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  1. /*
  2. * Sony OpenMG (OMA) demuxer
  3. *
  4. * Copyright (c) 2008, 2013 Maxim Poliakovski
  5. * 2008 Benjamin Larsson
  6. * 2011 David Goldwich
  7. *
  8. * This file is part of FFmpeg.
  9. *
  10. * FFmpeg is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU Lesser General Public
  12. * License as published by the Free Software Foundation; either
  13. * version 2.1 of the License, or (at your option) any later version.
  14. *
  15. * FFmpeg is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * Lesser General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU Lesser General Public
  21. * License along with FFmpeg; if not, write to the Free Software
  22. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  23. */
  24. /**
  25. * @file
  26. * This is a demuxer for Sony OpenMG Music files
  27. *
  28. * Known file extensions: ".oma", "aa3"
  29. * The format of such files consists of three parts:
  30. * - "ea3" header carrying overall info and metadata. Except for starting with
  31. * "ea" instead of "ID", it's an ID3v2 header.
  32. * - "EA3" header is a Sony-specific header containing information about
  33. * the OpenMG file: codec type (usually ATRAC, can also be MP3 or WMA),
  34. * codec specific info (packet size, sample rate, channels and so on)
  35. * and DRM related info (file encryption, content id).
  36. * - Sound data organized in packets follow the EA3 header
  37. * (can be encrypted using the Sony DRM!).
  38. *
  39. */
  40. #include "libavutil/channel_layout.h"
  41. #include "avformat.h"
  42. #include "internal.h"
  43. #include "libavutil/intreadwrite.h"
  44. #include "libavutil/des.h"
  45. #include "oma.h"
  46. #include "pcm.h"
  47. #include "id3v2.h"
  48. static const uint64_t leaf_table[] = {
  49. 0xd79e8283acea4620, 0x7a9762f445afd0d8,
  50. 0x354d60a60b8c79f1, 0x584e1cde00b07aee,
  51. 0x1573cd93da7df623, 0x47f98d79620dd535
  52. };
  53. typedef struct OMAContext {
  54. uint64_t content_start;
  55. int encrypted;
  56. uint16_t k_size;
  57. uint16_t e_size;
  58. uint16_t i_size;
  59. uint16_t s_size;
  60. uint32_t rid;
  61. uint8_t r_val[24];
  62. uint8_t n_val[24];
  63. uint8_t m_val[8];
  64. uint8_t s_val[8];
  65. uint8_t sm_val[8];
  66. uint8_t e_val[8];
  67. uint8_t iv[8];
  68. struct AVDES av_des;
  69. } OMAContext;
  70. static void hex_log(AVFormatContext *s, int level,
  71. const char *name, const uint8_t *value, int len)
  72. {
  73. char buf[33];
  74. len = FFMIN(len, 16);
  75. if (av_log_get_level() < level)
  76. return;
  77. ff_data_to_hex(buf, value, len, 1);
  78. buf[len << 1] = '\0';
  79. av_log(s, level, "%s: %s\n", name, buf);
  80. }
  81. static int kset(AVFormatContext *s, const uint8_t *r_val, const uint8_t *n_val,
  82. int len)
  83. {
  84. OMAContext *oc = s->priv_data;
  85. if (!r_val && !n_val)
  86. return -1;
  87. len = FFMIN(len, 16);
  88. /* use first 64 bits in the third round again */
  89. if (r_val) {
  90. if (r_val != oc->r_val) {
  91. memset(oc->r_val, 0, 24);
  92. memcpy(oc->r_val, r_val, len);
  93. }
  94. memcpy(&oc->r_val[16], r_val, 8);
  95. }
  96. if (n_val) {
  97. if (n_val != oc->n_val) {
  98. memset(oc->n_val, 0, 24);
  99. memcpy(oc->n_val, n_val, len);
  100. }
  101. memcpy(&oc->n_val[16], n_val, 8);
  102. }
  103. return 0;
  104. }
  105. #define OMA_RPROBE_M_VAL 48 + 1
  106. static int rprobe(AVFormatContext *s, uint8_t *enc_header, unsigned size,
  107. const uint8_t *r_val)
  108. {
  109. OMAContext *oc = s->priv_data;
  110. unsigned int pos;
  111. struct AVDES av_des;
  112. if (!enc_header || !r_val ||
  113. size < OMA_ENC_HEADER_SIZE + oc->k_size + oc->e_size + oc->i_size ||
  114. size < OMA_RPROBE_M_VAL)
  115. return -1;
  116. /* m_val */
  117. av_des_init(&av_des, r_val, 192, 1);
  118. av_des_crypt(&av_des, oc->m_val, &enc_header[48], 1, NULL, 1);
  119. /* s_val */
  120. av_des_init(&av_des, oc->m_val, 64, 0);
  121. av_des_crypt(&av_des, oc->s_val, NULL, 1, NULL, 0);
  122. /* sm_val */
  123. pos = OMA_ENC_HEADER_SIZE + oc->k_size + oc->e_size;
  124. av_des_init(&av_des, oc->s_val, 64, 0);
  125. av_des_mac(&av_des, oc->sm_val, &enc_header[pos], (oc->i_size >> 3));
  126. pos += oc->i_size;
  127. return memcmp(&enc_header[pos], oc->sm_val, 8) ? -1 : 0;
  128. }
  129. static int nprobe(AVFormatContext *s, uint8_t *enc_header, unsigned size,
  130. const uint8_t *n_val)
  131. {
  132. OMAContext *oc = s->priv_data;
  133. uint64_t pos;
  134. uint32_t taglen, datalen;
  135. struct AVDES av_des;
  136. if (!enc_header || !n_val ||
  137. size < OMA_ENC_HEADER_SIZE + oc->k_size + 4)
  138. return -1;
  139. pos = OMA_ENC_HEADER_SIZE + oc->k_size;
  140. if (!memcmp(&enc_header[pos], "EKB ", 4))
  141. pos += 32;
  142. if (size < pos + 44)
  143. return -1;
  144. if (AV_RB32(&enc_header[pos]) != oc->rid)
  145. av_log(s, AV_LOG_DEBUG, "Mismatching RID\n");
  146. taglen = AV_RB32(&enc_header[pos + 32]);
  147. datalen = AV_RB32(&enc_header[pos + 36]) >> 4;
  148. pos += 44L + taglen;
  149. if (pos + (((uint64_t)datalen) << 4) > size)
  150. return -1;
  151. av_des_init(&av_des, n_val, 192, 1);
  152. while (datalen-- > 0) {
  153. av_des_crypt(&av_des, oc->r_val, &enc_header[pos], 2, NULL, 1);
  154. kset(s, oc->r_val, NULL, 16);
  155. if (!rprobe(s, enc_header, size, oc->r_val))
  156. return 0;
  157. pos += 16;
  158. }
  159. return -1;
  160. }
  161. static int decrypt_init(AVFormatContext *s, ID3v2ExtraMeta *em, uint8_t *header)
  162. {
  163. OMAContext *oc = s->priv_data;
  164. ID3v2ExtraMetaGEOB *geob = NULL;
  165. uint8_t *gdata;
  166. oc->encrypted = 1;
  167. av_log(s, AV_LOG_INFO, "File is encrypted\n");
  168. /* find GEOB metadata */
  169. while (em) {
  170. if (!strcmp(em->tag, "GEOB") &&
  171. (geob = em->data) &&
  172. (!strcmp(geob->description, "OMG_LSI") ||
  173. !strcmp(geob->description, "OMG_BKLSI"))) {
  174. break;
  175. }
  176. em = em->next;
  177. }
  178. if (!em) {
  179. av_log(s, AV_LOG_ERROR, "No encryption header found\n");
  180. return AVERROR_INVALIDDATA;
  181. }
  182. if (geob->datasize < 64) {
  183. av_log(s, AV_LOG_ERROR,
  184. "Invalid GEOB data size: %u\n", geob->datasize);
  185. return AVERROR_INVALIDDATA;
  186. }
  187. gdata = geob->data;
  188. if (AV_RB16(gdata) != 1)
  189. av_log(s, AV_LOG_WARNING, "Unknown version in encryption header\n");
  190. oc->k_size = AV_RB16(&gdata[2]);
  191. oc->e_size = AV_RB16(&gdata[4]);
  192. oc->i_size = AV_RB16(&gdata[6]);
  193. oc->s_size = AV_RB16(&gdata[8]);
  194. if (memcmp(&gdata[OMA_ENC_HEADER_SIZE], "KEYRING ", 12)) {
  195. av_log(s, AV_LOG_ERROR, "Invalid encryption header\n");
  196. return AVERROR_INVALIDDATA;
  197. }
  198. if (OMA_ENC_HEADER_SIZE + oc->k_size + oc->e_size + oc->i_size + 8 > geob->datasize ||
  199. OMA_ENC_HEADER_SIZE + 48 > geob->datasize) {
  200. av_log(s, AV_LOG_ERROR, "Too little GEOB data\n");
  201. return AVERROR_INVALIDDATA;
  202. }
  203. oc->rid = AV_RB32(&gdata[OMA_ENC_HEADER_SIZE + 28]);
  204. av_log(s, AV_LOG_DEBUG, "RID: %.8x\n", oc->rid);
  205. memcpy(oc->iv, &header[0x58], 8);
  206. hex_log(s, AV_LOG_DEBUG, "IV", oc->iv, 8);
  207. hex_log(s, AV_LOG_DEBUG, "CBC-MAC",
  208. &gdata[OMA_ENC_HEADER_SIZE + oc->k_size + oc->e_size + oc->i_size],
  209. 8);
  210. if (s->keylen > 0) {
  211. kset(s, s->key, s->key, s->keylen);
  212. }
  213. if (!memcmp(oc->r_val, (const uint8_t[8]){0}, 8) ||
  214. rprobe(s, gdata, geob->datasize, oc->r_val) < 0 &&
  215. nprobe(s, gdata, geob->datasize, oc->n_val) < 0) {
  216. int i;
  217. for (i = 0; i < FF_ARRAY_ELEMS(leaf_table); i += 2) {
  218. uint8_t buf[16];
  219. AV_WL64(buf, leaf_table[i]);
  220. AV_WL64(&buf[8], leaf_table[i + 1]);
  221. kset(s, buf, buf, 16);
  222. if (!rprobe(s, gdata, geob->datasize, oc->r_val) ||
  223. !nprobe(s, gdata, geob->datasize, oc->n_val))
  224. break;
  225. }
  226. if (i >= FF_ARRAY_ELEMS(leaf_table)) {
  227. av_log(s, AV_LOG_ERROR, "Invalid key\n");
  228. return AVERROR_INVALIDDATA;
  229. }
  230. }
  231. /* e_val */
  232. av_des_init(&oc->av_des, oc->m_val, 64, 0);
  233. av_des_crypt(&oc->av_des, oc->e_val,
  234. &gdata[OMA_ENC_HEADER_SIZE + 40], 1, NULL, 0);
  235. hex_log(s, AV_LOG_DEBUG, "EK", oc->e_val, 8);
  236. /* init e_val */
  237. av_des_init(&oc->av_des, oc->e_val, 64, 1);
  238. return 0;
  239. }
  240. static int oma_read_header(AVFormatContext *s)
  241. {
  242. int ret, framesize, jsflag, samplerate;
  243. uint32_t codec_params, channel_id;
  244. int16_t eid;
  245. uint8_t buf[EA3_HEADER_SIZE];
  246. uint8_t *edata;
  247. AVStream *st;
  248. ID3v2ExtraMeta *extra_meta = NULL;
  249. OMAContext *oc = s->priv_data;
  250. ff_id3v2_read(s, ID3v2_EA3_MAGIC, &extra_meta);
  251. ret = avio_read(s->pb, buf, EA3_HEADER_SIZE);
  252. if (ret < EA3_HEADER_SIZE)
  253. return -1;
  254. if (memcmp(buf, ((const uint8_t[]){'E', 'A', '3'}), 3) ||
  255. buf[4] != 0 || buf[5] != EA3_HEADER_SIZE) {
  256. av_log(s, AV_LOG_ERROR, "Couldn't find the EA3 header !\n");
  257. return AVERROR_INVALIDDATA;
  258. }
  259. oc->content_start = avio_tell(s->pb);
  260. /* encrypted file */
  261. eid = AV_RB16(&buf[6]);
  262. if (eid != -1 && eid != -128 && decrypt_init(s, extra_meta, buf) < 0) {
  263. ff_id3v2_free_extra_meta(&extra_meta);
  264. return -1;
  265. }
  266. ff_id3v2_free_extra_meta(&extra_meta);
  267. codec_params = AV_RB24(&buf[33]);
  268. st = avformat_new_stream(s, NULL);
  269. if (!st)
  270. return AVERROR(ENOMEM);
  271. st->start_time = 0;
  272. st->codec->codec_type = AVMEDIA_TYPE_AUDIO;
  273. st->codec->codec_tag = buf[32];
  274. st->codec->codec_id = ff_codec_get_id(ff_oma_codec_tags,
  275. st->codec->codec_tag);
  276. switch (buf[32]) {
  277. case OMA_CODECID_ATRAC3:
  278. samplerate = ff_oma_srate_tab[(codec_params >> 13) & 7] * 100;
  279. if (!samplerate) {
  280. av_log(s, AV_LOG_ERROR, "Unsupported sample rate\n");
  281. return AVERROR_INVALIDDATA;
  282. }
  283. if (samplerate != 44100)
  284. avpriv_request_sample(s, "Sample rate %d", samplerate);
  285. framesize = (codec_params & 0x3FF) * 8;
  286. /* get stereo coding mode, 1 for joint-stereo */
  287. jsflag = (codec_params >> 17) & 1;
  288. st->codec->channels = 2;
  289. st->codec->channel_layout = AV_CH_LAYOUT_STEREO;
  290. st->codec->sample_rate = samplerate;
  291. st->codec->bit_rate = st->codec->sample_rate * framesize * 8 / 1024;
  292. /* fake the ATRAC3 extradata
  293. * (wav format, makes stream copy to wav work) */
  294. if (ff_alloc_extradata(st->codec, 14))
  295. return AVERROR(ENOMEM);
  296. edata = st->codec->extradata;
  297. AV_WL16(&edata[0], 1); // always 1
  298. AV_WL32(&edata[2], samplerate); // samples rate
  299. AV_WL16(&edata[6], jsflag); // coding mode
  300. AV_WL16(&edata[8], jsflag); // coding mode
  301. AV_WL16(&edata[10], 1); // always 1
  302. // AV_WL16(&edata[12], 0); // always 0
  303. avpriv_set_pts_info(st, 64, 1, st->codec->sample_rate);
  304. break;
  305. case OMA_CODECID_ATRAC3P:
  306. channel_id = (codec_params >> 10) & 7;
  307. if (!channel_id) {
  308. av_log(s, AV_LOG_ERROR,
  309. "Invalid ATRAC-X channel id: %d\n", channel_id);
  310. return AVERROR_INVALIDDATA;
  311. }
  312. st->codec->channel_layout = ff_oma_chid_to_native_layout[channel_id - 1];
  313. st->codec->channels = ff_oma_chid_to_num_channels[channel_id - 1];
  314. framesize = ((codec_params & 0x3FF) * 8) + 8;
  315. samplerate = ff_oma_srate_tab[(codec_params >> 13) & 7] * 100;
  316. if (!samplerate) {
  317. av_log(s, AV_LOG_ERROR, "Unsupported sample rate\n");
  318. return AVERROR_INVALIDDATA;
  319. }
  320. st->codec->sample_rate = samplerate;
  321. st->codec->bit_rate = samplerate * framesize * 8 / 2048;
  322. avpriv_set_pts_info(st, 64, 1, samplerate);
  323. av_log(s, AV_LOG_ERROR, "Unsupported codec ATRAC3+!\n");
  324. break;
  325. case OMA_CODECID_MP3:
  326. st->need_parsing = AVSTREAM_PARSE_FULL_RAW;
  327. framesize = 1024;
  328. break;
  329. case OMA_CODECID_LPCM:
  330. /* PCM 44.1 kHz 16 bit stereo big-endian */
  331. st->codec->channels = 2;
  332. st->codec->channel_layout = AV_CH_LAYOUT_STEREO;
  333. st->codec->sample_rate = 44100;
  334. framesize = 1024;
  335. /* bit rate = sample rate x PCM block align (= 4) x 8 */
  336. st->codec->bit_rate = st->codec->sample_rate * 32;
  337. st->codec->bits_per_coded_sample =
  338. av_get_bits_per_sample(st->codec->codec_id);
  339. avpriv_set_pts_info(st, 64, 1, st->codec->sample_rate);
  340. break;
  341. default:
  342. av_log(s, AV_LOG_ERROR, "Unsupported codec %d!\n", buf[32]);
  343. return AVERROR(ENOSYS);
  344. }
  345. st->codec->block_align = framesize;
  346. return 0;
  347. }
  348. static int oma_read_packet(AVFormatContext *s, AVPacket *pkt)
  349. {
  350. OMAContext *oc = s->priv_data;
  351. int packet_size = s->streams[0]->codec->block_align;
  352. int ret = av_get_packet(s->pb, pkt, packet_size);
  353. if (ret < packet_size)
  354. pkt->flags |= AV_PKT_FLAG_CORRUPT;
  355. if (ret < 0)
  356. return ret;
  357. if (!ret)
  358. return AVERROR_EOF;
  359. pkt->stream_index = 0;
  360. if (oc->encrypted) {
  361. /* previous unencrypted block saved in IV for
  362. * the next packet (CBC mode) */
  363. if (ret == packet_size)
  364. av_des_crypt(&oc->av_des, pkt->data, pkt->data,
  365. (packet_size >> 3), oc->iv, 1);
  366. else
  367. memset(oc->iv, 0, 8);
  368. }
  369. return ret;
  370. }
  371. static int oma_read_probe(AVProbeData *p)
  372. {
  373. const uint8_t *buf = p->buf;
  374. unsigned tag_len = 0;
  375. if (p->buf_size >= ID3v2_HEADER_SIZE && ff_id3v2_match(buf, ID3v2_EA3_MAGIC))
  376. tag_len = ff_id3v2_tag_len(buf);
  377. /* This check cannot overflow as tag_len has at most 28 bits */
  378. if (p->buf_size < tag_len + 5)
  379. /* EA3 header comes late, might be outside of the probe buffer */
  380. return tag_len ? AVPROBE_SCORE_EXTENSION : 0;
  381. buf += tag_len;
  382. if (!memcmp(buf, "EA3", 3) && !buf[4] && buf[5] == EA3_HEADER_SIZE)
  383. return AVPROBE_SCORE_MAX;
  384. else
  385. return 0;
  386. }
  387. static int oma_read_seek(struct AVFormatContext *s,
  388. int stream_index, int64_t timestamp, int flags)
  389. {
  390. OMAContext *oc = s->priv_data;
  391. int err = ff_pcm_read_seek(s, stream_index, timestamp, flags);
  392. if (!oc->encrypted)
  393. return err;
  394. /* readjust IV for CBC */
  395. if (err || avio_tell(s->pb) < oc->content_start)
  396. goto wipe;
  397. if ((err = avio_seek(s->pb, -8, SEEK_CUR)) < 0)
  398. goto wipe;
  399. if ((err = avio_read(s->pb, oc->iv, 8)) < 8) {
  400. if (err >= 0)
  401. err = AVERROR_EOF;
  402. goto wipe;
  403. }
  404. return 0;
  405. wipe:
  406. memset(oc->iv, 0, 8);
  407. return err;
  408. }
  409. AVInputFormat ff_oma_demuxer = {
  410. .name = "oma",
  411. .long_name = NULL_IF_CONFIG_SMALL("Sony OpenMG audio"),
  412. .priv_data_size = sizeof(OMAContext),
  413. .read_probe = oma_read_probe,
  414. .read_header = oma_read_header,
  415. .read_packet = oma_read_packet,
  416. .read_seek = oma_read_seek,
  417. .flags = AVFMT_GENERIC_INDEX,
  418. .extensions = "oma,omg,aa3",
  419. .codec_tag = (const AVCodecTag* const []){ff_oma_codec_tags, 0},
  420. };