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27
28#ifdef HAVE_CONFIG_H
29#include "config.h"
30#endif
31
32#include "main_FIX.h"
33
34/* Residual energy: nrg = wxx - 2 * wXx * c + c' * wXX * c */
35opus_int32 silk_residual_energy16_covar_FIX(
36    const opus_int16                *c,                                     /* I    Prediction vector                                                           */
37    const opus_int32                *wXX,                                   /* I    Correlation matrix                                                          */
38    const opus_int32                *wXx,                                   /* I    Correlation vector                                                          */
39    opus_int32                      wxx,                                    /* I    Signal energy                                                               */
40    opus_int                        D,                                      /* I    Dimension                                                                   */
41    opus_int                        cQ                                      /* I    Q value for c vector 0 - 15                                                 */
42)
43{
44    opus_int   i, j, lshifts, Qxtra;
45    opus_int32 c_max, w_max, tmp, tmp2, nrg;
46    opus_int   cn[ MAX_MATRIX_SIZE ];
47    const opus_int32 *pRow;
48
49    /* Safety checks */
50    silk_assert( D >=  0 );
51    silk_assert( D <= 16 );
52    silk_assert( cQ >  0 );
53    silk_assert( cQ < 16 );
54
55    lshifts = 16 - cQ;
56    Qxtra = lshifts;
57
58    c_max = 0;
59    for( i = 0; i < D; i++ ) {
60        c_max = silk_max_32( c_max, silk_abs( (opus_int32)c[ i ] ) );
61    }
62    Qxtra = silk_min_int( Qxtra, silk_CLZ32( c_max ) - 17 );
63
64    w_max = silk_max_32( wXX[ 0 ], wXX[ D * D - 1 ] );
65    Qxtra = silk_min_int( Qxtra, silk_CLZ32( silk_MUL( D, silk_RSHIFT( silk_SMULWB( w_max, c_max ), 4 ) ) ) - 5 );
66    Qxtra = silk_max_int( Qxtra, 0 );
67    for( i = 0; i < D; i++ ) {
68        cn[ i ] = silk_LSHIFT( ( opus_int )c[ i ], Qxtra );
69        silk_assert( silk_abs(cn[i]) <= ( silk_int16_MAX + 1 ) ); /* Check that silk_SMLAWB can be used */
70    }
71    lshifts -= Qxtra;
72
73    /* Compute wxx - 2 * wXx * c */
74    tmp = 0;
75    for( i = 0; i < D; i++ ) {
76        tmp = silk_SMLAWB( tmp, wXx[ i ], cn[ i ] );
77    }
78    nrg = silk_RSHIFT( wxx, 1 + lshifts ) - tmp;                         /* Q: -lshifts - 1 */
79
80    /* Add c' * wXX * c, assuming wXX is symmetric */
81    tmp2 = 0;
82    for( i = 0; i < D; i++ ) {
83        tmp = 0;
84        pRow = &wXX[ i * D ];
85        for( j = i + 1; j < D; j++ ) {
86            tmp = silk_SMLAWB( tmp, pRow[ j ], cn[ j ] );
87        }
88        tmp  = silk_SMLAWB( tmp,  silk_RSHIFT( pRow[ i ], 1 ), cn[ i ] );
89        tmp2 = silk_SMLAWB( tmp2, tmp,                        cn[ i ] );
90    }
91    nrg = silk_ADD_LSHIFT32( nrg, tmp2, lshifts );                       /* Q: -lshifts - 1 */
92
93    /* Keep one bit free always, because we add them for LSF interpolation */
94    if( nrg < 1 ) {
95        nrg = 1;
96    } else if( nrg > silk_RSHIFT( silk_int32_MAX, lshifts + 2 ) ) {
97        nrg = silk_int32_MAX >> 1;
98    } else {
99        nrg = silk_LSHIFT( nrg, lshifts + 1 );                           /* Q0 */
100    }
101    return nrg;
102
103}
104