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  1. /*
  2. * AAC definitions and structures
  3. * Copyright (c) 2005-2006 Oded Shimon ( ods15 ods15 dyndns org )
  4. * Copyright (c) 2006-2007 Maxim Gavrilov ( maxim.gavrilov gmail com )
  5. *
  6. * This file is part of FFmpeg.
  7. *
  8. * FFmpeg 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. * FFmpeg 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 FFmpeg; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  21. */
  22. /**
  23. * @file
  24. * AAC definitions and structures
  25. * @author Oded Shimon ( ods15 ods15 dyndns org )
  26. * @author Maxim Gavrilov ( maxim.gavrilov gmail com )
  27. */
  28. #ifndef AVCODEC_AAC_H
  29. #define AVCODEC_AAC_H
  30. #include "avcodec.h"
  31. #include "dsputil.h"
  32. #include "fft.h"
  33. #include "mpeg4audio.h"
  34. #include "sbr.h"
  35. #include "fmtconvert.h"
  36. #include <stdint.h>
  37. #define MAX_CHANNELS 64
  38. #define MAX_ELEM_ID 16
  39. #define TNS_MAX_ORDER 20
  40. enum RawDataBlockType {
  41. TYPE_SCE,
  42. TYPE_CPE,
  43. TYPE_CCE,
  44. TYPE_LFE,
  45. TYPE_DSE,
  46. TYPE_PCE,
  47. TYPE_FIL,
  48. TYPE_END,
  49. };
  50. enum ExtensionPayloadID {
  51. EXT_FILL,
  52. EXT_FILL_DATA,
  53. EXT_DATA_ELEMENT,
  54. EXT_DYNAMIC_RANGE = 0xb,
  55. EXT_SBR_DATA = 0xd,
  56. EXT_SBR_DATA_CRC = 0xe,
  57. };
  58. enum WindowSequence {
  59. ONLY_LONG_SEQUENCE,
  60. LONG_START_SEQUENCE,
  61. EIGHT_SHORT_SEQUENCE,
  62. LONG_STOP_SEQUENCE,
  63. };
  64. enum BandType {
  65. ZERO_BT = 0, ///< Scalefactors and spectral data are all zero.
  66. FIRST_PAIR_BT = 5, ///< This and later band types encode two values (rather than four) with one code word.
  67. ESC_BT = 11, ///< Spectral data are coded with an escape sequence.
  68. NOISE_BT = 13, ///< Spectral data are scaled white noise not coded in the bitstream.
  69. INTENSITY_BT2 = 14, ///< Scalefactor data are intensity stereo positions.
  70. INTENSITY_BT = 15, ///< Scalefactor data are intensity stereo positions.
  71. };
  72. #define IS_CODEBOOK_UNSIGNED(x) ((x - 1) & 10)
  73. enum ChannelPosition {
  74. AAC_CHANNEL_FRONT = 1,
  75. AAC_CHANNEL_SIDE = 2,
  76. AAC_CHANNEL_BACK = 3,
  77. AAC_CHANNEL_LFE = 4,
  78. AAC_CHANNEL_CC = 5,
  79. };
  80. /**
  81. * The point during decoding at which channel coupling is applied.
  82. */
  83. enum CouplingPoint {
  84. BEFORE_TNS,
  85. BETWEEN_TNS_AND_IMDCT,
  86. AFTER_IMDCT = 3,
  87. };
  88. /**
  89. * Output configuration status
  90. */
  91. enum OCStatus {
  92. OC_NONE, //< Output unconfigured
  93. OC_TRIAL_PCE, //< Output configuration under trial specified by an inband PCE
  94. OC_TRIAL_FRAME, //< Output configuration under trial specified by a frame header
  95. OC_GLOBAL_HDR, //< Output configuration set in a global header but not yet locked
  96. OC_LOCKED, //< Output configuration locked in place
  97. };
  98. /**
  99. * Predictor State
  100. */
  101. typedef struct {
  102. float cor0;
  103. float cor1;
  104. float var0;
  105. float var1;
  106. float r0;
  107. float r1;
  108. } PredictorState;
  109. #define MAX_PREDICTORS 672
  110. #define SCALE_DIV_512 36 ///< scalefactor difference that corresponds to scale difference in 512 times
  111. #define SCALE_ONE_POS 140 ///< scalefactor index that corresponds to scale=1.0
  112. #define SCALE_MAX_POS 255 ///< scalefactor index maximum value
  113. #define SCALE_MAX_DIFF 60 ///< maximum scalefactor difference allowed by standard
  114. #define SCALE_DIFF_ZERO 60 ///< codebook index corresponding to zero scalefactor indices difference
  115. /**
  116. * Individual Channel Stream
  117. */
  118. typedef struct {
  119. uint8_t max_sfb; ///< number of scalefactor bands per group
  120. enum WindowSequence window_sequence[2];
  121. uint8_t use_kb_window[2]; ///< If set, use Kaiser-Bessel window, otherwise use a sinus window.
  122. int num_window_groups;
  123. uint8_t group_len[8];
  124. const uint16_t *swb_offset; ///< table of offsets to the lowest spectral coefficient of a scalefactor band, sfb, for a particular window
  125. const uint8_t *swb_sizes; ///< table of scalefactor band sizes for a particular window
  126. int num_swb; ///< number of scalefactor window bands
  127. int num_windows;
  128. int tns_max_bands;
  129. int predictor_present;
  130. int predictor_initialized;
  131. int predictor_reset_group;
  132. uint8_t prediction_used[41];
  133. } IndividualChannelStream;
  134. /**
  135. * Temporal Noise Shaping
  136. */
  137. typedef struct {
  138. int present;
  139. int n_filt[8];
  140. int length[8][4];
  141. int direction[8][4];
  142. int order[8][4];
  143. float coef[8][4][TNS_MAX_ORDER];
  144. } TemporalNoiseShaping;
  145. /**
  146. * Dynamic Range Control - decoded from the bitstream but not processed further.
  147. */
  148. typedef struct {
  149. int pce_instance_tag; ///< Indicates with which program the DRC info is associated.
  150. int dyn_rng_sgn[17]; ///< DRC sign information; 0 - positive, 1 - negative
  151. int dyn_rng_ctl[17]; ///< DRC magnitude information
  152. int exclude_mask[MAX_CHANNELS]; ///< Channels to be excluded from DRC processing.
  153. int band_incr; ///< Number of DRC bands greater than 1 having DRC info.
  154. int interpolation_scheme; ///< Indicates the interpolation scheme used in the SBR QMF domain.
  155. int band_top[17]; ///< Indicates the top of the i-th DRC band in units of 4 spectral lines.
  156. int prog_ref_level; /**< A reference level for the long-term program audio level for all
  157. * channels combined.
  158. */
  159. } DynamicRangeControl;
  160. typedef struct {
  161. int num_pulse;
  162. int start;
  163. int pos[4];
  164. int amp[4];
  165. } Pulse;
  166. /**
  167. * coupling parameters
  168. */
  169. typedef struct {
  170. enum CouplingPoint coupling_point; ///< The point during decoding at which coupling is applied.
  171. int num_coupled; ///< number of target elements
  172. enum RawDataBlockType type[8]; ///< Type of channel element to be coupled - SCE or CPE.
  173. int id_select[8]; ///< element id
  174. int ch_select[8]; /**< [0] shared list of gains; [1] list of gains for right channel;
  175. * [2] list of gains for left channel; [3] lists of gains for both channels
  176. */
  177. float gain[16][120];
  178. } ChannelCoupling;
  179. /**
  180. * Single Channel Element - used for both SCE and LFE elements.
  181. */
  182. typedef struct {
  183. IndividualChannelStream ics;
  184. TemporalNoiseShaping tns;
  185. Pulse pulse;
  186. enum BandType band_type[128]; ///< band types
  187. int band_type_run_end[120]; ///< band type run end points
  188. float sf[120]; ///< scalefactors
  189. int sf_idx[128]; ///< scalefactor indices (used by encoder)
  190. uint8_t zeroes[128]; ///< band is not coded (used by encoder)
  191. DECLARE_ALIGNED(16, float, coeffs)[1024]; ///< coefficients for IMDCT
  192. DECLARE_ALIGNED(16, float, saved)[1024]; ///< overlap
  193. DECLARE_ALIGNED(16, float, ret)[2048]; ///< PCM output
  194. PredictorState predictor_state[MAX_PREDICTORS];
  195. } SingleChannelElement;
  196. /**
  197. * channel element - generic struct for SCE/CPE/CCE/LFE
  198. */
  199. typedef struct {
  200. // CPE specific
  201. int common_window; ///< Set if channels share a common 'IndividualChannelStream' in bitstream.
  202. int ms_mode; ///< Signals mid/side stereo flags coding mode (used by encoder)
  203. uint8_t ms_mask[128]; ///< Set if mid/side stereo is used for each scalefactor window band
  204. // shared
  205. SingleChannelElement ch[2];
  206. // CCE specific
  207. ChannelCoupling coup;
  208. SpectralBandReplication sbr;
  209. } ChannelElement;
  210. /**
  211. * main AAC context
  212. */
  213. typedef struct {
  214. AVCodecContext *avctx;
  215. MPEG4AudioConfig m4ac;
  216. int is_saved; ///< Set if elements have stored overlap from previous frame.
  217. DynamicRangeControl che_drc;
  218. /**
  219. * @defgroup elements Channel element related data.
  220. * @{
  221. */
  222. enum ChannelPosition che_pos[4][MAX_ELEM_ID]; /**< channel element channel mapping with the
  223. * first index as the first 4 raw data block types
  224. */
  225. ChannelElement *che[4][MAX_ELEM_ID];
  226. ChannelElement *tag_che_map[4][MAX_ELEM_ID];
  227. int tags_mapped;
  228. /** @} */
  229. /**
  230. * @defgroup temporary aligned temporary buffers (We do not want to have these on the stack.)
  231. * @{
  232. */
  233. DECLARE_ALIGNED(16, float, buf_mdct)[1024];
  234. /** @} */
  235. /**
  236. * @defgroup tables Computed / set up during initialization.
  237. * @{
  238. */
  239. FFTContext mdct;
  240. FFTContext mdct_small;
  241. DSPContext dsp;
  242. FmtConvertContext fmt_conv;
  243. int random_state;
  244. /** @} */
  245. /**
  246. * @defgroup output Members used for output interleaving.
  247. * @{
  248. */
  249. float *output_data[MAX_CHANNELS]; ///< Points to each element's 'ret' buffer (PCM output).
  250. float sf_scale; ///< Pre-scale for correct IMDCT and dsp.float_to_int16.
  251. int sf_offset; ///< offset into pow2sf_tab as appropriate for dsp.float_to_int16
  252. /** @} */
  253. DECLARE_ALIGNED(16, float, temp)[128];
  254. enum OCStatus output_configured;
  255. } AACContext;
  256. #endif /* AVCODEC_AAC_H */