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     27 
     28 #ifdef HAVE_CONFIG_H
     29 #include "config.h"
     30 #endif
     31 
     32 #include "SigProc_FIX.h"
     33 
     34 /* Faster than schur64(), but much less accurate.                       */
     35 /* uses SMLAWB(), requiring armv5E and higher.                          */
     36 opus_int32 silk_schur(                              /* O    Returns residual energy                                     */
     37     opus_int16                  *rc_Q15,            /* O    reflection coefficients [order] Q15                         */
     38     const opus_int32            *c,                 /* I    correlations [order+1]                                      */
     39     const opus_int32            order               /* I    prediction order                                            */
     40 )
     41 {
     42     opus_int        k, n, lz;
     43     opus_int32    C[ SILK_MAX_ORDER_LPC + 1 ][ 2 ];
     44     opus_int32    Ctmp1, Ctmp2, rc_tmp_Q15;
     45 
     46     silk_assert( order==6||order==8||order==10||order==12||order==14||order==16 );
     47 
     48     /* Get number of leading zeros */
     49     lz = silk_CLZ32( c[ 0 ] );
     50 
     51     /* Copy correlations and adjust level to Q30 */
     52     if( lz < 2 ) {
     53         /* lz must be 1, so shift one to the right */
     54         for( k = 0; k < order + 1; k++ ) {
     55             C[ k ][ 0 ] = C[ k ][ 1 ] = silk_RSHIFT( c[ k ], 1 );
     56         }
     57     } else if( lz > 2 ) {
     58         /* Shift to the left */
     59         lz -= 2;
     60         for( k = 0; k < order + 1; k++ ) {
     61             C[ k ][ 0 ] = C[ k ][ 1 ] = silk_LSHIFT( c[ k ], lz );
     62         }
     63     } else {
     64         /* No need to shift */
     65         for( k = 0; k < order + 1; k++ ) {
     66             C[ k ][ 0 ] = C[ k ][ 1 ] = c[ k ];
     67         }
     68     }
     69 
     70     for( k = 0; k < order; k++ ) {
     71         /* Check that we won't be getting an unstable rc, otherwise stop here. */
     72         if (silk_abs_int32(C[ k + 1 ][ 0 ]) >= C[ 0 ][ 1 ]) {
     73            if ( C[ k + 1 ][ 0 ] > 0 ) {
     74               rc_Q15[ k ] = -SILK_FIX_CONST( .99f, 15 );
     75            } else {
     76               rc_Q15[ k ] = SILK_FIX_CONST( .99f, 15 );
     77            }
     78            k++;
     79            break;
     80         }
     81 
     82         /* Get reflection coefficient */
     83         rc_tmp_Q15 = -silk_DIV32_16( C[ k + 1 ][ 0 ], silk_max_32( silk_RSHIFT( C[ 0 ][ 1 ], 15 ), 1 ) );
     84 
     85         /* Clip (shouldn't happen for properly conditioned inputs) */
     86         rc_tmp_Q15 = silk_SAT16( rc_tmp_Q15 );
     87 
     88         /* Store */
     89         rc_Q15[ k ] = (opus_int16)rc_tmp_Q15;
     90 
     91         /* Update correlations */
     92         for( n = 0; n < order - k; n++ ) {
     93             Ctmp1 = C[ n + k + 1 ][ 0 ];
     94             Ctmp2 = C[ n ][ 1 ];
     95             C[ n + k + 1 ][ 0 ] = silk_SMLAWB( Ctmp1, silk_LSHIFT( Ctmp2, 1 ), rc_tmp_Q15 );
     96             C[ n ][ 1 ]         = silk_SMLAWB( Ctmp2, silk_LSHIFT( Ctmp1, 1 ), rc_tmp_Q15 );
     97         }
     98     }
     99 
    100     for(; k < order; k++ ) {
    101        rc_Q15[ k ] = 0;
    102     }
    103 
    104     /* return residual energy */
    105     return silk_max_32( 1, C[ 0 ][ 1 ] );
    106 }
    107