62 #define FFT_FIXED_32 1 
   99     ps->
var0.mant = 0x20000000;
 
  101     ps->
var1.mant = 0x20000000;
 
  105 static const int exp2tab[4] = { 
Q31(1.0000000000/2), 
Q31(1.1892071150/2), 
Q31(1.4142135624/2), 
Q31(1.6817928305/2) };  
 
  109     dst[0] = (idx & 15) - 4;
 
  110     dst[1] = (idx >> 4 & 15) - 4;
 
  117     dst[0] = (idx & 3) - 1;
 
  118     dst[1] = (idx >> 2 & 3) - 1;
 
  119     dst[2] = (idx >> 4 & 3) - 1;
 
  120     dst[3] = (idx >> 6 & 3) - 1;
 
  125 static inline int *
DEC_UPAIR(
int *dst, 
unsigned idx, 
unsigned sign)
 
  127     dst[0] = (idx & 15) * (1 - (sign & 0xFFFFFFFE));
 
  128     dst[1] = (idx >> 4 & 15) * (1 - ((sign & 1) << 1));
 
  133 static inline int *
DEC_UQUAD(
int *dst, 
unsigned idx, 
unsigned sign)
 
  135     unsigned nz = idx >> 12;
 
  137     dst[0] = (idx & 3) * (1 + (((
int)sign >> 31) << 1));
 
  140     dst[1] = (idx >> 2 & 3) * (1 + (((
int)sign >> 31) << 1));
 
  143     dst[2] = (idx >> 4 & 3) * (1 + (((
int)sign >> 31) << 1));
 
  146     dst[3] = (idx >> 6 & 3) * (1 + (((
int)sign >> 31) << 1));
 
  155     for (i=0; i<
len; i++) {
 
  167     int ssign = scale < 0 ? -1 : 1;
 
  172     s = offset - (s >> 2);
 
  176         for (i=0; i<
len; i++) {
 
  177             out = (int)(((int64_t)src[i] * 
c) >> 32);
 
  178             dst[i] = ((int)(out+round) >> 
s) * ssign;
 
  184         for (i=0; i<
len; i++) {
 
  185             out = (int)((int64_t)((int64_t)src[i] * c + round) >> 
s);
 
  186             dst[i] = out * ssign;
 
  193     int ssign = scale < 0 ? -1 : 1;
 
  199     while (band_energy > 0x7fff) {
 
  204     s = 21 + nlz - (s >> 2);
 
  208         for (i=0; i<
len; i++) {
 
  209             out = (int)(((int64_t)coefs[i] * 
c) >> 32);
 
  210             coefs[i] = ((int)(out+round) >> 
s) * ssign;
 
  216         for (i=0; i<
len; i++) {
 
  217             out = (int)((int64_t)((int64_t)coefs[i] * c + round) >> 
s);
 
  218             coefs[i] = out * ssign;
 
  231     tmp.
mant = (tmp.
mant + 0x00200000
U) & 0xFFC00000U;
 
  245     tmp.
mant = (tmp.
mant + 0x001FFFFF
U + (tmp.
mant & 0x00400000
U >> 16)) & 0xFFC00000
U;
 
  278     if (var0.
exp > 1 || (var0.
exp == 1 && var0.
mant > 0x20000000)) {
 
  286     if (var1.exp > 1 || (var1.exp == 1 && var1.mant > 0x20000000)) {
 
  300             *coef += (pv.
mant + (1 << (shift - 1))) >> shift;
 
  342     int *dest = target->
coeffs;
 
  344     int g, i, group, k, idx = 0;
 
  347                "Dependent coupling is not supported together with LTP\n");
 
  351         for (i = 0; i < ics->
max_sfb; i++, idx++) {
 
  358                     shift = (-gain-1024) >> 3;
 
  362                     shift = (gain-1024) >> 3;
 
  367                     round = 1 << (shift - 1);
 
  369                     for (group = 0; group < ics->
group_len[
g]; group++) {
 
  370                         for (k = offsets[i]; k < offsets[i + 1]; k++) {
 
  371                             tmp = (int)(((int64_t)src[group * 128 + k] * c + \
 
  372                                        (int64_t)0x1000000000) >> 37);
 
  373                             dest[group * 128 + k] += (tmp + 
round) >> shift;
 
  378                     for (group = 0; group < ics->
group_len[
g]; group++) {
 
  379                         for (k = offsets[i]; k < offsets[i + 1]; k++) {
 
  380                             tmp = (int)(((int64_t)src[group * 128 + k] * c + \
 
  381                                         (int64_t)0x1000000000) >> 37);
 
  382                             dest[group * 128 + k] += tmp << 
shift;
 
  405     int *dest = target->
ret;
 
  409     shift = (gain-1024) >> 3;
 
  412         round = 1 << (shift - 1);
 
  414         for (i = 0; i < 
len; i++) {
 
  415             tmp = (int)(((int64_t)src[i] * c + (int64_t)0x1000000000) >> 37);
 
  416             dest[i] += (tmp + 
round) >> shift;
 
  420       for (i = 0; i < 
len; i++) {
 
  421           tmp = (int)(((int64_t)src[i] * c + (int64_t)0x1000000000) >> 37);
 
  422           dest[i] += tmp << 
shift;
 
static int shift(int a, int b)
static void flush(AVCodecContext *avctx)
static av_always_inline SoftFloat flt16_round(SoftFloat pf)
static int * DEC_UPAIR(int *dst, unsigned idx, unsigned sign)
static void apply_dependent_coupling_fixed(AACContext *ac, SingleChannelElement *target, ChannelElement *cce, int index)
Apply dependent channel coupling (applied before IMDCT). 
static av_cold int init(AVCodecContext *avctx)
static av_const SoftFloat av_div_sf(SoftFloat a, SoftFloat b)
b has to be normalized and not zero. 
static int * DEC_SQUAD(int *dst, unsigned idx)
const AVProfile ff_aac_profiles[]
INTFLOAT * ret
PCM output. 
static void vector_pow43(int *coefs, int len)
#define AV_CODEC_CAP_CHANNEL_CONF
Codec should fill in channel configuration and samplerate instead of container. 
static void subband_scale(int *dst, int *src, int scale, int offset, int len)
const uint16_t * swb_offset
table of offsets to the lowest spectral coefficient of a scalefactor band, sfb, for a particular wind...
#define FF_CODEC_CAP_INIT_THREADSAFE
The codec does not modify any global variables in the init function, allowing to call the init functi...
SingleChannelElement ch[2]
static av_cold int aac_decode_init(AVCodecContext *avctx)
static void apply_independent_coupling_fixed(AACContext *ac, SingleChannelElement *target, ChannelElement *cce, int index)
Apply independent channel coupling (applied after IMDCT). 
bitstream reader API header. 
static av_always_inline void predict(PredictorState *ps, int *coef, int output_enable)
static double alpha(void *priv, double x, double y)
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered. 
#define NULL_IF_CONFIG_SMALL(x)
Return NULL if CONFIG_SMALL is true, otherwise the argument without modification. ...
Spectral Band Replication definitions and structures. 
const char * name
Name of the codec implementation. 
static av_always_inline av_const double round(double x)
uint8_t max_sfb
number of scalefactor bands per group 
static av_always_inline void reset_predict_state(PredictorState *ps)
static const uint8_t offset[127][2]
static const uint64_t aac_channel_layout[16]
AAC Spectral Band Replication function declarations. 
static int aac_decode_frame(AVCodecContext *avctx, void *data, int *got_frame_ptr, AVPacket *avpkt)
#define FFABS(a)
Absolute value, Note, INT_MIN / INT64_MIN result in undefined behavior as they are not representable ...
AAC definitions and structures. 
static const int cce_scale_fixed[8]
Libavcodec external API header. 
AVSampleFormat
Audio sample formats. 
static uint32_t cbrt_tab[1<< 13]
IndividualChannelStream ics
static av_cold int aac_decode_close(AVCodecContext *avctx)
static void noise_scale(int *coefs, int scale, int band_energy, int len)
static av_const SoftFloat av_sub_sf(SoftFloat a, SoftFloat b)
static av_const SoftFloat av_add_sf(SoftFloat a, SoftFloat b)
INTFLOAT coeffs[1024]
coefficients for IMDCT, maybe processed 
static int decode(AVCodecContext *avctx, void *data, int *got_sub, AVPacket *avpkt)
OutputConfiguration oc[2]
common internal api header. 
Single Channel Element - used for both SCE and LFE elements. 
static av_const SoftFloat av_mul_sf(SoftFloat a, SoftFloat b)
Individual Channel Stream. 
channel element - generic struct for SCE/CPE/CCE/LFE 
static const int exp2tab[4]
Scalefactors and spectral data are all zero. 
static int * DEC_SPAIR(int *dst, unsigned idx)
static av_always_inline SoftFloat flt16_trunc(SoftFloat pf)
enum BandType band_type[128]
band types 
static enum AVSampleFormat sample_fmts[]
AVCodec ff_aac_fixed_decoder
int sbr
-1 implicit, 1 presence 
static av_const SoftFloat av_int2sf(int v, int frac_bits)
Converts a mantisse and exponent to a SoftFloat. 
static av_always_inline SoftFloat flt16_even(SoftFloat pf)
#define AV_CODEC_CAP_DR1
Codec uses get_buffer() for allocating buffers and supports custom allocators. 
static int * DEC_UQUAD(int *dst, unsigned idx, unsigned sign)