xref: /third_party/ffmpeg/libavcodec/aac.h (revision cabdff1a)
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/**
24 * @file
25 * AAC definitions and structures
26 * @author Oded Shimon  ( ods15 ods15 dyndns org )
27 * @author Maxim Gavrilov ( maxim.gavrilov gmail com )
28 */
29
30#ifndef AVCODEC_AAC_H
31#define AVCODEC_AAC_H
32
33
34#include "aac_defines.h"
35#include "libavutil/channel_layout.h"
36#include "libavutil/float_dsp.h"
37#include "libavutil/fixed_dsp.h"
38#include "libavutil/mem_internal.h"
39#include "avcodec.h"
40#if !USE_FIXED
41#include "mdct15.h"
42#endif
43#include "fft.h"
44#include "mpeg4audio.h"
45#include "sbr.h"
46
47#include <stdint.h>
48
49#define MAX_CHANNELS 64
50#define MAX_ELEM_ID 16
51
52#define TNS_MAX_ORDER 20
53#define MAX_LTP_LONG_SFB 40
54
55#define CLIP_AVOIDANCE_FACTOR 0.95f
56
57enum RawDataBlockType {
58    TYPE_SCE,
59    TYPE_CPE,
60    TYPE_CCE,
61    TYPE_LFE,
62    TYPE_DSE,
63    TYPE_PCE,
64    TYPE_FIL,
65    TYPE_END,
66};
67
68enum ExtensionPayloadID {
69    EXT_FILL,
70    EXT_FILL_DATA,
71    EXT_DATA_ELEMENT,
72    EXT_DYNAMIC_RANGE = 0xb,
73    EXT_SBR_DATA      = 0xd,
74    EXT_SBR_DATA_CRC  = 0xe,
75};
76
77enum WindowSequence {
78    ONLY_LONG_SEQUENCE,
79    LONG_START_SEQUENCE,
80    EIGHT_SHORT_SEQUENCE,
81    LONG_STOP_SEQUENCE,
82};
83
84enum BandType {
85    ZERO_BT        = 0,     ///< Scalefactors and spectral data are all zero.
86    FIRST_PAIR_BT  = 5,     ///< This and later band types encode two values (rather than four) with one code word.
87    ESC_BT         = 11,    ///< Spectral data are coded with an escape sequence.
88    RESERVED_BT    = 12,    ///< Band types following are encoded differently from others.
89    NOISE_BT       = 13,    ///< Spectral data are scaled white noise not coded in the bitstream.
90    INTENSITY_BT2  = 14,    ///< Scalefactor data are intensity stereo positions (out of phase).
91    INTENSITY_BT   = 15,    ///< Scalefactor data are intensity stereo positions (in phase).
92};
93
94#define IS_CODEBOOK_UNSIGNED(x) (((x) - 1) & 10)
95
96enum ChannelPosition {
97    AAC_CHANNEL_OFF   = 0,
98    AAC_CHANNEL_FRONT = 1,
99    AAC_CHANNEL_SIDE  = 2,
100    AAC_CHANNEL_BACK  = 3,
101    AAC_CHANNEL_LFE   = 4,
102    AAC_CHANNEL_CC    = 5,
103};
104
105/**
106 * The point during decoding at which channel coupling is applied.
107 */
108enum CouplingPoint {
109    BEFORE_TNS,
110    BETWEEN_TNS_AND_IMDCT,
111    AFTER_IMDCT = 3,
112};
113
114/**
115 * Output configuration status
116 */
117enum OCStatus {
118    OC_NONE,        ///< Output unconfigured
119    OC_TRIAL_PCE,   ///< Output configuration under trial specified by an inband PCE
120    OC_TRIAL_FRAME, ///< Output configuration under trial specified by a frame header
121    OC_GLOBAL_HDR,  ///< Output configuration set in a global header but not yet locked
122    OC_LOCKED,      ///< Output configuration locked in place
123};
124
125typedef struct OutputConfiguration {
126    MPEG4AudioConfig m4ac;
127    uint8_t layout_map[MAX_ELEM_ID*4][3];
128    int layout_map_tags;
129    AVChannelLayout ch_layout;
130    enum OCStatus status;
131} OutputConfiguration;
132
133/**
134 * Predictor State
135 */
136typedef struct PredictorState {
137    AAC_FLOAT cor0;
138    AAC_FLOAT cor1;
139    AAC_FLOAT var0;
140    AAC_FLOAT var1;
141    AAC_FLOAT r0;
142    AAC_FLOAT r1;
143    AAC_FLOAT k1;
144    AAC_FLOAT x_est;
145} PredictorState;
146
147#define MAX_PREDICTORS 672
148
149#define SCALE_DIV_512    36    ///< scalefactor difference that corresponds to scale difference in 512 times
150#define SCALE_ONE_POS   140    ///< scalefactor index that corresponds to scale=1.0
151#define SCALE_MAX_POS   255    ///< scalefactor index maximum value
152#define SCALE_MAX_DIFF   60    ///< maximum scalefactor difference allowed by standard
153#define SCALE_DIFF_ZERO  60    ///< codebook index corresponding to zero scalefactor indices difference
154
155#define POW_SF2_ZERO    200    ///< ff_aac_pow2sf_tab index corresponding to pow(2, 0);
156
157#define NOISE_PRE       256    ///< preamble for NOISE_BT, put in bitstream with the first noise band
158#define NOISE_PRE_BITS    9    ///< length of preamble
159#define NOISE_OFFSET     90    ///< subtracted from global gain, used as offset for the preamble
160
161/**
162 * Long Term Prediction
163 */
164typedef struct LongTermPrediction {
165    int8_t present;
166    int16_t lag;
167    int coef_idx;
168    INTFLOAT coef;
169    int8_t used[MAX_LTP_LONG_SFB];
170} LongTermPrediction;
171
172/**
173 * Individual Channel Stream
174 */
175typedef struct IndividualChannelStream {
176    uint8_t max_sfb;            ///< number of scalefactor bands per group
177    enum WindowSequence window_sequence[2];
178    uint8_t use_kb_window[2];   ///< If set, use Kaiser-Bessel window, otherwise use a sine window.
179    int num_window_groups;
180    uint8_t group_len[8];
181    LongTermPrediction ltp;
182    const uint16_t *swb_offset; ///< table of offsets to the lowest spectral coefficient of a scalefactor band, sfb, for a particular window
183    const uint8_t *swb_sizes;   ///< table of scalefactor band sizes for a particular window
184    int num_swb;                ///< number of scalefactor window bands
185    int num_windows;
186    int tns_max_bands;
187    int predictor_present;
188    int predictor_initialized;
189    int predictor_reset_group;
190    int predictor_reset_count[31];  ///< used by encoder to count prediction resets
191    uint8_t prediction_used[41];
192    uint8_t window_clipping[8]; ///< set if a certain window is near clipping
193    float clip_avoidance_factor; ///< set if any window is near clipping to the necessary atennuation factor to avoid it
194} IndividualChannelStream;
195
196/**
197 * Temporal Noise Shaping
198 */
199typedef struct TemporalNoiseShaping {
200    int present;
201    int n_filt[8];
202    int length[8][4];
203    int direction[8][4];
204    int order[8][4];
205    int coef_idx[8][4][TNS_MAX_ORDER];
206    INTFLOAT coef[8][4][TNS_MAX_ORDER];
207} TemporalNoiseShaping;
208
209/**
210 * Dynamic Range Control - decoded from the bitstream but not processed further.
211 */
212typedef struct DynamicRangeControl {
213    int pce_instance_tag;                           ///< Indicates with which program the DRC info is associated.
214    int dyn_rng_sgn[17];                            ///< DRC sign information; 0 - positive, 1 - negative
215    int dyn_rng_ctl[17];                            ///< DRC magnitude information
216    int exclude_mask[MAX_CHANNELS];                 ///< Channels to be excluded from DRC processing.
217    int band_incr;                                  ///< Number of DRC bands greater than 1 having DRC info.
218    int interpolation_scheme;                       ///< Indicates the interpolation scheme used in the SBR QMF domain.
219    int band_top[17];                               ///< Indicates the top of the i-th DRC band in units of 4 spectral lines.
220    int prog_ref_level;                             /**< A reference level for the long-term program audio level for all
221                                                     *   channels combined.
222                                                     */
223} DynamicRangeControl;
224
225typedef struct Pulse {
226    int num_pulse;
227    int start;
228    int pos[4];
229    int amp[4];
230} Pulse;
231
232/**
233 * coupling parameters
234 */
235typedef struct ChannelCoupling {
236    enum CouplingPoint coupling_point;  ///< The point during decoding at which coupling is applied.
237    int num_coupled;       ///< number of target elements
238    enum RawDataBlockType type[8];   ///< Type of channel element to be coupled - SCE or CPE.
239    int id_select[8];      ///< element id
240    int ch_select[8];      /**< [0] shared list of gains; [1] list of gains for right channel;
241                            *   [2] list of gains for left channel; [3] lists of gains for both channels
242                            */
243    INTFLOAT gain[16][120];
244} ChannelCoupling;
245
246/**
247 * Single Channel Element - used for both SCE and LFE elements.
248 */
249typedef struct SingleChannelElement {
250    IndividualChannelStream ics;
251    TemporalNoiseShaping tns;
252    Pulse pulse;
253    enum BandType band_type[128];                   ///< band types
254    enum BandType band_alt[128];                    ///< alternative band type (used by encoder)
255    int band_type_run_end[120];                     ///< band type run end points
256    INTFLOAT sf[120];                               ///< scalefactors
257    int sf_idx[128];                                ///< scalefactor indices (used by encoder)
258    uint8_t zeroes[128];                            ///< band is not coded (used by encoder)
259    uint8_t can_pns[128];                           ///< band is allowed to PNS (informative)
260    float  is_ener[128];                            ///< Intensity stereo pos (used by encoder)
261    float pns_ener[128];                            ///< Noise energy values (used by encoder)
262    DECLARE_ALIGNED(32, INTFLOAT, pcoeffs)[1024];   ///< coefficients for IMDCT, pristine
263    DECLARE_ALIGNED(32, INTFLOAT, coeffs)[1024];    ///< coefficients for IMDCT, maybe processed
264    DECLARE_ALIGNED(32, INTFLOAT, saved)[1536];     ///< overlap
265    DECLARE_ALIGNED(32, INTFLOAT, ret_buf)[2048];   ///< PCM output buffer
266    DECLARE_ALIGNED(16, INTFLOAT, ltp_state)[3072]; ///< time signal for LTP
267    DECLARE_ALIGNED(32, AAC_FLOAT, lcoeffs)[1024];  ///< MDCT of LTP coefficients (used by encoder)
268    DECLARE_ALIGNED(32, AAC_FLOAT, prcoeffs)[1024]; ///< Main prediction coefs (used by encoder)
269    PredictorState predictor_state[MAX_PREDICTORS];
270    INTFLOAT *ret;                                  ///< PCM output
271} SingleChannelElement;
272
273/**
274 * channel element - generic struct for SCE/CPE/CCE/LFE
275 */
276typedef struct ChannelElement {
277    int present;
278    // CPE specific
279    int common_window;        ///< Set if channels share a common 'IndividualChannelStream' in bitstream.
280    int     ms_mode;          ///< Signals mid/side stereo flags coding mode (used by encoder)
281    uint8_t is_mode;          ///< Set if any bands have been encoded using intensity stereo (used by encoder)
282    uint8_t ms_mask[128];     ///< Set if mid/side stereo is used for each scalefactor window band
283    uint8_t is_mask[128];     ///< Set if intensity stereo is used (used by encoder)
284    // shared
285    SingleChannelElement ch[2];
286    // CCE specific
287    ChannelCoupling coup;
288    SpectralBandReplication sbr;
289} ChannelElement;
290
291enum AACOutputChannelOrder {
292    CHANNEL_ORDER_DEFAULT,
293    CHANNEL_ORDER_CODED,
294};
295
296/**
297 * main AAC context
298 */
299struct AACContext {
300    AVClass        *class;
301    AVCodecContext *avctx;
302    AVFrame *frame;
303
304    int is_saved;                 ///< Set if elements have stored overlap from previous frame.
305    DynamicRangeControl che_drc;
306
307    /**
308     * @name Channel element related data
309     * @{
310     */
311    ChannelElement          *che[4][MAX_ELEM_ID];
312    ChannelElement  *tag_che_map[4][MAX_ELEM_ID];
313    int tags_mapped;
314    int warned_remapping_once;
315    /** @} */
316
317    /**
318     * @name temporary aligned temporary buffers
319     * (We do not want to have these on the stack.)
320     * @{
321     */
322    DECLARE_ALIGNED(32, INTFLOAT, buf_mdct)[1024];
323    /** @} */
324
325    /**
326     * @name Computed / set up during initialization
327     * @{
328     */
329    FFTContext mdct;
330    FFTContext mdct_small;
331    FFTContext mdct_ld;
332    FFTContext mdct_ltp;
333#if USE_FIXED
334    AVFixedDSPContext *fdsp;
335#else
336    MDCT15Context *mdct120;
337    MDCT15Context *mdct480;
338    MDCT15Context *mdct960;
339    AVFloatDSPContext *fdsp;
340#endif /* USE_FIXED */
341    int random_state;
342    /** @} */
343
344    /**
345     * @name Members used for output
346     * @{
347     */
348    SingleChannelElement *output_element[MAX_CHANNELS]; ///< Points to each SingleChannelElement
349    /** @} */
350
351
352    /**
353     * @name Japanese DTV specific extension
354     * @{
355     */
356    int force_dmono_mode;///< 0->not dmono, 1->use first channel, 2->use second channel
357    int dmono_mode;      ///< 0->not dmono, 1->use first channel, 2->use second channel
358    /** @} */
359
360    enum AACOutputChannelOrder output_channel_order;
361
362    DECLARE_ALIGNED(32, INTFLOAT, temp)[128];
363
364    OutputConfiguration oc[2];
365    int warned_num_aac_frames;
366    int warned_960_sbr;
367    unsigned warned_71_wide;
368    int warned_gain_control;
369
370    /* aacdec functions pointers */
371    void (*imdct_and_windowing)(AACContext *ac, SingleChannelElement *sce);
372    void (*apply_ltp)(AACContext *ac, SingleChannelElement *sce);
373    void (*apply_tns)(INTFLOAT coef[1024], TemporalNoiseShaping *tns,
374                      IndividualChannelStream *ics, int decode);
375    void (*windowing_and_mdct_ltp)(AACContext *ac, INTFLOAT *out,
376                                   INTFLOAT *in, IndividualChannelStream *ics);
377    void (*update_ltp)(AACContext *ac, SingleChannelElement *sce);
378    void (*vector_pow43)(int *coefs, int len);
379    void (*subband_scale)(int *dst, int *src, int scale, int offset, int len, void *log_context);
380
381};
382
383void ff_aacdec_init_mips(AACContext *c);
384
385#endif /* AVCODEC_AAC_H */
386