Coverage Report

Created: 2026-09-03 08:13

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/opus/silk/NSQ_del_dec.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
#include "NSQ.h"
35
36
37
typedef struct {
38
    opus_int32 sLPC_Q14[ MAX_SUB_FRAME_LENGTH + NSQ_LPC_BUF_LENGTH ];
39
    opus_int32 RandState[ DECISION_DELAY ];
40
    opus_int32 Q_Q10[     DECISION_DELAY ];
41
    opus_int32 Xq_Q14[    DECISION_DELAY ];
42
    opus_int32 Pred_Q15[  DECISION_DELAY ];
43
    opus_int32 Shape_Q14[ DECISION_DELAY ];
44
    opus_int32 sAR2_Q14[ MAX_SHAPE_LPC_ORDER ];
45
    opus_int32 LF_AR_Q14;
46
    opus_int32 Diff_Q14;
47
    opus_int32 Seed;
48
    opus_int32 SeedInit;
49
    opus_int32 RD_Q10;
50
} NSQ_del_dec_struct;
51
52
typedef struct {
53
    opus_int32 Q_Q10;
54
    opus_int32 RD_Q10;
55
    opus_int32 xq_Q14;
56
    opus_int32 LF_AR_Q14;
57
    opus_int32 Diff_Q14;
58
    opus_int32 sLTP_shp_Q14;
59
    opus_int32 LPC_exc_Q14;
60
} NSQ_sample_struct;
61
62
typedef NSQ_sample_struct  NSQ_sample_pair[ 2 ];
63
64
static OPUS_INLINE void silk_nsq_del_dec_scale_states(
65
    const silk_encoder_state *psEncC,               /* I    Encoder State                       */
66
    silk_nsq_state      *NSQ,                       /* I/O  NSQ state                           */
67
    NSQ_del_dec_struct  psDelDec[],                 /* I/O  Delayed decision states             */
68
    const opus_int16    x16[],                      /* I    Input                               */
69
    opus_int32          x_sc_Q10[],                 /* O    Input scaled with 1/Gain in Q10     */
70
    const opus_int16    sLTP[],                     /* I    Re-whitened LTP state in Q0         */
71
    opus_int32          sLTP_Q15[],                 /* O    LTP state matching scaled input     */
72
    opus_int            subfr,                      /* I    Subframe number                     */
73
    opus_int            nStatesDelayedDecision,     /* I    Number of del dec states            */
74
    const opus_int      LTP_scale_Q14,              /* I    LTP state scaling                   */
75
    const opus_int32    Gains_Q16[ MAX_NB_SUBFR ],  /* I                                        */
76
    const opus_int      pitchL[ MAX_NB_SUBFR ],     /* I    Pitch lag                           */
77
    const opus_int      signal_type,                /* I    Signal type                         */
78
    const opus_int      decisionDelay               /* I    Decision delay                      */
79
);
80
81
/******************************************/
82
/* Noise shape quantizer for one subframe */
83
/******************************************/
84
static OPUS_INLINE void silk_noise_shape_quantizer_del_dec(
85
    silk_nsq_state      *NSQ,                   /* I/O  NSQ state                           */
86
    NSQ_del_dec_struct  psDelDec[],             /* I/O  Delayed decision states             */
87
    opus_int            signalType,             /* I    Signal type                         */
88
    const opus_int32    x_Q10[],                /* I                                        */
89
    opus_int8           pulses[],               /* O                                        */
90
    opus_int16          xq[],                   /* O                                        */
91
    opus_int32          sLTP_Q15[],             /* I/O  LTP filter state                    */
92
    opus_int32          delayedGain_Q10[],      /* I/O  Gain delay buffer                   */
93
    const opus_int16    a_Q12[],                /* I    Short term prediction coefs         */
94
    const opus_int16    b_Q14[],                /* I    Long term prediction coefs          */
95
    const opus_int16    AR_shp_Q13[],           /* I    Noise shaping coefs                 */
96
    opus_int            lag,                    /* I    Pitch lag                           */
97
    opus_int32          HarmShapeFIRPacked_Q14, /* I                                        */
98
    opus_int            Tilt_Q14,               /* I    Spectral tilt                       */
99
    opus_int32          LF_shp_Q14,             /* I                                        */
100
    opus_int32          Gain_Q16,               /* I                                        */
101
    opus_int            Lambda_Q10,             /* I                                        */
102
    opus_int            offset_Q10,             /* I                                        */
103
    opus_int            length,                 /* I    Input length                        */
104
    opus_int            subfr,                  /* I    Subframe number                     */
105
    opus_int            shapingLPCOrder,        /* I    Shaping LPC filter order            */
106
    opus_int            predictLPCOrder,        /* I    Prediction filter order             */
107
    opus_int            warping_Q16,            /* I                                        */
108
    opus_int            nStatesDelayedDecision, /* I    Number of states in decision tree   */
109
    opus_int            *smpl_buf_idx,          /* I/O  Index to newest samples in buffers  */
110
    opus_int            decisionDelay,          /* I                                        */
111
    int                 arch                    /* I                                        */
112
);
113
114
void silk_NSQ_del_dec_c(
115
    const silk_encoder_state    *psEncC,                                      /* I    Encoder State                   */
116
    silk_nsq_state              *NSQ,                                         /* I/O  NSQ state                       */
117
    SideInfoIndices             *psIndices,                                   /* I/O  Quantization Indices            */
118
    const opus_int16            x16[],                                        /* I    Input                           */
119
    opus_int8                   pulses[],                                     /* O    Quantized pulse signal          */
120
    const opus_int16            *PredCoef_Q12,                                /* I    Short term prediction coefs     */
121
    const opus_int16            LTPCoef_Q14[ LTP_ORDER * MAX_NB_SUBFR ],      /* I    Long term prediction coefs      */
122
    const opus_int16            AR_Q13[ MAX_NB_SUBFR * MAX_SHAPE_LPC_ORDER ], /* I    Noise shaping coefs             */
123
    const opus_int              HarmShapeGain_Q14[ MAX_NB_SUBFR ],            /* I    Long term shaping coefs         */
124
    const opus_int              Tilt_Q14[ MAX_NB_SUBFR ],                     /* I    Spectral tilt                   */
125
    const opus_int32            LF_shp_Q14[ MAX_NB_SUBFR ],                   /* I    Low frequency shaping coefs     */
126
    const opus_int32            Gains_Q16[ MAX_NB_SUBFR ],                    /* I    Quantization step sizes         */
127
    const opus_int              pitchL[ MAX_NB_SUBFR ],                       /* I    Pitch lags                      */
128
    const opus_int              Lambda_Q10,                                   /* I    Rate/distortion tradeoff        */
129
    const opus_int              LTP_scale_Q14                                 /* I    LTP state scaling               */
130
)
131
667k
{
132
667k
    opus_int            i, k, lag, start_idx, LSF_interpolation_flag, Winner_ind, subfr;
133
667k
    opus_int            last_smple_idx, smpl_buf_idx, decisionDelay;
134
667k
    const opus_int16    *A_Q12, *B_Q14, *AR_shp_Q13;
135
667k
    opus_int16          *pxq;
136
667k
    VARDECL( opus_int32, sLTP_Q15 );
137
667k
    VARDECL( opus_int16, sLTP );
138
667k
    opus_int32          HarmShapeFIRPacked_Q14;
139
667k
    opus_int            offset_Q10;
140
667k
    opus_int32          RDmin_Q10, Gain_Q10;
141
667k
    VARDECL( opus_int32, x_sc_Q10 );
142
667k
    VARDECL( opus_int32, delayedGain_Q10 );
143
667k
    VARDECL( NSQ_del_dec_struct, psDelDec );
144
667k
    NSQ_del_dec_struct  *psDD;
145
667k
    SAVE_STACK;
146
147
    /* Set unvoiced lag to the previous one, overwrite later for voiced */
148
667k
    lag = NSQ->lagPrev;
149
150
667k
    silk_assert( NSQ->prev_gain_Q16 != 0 );
151
152
    /* Initialize delayed decision states */
153
667k
    ALLOC( psDelDec, psEncC->nStatesDelayedDecision, NSQ_del_dec_struct );
154
667k
    silk_memset( psDelDec, 0, psEncC->nStatesDelayedDecision * sizeof( NSQ_del_dec_struct ) );
155
2.50M
    for( k = 0; k < psEncC->nStatesDelayedDecision; k++ ) {
156
1.83M
        psDD                 = &psDelDec[ k ];
157
1.83M
        psDD->Seed           = ( k + psIndices->Seed ) & 3;
158
1.83M
        psDD->SeedInit       = psDD->Seed;
159
1.83M
        psDD->RD_Q10         = 0;
160
1.83M
        psDD->LF_AR_Q14      = NSQ->sLF_AR_shp_Q14;
161
1.83M
        psDD->Diff_Q14       = NSQ->sDiff_shp_Q14;
162
1.83M
        psDD->Shape_Q14[ 0 ] = NSQ->sLTP_shp_Q14[ psEncC->ltp_mem_length - 1 ];
163
1.83M
        silk_memcpy( psDD->sLPC_Q14, NSQ->sLPC_Q14, NSQ_LPC_BUF_LENGTH * sizeof( opus_int32 ) );
164
1.83M
        silk_memcpy( psDD->sAR2_Q14, NSQ->sAR2_Q14, sizeof( NSQ->sAR2_Q14 ) );
165
1.83M
    }
166
167
667k
    offset_Q10   = silk_Quantization_Offsets_Q10[ psIndices->signalType >> 1 ][ psIndices->quantOffsetType ];
168
667k
    smpl_buf_idx = 0; /* index of oldest samples */
169
170
667k
    decisionDelay = silk_min_int( DECISION_DELAY, psEncC->subfr_length );
171
172
    /* For voiced frames limit the decision delay to lower than the pitch lag */
173
667k
    if( psIndices->signalType == TYPE_VOICED ) {
174
642k
        for( k = 0; k < psEncC->nb_subfr; k++ ) {
175
513k
            decisionDelay = silk_min_int( decisionDelay, pitchL[ k ] - LTP_ORDER / 2 - 1 );
176
513k
        }
177
538k
    } else {
178
538k
        if( lag > 0 ) {
179
333k
            decisionDelay = silk_min_int( decisionDelay, lag - LTP_ORDER / 2 - 1 );
180
333k
        }
181
538k
    }
182
183
667k
    if( psIndices->NLSFInterpCoef_Q2 == 4 ) {
184
578k
        LSF_interpolation_flag = 0;
185
578k
    } else {
186
88.4k
        LSF_interpolation_flag = 1;
187
88.4k
    }
188
189
667k
    ALLOC( sLTP_Q15, psEncC->ltp_mem_length + psEncC->frame_length, opus_int32 );
190
667k
    ALLOC( sLTP, psEncC->ltp_mem_length + psEncC->frame_length, opus_int16 );
191
667k
    ALLOC( x_sc_Q10, psEncC->subfr_length, opus_int32 );
192
667k
    ALLOC( delayedGain_Q10, DECISION_DELAY, opus_int32 );
193
    /* Set up pointers to start of sub frame */
194
667k
    pxq                   = &NSQ->xq[ psEncC->ltp_mem_length ];
195
667k
    NSQ->sLTP_shp_buf_idx = psEncC->ltp_mem_length;
196
667k
    NSQ->sLTP_buf_idx     = psEncC->ltp_mem_length;
197
667k
    subfr = 0;
198
2.93M
    for( k = 0; k < psEncC->nb_subfr; k++ ) {
199
2.27M
        A_Q12      = &PredCoef_Q12[ ( ( k >> 1 ) | ( 1 - LSF_interpolation_flag ) ) * MAX_LPC_ORDER ];
200
2.27M
        B_Q14      = &LTPCoef_Q14[ k * LTP_ORDER           ];
201
2.27M
        AR_shp_Q13 = &AR_Q13[     k * MAX_SHAPE_LPC_ORDER ];
202
203
        /* Noise shape parameters */
204
2.27M
        silk_assert( HarmShapeGain_Q14[ k ] >= 0 );
205
2.27M
        HarmShapeFIRPacked_Q14  =                          silk_RSHIFT( HarmShapeGain_Q14[ k ], 2 );
206
2.27M
        HarmShapeFIRPacked_Q14 |= silk_LSHIFT( (opus_int32)silk_RSHIFT( HarmShapeGain_Q14[ k ], 1 ), 16 );
207
208
2.27M
        NSQ->rewhite_flag = 0;
209
2.27M
        if( psIndices->signalType == TYPE_VOICED ) {
210
            /* Voiced */
211
513k
            lag = pitchL[ k ];
212
213
            /* Re-whitening */
214
513k
            if( ( k & ( 3 - silk_LSHIFT( LSF_interpolation_flag, 1 ) ) ) == 0 ) {
215
171k
                if( k == 2 ) {
216
                    /* RESET DELAYED DECISIONS */
217
                    /* Find winner */
218
43.3k
                    RDmin_Q10 = psDelDec[ 0 ].RD_Q10;
219
43.3k
                    Winner_ind = 0;
220
119k
                    for( i = 1; i < psEncC->nStatesDelayedDecision; i++ ) {
221
76.5k
                        if( psDelDec[ i ].RD_Q10 < RDmin_Q10 ) {
222
31.1k
                            RDmin_Q10 = psDelDec[ i ].RD_Q10;
223
31.1k
                            Winner_ind = i;
224
31.1k
                        }
225
76.5k
                    }
226
163k
                    for( i = 0; i < psEncC->nStatesDelayedDecision; i++ ) {
227
119k
                        if( i != Winner_ind ) {
228
76.5k
                            psDelDec[ i ].RD_Q10 += ( silk_int32_MAX >> 4 );
229
76.5k
                            silk_assert( psDelDec[ i ].RD_Q10 >= 0 );
230
76.5k
                        }
231
119k
                    }
232
233
                    /* Copy final part of signals from winner state to output and long-term filter states */
234
43.3k
                    psDD = &psDelDec[ Winner_ind ];
235
43.3k
                    last_smple_idx = smpl_buf_idx + decisionDelay;
236
1.16M
                    for( i = 0; i < decisionDelay; i++ ) {
237
1.12M
                        last_smple_idx = ( last_smple_idx - 1 ) % DECISION_DELAY;
238
1.12M
                        if( last_smple_idx < 0 ) last_smple_idx += DECISION_DELAY;
239
1.12M
                        pulses[   i - decisionDelay ] = (opus_int8)silk_RSHIFT_ROUND( psDD->Q_Q10[ last_smple_idx ], 10 );
240
1.12M
                        pxq[ i - decisionDelay ] = (opus_int16)silk_SAT16( silk_RSHIFT_ROUND(
241
1.12M
                            silk_SMULWW( psDD->Xq_Q14[ last_smple_idx ], Gains_Q16[ 1 ] ), 14 ) );
242
1.12M
                        NSQ->sLTP_shp_Q14[ NSQ->sLTP_shp_buf_idx - decisionDelay + i ] = psDD->Shape_Q14[ last_smple_idx ];
243
1.12M
                    }
244
245
43.3k
                    subfr = 0;
246
43.3k
                }
247
248
                /* Rewhiten with new A coefs */
249
171k
                start_idx = psEncC->ltp_mem_length - lag - psEncC->predictLPCOrder - LTP_ORDER / 2;
250
171k
                celt_assert( start_idx > 0 );
251
252
171k
                silk_LPC_analysis_filter( &sLTP[ start_idx ], &NSQ->xq[ start_idx + k * psEncC->subfr_length ],
253
171k
                    A_Q12, psEncC->ltp_mem_length - start_idx, psEncC->predictLPCOrder, psEncC->arch );
254
255
171k
                NSQ->sLTP_buf_idx = psEncC->ltp_mem_length;
256
171k
                NSQ->rewhite_flag = 1;
257
171k
            }
258
513k
        }
259
260
2.27M
        silk_nsq_del_dec_scale_states( psEncC, NSQ, psDelDec, x16, x_sc_Q10, sLTP, sLTP_Q15, k,
261
2.27M
            psEncC->nStatesDelayedDecision, LTP_scale_Q14, Gains_Q16, pitchL, psIndices->signalType, decisionDelay );
262
263
2.27M
        silk_noise_shape_quantizer_del_dec( NSQ, psDelDec, psIndices->signalType, x_sc_Q10, pulses, pxq, sLTP_Q15,
264
2.27M
            delayedGain_Q10, A_Q12, B_Q14, AR_shp_Q13, lag, HarmShapeFIRPacked_Q14, Tilt_Q14[ k ], LF_shp_Q14[ k ],
265
2.27M
            Gains_Q16[ k ], Lambda_Q10, offset_Q10, psEncC->subfr_length, subfr++, psEncC->shapingLPCOrder,
266
2.27M
            psEncC->predictLPCOrder, psEncC->warping_Q16, psEncC->nStatesDelayedDecision, &smpl_buf_idx, decisionDelay, psEncC->arch );
267
268
2.27M
        x16    += psEncC->subfr_length;
269
2.27M
        pulses += psEncC->subfr_length;
270
2.27M
        pxq    += psEncC->subfr_length;
271
2.27M
    }
272
273
    /* Find winner */
274
667k
    RDmin_Q10 = psDelDec[ 0 ].RD_Q10;
275
667k
    Winner_ind = 0;
276
1.83M
    for( k = 1; k < psEncC->nStatesDelayedDecision; k++ ) {
277
1.16M
        if( psDelDec[ k ].RD_Q10 < RDmin_Q10 ) {
278
496k
            RDmin_Q10 = psDelDec[ k ].RD_Q10;
279
496k
            Winner_ind = k;
280
496k
        }
281
1.16M
    }
282
283
    /* Copy final part of signals from winner state to output and long-term filter states */
284
667k
    psDD = &psDelDec[ Winner_ind ];
285
667k
    psIndices->Seed = psDD->SeedInit;
286
667k
    last_smple_idx = smpl_buf_idx + decisionDelay;
287
667k
    Gain_Q10 = silk_RSHIFT32( Gains_Q16[ psEncC->nb_subfr - 1 ], 6 );
288
25.3M
    for( i = 0; i < decisionDelay; i++ ) {
289
24.6M
        last_smple_idx = ( last_smple_idx - 1 ) % DECISION_DELAY;
290
24.6M
        if( last_smple_idx < 0 ) last_smple_idx += DECISION_DELAY;
291
292
24.6M
        pulses[   i - decisionDelay ] = (opus_int8)silk_RSHIFT_ROUND( psDD->Q_Q10[ last_smple_idx ], 10 );
293
24.6M
        pxq[ i - decisionDelay ] = (opus_int16)silk_SAT16( silk_RSHIFT_ROUND(
294
24.6M
            silk_SMULWW( psDD->Xq_Q14[ last_smple_idx ], Gain_Q10 ), 8 ) );
295
24.6M
        NSQ->sLTP_shp_Q14[ NSQ->sLTP_shp_buf_idx - decisionDelay + i ] = psDD->Shape_Q14[ last_smple_idx ];
296
24.6M
    }
297
667k
    silk_memcpy( NSQ->sLPC_Q14, &psDD->sLPC_Q14[ psEncC->subfr_length ], NSQ_LPC_BUF_LENGTH * sizeof( opus_int32 ) );
298
667k
    silk_memcpy( NSQ->sAR2_Q14, psDD->sAR2_Q14, sizeof( psDD->sAR2_Q14 ) );
299
300
    /* Update states */
301
667k
    NSQ->sLF_AR_shp_Q14 = psDD->LF_AR_Q14;
302
667k
    NSQ->sDiff_shp_Q14  = psDD->Diff_Q14;
303
667k
    NSQ->lagPrev        = pitchL[ psEncC->nb_subfr - 1 ];
304
305
    /* Save quantized speech signal */
306
667k
    silk_memmove( NSQ->xq,           &NSQ->xq[           psEncC->frame_length ], psEncC->ltp_mem_length * sizeof( opus_int16 ) );
307
667k
    silk_memmove( NSQ->sLTP_shp_Q14, &NSQ->sLTP_shp_Q14[ psEncC->frame_length ], psEncC->ltp_mem_length * sizeof( opus_int32 ) );
308
667k
    RESTORE_STACK;
309
667k
}
310
311
/******************************************/
312
/* Noise shape quantizer for one subframe */
313
/******************************************/
314
#ifndef OVERRIDE_silk_noise_shape_quantizer_del_dec
315
static OPUS_INLINE void silk_noise_shape_quantizer_del_dec(
316
    silk_nsq_state      *NSQ,                   /* I/O  NSQ state                           */
317
    NSQ_del_dec_struct  psDelDec[],             /* I/O  Delayed decision states             */
318
    opus_int            signalType,             /* I    Signal type                         */
319
    const opus_int32    x_Q10[],                /* I                                        */
320
    opus_int8           pulses[],               /* O                                        */
321
    opus_int16          xq[],                   /* O                                        */
322
    opus_int32          sLTP_Q15[],             /* I/O  LTP filter state                    */
323
    opus_int32          delayedGain_Q10[],      /* I/O  Gain delay buffer                   */
324
    const opus_int16    a_Q12[],                /* I    Short term prediction coefs         */
325
    const opus_int16    b_Q14[],                /* I    Long term prediction coefs          */
326
    const opus_int16    AR_shp_Q13[],           /* I    Noise shaping coefs                 */
327
    opus_int            lag,                    /* I    Pitch lag                           */
328
    opus_int32          HarmShapeFIRPacked_Q14, /* I                                        */
329
    opus_int            Tilt_Q14,               /* I    Spectral tilt                       */
330
    opus_int32          LF_shp_Q14,             /* I                                        */
331
    opus_int32          Gain_Q16,               /* I                                        */
332
    opus_int            Lambda_Q10,             /* I                                        */
333
    opus_int            offset_Q10,             /* I                                        */
334
    opus_int            length,                 /* I    Input length                        */
335
    opus_int            subfr,                  /* I    Subframe number                     */
336
    opus_int            shapingLPCOrder,        /* I    Shaping LPC filter order            */
337
    opus_int            predictLPCOrder,        /* I    Prediction filter order             */
338
    opus_int            warping_Q16,            /* I                                        */
339
    opus_int            nStatesDelayedDecision, /* I    Number of states in decision tree   */
340
    opus_int            *smpl_buf_idx,          /* I/O  Index to newest samples in buffers  */
341
    opus_int            decisionDelay,          /* I                                        */
342
    int                 arch                    /* I                                        */
343
)
344
2.27M
{
345
2.27M
    opus_int     i, j, k, Winner_ind, RDmin_ind, RDmax_ind, last_smple_idx;
346
2.27M
    opus_int32   Winner_rand_state;
347
2.27M
    opus_int32   LTP_pred_Q14, LPC_pred_Q14, n_AR_Q14, n_LTP_Q14;
348
2.27M
    opus_int32   n_LF_Q14, r_Q10, rr_Q10, rd1_Q10, rd2_Q10, RDmin_Q10, RDmax_Q10;
349
2.27M
    opus_int32   q1_Q0, q1_Q10, q2_Q10, exc_Q14, LPC_exc_Q14, xq_Q14, Gain_Q10;
350
2.27M
    opus_int32   tmp1, tmp2, sLF_AR_shp_Q14;
351
2.27M
    opus_int32   *pred_lag_ptr, *shp_lag_ptr, *psLPC_Q14;
352
#ifdef silk_short_prediction_create_arch_coef
353
    opus_int32   a_Q12_arch[MAX_LPC_ORDER];
354
#endif
355
356
2.27M
    VARDECL( NSQ_sample_pair, psSampleState );
357
2.27M
    NSQ_del_dec_struct *psDD;
358
2.27M
    NSQ_sample_struct  *psSS;
359
2.27M
    SAVE_STACK;
360
361
2.27M
    celt_assert( nStatesDelayedDecision > 0 );
362
2.27M
    ALLOC( psSampleState, nStatesDelayedDecision, NSQ_sample_pair );
363
364
2.27M
    shp_lag_ptr  = &NSQ->sLTP_shp_Q14[ NSQ->sLTP_shp_buf_idx - lag + HARM_SHAPE_FIR_TAPS / 2 ];
365
2.27M
    pred_lag_ptr = &sLTP_Q15[ NSQ->sLTP_buf_idx - lag + LTP_ORDER / 2 ];
366
2.27M
    Gain_Q10     = silk_RSHIFT( Gain_Q16, 6 );
367
368
#ifdef silk_short_prediction_create_arch_coef
369
    silk_short_prediction_create_arch_coef(a_Q12_arch, a_Q12, predictLPCOrder);
370
#endif
371
372
110M
    for( i = 0; i < length; i++ ) {
373
        /* Perform common calculations used in all states */
374
375
        /* Long-term prediction */
376
108M
        if( signalType == TYPE_VOICED ) {
377
            /* Unrolled loop */
378
            /* Avoids introducing a bias because silk_SMLAWB() always rounds to -inf */
379
25.0M
            LTP_pred_Q14 = 2;
380
25.0M
            LTP_pred_Q14 = silk_SMLAWB( LTP_pred_Q14, pred_lag_ptr[  0 ], b_Q14[ 0 ] );
381
25.0M
            LTP_pred_Q14 = silk_SMLAWB( LTP_pred_Q14, pred_lag_ptr[ -1 ], b_Q14[ 1 ] );
382
25.0M
            LTP_pred_Q14 = silk_SMLAWB( LTP_pred_Q14, pred_lag_ptr[ -2 ], b_Q14[ 2 ] );
383
25.0M
            LTP_pred_Q14 = silk_SMLAWB( LTP_pred_Q14, pred_lag_ptr[ -3 ], b_Q14[ 3 ] );
384
25.0M
            LTP_pred_Q14 = silk_SMLAWB( LTP_pred_Q14, pred_lag_ptr[ -4 ], b_Q14[ 4 ] );
385
25.0M
            LTP_pred_Q14 = silk_LSHIFT( LTP_pred_Q14, 1 );                          /* Q13 -> Q14 */
386
25.0M
            pred_lag_ptr++;
387
83.2M
        } else {
388
83.2M
            LTP_pred_Q14 = 0;
389
83.2M
        }
390
391
        /* Long-term shaping */
392
108M
        if( lag > 0 ) {
393
            /* Symmetric, packed FIR coefficients */
394
68.9M
            n_LTP_Q14 = silk_SMULWB( silk_ADD_SAT32( shp_lag_ptr[ 0 ], shp_lag_ptr[ -2 ] ), HarmShapeFIRPacked_Q14 );
395
68.9M
            n_LTP_Q14 = silk_SMLAWT( n_LTP_Q14, shp_lag_ptr[ -1 ], HarmShapeFIRPacked_Q14 );
396
68.9M
            n_LTP_Q14 = silk_SUB_LSHIFT32( LTP_pred_Q14, n_LTP_Q14, 2 );            /* Q12 -> Q14 */
397
68.9M
            shp_lag_ptr++;
398
68.9M
        } else {
399
39.4M
            n_LTP_Q14 = 0;
400
39.4M
        }
401
402
416M
        for( k = 0; k < nStatesDelayedDecision; k++ ) {
403
            /* Delayed decision state */
404
308M
            psDD = &psDelDec[ k ];
405
406
            /* Sample state */
407
308M
            psSS = psSampleState[ k ];
408
409
            /* Generate dither */
410
308M
            psDD->Seed = silk_RAND( psDD->Seed );
411
412
            /* Pointer used in short term prediction and shaping */
413
308M
            psLPC_Q14 = &psDD->sLPC_Q14[ NSQ_LPC_BUF_LENGTH - 1 + i ];
414
            /* Short-term prediction */
415
308M
            LPC_pred_Q14 = silk_noise_shape_quantizer_short_prediction(psLPC_Q14, a_Q12, a_Q12_arch, predictLPCOrder, arch);
416
308M
            LPC_pred_Q14 = silk_LSHIFT( LPC_pred_Q14, 4 );                              /* Q10 -> Q14 */
417
418
            /* Noise shape feedback */
419
308M
            celt_assert( ( shapingLPCOrder & 1 ) == 0 );   /* check that order is even */
420
            /* Output of lowpass section */
421
308M
            tmp2 = silk_SMLAWB( psDD->Diff_Q14, psDD->sAR2_Q14[ 0 ], warping_Q16 );
422
            /* Output of allpass section */
423
308M
            tmp1 = silk_SMLAWB( psDD->sAR2_Q14[ 0 ], silk_SUB32_ovflw(psDD->sAR2_Q14[ 1 ], tmp2), warping_Q16 );
424
308M
            psDD->sAR2_Q14[ 0 ] = tmp2;
425
308M
            n_AR_Q14 = silk_RSHIFT( shapingLPCOrder, 1 );
426
308M
            n_AR_Q14 = silk_SMLAWB( n_AR_Q14, tmp2, AR_shp_Q13[ 0 ] );
427
            /* Loop over allpass sections */
428
3.10G
            for( j = 2; j < shapingLPCOrder; j += 2 ) {
429
                /* Output of allpass section */
430
2.79G
                tmp2 = silk_SMLAWB( psDD->sAR2_Q14[ j - 1 ], silk_SUB32_ovflw(psDD->sAR2_Q14[ j + 0 ], tmp1), warping_Q16 );
431
2.79G
                psDD->sAR2_Q14[ j - 1 ] = tmp1;
432
2.79G
                n_AR_Q14 = silk_SMLAWB( n_AR_Q14, tmp1, AR_shp_Q13[ j - 1 ] );
433
                /* Output of allpass section */
434
2.79G
                tmp1 = silk_SMLAWB( psDD->sAR2_Q14[ j + 0 ], silk_SUB32_ovflw(psDD->sAR2_Q14[ j + 1 ], tmp2), warping_Q16 );
435
2.79G
                psDD->sAR2_Q14[ j + 0 ] = tmp2;
436
2.79G
                n_AR_Q14 = silk_SMLAWB( n_AR_Q14, tmp2, AR_shp_Q13[ j ] );
437
2.79G
            }
438
308M
            psDD->sAR2_Q14[ shapingLPCOrder - 1 ] = tmp1;
439
308M
            n_AR_Q14 = silk_SMLAWB( n_AR_Q14, tmp1, AR_shp_Q13[ shapingLPCOrder - 1 ] );
440
441
308M
            n_AR_Q14 = silk_LSHIFT( n_AR_Q14, 1 );                                      /* Q11 -> Q12 */
442
308M
            n_AR_Q14 = silk_SMLAWB( n_AR_Q14, psDD->LF_AR_Q14, Tilt_Q14 );              /* Q12 */
443
308M
            n_AR_Q14 = silk_LSHIFT( n_AR_Q14, 2 );                                      /* Q12 -> Q14 */
444
445
308M
            n_LF_Q14 = silk_SMULWB( psDD->Shape_Q14[ *smpl_buf_idx ], LF_shp_Q14 );     /* Q12 */
446
308M
            n_LF_Q14 = silk_SMLAWT( n_LF_Q14, psDD->LF_AR_Q14, LF_shp_Q14 );            /* Q12 */
447
308M
            n_LF_Q14 = silk_LSHIFT( n_LF_Q14, 2 );                                      /* Q12 -> Q14 */
448
449
            /* Input minus prediction plus noise feedback                       */
450
            /* r = x[ i ] - LTP_pred - LPC_pred + n_AR + n_Tilt + n_LF + n_LTP  */
451
308M
            tmp1 = silk_ADD_SAT32( n_AR_Q14, n_LF_Q14 );                                /* Q14 */
452
308M
            tmp2 = silk_ADD32_ovflw( n_LTP_Q14, LPC_pred_Q14 );                         /* Q13 */
453
308M
            tmp1 = silk_SUB_SAT32( tmp2, tmp1 );                                        /* Q13 */
454
308M
            tmp1 = silk_RSHIFT_ROUND( tmp1, 4 );                                        /* Q10 */
455
456
308M
            r_Q10 = silk_SUB32( x_Q10[ i ], tmp1 );                                     /* residual error Q10 */
457
458
            /* Flip sign depending on dither */
459
308M
            if ( psDD->Seed < 0 ) {
460
150M
                r_Q10 = -r_Q10;
461
150M
            }
462
308M
            r_Q10 = silk_LIMIT_32( r_Q10, -(31 << 10), 30 << 10 );
463
464
            /* Find two quantization level candidates and measure their rate-distortion */
465
308M
            q1_Q10 = silk_SUB32( r_Q10, offset_Q10 );
466
308M
            q1_Q0 = silk_RSHIFT( q1_Q10, 10 );
467
308M
            if (Lambda_Q10 > 2048) {
468
                /* For aggressive RDO, the bias becomes more than one pulse. */
469
19.4M
                int rdo_offset = Lambda_Q10/2 - 512;
470
19.4M
                if (q1_Q10 > rdo_offset) {
471
2.61M
                    q1_Q0 = silk_RSHIFT( q1_Q10 - rdo_offset, 10 );
472
16.8M
                } else if (q1_Q10 < -rdo_offset) {
473
3.12M
                    q1_Q0 = silk_RSHIFT( q1_Q10 + rdo_offset, 10 );
474
13.7M
                } else if (q1_Q10 < 0) {
475
7.70M
                    q1_Q0 = -1;
476
7.70M
                } else {
477
6.01M
                    q1_Q0 = 0;
478
6.01M
                }
479
19.4M
            }
480
308M
            if( q1_Q0 > 0 ) {
481
21.7M
                q1_Q10  = silk_SUB32( silk_LSHIFT( q1_Q0, 10 ), QUANT_LEVEL_ADJUST_Q10 );
482
21.7M
                q1_Q10  = silk_ADD32( q1_Q10, offset_Q10 );
483
21.7M
                q2_Q10  = silk_ADD32( q1_Q10, 1024 );
484
21.7M
                rd1_Q10 = silk_SMULBB( q1_Q10, Lambda_Q10 );
485
21.7M
                rd2_Q10 = silk_SMULBB( q2_Q10, Lambda_Q10 );
486
286M
            } else if( q1_Q0 == 0 ) {
487
88.6M
                q1_Q10  = offset_Q10;
488
88.6M
                q2_Q10  = silk_ADD32( q1_Q10, 1024 - QUANT_LEVEL_ADJUST_Q10 );
489
88.6M
                rd1_Q10 = silk_SMULBB( q1_Q10, Lambda_Q10 );
490
88.6M
                rd2_Q10 = silk_SMULBB( q2_Q10, Lambda_Q10 );
491
198M
            } else if( q1_Q0 == -1 ) {
492
171M
                q2_Q10  = offset_Q10;
493
171M
                q1_Q10  = silk_SUB32( q2_Q10, 1024 - QUANT_LEVEL_ADJUST_Q10 );
494
171M
                rd1_Q10 = silk_SMULBB( -q1_Q10, Lambda_Q10 );
495
171M
                rd2_Q10 = silk_SMULBB(  q2_Q10, Lambda_Q10 );
496
171M
            } else {            /* q1_Q0 < -1 */
497
26.7M
                q1_Q10  = silk_ADD32( silk_LSHIFT( q1_Q0, 10 ), QUANT_LEVEL_ADJUST_Q10 );
498
26.7M
                q1_Q10  = silk_ADD32( q1_Q10, offset_Q10 );
499
26.7M
                q2_Q10  = silk_ADD32( q1_Q10, 1024 );
500
26.7M
                rd1_Q10 = silk_SMULBB( -q1_Q10, Lambda_Q10 );
501
26.7M
                rd2_Q10 = silk_SMULBB( -q2_Q10, Lambda_Q10 );
502
26.7M
            }
503
308M
            rr_Q10  = silk_SUB32( r_Q10, q1_Q10 );
504
308M
            rd1_Q10 = silk_RSHIFT( silk_SMLABB( rd1_Q10, rr_Q10, rr_Q10 ), 10 );
505
308M
            rr_Q10  = silk_SUB32( r_Q10, q2_Q10 );
506
308M
            rd2_Q10 = silk_RSHIFT( silk_SMLABB( rd2_Q10, rr_Q10, rr_Q10 ), 10 );
507
508
308M
            if( rd1_Q10 < rd2_Q10 ) {
509
116M
                psSS[ 0 ].RD_Q10 = silk_ADD32( psDD->RD_Q10, rd1_Q10 );
510
116M
                psSS[ 1 ].RD_Q10 = silk_ADD32( psDD->RD_Q10, rd2_Q10 );
511
116M
                psSS[ 0 ].Q_Q10  = q1_Q10;
512
116M
                psSS[ 1 ].Q_Q10  = q2_Q10;
513
191M
            } else {
514
191M
                psSS[ 0 ].RD_Q10 = silk_ADD32( psDD->RD_Q10, rd2_Q10 );
515
191M
                psSS[ 1 ].RD_Q10 = silk_ADD32( psDD->RD_Q10, rd1_Q10 );
516
191M
                psSS[ 0 ].Q_Q10  = q2_Q10;
517
191M
                psSS[ 1 ].Q_Q10  = q1_Q10;
518
191M
            }
519
520
            /* Update states for best quantization */
521
522
            /* Quantized excitation */
523
308M
            exc_Q14 = silk_LSHIFT32( psSS[ 0 ].Q_Q10, 4 );
524
308M
            if ( psDD->Seed < 0 ) {
525
150M
                exc_Q14 = -exc_Q14;
526
150M
            }
527
528
            /* Add predictions */
529
308M
            LPC_exc_Q14 = silk_ADD32( exc_Q14, LTP_pred_Q14 );
530
308M
            xq_Q14      = silk_ADD32_ovflw( LPC_exc_Q14, LPC_pred_Q14 );
531
532
            /* Update states */
533
308M
            psSS[ 0 ].Diff_Q14     = silk_SUB32_ovflw( xq_Q14, silk_LSHIFT32( x_Q10[ i ], 4 ) );
534
308M
            sLF_AR_shp_Q14         = silk_SUB32_ovflw( psSS[ 0 ].Diff_Q14, n_AR_Q14 );
535
308M
            psSS[ 0 ].sLTP_shp_Q14 = silk_SUB_SAT32( sLF_AR_shp_Q14, n_LF_Q14 );
536
308M
            psSS[ 0 ].LF_AR_Q14    = sLF_AR_shp_Q14;
537
308M
            psSS[ 0 ].LPC_exc_Q14  = LPC_exc_Q14;
538
308M
            psSS[ 0 ].xq_Q14       = xq_Q14;
539
540
            /* Update states for second best quantization */
541
542
            /* Quantized excitation */
543
308M
            exc_Q14 = silk_LSHIFT32( psSS[ 1 ].Q_Q10, 4 );
544
308M
            if ( psDD->Seed < 0 ) {
545
150M
                exc_Q14 = -exc_Q14;
546
150M
            }
547
548
            /* Add predictions */
549
308M
            LPC_exc_Q14 = silk_ADD32( exc_Q14, LTP_pred_Q14 );
550
308M
            xq_Q14      = silk_ADD32_ovflw( LPC_exc_Q14, LPC_pred_Q14 );
551
552
            /* Update states */
553
308M
            psSS[ 1 ].Diff_Q14     = silk_SUB32_ovflw( xq_Q14, silk_LSHIFT32( x_Q10[ i ], 4 ) );
554
308M
            sLF_AR_shp_Q14         = silk_SUB32_ovflw( psSS[ 1 ].Diff_Q14, n_AR_Q14 );
555
308M
            psSS[ 1 ].sLTP_shp_Q14 = silk_SUB_SAT32( sLF_AR_shp_Q14, n_LF_Q14 );
556
308M
            psSS[ 1 ].LF_AR_Q14    = sLF_AR_shp_Q14;
557
308M
            psSS[ 1 ].LPC_exc_Q14  = LPC_exc_Q14;
558
308M
            psSS[ 1 ].xq_Q14       = xq_Q14;
559
308M
        }
560
561
108M
        *smpl_buf_idx  = ( *smpl_buf_idx - 1 ) % DECISION_DELAY;
562
108M
        if( *smpl_buf_idx < 0 ) *smpl_buf_idx += DECISION_DELAY;
563
108M
        last_smple_idx = ( *smpl_buf_idx + decisionDelay ) % DECISION_DELAY;
564
565
        /* Find winner */
566
108M
        RDmin_Q10 = psSampleState[ 0 ][ 0 ].RD_Q10;
567
108M
        Winner_ind = 0;
568
308M
        for( k = 1; k < nStatesDelayedDecision; k++ ) {
569
200M
            if( psSampleState[ k ][ 0 ].RD_Q10 < RDmin_Q10 ) {
570
78.3M
                RDmin_Q10  = psSampleState[ k ][ 0 ].RD_Q10;
571
78.3M
                Winner_ind = k;
572
78.3M
            }
573
200M
        }
574
575
        /* Increase RD values of expired states */
576
108M
        Winner_rand_state = psDelDec[ Winner_ind ].RandState[ last_smple_idx ];
577
416M
        for( k = 0; k < nStatesDelayedDecision; k++ ) {
578
308M
            if( psDelDec[ k ].RandState[ last_smple_idx ] != Winner_rand_state ) {
579
1.89M
                psSampleState[ k ][ 0 ].RD_Q10 = silk_ADD32( psSampleState[ k ][ 0 ].RD_Q10, silk_int32_MAX >> 4 );
580
1.89M
                psSampleState[ k ][ 1 ].RD_Q10 = silk_ADD32( psSampleState[ k ][ 1 ].RD_Q10, silk_int32_MAX >> 4 );
581
1.89M
                silk_assert( psSampleState[ k ][ 0 ].RD_Q10 >= 0 );
582
1.89M
            }
583
308M
        }
584
585
        /* Find worst in first set and best in second set */
586
108M
        RDmax_Q10  = psSampleState[ 0 ][ 0 ].RD_Q10;
587
108M
        RDmin_Q10  = psSampleState[ 0 ][ 1 ].RD_Q10;
588
108M
        RDmax_ind = 0;
589
108M
        RDmin_ind = 0;
590
308M
        for( k = 1; k < nStatesDelayedDecision; k++ ) {
591
            /* find worst in first set */
592
200M
            if( psSampleState[ k ][ 0 ].RD_Q10 > RDmax_Q10 ) {
593
81.2M
                RDmax_Q10  = psSampleState[ k ][ 0 ].RD_Q10;
594
81.2M
                RDmax_ind = k;
595
81.2M
            }
596
            /* find best in second set */
597
200M
            if( psSampleState[ k ][ 1 ].RD_Q10 < RDmin_Q10 ) {
598
79.8M
                RDmin_Q10  = psSampleState[ k ][ 1 ].RD_Q10;
599
79.8M
                RDmin_ind = k;
600
79.8M
            }
601
200M
        }
602
603
        /* Replace a state if best from second set outperforms worst in first set */
604
108M
        if( RDmin_Q10 < RDmax_Q10 ) {
605
45.3M
            silk_memcpy( ( (opus_int32 *)&psDelDec[ RDmax_ind ] ) + i,
606
45.3M
                         ( (opus_int32 *)&psDelDec[ RDmin_ind ] ) + i, sizeof( NSQ_del_dec_struct ) - i * sizeof( opus_int32) );
607
45.3M
            silk_memcpy( &psSampleState[ RDmax_ind ][ 0 ], &psSampleState[ RDmin_ind ][ 1 ], sizeof( NSQ_sample_struct ) );
608
45.3M
        }
609
610
        /* Write samples from winner to output and long-term filter states */
611
108M
        psDD = &psDelDec[ Winner_ind ];
612
108M
        if( subfr > 0 || i >= decisionDelay ) {
613
82.5M
            pulses[  i - decisionDelay ] = (opus_int8)silk_RSHIFT_ROUND( psDD->Q_Q10[ last_smple_idx ], 10 );
614
82.5M
            xq[ i - decisionDelay ] = (opus_int16)silk_SAT16( silk_RSHIFT_ROUND(
615
82.5M
                silk_SMULWW( psDD->Xq_Q14[ last_smple_idx ], delayedGain_Q10[ last_smple_idx ] ), 8 ) );
616
82.5M
            NSQ->sLTP_shp_Q14[ NSQ->sLTP_shp_buf_idx - decisionDelay ] = psDD->Shape_Q14[ last_smple_idx ];
617
82.5M
            sLTP_Q15[          NSQ->sLTP_buf_idx     - decisionDelay ] = psDD->Pred_Q15[  last_smple_idx ];
618
82.5M
        }
619
108M
        NSQ->sLTP_shp_buf_idx++;
620
108M
        NSQ->sLTP_buf_idx++;
621
622
        /* Update states */
623
416M
        for( k = 0; k < nStatesDelayedDecision; k++ ) {
624
308M
            psDD                                     = &psDelDec[ k ];
625
308M
            psSS                                     = &psSampleState[ k ][ 0 ];
626
308M
            psDD->LF_AR_Q14                          = psSS->LF_AR_Q14;
627
308M
            psDD->Diff_Q14                           = psSS->Diff_Q14;
628
308M
            psDD->sLPC_Q14[ NSQ_LPC_BUF_LENGTH + i ] = psSS->xq_Q14;
629
308M
            psDD->Xq_Q14[    *smpl_buf_idx ]         = psSS->xq_Q14;
630
308M
            psDD->Q_Q10[     *smpl_buf_idx ]         = psSS->Q_Q10;
631
308M
            psDD->Pred_Q15[  *smpl_buf_idx ]         = silk_LSHIFT32( psSS->LPC_exc_Q14, 1 );
632
308M
            psDD->Shape_Q14[ *smpl_buf_idx ]         = psSS->sLTP_shp_Q14;
633
308M
            psDD->Seed                               = silk_ADD32_ovflw( psDD->Seed, silk_RSHIFT_ROUND( psSS->Q_Q10, 10 ) );
634
308M
            psDD->RandState[ *smpl_buf_idx ]         = psDD->Seed;
635
308M
            psDD->RD_Q10                             = psSS->RD_Q10;
636
308M
        }
637
108M
        delayedGain_Q10[     *smpl_buf_idx ]         = Gain_Q10;
638
108M
    }
639
    /* Update LPC states */
640
8.59M
    for( k = 0; k < nStatesDelayedDecision; k++ ) {
641
6.31M
        psDD = &psDelDec[ k ];
642
6.31M
        silk_memcpy( psDD->sLPC_Q14, &psDD->sLPC_Q14[ length ], NSQ_LPC_BUF_LENGTH * sizeof( opus_int32 ) );
643
6.31M
    }
644
2.27M
    RESTORE_STACK;
645
2.27M
}
646
#endif /* OVERRIDE_silk_noise_shape_quantizer_del_dec */
647
648
static OPUS_INLINE void silk_nsq_del_dec_scale_states(
649
    const silk_encoder_state *psEncC,               /* I    Encoder State                       */
650
    silk_nsq_state      *NSQ,                       /* I/O  NSQ state                           */
651
    NSQ_del_dec_struct  psDelDec[],                 /* I/O  Delayed decision states             */
652
    const opus_int16    x16[],                      /* I    Input                               */
653
    opus_int32          x_sc_Q10[],                 /* O    Input scaled with 1/Gain in Q10     */
654
    const opus_int16    sLTP[],                     /* I    Re-whitened LTP state in Q0         */
655
    opus_int32          sLTP_Q15[],                 /* O    LTP state matching scaled input     */
656
    opus_int            subfr,                      /* I    Subframe number                     */
657
    opus_int            nStatesDelayedDecision,     /* I    Number of del dec states            */
658
    const opus_int      LTP_scale_Q14,              /* I    LTP state scaling                   */
659
    const opus_int32    Gains_Q16[ MAX_NB_SUBFR ],  /* I                                        */
660
    const opus_int      pitchL[ MAX_NB_SUBFR ],     /* I    Pitch lag                           */
661
    const opus_int      signal_type,                /* I    Signal type                         */
662
    const opus_int      decisionDelay               /* I    Decision delay                      */
663
)
664
2.27M
{
665
2.27M
    opus_int            i, k, lag;
666
2.27M
    opus_int32          gain_adj_Q16, inv_gain_Q31, inv_gain_Q26;
667
2.27M
    NSQ_del_dec_struct  *psDD;
668
669
2.27M
    lag          = pitchL[ subfr ];
670
2.27M
    inv_gain_Q31 = silk_INVERSE32_varQ( silk_max( Gains_Q16[ subfr ], 1 ), 47 );
671
2.27M
    silk_assert( inv_gain_Q31 != 0 );
672
673
    /* Scale input */
674
2.27M
    inv_gain_Q26 = silk_RSHIFT_ROUND( inv_gain_Q31, 5 );
675
110M
    for( i = 0; i < psEncC->subfr_length; i++ ) {
676
108M
        x_sc_Q10[ i ] = silk_SMULWW( x16[ i ], inv_gain_Q26 );
677
108M
    }
678
679
    /* After rewhitening the LTP state is un-scaled, so scale with inv_gain_Q16 */
680
2.27M
    if( NSQ->rewhite_flag ) {
681
171k
        if( subfr == 0 ) {
682
            /* Do LTP downscaling */
683
128k
            inv_gain_Q31 = silk_LSHIFT( silk_SMULWB( inv_gain_Q31, LTP_scale_Q14 ), 2 );
684
128k
        }
685
8.84M
        for( i = NSQ->sLTP_buf_idx - lag - LTP_ORDER / 2; i < NSQ->sLTP_buf_idx; i++ ) {
686
8.67M
            silk_assert( i < MAX_FRAME_LENGTH );
687
8.67M
            sLTP_Q15[ i ] = silk_SMULWB( inv_gain_Q31, sLTP[ i ] );
688
8.67M
        }
689
171k
    }
690
691
    /* Adjust for changing gain */
692
2.27M
    if( Gains_Q16[ subfr ] != NSQ->prev_gain_Q16 ) {
693
1.88M
        gain_adj_Q16 =  silk_DIV32_varQ( NSQ->prev_gain_Q16, Gains_Q16[ subfr ], 16 );
694
695
        /* Scale long-term shaping state */
696
359M
        for( i = NSQ->sLTP_shp_buf_idx - psEncC->ltp_mem_length; i < NSQ->sLTP_shp_buf_idx; i++ ) {
697
357M
            NSQ->sLTP_shp_Q14[ i ] = silk_SMULWW( gain_adj_Q16, NSQ->sLTP_shp_Q14[ i ] );
698
357M
        }
699
700
        /* Scale long-term prediction state */
701
1.88M
        if( signal_type == TYPE_VOICED && NSQ->rewhite_flag == 0 ) {
702
6.82M
            for( i = NSQ->sLTP_buf_idx - lag - LTP_ORDER / 2; i < NSQ->sLTP_buf_idx - decisionDelay; i++ ) {
703
6.55M
                sLTP_Q15[ i ] = silk_SMULWW( gain_adj_Q16, sLTP_Q15[ i ] );
704
6.55M
            }
705
269k
        }
706
707
7.11M
        for( k = 0; k < nStatesDelayedDecision; k++ ) {
708
5.23M
            psDD = &psDelDec[ k ];
709
710
            /* Scale scalar states */
711
5.23M
            psDD->LF_AR_Q14 = silk_SMULWW( gain_adj_Q16, psDD->LF_AR_Q14 );
712
5.23M
            psDD->Diff_Q14 = silk_SMULWW( gain_adj_Q16, psDD->Diff_Q14 );
713
714
            /* Scale short-term prediction and shaping states */
715
88.9M
            for( i = 0; i < NSQ_LPC_BUF_LENGTH; i++ ) {
716
83.6M
                psDD->sLPC_Q14[ i ] = silk_SMULWW( gain_adj_Q16, psDD->sLPC_Q14[ i ] );
717
83.6M
            }
718
130M
            for( i = 0; i < MAX_SHAPE_LPC_ORDER; i++ ) {
719
125M
                psDD->sAR2_Q14[ i ] = silk_SMULWW( gain_adj_Q16, psDD->sAR2_Q14[ i ] );
720
125M
            }
721
214M
            for( i = 0; i < DECISION_DELAY; i++ ) {
722
209M
                psDD->Pred_Q15[  i ] = silk_SMULWW( gain_adj_Q16, psDD->Pred_Q15[  i ] );
723
209M
                psDD->Shape_Q14[ i ] = silk_SMULWW( gain_adj_Q16, psDD->Shape_Q14[ i ] );
724
209M
            }
725
5.23M
        }
726
727
        /* Save inverse gain */
728
1.88M
        NSQ->prev_gain_Q16 = Gains_Q16[ subfr ];
729
1.88M
    }
730
2.27M
}