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  1. /*
  2. * Opus decoder/demuxer common functions
  3. * Copyright (c) 2012 Andrew D'Addesio
  4. * Copyright (c) 2013-2014 Mozilla Corporation
  5. *
  6. * This file is part of Libav.
  7. *
  8. * Libav is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU Lesser General Public
  10. * License as published by the Free Software Foundation; either
  11. * version 2.1 of the License, or (at your option) any later version.
  12. *
  13. * Libav is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  16. * Lesser General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU Lesser General Public
  19. * License along with Libav; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  21. */
  22. #ifndef AVCODEC_OPUS_H
  23. #define AVCODEC_OPUS_H
  24. #include <stdint.h>
  25. #include "libavutil/audio_fifo.h"
  26. #include "libavutil/float_dsp.h"
  27. #include "libavutil/frame.h"
  28. #include "libavresample/avresample.h"
  29. #include "avcodec.h"
  30. #include "get_bits.h"
  31. #define MAX_FRAME_SIZE 1275
  32. #define MAX_FRAMES 48
  33. #define MAX_PACKET_DUR 5760
  34. #define CELT_SHORT_BLOCKSIZE 120
  35. #define CELT_OVERLAP CELT_SHORT_BLOCKSIZE
  36. #define CELT_MAX_LOG_BLOCKS 3
  37. #define CELT_MAX_FRAME_SIZE (CELT_SHORT_BLOCKSIZE * (1 << CELT_MAX_LOG_BLOCKS))
  38. #define CELT_MAX_BANDS 21
  39. #define CELT_VECTORS 11
  40. #define CELT_ALLOC_STEPS 6
  41. #define CELT_FINE_OFFSET 21
  42. #define CELT_MAX_FINE_BITS 8
  43. #define CELT_NORM_SCALE 16384
  44. #define CELT_QTHETA_OFFSET 4
  45. #define CELT_QTHETA_OFFSET_TWOPHASE 16
  46. #define CELT_DEEMPH_COEFF 0.85000610f
  47. #define CELT_POSTFILTER_MINPERIOD 15
  48. #define CELT_ENERGY_SILENCE (-28.0f)
  49. #define SILK_HISTORY 322
  50. #define SILK_MAX_LPC 16
  51. #define ROUND_MULL(a,b,s) (((MUL64(a, b) >> (s - 1)) + 1) >> 1)
  52. #define ROUND_MUL16(a,b) ((MUL16(a, b) + 16384) >> 15)
  53. #define opus_ilog(i) (av_log2(i) + !!(i))
  54. #define OPUS_TS_HEADER 0x7FE0 // 0x3ff (11 bits)
  55. #define OPUS_TS_MASK 0xFFE0 // top 11 bits
  56. static const uint8_t opus_default_extradata[30] = {
  57. 'O', 'p', 'u', 's', 'H', 'e', 'a', 'd',
  58. 1, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
  59. 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
  60. };
  61. enum OpusMode {
  62. OPUS_MODE_SILK,
  63. OPUS_MODE_HYBRID,
  64. OPUS_MODE_CELT
  65. };
  66. enum OpusBandwidth {
  67. OPUS_BANDWIDTH_NARROWBAND,
  68. OPUS_BANDWIDTH_MEDIUMBAND,
  69. OPUS_BANDWIDTH_WIDEBAND,
  70. OPUS_BANDWIDTH_SUPERWIDEBAND,
  71. OPUS_BANDWIDTH_FULLBAND
  72. };
  73. typedef struct RawBitsContext {
  74. const uint8_t *position;
  75. unsigned int bytes;
  76. unsigned int cachelen;
  77. unsigned int cacheval;
  78. } RawBitsContext;
  79. typedef struct OpusRangeCoder {
  80. GetBitContext gb;
  81. RawBitsContext rb;
  82. unsigned int range;
  83. unsigned int value;
  84. unsigned int total_read_bits;
  85. } OpusRangeCoder;
  86. typedef struct SilkContext SilkContext;
  87. typedef struct CeltContext CeltContext;
  88. typedef struct OpusPacket {
  89. int packet_size; /** packet size */
  90. int data_size; /** size of the useful data -- packet size - padding */
  91. int code; /** packet code: specifies the frame layout */
  92. int stereo; /** whether this packet is mono or stereo */
  93. int vbr; /** vbr flag */
  94. int config; /** configuration: tells the audio mode,
  95. ** bandwidth, and frame duration */
  96. int frame_count; /** frame count */
  97. int frame_offset[MAX_FRAMES]; /** frame offsets */
  98. int frame_size[MAX_FRAMES]; /** frame sizes */
  99. int frame_duration; /** frame duration, in samples @ 48kHz */
  100. enum OpusMode mode; /** mode */
  101. enum OpusBandwidth bandwidth; /** bandwidth */
  102. } OpusPacket;
  103. typedef struct OpusStreamContext {
  104. AVCodecContext *avctx;
  105. int output_channels;
  106. OpusRangeCoder rc;
  107. OpusRangeCoder redundancy_rc;
  108. SilkContext *silk;
  109. CeltContext *celt;
  110. AVFloatDSPContext *fdsp;
  111. float silk_buf[2][960];
  112. float *silk_output[2];
  113. DECLARE_ALIGNED(32, float, celt_buf)[2][960];
  114. float *celt_output[2];
  115. float redundancy_buf[2][960];
  116. float *redundancy_output[2];
  117. /* data buffers for the final output data */
  118. float *out[2];
  119. int out_size;
  120. float *out_dummy;
  121. int out_dummy_allocated_size;
  122. AVAudioResampleContext *avr;
  123. AVAudioFifo *celt_delay;
  124. int silk_samplerate;
  125. /* number of samples we still want to get from the resampler */
  126. int delayed_samples;
  127. OpusPacket packet;
  128. int redundancy_idx;
  129. } OpusStreamContext;
  130. // a mapping between an opus stream and an output channel
  131. typedef struct ChannelMap {
  132. int stream_idx;
  133. int channel_idx;
  134. // when a single decoded channel is mapped to multiple output channels, we
  135. // write to the first output directly and copy from it to the others
  136. // this field is set to 1 for those copied output channels
  137. int copy;
  138. // this is the index of the output channel to copy from
  139. int copy_idx;
  140. // this channel is silent
  141. int silence;
  142. } ChannelMap;
  143. typedef struct OpusContext {
  144. OpusStreamContext *streams;
  145. int nb_streams;
  146. int nb_stereo_streams;
  147. AVFloatDSPContext fdsp;
  148. int16_t gain_i;
  149. float gain;
  150. ChannelMap *channel_maps;
  151. } OpusContext;
  152. static av_always_inline void opus_rc_normalize(OpusRangeCoder *rc)
  153. {
  154. while (rc->range <= 1<<23) {
  155. rc->value = ((rc->value << 8) | (get_bits(&rc->gb, 8) ^ 0xFF)) & ((1u << 31) - 1);
  156. rc->range <<= 8;
  157. rc->total_read_bits += 8;
  158. }
  159. }
  160. static av_always_inline void opus_rc_update(OpusRangeCoder *rc, unsigned int scale,
  161. unsigned int low, unsigned int high,
  162. unsigned int total)
  163. {
  164. rc->value -= scale * (total - high);
  165. rc->range = low ? scale * (high - low)
  166. : rc->range - scale * (total - high);
  167. opus_rc_normalize(rc);
  168. }
  169. static av_always_inline unsigned int opus_rc_getsymbol(OpusRangeCoder *rc, const uint16_t *cdf)
  170. {
  171. unsigned int k, scale, total, symbol, low, high;
  172. total = *cdf++;
  173. scale = rc->range / total;
  174. symbol = rc->value / scale + 1;
  175. symbol = total - FFMIN(symbol, total);
  176. for (k = 0; cdf[k] <= symbol; k++);
  177. high = cdf[k];
  178. low = k ? cdf[k-1] : 0;
  179. opus_rc_update(rc, scale, low, high, total);
  180. return k;
  181. }
  182. static av_always_inline unsigned int opus_rc_p2model(OpusRangeCoder *rc, unsigned int bits)
  183. {
  184. unsigned int k, scale;
  185. scale = rc->range >> bits; // in this case, scale = symbol
  186. if (rc->value >= scale) {
  187. rc->value -= scale;
  188. rc->range -= scale;
  189. k = 0;
  190. } else {
  191. rc->range = scale;
  192. k = 1;
  193. }
  194. opus_rc_normalize(rc);
  195. return k;
  196. }
  197. /**
  198. * CELT: estimate bits of entropy that have thus far been consumed for the
  199. * current CELT frame, to integer and fractional (1/8th bit) precision
  200. */
  201. static av_always_inline unsigned int opus_rc_tell(const OpusRangeCoder *rc)
  202. {
  203. return rc->total_read_bits - av_log2(rc->range) - 1;
  204. }
  205. static av_always_inline unsigned int opus_rc_tell_frac(const OpusRangeCoder *rc)
  206. {
  207. unsigned int i, total_bits, rcbuffer, range;
  208. total_bits = rc->total_read_bits << 3;
  209. rcbuffer = av_log2(rc->range) + 1;
  210. range = rc->range >> (rcbuffer-16);
  211. for (i = 0; i < 3; i++) {
  212. int bit;
  213. range = range * range >> 15;
  214. bit = range >> 16;
  215. rcbuffer = rcbuffer << 1 | bit;
  216. range >>= bit;
  217. }
  218. return total_bits - rcbuffer;
  219. }
  220. /**
  221. * CELT: read 1-25 raw bits at the end of the frame, backwards byte-wise
  222. */
  223. static av_always_inline unsigned int opus_getrawbits(OpusRangeCoder *rc, unsigned int count)
  224. {
  225. unsigned int value = 0;
  226. while (rc->rb.bytes && rc->rb.cachelen < count) {
  227. rc->rb.cacheval |= *--rc->rb.position << rc->rb.cachelen;
  228. rc->rb.cachelen += 8;
  229. rc->rb.bytes--;
  230. }
  231. value = rc->rb.cacheval & ((1<<count)-1);
  232. rc->rb.cacheval >>= count;
  233. rc->rb.cachelen -= count;
  234. rc->total_read_bits += count;
  235. return value;
  236. }
  237. /**
  238. * CELT: read a uniform distribution
  239. */
  240. static av_always_inline unsigned int opus_rc_unimodel(OpusRangeCoder *rc, unsigned int size)
  241. {
  242. unsigned int bits, k, scale, total;
  243. bits = opus_ilog(size - 1);
  244. total = (bits > 8) ? ((size - 1) >> (bits - 8)) + 1 : size;
  245. scale = rc->range / total;
  246. k = rc->value / scale + 1;
  247. k = total - FFMIN(k, total);
  248. opus_rc_update(rc, scale, k, k + 1, total);
  249. if (bits > 8) {
  250. k = k << (bits - 8) | opus_getrawbits(rc, bits - 8);
  251. return FFMIN(k, size - 1);
  252. } else
  253. return k;
  254. }
  255. static av_always_inline int opus_rc_laplace(OpusRangeCoder *rc, unsigned int symbol, int decay)
  256. {
  257. /* extends the range coder to model a Laplace distribution */
  258. int value = 0;
  259. unsigned int scale, low = 0, center;
  260. scale = rc->range >> 15;
  261. center = rc->value / scale + 1;
  262. center = (1 << 15) - FFMIN(center, 1 << 15);
  263. if (center >= symbol) {
  264. value++;
  265. low = symbol;
  266. symbol = 1 + ((32768 - 32 - symbol) * (16384-decay) >> 15);
  267. while (symbol > 1 && center >= low + 2 * symbol) {
  268. value++;
  269. symbol *= 2;
  270. low += symbol;
  271. symbol = (((symbol - 2) * decay) >> 15) + 1;
  272. }
  273. if (symbol <= 1) {
  274. int distance = (center - low) >> 1;
  275. value += distance;
  276. low += 2 * distance;
  277. }
  278. if (center < low + symbol)
  279. value *= -1;
  280. else
  281. low += symbol;
  282. }
  283. opus_rc_update(rc, scale, low, FFMIN(low + symbol, 32768), 32768);
  284. return value;
  285. }
  286. static av_always_inline unsigned int opus_rc_stepmodel(OpusRangeCoder *rc, int k0)
  287. {
  288. /* Use a probability of 3 up to itheta=8192 and then use 1 after */
  289. unsigned int k, scale, symbol, total = (k0+1)*3 + k0;
  290. scale = rc->range / total;
  291. symbol = rc->value / scale + 1;
  292. symbol = total - FFMIN(symbol, total);
  293. k = (symbol < (k0+1)*3) ? symbol/3 : symbol - (k0+1)*2;
  294. opus_rc_update(rc, scale, (k <= k0) ? 3*(k+0) : (k-1-k0) + 3*(k0+1),
  295. (k <= k0) ? 3*(k+1) : (k-0-k0) + 3*(k0+1), total);
  296. return k;
  297. }
  298. static av_always_inline unsigned int opus_rc_trimodel(OpusRangeCoder *rc, int qn)
  299. {
  300. unsigned int k, scale, symbol, total, low, center;
  301. total = ((qn>>1) + 1) * ((qn>>1) + 1);
  302. scale = rc->range / total;
  303. center = rc->value / scale + 1;
  304. center = total - FFMIN(center, total);
  305. if (center < total >> 1) {
  306. k = (ff_sqrt(8 * center + 1) - 1) >> 1;
  307. low = k * (k + 1) >> 1;
  308. symbol = k + 1;
  309. } else {
  310. k = (2*(qn + 1) - ff_sqrt(8*(total - center - 1) + 1)) >> 1;
  311. low = total - ((qn + 1 - k) * (qn + 2 - k) >> 1);
  312. symbol = qn + 1 - k;
  313. }
  314. opus_rc_update(rc, scale, low, low + symbol, total);
  315. return k;
  316. }
  317. int ff_opus_parse_packet(OpusPacket *pkt, const uint8_t *buf, int buf_size,
  318. int self_delimited);
  319. int ff_opus_parse_extradata(AVCodecContext *avctx, OpusContext *s);
  320. int ff_silk_init(AVCodecContext *avctx, SilkContext **ps, int output_channels);
  321. void ff_silk_free(SilkContext **ps);
  322. void ff_silk_flush(SilkContext *s);
  323. /**
  324. * Decode the LP layer of one Opus frame (which may correspond to several SILK
  325. * frames).
  326. */
  327. int ff_silk_decode_superframe(SilkContext *s, OpusRangeCoder *rc,
  328. float *output[2],
  329. enum OpusBandwidth bandwidth, int coded_channels,
  330. int duration_ms);
  331. int ff_celt_init(AVCodecContext *avctx, CeltContext **s, int output_channels);
  332. void ff_celt_free(CeltContext **s);
  333. void ff_celt_flush(CeltContext *s);
  334. int ff_celt_decode_frame(CeltContext *s, OpusRangeCoder *rc,
  335. float **output, int coded_channels, int frame_size,
  336. int startband, int endband);
  337. extern const float ff_celt_window2[120];
  338. #endif /* AVCODEC_OPUS_H */