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  1. /*
  2. * Musepack SV8 decoder
  3. * Copyright (c) 2007 Konstantin Shishkov
  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. /**
  22. * @file mpc8.c Musepack SV8 decoder
  23. * MPEG Audio Layer 1/2 -like codec with frames of 1152 samples
  24. * divided into 32 subbands.
  25. */
  26. #include "avcodec.h"
  27. #include "bitstream.h"
  28. #include "dsputil.h"
  29. #include "random.h"
  30. #ifdef CONFIG_MPEGAUDIO_HP
  31. #define USE_HIGHPRECISION
  32. #endif
  33. #include "mpegaudio.h"
  34. #include "mpc.h"
  35. #include "mpcdata.h"
  36. #include "mpc8data.h"
  37. #include "mpc8huff.h"
  38. static VLC band_vlc, scfi_vlc[2], dscf_vlc[2], res_vlc[2];
  39. static VLC q1_vlc, q2_vlc[2], q3_vlc[2], quant_vlc[4][2], q9up_vlc;
  40. static const int q3_offsets[2] = { MPC8_Q3_OFFSET, MPC8_Q4_OFFSET };
  41. static const int quant_offsets[6] = { MPC8_Q5_OFFSET, MPC8_Q6_OFFSET, MPC8_Q7_OFFSET, MPC8_Q8_OFFSET };
  42. static inline int mpc8_dec_base(GetBitContext *gb, int k, int n)
  43. {
  44. int code = get_bits(gb, mpc8_cnk_len[k-1][n-1] - 1);
  45. if (code >= mpc8_cnk_lost[k-1][n-1])
  46. code = ((code << 1) | get_bits1(gb)) - mpc8_cnk_lost[k-1][n-1];
  47. return code;
  48. }
  49. static inline int mpc8_dec_enum(GetBitContext *gb, int k, int n)
  50. {
  51. int bits = 0;
  52. const uint32_t * C = mpc8_cnk[k-1];
  53. int code = mpc8_dec_base(gb, k, n);
  54. do {
  55. n--;
  56. if (code >= C[n]) {
  57. bits |= 1 << n;
  58. code -= C[n];
  59. C -= 32;
  60. k--;
  61. }
  62. } while(k > 0);
  63. return bits;
  64. }
  65. static inline int mpc8_get_mod_golomb(GetBitContext *gb, int m)
  66. {
  67. if(mpc8_cnk_len[0][m] < 1) return 0;
  68. return mpc8_dec_base(gb, 1, m+1);
  69. }
  70. static int mpc8_get_mask(GetBitContext *gb, int size, int t)
  71. {
  72. int mask = 0;
  73. if(t && t != size)
  74. mask = mpc8_dec_enum(gb, FFMIN(t, size - t), size);
  75. if((t << 1) > size) mask = ~mask;
  76. return mask;
  77. }
  78. static int mpc8_decode_init(AVCodecContext * avctx)
  79. {
  80. int i;
  81. MPCContext *c = avctx->priv_data;
  82. GetBitContext gb;
  83. static int vlc_initialized = 0;
  84. if(avctx->extradata_size < 2){
  85. av_log(avctx, AV_LOG_ERROR, "Too small extradata size (%i)!\n", avctx->extradata_size);
  86. return -1;
  87. }
  88. memset(c->oldDSCF, 0, sizeof(c->oldDSCF));
  89. av_init_random(0xDEADBEEF, &c->rnd);
  90. dsputil_init(&c->dsp, avctx);
  91. ff_mpc_init();
  92. init_get_bits(&gb, avctx->extradata, 16);
  93. skip_bits(&gb, 3);//sample rate
  94. c->maxbands = get_bits(&gb, 5) + 1;
  95. skip_bits(&gb, 4);//channels
  96. c->MSS = get_bits1(&gb);
  97. c->frames = 1 << (get_bits(&gb, 3) * 2);
  98. if(vlc_initialized) return 0;
  99. av_log(avctx, AV_LOG_DEBUG, "Initing VLC\n");
  100. init_vlc(&band_vlc, MPC8_BANDS_BITS, MPC8_BANDS_SIZE,
  101. mpc8_bands_bits, 1, 1,
  102. mpc8_bands_codes, 1, 1, INIT_VLC_USE_STATIC);
  103. init_vlc(&q1_vlc, MPC8_Q1_BITS, MPC8_Q1_SIZE,
  104. mpc8_q1_bits, 1, 1,
  105. mpc8_q1_codes, 1, 1, INIT_VLC_USE_STATIC);
  106. init_vlc(&q9up_vlc, MPC8_Q9UP_BITS, MPC8_Q9UP_SIZE,
  107. mpc8_q9up_bits, 1, 1,
  108. mpc8_q9up_codes, 1, 1, INIT_VLC_USE_STATIC);
  109. init_vlc(&scfi_vlc[0], MPC8_SCFI0_BITS, MPC8_SCFI0_SIZE,
  110. mpc8_scfi0_bits, 1, 1,
  111. mpc8_scfi0_codes, 1, 1, INIT_VLC_USE_STATIC);
  112. init_vlc(&scfi_vlc[1], MPC8_SCFI1_BITS, MPC8_SCFI1_SIZE,
  113. mpc8_scfi1_bits, 1, 1,
  114. mpc8_scfi1_codes, 1, 1, INIT_VLC_USE_STATIC);
  115. init_vlc(&dscf_vlc[0], MPC8_DSCF0_BITS, MPC8_DSCF0_SIZE,
  116. mpc8_dscf0_bits, 1, 1,
  117. mpc8_dscf0_codes, 1, 1, INIT_VLC_USE_STATIC);
  118. init_vlc(&dscf_vlc[1], MPC8_DSCF1_BITS, MPC8_DSCF1_SIZE,
  119. mpc8_dscf1_bits, 1, 1,
  120. mpc8_dscf1_codes, 1, 1, INIT_VLC_USE_STATIC);
  121. init_vlc_sparse(&q3_vlc[0], MPC8_Q3_BITS, MPC8_Q3_SIZE,
  122. mpc8_q3_bits, 1, 1,
  123. mpc8_q3_codes, 1, 1,
  124. mpc8_q3_syms, 1, 1, INIT_VLC_USE_STATIC);
  125. init_vlc_sparse(&q3_vlc[1], MPC8_Q4_BITS, MPC8_Q4_SIZE,
  126. mpc8_q4_bits, 1, 1,
  127. mpc8_q4_codes, 1, 1,
  128. mpc8_q4_syms, 1, 1, INIT_VLC_USE_STATIC);
  129. for(i = 0; i < 2; i++){
  130. init_vlc(&res_vlc[i], MPC8_RES_BITS, MPC8_RES_SIZE,
  131. &mpc8_res_bits[i], 1, 1,
  132. &mpc8_res_codes[i], 1, 1, INIT_VLC_USE_STATIC);
  133. init_vlc(&q2_vlc[i], MPC8_Q2_BITS, MPC8_Q2_SIZE,
  134. &mpc8_q2_bits[i], 1, 1,
  135. &mpc8_q2_codes[i], 1, 1, INIT_VLC_USE_STATIC);
  136. init_vlc(&quant_vlc[0][i], MPC8_Q5_BITS, MPC8_Q5_SIZE,
  137. &mpc8_q5_bits[i], 1, 1,
  138. &mpc8_q5_codes[i], 1, 1, INIT_VLC_USE_STATIC);
  139. init_vlc(&quant_vlc[1][i], MPC8_Q6_BITS, MPC8_Q6_SIZE,
  140. &mpc8_q6_bits[i], 1, 1,
  141. &mpc8_q6_codes[i], 1, 1, INIT_VLC_USE_STATIC);
  142. init_vlc(&quant_vlc[2][i], MPC8_Q7_BITS, MPC8_Q7_SIZE,
  143. &mpc8_q7_bits[i], 1, 1,
  144. &mpc8_q7_codes[i], 1, 1, INIT_VLC_USE_STATIC);
  145. init_vlc(&quant_vlc[3][i], MPC8_Q8_BITS, MPC8_Q8_SIZE,
  146. &mpc8_q8_bits[i], 1, 1,
  147. &mpc8_q8_codes[i], 1, 1, INIT_VLC_USE_STATIC);
  148. }
  149. vlc_initialized = 1;
  150. return 0;
  151. }
  152. static int mpc8_decode_frame(AVCodecContext * avctx,
  153. void *data, int *data_size,
  154. const uint8_t * buf, int buf_size)
  155. {
  156. MPCContext *c = avctx->priv_data;
  157. GetBitContext gb2, *gb = &gb2;
  158. int i, j, k, ch, cnt, res, t;
  159. Band *bands = c->bands;
  160. int off;
  161. int maxband, keyframe;
  162. int last[2];
  163. keyframe = c->cur_frame == 0;
  164. if(keyframe){
  165. memset(c->Q, 0, sizeof(c->Q));
  166. c->last_bits_used = 0;
  167. }
  168. init_get_bits(gb, buf, buf_size * 8);
  169. skip_bits(gb, c->last_bits_used & 7);
  170. if(keyframe)
  171. maxband = mpc8_get_mod_golomb(gb, c->maxbands + 1);
  172. else{
  173. maxband = c->last_max_band + get_vlc2(gb, band_vlc.table, MPC8_BANDS_BITS, 2);
  174. if(maxband > 32) maxband -= 33;
  175. }
  176. c->last_max_band = maxband;
  177. /* read subband indexes */
  178. if(maxband){
  179. last[0] = last[1] = 0;
  180. for(i = maxband - 1; i >= 0; i--){
  181. for(ch = 0; ch < 2; ch++){
  182. last[ch] = get_vlc2(gb, res_vlc[last[ch] > 2].table, MPC8_RES_BITS, 2) + last[ch];
  183. if(last[ch] > 15) last[ch] -= 17;
  184. bands[i].res[ch] = last[ch];
  185. }
  186. }
  187. if(c->MSS){
  188. int mask;
  189. cnt = 0;
  190. for(i = 0; i < maxband; i++)
  191. if(bands[i].res[0] || bands[i].res[1])
  192. cnt++;
  193. t = mpc8_get_mod_golomb(gb, cnt);
  194. mask = mpc8_get_mask(gb, cnt, t);
  195. for(i = maxband - 1; i >= 0; i--)
  196. if(bands[i].res[0] || bands[i].res[1]){
  197. bands[i].msf = mask & 1;
  198. mask >>= 1;
  199. }
  200. }
  201. }
  202. for(i = maxband; i < c->maxbands; i++)
  203. bands[i].res[0] = bands[i].res[1] = 0;
  204. if(keyframe){
  205. for(i = 0; i < 32; i++)
  206. c->oldDSCF[0][i] = c->oldDSCF[1][i] = 1;
  207. }
  208. for(i = 0; i < maxband; i++){
  209. if(bands[i].res[0] || bands[i].res[1]){
  210. cnt = !!bands[i].res[0] + !!bands[i].res[1] - 1;
  211. if(cnt >= 0){
  212. t = get_vlc2(gb, scfi_vlc[cnt].table, scfi_vlc[cnt].bits, 1);
  213. if(bands[i].res[0]) bands[i].scfi[0] = t >> (2 * cnt);
  214. if(bands[i].res[1]) bands[i].scfi[1] = t & 3;
  215. }
  216. }
  217. }
  218. for(i = 0; i < maxband; i++){
  219. for(ch = 0; ch < 2; ch++){
  220. if(!bands[i].res[ch]) continue;
  221. if(c->oldDSCF[ch][i]){
  222. bands[i].scf_idx[ch][0] = get_bits(gb, 7) - 6;
  223. c->oldDSCF[ch][i] = 0;
  224. }else{
  225. t = get_vlc2(gb, dscf_vlc[1].table, MPC8_DSCF1_BITS, 2);
  226. if(t == 64)
  227. t += get_bits(gb, 6);
  228. bands[i].scf_idx[ch][0] = ((bands[i].scf_idx[ch][2] + t - 25) & 0x7F) - 6;
  229. }
  230. for(j = 0; j < 2; j++){
  231. if((bands[i].scfi[ch] << j) & 2)
  232. bands[i].scf_idx[ch][j + 1] = bands[i].scf_idx[ch][j];
  233. else{
  234. t = get_vlc2(gb, dscf_vlc[0].table, MPC8_DSCF0_BITS, 2);
  235. if(t == 31)
  236. t = 64 + get_bits(gb, 6);
  237. bands[i].scf_idx[ch][j + 1] = ((bands[i].scf_idx[ch][j] + t - 25) & 0x7F) - 6;
  238. }
  239. }
  240. }
  241. }
  242. for(i = 0, off = 0; i < maxband; i++, off += SAMPLES_PER_BAND){
  243. for(ch = 0; ch < 2; ch++){
  244. res = bands[i].res[ch];
  245. switch(res){
  246. case -1:
  247. for(j = 0; j < SAMPLES_PER_BAND; j++)
  248. c->Q[ch][off + j] = (av_random(&c->rnd) & 0x3FC) - 510;
  249. break;
  250. case 0:
  251. break;
  252. case 1:
  253. for(j = 0; j < SAMPLES_PER_BAND; j += SAMPLES_PER_BAND / 2){
  254. cnt = get_vlc2(gb, q1_vlc.table, MPC8_Q1_BITS, 2);
  255. t = mpc8_get_mask(gb, 18, cnt);
  256. for(k = 0; k < SAMPLES_PER_BAND / 2; k++, t <<= 1)
  257. c->Q[ch][off + j + k] = (t & 0x20000) ? (get_bits1(gb) << 1) - 1 : 0;
  258. }
  259. break;
  260. case 2:
  261. cnt = 6;//2*mpc8_thres[res]
  262. for(j = 0; j < SAMPLES_PER_BAND; j += 3){
  263. t = get_vlc2(gb, q2_vlc[cnt > 3].table, MPC8_Q2_BITS, 2);
  264. c->Q[ch][off + j + 0] = mpc8_idx50[t];
  265. c->Q[ch][off + j + 1] = mpc8_idx51[t];
  266. c->Q[ch][off + j + 2] = mpc8_idx52[t];
  267. cnt = (cnt >> 1) + mpc8_huffq2[t];
  268. }
  269. break;
  270. case 3:
  271. case 4:
  272. for(j = 0; j < SAMPLES_PER_BAND; j += 2){
  273. t = get_vlc2(gb, q3_vlc[res - 3].table, MPC8_Q3_BITS, 2) + q3_offsets[res - 3];
  274. c->Q[ch][off + j + 1] = t >> 4;
  275. c->Q[ch][off + j + 0] = (t & 8) ? (t & 0xF) - 16 : (t & 0xF);
  276. }
  277. break;
  278. case 5:
  279. case 6:
  280. case 7:
  281. case 8:
  282. cnt = 2 * mpc8_thres[res];
  283. for(j = 0; j < SAMPLES_PER_BAND; j++){
  284. t = get_vlc2(gb, quant_vlc[res - 5][cnt > mpc8_thres[res]].table, quant_vlc[res - 5][cnt > mpc8_thres[res]].bits, 2) + quant_offsets[res - 5];
  285. c->Q[ch][off + j] = t;
  286. cnt = (cnt >> 1) + FFABS(c->Q[ch][off + j]);
  287. }
  288. break;
  289. default:
  290. for(j = 0; j < SAMPLES_PER_BAND; j++){
  291. c->Q[ch][off + j] = get_vlc2(gb, q9up_vlc.table, MPC8_Q9UP_BITS, 2);
  292. if(res != 9){
  293. c->Q[ch][off + j] <<= res - 9;
  294. c->Q[ch][off + j] |= get_bits(gb, res - 9);
  295. }
  296. c->Q[ch][off + j] -= (1 << (res - 2)) - 1;
  297. }
  298. }
  299. }
  300. }
  301. ff_mpc_dequantize_and_synth(c, maxband, data);
  302. c->cur_frame++;
  303. c->last_bits_used = get_bits_count(gb);
  304. if(c->cur_frame >= c->frames)
  305. c->cur_frame = 0;
  306. *data_size = MPC_FRAME_SIZE * 4;
  307. return c->cur_frame ? c->last_bits_used >> 3 : buf_size;
  308. }
  309. AVCodec mpc8_decoder = {
  310. "mpc sv8",
  311. CODEC_TYPE_AUDIO,
  312. CODEC_ID_MUSEPACK8,
  313. sizeof(MPCContext),
  314. mpc8_decode_init,
  315. NULL,
  316. NULL,
  317. mpc8_decode_frame,
  318. };