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  1. /*
  2. * RealAudio 2.0 (28.8K)
  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. #define ALT_BITSTREAM_READER_LE
  23. #include "bitstream.h"
  24. #include "ra288.h"
  25. typedef struct {
  26. float history[8];
  27. float output[40];
  28. float pr1[36];
  29. float pr2[10];
  30. int phase, phasep;
  31. float st1a[111], st1b[37], st1[37];
  32. float st2a[38], st2b[11], st2[11];
  33. float sb[41];
  34. float lhist[10];
  35. } Real288_internal;
  36. static inline float scalar_product_float(float * v1, float * v2, int size)
  37. {
  38. float res = 0.;
  39. while (size--)
  40. res += *v1++ * *v2++;
  41. return res;
  42. }
  43. /* Decode and produce output */
  44. static void decode(Real288_internal *glob, float gain, int cb_coef)
  45. {
  46. int x, y;
  47. double sum, sumsum;
  48. float buffer[5];
  49. memmove(glob->sb + 5, glob->sb, 36 * sizeof(*glob->sb));
  50. for (x=4; x >= 0; x--)
  51. glob->sb[x] = -scalar_product_float(glob->sb + x + 1, glob->pr1, 36);
  52. /* convert log and do rms */
  53. sum = 32. - scalar_product_float(glob->pr2, glob->lhist, 10);
  54. if (sum < 0)
  55. sum = 0;
  56. else if (sum > 60)
  57. sum = 60;
  58. sumsum = exp(sum * 0.1151292546497) * gain; /* pow(10.0,sum/20)*f */
  59. for (x=0; x < 5; x++) {
  60. buffer[x] = codetable[cb_coef][x] * sumsum;
  61. }
  62. sum = scalar_product_float(buffer, buffer, 5) / 5;
  63. if (sum < 1)
  64. sum = 1;
  65. /* shift and store */
  66. memmove(glob->lhist, glob->lhist - 1, 10 * sizeof(*glob->lhist));
  67. *glob->lhist = glob->history[glob->phase] = 10 * log10(sum) - 32;
  68. for (x=1; x < 5; x++)
  69. for (y=x-1; y >= 0; y--)
  70. buffer[x] -= glob->pr1[x-y-1] * buffer[y];
  71. /* output */
  72. for (x=0; x < 5; x++) {
  73. float f = glob->sb[4-x] + buffer[x];
  74. if (f > 4095)
  75. f = 4095;
  76. else if (f < -4095)
  77. f = -4095;
  78. glob->output[glob->phasep+x] = glob->sb[4-x] = f;
  79. }
  80. }
  81. /* column multiply */
  82. static void colmult(float *tgt, float *m1, const float *m2, int n)
  83. {
  84. while (n--)
  85. *(tgt++) = (*(m1++)) * (*(m2++));
  86. }
  87. static int pred(float *in, float *tgt, int n)
  88. {
  89. int x, y;
  90. double f0, f1, f2;
  91. if (in[n] == 0)
  92. return 0;
  93. if ((f0 = *in) <= 0)
  94. return 0;
  95. for (x=1 ; ; x++) {
  96. float *p1 = in + x;
  97. float *p2 = tgt;
  98. if (n < x)
  99. return 1;
  100. f1 = *(p1--);
  101. for (y=0; y < x - 1; y++)
  102. f1 += (*(p1--))*(*(p2++));
  103. p1 = tgt + x - 1;
  104. p2 = tgt;
  105. *(p1--) = f2 = -f1/f0;
  106. for (y=x >> 1; y--;) {
  107. float temp = *p2 + *p1 * f2;
  108. *(p1--) += *p2 * f2;
  109. *(p2++) = temp;
  110. }
  111. if ((f0 += f1*f2) < 0)
  112. return 0;
  113. }
  114. }
  115. /* product sum (lsf) */
  116. static void prodsum(float *tgt, float *src, int len, int n)
  117. {
  118. for (; n >= 0; n--)
  119. tgt[n] = scalar_product_float(src, src - n, len);
  120. }
  121. static void co(int n, int i, int j, float *in, float *out, float *st1,
  122. float *st2, const float *table)
  123. {
  124. int a, b, c;
  125. unsigned int x;
  126. float *fp;
  127. float buffer1[37];
  128. float buffer2[37];
  129. float work[111];
  130. /* rotate and multiply */
  131. c = (b = (a = n + i) + j) - i;
  132. fp = st1 + i;
  133. for (x=0; x < b; x++) {
  134. if (x == c)
  135. fp=in;
  136. work[x] = *(table++) * (*(st1++) = *(fp++));
  137. }
  138. prodsum(buffer1, work + n, i, n);
  139. prodsum(buffer2, work + a, j, n);
  140. for (x=0;x<=n;x++) {
  141. *st2 = *st2 * (0.5625) + buffer1[x];
  142. out[x] = *(st2++) + buffer2[x];
  143. }
  144. *out *= 1.00390625; /* to prevent clipping */
  145. }
  146. static void update(Real288_internal *glob)
  147. {
  148. int x,y;
  149. float buffer1[40], temp1[37];
  150. float buffer2[8], temp2[11];
  151. y = glob->phasep+5;
  152. for (x=0; x < 40; x++)
  153. buffer1[x] = glob->output[(y++)%40];
  154. co(36, 40, 35, buffer1, temp1, glob->st1a, glob->st1b, table1);
  155. if (pred(temp1, glob->st1, 36))
  156. colmult(glob->pr1, glob->st1, table1a, 36);
  157. y = glob->phase + 1;
  158. for (x=0; x < 8; x++)
  159. buffer2[x] = glob->history[(y++) % 8];
  160. co(10, 8, 20, buffer2, temp2, glob->st2a, glob->st2b, table2);
  161. if (pred(temp2, glob->st2, 10))
  162. colmult(glob->pr2, glob->st2, table2a, 10);
  163. }
  164. /* Decode a block (celp) */
  165. static int ra288_decode_frame(AVCodecContext * avctx, void *data,
  166. int *data_size, const uint8_t * buf,
  167. int buf_size)
  168. {
  169. int16_t *out = data;
  170. int x, y;
  171. Real288_internal *glob = avctx->priv_data;
  172. GetBitContext gb;
  173. if (buf_size < avctx->block_align) {
  174. av_log(avctx, AV_LOG_ERROR,
  175. "Error! Input buffer is too small [%d<%d]\n",
  176. buf_size, avctx->block_align);
  177. return 0;
  178. }
  179. init_get_bits(&gb, buf, avctx->block_align * 8);
  180. for (x=0; x < 32; x++) {
  181. float gain = amptable[get_bits(&gb, 3)];
  182. int cb_coef = get_bits(&gb, 6 + (x&1));
  183. glob->phasep = (glob->phase = x & 7) * 5;
  184. decode(glob, gain, cb_coef);
  185. for (y=0; y < 5; y++)
  186. *(out++) = 8 * glob->output[glob->phasep + y];
  187. if (glob->phase == 3)
  188. update(glob);
  189. }
  190. *data_size = (char *)out - (char *)data;
  191. return avctx->block_align;
  192. }
  193. AVCodec ra_288_decoder =
  194. {
  195. "real_288",
  196. CODEC_TYPE_AUDIO,
  197. CODEC_ID_RA_288,
  198. sizeof(Real288_internal),
  199. NULL,
  200. NULL,
  201. NULL,
  202. ra288_decode_frame,
  203. .long_name = NULL_IF_CONFIG_SMALL("RealAudio 2.0 (28.8K)"),
  204. };