62 #define AMR_BLOCK_SIZE              160    
   63 #define AMR_SAMPLE_BOUND        32768.0   
 
   74 #define AMR_SAMPLE_SCALE  (2.0 / 32768.0) 
   77 #define PRED_FAC_MODE_12k2             0.65 
   79 #define LSF_R_FAC          (8000.0 / 32768.0)  
   80 #define MIN_LSF_SPACING    (50.0488 / 8000.0) 
 
   81 #define PITCH_LAG_MIN_MODE_12k2          18   
 
   84 #define MIN_ENERGY -14.0 
   91 #define SHARP_MAX 0.79449462890625 
   94 #define AMR_TILT_RESPONSE   22 
   96 #define AMR_TILT_GAMMA_T   0.8 
   98 #define AMR_AGC_ALPHA      0.9 
  150                                  const double *in_b, 
double weight_coeff_a,
 
  151                                  double weight_coeff_b, 
int length)
 
  155     for (i = 0; i < 
length; i++)
 
  156         out[i] = weight_coeff_a * in_a[i]
 
  157                + weight_coeff_b * in_b[i];
 
  184     for (i = 0; i < 4; i++)
 
  213     mode = buf[0] >> 3 & 0x0F;                      
 
  243     for (i = 0; i < 4; i++)
 
  245                                 0.25 * (3 - i), 0.25 * (i + 1),
 
  261                                  const float lsf_no_r[LP_FILTER_ORDER],
 
  262                                  const int16_t *lsf_quantizer[5],
 
  263                                  const int quantizer_offset,
 
  264                                  const int sign, 
const int update)
 
  270     for (i = 0; i < LP_FILTER_ORDER >> 1; i++)
 
  271         memcpy(&lsf_r[i << 1], &lsf_quantizer[i][quantizer_offset],
 
  280         memcpy(p->
prev_lsf_r, lsf_r, LP_FILTER_ORDER * 
sizeof(*lsf_r));
 
  283         lsf_q[i] = lsf_r[i] * (
LSF_R_FAC / 8000.0) + lsf_no_r[i] * (1.0 / 8000.0);
 
  300     const uint16_t *lsf_param = p->
frame.
lsf;
 
  302     const int16_t *lsf_quantizer[5];
 
  305     lsf_quantizer[0] = 
lsf_5_1[lsf_param[0]];
 
  306     lsf_quantizer[1] = 
lsf_5_2[lsf_param[1]];
 
  307     lsf_quantizer[2] = 
lsf_5_3[lsf_param[2] >> 1];
 
  308     lsf_quantizer[3] = 
lsf_5_4[lsf_param[3]];
 
  309     lsf_quantizer[4] = 
lsf_5_5[lsf_param[4]];
 
  329     const uint16_t *lsf_param = p->
frame.
lsf;
 
  332     const int16_t *lsf_quantizer;
 
  336     memcpy(lsf_r, lsf_quantizer, 3 * 
sizeof(*lsf_r));
 
  339     memcpy(lsf_r + 3, lsf_quantizer, 3 * 
sizeof(*lsf_r));
 
  342     memcpy(lsf_r + 6, lsf_quantizer, 4 * 
sizeof(*lsf_r));
 
  352     memcpy(p->
prev_lsf_r, lsf_r, LP_FILTER_ORDER * 
sizeof(*lsf_r));
 
  357     for (i = 1; i <= 3; i++)
 
  373                                  const int prev_lag_int, 
const int subframe)
 
  375     if (subframe == 0 || subframe == 2) {
 
  376         if (pitch_index < 463) {
 
  377             *lag_int  = (pitch_index + 107) * 10923 >> 16;
 
  378             *lag_frac = pitch_index - *lag_int * 6 + 105;
 
  380             *lag_int  = pitch_index - 368;
 
  384         *lag_int  = ((pitch_index + 5) * 10923 >> 16) - 1;
 
  385         *lag_frac = pitch_index - *lag_int * 6 - 3;
 
  395     int pitch_lag_int, pitch_lag_frac;
 
  413     pitch_lag_int += pitch_lag_frac > 0;
 
  420                           pitch_lag_frac + 6 - 6*(pitch_lag_frac > 0),
 
  436                                int i1, 
int i2, 
int i3)
 
  441     pulse_position[i1] = (positions[2] << 1) + ( code       & 1);
 
  442     pulse_position[i2] = (positions[1] << 1) + ((code >> 1) & 1);
 
  443     pulse_position[i3] = (positions[0] << 1) + ((code >> 2) & 1);
 
  456     int pulse_position[8];
 
  464     temp = ((fixed_index[6] >> 2) * 25 + 12) >> 5;
 
  465     pulse_position[3] = temp % 5;
 
  466     pulse_position[7] = temp / 5;
 
  467     if (pulse_position[7] & 1)
 
  468         pulse_position[3] = 4 - pulse_position[3];
 
  469     pulse_position[3] = (pulse_position[3] << 1) + ( fixed_index[6]       & 1);
 
  470     pulse_position[7] = (pulse_position[7] << 1) + ((fixed_index[6] >> 1) & 1);
 
  473     for (i = 0; i < 4; i++) {
 
  474         const int pos1   = (pulse_position[i]     << 2) + i;
 
  475         const int pos2   = (pulse_position[i + 4] << 2) + i;
 
  476         const float sign = fixed_index[i] ? -1.0 : 1.0;
 
  477         fixed_sparse->
x[i    ] = pos1;
 
  478         fixed_sparse->
x[i + 4] = pos2;
 
  479         fixed_sparse->
y[i    ] = sign;
 
  480         fixed_sparse->
y[i + 4] = pos2 < pos1 ? -sign : sign;
 
  500                                 const enum Mode mode, 
const int subframe)
 
  509         int *pulse_position = fixed_sparse->
x;
 
  511         const int fixed_index = pulses[0];
 
  514             pulse_subset      = ((fixed_index >> 3) & 8)     + (subframe << 1);
 
  515             pulse_position[0] = ( fixed_index       & 7) * 5 + 
track_position[pulse_subset];
 
  516             pulse_position[1] = ((fixed_index >> 3) & 7) * 5 + 
track_position[pulse_subset + 1];
 
  519             pulse_subset      = ((fixed_index & 1) << 1) + 1;
 
  520             pulse_position[0] = ((fixed_index >> 1) & 7) * 5 + pulse_subset;
 
  521             pulse_subset      = (fixed_index  >> 4) & 3;
 
  522             pulse_position[1] = ((fixed_index >> 6) & 7) * 5 + pulse_subset + (pulse_subset == 3 ? 1 : 0);
 
  523             fixed_sparse->
n = pulse_position[0] == pulse_position[1] ? 1 : 2;
 
  525             pulse_position[0] = (fixed_index        & 7) * 5;
 
  526             pulse_subset      = (fixed_index  >> 2) & 2;
 
  527             pulse_position[1] = ((fixed_index >> 4) & 7) * 5 + pulse_subset + 1;
 
  528             pulse_subset      = (fixed_index  >> 6) & 2;
 
  529             pulse_position[2] = ((fixed_index >> 8) & 7) * 5 + pulse_subset + 2;
 
  533             pulse_position[1] = 
gray_decode[(fixed_index >> 3)  & 7] + 1;
 
  534             pulse_position[2] = 
gray_decode[(fixed_index >> 6)  & 7] + 2;
 
  535             pulse_subset      = (fixed_index >> 9) & 1;
 
  536             pulse_position[3] = 
gray_decode[(fixed_index >> 10) & 7] + pulse_subset + 3;
 
  539         for (i = 0; i < fixed_sparse->
n; i++)
 
  540             fixed_sparse->
y[i] = (pulses[1] >> i) & 1 ? 1.0 : -1.0;
 
  589                                const float *lsf_avg, 
const enum Mode mode)
 
  595         diff += fabs(lsf_avg[i] - lsf[i]) / lsf_avg[i];
 
  611         const float smoothing_factor = av_clipf(4.0 * diff - 1.6, 0.0, 1.0);
 
  616                (1.0 - smoothing_factor) * fixed_gain_mean;
 
  631                          const enum Mode mode, 
const int subframe,
 
  632                          float *fixed_gain_factor)
 
  640         const uint16_t *gains;
 
  651         p->
pitch_gain[4]   = gains[0] * (1.0 / 16384.0);
 
  652         *fixed_gain_factor = gains[1] * (1.0 /  4096.0);
 
  685         if (lag < AMR_SUBFRAME_SIZE >> 1)
 
  691     for (i = 0; i < in->
n; i++) {
 
  694         const float *filterp;
 
  696         if (x >= AMR_SUBFRAME_SIZE - lag) {
 
  698         } 
else if (x >= AMR_SUBFRAME_SIZE - (lag << 1)) {
 
  720                                     const float *fixed_vector,
 
  721                                     float fixed_gain, 
float *
out)
 
  741         for (i = 0; i < 5; i++)
 
  749     } 
else if (ir_filter_nr < 2)
 
  755     if (fixed_gain < 5.0)
 
  759          && ir_filter_nr < 2) {
 
  791                      float fixed_gain, 
const float *fixed_vector,
 
  792                      float *samples, 
uint8_t overflow)
 
  804                             p->
pitch_gain[4], fixed_gain, AMR_SUBFRAME_SIZE);
 
  883     memcpy(hf + 1, lpc_n, 
sizeof(
float) * LP_FILTER_ORDER);
 
  913     const float *gamma_n, *gamma_d;                       
 
  925          lpc_n[i] = lpc[i] * gamma_n[i];
 
  926          lpc_d[i] = lpc[i] * gamma_d[i];
 
  929     memcpy(pole_out, p->
postfilter_mem, 
sizeof(
float) * LP_FILTER_ORDER);
 
  933            sizeof(
float) * LP_FILTER_ORDER);
 
  936                                       pole_out + LP_FILTER_ORDER,
 
  949                               int *got_frame_ptr, 
AVPacket *avpkt)
 
  955     int buf_size       = avpkt->
size;
 
  957     int i, subframe, 
ret;
 
  958     float fixed_gain_factor;
 
  961     float synth_fixed_gain;                  
 
  962     const float *synth_fixed_vector;         
 
  968     buf_out = (
float *)frame->
data[0];
 
  986     for (i = 0; i < 4; i++)
 
  989     for (subframe = 0; subframe < 4; subframe++) {
 
 1002                      &fixed_gain_factor);
 
 1007             av_log(avctx, 
AV_LOG_ERROR, 
"The file is corrupted, pitch_lag = 0 is not allowed\n");
 
 1044                                              synth_fixed_gain, spare_vector);
 
 1054         postfilter(p, p->
lpc[subframe], buf_out + subframe * AMR_SUBFRAME_SIZE);