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  1. /*
  2. * Real Audio 1.0 (14.4K)
  3. * Copyright (c) 2003 the ffmpeg project
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * FFmpeg is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. #include "avcodec.h"
  22. #include "bitstream.h"
  23. #include "acelp_vectors.h"
  24. #include "ra144.h"
  25. #define NBLOCKS 4 /* number of segments within a block */
  26. #define BLOCKSIZE 40 /* (quarter) block size in 16-bit words (80 bytes) */
  27. #define HALFBLOCK 20 /* BLOCKSIZE/2 */
  28. #define BUFFERSIZE 146 /* for do_output */
  29. /* internal globals */
  30. typedef struct {
  31. unsigned int old_energy; ///< previous frame energy
  32. /* the swapped buffers */
  33. unsigned int refl_tables[2][10];
  34. int16_t coef_tables[2][10];
  35. unsigned int *lpc_refl; ///< LPC reflection coefficients
  36. int16_t *lpc_coef; ///< LPC coefficients
  37. unsigned int *lpc_refl_old; ///< previous frame LPC reflection coefs
  38. int16_t *lpc_coef_old; ///< previous frame LPC coefficients
  39. unsigned int buffer[5];
  40. uint16_t adapt_cb[148]; ///< adaptive codebook
  41. } RA144Context;
  42. static int ra144_decode_init(AVCodecContext * avctx)
  43. {
  44. RA144Context *ractx = avctx->priv_data;
  45. ractx->lpc_refl = ractx->refl_tables[0];
  46. ractx->lpc_coef = ractx->coef_tables[0];
  47. ractx->lpc_refl_old = ractx->refl_tables[1];
  48. ractx->lpc_coef_old = ractx->coef_tables[1];
  49. return 0;
  50. }
  51. /**
  52. * Evaluate sqrt(x << 24). x must fit in 20 bits. This value is evaluated in an
  53. * odd way to make the output identical to the binary decoder.
  54. */
  55. static int t_sqrt(unsigned int x)
  56. {
  57. int s = 0;
  58. while (x > 0xfff) {
  59. s++;
  60. x = x >> 2;
  61. }
  62. return (ff_sqrt(x << 20) << s) << 2;
  63. }
  64. /* do 'voice' */
  65. static void do_voice(const int *a1, int16_t *a2)
  66. {
  67. int buffer[10];
  68. int buffer2[10];
  69. int *b1 = buffer;
  70. int *b2 = buffer2;
  71. int x, y;
  72. for (x=0; x<10; x++)
  73. buffer2[x] = a2[x];
  74. for (x=0; x < 10; x++) {
  75. b1[x] = a1[x] << 4;
  76. for (y=0; y < x; y++)
  77. b1[y] = ((a1[x] * b2[x-y-1]) >> 12) + b2[y];
  78. FFSWAP(int *, b1, b2);
  79. }
  80. for (x=0; x < 10; x++)
  81. a2[x] = buffer2[x] >> 4;
  82. }
  83. /* rotate block */
  84. static void rotate_block(const int16_t *source, int16_t *target, int offset)
  85. {
  86. int i=0, k=0;
  87. source += BUFFERSIZE - offset;
  88. while (i<BLOCKSIZE) {
  89. target[i++] = source[k++];
  90. if (k == offset)
  91. k = 0;
  92. }
  93. }
  94. /* inverse root mean square */
  95. static int irms(const int16_t *data, int factor)
  96. {
  97. unsigned int i, sum = 0;
  98. for (i=0; i < BLOCKSIZE; i++)
  99. sum += data[i] * data[i];
  100. if (sum == 0)
  101. return 0; /* OOPS - division by zero */
  102. return (0x20000000 / (t_sqrt(sum) >> 8)) * factor;
  103. }
  104. /* multiply/add wavetable */
  105. static void add_wav(int n, int skip_first, int *m, const int16_t *s1,
  106. const int8_t *s2, const int8_t *s3, int16_t *dest)
  107. {
  108. int i;
  109. int v[3];
  110. v[0] = 0;
  111. for (i=!skip_first; i<3; i++)
  112. v[i] = (wavtable1[n][i] * m[i]) >> (wavtable2[n][i] + 1);
  113. for (i=0; i < BLOCKSIZE; i++)
  114. dest[i] = ((*(s1++))*v[0] + (*(s2++))*v[1] + (*(s3++))*v[2]) >> 12;
  115. }
  116. static void final(const int16_t *i1, const int16_t *i2,
  117. void *out, int *statbuf, int len)
  118. {
  119. int x, i;
  120. uint16_t work[50];
  121. int16_t *ptr = work;
  122. memcpy(work, statbuf,20);
  123. memcpy(work + 10, i2, len * 2);
  124. for (i=0; i<len; i++) {
  125. int sum = 0;
  126. int new_val;
  127. for(x=0; x<10; x++)
  128. sum += i1[9-x] * ptr[x];
  129. sum >>= 12;
  130. new_val = ptr[10] - sum;
  131. if (new_val < -32768 || new_val > 32767) {
  132. memset(out, 0, len * 2);
  133. memset(statbuf, 0, 20);
  134. return;
  135. }
  136. ptr[10] = new_val;
  137. ptr++;
  138. }
  139. memcpy(out, work+10, len * 2);
  140. memcpy(statbuf, work + 40, 20);
  141. }
  142. static unsigned int rms(const int *data, int f)
  143. {
  144. int x;
  145. unsigned int res = 0x10000;
  146. int b = 0;
  147. for (x=0; x<10; x++) {
  148. res = (((0x1000000 - (*data) * (*data)) >> 12) * res) >> 12;
  149. if (res == 0)
  150. return 0;
  151. if (res > 0x10000)
  152. return 0; /* We're screwed, might as well go out with a bang. :P */
  153. while (res <= 0x3fff) {
  154. b++;
  155. res <<= 2;
  156. }
  157. data++;
  158. }
  159. if (res > 0)
  160. res = t_sqrt(res);
  161. res >>= (b + 10);
  162. res = (res * f) >> 10;
  163. return res;
  164. }
  165. /* do quarter-block output */
  166. static void do_output_subblock(RA144Context *ractx,
  167. const uint16_t *gsp, unsigned int gval,
  168. int16_t *output_buffer, GetBitContext *gb)
  169. {
  170. uint16_t buffer_a[40];
  171. uint16_t *block;
  172. int cba_idx = get_bits(gb, 7); // index of the adaptive CB, 0 if none
  173. int gain = get_bits(gb, 8);
  174. int cb1_idx = get_bits(gb, 7);
  175. int cb2_idx = get_bits(gb, 7);
  176. int m[3];
  177. if (cba_idx) {
  178. cba_idx += HALFBLOCK - 1;
  179. rotate_block(ractx->adapt_cb, buffer_a, cba_idx);
  180. m[0] = irms(buffer_a, gval) >> 12;
  181. } else {
  182. m[0] = 0;
  183. }
  184. m[1] = ((ftable1[cb1_idx] >> 4) * gval) >> 8;
  185. m[2] = ((ftable2[cb2_idx] >> 4) * gval) >> 8;
  186. memmove(ractx->adapt_cb, ractx->adapt_cb + BLOCKSIZE,
  187. (BUFFERSIZE - BLOCKSIZE) * 2);
  188. block = ractx->adapt_cb + BUFFERSIZE - BLOCKSIZE;
  189. add_wav(gain, cba_idx, m, buffer_a, etable1[cb1_idx], etable2[cb2_idx],
  190. block);
  191. final(gsp, block, output_buffer, ractx->buffer, BLOCKSIZE);
  192. }
  193. static int eq(const int16_t *in, int *target)
  194. {
  195. int retval = 0;
  196. int b, c, i;
  197. unsigned int u;
  198. int buffer1[10];
  199. int buffer2[10];
  200. int *bp1 = buffer1;
  201. int *bp2 = buffer2;
  202. for (i=0; i < 10; i++)
  203. buffer2[i] = in[i];
  204. u = target[9] = bp2[9];
  205. if (u + 0x1000 > 0x1fff)
  206. return 0; /* We're screwed, might as well go out with a bang. :P */
  207. for (c=8; c >= 0; c--) {
  208. if (u == 0x1000)
  209. u++;
  210. if (u == 0xfffff000)
  211. u--;
  212. b = 0x1000-((u * u) >> 12);
  213. if (b == 0)
  214. b++;
  215. for (u=0; u<=c; u++)
  216. bp1[u] = ((bp2[u] - ((target[c+1] * bp2[c-u]) >> 12)) * (0x1000000 / b)) >> 12;
  217. target[c] = u = bp1[c];
  218. if ((u + 0x1000) > 0x1fff)
  219. retval = 1;
  220. FFSWAP(int *, bp1, bp2);
  221. }
  222. return retval;
  223. }
  224. static int dec2(RA144Context *ractx, int16_t *decsp, int block_num,
  225. int copynew, int f)
  226. {
  227. int work[10];
  228. // Interpolate block coefficients from the this frame forth block and
  229. // last frame forth block
  230. ff_acelp_weighted_vector_sum(decsp, ractx->lpc_coef, ractx->lpc_coef_old,
  231. block_num + 1, 3 - block_num, 0, 2, 30);
  232. if (eq(decsp, work)) {
  233. // The interpolated coefficients are unstable, copy either new or old
  234. // coefficients
  235. if (copynew) {
  236. memcpy(decsp, ractx->lpc_coef, 30*sizeof(*decsp));
  237. return rms(ractx->lpc_refl, f);
  238. } else {
  239. memcpy(decsp, ractx->lpc_coef_old, 30*sizeof(*decsp));
  240. return rms(ractx->lpc_refl_old, f);
  241. }
  242. } else {
  243. return rms(work, f);
  244. }
  245. }
  246. /* Uncompress one block (20 bytes -> 160*2 bytes) */
  247. static int ra144_decode_frame(AVCodecContext * avctx,
  248. void *vdata, int *data_size,
  249. const uint8_t * buf, int buf_size)
  250. {
  251. static const uint8_t sizes[10] = {6, 5, 5, 4, 4, 3, 3, 3, 3, 2};
  252. RA144Context *ractx = avctx->priv_data;
  253. unsigned int refl_rms[4];
  254. uint16_t coef_table[3][30];
  255. uint16_t *gbuf2[4] =
  256. {coef_table[0], coef_table[1], coef_table[2], ractx->lpc_coef};
  257. unsigned int c;
  258. int i;
  259. int16_t *data = vdata;
  260. unsigned int energy;
  261. GetBitContext gb;
  262. if(buf_size < 20) {
  263. av_log(avctx, AV_LOG_ERROR,
  264. "Frame too small (%d bytes). Truncated file?\n", buf_size);
  265. return buf_size;
  266. }
  267. init_get_bits(&gb, buf, 20 * 8);
  268. for (i=0; i<10; i++)
  269. // "<< 1"? Doesn't this make one value out of two of the table useless?
  270. ractx->lpc_refl[i] = decodetable[i][get_bits(&gb, sizes[i]) << 1];
  271. do_voice(ractx->lpc_refl, ractx->lpc_coef);
  272. energy = decodeval[get_bits(&gb, 5) << 1]; // Useless table entries?
  273. refl_rms[0] = dec2(ractx, gbuf2[0], 0, 0, ractx->old_energy);
  274. refl_rms[1] = dec2(ractx, gbuf2[1], 1, energy > ractx->old_energy,
  275. t_sqrt(energy*ractx->old_energy) >> 12);
  276. refl_rms[2] = dec2(ractx, gbuf2[2], 2, 1, energy);
  277. refl_rms[3] = rms(ractx->lpc_refl, energy);
  278. /* do output */
  279. for (c=0; c<4; c++) {
  280. do_output_subblock(ractx, gbuf2[c], refl_rms[c], data, &gb);
  281. for (i=0; i<BLOCKSIZE; i++) {
  282. *data = av_clip_int16(*data << 2);
  283. data++;
  284. }
  285. }
  286. ractx->old_energy = energy;
  287. FFSWAP(unsigned int *, ractx->lpc_refl_old, ractx->lpc_refl);
  288. FFSWAP(int16_t * , ractx->lpc_coef_old, ractx->lpc_coef);
  289. *data_size = 2*160;
  290. return 20;
  291. }
  292. AVCodec ra_144_decoder =
  293. {
  294. "real_144",
  295. CODEC_TYPE_AUDIO,
  296. CODEC_ID_RA_144,
  297. sizeof(RA144Context),
  298. ra144_decode_init,
  299. NULL,
  300. NULL,
  301. ra144_decode_frame,
  302. .long_name = "RealAudio 1.0 (14.4K)",
  303. };