mptsd reads mpegts streams from udp/multicast or http and combines them into one multiple program stream that is suitable for outputting to DVB-C modulator. Tested with Dektec DTE-3114 Quad QAM Modulator and used in production in small DVB-C networks. https://georgi.unixsol.org/programs/mptsd/
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output_psi.c 7.4KB

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  1. #include <stdlib.h>
  2. #include <unistd.h>
  3. #include <signal.h>
  4. #include "libfuncs/log.h"
  5. #include "libfuncs/list.h"
  6. #include "libtsfuncs/tsfuncs.h"
  7. #include "config.h"
  8. #include "data.h"
  9. static void output_psi_init_pat(CONFIG *conf, OUTPUT *o) {
  10. LNODE *lc, *lctmp;
  11. o->pat = ts_pat_alloc_init(conf->transport_stream_id);
  12. list_lock(conf->channels);
  13. list_for_each(conf->channels, lc, lctmp) {
  14. CHANNEL *c = lc->data;
  15. ts_pat_add_program(o->pat, c->service_id, c->pmt_pid);
  16. }
  17. list_unlock(conf->channels);
  18. gettimeofday(&o->pat_ts, NULL);
  19. }
  20. static void output_psi_init_nit(CONFIG *conf, OUTPUT *o) {
  21. struct ts_nit *nit = ts_nit_alloc_init(conf->network_id);
  22. ts_nit_add_network_name_descriptor(nit, conf->network_name);
  23. if (conf->nit->items < 64) {
  24. int num;
  25. LNODE *lc, *lctmp;
  26. uint32_t *freqs = malloc(conf->nit->items * sizeof(uint32_t));
  27. uint32_t *services = malloc(conf->channels->items * sizeof(uint32_t));
  28. num = 0;
  29. list_lock(conf->nit);
  30. list_for_each(conf->nit, lc, lctmp) {
  31. NIT *ndata = lc->data;
  32. freqs[num++] = ndata->_freq;
  33. }
  34. ts_nit_add_frequency_list_descriptor_cable(nit, conf->transport_stream_id, conf->network_id, freqs, num);
  35. list_for_each(conf->nit, lc, lctmp) {
  36. NIT *ndata = lc->data;
  37. ts_nit_add_cable_delivery_descriptor(nit, ndata->ts_id, conf->network_id, ndata->_freq, ndata->_modulation, ndata->_symbol_rate);
  38. }
  39. list_unlock(conf->nit);
  40. num = 0;
  41. list_lock(conf->channels);
  42. list_for_each(conf->channels, lc, lctmp) {
  43. CHANNEL *c = lc->data;
  44. uint32_t srv = 0;
  45. srv = (c->service_id &~ 0x00ff) << 16;
  46. srv |= (c->service_id &~ 0xff00) << 8;
  47. srv |= c->radio ? 0x02 : 0x01;
  48. services[num++] = srv;
  49. }
  50. list_unlock(conf->channels);
  51. ts_nit_add_service_list_descriptor(nit, conf->transport_stream_id, conf->network_id, services, num);
  52. free(freqs);
  53. free(services);
  54. } else {
  55. LOG("CONF : Too much items in the NIT, maximum is 64! NIT not generated.\n");
  56. }
  57. gettimeofday(&o->nit_ts, NULL);
  58. o->nit = nit;
  59. }
  60. static void output_psi_init_sdt(CONFIG *conf, OUTPUT *o) {
  61. LNODE *lc, *lctmp;
  62. struct ts_sdt *sdt = ts_sdt_alloc_init(conf->network_id, conf->transport_stream_id);
  63. list_lock(conf->channels);
  64. list_for_each(conf->channels, lc, lctmp) {
  65. CHANNEL *c = lc->data;
  66. ts_sdt_add_service_descriptor(sdt, c->service_id, c->radio == 0, conf->provider_name, c->name);
  67. }
  68. list_unlock(conf->channels);
  69. gettimeofday(&o->sdt_ts, NULL);
  70. o->sdt = sdt;
  71. }
  72. static void output_psi_init_tdt_tot(CONFIG *conf, OUTPUT *o) {
  73. conf = conf; // Silence warning
  74. o->pid_tdt_cont = 15;
  75. o->tdt = ts_tdt_alloc_init(time(NULL));
  76. o->tot = ts_tot_alloc_init(time(NULL));
  77. gettimeofday(&o->tdt_ts, NULL);
  78. gettimeofday(&o->tot_ts, NULL);
  79. }
  80. static void output_add_pat(OUTPUT *o) {
  81. if (!o->pat->programs_num) {
  82. LOG("OUTPUT: Error no programs in PAT!\n");
  83. return;
  84. }
  85. int i;
  86. struct ts_pat *pat = o->pat;
  87. // LOGf("OUTPUT: Outputing PAT with %d programs\n", o->pat->programs_num);
  88. for (i=0;i<pat->section_header->num_packets;i++) {
  89. ts_packet_set_cont(pat->section_header->packet_data + (i * TS_PACKET_SIZE), i + o->pid_pat_cont);
  90. }
  91. pat->ts_header.continuity = o->pid_pat_cont;
  92. o->pid_pat_cont += pat->section_header->num_packets;
  93. cbuf_fill(o->psibuf, pat->section_header->packet_data, pat->section_header->num_packets * TS_PACKET_SIZE);
  94. // ts_pat_dump(o->pat);
  95. }
  96. void output_add_nit(OUTPUT *o) {
  97. if (!o || !o->nit)
  98. return;
  99. int i;
  100. struct ts_nit *nit = o->nit;
  101. // LOGf("OUTPUT: Outputing NIT\n");
  102. for (i=0;i<nit->section_header->num_packets;i++) {
  103. ts_packet_set_cont(nit->section_header->packet_data + (i * TS_PACKET_SIZE), i + o->pid_nit_cont);
  104. }
  105. nit->ts_header.continuity = o->pid_nit_cont;
  106. o->pid_nit_cont += nit->section_header->num_packets;
  107. cbuf_fill(o->psibuf, nit->section_header->packet_data, nit->section_header->num_packets * TS_PACKET_SIZE);
  108. // ts_nit_dump(nit);
  109. }
  110. void output_add_sdt(OUTPUT *o) {
  111. if (!o || !o->sdt)
  112. return;
  113. int i;
  114. struct ts_sdt *sdt = o->sdt;
  115. // LOGf("OUTPUT: Outputing SDT\n");
  116. for (i=0;i<sdt->section_header->num_packets;i++) {
  117. ts_packet_set_cont(sdt->section_header->packet_data + (i * TS_PACKET_SIZE), i + o->pid_sdt_cont);
  118. }
  119. sdt->ts_header.continuity = o->pid_sdt_cont;
  120. o->pid_sdt_cont += sdt->section_header->num_packets;
  121. cbuf_fill(o->psibuf, sdt->section_header->packet_data, sdt->section_header->num_packets * TS_PACKET_SIZE);
  122. // ts_sdt_dump(o->sdt);
  123. }
  124. static void output_add_pid0x14(OUTPUT *o, struct ts_tdt *tdt) {
  125. if (!o || !o->tdt)
  126. return;
  127. int i;
  128. // LOGf("OUTPUT: Outputing TDT\n");
  129. for (i=0;i<tdt->section_header->num_packets;i++) {
  130. ts_packet_set_cont(tdt->section_header->packet_data + (i * TS_PACKET_SIZE), i + o->pid_tdt_cont);
  131. }
  132. tdt->ts_header.continuity = o->pid_tdt_cont;
  133. o->pid_tdt_cont += tdt->section_header->num_packets;
  134. cbuf_fill(o->psibuf, tdt->section_header->packet_data, tdt->section_header->num_packets * TS_PACKET_SIZE);
  135. }
  136. static void output_add_tdt(OUTPUT *o) {
  137. // LOGf("OUTPUT: Outputing TDT\n");
  138. ts_tdt_set_time(o->tdt, time(NULL));
  139. output_add_pid0x14(o, o->tdt);
  140. // ts_tdt_dump(o->tdt);
  141. }
  142. static void output_add_tot(OUTPUT *o) {
  143. // LOGf("OUTPUT: Outputing TOT\n");
  144. ts_tot_set_localtime_offset_sofia(o->tot, time(NULL));
  145. output_add_pid0x14(o, o->tot);
  146. // ts_tdt_dump(o->tot);
  147. }
  148. static void __output_add_eit(OUTPUT *o, struct ts_eit *eit) {
  149. if (!eit)
  150. return;
  151. // LOGf("OUTPUT: Outputing EIT\n");
  152. int i, pcnt = o->pid_eit_cont;
  153. if (eit->section_header && eit->section_header->packet_data) {
  154. for (i=0;i<eit->section_header->num_packets;i++) {
  155. ts_packet_set_cont(eit->section_header->packet_data + (i * TS_PACKET_SIZE), i + pcnt);
  156. }
  157. eit->ts_header.continuity = pcnt;
  158. o->pid_eit_cont += eit->section_header->num_packets;
  159. cbuf_fill(o->psibuf, eit->section_header->packet_data, eit->section_header->num_packets * TS_PACKET_SIZE);
  160. }
  161. // ts_eit_dump(eit);
  162. }
  163. static void output_add_eit(CONFIG *conf, OUTPUT *o) {
  164. LNODE *lr, *lrtmp;
  165. config_load_epg(conf);
  166. list_for_each(conf->inputs, lr, lrtmp) {
  167. INPUT *r = lr->data;
  168. __output_add_eit(o, r->channel->eit_now);
  169. __output_add_eit(o, r->channel->eit_next);
  170. }
  171. }
  172. static void output_psi_add(CONFIG *conf, OUTPUT *o, struct timeval *now) {
  173. if (timeval_diff_msec(&o->pat_ts, now) >= conf->timeouts.pat) {
  174. o->pat_ts = *now;
  175. output_add_pat(o);
  176. }
  177. if (timeval_diff_msec(&o->nit_ts, now) >= conf->timeouts.nit) {
  178. o->nit_ts = *now;
  179. output_add_nit(o);
  180. }
  181. if (timeval_diff_msec(&o->sdt_ts, now) >= conf->timeouts.sdt) {
  182. o->sdt_ts = *now;
  183. output_add_sdt(o);
  184. }
  185. if (timeval_diff_msec(&o->tdt_ts, now) >= conf->timeouts.tdt) {
  186. o->tdt_ts = *now;
  187. output_add_tdt(o);
  188. }
  189. if (timeval_diff_msec(&o->tot_ts, now) >= conf->timeouts.tot) {
  190. o->tot_ts = *now;
  191. output_add_tot(o);
  192. }
  193. if (timeval_diff_msec(&o->eit_ts, now) >= conf->timeouts.eit) {
  194. o->eit_ts = *now;
  195. output_add_eit(conf, o);
  196. }
  197. }
  198. void output_psi_init(CONFIG *conf, OUTPUT *output) {
  199. output_psi_init_pat(conf, output);
  200. output_psi_init_nit(conf, output);
  201. output_psi_init_sdt(conf, output);
  202. output_psi_init_tdt_tot(conf, output);
  203. gettimeofday(&output->eit_ts, NULL);
  204. }
  205. void output_psi_free(OUTPUT *o) {
  206. ts_pat_free(&o->pat);
  207. ts_nit_free(&o->nit);
  208. ts_sdt_free(&o->sdt);
  209. ts_tdt_free(&o->tdt);
  210. ts_tdt_free(&o->tot);
  211. }
  212. void * output_handle_psi(void *_config) {
  213. CONFIG *conf = _config;
  214. OUTPUT *o = conf->output;
  215. struct timeval now;
  216. signal(SIGPIPE, SIG_IGN);
  217. while (!o->dienow) {
  218. gettimeofday(&now, NULL);
  219. output_psi_add(conf, o, &now);
  220. usleep(10000); // 10 ms
  221. }
  222. LOG("OUTPUT: PSI thread stopped.\n");
  223. o->dienow++;
  224. return 0;
  225. }