opus/silk/decoder_set_fs.c
Koen Vos bf75c8ec4d SILK fixes following last codec WG meeting
decoder:
- fixed incorrect scaling of filter states for the smallest quantization
  step sizes
- NLSF2A now limits the prediction gain of LPC filters

encoder:
- increased damping of LTP coefficients in LTP analysis
- increased white noise fraction in noise shaping LPC analysis
- introduced maximum total prediction gain.  Used by Burg's method to
  exit early if prediction gain is exceeded.  This improves packet
  loss robustness and numerical robustness in Burg's method
- Prefiltered signal is now in int32 Q10 domain, from int16 Q0
- Increased max number of iterations in CBR gain control loop from 5 to 6
- Removed useless code from LTP scaling control
- Optimization: smarter LPC loop unrolling
- Switched default win32 compile mode to be floating-point

resampler:
- made resampler have constant delay of 0.75 ms; removed delay
  compensation from silk code.
- removed obsolete table entries (~850 Bytes)
- increased downsampling filter order from 16 to 18/24/36 (depending on
  frequency ratio)
- reoptimized filter coefficients
2011-12-13 14:47:31 -05:00

122 lines
5.8 KiB
C

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#ifdef HAVE_CONFIG_H
#include "config.h"
#endif
#include "main.h"
/* Set decoder sampling rate */
opus_int silk_decoder_set_fs(
silk_decoder_state *psDec, /* I/O Decoder state pointer */
opus_int fs_kHz, /* I Sampling frequency (kHz) */
opus_int fs_API_Hz /* I API Sampling frequency (Hz) */
)
{
opus_int frame_length, ret = 0;
silk_assert( fs_kHz == 8 || fs_kHz == 12 || fs_kHz == 16 );
silk_assert( psDec->nb_subfr == MAX_NB_SUBFR || psDec->nb_subfr == MAX_NB_SUBFR/2 );
/* New (sub)frame length */
psDec->subfr_length = silk_SMULBB( SUB_FRAME_LENGTH_MS, fs_kHz );
frame_length = silk_SMULBB( psDec->nb_subfr, psDec->subfr_length );
/* Initialize resampler when switching internal or external sampling frequency */
if( psDec->fs_kHz != fs_kHz || psDec->fs_API_hz != fs_API_Hz ) {
/* Allocate worst case space for temporary upsampling, 8 to 48 kHz, so a factor 6 */
opus_int16 temp_buf[ MAX_FRAME_LENGTH_MS * MAX_API_FS_KHZ ];
silk_resampler_state_struct temp_resampler_state;
if( psDec->fs_kHz != fs_kHz && psDec->fs_kHz > 0 ) {
/* Initialize resampler for temporary resampling of outBuf data to the new internal sampling rate */
ret += silk_resampler_init( &temp_resampler_state, silk_SMULBB( psDec->fs_kHz, 1000 ), silk_SMULBB( fs_kHz, 1000 ), 0 );
/* Temporary resampling of outBuf data to the new internal sampling rate */
silk_memcpy( temp_buf, psDec->outBuf, psDec->frame_length * sizeof( opus_int16 ) );
ret += silk_resampler( &temp_resampler_state, psDec->outBuf, temp_buf, psDec->frame_length );
}
/* Initialize the resampler for dec_API.c preparing resampling from fs_kHz to API_fs_Hz */
ret += silk_resampler_init( &psDec->resampler_state, silk_SMULBB( fs_kHz, 1000 ), fs_API_Hz, 0 );
/* Correct resampler state by resampling buffered data from fs_kHz to API_fs_Hz */
ret += silk_resampler( &psDec->resampler_state, temp_buf, psDec->outBuf, frame_length );
psDec->fs_API_hz = fs_API_Hz;
}
if( psDec->fs_kHz != fs_kHz || frame_length != psDec->frame_length ) {
if( fs_kHz == 8 ) {
if( psDec->nb_subfr == MAX_NB_SUBFR ) {
psDec->pitch_contour_iCDF = silk_pitch_contour_NB_iCDF;
} else {
psDec->pitch_contour_iCDF = silk_pitch_contour_10_ms_NB_iCDF;
}
} else {
if( psDec->nb_subfr == MAX_NB_SUBFR ) {
psDec->pitch_contour_iCDF = silk_pitch_contour_iCDF;
} else {
psDec->pitch_contour_iCDF = silk_pitch_contour_10_ms_iCDF;
}
}
if( psDec->fs_kHz != fs_kHz ) {
psDec->ltp_mem_length = silk_SMULBB( LTP_MEM_LENGTH_MS, fs_kHz );
if( fs_kHz == 8 || fs_kHz == 12 ) {
psDec->LPC_order = MIN_LPC_ORDER;
psDec->psNLSF_CB = &silk_NLSF_CB_NB_MB;
} else {
psDec->LPC_order = MAX_LPC_ORDER;
psDec->psNLSF_CB = &silk_NLSF_CB_WB;
}
if( fs_kHz == 16 ) {
psDec->pitch_lag_low_bits_iCDF = silk_uniform8_iCDF;
} else if( fs_kHz == 12 ) {
psDec->pitch_lag_low_bits_iCDF = silk_uniform6_iCDF;
} else if( fs_kHz == 8 ) {
psDec->pitch_lag_low_bits_iCDF = silk_uniform4_iCDF;
} else {
/* unsupported sampling rate */
silk_assert( 0 );
}
psDec->first_frame_after_reset = 1;
psDec->lagPrev = 100;
psDec->LastGainIndex = 10;
psDec->prevSignalType = TYPE_NO_VOICE_ACTIVITY;
}
psDec->fs_kHz = fs_kHz;
psDec->frame_length = frame_length;
}
/* Check that settings are valid */
silk_assert( psDec->frame_length > 0 && psDec->frame_length <= MAX_FRAME_LENGTH );
return ret;
}