mad.h 26 KB

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  1. /*
  2. * libmad - MPEG audio decoder library
  3. * Copyright (C) 2000-2004 Underbit Technologies, Inc.
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation; either version 2 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 General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU 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. * If you would like to negotiate alternate licensing terms, you may do
  20. * so by contacting: Underbit Technologies, Inc. <info@underbit.com>
  21. */
  22. # ifdef __cplusplus
  23. extern "C" {
  24. # endif
  25. # define FPM_INTEL
  26. # define SIZEOF_INT 4
  27. # define SIZEOF_LONG 4
  28. # define SIZEOF_LONG_LONG 8
  29. /* Id: version.h,v 1.26 2004/01/23 09:41:33 rob Exp */
  30. # ifndef LIBMAD_VERSION_H
  31. # define LIBMAD_VERSION_H
  32. # define MAD_VERSION_MAJOR 0
  33. # define MAD_VERSION_MINOR 15
  34. # define MAD_VERSION_PATCH 1
  35. # define MAD_VERSION_EXTRA " (beta)"
  36. # define MAD_VERSION_STRINGIZE(str) #str
  37. # define MAD_VERSION_STRING(num) MAD_VERSION_STRINGIZE(num)
  38. # define MAD_VERSION MAD_VERSION_STRING(MAD_VERSION_MAJOR) "." \
  39. MAD_VERSION_STRING(MAD_VERSION_MINOR) "." \
  40. MAD_VERSION_STRING(MAD_VERSION_PATCH) \
  41. MAD_VERSION_EXTRA
  42. # define MAD_PUBLISHYEAR "2000-2004"
  43. # define MAD_AUTHOR "Underbit Technologies, Inc."
  44. # define MAD_EMAIL "info@underbit.com"
  45. extern char const mad_version[];
  46. extern char const mad_copyright[];
  47. extern char const mad_author[];
  48. extern char const mad_build[];
  49. # endif
  50. /* Id: fixed.h,v 1.38 2004/02/17 02:02:03 rob Exp */
  51. # ifndef LIBMAD_FIXED_H
  52. # define LIBMAD_FIXED_H
  53. # if SIZEOF_INT >= 4
  54. typedef signed int mad_fixed_t;
  55. typedef signed int mad_fixed64hi_t;
  56. typedef unsigned int mad_fixed64lo_t;
  57. # else
  58. typedef signed long mad_fixed_t;
  59. typedef signed long mad_fixed64hi_t;
  60. typedef unsigned long mad_fixed64lo_t;
  61. # endif
  62. # if defined(_MSC_VER)
  63. # define mad_fixed64_t signed __int64
  64. # elif 1 || defined(__GNUC__)
  65. # define mad_fixed64_t signed long long
  66. # endif
  67. # if defined(FPM_FLOAT)
  68. typedef double mad_sample_t;
  69. # else
  70. typedef mad_fixed_t mad_sample_t;
  71. # endif
  72. /*
  73. * Fixed-point format: 0xABBBBBBB
  74. * A == whole part (sign + 3 bits)
  75. * B == fractional part (28 bits)
  76. *
  77. * Values are signed two's complement, so the effective range is:
  78. * 0x80000000 to 0x7fffffff
  79. * -8.0 to +7.9999999962747097015380859375
  80. *
  81. * The smallest representable value is:
  82. * 0x00000001 == 0.0000000037252902984619140625 (i.e. about 3.725e-9)
  83. *
  84. * 28 bits of fractional accuracy represent about
  85. * 8.6 digits of decimal accuracy.
  86. *
  87. * Fixed-point numbers can be added or subtracted as normal
  88. * integers, but multiplication requires shifting the 64-bit result
  89. * from 56 fractional bits back to 28 (and rounding.)
  90. *
  91. * Changing the definition of MAD_F_FRACBITS is only partially
  92. * supported, and must be done with care.
  93. */
  94. # define MAD_F_FRACBITS 28
  95. # define MAD_F(x) ((mad_fixed_t) (x##L))
  96. # define MAD_F_MIN ((mad_fixed_t) -0x80000000L)
  97. # define MAD_F_MAX ((mad_fixed_t) +0x7fffffffL)
  98. # define MAD_F_ONE MAD_F(0x10000000)
  99. # define mad_f_tofixed(x) ((mad_fixed_t) \
  100. ((x) * (double) (1L << MAD_F_FRACBITS) + 0.5))
  101. # define mad_f_todouble(x) ((double) \
  102. ((x) / (double) (1L << MAD_F_FRACBITS)))
  103. # define mad_f_intpart(x) ((x) >> MAD_F_FRACBITS)
  104. # define mad_f_fracpart(x) ((x) & ((1L << MAD_F_FRACBITS) - 1))
  105. /* (x should be positive) */
  106. # define mad_f_fromint(x) ((x) << MAD_F_FRACBITS)
  107. # define mad_f_add(x, y) ((x) + (y))
  108. # define mad_f_sub(x, y) ((x) - (y))
  109. # if defined(FPM_FLOAT)
  110. # error "FPM_FLOAT not yet supported"
  111. # undef MAD_F
  112. # define MAD_F(x) mad_f_todouble(x)
  113. # define mad_f_mul(x, y) ((x) * (y))
  114. # define mad_f_scale64
  115. # undef ASO_ZEROCHECK
  116. # elif defined(FPM_64BIT)
  117. /*
  118. * This version should be the most accurate if 64-bit types are supported by
  119. * the compiler, although it may not be the most efficient.
  120. */
  121. # if defined(OPT_ACCURACY)
  122. # define mad_f_mul(x, y) \
  123. ((mad_fixed_t) \
  124. ((((mad_fixed64_t) (x) * (y)) + \
  125. (1L << (MAD_F_SCALEBITS - 1))) >> MAD_F_SCALEBITS))
  126. # else
  127. # define mad_f_mul(x, y) \
  128. ((mad_fixed_t) (((mad_fixed64_t) (x) * (y)) >> MAD_F_SCALEBITS))
  129. # endif
  130. # define MAD_F_SCALEBITS MAD_F_FRACBITS
  131. /* --- Intel --------------------------------------------------------------- */
  132. # elif defined(FPM_INTEL)
  133. # if defined(_MSC_VER)
  134. # pragma warning(push)
  135. # pragma warning(disable: 4035) /* no return value */
  136. static __forceinline
  137. mad_fixed_t mad_f_mul_inline(mad_fixed_t x, mad_fixed_t y)
  138. {
  139. enum {
  140. fracbits = MAD_F_FRACBITS
  141. };
  142. __asm {
  143. mov eax, x
  144. imul y
  145. shrd eax, edx, fracbits
  146. }
  147. /* implicit return of eax */
  148. }
  149. # pragma warning(pop)
  150. # define mad_f_mul mad_f_mul_inline
  151. # define mad_f_scale64
  152. # else
  153. /*
  154. * This Intel version is fast and accurate; the disposition of the least
  155. * significant bit depends on OPT_ACCURACY via mad_f_scale64().
  156. */
  157. # define MAD_F_MLX(hi, lo, x, y) \
  158. asm ("imull %3" \
  159. : "=a" (lo), "=d" (hi) \
  160. : "%a" (x), "rm" (y) \
  161. : "cc")
  162. # if defined(OPT_ACCURACY)
  163. /*
  164. * This gives best accuracy but is not very fast.
  165. */
  166. # define MAD_F_MLA(hi, lo, x, y) \
  167. ({ mad_fixed64hi_t __hi; \
  168. mad_fixed64lo_t __lo; \
  169. MAD_F_MLX(__hi, __lo, (x), (y)); \
  170. asm ("addl %2,%0\n\t" \
  171. "adcl %3,%1" \
  172. : "=rm" (lo), "=rm" (hi) \
  173. : "r" (__lo), "r" (__hi), "0" (lo), "1" (hi) \
  174. : "cc"); \
  175. })
  176. # endif /* OPT_ACCURACY */
  177. # if defined(OPT_ACCURACY)
  178. /*
  179. * Surprisingly, this is faster than SHRD followed by ADC.
  180. */
  181. # define mad_f_scale64(hi, lo) \
  182. ({ mad_fixed64hi_t __hi_; \
  183. mad_fixed64lo_t __lo_; \
  184. mad_fixed_t __result; \
  185. asm ("addl %4,%2\n\t" \
  186. "adcl %5,%3" \
  187. : "=rm" (__lo_), "=rm" (__hi_) \
  188. : "0" (lo), "1" (hi), \
  189. "ir" (1L << (MAD_F_SCALEBITS - 1)), "ir" (0) \
  190. : "cc"); \
  191. asm ("shrdl %3,%2,%1" \
  192. : "=rm" (__result) \
  193. : "0" (__lo_), "r" (__hi_), "I" (MAD_F_SCALEBITS) \
  194. : "cc"); \
  195. __result; \
  196. })
  197. # elif defined(OPT_INTEL)
  198. /*
  199. * Alternate Intel scaling that may or may not perform better.
  200. */
  201. # define mad_f_scale64(hi, lo) \
  202. ({ mad_fixed_t __result; \
  203. asm ("shrl %3,%1\n\t" \
  204. "shll %4,%2\n\t" \
  205. "orl %2,%1" \
  206. : "=rm" (__result) \
  207. : "0" (lo), "r" (hi), \
  208. "I" (MAD_F_SCALEBITS), "I" (32 - MAD_F_SCALEBITS) \
  209. : "cc"); \
  210. __result; \
  211. })
  212. # else
  213. # define mad_f_scale64(hi, lo) \
  214. ({ mad_fixed_t __result; \
  215. asm ("shrdl %3,%2,%1" \
  216. : "=rm" (__result) \
  217. : "0" (lo), "r" (hi), "I" (MAD_F_SCALEBITS) \
  218. : "cc"); \
  219. __result; \
  220. })
  221. # endif /* OPT_ACCURACY */
  222. # define MAD_F_SCALEBITS MAD_F_FRACBITS
  223. # endif
  224. /* --- ARM ----------------------------------------------------------------- */
  225. # elif defined(FPM_ARM)
  226. /*
  227. * This ARM V4 version is as accurate as FPM_64BIT but much faster. The
  228. * least significant bit is properly rounded at no CPU cycle cost!
  229. */
  230. # if 1
  231. /*
  232. * This is faster than the default implementation via MAD_F_MLX() and
  233. * mad_f_scale64().
  234. */
  235. # define mad_f_mul(x, y) \
  236. ({ mad_fixed64hi_t __hi; \
  237. mad_fixed64lo_t __lo; \
  238. mad_fixed_t __result; \
  239. asm ("smull %0, %1, %3, %4\n\t" \
  240. "movs %0, %0, lsr %5\n\t" \
  241. "adc %2, %0, %1, lsl %6" \
  242. : "=&r" (__lo), "=&r" (__hi), "=r" (__result) \
  243. : "%r" (x), "r" (y), \
  244. "M" (MAD_F_SCALEBITS), "M" (32 - MAD_F_SCALEBITS) \
  245. : "cc"); \
  246. __result; \
  247. })
  248. # endif
  249. # define MAD_F_MLX(hi, lo, x, y) \
  250. asm ("smull %0, %1, %2, %3" \
  251. : "=&r" (lo), "=&r" (hi) \
  252. : "%r" (x), "r" (y))
  253. # define MAD_F_MLA(hi, lo, x, y) \
  254. asm ("smlal %0, %1, %2, %3" \
  255. : "+r" (lo), "+r" (hi) \
  256. : "%r" (x), "r" (y))
  257. # define MAD_F_MLN(hi, lo) \
  258. asm ("rsbs %0, %2, #0\n\t" \
  259. "rsc %1, %3, #0" \
  260. : "=r" (lo), "=r" (hi) \
  261. : "0" (lo), "1" (hi) \
  262. : "cc")
  263. # define mad_f_scale64(hi, lo) \
  264. ({ mad_fixed_t __result; \
  265. asm ("movs %0, %1, lsr %3\n\t" \
  266. "adc %0, %0, %2, lsl %4" \
  267. : "=&r" (__result) \
  268. : "r" (lo), "r" (hi), \
  269. "M" (MAD_F_SCALEBITS), "M" (32 - MAD_F_SCALEBITS) \
  270. : "cc"); \
  271. __result; \
  272. })
  273. # define MAD_F_SCALEBITS MAD_F_FRACBITS
  274. /* --- MIPS ---------------------------------------------------------------- */
  275. # elif defined(FPM_MIPS)
  276. /*
  277. * This MIPS version is fast and accurate; the disposition of the least
  278. * significant bit depends on OPT_ACCURACY via mad_f_scale64().
  279. */
  280. # define MAD_F_MLX(hi, lo, x, y) \
  281. asm ("mult %2,%3" \
  282. : "=l" (lo), "=h" (hi) \
  283. : "%r" (x), "r" (y))
  284. # if defined(HAVE_MADD_ASM)
  285. # define MAD_F_MLA(hi, lo, x, y) \
  286. asm ("madd %2,%3" \
  287. : "+l" (lo), "+h" (hi) \
  288. : "%r" (x), "r" (y))
  289. # elif defined(HAVE_MADD16_ASM)
  290. /*
  291. * This loses significant accuracy due to the 16-bit integer limit in the
  292. * multiply/accumulate instruction.
  293. */
  294. # define MAD_F_ML0(hi, lo, x, y) \
  295. asm ("mult %2,%3" \
  296. : "=l" (lo), "=h" (hi) \
  297. : "%r" ((x) >> 12), "r" ((y) >> 16))
  298. # define MAD_F_MLA(hi, lo, x, y) \
  299. asm ("madd16 %2,%3" \
  300. : "+l" (lo), "+h" (hi) \
  301. : "%r" ((x) >> 12), "r" ((y) >> 16))
  302. # define MAD_F_MLZ(hi, lo) ((mad_fixed_t) (lo))
  303. # endif
  304. # if defined(OPT_SPEED)
  305. # define mad_f_scale64(hi, lo) \
  306. ((mad_fixed_t) ((hi) << (32 - MAD_F_SCALEBITS)))
  307. # define MAD_F_SCALEBITS MAD_F_FRACBITS
  308. # endif
  309. /* --- SPARC --------------------------------------------------------------- */
  310. # elif defined(FPM_SPARC)
  311. /*
  312. * This SPARC V8 version is fast and accurate; the disposition of the least
  313. * significant bit depends on OPT_ACCURACY via mad_f_scale64().
  314. */
  315. # define MAD_F_MLX(hi, lo, x, y) \
  316. asm ("smul %2, %3, %0\n\t" \
  317. "rd %%y, %1" \
  318. : "=r" (lo), "=r" (hi) \
  319. : "%r" (x), "rI" (y))
  320. /* --- PowerPC ------------------------------------------------------------- */
  321. # elif defined(FPM_PPC)
  322. /*
  323. * This PowerPC version is fast and accurate; the disposition of the least
  324. * significant bit depends on OPT_ACCURACY via mad_f_scale64().
  325. */
  326. # define MAD_F_MLX(hi, lo, x, y) \
  327. do { \
  328. asm ("mullw %0,%1,%2" \
  329. : "=r" (lo) \
  330. : "%r" (x), "r" (y)); \
  331. asm ("mulhw %0,%1,%2" \
  332. : "=r" (hi) \
  333. : "%r" (x), "r" (y)); \
  334. } \
  335. while (0)
  336. # if defined(OPT_ACCURACY)
  337. /*
  338. * This gives best accuracy but is not very fast.
  339. */
  340. # define MAD_F_MLA(hi, lo, x, y) \
  341. ({ mad_fixed64hi_t __hi; \
  342. mad_fixed64lo_t __lo; \
  343. MAD_F_MLX(__hi, __lo, (x), (y)); \
  344. asm ("addc %0,%2,%3\n\t" \
  345. "adde %1,%4,%5" \
  346. : "=r" (lo), "=r" (hi) \
  347. : "%r" (lo), "r" (__lo), \
  348. "%r" (hi), "r" (__hi) \
  349. : "xer"); \
  350. })
  351. # endif
  352. # if defined(OPT_ACCURACY)
  353. /*
  354. * This is slower than the truncating version below it.
  355. */
  356. # define mad_f_scale64(hi, lo) \
  357. ({ mad_fixed_t __result, __round; \
  358. asm ("rotrwi %0,%1,%2" \
  359. : "=r" (__result) \
  360. : "r" (lo), "i" (MAD_F_SCALEBITS)); \
  361. asm ("extrwi %0,%1,1,0" \
  362. : "=r" (__round) \
  363. : "r" (__result)); \
  364. asm ("insrwi %0,%1,%2,0" \
  365. : "+r" (__result) \
  366. : "r" (hi), "i" (MAD_F_SCALEBITS)); \
  367. asm ("add %0,%1,%2" \
  368. : "=r" (__result) \
  369. : "%r" (__result), "r" (__round)); \
  370. __result; \
  371. })
  372. # else
  373. # define mad_f_scale64(hi, lo) \
  374. ({ mad_fixed_t __result; \
  375. asm ("rotrwi %0,%1,%2" \
  376. : "=r" (__result) \
  377. : "r" (lo), "i" (MAD_F_SCALEBITS)); \
  378. asm ("insrwi %0,%1,%2,0" \
  379. : "+r" (__result) \
  380. : "r" (hi), "i" (MAD_F_SCALEBITS)); \
  381. __result; \
  382. })
  383. # endif
  384. # define MAD_F_SCALEBITS MAD_F_FRACBITS
  385. /* --- Default ------------------------------------------------------------- */
  386. # elif defined(FPM_DEFAULT)
  387. /*
  388. * This version is the most portable but it loses significant accuracy.
  389. * Furthermore, accuracy is biased against the second argument, so care
  390. * should be taken when ordering operands.
  391. *
  392. * The scale factors are constant as this is not used with SSO.
  393. *
  394. * Pre-rounding is required to stay within the limits of compliance.
  395. */
  396. # if defined(OPT_SPEED)
  397. # define mad_f_mul(x, y) (((x) >> 12) * ((y) >> 16))
  398. # else
  399. # define mad_f_mul(x, y) ((((x) + (1L << 11)) >> 12) * \
  400. (((y) + (1L << 15)) >> 16))
  401. # endif
  402. /* ------------------------------------------------------------------------- */
  403. # else
  404. # error "no FPM selected"
  405. # endif
  406. /* default implementations */
  407. # if !defined(mad_f_mul)
  408. # define mad_f_mul(x, y) \
  409. ({ register mad_fixed64hi_t __hi; \
  410. register mad_fixed64lo_t __lo; \
  411. MAD_F_MLX(__hi, __lo, (x), (y)); \
  412. mad_f_scale64(__hi, __lo); \
  413. })
  414. # endif
  415. # if !defined(MAD_F_MLA)
  416. # define MAD_F_ML0(hi, lo, x, y) ((lo) = mad_f_mul((x), (y)))
  417. # define MAD_F_MLA(hi, lo, x, y) ((lo) += mad_f_mul((x), (y)))
  418. # define MAD_F_MLN(hi, lo) ((lo) = -(lo))
  419. # define MAD_F_MLZ(hi, lo) ((void) (hi), (mad_fixed_t) (lo))
  420. # endif
  421. # if !defined(MAD_F_ML0)
  422. # define MAD_F_ML0(hi, lo, x, y) MAD_F_MLX((hi), (lo), (x), (y))
  423. # endif
  424. # if !defined(MAD_F_MLN)
  425. # define MAD_F_MLN(hi, lo) ((hi) = ((lo) = -(lo)) ? ~(hi) : -(hi))
  426. # endif
  427. # if !defined(MAD_F_MLZ)
  428. # define MAD_F_MLZ(hi, lo) mad_f_scale64((hi), (lo))
  429. # endif
  430. # if !defined(mad_f_scale64)
  431. # if defined(OPT_ACCURACY)
  432. # define mad_f_scale64(hi, lo) \
  433. ((((mad_fixed_t) \
  434. (((hi) << (32 - (MAD_F_SCALEBITS - 1))) | \
  435. ((lo) >> (MAD_F_SCALEBITS - 1)))) + 1) >> 1)
  436. # else
  437. # define mad_f_scale64(hi, lo) \
  438. ((mad_fixed_t) \
  439. (((hi) << (32 - MAD_F_SCALEBITS)) | \
  440. ((lo) >> MAD_F_SCALEBITS)))
  441. # endif
  442. # define MAD_F_SCALEBITS MAD_F_FRACBITS
  443. # endif
  444. /* C routines */
  445. mad_fixed_t mad_f_abs(mad_fixed_t);
  446. mad_fixed_t mad_f_div(mad_fixed_t, mad_fixed_t);
  447. # endif
  448. /* Id: bit.h,v 1.12 2004/01/23 09:41:32 rob Exp */
  449. # ifndef LIBMAD_BIT_H
  450. # define LIBMAD_BIT_H
  451. struct mad_bitptr {
  452. unsigned char const *byte;
  453. unsigned short cache;
  454. unsigned short left;
  455. };
  456. void mad_bit_init(struct mad_bitptr *, unsigned char const *);
  457. # define mad_bit_finish(bitptr) /* nothing */
  458. unsigned int mad_bit_length(struct mad_bitptr const *,
  459. struct mad_bitptr const *);
  460. # define mad_bit_bitsleft(bitptr) ((bitptr)->left)
  461. unsigned char const *mad_bit_nextbyte(struct mad_bitptr const *);
  462. void mad_bit_skip(struct mad_bitptr *, unsigned int);
  463. unsigned long mad_bit_read(struct mad_bitptr *, unsigned int);
  464. void mad_bit_write(struct mad_bitptr *, unsigned int, unsigned long);
  465. unsigned short mad_bit_crc(struct mad_bitptr, unsigned int, unsigned short);
  466. # endif
  467. /* Id: timer.h,v 1.16 2004/01/23 09:41:33 rob Exp */
  468. # ifndef LIBMAD_TIMER_H
  469. # define LIBMAD_TIMER_H
  470. typedef struct {
  471. signed long seconds; /* whole seconds */
  472. unsigned long fraction; /* 1/MAD_TIMER_RESOLUTION seconds */
  473. } mad_timer_t;
  474. extern mad_timer_t const mad_timer_zero;
  475. # define MAD_TIMER_RESOLUTION 352800000UL
  476. enum mad_units {
  477. MAD_UNITS_HOURS = -2,
  478. MAD_UNITS_MINUTES = -1,
  479. MAD_UNITS_SECONDS = 0,
  480. /* metric units */
  481. MAD_UNITS_DECISECONDS = 10,
  482. MAD_UNITS_CENTISECONDS = 100,
  483. MAD_UNITS_MILLISECONDS = 1000,
  484. /* audio sample units */
  485. MAD_UNITS_8000_HZ = 8000,
  486. MAD_UNITS_11025_HZ = 11025,
  487. MAD_UNITS_12000_HZ = 12000,
  488. MAD_UNITS_16000_HZ = 16000,
  489. MAD_UNITS_22050_HZ = 22050,
  490. MAD_UNITS_24000_HZ = 24000,
  491. MAD_UNITS_32000_HZ = 32000,
  492. MAD_UNITS_44100_HZ = 44100,
  493. MAD_UNITS_48000_HZ = 48000,
  494. /* video frame/field units */
  495. MAD_UNITS_24_FPS = 24,
  496. MAD_UNITS_25_FPS = 25,
  497. MAD_UNITS_30_FPS = 30,
  498. MAD_UNITS_48_FPS = 48,
  499. MAD_UNITS_50_FPS = 50,
  500. MAD_UNITS_60_FPS = 60,
  501. /* CD audio frames */
  502. MAD_UNITS_75_FPS = 75,
  503. /* video drop-frame units */
  504. MAD_UNITS_23_976_FPS = -24,
  505. MAD_UNITS_24_975_FPS = -25,
  506. MAD_UNITS_29_97_FPS = -30,
  507. MAD_UNITS_47_952_FPS = -48,
  508. MAD_UNITS_49_95_FPS = -50,
  509. MAD_UNITS_59_94_FPS = -60
  510. };
  511. # define mad_timer_reset(timer) ((void) (*(timer) = mad_timer_zero))
  512. int mad_timer_compare(mad_timer_t, mad_timer_t);
  513. # define mad_timer_sign(timer) mad_timer_compare((timer), mad_timer_zero)
  514. void mad_timer_negate(mad_timer_t *);
  515. mad_timer_t mad_timer_abs(mad_timer_t);
  516. void mad_timer_set(mad_timer_t *, unsigned long, unsigned long, unsigned long);
  517. void mad_timer_add(mad_timer_t *, mad_timer_t);
  518. void mad_timer_multiply(mad_timer_t *, signed long);
  519. signed long mad_timer_count(mad_timer_t, enum mad_units);
  520. unsigned long mad_timer_fraction(mad_timer_t, unsigned long);
  521. void mad_timer_string(mad_timer_t, char *, char const *,
  522. enum mad_units, enum mad_units, unsigned long);
  523. # endif
  524. /* Id: stream.h,v 1.20 2004/02/05 09:02:39 rob Exp */
  525. # ifndef LIBMAD_STREAM_H
  526. # define LIBMAD_STREAM_H
  527. # define MAD_BUFFER_GUARD 8
  528. # define MAD_BUFFER_MDLEN (511 + 2048 + MAD_BUFFER_GUARD)
  529. enum mad_error {
  530. MAD_ERROR_NONE = 0x0000, /* no error */
  531. MAD_ERROR_BUFLEN = 0x0001, /* input buffer too small (or EOF) */
  532. MAD_ERROR_BUFPTR = 0x0002, /* invalid (null) buffer pointer */
  533. MAD_ERROR_NOMEM = 0x0031, /* not enough memory */
  534. MAD_ERROR_LOSTSYNC = 0x0101, /* lost synchronization */
  535. MAD_ERROR_BADLAYER = 0x0102, /* reserved header layer value */
  536. MAD_ERROR_BADBITRATE = 0x0103, /* forbidden bitrate value */
  537. MAD_ERROR_BADSAMPLERATE = 0x0104, /* reserved sample frequency value */
  538. MAD_ERROR_BADEMPHASIS = 0x0105, /* reserved emphasis value */
  539. MAD_ERROR_BADCRC = 0x0201, /* CRC check failed */
  540. MAD_ERROR_BADBITALLOC = 0x0211, /* forbidden bit allocation value */
  541. MAD_ERROR_BADSCALEFACTOR = 0x0221, /* bad scalefactor index */
  542. MAD_ERROR_BADMODE = 0x0222, /* bad bitrate/mode combination */
  543. MAD_ERROR_BADFRAMELEN = 0x0231, /* bad frame length */
  544. MAD_ERROR_BADBIGVALUES = 0x0232, /* bad big_values count */
  545. MAD_ERROR_BADBLOCKTYPE = 0x0233, /* reserved block_type */
  546. MAD_ERROR_BADSCFSI = 0x0234, /* bad scalefactor selection info */
  547. MAD_ERROR_BADDATAPTR = 0x0235, /* bad main_data_begin pointer */
  548. MAD_ERROR_BADPART3LEN = 0x0236, /* bad audio data length */
  549. MAD_ERROR_BADHUFFTABLE = 0x0237, /* bad Huffman table select */
  550. MAD_ERROR_BADHUFFDATA = 0x0238, /* Huffman data overrun */
  551. MAD_ERROR_BADSTEREO = 0x0239 /* incompatible block_type for JS */
  552. };
  553. # define MAD_RECOVERABLE(error) ((error) & 0xff00)
  554. struct mad_stream {
  555. unsigned char const *buffer; /* input bitstream buffer */
  556. unsigned char const *bufend; /* end of buffer */
  557. unsigned long skiplen; /* bytes to skip before next frame */
  558. int sync; /* stream sync found */
  559. unsigned long freerate; /* free bitrate (fixed) */
  560. unsigned char const *this_frame; /* start of current frame */
  561. unsigned char const *next_frame; /* start of next frame */
  562. struct mad_bitptr ptr; /* current processing bit pointer */
  563. struct mad_bitptr anc_ptr; /* ancillary bits pointer */
  564. unsigned int anc_bitlen; /* number of ancillary bits */
  565. unsigned char (*main_data)[MAD_BUFFER_MDLEN];
  566. /* Layer III main_data() */
  567. unsigned int md_len; /* bytes in main_data */
  568. int options; /* decoding options (see below) */
  569. enum mad_error error; /* error code (see above) */
  570. };
  571. enum {
  572. MAD_OPTION_IGNORECRC = 0x0001, /* ignore CRC errors */
  573. MAD_OPTION_HALFSAMPLERATE = 0x0002 /* generate PCM at 1/2 sample rate */
  574. # if 0 /* not yet implemented */
  575. MAD_OPTION_LEFTCHANNEL = 0x0010, /* decode left channel only */
  576. MAD_OPTION_RIGHTCHANNEL = 0x0020, /* decode right channel only */
  577. MAD_OPTION_SINGLECHANNEL = 0x0030 /* combine channels */
  578. # endif
  579. };
  580. void mad_stream_init(struct mad_stream *);
  581. void mad_stream_finish(struct mad_stream *);
  582. # define mad_stream_options(stream, opts) \
  583. ((void) ((stream)->options = (opts)))
  584. void mad_stream_buffer(struct mad_stream *,
  585. unsigned char const *, unsigned long);
  586. void mad_stream_skip(struct mad_stream *, unsigned long);
  587. int mad_stream_sync(struct mad_stream *);
  588. char const *mad_stream_errorstr(struct mad_stream const *);
  589. # endif
  590. /* Id: frame.h,v 1.20 2004/01/23 09:41:32 rob Exp */
  591. # ifndef LIBMAD_FRAME_H
  592. # define LIBMAD_FRAME_H
  593. enum mad_layer {
  594. MAD_LAYER_I = 1, /* Layer I */
  595. MAD_LAYER_II = 2, /* Layer II */
  596. MAD_LAYER_III = 3 /* Layer III */
  597. };
  598. enum mad_mode {
  599. MAD_MODE_SINGLE_CHANNEL = 0, /* single channel */
  600. MAD_MODE_DUAL_CHANNEL = 1, /* dual channel */
  601. MAD_MODE_JOINT_STEREO = 2, /* joint (MS/intensity) stereo */
  602. MAD_MODE_STEREO = 3 /* normal LR stereo */
  603. };
  604. enum mad_emphasis {
  605. MAD_EMPHASIS_NONE = 0, /* no emphasis */
  606. MAD_EMPHASIS_50_15_US = 1, /* 50/15 microseconds emphasis */
  607. MAD_EMPHASIS_CCITT_J_17 = 3, /* CCITT J.17 emphasis */
  608. MAD_EMPHASIS_RESERVED = 2 /* unknown emphasis */
  609. };
  610. struct mad_header {
  611. enum mad_layer layer; /* audio layer (1, 2, or 3) */
  612. enum mad_mode mode; /* channel mode (see above) */
  613. int mode_extension; /* additional mode info */
  614. enum mad_emphasis emphasis; /* de-emphasis to use (see above) */
  615. unsigned long bitrate; /* stream bitrate (bps) */
  616. unsigned int samplerate; /* sampling frequency (Hz) */
  617. unsigned short crc_check; /* frame CRC accumulator */
  618. unsigned short crc_target; /* final target CRC checksum */
  619. int flags; /* flags (see below) */
  620. int private_bits; /* private bits (see below) */
  621. mad_timer_t duration; /* audio playing time of frame */
  622. };
  623. struct mad_frame {
  624. struct mad_header header; /* MPEG audio header */
  625. int options; /* decoding options (from stream) */
  626. mad_fixed_t sbsample[2][36][32]; /* synthesis subband filter samples */
  627. mad_fixed_t (*overlap)[2][32][18]; /* Layer III block overlap data */
  628. };
  629. # define MAD_NCHANNELS(header) ((header)->mode ? 2 : 1)
  630. # define MAD_NSBSAMPLES(header) \
  631. ((header)->layer == MAD_LAYER_I ? 12 : \
  632. (((header)->layer == MAD_LAYER_III && \
  633. ((header)->flags & MAD_FLAG_LSF_EXT)) ? 18 : 36))
  634. enum {
  635. MAD_FLAG_NPRIVATE_III = 0x0007, /* number of Layer III private bits */
  636. MAD_FLAG_INCOMPLETE = 0x0008, /* header but not data is decoded */
  637. MAD_FLAG_PROTECTION = 0x0010, /* frame has CRC protection */
  638. MAD_FLAG_COPYRIGHT = 0x0020, /* frame is copyright */
  639. MAD_FLAG_ORIGINAL = 0x0040, /* frame is original (else copy) */
  640. MAD_FLAG_PADDING = 0x0080, /* frame has additional slot */
  641. MAD_FLAG_I_STEREO = 0x0100, /* uses intensity joint stereo */
  642. MAD_FLAG_MS_STEREO = 0x0200, /* uses middle/side joint stereo */
  643. MAD_FLAG_FREEFORMAT = 0x0400, /* uses free format bitrate */
  644. MAD_FLAG_LSF_EXT = 0x1000, /* lower sampling freq. extension */
  645. MAD_FLAG_MC_EXT = 0x2000, /* multichannel audio extension */
  646. MAD_FLAG_MPEG_2_5_EXT = 0x4000 /* MPEG 2.5 (unofficial) extension */
  647. };
  648. enum {
  649. MAD_PRIVATE_HEADER = 0x0100, /* header private bit */
  650. MAD_PRIVATE_III = 0x001f /* Layer III private bits (up to 5) */
  651. };
  652. void mad_header_init(struct mad_header *);
  653. # define mad_header_finish(header) /* nothing */
  654. int mad_header_decode(struct mad_header *, struct mad_stream *);
  655. void mad_frame_init(struct mad_frame *);
  656. void mad_frame_finish(struct mad_frame *);
  657. int mad_frame_decode(struct mad_frame *, struct mad_stream *);
  658. void mad_frame_mute(struct mad_frame *);
  659. # endif
  660. /* Id: synth.h,v 1.15 2004/01/23 09:41:33 rob Exp */
  661. # ifndef LIBMAD_SYNTH_H
  662. # define LIBMAD_SYNTH_H
  663. struct mad_pcm {
  664. unsigned int samplerate; /* sampling frequency (Hz) */
  665. unsigned short channels; /* number of channels */
  666. unsigned short length; /* number of samples per channel */
  667. mad_fixed_t samples[2][1152]; /* PCM output samples [ch][sample] */
  668. };
  669. struct mad_synth {
  670. mad_fixed_t filter[2][2][2][16][8]; /* polyphase filterbank outputs */
  671. /* [ch][eo][peo][s][v] */
  672. unsigned int phase; /* current processing phase */
  673. struct mad_pcm pcm; /* PCM output */
  674. };
  675. /* single channel PCM selector */
  676. enum {
  677. MAD_PCM_CHANNEL_SINGLE = 0
  678. };
  679. /* dual channel PCM selector */
  680. enum {
  681. MAD_PCM_CHANNEL_DUAL_1 = 0,
  682. MAD_PCM_CHANNEL_DUAL_2 = 1
  683. };
  684. /* stereo PCM selector */
  685. enum {
  686. MAD_PCM_CHANNEL_STEREO_LEFT = 0,
  687. MAD_PCM_CHANNEL_STEREO_RIGHT = 1
  688. };
  689. void mad_synth_init(struct mad_synth *);
  690. # define mad_synth_finish(synth) /* nothing */
  691. void mad_synth_mute(struct mad_synth *);
  692. void mad_synth_frame(struct mad_synth *, struct mad_frame const *);
  693. # endif
  694. /* Id: decoder.h,v 1.17 2004/01/23 09:41:32 rob Exp */
  695. # ifndef LIBMAD_DECODER_H
  696. # define LIBMAD_DECODER_H
  697. enum mad_decoder_mode {
  698. MAD_DECODER_MODE_SYNC = 0,
  699. MAD_DECODER_MODE_ASYNC
  700. };
  701. enum mad_flow {
  702. MAD_FLOW_CONTINUE = 0x0000, /* continue normally */
  703. MAD_FLOW_STOP = 0x0010, /* stop decoding normally */
  704. MAD_FLOW_BREAK = 0x0011, /* stop decoding and signal an error */
  705. MAD_FLOW_IGNORE = 0x0020 /* ignore the current frame */
  706. };
  707. struct mad_decoder {
  708. enum mad_decoder_mode mode;
  709. int options;
  710. struct {
  711. long pid;
  712. int in;
  713. int out;
  714. } async;
  715. struct {
  716. struct mad_stream stream;
  717. struct mad_frame frame;
  718. struct mad_synth synth;
  719. } *sync;
  720. void *cb_data;
  721. enum mad_flow (*input_func)(void *, struct mad_stream *);
  722. enum mad_flow (*header_func)(void *, struct mad_header const *);
  723. enum mad_flow (*filter_func)(void *,
  724. struct mad_stream const *, struct mad_frame *);
  725. enum mad_flow (*output_func)(void *,
  726. struct mad_header const *, struct mad_pcm *);
  727. enum mad_flow (*error_func)(void *, struct mad_stream *, struct mad_frame *);
  728. enum mad_flow (*message_func)(void *, void *, unsigned int *);
  729. };
  730. void mad_decoder_init(struct mad_decoder *, void *,
  731. enum mad_flow (*)(void *, struct mad_stream *),
  732. enum mad_flow (*)(void *, struct mad_header const *),
  733. enum mad_flow (*)(void *,
  734. struct mad_stream const *,
  735. struct mad_frame *),
  736. enum mad_flow (*)(void *,
  737. struct mad_header const *,
  738. struct mad_pcm *),
  739. enum mad_flow (*)(void *,
  740. struct mad_stream *,
  741. struct mad_frame *),
  742. enum mad_flow (*)(void *, void *, unsigned int *));
  743. int mad_decoder_finish(struct mad_decoder *);
  744. # define mad_decoder_options(decoder, opts) \
  745. ((void) ((decoder)->options = (opts)))
  746. int mad_decoder_run(struct mad_decoder *, enum mad_decoder_mode);
  747. int mad_decoder_message(struct mad_decoder *, void *, unsigned int *);
  748. # endif
  749. # ifdef __cplusplus
  750. }
  751. # endif