rf64.c 28 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794795796797798799800801802803804805806807808809810811812813814815816817818819820821822823824825826827828829830831832833834835836837838839840841842843844845846847848849850851852853854855856857858859860861862863864865866867868869870871872873874875876877878879880881882883884885886887888889890891892893894
  1. /*
  2. ** Copyright (C) 2008-2018 Erik de Castro Lopo <[email protected]>
  3. ** Copyright (C) 2009 Uli Franke <[email protected]>
  4. **
  5. ** This program is free software; you can redistribute it and/or modify
  6. ** it under the terms of the GNU Lesser General Public License as published by
  7. ** the Free Software Foundation; either version 2.1 of the License, or
  8. ** (at your option) any later version.
  9. **
  10. ** This program is distributed in the hope that it will be useful,
  11. ** but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. ** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. ** GNU Lesser General Public License for more details.
  14. **
  15. ** You should have received a copy of the GNU Lesser General Public License
  16. ** along with this program; if not, write to the Free Software
  17. ** Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  18. */
  19. /*
  20. ** This format documented at:
  21. ** http://www.sr.se/utveckling/tu/bwf/prog/RF_64v1_4.pdf
  22. **
  23. ** But this may be a better reference:
  24. ** http://www.ebu.ch/CMSimages/en/tec_doc_t3306-2007_tcm6-42570.pdf
  25. */
  26. #include "sfconfig.h"
  27. #include <stdio.h>
  28. #include <fcntl.h>
  29. #include <string.h>
  30. #include <ctype.h>
  31. #include "sndfile.h"
  32. #include "sfendian.h"
  33. #include "common.h"
  34. #include "wavlike.h"
  35. /*------------------------------------------------------------------------------
  36. ** Macros to handle big/little endian issues.
  37. */
  38. #define RF64_MARKER MAKE_MARKER ('R', 'F', '6', '4')
  39. #define RIFF_MARKER MAKE_MARKER ('R', 'I', 'F', 'F')
  40. #define JUNK_MARKER MAKE_MARKER ('J', 'U', 'N', 'K')
  41. #define FFFF_MARKER MAKE_MARKER (0xff, 0xff, 0xff, 0xff)
  42. #define WAVE_MARKER MAKE_MARKER ('W', 'A', 'V', 'E')
  43. #define ds64_MARKER MAKE_MARKER ('d', 's', '6', '4')
  44. #define fmt_MARKER MAKE_MARKER ('f', 'm', 't', ' ')
  45. #define fact_MARKER MAKE_MARKER ('f', 'a', 'c', 't')
  46. #define data_MARKER MAKE_MARKER ('d', 'a', 't', 'a')
  47. #define bext_MARKER MAKE_MARKER ('b', 'e', 'x', 't')
  48. #define cart_MARKER MAKE_MARKER ('c', 'a', 'r', 't')
  49. #define OggS_MARKER MAKE_MARKER ('O', 'g', 'g', 'S')
  50. #define wvpk_MARKER MAKE_MARKER ('w', 'v', 'p', 'k')
  51. #define LIST_MARKER MAKE_MARKER ('L', 'I', 'S', 'T')
  52. /*
  53. ** The file size limit in bytes below which we can, if requested, write this
  54. ** file as a RIFF/WAVE file.
  55. */
  56. #define RIFF_DOWNGRADE_BYTES ((sf_count_t) 0xffffffff)
  57. /*------------------------------------------------------------------------------
  58. ** Private static functions.
  59. */
  60. static int rf64_read_header (SF_PRIVATE *psf, int *blockalign, int *framesperblock) ;
  61. static int rf64_write_header (SF_PRIVATE *psf, int calc_length) ;
  62. static int rf64_write_tailer (SF_PRIVATE *psf) ;
  63. static int rf64_close (SF_PRIVATE *psf) ;
  64. static int rf64_command (SF_PRIVATE *psf, int command, void * UNUSED (data), int datasize) ;
  65. static int rf64_set_chunk (SF_PRIVATE *psf, const SF_CHUNK_INFO * chunk_info) ;
  66. static SF_CHUNK_ITERATOR * rf64_next_chunk_iterator (SF_PRIVATE *psf, SF_CHUNK_ITERATOR * iterator) ;
  67. static int rf64_get_chunk_size (SF_PRIVATE *psf, const SF_CHUNK_ITERATOR * iterator, SF_CHUNK_INFO * chunk_info) ;
  68. static int rf64_get_chunk_data (SF_PRIVATE *psf, const SF_CHUNK_ITERATOR * iterator, SF_CHUNK_INFO * chunk_info) ;
  69. /*------------------------------------------------------------------------------
  70. ** Public function.
  71. */
  72. int
  73. rf64_open (SF_PRIVATE *psf)
  74. { WAVLIKE_PRIVATE *wpriv ;
  75. int subformat, error = 0 ;
  76. int blockalign, framesperblock ;
  77. if ((wpriv = calloc (1, sizeof (WAVLIKE_PRIVATE))) == NULL)
  78. return SFE_MALLOC_FAILED ;
  79. psf->container_data = wpriv ;
  80. wpriv->wavex_ambisonic = SF_AMBISONIC_NONE ;
  81. /* All RF64 files are little endian. */
  82. psf->endian = SF_ENDIAN_LITTLE ;
  83. psf->strings.flags = SF_STR_ALLOW_START | SF_STR_ALLOW_END ;
  84. if (psf->file.mode == SFM_READ || (psf->file.mode == SFM_RDWR && psf->filelength > 0))
  85. { if ((error = rf64_read_header (psf, &blockalign, &framesperblock)) != 0)
  86. return error ;
  87. psf->next_chunk_iterator = rf64_next_chunk_iterator ;
  88. psf->get_chunk_size = rf64_get_chunk_size ;
  89. psf->get_chunk_data = rf64_get_chunk_data ;
  90. } ;
  91. if ((psf->sf.format & SF_FORMAT_TYPEMASK) != SF_FORMAT_RF64)
  92. return SFE_BAD_OPEN_FORMAT ;
  93. subformat = psf->sf.format & SF_FORMAT_SUBMASK ;
  94. if (psf->file.mode == SFM_WRITE || psf->file.mode == SFM_RDWR)
  95. { if (psf->is_pipe)
  96. return SFE_NO_PIPE_WRITE ;
  97. psf->blockwidth = psf->bytewidth * psf->sf.channels ;
  98. if ((error = rf64_write_header (psf, SF_FALSE)))
  99. return error ;
  100. psf->write_header = rf64_write_header ;
  101. psf->set_chunk = rf64_set_chunk ;
  102. } ;
  103. psf->container_close = rf64_close ;
  104. psf->command = rf64_command ;
  105. switch (subformat)
  106. { case SF_FORMAT_PCM_U8 :
  107. case SF_FORMAT_PCM_16 :
  108. case SF_FORMAT_PCM_24 :
  109. case SF_FORMAT_PCM_32 :
  110. error = pcm_init (psf) ;
  111. break ;
  112. case SF_FORMAT_ULAW :
  113. error = ulaw_init (psf) ;
  114. break ;
  115. case SF_FORMAT_ALAW :
  116. error = alaw_init (psf) ;
  117. break ;
  118. /* Lite remove start */
  119. case SF_FORMAT_FLOAT :
  120. error = float32_init (psf) ;
  121. break ;
  122. case SF_FORMAT_DOUBLE :
  123. error = double64_init (psf) ;
  124. break ;
  125. /* Lite remove end */
  126. default : return SFE_UNIMPLEMENTED ;
  127. } ;
  128. return error ;
  129. } /* rf64_open */
  130. /*------------------------------------------------------------------------------
  131. */
  132. enum
  133. { HAVE_ds64 = 0x01,
  134. HAVE_fmt = 0x02,
  135. HAVE_bext = 0x04,
  136. HAVE_data = 0x08,
  137. HAVE_cart = 0x10,
  138. HAVE_PEAK = 0x20,
  139. HAVE_other = 0x40
  140. } ;
  141. #define HAVE_CHUNK(CHUNK) ((parsestage & CHUNK) != 0)
  142. static int
  143. rf64_read_header (SF_PRIVATE *psf, int *blockalign, int *framesperblock)
  144. { WAVLIKE_PRIVATE *wpriv ;
  145. WAV_FMT *wav_fmt ;
  146. sf_count_t riff_size = 0, frame_count = 0, ds64_datalength = 0 ;
  147. uint32_t marks [2], marker, chunk_size, parsestage = 0 ;
  148. int error, done = 0, format = 0 ;
  149. if ((wpriv = psf->container_data) == NULL)
  150. return SFE_INTERNAL ;
  151. wav_fmt = &wpriv->wav_fmt ;
  152. /* Set position to start of file to begin reading header. */
  153. psf_binheader_readf (psf, "pmmm", 0, &marker, marks, marks + 1) ;
  154. if (marker != RF64_MARKER || marks [1] != WAVE_MARKER)
  155. return SFE_RF64_NOT_RF64 ;
  156. if (marks [0] == FFFF_MARKER)
  157. psf_log_printf (psf, "%M\n %M\n", RF64_MARKER, WAVE_MARKER) ;
  158. else
  159. psf_log_printf (psf, "%M : 0x%x (should be 0xFFFFFFFF)\n %M\n", RF64_MARKER, WAVE_MARKER) ;
  160. while (!done)
  161. {
  162. marker = chunk_size = 0 ;
  163. psf_binheader_readf (psf, "em4", &marker, &chunk_size) ;
  164. if (marker == 0)
  165. { sf_count_t pos = psf_ftell (psf) ;
  166. psf_log_printf (psf, "Have 0 marker at position %D (0x%x).\n", pos, pos) ;
  167. break ;
  168. } ;
  169. psf_store_read_chunk_u32 (&psf->rchunks, marker, psf_ftell (psf), chunk_size) ;
  170. switch (marker)
  171. { case ds64_MARKER :
  172. if (parsestage & HAVE_ds64)
  173. { psf_log_printf (psf, "*** Second 'ds64' chunk?\n") ;
  174. break ;
  175. } ;
  176. { unsigned int table_len, bytesread ;
  177. /* Read ds64 sizes (3 8-byte words). */
  178. bytesread = psf_binheader_readf (psf, "888", &riff_size, &ds64_datalength, &frame_count) ;
  179. /* Read table length. */
  180. bytesread += psf_binheader_readf (psf, "4", &table_len) ;
  181. /* Skip table for now. (this was "table_len + 4", why?) */
  182. bytesread += psf_binheader_readf (psf, "j", table_len) ;
  183. if (chunk_size == bytesread)
  184. psf_log_printf (psf, "%M : %u\n", marker, chunk_size) ;
  185. else if (chunk_size >= bytesread + 4)
  186. { unsigned int next ;
  187. psf_binheader_readf (psf, "m", &next) ;
  188. if (next == fmt_MARKER)
  189. { psf_log_printf (psf, "%M : %u (should be %u)\n", marker, chunk_size, bytesread) ;
  190. psf_binheader_readf (psf, "j", -4) ;
  191. }
  192. else
  193. { psf_log_printf (psf, "%M : %u\n", marker, chunk_size) ;
  194. psf_binheader_readf (psf, "j", chunk_size - bytesread - 4) ;
  195. } ;
  196. } ;
  197. if (psf->filelength != riff_size + 8)
  198. psf_log_printf (psf, " Riff size : %D (should be %D)\n", riff_size, psf->filelength - 8) ;
  199. else
  200. psf_log_printf (psf, " Riff size : %D\n", riff_size) ;
  201. psf_log_printf (psf, " Data size : %D\n", ds64_datalength) ;
  202. psf_log_printf (psf, " Frames : %D\n", frame_count) ;
  203. psf_log_printf (psf, " Table length : %u\n", table_len) ;
  204. } ;
  205. parsestage |= HAVE_ds64 ;
  206. break ;
  207. case fmt_MARKER:
  208. psf_log_printf (psf, "%M : %u\n", marker, chunk_size) ;
  209. if ((error = wavlike_read_fmt_chunk (psf, chunk_size)) != 0)
  210. return error ;
  211. format = wav_fmt->format ;
  212. parsestage |= HAVE_fmt ;
  213. break ;
  214. case bext_MARKER :
  215. if ((error = wavlike_read_bext_chunk (psf, chunk_size)) != 0)
  216. return error ;
  217. parsestage |= HAVE_bext ;
  218. break ;
  219. case cart_MARKER :
  220. if ((error = wavlike_read_cart_chunk (psf, chunk_size)) != 0)
  221. return error ;
  222. parsestage |= HAVE_cart ;
  223. break ;
  224. case INFO_MARKER :
  225. case LIST_MARKER :
  226. if ((error = wavlike_subchunk_parse (psf, marker, chunk_size)) != 0)
  227. return error ;
  228. parsestage |= HAVE_other ;
  229. break ;
  230. case PEAK_MARKER :
  231. if ((parsestage & (HAVE_ds64 | HAVE_fmt)) != (HAVE_ds64 | HAVE_fmt))
  232. return SFE_RF64_PEAK_B4_FMT ;
  233. parsestage |= HAVE_PEAK ;
  234. psf_log_printf (psf, "%M : %u\n", marker, chunk_size) ;
  235. if ((error = wavlike_read_peak_chunk (psf, chunk_size)) != 0)
  236. return error ;
  237. psf->peak_info->peak_loc = ((parsestage & HAVE_data) == 0) ? SF_PEAK_START : SF_PEAK_END ;
  238. break ;
  239. case data_MARKER :
  240. /* see wav for more sophisticated parsing -> implement state machine with parsestage */
  241. if (HAVE_CHUNK (HAVE_ds64))
  242. { if (chunk_size == 0xffffffff)
  243. psf_log_printf (psf, "%M : 0x%x\n", marker, chunk_size) ;
  244. else
  245. psf_log_printf (psf, "%M : 0x%x (should be 0xffffffff\n", marker, chunk_size) ;
  246. psf->datalength = ds64_datalength ;
  247. }
  248. else
  249. { if (chunk_size == 0xffffffff)
  250. { psf_log_printf (psf, "%M : 0x%x\n", marker, chunk_size) ;
  251. psf_log_printf (psf, " *** Data length not specified no 'ds64' chunk.\n") ;
  252. }
  253. else
  254. { psf_log_printf (psf, "%M : 0x%x\n**** Weird, RF64 file without a 'ds64' chunk and no valid 'data' size.\n", marker, chunk_size) ;
  255. psf->datalength = chunk_size ;
  256. } ;
  257. } ;
  258. psf->dataoffset = psf_ftell (psf) ;
  259. if (psf->dataoffset > 0)
  260. { if (chunk_size == 0 && riff_size == 8 && psf->filelength > 44)
  261. { psf_log_printf (psf, " *** Looks like a WAV file which wasn't closed properly. Fixing it.\n") ;
  262. psf->datalength = psf->filelength - psf->dataoffset ;
  263. } ;
  264. /* Only set dataend if there really is data at the end. */
  265. if (psf->datalength + psf->dataoffset < psf->filelength)
  266. psf->dataend = psf->datalength + psf->dataoffset ;
  267. if (!psf->sf.seekable || psf->dataoffset < 0)
  268. break ;
  269. /* Seek past data and continue reading header. */
  270. psf_fseek (psf, psf->datalength, SEEK_CUR) ;
  271. if (psf_ftell (psf) != psf->datalength + psf->dataoffset)
  272. psf_log_printf (psf, " *** psf_fseek past end error ***\n") ;
  273. } ;
  274. break ;
  275. case JUNK_MARKER :
  276. case PAD_MARKER :
  277. psf_log_printf (psf, "%M : %d\n", marker, chunk_size) ;
  278. psf_binheader_readf (psf, "j", chunk_size) ;
  279. break ;
  280. default :
  281. if (chunk_size >= 0xffff0000)
  282. { psf_log_printf (psf, "*** Unknown chunk marker (%X) at position %D with length %u. Exiting parser.\n", marker, psf_ftell (psf) - 8, chunk_size) ;
  283. done = SF_TRUE ;
  284. break ;
  285. } ;
  286. if (isprint ((marker >> 24) & 0xFF) && isprint ((marker >> 16) & 0xFF)
  287. && isprint ((marker >> 8) & 0xFF) && isprint (marker & 0xFF))
  288. { psf_log_printf (psf, "*** %M : %d (unknown marker)\n", marker, chunk_size) ;
  289. psf_binheader_readf (psf, "j", chunk_size) ;
  290. break ;
  291. } ;
  292. if (psf_ftell (psf) & 0x03)
  293. { psf_log_printf (psf, " Unknown chunk marker at position 0x%x. Resynching.\n", chunk_size - 4) ;
  294. psf_binheader_readf (psf, "j", -3) ;
  295. break ;
  296. } ;
  297. psf_log_printf (psf, "*** Unknown chunk marker (0x%X) at position 0x%X. Exiting parser.\n", marker, psf_ftell (psf) - 4) ;
  298. done = SF_TRUE ;
  299. break ;
  300. } ; /* switch (marker) */
  301. /* The 'data' chunk, a chunk size of 0xffffffff means that the 'data' chunk size
  302. ** is actually given by the ds64_datalength field.
  303. */
  304. if (marker != data_MARKER && chunk_size >= psf->filelength)
  305. { psf_log_printf (psf, "*** Chunk size %u > file length %D. Exiting parser.\n", chunk_size, psf->filelength) ;
  306. break ;
  307. } ;
  308. if (psf_ftell (psf) >= psf->filelength - SIGNED_SIZEOF (marker))
  309. { psf_log_printf (psf, "End\n") ;
  310. break ;
  311. } ;
  312. } ;
  313. if (psf->dataoffset <= 0)
  314. return SFE_RF64_NO_DATA ;
  315. if (psf->sf.channels < 1)
  316. return SFE_CHANNEL_COUNT_ZERO ;
  317. if (psf->sf.channels > SF_MAX_CHANNELS)
  318. return SFE_CHANNEL_COUNT ;
  319. /* WAVs can be little or big endian */
  320. psf->endian = psf->rwf_endian ;
  321. psf_fseek (psf, psf->dataoffset, SEEK_SET) ;
  322. if (psf->is_pipe == 0)
  323. { /*
  324. ** Check for 'wvpk' at the start of the DATA section. Not able to
  325. ** handle this.
  326. */
  327. psf_binheader_readf (psf, "4", &marker) ;
  328. if (marker == wvpk_MARKER || marker == OggS_MARKER)
  329. return SFE_WAV_WVPK_DATA ;
  330. } ;
  331. /* Seek to start of DATA section. */
  332. psf_fseek (psf, psf->dataoffset, SEEK_SET) ;
  333. if (psf->blockwidth)
  334. { if (psf->filelength - psf->dataoffset < psf->datalength)
  335. psf->sf.frames = (psf->filelength - psf->dataoffset) / psf->blockwidth ;
  336. else
  337. psf->sf.frames = psf->datalength / psf->blockwidth ;
  338. } ;
  339. if (frame_count != psf->sf.frames)
  340. psf_log_printf (psf, "*** Calculated frame count %d does not match value from 'ds64' chunk of %d.\n", psf->sf.frames, frame_count) ;
  341. switch (format)
  342. {
  343. case WAVE_FORMAT_EXTENSIBLE :
  344. /* with WAVE_FORMAT_EXTENSIBLE the psf->sf.format field is already set. We just have to set the major to rf64 */
  345. psf->sf.format = (psf->sf.format & ~SF_FORMAT_TYPEMASK) | SF_FORMAT_RF64 ;
  346. if (psf->sf.format == (SF_FORMAT_WAVEX | SF_FORMAT_MS_ADPCM))
  347. { *blockalign = wav_fmt->msadpcm.blockalign ;
  348. *framesperblock = wav_fmt->msadpcm.samplesperblock ;
  349. } ;
  350. break ;
  351. case WAVE_FORMAT_PCM :
  352. psf->sf.format = SF_FORMAT_RF64 | u_bitwidth_to_subformat (psf->bytewidth * 8) ;
  353. break ;
  354. case WAVE_FORMAT_MULAW :
  355. case IBM_FORMAT_MULAW :
  356. psf->sf.format = (SF_FORMAT_RF64 | SF_FORMAT_ULAW) ;
  357. break ;
  358. case WAVE_FORMAT_ALAW :
  359. case IBM_FORMAT_ALAW :
  360. psf->sf.format = (SF_FORMAT_RF64 | SF_FORMAT_ALAW) ;
  361. break ;
  362. case WAVE_FORMAT_MS_ADPCM :
  363. psf->sf.format = (SF_FORMAT_RF64 | SF_FORMAT_MS_ADPCM) ;
  364. *blockalign = wav_fmt->msadpcm.blockalign ;
  365. *framesperblock = wav_fmt->msadpcm.samplesperblock ;
  366. break ;
  367. case WAVE_FORMAT_IMA_ADPCM :
  368. psf->sf.format = (SF_FORMAT_RF64 | SF_FORMAT_IMA_ADPCM) ;
  369. *blockalign = wav_fmt->ima.blockalign ;
  370. *framesperblock = wav_fmt->ima.samplesperblock ;
  371. break ;
  372. case WAVE_FORMAT_GSM610 :
  373. psf->sf.format = (SF_FORMAT_RF64 | SF_FORMAT_GSM610) ;
  374. break ;
  375. case WAVE_FORMAT_IEEE_FLOAT :
  376. psf->sf.format = SF_FORMAT_RF64 ;
  377. psf->sf.format |= (psf->bytewidth == 8) ? SF_FORMAT_DOUBLE : SF_FORMAT_FLOAT ;
  378. break ;
  379. case WAVE_FORMAT_G721_ADPCM :
  380. psf->sf.format = SF_FORMAT_RF64 | SF_FORMAT_G721_32 ;
  381. break ;
  382. default : return SFE_UNIMPLEMENTED ;
  383. } ;
  384. if (wpriv->fmt_is_broken)
  385. wavlike_analyze (psf) ;
  386. /* Only set the format endian-ness if its non-standard big-endian. */
  387. if (psf->endian == SF_ENDIAN_BIG)
  388. psf->sf.format |= SF_ENDIAN_BIG ;
  389. return 0 ;
  390. } /* rf64_read_header */
  391. /* known WAVEFORMATEXTENSIBLE GUIDS */
  392. static const EXT_SUBFORMAT MSGUID_SUBTYPE_PCM =
  393. { 0x00000001, 0x0000, 0x0010, { 0x80, 0x00, 0x00, 0xaa, 0x00, 0x38, 0x9b, 0x71 }
  394. } ;
  395. #if 0
  396. static const EXT_SUBFORMAT MSGUID_SUBTYPE_MS_ADPCM =
  397. { 0x00000002, 0x0000, 0x0010, { 0x80, 0x00, 0x00, 0xaa, 0x00, 0x38, 0x9b, 0x71 }
  398. } ;
  399. #endif
  400. static const EXT_SUBFORMAT MSGUID_SUBTYPE_IEEE_FLOAT =
  401. { 0x00000003, 0x0000, 0x0010, { 0x80, 0x00, 0x00, 0xaa, 0x00, 0x38, 0x9b, 0x71 }
  402. } ;
  403. static const EXT_SUBFORMAT MSGUID_SUBTYPE_ALAW =
  404. { 0x00000006, 0x0000, 0x0010, { 0x80, 0x00, 0x00, 0xaa, 0x00, 0x38, 0x9b, 0x71 }
  405. } ;
  406. static const EXT_SUBFORMAT MSGUID_SUBTYPE_MULAW =
  407. { 0x00000007, 0x0000, 0x0010, { 0x80, 0x00, 0x00, 0xaa, 0x00, 0x38, 0x9b, 0x71 }
  408. } ;
  409. /*
  410. ** the next two are from
  411. ** http://dream.cs.bath.ac.uk/researchdev/wave-ex/bformat.html
  412. */
  413. static const EXT_SUBFORMAT MSGUID_SUBTYPE_AMBISONIC_B_FORMAT_PCM =
  414. { 0x00000001, 0x0721, 0x11d3, { 0x86, 0x44, 0xC8, 0xC1, 0xCA, 0x00, 0x00, 0x00 }
  415. } ;
  416. static const EXT_SUBFORMAT MSGUID_SUBTYPE_AMBISONIC_B_FORMAT_IEEE_FLOAT =
  417. { 0x00000003, 0x0721, 0x11d3, { 0x86, 0x44, 0xC8, 0xC1, 0xCA, 0x00, 0x00, 0x00 }
  418. } ;
  419. static int
  420. rf64_write_fmt_chunk (SF_PRIVATE *psf)
  421. { WAVLIKE_PRIVATE *wpriv ;
  422. int subformat, fmt_size ;
  423. if ((wpriv = psf->container_data) == NULL)
  424. return SFE_INTERNAL ;
  425. subformat = psf->sf.format & SF_FORMAT_SUBMASK ;
  426. /* initial section (same for all, it appears) */
  427. switch (subformat)
  428. { case SF_FORMAT_PCM_U8 :
  429. case SF_FORMAT_PCM_16 :
  430. case SF_FORMAT_PCM_24 :
  431. case SF_FORMAT_PCM_32 :
  432. case SF_FORMAT_FLOAT :
  433. case SF_FORMAT_DOUBLE :
  434. case SF_FORMAT_ULAW :
  435. case SF_FORMAT_ALAW :
  436. fmt_size = 2 + 2 + 4 + 4 + 2 + 2 + 2 + 2 + 4 + 4 + 2 + 2 + 8 ;
  437. /* fmt : format, channels, samplerate */
  438. psf_binheader_writef (psf, "4224", BHW4 (fmt_size), BHW2 (WAVE_FORMAT_EXTENSIBLE), BHW2 (psf->sf.channels), BHW4 (psf->sf.samplerate)) ;
  439. /* fmt : bytespersec */
  440. psf_binheader_writef (psf, "4", BHW4 (psf->sf.samplerate * psf->bytewidth * psf->sf.channels)) ;
  441. /* fmt : blockalign, bitwidth */
  442. psf_binheader_writef (psf, "22", BHW2 (psf->bytewidth * psf->sf.channels), BHW2 (psf->bytewidth * 8)) ;
  443. /* cbSize 22 is sizeof (WAVEFORMATEXTENSIBLE) - sizeof (WAVEFORMATEX) */
  444. psf_binheader_writef (psf, "2", BHW2 (22)) ;
  445. /* wValidBitsPerSample, for our use same as bitwidth as we use it fully */
  446. psf_binheader_writef (psf, "2", BHW2 (psf->bytewidth * 8)) ;
  447. /* For an Ambisonic file set the channel mask to zero.
  448. ** Otherwise use a default based on the channel count.
  449. */
  450. if (wpriv->wavex_ambisonic != SF_AMBISONIC_NONE)
  451. psf_binheader_writef (psf, "4", BHW4 (0)) ;
  452. else if (wpriv->wavex_channelmask != 0)
  453. psf_binheader_writef (psf, "4", BHW4 (wpriv->wavex_channelmask)) ;
  454. else
  455. { /*
  456. ** Ok some liberty is taken here to use the most commonly used channel masks
  457. ** instead of "no mapping". If you really want to use "no mapping" for 8 channels and less
  458. ** please don't use wavex. (otherwise we'll have to create a new SF_COMMAND)
  459. */
  460. switch (psf->sf.channels)
  461. { case 1 : /* center channel mono */
  462. psf_binheader_writef (psf, "4", BHW4 (0x4)) ;
  463. break ;
  464. case 2 : /* front left and right */
  465. psf_binheader_writef (psf, "4", BHW4 (0x1 | 0x2)) ;
  466. break ;
  467. case 4 : /* Quad */
  468. psf_binheader_writef (psf, "4", BHW4 (0x1 | 0x2 | 0x10 | 0x20)) ;
  469. break ;
  470. case 6 : /* 5.1 */
  471. psf_binheader_writef (psf, "4", BHW4 (0x1 | 0x2 | 0x4 | 0x8 | 0x10 | 0x20)) ;
  472. break ;
  473. case 8 : /* 7.1 */
  474. psf_binheader_writef (psf, "4", BHW4 (0x1 | 0x2 | 0x4 | 0x8 | 0x10 | 0x20 | 0x40 | 0x80)) ;
  475. break ;
  476. default : /* 0 when in doubt , use direct out, ie NO mapping*/
  477. psf_binheader_writef (psf, "4", BHW4 (0x0)) ;
  478. break ;
  479. } ;
  480. } ;
  481. break ;
  482. case SF_FORMAT_MS_ADPCM : /* Todo, GUID exists might have different header as per wav_write_header */
  483. default :
  484. return SFE_UNIMPLEMENTED ;
  485. } ;
  486. /* GUID section, different for each */
  487. switch (subformat)
  488. { case SF_FORMAT_PCM_U8 :
  489. case SF_FORMAT_PCM_16 :
  490. case SF_FORMAT_PCM_24 :
  491. case SF_FORMAT_PCM_32 :
  492. wavlike_write_guid (psf, wpriv->wavex_ambisonic == SF_AMBISONIC_NONE ?
  493. &MSGUID_SUBTYPE_PCM : &MSGUID_SUBTYPE_AMBISONIC_B_FORMAT_PCM) ;
  494. break ;
  495. case SF_FORMAT_FLOAT :
  496. case SF_FORMAT_DOUBLE :
  497. wavlike_write_guid (psf, wpriv->wavex_ambisonic == SF_AMBISONIC_NONE ?
  498. &MSGUID_SUBTYPE_IEEE_FLOAT : &MSGUID_SUBTYPE_AMBISONIC_B_FORMAT_IEEE_FLOAT) ;
  499. break ;
  500. case SF_FORMAT_ULAW :
  501. wavlike_write_guid (psf, &MSGUID_SUBTYPE_MULAW) ;
  502. break ;
  503. case SF_FORMAT_ALAW :
  504. wavlike_write_guid (psf, &MSGUID_SUBTYPE_ALAW) ;
  505. break ;
  506. default : return SFE_UNIMPLEMENTED ;
  507. } ;
  508. return 0 ;
  509. } /* rf64_write_fmt_chunk */
  510. static int
  511. rf64_write_header (SF_PRIVATE *psf, int calc_length)
  512. { sf_count_t current, pad_size ;
  513. int error = 0, has_data = SF_FALSE, add_fact_chunk = 0 ;
  514. WAVLIKE_PRIVATE *wpriv ;
  515. if ((wpriv = psf->container_data) == NULL)
  516. return SFE_INTERNAL ;
  517. current = psf_ftell (psf) ;
  518. if (psf->dataoffset > 0 && current > psf->dataoffset)
  519. has_data = SF_TRUE ;
  520. if (calc_length)
  521. { psf->filelength = psf_get_filelen (psf) ;
  522. psf->datalength = psf->filelength - psf->dataoffset ;
  523. if (psf->dataend)
  524. psf->datalength -= psf->filelength - psf->dataend ;
  525. if (psf->bytewidth > 0)
  526. psf->sf.frames = psf->datalength / (psf->bytewidth * psf->sf.channels) ;
  527. } ;
  528. /* Reset the current header length to zero. */
  529. psf->header.ptr [0] = 0 ;
  530. psf->header.indx = 0 ;
  531. psf_fseek (psf, 0, SEEK_SET) ;
  532. if (wpriv->rf64_downgrade && psf->filelength < RIFF_DOWNGRADE_BYTES)
  533. { psf_binheader_writef (psf, "etm8m", BHWm (RIFF_MARKER), BHW8 ((psf->filelength < 8) ? 8 : psf->filelength - 8), BHWm (WAVE_MARKER)) ;
  534. psf_binheader_writef (psf, "m4z", BHWm (JUNK_MARKER), BHW4 (24), BHWz (24)) ;
  535. add_fact_chunk = 1 ;
  536. }
  537. else
  538. { psf_binheader_writef (psf, "em4m", BHWm (RF64_MARKER), BHW4 (0xffffffff), BHWm (WAVE_MARKER)) ;
  539. /* Currently no table. */
  540. psf_binheader_writef (psf, "m48884", BHWm (ds64_MARKER), BHW4 (28), BHW8 (psf->filelength - 8), BHW8 (psf->datalength), BHW8 (psf->sf.frames), BHW4 (0)) ;
  541. } ;
  542. /* WAVE and 'fmt ' markers. */
  543. psf_binheader_writef (psf, "m", BHWm (fmt_MARKER)) ;
  544. /* Write the 'fmt ' chunk. */
  545. switch (psf->sf.format & SF_FORMAT_TYPEMASK)
  546. { case SF_FORMAT_WAV :
  547. psf_log_printf (psf, "ooops SF_FORMAT_WAV\n") ;
  548. return SFE_UNIMPLEMENTED ;
  549. break ;
  550. case SF_FORMAT_WAVEX :
  551. case SF_FORMAT_RF64 :
  552. if ((error = rf64_write_fmt_chunk (psf)) != 0)
  553. return error ;
  554. if (add_fact_chunk)
  555. psf_binheader_writef (psf, "tm48", BHWm (fact_MARKER), BHW4 (4), BHW8 (psf->sf.frames)) ;
  556. break ;
  557. default :
  558. return SFE_UNIMPLEMENTED ;
  559. } ;
  560. if (psf->broadcast_16k != NULL)
  561. wavlike_write_bext_chunk (psf) ;
  562. if (psf->cart_16k != NULL)
  563. wavlike_write_cart_chunk (psf) ;
  564. /* The LIST/INFO chunk. */
  565. if (psf->strings.flags & SF_STR_LOCATE_START)
  566. wavlike_write_strings (psf, SF_STR_LOCATE_START) ;
  567. if (psf->peak_info != NULL && psf->peak_info->peak_loc == SF_PEAK_START)
  568. wavlike_write_peak_chunk (psf) ;
  569. /* Write custom headers. */
  570. if (psf->wchunks.used > 0)
  571. wavlike_write_custom_chunks (psf) ;
  572. #if 0
  573. if (psf->instrument != NULL)
  574. { int tmp ;
  575. double dtune = (double) (0x40000000) / 25.0 ;
  576. psf_binheader_writef (psf, "m4", BHWm (smpl_MARKER), BHW4 (9 * 4 + psf->instrument->loop_count * 6 * 4)) ;
  577. psf_binheader_writef (psf, "44", BHW4 (0), BHW4 (0)) ; /* Manufacturer zero is everyone */
  578. tmp = (int) (1.0e9 / psf->sf.samplerate) ; /* Sample period in nano seconds */
  579. psf_binheader_writef (psf, "44", BHW4 (tmp), BHW4 (psf->instrument->basenote)) ;
  580. tmp = (unsigned int) (psf->instrument->detune * dtune + 0.5) ;
  581. psf_binheader_writef (psf, "4", BHW4 (tmp)) ;
  582. psf_binheader_writef (psf, "44", BHW4 (0), BHW4 (0)) ; /* SMTPE format */
  583. psf_binheader_writef (psf, "44", BHW4 (psf->instrument->loop_count), BHW4 (0)) ;
  584. for (tmp = 0 ; tmp < psf->instrument->loop_count ; tmp++)
  585. { int type ;
  586. type = psf->instrument->loops [tmp].mode ;
  587. type = (type == SF_LOOP_FORWARD ? 0 : type == SF_LOOP_BACKWARD ? 2 : type == SF_LOOP_ALTERNATING ? 1 : 32) ;
  588. psf_binheader_writef (psf, "44", BHW4 (tmp), BHW4 (type)) ;
  589. psf_binheader_writef (psf, "44", BHW4 (psf->instrument->loops [tmp].start), BHW4 (psf->instrument->loops [tmp].end)) ;
  590. psf_binheader_writef (psf, "44", BHW4 (0), BHW4 (psf->instrument->loops [tmp].count)) ;
  591. } ;
  592. } ;
  593. #endif
  594. /* Padding may be needed if string data sizes change. */
  595. pad_size = psf->dataoffset - 16 - psf->header.indx ;
  596. if (pad_size >= 0)
  597. psf_binheader_writef (psf, "m4z", BHWm (PAD_MARKER), BHW4 ((unsigned int) pad_size), BHWz (pad_size)) ;
  598. if (wpriv->rf64_downgrade && (psf->filelength < RIFF_DOWNGRADE_BYTES))
  599. psf_binheader_writef (psf, "tm8", BHWm (data_MARKER), BHW8 (psf->datalength)) ;
  600. else
  601. psf_binheader_writef (psf, "m4", BHWm (data_MARKER), BHW4 (0xffffffff)) ;
  602. psf_fwrite (psf->header.ptr, psf->header.indx, 1, psf) ;
  603. if (psf->error)
  604. return psf->error ;
  605. if (has_data && psf->dataoffset != psf->header.indx)
  606. { psf_log_printf (psf, "Oooops : has_data && psf->dataoffset != psf->header.indx\n") ;
  607. return psf->error = SFE_INTERNAL ;
  608. } ;
  609. psf->dataoffset = psf->header.indx ;
  610. if (!has_data)
  611. psf_fseek (psf, psf->dataoffset, SEEK_SET) ;
  612. else if (current > 0)
  613. psf_fseek (psf, current, SEEK_SET) ;
  614. return psf->error ;
  615. } /* rf64_write_header */
  616. static int
  617. rf64_write_tailer (SF_PRIVATE *psf)
  618. {
  619. /* Reset the current header buffer length to zero. */
  620. psf->header.ptr [0] = 0 ;
  621. psf->header.indx = 0 ;
  622. if (psf->bytewidth > 0 && psf->sf.seekable == SF_TRUE)
  623. { psf->datalength = psf->sf.frames * psf->bytewidth * psf->sf.channels ;
  624. psf->dataend = psf->dataoffset + psf->datalength ;
  625. } ;
  626. if (psf->dataend > 0)
  627. psf_fseek (psf, psf->dataend, SEEK_SET) ;
  628. else
  629. psf->dataend = psf_fseek (psf, 0, SEEK_END) ;
  630. if (psf->dataend & 1)
  631. psf_binheader_writef (psf, "z", BHWz (1)) ;
  632. if (psf->strings.flags & SF_STR_LOCATE_END)
  633. wavlike_write_strings (psf, SF_STR_LOCATE_END) ;
  634. /* Write the tailer. */
  635. if (psf->header.indx > 0)
  636. psf_fwrite (psf->header.ptr, psf->header.indx, 1, psf) ;
  637. return 0 ;
  638. } /* rf64_write_tailer */
  639. static int
  640. rf64_close (SF_PRIVATE *psf)
  641. {
  642. if (psf->file.mode == SFM_WRITE || psf->file.mode == SFM_RDWR)
  643. { rf64_write_tailer (psf) ;
  644. rf64_write_header (psf, SF_TRUE) ;
  645. } ;
  646. return 0 ;
  647. } /* rf64_close */
  648. static int
  649. rf64_command (SF_PRIVATE *psf, int command, void * UNUSED (data), int datasize)
  650. { WAVLIKE_PRIVATE *wpriv ;
  651. if ((wpriv = psf->container_data) == NULL)
  652. return SFE_INTERNAL ;
  653. switch (command)
  654. { case SFC_WAVEX_SET_AMBISONIC :
  655. if ((SF_CONTAINER (psf->sf.format)) == SF_FORMAT_WAVEX)
  656. { if (datasize == SF_AMBISONIC_NONE)
  657. wpriv->wavex_ambisonic = SF_AMBISONIC_NONE ;
  658. else if (datasize == SF_AMBISONIC_B_FORMAT)
  659. wpriv->wavex_ambisonic = SF_AMBISONIC_B_FORMAT ;
  660. else
  661. return 0 ;
  662. } ;
  663. return wpriv->wavex_ambisonic ;
  664. case SFC_WAVEX_GET_AMBISONIC :
  665. return wpriv->wavex_ambisonic ;
  666. case SFC_SET_CHANNEL_MAP_INFO :
  667. wpriv->wavex_channelmask = wavlike_gen_channel_mask (psf->channel_map, psf->sf.channels) ;
  668. return (wpriv->wavex_channelmask != 0) ;
  669. case SFC_RF64_AUTO_DOWNGRADE :
  670. if (psf->have_written == 0)
  671. wpriv->rf64_downgrade = datasize ? SF_TRUE : SF_FALSE ;
  672. return wpriv->rf64_downgrade ;
  673. default :
  674. break ;
  675. } ;
  676. return 0 ;
  677. } /* rf64_command */
  678. static int
  679. rf64_set_chunk (SF_PRIVATE *psf, const SF_CHUNK_INFO * chunk_info)
  680. { return psf_save_write_chunk (&psf->wchunks, chunk_info) ;
  681. } /* rf64_set_chunk */
  682. static SF_CHUNK_ITERATOR *
  683. rf64_next_chunk_iterator (SF_PRIVATE *psf, SF_CHUNK_ITERATOR * iterator)
  684. { return psf_next_chunk_iterator (&psf->rchunks, iterator) ;
  685. } /* rf64_next_chunk_iterator */
  686. static int
  687. rf64_get_chunk_size (SF_PRIVATE *psf, const SF_CHUNK_ITERATOR * iterator, SF_CHUNK_INFO * chunk_info)
  688. { int indx ;
  689. if ((indx = psf_find_read_chunk_iterator (&psf->rchunks, iterator)) < 0)
  690. return SFE_UNKNOWN_CHUNK ;
  691. chunk_info->datalen = psf->rchunks.chunks [indx].len ;
  692. return SFE_NO_ERROR ;
  693. } /* rf64_get_chunk_size */
  694. static int
  695. rf64_get_chunk_data (SF_PRIVATE *psf, const SF_CHUNK_ITERATOR * iterator, SF_CHUNK_INFO * chunk_info)
  696. { int indx ;
  697. sf_count_t pos ;
  698. if ((indx = psf_find_read_chunk_iterator (&psf->rchunks, iterator)) < 0)
  699. return SFE_UNKNOWN_CHUNK ;
  700. if (chunk_info->data == NULL)
  701. return SFE_BAD_CHUNK_DATA_PTR ;
  702. chunk_info->id_size = psf->rchunks.chunks [indx].id_size ;
  703. memcpy (chunk_info->id, psf->rchunks.chunks [indx].id, sizeof (chunk_info->id) / sizeof (*chunk_info->id)) ;
  704. pos = psf_ftell (psf) ;
  705. psf_fseek (psf, psf->rchunks.chunks [indx].offset, SEEK_SET) ;
  706. psf_fread (chunk_info->data, SF_MIN (chunk_info->datalen, psf->rchunks.chunks [indx].len), 1, psf) ;
  707. psf_fseek (psf, pos, SEEK_SET) ;
  708. return SFE_NO_ERROR ;
  709. } /* rf64_get_chunk_data */