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  1. /*
  2. * qt-faststart.c, v0.2
  3. * by Mike Melanson (melanson@pcisys.net)
  4. * This file is placed in the public domain. Use the program however you
  5. * see fit.
  6. *
  7. * This utility rearranges a Quicktime file such that the moov atom
  8. * is in front of the data, thus facilitating network streaming.
  9. *
  10. * To compile this program, start from the base directory from which you
  11. * are building FFmpeg and type:
  12. * make tools/qt-faststart
  13. * The qt-faststart program will be built in the tools/ directory. If you
  14. * do not build the program in this manner, correct results are not
  15. * guaranteed, particularly on 64-bit platforms.
  16. * Invoke the program with:
  17. * qt-faststart <infile.mov> <outfile.mov>
  18. *
  19. * Notes: Quicktime files can come in many configurations of top-level
  20. * atoms. This utility stipulates that the very last atom in the file needs
  21. * to be a moov atom. When given such a file, this utility will rearrange
  22. * the top-level atoms by shifting the moov atom from the back of the file
  23. * to the front, and patch the chunk offsets along the way. This utility
  24. * presently only operates on uncompressed moov atoms.
  25. */
  26. #include <stdio.h>
  27. #include <stdlib.h>
  28. #include <inttypes.h>
  29. #ifdef __MINGW32__
  30. #define fseeko(x,y,z) fseeko64(x,y,z)
  31. #define ftello(x) ftello64(x)
  32. #endif
  33. #define BE_16(x) ((((uint8_t*)(x))[0] << 8) | ((uint8_t*)(x))[1])
  34. #define BE_32(x) ((((uint8_t*)(x))[0] << 24) | \
  35. (((uint8_t*)(x))[1] << 16) | \
  36. (((uint8_t*)(x))[2] << 8) | \
  37. ((uint8_t*)(x))[3])
  38. #define BE_64(x) (((uint64_t)(((uint8_t*)(x))[0]) << 56) | \
  39. ((uint64_t)(((uint8_t*)(x))[1]) << 48) | \
  40. ((uint64_t)(((uint8_t*)(x))[2]) << 40) | \
  41. ((uint64_t)(((uint8_t*)(x))[3]) << 32) | \
  42. ((uint64_t)(((uint8_t*)(x))[4]) << 24) | \
  43. ((uint64_t)(((uint8_t*)(x))[5]) << 16) | \
  44. ((uint64_t)(((uint8_t*)(x))[6]) << 8) | \
  45. ((uint64_t)((uint8_t*)(x))[7]))
  46. #define BE_FOURCC( ch0, ch1, ch2, ch3 ) \
  47. ( (uint32_t)(unsigned char)(ch3) | \
  48. ( (uint32_t)(unsigned char)(ch2) << 8 ) | \
  49. ( (uint32_t)(unsigned char)(ch1) << 16 ) | \
  50. ( (uint32_t)(unsigned char)(ch0) << 24 ) )
  51. #define QT_ATOM BE_FOURCC
  52. /* top level atoms */
  53. #define FREE_ATOM QT_ATOM('f', 'r', 'e', 'e')
  54. #define JUNK_ATOM QT_ATOM('j', 'u', 'n', 'k')
  55. #define MDAT_ATOM QT_ATOM('m', 'd', 'a', 't')
  56. #define MOOV_ATOM QT_ATOM('m', 'o', 'o', 'v')
  57. #define PNOT_ATOM QT_ATOM('p', 'n', 'o', 't')
  58. #define SKIP_ATOM QT_ATOM('s', 'k', 'i', 'p')
  59. #define WIDE_ATOM QT_ATOM('w', 'i', 'd', 'e')
  60. #define PICT_ATOM QT_ATOM('P', 'I', 'C', 'T')
  61. #define FTYP_ATOM QT_ATOM('f', 't', 'y', 'p')
  62. #define UUID_ATOM QT_ATOM('u', 'u', 'i', 'd')
  63. #define CMOV_ATOM QT_ATOM('c', 'm', 'o', 'v')
  64. #define STCO_ATOM QT_ATOM('s', 't', 'c', 'o')
  65. #define CO64_ATOM QT_ATOM('c', 'o', '6', '4')
  66. #define ATOM_PREAMBLE_SIZE 8
  67. #define COPY_BUFFER_SIZE 1024
  68. int main(int argc, char *argv[])
  69. {
  70. FILE *infile = NULL;
  71. FILE *outfile = NULL;
  72. unsigned char atom_bytes[ATOM_PREAMBLE_SIZE];
  73. uint32_t atom_type = 0;
  74. uint64_t atom_size = 0;
  75. uint64_t atom_offset = 0;
  76. uint64_t last_offset;
  77. unsigned char *moov_atom = NULL;
  78. unsigned char *ftyp_atom = NULL;
  79. uint64_t moov_atom_size;
  80. uint64_t ftyp_atom_size = 0;
  81. uint64_t i, j;
  82. uint32_t offset_count;
  83. uint64_t current_offset;
  84. uint64_t start_offset = 0;
  85. unsigned char copy_buffer[COPY_BUFFER_SIZE];
  86. int bytes_to_copy;
  87. if (argc != 3) {
  88. printf ("Usage: qt-faststart <infile.mov> <outfile.mov>\n");
  89. return 0;
  90. }
  91. infile = fopen(argv[1], "rb");
  92. if (!infile) {
  93. perror(argv[1]);
  94. goto error_out;
  95. }
  96. /* traverse through the atoms in the file to make sure that 'moov' is
  97. * at the end */
  98. while (!feof(infile)) {
  99. if (fread(atom_bytes, ATOM_PREAMBLE_SIZE, 1, infile) != 1) {
  100. break;
  101. }
  102. atom_size = (uint32_t)BE_32(&atom_bytes[0]);
  103. atom_type = BE_32(&atom_bytes[4]);
  104. /* keep ftyp atom */
  105. if (atom_type == FTYP_ATOM) {
  106. ftyp_atom_size = atom_size;
  107. free(ftyp_atom);
  108. ftyp_atom = malloc(ftyp_atom_size);
  109. if (!ftyp_atom) {
  110. printf ("could not allocate %"PRIu64" byte for ftyp atom\n",
  111. atom_size);
  112. goto error_out;
  113. }
  114. fseeko(infile, -ATOM_PREAMBLE_SIZE, SEEK_CUR);
  115. if (fread(ftyp_atom, atom_size, 1, infile) != 1) {
  116. perror(argv[1]);
  117. goto error_out;
  118. }
  119. start_offset = ftello(infile);
  120. } else {
  121. /* 64-bit special case */
  122. if (atom_size == 1) {
  123. if (fread(atom_bytes, ATOM_PREAMBLE_SIZE, 1, infile) != 1) {
  124. break;
  125. }
  126. atom_size = BE_64(&atom_bytes[0]);
  127. fseeko(infile, atom_size - ATOM_PREAMBLE_SIZE * 2, SEEK_CUR);
  128. } else {
  129. fseeko(infile, atom_size - ATOM_PREAMBLE_SIZE, SEEK_CUR);
  130. }
  131. }
  132. printf("%c%c%c%c %10"PRIu64" %"PRIu64"\n",
  133. (atom_type >> 24) & 255,
  134. (atom_type >> 16) & 255,
  135. (atom_type >> 8) & 255,
  136. (atom_type >> 0) & 255,
  137. atom_offset,
  138. atom_size);
  139. if ((atom_type != FREE_ATOM) &&
  140. (atom_type != JUNK_ATOM) &&
  141. (atom_type != MDAT_ATOM) &&
  142. (atom_type != MOOV_ATOM) &&
  143. (atom_type != PNOT_ATOM) &&
  144. (atom_type != SKIP_ATOM) &&
  145. (atom_type != WIDE_ATOM) &&
  146. (atom_type != PICT_ATOM) &&
  147. (atom_type != UUID_ATOM) &&
  148. (atom_type != FTYP_ATOM)) {
  149. printf ("encountered non-QT top-level atom (is this a Quicktime file?)\n");
  150. break;
  151. }
  152. atom_offset += atom_size;
  153. /* The atom header is 8 (or 16 bytes), if the atom size (which
  154. * includes these 8 or 16 bytes) is less than that, we won't be
  155. * able to continue scanning sensibly after this atom, so break. */
  156. if (atom_size < 8)
  157. break;
  158. }
  159. if (atom_type != MOOV_ATOM) {
  160. printf ("last atom in file was not a moov atom\n");
  161. free(ftyp_atom);
  162. fclose(infile);
  163. return 0;
  164. }
  165. /* moov atom was, in fact, the last atom in the chunk; load the whole
  166. * moov atom */
  167. fseeko(infile, -atom_size, SEEK_END);
  168. last_offset = ftello(infile);
  169. moov_atom_size = atom_size;
  170. moov_atom = malloc(moov_atom_size);
  171. if (!moov_atom) {
  172. printf ("could not allocate %"PRIu64" byte for moov atom\n",
  173. atom_size);
  174. goto error_out;
  175. }
  176. if (fread(moov_atom, atom_size, 1, infile) != 1) {
  177. perror(argv[1]);
  178. goto error_out;
  179. }
  180. /* this utility does not support compressed atoms yet, so disqualify
  181. * files with compressed QT atoms */
  182. if (BE_32(&moov_atom[12]) == CMOV_ATOM) {
  183. printf ("this utility does not support compressed moov atoms yet\n");
  184. goto error_out;
  185. }
  186. /* close; will be re-opened later */
  187. fclose(infile);
  188. infile = NULL;
  189. /* crawl through the moov chunk in search of stco or co64 atoms */
  190. for (i = 4; i < moov_atom_size - 4; i++) {
  191. atom_type = BE_32(&moov_atom[i]);
  192. if (atom_type == STCO_ATOM) {
  193. printf (" patching stco atom...\n");
  194. atom_size = BE_32(&moov_atom[i - 4]);
  195. if (i + atom_size - 4 > moov_atom_size) {
  196. printf (" bad atom size\n");
  197. goto error_out;
  198. }
  199. offset_count = BE_32(&moov_atom[i + 8]);
  200. for (j = 0; j < offset_count; j++) {
  201. current_offset = BE_32(&moov_atom[i + 12 + j * 4]);
  202. current_offset += moov_atom_size;
  203. moov_atom[i + 12 + j * 4 + 0] = (current_offset >> 24) & 0xFF;
  204. moov_atom[i + 12 + j * 4 + 1] = (current_offset >> 16) & 0xFF;
  205. moov_atom[i + 12 + j * 4 + 2] = (current_offset >> 8) & 0xFF;
  206. moov_atom[i + 12 + j * 4 + 3] = (current_offset >> 0) & 0xFF;
  207. }
  208. i += atom_size - 4;
  209. } else if (atom_type == CO64_ATOM) {
  210. printf (" patching co64 atom...\n");
  211. atom_size = BE_32(&moov_atom[i - 4]);
  212. if (i + atom_size - 4 > moov_atom_size) {
  213. printf (" bad atom size\n");
  214. goto error_out;
  215. }
  216. offset_count = BE_32(&moov_atom[i + 8]);
  217. for (j = 0; j < offset_count; j++) {
  218. current_offset = BE_64(&moov_atom[i + 12 + j * 8]);
  219. current_offset += moov_atom_size;
  220. moov_atom[i + 12 + j * 8 + 0] = (current_offset >> 56) & 0xFF;
  221. moov_atom[i + 12 + j * 8 + 1] = (current_offset >> 48) & 0xFF;
  222. moov_atom[i + 12 + j * 8 + 2] = (current_offset >> 40) & 0xFF;
  223. moov_atom[i + 12 + j * 8 + 3] = (current_offset >> 32) & 0xFF;
  224. moov_atom[i + 12 + j * 8 + 4] = (current_offset >> 24) & 0xFF;
  225. moov_atom[i + 12 + j * 8 + 5] = (current_offset >> 16) & 0xFF;
  226. moov_atom[i + 12 + j * 8 + 6] = (current_offset >> 8) & 0xFF;
  227. moov_atom[i + 12 + j * 8 + 7] = (current_offset >> 0) & 0xFF;
  228. }
  229. i += atom_size - 4;
  230. }
  231. }
  232. /* re-open the input file and open the output file */
  233. infile = fopen(argv[1], "rb");
  234. if (!infile) {
  235. perror(argv[1]);
  236. goto error_out;
  237. }
  238. if (start_offset > 0) { /* seek after ftyp atom */
  239. fseeko(infile, start_offset, SEEK_SET);
  240. last_offset -= start_offset;
  241. }
  242. outfile = fopen(argv[2], "wb");
  243. if (!outfile) {
  244. perror(argv[2]);
  245. goto error_out;
  246. }
  247. /* dump the same ftyp atom */
  248. if (ftyp_atom_size > 0) {
  249. printf (" writing ftyp atom...\n");
  250. if (fwrite(ftyp_atom, ftyp_atom_size, 1, outfile) != 1) {
  251. perror(argv[2]);
  252. goto error_out;
  253. }
  254. }
  255. /* dump the new moov atom */
  256. printf (" writing moov atom...\n");
  257. if (fwrite(moov_atom, moov_atom_size, 1, outfile) != 1) {
  258. perror(argv[2]);
  259. goto error_out;
  260. }
  261. /* copy the remainder of the infile, from offset 0 -> last_offset - 1 */
  262. printf (" copying rest of file...\n");
  263. while (last_offset) {
  264. if (last_offset > COPY_BUFFER_SIZE)
  265. bytes_to_copy = COPY_BUFFER_SIZE;
  266. else
  267. bytes_to_copy = last_offset;
  268. if (fread(copy_buffer, bytes_to_copy, 1, infile) != 1) {
  269. perror(argv[1]);
  270. goto error_out;
  271. }
  272. if (fwrite(copy_buffer, bytes_to_copy, 1, outfile) != 1) {
  273. perror(argv[2]);
  274. goto error_out;
  275. }
  276. last_offset -= bytes_to_copy;
  277. }
  278. fclose(infile);
  279. fclose(outfile);
  280. free(moov_atom);
  281. free(ftyp_atom);
  282. return 0;
  283. error_out:
  284. if (infile)
  285. fclose(infile);
  286. if (outfile)
  287. fclose(outfile);
  288. free(moov_atom);
  289. free(ftyp_atom);
  290. return 1;
  291. }