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  1. /*
  2. * PCM codecs
  3. * Copyright (c) 2001 Fabrice Bellard.
  4. *
  5. * This library is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU Lesser General Public
  7. * License as published by the Free Software Foundation; either
  8. * version 2 of the License, or (at your option) any later version.
  9. *
  10. * This library 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 GNU
  13. * Lesser General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU Lesser General Public
  16. * License along with this library; if not, write to the Free Software
  17. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  18. */
  19. /**
  20. * @file pcm.c
  21. * PCM codecs
  22. */
  23. #include "avcodec.h"
  24. #include "bitstream.h" // for ff_reverse
  25. /* from g711.c by SUN microsystems (unrestricted use) */
  26. #define SIGN_BIT (0x80) /* Sign bit for a A-law byte. */
  27. #define QUANT_MASK (0xf) /* Quantization field mask. */
  28. #define NSEGS (8) /* Number of A-law segments. */
  29. #define SEG_SHIFT (4) /* Left shift for segment number. */
  30. #define SEG_MASK (0x70) /* Segment field mask. */
  31. #define BIAS (0x84) /* Bias for linear code. */
  32. /*
  33. * alaw2linear() - Convert an A-law value to 16-bit linear PCM
  34. *
  35. */
  36. static int alaw2linear(unsigned char a_val)
  37. {
  38. int t;
  39. int seg;
  40. a_val ^= 0x55;
  41. t = a_val & QUANT_MASK;
  42. seg = ((unsigned)a_val & SEG_MASK) >> SEG_SHIFT;
  43. if(seg) t= (t + t + 1 + 32) << (seg + 2);
  44. else t= (t + t + 1 ) << 3;
  45. return ((a_val & SIGN_BIT) ? t : -t);
  46. }
  47. static int ulaw2linear(unsigned char u_val)
  48. {
  49. int t;
  50. /* Complement to obtain normal u-law value. */
  51. u_val = ~u_val;
  52. /*
  53. * Extract and bias the quantization bits. Then
  54. * shift up by the segment number and subtract out the bias.
  55. */
  56. t = ((u_val & QUANT_MASK) << 3) + BIAS;
  57. t <<= ((unsigned)u_val & SEG_MASK) >> SEG_SHIFT;
  58. return ((u_val & SIGN_BIT) ? (BIAS - t) : (t - BIAS));
  59. }
  60. /* 16384 entries per table */
  61. static uint8_t *linear_to_alaw = NULL;
  62. static int linear_to_alaw_ref = 0;
  63. static uint8_t *linear_to_ulaw = NULL;
  64. static int linear_to_ulaw_ref = 0;
  65. static void build_xlaw_table(uint8_t *linear_to_xlaw,
  66. int (*xlaw2linear)(unsigned char),
  67. int mask)
  68. {
  69. int i, j, v, v1, v2;
  70. j = 0;
  71. for(i=0;i<128;i++) {
  72. if (i != 127) {
  73. v1 = xlaw2linear(i ^ mask);
  74. v2 = xlaw2linear((i + 1) ^ mask);
  75. v = (v1 + v2 + 4) >> 3;
  76. } else {
  77. v = 8192;
  78. }
  79. for(;j<v;j++) {
  80. linear_to_xlaw[8192 + j] = (i ^ mask);
  81. if (j > 0)
  82. linear_to_xlaw[8192 - j] = (i ^ (mask ^ 0x80));
  83. }
  84. }
  85. linear_to_xlaw[0] = linear_to_xlaw[1];
  86. }
  87. static int pcm_encode_init(AVCodecContext *avctx)
  88. {
  89. avctx->frame_size = 1;
  90. switch(avctx->codec->id) {
  91. case CODEC_ID_PCM_ALAW:
  92. if (linear_to_alaw_ref == 0) {
  93. linear_to_alaw = av_malloc(16384);
  94. if (!linear_to_alaw)
  95. return -1;
  96. build_xlaw_table(linear_to_alaw, alaw2linear, 0xd5);
  97. }
  98. linear_to_alaw_ref++;
  99. break;
  100. case CODEC_ID_PCM_MULAW:
  101. if (linear_to_ulaw_ref == 0) {
  102. linear_to_ulaw = av_malloc(16384);
  103. if (!linear_to_ulaw)
  104. return -1;
  105. build_xlaw_table(linear_to_ulaw, ulaw2linear, 0xff);
  106. }
  107. linear_to_ulaw_ref++;
  108. break;
  109. default:
  110. break;
  111. }
  112. switch(avctx->codec->id) {
  113. case CODEC_ID_PCM_S32LE:
  114. case CODEC_ID_PCM_S32BE:
  115. case CODEC_ID_PCM_U32LE:
  116. case CODEC_ID_PCM_U32BE:
  117. avctx->block_align = 4 * avctx->channels;
  118. break;
  119. case CODEC_ID_PCM_S24LE:
  120. case CODEC_ID_PCM_S24BE:
  121. case CODEC_ID_PCM_U24LE:
  122. case CODEC_ID_PCM_U24BE:
  123. case CODEC_ID_PCM_S24DAUD:
  124. avctx->block_align = 3 * avctx->channels;
  125. break;
  126. case CODEC_ID_PCM_S16LE:
  127. case CODEC_ID_PCM_S16BE:
  128. case CODEC_ID_PCM_U16LE:
  129. case CODEC_ID_PCM_U16BE:
  130. avctx->block_align = 2 * avctx->channels;
  131. break;
  132. case CODEC_ID_PCM_S8:
  133. case CODEC_ID_PCM_U8:
  134. case CODEC_ID_PCM_MULAW:
  135. case CODEC_ID_PCM_ALAW:
  136. avctx->block_align = avctx->channels;
  137. break;
  138. default:
  139. break;
  140. }
  141. avctx->coded_frame= avcodec_alloc_frame();
  142. avctx->coded_frame->key_frame= 1;
  143. return 0;
  144. }
  145. static int pcm_encode_close(AVCodecContext *avctx)
  146. {
  147. av_freep(&avctx->coded_frame);
  148. switch(avctx->codec->id) {
  149. case CODEC_ID_PCM_ALAW:
  150. if (--linear_to_alaw_ref == 0)
  151. av_free(linear_to_alaw);
  152. break;
  153. case CODEC_ID_PCM_MULAW:
  154. if (--linear_to_ulaw_ref == 0)
  155. av_free(linear_to_ulaw);
  156. break;
  157. default:
  158. /* nothing to free */
  159. break;
  160. }
  161. return 0;
  162. }
  163. /**
  164. * \brief convert samples from 16 bit
  165. * \param bps byte per sample for the destination format, must be >= 2
  166. * \param le 0 for big-, 1 for little-endian
  167. * \param us 0 for signed, 1 for unsigned output
  168. * \param samples input samples
  169. * \param dst output samples
  170. * \param n number of samples in samples buffer.
  171. */
  172. static inline void encode_from16(int bps, int le, int us,
  173. short **samples, uint8_t **dst, int n) {
  174. if (bps > 2)
  175. memset(*dst, 0, n * bps);
  176. if (le) *dst += bps - 2;
  177. for(;n>0;n--) {
  178. register int v = *(*samples)++;
  179. if (us) v += 0x8000;
  180. (*dst)[le] = v >> 8;
  181. (*dst)[1 - le] = v;
  182. *dst += bps;
  183. }
  184. if (le) *dst -= bps - 2;
  185. }
  186. static int pcm_encode_frame(AVCodecContext *avctx,
  187. unsigned char *frame, int buf_size, void *data)
  188. {
  189. int n, sample_size, v;
  190. short *samples;
  191. unsigned char *dst;
  192. switch(avctx->codec->id) {
  193. case CODEC_ID_PCM_S32LE:
  194. case CODEC_ID_PCM_S32BE:
  195. case CODEC_ID_PCM_U32LE:
  196. case CODEC_ID_PCM_U32BE:
  197. sample_size = 4;
  198. break;
  199. case CODEC_ID_PCM_S24LE:
  200. case CODEC_ID_PCM_S24BE:
  201. case CODEC_ID_PCM_U24LE:
  202. case CODEC_ID_PCM_U24BE:
  203. case CODEC_ID_PCM_S24DAUD:
  204. sample_size = 3;
  205. break;
  206. case CODEC_ID_PCM_S16LE:
  207. case CODEC_ID_PCM_S16BE:
  208. case CODEC_ID_PCM_U16LE:
  209. case CODEC_ID_PCM_U16BE:
  210. sample_size = 2;
  211. break;
  212. default:
  213. sample_size = 1;
  214. break;
  215. }
  216. n = buf_size / sample_size;
  217. samples = data;
  218. dst = frame;
  219. switch(avctx->codec->id) {
  220. case CODEC_ID_PCM_S32LE:
  221. encode_from16(4, 1, 0, &samples, &dst, n);
  222. break;
  223. case CODEC_ID_PCM_S32BE:
  224. encode_from16(4, 0, 0, &samples, &dst, n);
  225. break;
  226. case CODEC_ID_PCM_U32LE:
  227. encode_from16(4, 1, 1, &samples, &dst, n);
  228. break;
  229. case CODEC_ID_PCM_U32BE:
  230. encode_from16(4, 0, 1, &samples, &dst, n);
  231. break;
  232. case CODEC_ID_PCM_S24LE:
  233. encode_from16(3, 1, 0, &samples, &dst, n);
  234. break;
  235. case CODEC_ID_PCM_S24BE:
  236. encode_from16(3, 0, 0, &samples, &dst, n);
  237. break;
  238. case CODEC_ID_PCM_U24LE:
  239. encode_from16(3, 1, 1, &samples, &dst, n);
  240. break;
  241. case CODEC_ID_PCM_U24BE:
  242. encode_from16(3, 0, 1, &samples, &dst, n);
  243. break;
  244. case CODEC_ID_PCM_S24DAUD:
  245. for(;n>0;n--) {
  246. uint32_t tmp = ff_reverse[*samples >> 8] +
  247. (ff_reverse[*samples & 0xff] << 8);
  248. tmp <<= 4; // sync flags would go here
  249. dst[2] = tmp & 0xff;
  250. tmp >>= 8;
  251. dst[1] = tmp & 0xff;
  252. dst[0] = tmp >> 8;
  253. samples++;
  254. dst += 3;
  255. }
  256. break;
  257. case CODEC_ID_PCM_S16LE:
  258. for(;n>0;n--) {
  259. v = *samples++;
  260. dst[0] = v & 0xff;
  261. dst[1] = v >> 8;
  262. dst += 2;
  263. }
  264. break;
  265. case CODEC_ID_PCM_S16BE:
  266. for(;n>0;n--) {
  267. v = *samples++;
  268. dst[0] = v >> 8;
  269. dst[1] = v;
  270. dst += 2;
  271. }
  272. break;
  273. case CODEC_ID_PCM_U16LE:
  274. for(;n>0;n--) {
  275. v = *samples++;
  276. v += 0x8000;
  277. dst[0] = v & 0xff;
  278. dst[1] = v >> 8;
  279. dst += 2;
  280. }
  281. break;
  282. case CODEC_ID_PCM_U16BE:
  283. for(;n>0;n--) {
  284. v = *samples++;
  285. v += 0x8000;
  286. dst[0] = v >> 8;
  287. dst[1] = v;
  288. dst += 2;
  289. }
  290. break;
  291. case CODEC_ID_PCM_S8:
  292. for(;n>0;n--) {
  293. v = *samples++;
  294. dst[0] = v >> 8;
  295. dst++;
  296. }
  297. break;
  298. case CODEC_ID_PCM_U8:
  299. for(;n>0;n--) {
  300. v = *samples++;
  301. dst[0] = (v >> 8) + 128;
  302. dst++;
  303. }
  304. break;
  305. case CODEC_ID_PCM_ALAW:
  306. for(;n>0;n--) {
  307. v = *samples++;
  308. dst[0] = linear_to_alaw[(v + 32768) >> 2];
  309. dst++;
  310. }
  311. break;
  312. case CODEC_ID_PCM_MULAW:
  313. for(;n>0;n--) {
  314. v = *samples++;
  315. dst[0] = linear_to_ulaw[(v + 32768) >> 2];
  316. dst++;
  317. }
  318. break;
  319. default:
  320. return -1;
  321. }
  322. //avctx->frame_size = (dst - frame) / (sample_size * avctx->channels);
  323. return dst - frame;
  324. }
  325. typedef struct PCMDecode {
  326. short table[256];
  327. } PCMDecode;
  328. static int pcm_decode_init(AVCodecContext * avctx)
  329. {
  330. PCMDecode *s = avctx->priv_data;
  331. int i;
  332. switch(avctx->codec->id) {
  333. case CODEC_ID_PCM_ALAW:
  334. for(i=0;i<256;i++)
  335. s->table[i] = alaw2linear(i);
  336. break;
  337. case CODEC_ID_PCM_MULAW:
  338. for(i=0;i<256;i++)
  339. s->table[i] = ulaw2linear(i);
  340. break;
  341. default:
  342. break;
  343. }
  344. return 0;
  345. }
  346. /**
  347. * \brief convert samples to 16 bit
  348. * \param bps byte per sample for the source format, must be >= 2
  349. * \param le 0 for big-, 1 for little-endian
  350. * \param us 0 for signed, 1 for unsigned input
  351. * \param src input samples
  352. * \param samples output samples
  353. * \param src_len number of bytes in src
  354. */
  355. static inline void decode_to16(int bps, int le, int us,
  356. uint8_t **src, short **samples, int src_len)
  357. {
  358. register int n = src_len / bps;
  359. if (le) *src += bps - 2;
  360. for(;n>0;n--) {
  361. *(*samples)++ = ((*src)[le] << 8 | (*src)[1 - le]) - (us?0x8000:0);
  362. *src += bps;
  363. }
  364. if (le) *src -= bps - 2;
  365. }
  366. static int pcm_decode_frame(AVCodecContext *avctx,
  367. void *data, int *data_size,
  368. uint8_t *buf, int buf_size)
  369. {
  370. PCMDecode *s = avctx->priv_data;
  371. int n;
  372. short *samples;
  373. uint8_t *src;
  374. samples = data;
  375. src = buf;
  376. if(buf_size > AVCODEC_MAX_AUDIO_FRAME_SIZE/2)
  377. buf_size = AVCODEC_MAX_AUDIO_FRAME_SIZE/2;
  378. switch(avctx->codec->id) {
  379. case CODEC_ID_PCM_S32LE:
  380. decode_to16(4, 1, 0, &src, &samples, buf_size);
  381. break;
  382. case CODEC_ID_PCM_S32BE:
  383. decode_to16(4, 0, 0, &src, &samples, buf_size);
  384. break;
  385. case CODEC_ID_PCM_U32LE:
  386. decode_to16(4, 1, 1, &src, &samples, buf_size);
  387. break;
  388. case CODEC_ID_PCM_U32BE:
  389. decode_to16(4, 0, 1, &src, &samples, buf_size);
  390. break;
  391. case CODEC_ID_PCM_S24LE:
  392. decode_to16(3, 1, 0, &src, &samples, buf_size);
  393. break;
  394. case CODEC_ID_PCM_S24BE:
  395. decode_to16(3, 0, 0, &src, &samples, buf_size);
  396. break;
  397. case CODEC_ID_PCM_U24LE:
  398. decode_to16(3, 1, 1, &src, &samples, buf_size);
  399. break;
  400. case CODEC_ID_PCM_U24BE:
  401. decode_to16(3, 0, 1, &src, &samples, buf_size);
  402. break;
  403. case CODEC_ID_PCM_S24DAUD:
  404. n = buf_size / 3;
  405. for(;n>0;n--) {
  406. uint32_t v = src[0] << 16 | src[1] << 8 | src[2];
  407. v >>= 4; // sync flags are here
  408. *samples++ = ff_reverse[(v >> 8) & 0xff] +
  409. (ff_reverse[v & 0xff] << 8);
  410. src += 3;
  411. }
  412. break;
  413. case CODEC_ID_PCM_S16LE:
  414. n = buf_size >> 1;
  415. for(;n>0;n--) {
  416. *samples++ = src[0] | (src[1] << 8);
  417. src += 2;
  418. }
  419. break;
  420. case CODEC_ID_PCM_S16BE:
  421. n = buf_size >> 1;
  422. for(;n>0;n--) {
  423. *samples++ = (src[0] << 8) | src[1];
  424. src += 2;
  425. }
  426. break;
  427. case CODEC_ID_PCM_U16LE:
  428. n = buf_size >> 1;
  429. for(;n>0;n--) {
  430. *samples++ = (src[0] | (src[1] << 8)) - 0x8000;
  431. src += 2;
  432. }
  433. break;
  434. case CODEC_ID_PCM_U16BE:
  435. n = buf_size >> 1;
  436. for(;n>0;n--) {
  437. *samples++ = ((src[0] << 8) | src[1]) - 0x8000;
  438. src += 2;
  439. }
  440. break;
  441. case CODEC_ID_PCM_S8:
  442. n = buf_size;
  443. for(;n>0;n--) {
  444. *samples++ = src[0] << 8;
  445. src++;
  446. }
  447. break;
  448. case CODEC_ID_PCM_U8:
  449. n = buf_size;
  450. for(;n>0;n--) {
  451. *samples++ = ((int)src[0] - 128) << 8;
  452. src++;
  453. }
  454. break;
  455. case CODEC_ID_PCM_ALAW:
  456. case CODEC_ID_PCM_MULAW:
  457. n = buf_size;
  458. for(;n>0;n--) {
  459. *samples++ = s->table[src[0]];
  460. src++;
  461. }
  462. break;
  463. default:
  464. return -1;
  465. }
  466. *data_size = (uint8_t *)samples - (uint8_t *)data;
  467. return src - buf;
  468. }
  469. #define PCM_CODEC(id, name) \
  470. AVCodec name ## _encoder = { \
  471. #name, \
  472. CODEC_TYPE_AUDIO, \
  473. id, \
  474. 0, \
  475. pcm_encode_init, \
  476. pcm_encode_frame, \
  477. pcm_encode_close, \
  478. NULL, \
  479. }; \
  480. AVCodec name ## _decoder = { \
  481. #name, \
  482. CODEC_TYPE_AUDIO, \
  483. id, \
  484. sizeof(PCMDecode), \
  485. pcm_decode_init, \
  486. NULL, \
  487. NULL, \
  488. pcm_decode_frame, \
  489. }
  490. PCM_CODEC(CODEC_ID_PCM_S32LE, pcm_s32le);
  491. PCM_CODEC(CODEC_ID_PCM_S32BE, pcm_s32be);
  492. PCM_CODEC(CODEC_ID_PCM_U32LE, pcm_u32le);
  493. PCM_CODEC(CODEC_ID_PCM_U32BE, pcm_u32be);
  494. PCM_CODEC(CODEC_ID_PCM_S24LE, pcm_s24le);
  495. PCM_CODEC(CODEC_ID_PCM_S24BE, pcm_s24be);
  496. PCM_CODEC(CODEC_ID_PCM_U24LE, pcm_u24le);
  497. PCM_CODEC(CODEC_ID_PCM_U24BE, pcm_u24be);
  498. PCM_CODEC(CODEC_ID_PCM_S24DAUD, pcm_s24daud);
  499. PCM_CODEC(CODEC_ID_PCM_S16LE, pcm_s16le);
  500. PCM_CODEC(CODEC_ID_PCM_S16BE, pcm_s16be);
  501. PCM_CODEC(CODEC_ID_PCM_U16LE, pcm_u16le);
  502. PCM_CODEC(CODEC_ID_PCM_U16BE, pcm_u16be);
  503. PCM_CODEC(CODEC_ID_PCM_S8, pcm_s8);
  504. PCM_CODEC(CODEC_ID_PCM_U8, pcm_u8);
  505. PCM_CODEC(CODEC_ID_PCM_ALAW, pcm_alaw);
  506. PCM_CODEC(CODEC_ID_PCM_MULAW, pcm_mulaw);
  507. #undef PCM_CODEC