Coverage Report

Created: 2026-09-14 08:00

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/opus/silk/decode_core.c
Line
Count
Source
1
/***********************************************************************
2
Copyright (c) 2006-2011, Skype Limited. All rights reserved.
3
Redistribution and use in source and binary forms, with or without
4
modification, are permitted provided that the following conditions
5
are met:
6
- Redistributions of source code must retain the above copyright notice,
7
this list of conditions and the following disclaimer.
8
- Redistributions in binary form must reproduce the above copyright
9
notice, this list of conditions and the following disclaimer in the
10
documentation and/or other materials provided with the distribution.
11
- Neither the name of Internet Society, IETF or IETF Trust, nor the
12
names of specific contributors, may be used to endorse or promote
13
products derived from this software without specific prior written
14
permission.
15
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
16
AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18
ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
19
LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
20
CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
21
SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
22
INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
23
CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
24
ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
25
POSSIBILITY OF SUCH DAMAGE.
26
***********************************************************************/
27
28
#ifdef HAVE_CONFIG_H
29
#include "config.h"
30
#endif
31
32
#include "main.h"
33
#include "stack_alloc.h"
34
35
/**********************************************************/
36
/* Core decoder. Performs inverse NSQ operation LTP + LPC */
37
/**********************************************************/
38
void silk_decode_core(
39
    silk_decoder_state          *psDec,                         /* I/O  Decoder state                               */
40
    silk_decoder_control        *psDecCtrl,                     /* I    Decoder control                             */
41
    opus_int16                  xq[],                           /* O    Decoded speech                              */
42
    const opus_int16            pulses[ MAX_FRAME_LENGTH ],     /* I    Pulse signal                                */
43
    int                         arch                            /* I    Run-time architecture                       */
44
)
45
131k
{
46
131k
    opus_int   i, k, lag = 0, start_idx, sLTP_buf_idx, NLSF_interpolation_flag, signalType;
47
131k
    opus_int16 *A_Q12, *B_Q14, *pxq, A_Q12_tmp[ MAX_LPC_ORDER ];
48
131k
    VARDECL( opus_int16, sLTP );
49
131k
    VARDECL( opus_int32, sLTP_Q15 );
50
131k
    opus_int32 LTP_pred_Q13, LPC_pred_Q10, Gain_Q10, inv_gain_Q31, gain_adj_Q16, rand_seed, offset_Q10;
51
131k
    opus_int32 *pred_lag_ptr, *pexc_Q14, *pres_Q14;
52
131k
    VARDECL( opus_int32, res_Q14 );
53
131k
    VARDECL( opus_int32, sLPC_Q14 );
54
131k
    SAVE_STACK;
55
56
131k
    silk_assert( psDec->prev_gain_Q16 != 0 );
57
58
131k
    ALLOC( sLTP, psDec->ltp_mem_length, opus_int16 );
59
131k
    ALLOC( sLTP_Q15, psDec->ltp_mem_length + psDec->frame_length, opus_int32 );
60
131k
    ALLOC( res_Q14, psDec->subfr_length, opus_int32 );
61
    /* Work around a clang bug (verified with clang 6.0 through clang 20.1.0) that causes the last
62
       memset to be flagged as an invalid read by valgrind (not caught by asan). */
63
131k
#if defined(__clang__) && defined(VAR_ARRAYS)
64
131k
    ALLOC( sLPC_Q14, MAX_SUB_FRAME_LENGTH + MAX_LPC_ORDER, opus_int32 );
65
#else
66
    ALLOC( sLPC_Q14, psDec->subfr_length + MAX_LPC_ORDER, opus_int32 );
67
#endif
68
69
131k
    offset_Q10 = silk_Quantization_Offsets_Q10[ psDec->indices.signalType >> 1 ][ psDec->indices.quantOffsetType ];
70
71
131k
    if( psDec->indices.NLSFInterpCoef_Q2 < 1 << 2 ) {
72
21.2k
        NLSF_interpolation_flag = 1;
73
110k
    } else {
74
110k
        NLSF_interpolation_flag = 0;
75
110k
    }
76
77
    /* Decode excitation */
78
131k
    rand_seed = psDec->indices.Seed;
79
23.9M
    for( i = 0; i < psDec->frame_length; i++ ) {
80
23.8M
        rand_seed = silk_RAND( rand_seed );
81
23.8M
        psDec->exc_Q14[ i ] = silk_LSHIFT( (opus_int32)pulses[ i ], 14 );
82
23.8M
        if( psDec->exc_Q14[ i ] > 0 ) {
83
1.36M
            psDec->exc_Q14[ i ] -= QUANT_LEVEL_ADJUST_Q10 << 4;
84
1.36M
        } else
85
22.4M
        if( psDec->exc_Q14[ i ] < 0 ) {
86
3.64M
            psDec->exc_Q14[ i ] += QUANT_LEVEL_ADJUST_Q10 << 4;
87
3.64M
        }
88
23.8M
        psDec->exc_Q14[ i ] += offset_Q10 << 4;
89
23.8M
        if( rand_seed < 0 ) {
90
11.8M
           psDec->exc_Q14[ i ] = -psDec->exc_Q14[ i ];
91
11.8M
        }
92
93
23.8M
        rand_seed = silk_ADD32_ovflw( rand_seed, pulses[ i ] );
94
23.8M
    }
95
96
    /* Copy LPC state */
97
131k
    silk_memcpy( sLPC_Q14, psDec->sLPC_Q14_buf, MAX_LPC_ORDER * sizeof( opus_int32 ) );
98
99
131k
    pexc_Q14 = psDec->exc_Q14;
100
131k
    pxq      = xq;
101
131k
    sLTP_buf_idx = psDec->ltp_mem_length;
102
    /* Loop over subframes */
103
543k
    for( k = 0; k < psDec->nb_subfr; k++ ) {
104
411k
        pres_Q14 = res_Q14;
105
411k
        A_Q12 = psDecCtrl->PredCoef_Q12[ k >> 1 ];
106
107
        /* Preload LPC coefficients to array on stack. Gives small performance gain */
108
411k
        silk_memcpy( A_Q12_tmp, A_Q12, psDec->LPC_order * sizeof( opus_int16 ) );
109
411k
        B_Q14        = &psDecCtrl->LTPCoef_Q14[ k * LTP_ORDER ];
110
411k
        signalType   = psDec->indices.signalType;
111
112
411k
        Gain_Q10     = silk_RSHIFT( psDecCtrl->Gains_Q16[ k ], 6 );
113
411k
        inv_gain_Q31 = silk_INVERSE32_varQ( psDecCtrl->Gains_Q16[ k ], 47 );
114
115
        /* Calculate gain adjustment factor */
116
411k
        if( psDecCtrl->Gains_Q16[ k ] != psDec->prev_gain_Q16 ) {
117
222k
            gain_adj_Q16 =  silk_DIV32_varQ( psDec->prev_gain_Q16, psDecCtrl->Gains_Q16[ k ], 16 );
118
119
            /* Scale short term state */
120
3.78M
            for( i = 0; i < MAX_LPC_ORDER; i++ ) {
121
3.56M
                sLPC_Q14[ i ] = silk_SMULWW( gain_adj_Q16, sLPC_Q14[ i ] );
122
3.56M
            }
123
222k
        } else {
124
188k
            gain_adj_Q16 = (opus_int32)1 << 16;
125
188k
        }
126
127
        /* Save inv_gain */
128
411k
        silk_assert( inv_gain_Q31 != 0 );
129
411k
        psDec->prev_gain_Q16 = psDecCtrl->Gains_Q16[ k ];
130
131
        /* Avoid abrupt transition from voiced PLC to unvoiced normal decoding */
132
411k
        if( psDec->lossCnt && psDec->prevSignalType == TYPE_VOICED &&
133
17.1k
            psDec->indices.signalType != TYPE_VOICED && k < MAX_NB_SUBFR/2 ) {
134
135
7.41k
            silk_memset( B_Q14, 0, LTP_ORDER * sizeof( opus_int16 ) );
136
7.41k
            B_Q14[ LTP_ORDER/2 ] = SILK_FIX_CONST( 0.25, 14 );
137
138
7.41k
            signalType = TYPE_VOICED;
139
7.41k
            psDecCtrl->pitchL[ k ] = psDec->lagPrev;
140
7.41k
        }
141
142
411k
        if( signalType == TYPE_VOICED ) {
143
            /* Voiced */
144
111k
            lag = psDecCtrl->pitchL[ k ];
145
146
            /* Re-whitening */
147
111k
            if( k == 0 || ( k == 2 && NLSF_interpolation_flag ) ) {
148
                /* Rewhiten with new A coefs */
149
41.2k
                start_idx = psDec->ltp_mem_length - lag - psDec->LPC_order - LTP_ORDER / 2;
150
41.2k
                celt_assert( start_idx > 0 );
151
152
41.2k
                if( k == 2 ) {
153
5.08k
                    silk_memcpy( &psDec->outBuf[ psDec->ltp_mem_length ], xq, 2 * psDec->subfr_length * sizeof( opus_int16 ) );
154
5.08k
                }
155
156
41.2k
                silk_LPC_analysis_filter( &sLTP[ start_idx ], &psDec->outBuf[ start_idx + k * psDec->subfr_length ],
157
41.2k
                    A_Q12, psDec->ltp_mem_length - start_idx, psDec->LPC_order, arch );
158
159
                /* After rewhitening the LTP state is unscaled */
160
41.2k
                if( k == 0 ) {
161
                    /* Do LTP downscaling to reduce inter-packet dependency */
162
36.1k
                    inv_gain_Q31 = silk_LSHIFT( silk_SMULWB( inv_gain_Q31, psDecCtrl->LTP_scale_Q14 ), 2 );
163
36.1k
                }
164
3.60M
                for( i = 0; i < lag + LTP_ORDER/2; i++ ) {
165
3.56M
                    sLTP_Q15[ sLTP_buf_idx - i - 1 ] = silk_SMULWB( inv_gain_Q31, sLTP[ psDec->ltp_mem_length - i - 1 ] );
166
3.56M
                }
167
70.0k
            } else {
168
                /* Update LTP state when Gain changes */
169
70.0k
                if( gain_adj_Q16 != (opus_int32)1 << 16 ) {
170
2.63M
                    for( i = 0; i < lag + LTP_ORDER/2; i++ ) {
171
2.60M
                        sLTP_Q15[ sLTP_buf_idx - i - 1 ] = silk_SMULWW( gain_adj_Q16, sLTP_Q15[ sLTP_buf_idx - i - 1 ] );
172
2.60M
                    }
173
29.9k
                }
174
70.0k
            }
175
111k
        }
176
177
        /* Long-term prediction */
178
411k
        if( signalType == TYPE_VOICED ) {
179
            /* Set up pointer */
180
111k
            pred_lag_ptr = &sLTP_Q15[ sLTP_buf_idx - lag + LTP_ORDER / 2 ];
181
6.76M
            for( i = 0; i < psDec->subfr_length; i++ ) {
182
                /* Unrolled loop */
183
                /* Avoids introducing a bias because silk_SMLAWB() always rounds to -inf */
184
6.65M
                LTP_pred_Q13 = 2;
185
6.65M
                LTP_pred_Q13 = silk_SMLAWB( LTP_pred_Q13, pred_lag_ptr[  0 ], B_Q14[ 0 ] );
186
6.65M
                LTP_pred_Q13 = silk_SMLAWB( LTP_pred_Q13, pred_lag_ptr[ -1 ], B_Q14[ 1 ] );
187
6.65M
                LTP_pred_Q13 = silk_SMLAWB( LTP_pred_Q13, pred_lag_ptr[ -2 ], B_Q14[ 2 ] );
188
6.65M
                LTP_pred_Q13 = silk_SMLAWB( LTP_pred_Q13, pred_lag_ptr[ -3 ], B_Q14[ 3 ] );
189
6.65M
                LTP_pred_Q13 = silk_SMLAWB( LTP_pred_Q13, pred_lag_ptr[ -4 ], B_Q14[ 4 ] );
190
6.65M
                pred_lag_ptr++;
191
192
                /* Generate LPC excitation */
193
6.65M
                pres_Q14[ i ] = silk_ADD_LSHIFT32( pexc_Q14[ i ], LTP_pred_Q13, 1 );
194
195
                /* Update states */
196
6.65M
                sLTP_Q15[ sLTP_buf_idx ] = silk_LSHIFT( pres_Q14[ i ], 1 );
197
6.65M
                sLTP_buf_idx++;
198
6.65M
            }
199
299k
        } else {
200
299k
            pres_Q14 = pexc_Q14;
201
299k
        }
202
203
24.2M
        for( i = 0; i < psDec->subfr_length; i++ ) {
204
            /* Short-term prediction */
205
23.8M
            celt_assert( psDec->LPC_order == 10 || psDec->LPC_order == 16 );
206
            /* Avoids introducing a bias because silk_SMLAWB() always rounds to -inf */
207
23.8M
            LPC_pred_Q10 = silk_RSHIFT( psDec->LPC_order, 1 );
208
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  1 ], A_Q12_tmp[ 0 ] );
209
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  2 ], A_Q12_tmp[ 1 ] );
210
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  3 ], A_Q12_tmp[ 2 ] );
211
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  4 ], A_Q12_tmp[ 3 ] );
212
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  5 ], A_Q12_tmp[ 4 ] );
213
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  6 ], A_Q12_tmp[ 5 ] );
214
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  7 ], A_Q12_tmp[ 6 ] );
215
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  8 ], A_Q12_tmp[ 7 ] );
216
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i -  9 ], A_Q12_tmp[ 8 ] );
217
23.8M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i - 10 ], A_Q12_tmp[ 9 ] );
218
23.8M
            if( psDec->LPC_order == 16 ) {
219
12.4M
                LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i - 11 ], A_Q12_tmp[ 10 ] );
220
12.4M
                LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i - 12 ], A_Q12_tmp[ 11 ] );
221
12.4M
                LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i - 13 ], A_Q12_tmp[ 12 ] );
222
12.4M
                LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i - 14 ], A_Q12_tmp[ 13 ] );
223
12.4M
                LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i - 15 ], A_Q12_tmp[ 14 ] );
224
12.4M
                LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14[ MAX_LPC_ORDER + i - 16 ], A_Q12_tmp[ 15 ] );
225
12.4M
            }
226
227
            /* Add prediction to LPC excitation */
228
23.8M
            sLPC_Q14[ MAX_LPC_ORDER + i ] = silk_ADD_SAT32( pres_Q14[ i ], silk_LSHIFT_SAT32( LPC_pred_Q10, 4 ) );
229
230
            /* Scale with gain */
231
23.8M
            pxq[ i ] = (opus_int16)silk_SAT16( silk_RSHIFT_ROUND( silk_SMULWW( sLPC_Q14[ MAX_LPC_ORDER + i ], Gain_Q10 ), 8 ) );
232
23.8M
        }
233
234
        /* Update LPC filter state */
235
411k
        silk_memcpy( sLPC_Q14, &sLPC_Q14[ psDec->subfr_length ], MAX_LPC_ORDER * sizeof( opus_int32 ) );
236
411k
        pexc_Q14 += psDec->subfr_length;
237
411k
        pxq      += psDec->subfr_length;
238
411k
    }
239
240
    /* Save LPC state */
241
131k
    silk_memcpy( psDec->sLPC_Q14_buf, sLPC_Q14, MAX_LPC_ORDER * sizeof( opus_int32 ) );
242
131k
    RESTORE_STACK;
243
131k
}