libtsfuncs is a library for mpeg PSI parsing and generation. https://georgi.unixsol.org/programs/libtsfuncs/
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tsfuncs_sdt.c 7.1KB

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  1. #include <stdio.h>
  2. #include <unistd.h>
  3. #include <netdb.h>
  4. #include <stdlib.h>
  5. #include <string.h>
  6. #include "tsfuncs.h"
  7. struct ts_sdt *ts_sdt_alloc() {
  8. struct ts_sdt *sdt = calloc(1, sizeof(struct ts_sdt));
  9. sdt->section_header = ts_section_data_alloc();
  10. sdt->streams_max = 128;
  11. sdt->streams = calloc(sdt->streams_max, sizeof(void *));
  12. return sdt;
  13. }
  14. void ts_sdt_free(struct ts_sdt **psdt) {
  15. struct ts_sdt *sdt = *psdt;
  16. int i;
  17. if (sdt) {
  18. ts_section_data_free(&sdt->section_header);
  19. for (i=0;i<sdt->streams_num;i++) {
  20. FREE(sdt->streams[i]->descriptor_data);
  21. FREE(sdt->streams[i]);
  22. }
  23. FREE(sdt->streams);
  24. FREE(*psdt);
  25. }
  26. }
  27. static struct ts_sdt *ts_sdt_reset(struct ts_sdt *sdt) {
  28. struct ts_sdt *newsdt = ts_sdt_alloc();
  29. ts_sdt_free(&sdt);
  30. return newsdt;
  31. }
  32. struct ts_sdt *ts_sdt_push_packet(struct ts_sdt *sdt, uint8_t *ts_packet) {
  33. struct ts_header ts_header;
  34. memset(&ts_header, 0, sizeof(struct ts_header));
  35. if (ts_packet_header_parse(ts_packet, &ts_header)) {
  36. // SDT should be with PID 0x11
  37. if (ts_header.pid != 0x11)
  38. goto OUT;
  39. if (!sdt->ts_header.pusi)
  40. sdt->ts_header = ts_header;
  41. }
  42. if (ts_header.pusi) {
  43. struct ts_section_header section_header;
  44. memset(&section_header, 0, sizeof(struct ts_section_header));
  45. uint8_t *section_data = ts_section_header_parse(ts_packet, &sdt->ts_header, &section_header);
  46. if (!section_data || !section_header.section_syntax_indicator) {
  47. memset(&sdt->ts_header, 0, sizeof(struct ts_header));
  48. goto OUT;
  49. }
  50. // table_id should be 0x42 (service_description_section - actual_transport_stream)
  51. if (section_header.table_id != 0x42) {
  52. memset(&sdt->ts_header, 0, sizeof(struct ts_header));
  53. goto OUT;
  54. }
  55. // Set correct section_header
  56. ts_section_header_parse(ts_packet, &sdt->ts_header, sdt->section_header);
  57. }
  58. if (!sdt->initialized) {
  59. if (sdt->section_header->section_syntax_indicator) {
  60. ts_section_add_packet(sdt->section_header, &ts_header, ts_packet);
  61. if (sdt->section_header->initialized) {
  62. if (!ts_sdt_parse(sdt))
  63. goto ERROR;
  64. }
  65. }
  66. }
  67. OUT:
  68. return sdt;
  69. ERROR:
  70. return ts_sdt_reset(sdt);
  71. }
  72. int ts_sdt_parse(struct ts_sdt *sdt) {
  73. uint8_t *section_data = sdt->section_header->data;
  74. int section_len = sdt->section_header->data_len;
  75. // 3 bytes
  76. sdt->original_network_id = (section_data[0] << 8) | section_data[1];
  77. sdt->reserved = section_data[2];
  78. section_data = section_data + 3;
  79. section_len = section_len -3;
  80. while (section_len > 0) {
  81. if (sdt->streams_num == sdt->streams_max) {
  82. ts_LOGf("SDT contains too many streams (>%d), not all are initialized!\n", sdt->streams_max);
  83. break;
  84. }
  85. struct ts_sdt_stream *sinfo = calloc(1, sizeof(struct ts_sdt_stream));
  86. sinfo->service_id = (section_data[0] << 8) | section_data[1];
  87. sinfo->reserved1 = (section_data[2] &~ 0x03) >> 2; // xxxxxx11
  88. sinfo->EIT_schedule_flag = (section_data[2] &~ 0xFD) >> 1; // 111111x1
  89. sinfo->EIT_present_following_flag = (section_data[2] &~ 0xFE); // 1111111x
  90. sinfo->running_status = section_data[3] >> 5; // 111xxxxx
  91. sinfo->free_CA_mode = (section_data[3] &~ 0xE0) >> 4; // xxx1xxxx
  92. sinfo->descriptor_size = ((section_data[3] &~ 0xF0) << 8) | section_data[4]; // 1111xxxx xxxxxxxx
  93. sinfo->descriptor_data = NULL;
  94. if (sinfo->descriptor_size > 0) {
  95. sinfo->descriptor_data = malloc(sinfo->descriptor_size);
  96. memcpy(sinfo->descriptor_data, &section_data[5], sinfo->descriptor_size);
  97. }
  98. sdt->streams[sdt->streams_num] = sinfo;
  99. sdt->streams_num++;
  100. section_data += 5 + sinfo->descriptor_size;
  101. section_len -= 5 + sinfo->descriptor_size;
  102. }
  103. if (!ts_crc32_section_check(sdt->section_header, "SDT"))
  104. return 0;
  105. sdt->initialized = 1;
  106. return 1;
  107. }
  108. void ts_sdt_generate(struct ts_sdt *sdt, uint8_t **ts_packets, int *num_packets) {
  109. uint8_t *secdata = ts_section_data_alloc_section();
  110. ts_section_header_generate(secdata, sdt->section_header, 0);
  111. int curpos = 8; // Compensate for the section header, frist data byte is at offset 8
  112. secdata[curpos + 0] = sdt->original_network_id >> 8; // 1111xxxx xxxxxxxx
  113. secdata[curpos + 1] = sdt->original_network_id &~ 0xff00;
  114. secdata[curpos + 2] = sdt->reserved;
  115. curpos += 3; // For the fields above
  116. int i;
  117. for(i=0;i<sdt->streams_num;i++) {
  118. struct ts_sdt_stream *stream = sdt->streams[i];
  119. secdata[curpos + 0] = stream->service_id >> 8; // xxxxxxxx xxxxxxxx
  120. secdata[curpos + 1] = stream->service_id &~ 0xff00;
  121. secdata[curpos + 2] = stream->reserved1 << 2; // xxxxxx11
  122. secdata[curpos + 2] |= stream->EIT_schedule_flag << 1; // 111111x1
  123. secdata[curpos + 2] |= stream->EIT_present_following_flag; // 1111111x
  124. secdata[curpos + 3] = stream->running_status << 5; // 111xxxxx
  125. secdata[curpos + 3] |= stream->free_CA_mode << 4; // xxx1xxxx
  126. secdata[curpos + 3] |= stream->descriptor_size >> 8; // 1111xxxx xxxxxxxx
  127. secdata[curpos + 4] = stream->descriptor_size &~ 0xff00;
  128. curpos += 5; // Compensate for the above
  129. if (stream->descriptor_size > 0) {
  130. memcpy(secdata + curpos, stream->descriptor_data, stream->descriptor_size);
  131. curpos += stream->descriptor_size;
  132. }
  133. }
  134. sdt->section_header->CRC = ts_section_data_calculate_crc(secdata, curpos);
  135. curpos += 4; // CRC
  136. ts_section_data_gen_ts_packets(&sdt->ts_header, secdata, curpos, sdt->section_header->pointer_field, ts_packets, num_packets);
  137. FREE(secdata);
  138. }
  139. void ts_sdt_check_generator(struct ts_sdt *sdt) {
  140. struct ts_sdt *sdt1 = ts_sdt_alloc();
  141. int i;
  142. for (i=0;i<sdt->section_header->num_packets;i++) {
  143. sdt1 = ts_sdt_push_packet(sdt1, sdt->section_header->packet_data + (i * TS_PACKET_SIZE));
  144. }
  145. ts_compare_data("SDT (tspacket->struct)",
  146. sdt1->section_header->packet_data,
  147. sdt->section_header->packet_data,
  148. sdt->section_header->num_packets * TS_PACKET_SIZE);
  149. ts_sdt_free(&sdt1);
  150. uint8_t *ts_packets;
  151. int num_packets;
  152. ts_sdt_generate(sdt, &ts_packets, &num_packets);
  153. if (num_packets != sdt->section_header->num_packets) {
  154. ts_LOGf("ERROR: num_packets:%d != sec->num_packets:%d\n", num_packets, sdt->section_header->num_packets);
  155. }
  156. ts_compare_data("SDT (struct->tspacket)", sdt->section_header->packet_data, ts_packets, num_packets * TS_PACKET_SIZE);
  157. free(ts_packets);
  158. }
  159. void ts_sdt_dump(struct ts_sdt *sdt) {
  160. struct ts_section_header *sec = sdt->section_header;
  161. int i;
  162. ts_section_dump(sec);
  163. ts_LOGf(" * SDT data\n");
  164. ts_LOGf(" * PID : %04x (%d)\n", sdt->ts_header.pid, sdt->ts_header.pid);
  165. ts_LOGf(" * org_net_id : %04x (%d)\n", sdt->original_network_id, sdt->original_network_id);
  166. ts_LOGf(" * reserved : %d\n", sdt->reserved);
  167. ts_LOGf(" * num_streams : %d\n", sdt->streams_num);
  168. for(i=0;i<sdt->streams_num;i++) {
  169. struct ts_sdt_stream *stream = sdt->streams[i];
  170. ts_LOGf(" * [%02d/%02d] Service_id: %04x (%d) Res1: %d EIT_schedule: %d EIT_present: %d Running_status: %d free_CA_mode: %d /es_info_size: %d/\n",
  171. i+1, sdt->streams_num,
  172. stream->service_id, stream->service_id,
  173. stream->reserved1,
  174. stream->EIT_schedule_flag,
  175. stream->EIT_present_following_flag,
  176. stream->running_status,
  177. stream->free_CA_mode,
  178. stream->descriptor_size);
  179. if (stream->descriptor_data) {
  180. ts_descriptor_dump(stream->descriptor_data, stream->descriptor_size);
  181. }
  182. }
  183. ts_sdt_check_generator(sdt);
  184. }