shithub: opus

ref: 31b922e79cbaad7b5143c044ce58b01b4a9be7f8
dir: /silk/float/LPC_inv_pred_gain_FLP.c/

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#ifdef HAVE_CONFIG_H
#include "config.h"
#endif

#include "SigProc_FIX.h"
#include "SigProc_FLP.h"
#include "define.h"

/* compute inverse of LPC prediction gain, and                          */
/* test if LPC coefficients are stable (all poles within unit circle)   */
/* this code is based on silk_a2k_FLP()                                 */
silk_float silk_LPC_inverse_pred_gain_FLP(  /* O    return inverse prediction gain, energy domain               */
    const silk_float    *A,                 /* I    prediction coefficients [order]                             */
    opus_int32          order               /* I    prediction order                                            */
)
{
    opus_int   k, n;
    double     invGain, rc, rc_mult1, rc_mult2, tmp1, tmp2;
    silk_float Atmp[ SILK_MAX_ORDER_LPC ];

    silk_memcpy( Atmp, A, order * sizeof(silk_float) );

    invGain = 1.0;
    for( k = order - 1; k > 0; k-- ) {
        rc = -Atmp[ k ];
        rc_mult1 = 1.0f - rc * rc;
        invGain *= rc_mult1;
        if( invGain * MAX_PREDICTION_POWER_GAIN < 1.0f ) {
            return 0.0f;
        }
        rc_mult2 = 1.0f / rc_mult1;
        for( n = 0; n < (k + 1) >> 1; n++ ) {
            tmp1 = Atmp[ n ];
            tmp2 = Atmp[ k - n - 1 ];
            Atmp[ n ]         = (silk_float)( ( tmp1 - tmp2 * rc ) * rc_mult2 );
            Atmp[ k - n - 1 ] = (silk_float)( ( tmp2 - tmp1 * rc ) * rc_mult2 );
        }
    }
    rc = -Atmp[ 0 ];
    rc_mult1 = 1.0f - rc * rc;
    invGain *= rc_mult1;
    if( invGain * MAX_PREDICTION_POWER_GAIN < 1.0f ) {
        return 0.0f;
    }
    return (silk_float)invGain;
}