys(ts->forced_caid);
  645. if (!ts->forced_caid)
  646. ts_LOGf("CA System : %s\n", ts_get_CA_sys_txt(ts->req_CA_sys));
  647. else
  648. ts_LOGf("CA System : %s | CAID: 0x%04x (%d)\n",
  649. ts_get_CA_sys_txt(ts->req_CA_sys),
  650. ts->forced_caid, ts->forced_caid);
  651. } else {
  652. char cw_even[64], cw_odd[64];
  653. ts_hex_dump_buf(cw_even, sizeof(cw_even), ts->key.cw , 8, 0);
  654. ts_hex_dump_buf(cw_odd , sizeof(cw_odd ), ts->key.cw + 8, 8, 0);
  655. ts_LOGf("Constant CW: even = %s\n", cw_even);
  656. ts_LOGf("Constant CW: odd = %s\n", cw_odd);
  657. }
  658. if (ts->input.type == NET_IO) {
  659. ts_LOGf("Input addr : %s://%s:%u/\n",
  660. ts->rtp_input ? "rtp" : "udp",
  661. inet_ntoa(ts->input.addr), ts->input.port);
  662. if (ts->input_buffer_time) {
  663. ts_LOGf("Input buff : %u ms\n", ts->input_buffer_time);
  664. }
  665. } else if (ts->input.type == FILE_IO) {
  666. if (!packet_from_file)
  667. ts_LOGf("Input file : %s\n", ts->input.fd == 0 ? "STDIN" : ts->input.fname);
  668. }
  669. if (ts->input_dump_filename) {
  670. ts->input_dump_file = fopen(ts->input_dump_filename, "w");
  671. if (ts->input_dump_file)
  672. ts_LOGf("Input dump : %s\n", ts->input_dump_filename);
  673. else
  674. ts_LOGf("Input dump : %s | ERROR: %s\n", ts->input_dump_filename, strerror(errno));
  675. }
  676. if (ts->forced_service_id)
  677. ts_LOGf("Service id : 0x%04x (%d)\n",
  678. ts->forced_service_id, ts->forced_service_id);
  679. if (ts->req_CA_sys == CA_IRDETO)
  680. ts_LOGf("Irdeto ECM : %d\n", ts->irdeto_ecm);
  681. if (!ts->emm_only)
  682. {
  683. if (ts->output.type == NET_IO) {
  684. ts_LOGf("Output addr: %s://%s:%u/\n",
  685. ts->rtp_output ? "rtp" : "udp",
  686. inet_ntoa(ts->output.addr), ts->output.port);
  687. ts_LOGf("Output intf: %s\n", inet_ntoa(ts->output.intf));
  688. ts_LOGf("Output ttl : %d\n", ts->output.ttl);
  689. if (ts->output.tos > -1)
  690. ts_LOGf("Output TOS : %u (0x%02x)\n", ts->output.tos, ts->output.tos);
  691. if (ts->rtp_output) {
  692. ts_LOGf("RTP SSRC : %u (0x%04x)\n",
  693. ts->rtp_ssrc, ts->rtp_ssrc);
  694. // It is recommended that RTP seqnum starts with random number
  695. RAND_bytes((unsigned char *)&(ts->rtp_seqnum), 2);
  696. }
  697. } else if (ts->output.type == FILE_IO) {
  698. if (!packet_from_file)
  699. ts_LOGf("Output file: %s\n", ts->output.fd == 1 ? "STDOUT" : ts->output.fname);
  700. }
  701. if (!packet_from_file) {
  702. ts_LOGf("Out filter : %s (%s)%s\n",
  703. ts->pid_filter ? "enabled" : "disabled",
  704. ts->pid_filter ? "output only service related PIDs" : "output everything",
  705. ts->no_output_on_error ? " (No output on CW error)" : ""
  706. );
  707. }
  708. if (ts->pid_filter) {
  709. if (ts->nit_passthrough)
  710. ts_LOGf("Out filter : Pass through NIT.\n");
  711. if (ts->eit_passthrough)
  712. ts_LOGf("Out filter : Pass through EIT (EPG).\n");
  713. if (ts->tdt_passthrough)
  714. ts_LOGf("Out filter : Pass through TDT/TOT.\n");
  715. }
  716. }
  717. if (!ts->camd.constant_codeword) {
  718. ts_LOGf("CAMD proto : %s\n", ts->camd.ops.ident);
  719. ts_LOGf("CAMD addr : %s:%s%s\n", ts->camd.hostname, ts->camd.service,
  720. ai_family == AF_INET ? " (IPv4 only)" :
  721. ai_family == AF_INET6 ? " (IPv6 only)" :
  722. " (IPv4/IPv6)"
  723. );
  724. ts_LOGf("CAMD user : %s\n", ts->camd.user);
  725. ts_LOGf("CAMD pass : %s\n", ts->camd.pass);
  726. if (ts->camd.ops.proto == CAMD_NEWCAMD)
  727. ts_LOGf("CAMD deskey: %s\n", ts->camd.newcamd.hex_des_key);
  728. }
  729. if (!packet_from_file) {
  730. ts_LOGf("TS discont : %s\n", ts->ts_discont ? "report" : "ignore");
  731. ts->threaded = !(ts->input.type == FILE_IO && ts->input.fd != 0);
  732. }
  733. if (!packet_from_file && !ts->emm_only) {
  734. ts_LOGf("Decoding : %s\n", ts->threaded ? "threaded" : "single thread");
  735. }
  736. if (!packet_from_file) {
  737. if (ts->emm_send && ts->emm_report_interval)
  738. ts_LOGf("EMM report : %d sec\n", ts->emm_report_interval);
  739. if (ts->emm_send && ts->emm_report_interval == 0)
  740. ts_LOGf("EMM report : disabled\n");
  741. if (ts->forced_emm_pid)
  742. ts_LOGf("EMM pid : 0x%04x (%d)\n", ts->forced_emm_pid, ts->forced_emm_pid);
  743. }
  744. if (ts->emm_only) {
  745. ts_LOGf("EMM only : %s\n", ts->emm_only ? "yes" : "no");
  746. } else {
  747. if (!packet_from_file) {
  748. if (!ts->camd.constant_codeword)
  749. ts_LOGf("EMM send : %s\n", ts->emm_send ? "enabled" : "disabled");
  750. ts_LOGf("Decoding : %s\n", ts->threaded ? "threaded" : "single thread");
  751. }
  752. }
  753. if (ts->emm_send) {
  754. for (i = 0; i < ts->emm_filters_num; i++) {
  755. char tmp[512];
  756. filter_dump(&ts->emm_filters[i], tmp, sizeof(tmp));
  757. ts_LOGf("EMM filter : [%2d] %s\n", i + 1, tmp);
  758. }
  759. }
  760. if (!packet_from_file) {
  761. if (!ts->emm_only && ts->ecm_report_interval)
  762. ts_LOGf("ECM report : %d sec\n", ts->emm_report_interval);
  763. if (!ts->emm_only && ts->ecm_report_interval == 0 && !ts->camd.constant_codeword)
  764. ts_LOGf("ECM report : disabled\n");
  765. if (ts->forced_ecm_pid)
  766. ts_LOGf("ECM pid : 0x%04x (%d)\n", ts->forced_ecm_pid, ts->forced_ecm_pid);
  767. if (!ts->emm_only && ts->cw_warn_sec)
  768. ts_LOGf("CW warning : %d sec\n", ts->cw_warn_sec);
  769. if (!ts->emm_only && ts->cw_warn_sec && !ts->camd.constant_codeword)
  770. ts_LOGf("CW warning : disabled\n");
  771. if (!ts->ecm_cw_log && !ts->camd.constant_codeword)
  772. ts_LOGf("ECM/CW log : disabled\n");
  773. }
  774. if (ts->ident) {
  775. int len = strlen(ts->ident);
  776. for (i = 0; i < len; i++) {
  777. if (ts->ident[i] == '/')
  778. ts->ident[i] = '-';
  779. }
  780. }
  781. }
  782. static void report_emms(struct ts *ts, time_t now) {
  783. ts_LOGf("EMM | Received %u, Skipped %u, Sent %u, Processed %u in %lu seconds.\n",
  784. ts->emm_input_count,
  785. ts->emm_skipped_count,
  786. ts->emm_seen_count,
  787. ts->emm_processed_count,
  788. now - ts->emm_last_report);
  789. if (ts->emm_seen_count == 0) {
  790. notify(ts, "NO_EMM_RECEIVED", "No EMMs were received in last %lu seconds.",
  791. now - ts->emm_last_report);
  792. }
  793. ts->emm_last_report = now;
  794. ts->emm_input_count = 0;
  795. ts->emm_seen_count = 0;
  796. ts->emm_skipped_count = 0;
  797. ts->emm_processed_count = 0;
  798. }
  799. static void report_ecms(struct ts *ts, time_t now) {
  800. ts_LOGf("ECM | Received %u (%u dup) and processed %u in %lu seconds.\n",
  801. ts->ecm_seen_count,
  802. ts->ecm_duplicate_count,
  803. ts->ecm_processed_count,
  804. now - ts->ecm_last_report);
  805. ts->ecm_last_report = now;
  806. ts->ecm_seen_count = 0;
  807. ts->ecm_duplicate_count = 0;
  808. ts->ecm_processed_count = 0;
  809. }
  810. static void report_cw_warn(struct ts *ts, time_t now) {
  811. if (now - ts->key.ts > 1) {
  812. notify(ts, "NO_CODE_WORD", "No valid code word was received in %ld sec.",
  813. now - ts->key.ts);
  814. ts_LOGf("CW | *ERR* No valid code word was received for %ld seconds!\n",
  815. now - ts->key.ts);
  816. }
  817. ts->cw_last_warn = now;
  818. ts->cw_next_warn = now + ts->cw_warn_sec;
  819. }
  820. static void do_reports(struct ts *ts) {
  821. static int first_emm_report = 1;
  822. static int first_ecm_report = 1;
  823. time_t now = time(NULL);
  824. if (ts->emm_send && ts->emm_report_interval) {
  825. if (first_emm_report && now >= ts->emm_last_report) {
  826. first_emm_report = 0;
  827. ts->emm_last_report -= FIRST_REPORT_SEC;
  828. report_emms(ts, now);
  829. } else if ((time_t)(ts->emm_last_report + ts->emm_report_interval) <= now) {
  830. report_emms(ts, now);
  831. }
  832. }
  833. if (!ts->emm_only && ts->ecm_report_interval) {
  834. if (first_ecm_report && now >= ts->ecm_last_report) {
  835. first_ecm_report = 0;
  836. ts->ecm_last_report -= FIRST_REPORT_SEC;
  837. report_ecms(ts, now);
  838. } else if ((time_t)(ts->ecm_last_report + ts->ecm_report_interval) <= now) {
  839. report_ecms(ts, now);
  840. }
  841. }
  842. if (!ts->emm_only && !ts->key.is_valid_cw) {
  843. if (ts->cw_warn_sec && now >= ts->cw_next_warn) {
  844. report_cw_warn(ts, now);
  845. }
  846. }
  847. }
  848. void signal_quit(int sig) {
  849. if (!keep_running)
  850. raise(sig);
  851. keep_running = 0;
  852. ts_LOGf("Killed %s with signal %d\n", program_id, sig);
  853. signal(sig, SIG_DFL);
  854. }
  855. #define RTP_HDR_SZ 12
  856. static uint8_t ts_packet[FRAME_SIZE + RTP_HDR_SZ];
  857. static uint8_t rtp_hdr[2][RTP_HDR_SZ];
  858. static struct ts ts;
  859. int main(int argc, char **argv) {
  860. ssize_t readen;
  861. int have_data = 1;
  862. int ntimeouts = 0;
  863. time_t timeout_start = time(NULL);
  864. int rtp_hdr_pos = 0, num_packets = 0;
  865. struct rlimit rl;
  866. if (getrlimit(RLIMIT_STACK, &rl) == 0) {
  867. if (rl.rlim_cur > THREAD_STACK_SIZE) {
  868. rl.rlim_cur = THREAD_STACK_SIZE;
  869. setrlimit(RLIMIT_STACK, &rl);
  870. }
  871. }
  872. memset(rtp_hdr[0], 0, RTP_HDR_SZ);
  873. memset(rtp_hdr[1], 0, RTP_HDR_SZ);
  874. data_init(&ts);
  875. ts_set_log_func(LOG_func);
  876. parse_options(&ts, argc, argv);
  877. if (ts.pidfile)
  878. daemonize(ts.pidfile);
  879. if (ts.syslog_active) {
  880. if (ts.syslog_remote) {
  881. log_init(ts.ident, 1, 1, ts.syslog_host, ts.syslog_port);
  882. remote_syslog = 1;
  883. } else {
  884. openlog(ts.ident, LOG_NDELAY | LOG_PID, LOG_USER);
  885. local_syslog = 1;
  886. }
  887. }
  888. ts.notify = notify_alloc(&ts);
  889. ts_LOGf("Start %s\n", program_id);
  890. notify(&ts, "START", "Starting %s", program_id);
  891. if (ts.input.type == NET_IO && udp_connect_input(&ts.input) < 1)
  892. goto EXIT;
  893. if (ts.output.type == NET_IO && udp_connect_output(&ts.output) < 1)
  894. goto EXIT;
  895. signal(SIGCHLD, SIG_IGN);
  896. signal(SIGPIPE, SIG_IGN);
  897. signal(SIGINT , signal_quit);
  898. signal(SIGTERM, signal_quit);
  899. if (ts.threaded) {
  900. pthread_create(&ts.decode_thread, &ts.thread_attr, &decode_thread, &ts);
  901. pthread_create(&ts.write_thread , &ts.thread_attr, &write_thread , &ts);
  902. }
  903. ts.emm_last_report = time(NULL) + FIRST_REPORT_SEC;
  904. ts.ecm_last_report = time(NULL) + FIRST_REPORT_SEC;
  905. camd_start(&ts);
  906. if (packet_from_file) {
  907. uint8_t tmp[2048];
  908. ts_hex_dump_buf((char *)tmp, sizeof(tmp), packet_buf, packet_buflen, 16);
  909. ts_LOGf("%s | Processing packet with CAID 0x%04x\n", packet_type == ECM_MSG ? "ECM" : "EMM", ts.forced_caid);
  910. ts_LOGf("%s | Packet dump:\n%s\n", packet_type == ECM_MSG ? "ECM" : "EMM", tmp);
  911. camd_process_packet(&ts, camd_msg_alloc(packet_type, ts.forced_caid, ts.forced_service_id, packet_buf, packet_buflen));
  912. goto EXIT;
  913. }
  914. do {
  915. if (!ts.camd.constant_codeword)
  916. do_reports(&ts);
  917. if (ts.input.type == NET_IO) {
  918. set_log_io_errors(0);
  919. if (!ts.rtp_input) {
  920. readen = fdread_ex(ts.input.fd, (char *)ts_packet, FRAME_SIZE, 250, 4, 1);
  921. } else {
  922. readen = fdread_ex(ts.input.fd, (char *)ts_packet, FRAME_SIZE + RTP_HDR_SZ, 250, 4, 1);
  923. if (readen > RTP_HDR_SZ) {
  924. memcpy(rtp_hdr[rtp_hdr_pos], ts_packet, RTP_HDR_SZ);
  925. memmove(ts_packet, ts_packet + RTP_HDR_SZ, FRAME_SIZE);
  926. readen -= RTP_HDR_SZ;
  927. uint16_t ssrc = (rtp_hdr[rtp_hdr_pos][2] << 8) | rtp_hdr[rtp_hdr_pos][3];
  928. uint16_t pssrc = (rtp_hdr[!rtp_hdr_pos][2] << 8) | rtp_hdr[!rtp_hdr_pos][3];
  929. rtp_hdr_pos = !rtp_hdr_pos;
  930. if (pssrc + 1 != ssrc && (ssrc != 0 && pssrc != 0xffff) && num_packets > 2)
  931. if (ts.ts_discont)
  932. ts_LOGf("--- | RTP discontinuity last_ssrc %5d, curr_ssrc %5d, lost %d packet\n",
  933. pssrc, ssrc, ((ssrc - pssrc)-1) & 0xffff);
  934. num_packets++;
  935. }
  936. }
  937. set_log_io_errors(1);
  938. if (readen < 0) {
  939. ts_LOGf("--- | Input read timeout.\n");
  940. if (!ntimeouts) {
  941. timeout_start = time(NULL);
  942. notify(&ts, "INPUT_TIMEOUT", "Read timeout on input %s://%s:%u/",
  943. ts.rtp_input ? "rtp" : "udp",
  944. inet_ntoa(ts.input.addr), ts.input.port);
  945. }
  946. ntimeouts++;
  947. } else {
  948. if (ntimeouts && readen > 0) {
  949. notify(&ts, "INPUT_OK", "Data is available on input %s://%s:%u/ after %ld seconds timeout.",
  950. ts.rtp_input ? "rtp" : "udp",
  951. inet_ntoa(ts.input.addr), ts.input.port,
  952. (time(NULL) - timeout_start) + 2); // Timeout is detected when ~2 seconds there is no incoming data
  953. ntimeouts = 0;
  954. }
  955. }
  956. } else {
  957. readen = read(ts.input.fd, ts_packet, FRAME_SIZE);
  958. have_data = !(readen <= 0);
  959. }
  960. if (readen > 0) {
  961. if (ts.input_dump_file)
  962. fwrite(ts_packet, readen, 1, ts.input_dump_file);
  963. process_packets(&ts, ts_packet, readen);
  964. }
  965. if (!keep_running)
  966. break;
  967. } while (have_data);
  968. EXIT:
  969. camd_stop(&ts);
  970. if (ts.threaded) {
  971. ts.decode_stop = 1;
  972. ts.write_stop = 1;
  973. if (ts.decode_thread)
  974. pthread_join(ts.decode_thread, NULL);
  975. if (ts.write_thread)
  976. pthread_join(ts.write_thread, NULL);
  977. }
  978. show_pid_report(&ts);
  979. notify_sync(&ts, "STOP", "Stopping %s", program_id);
  980. ts_LOGf("Stop %s\n", program_id);
  981. if (ts.syslog_active) {
  982. if (ts.syslog_remote)
  983. log_close();
  984. else
  985. closelog();
  986. }
  987. if (ts.input_dump_file)
  988. fclose(ts.input_dump_file);
  989. if (ts.pidfile)
  990. unlink(ts.pidfile);
  991. if (log_file)
  992. fclose(log_file);
  993. notify_free(&ts.notify);
  994. data_free(&ts);
  995. exit(EXIT_SUCCESS);
  996. }