Coverage Report

Created: 2025-07-23 07:59

/src/opus/silk/PLC.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 "PLC.h"
35
36
#ifdef ENABLE_DEEP_PLC
37
#include "lpcnet.h"
38
#endif
39
40
369k
#define NB_ATT 2
41
static const opus_int16 HARM_ATT_Q15[NB_ATT]              = { 32440, 31130 }; /* 0.99, 0.95 */
42
static const opus_int16 PLC_RAND_ATTENUATE_V_Q15[NB_ATT]  = { 31130, 26214 }; /* 0.95, 0.8 */
43
static const opus_int16 PLC_RAND_ATTENUATE_UV_Q15[NB_ATT] = { 32440, 29491 }; /* 0.99, 0.9 */
44
45
static OPUS_INLINE void silk_PLC_update(
46
    silk_decoder_state                  *psDec,             /* I/O Decoder state        */
47
    silk_decoder_control                *psDecCtrl          /* I/O Decoder control      */
48
);
49
50
static OPUS_INLINE void silk_PLC_conceal(
51
    silk_decoder_state                  *psDec,             /* I/O Decoder state        */
52
    silk_decoder_control                *psDecCtrl,         /* I/O Decoder control      */
53
    opus_int16                          frame[],            /* O LPC residual signal    */
54
#ifdef ENABLE_DEEP_PLC
55
    LPCNetPLCState                      *lpcnet,
56
#endif
57
    int                                 arch                /* I  Run-time architecture */
58
);
59
60
61
void silk_PLC_Reset(
62
    silk_decoder_state                  *psDec              /* I/O Decoder state        */
63
)
64
1.16M
{
65
1.16M
    psDec->sPLC.pitchL_Q8 = silk_LSHIFT( psDec->frame_length, 8 - 1 );
66
1.16M
    psDec->sPLC.prevGain_Q16[ 0 ] = SILK_FIX_CONST( 1, 16 );
67
1.16M
    psDec->sPLC.prevGain_Q16[ 1 ] = SILK_FIX_CONST( 1, 16 );
68
1.16M
    psDec->sPLC.subfr_length = 20;
69
1.16M
    psDec->sPLC.nb_subfr = 2;
70
1.16M
}
71
72
void silk_PLC(
73
    silk_decoder_state                  *psDec,             /* I/O Decoder state        */
74
    silk_decoder_control                *psDecCtrl,         /* I/O Decoder control      */
75
    opus_int16                          frame[],            /* I/O  signal              */
76
    opus_int                            lost,               /* I Loss flag              */
77
#ifdef ENABLE_DEEP_PLC
78
    LPCNetPLCState                      *lpcnet,
79
#endif
80
    int                                 arch                /* I Run-time architecture  */
81
)
82
637k
{
83
    /* PLC control function */
84
637k
    if( psDec->fs_kHz != psDec->sPLC.fs_kHz ) {
85
219k
        silk_PLC_Reset( psDec );
86
219k
        psDec->sPLC.fs_kHz = psDec->fs_kHz;
87
219k
    }
88
89
637k
    if( lost ) {
90
        /****************************/
91
        /* Generate Signal          */
92
        /****************************/
93
184k
        silk_PLC_conceal( psDec, psDecCtrl, frame,
94
#ifdef ENABLE_DEEP_PLC
95
            lpcnet,
96
#endif
97
184k
            arch );
98
99
184k
        psDec->lossCnt++;
100
452k
    } else {
101
        /****************************/
102
        /* Update state             */
103
        /****************************/
104
452k
        silk_PLC_update( psDec, psDecCtrl );
105
#ifdef ENABLE_DEEP_PLC
106
        if ( lpcnet != NULL && psDec->sPLC.fs_kHz == 16 ) {
107
            int k;
108
            for( k = 0; k < psDec->nb_subfr; k += 2 ) {
109
                lpcnet_plc_update( lpcnet, frame + k * psDec->subfr_length );
110
            }
111
        }
112
#endif
113
452k
    }
114
637k
}
115
116
/**************************************************/
117
/* Update state of PLC                            */
118
/**************************************************/
119
static OPUS_INLINE void silk_PLC_update(
120
    silk_decoder_state                  *psDec,             /* I/O Decoder state        */
121
    silk_decoder_control                *psDecCtrl          /* I/O Decoder control      */
122
)
123
452k
{
124
452k
    opus_int32 LTP_Gain_Q14, temp_LTP_Gain_Q14;
125
452k
    opus_int   i, j;
126
452k
    silk_PLC_struct *psPLC;
127
128
452k
    psPLC = &psDec->sPLC;
129
130
    /* Update parameters used in case of packet loss */
131
452k
    psDec->prevSignalType = psDec->indices.signalType;
132
452k
    LTP_Gain_Q14 = 0;
133
452k
    if( psDec->indices.signalType == TYPE_VOICED ) {
134
        /* Find the parameters for the last subframe which contains a pitch pulse */
135
349k
        for( j = 0; j * psDec->subfr_length < psDecCtrl->pitchL[ psDec->nb_subfr - 1 ]; j++ ) {
136
231k
            if( j == psDec->nb_subfr ) {
137
3.64k
                break;
138
3.64k
            }
139
227k
            temp_LTP_Gain_Q14 = 0;
140
1.36M
            for( i = 0; i < LTP_ORDER; i++ ) {
141
1.13M
                temp_LTP_Gain_Q14 += psDecCtrl->LTPCoef_Q14[ ( psDec->nb_subfr - 1 - j ) * LTP_ORDER  + i ];
142
1.13M
            }
143
227k
            if( temp_LTP_Gain_Q14 > LTP_Gain_Q14 ) {
144
156k
                LTP_Gain_Q14 = temp_LTP_Gain_Q14;
145
156k
                silk_memcpy( psPLC->LTPCoef_Q14,
146
156k
                    &psDecCtrl->LTPCoef_Q14[ silk_SMULBB( psDec->nb_subfr - 1 - j, LTP_ORDER ) ],
147
156k
                    LTP_ORDER * sizeof( opus_int16 ) );
148
149
156k
                psPLC->pitchL_Q8 = silk_LSHIFT( psDecCtrl->pitchL[ psDec->nb_subfr - 1 - j ], 8 );
150
156k
            }
151
227k
        }
152
153
121k
        silk_memset( psPLC->LTPCoef_Q14, 0, LTP_ORDER * sizeof( opus_int16 ) );
154
121k
        psPLC->LTPCoef_Q14[ LTP_ORDER / 2 ] = LTP_Gain_Q14;
155
156
        /* Limit LT coefs */
157
121k
        if( LTP_Gain_Q14 < V_PITCH_GAIN_START_MIN_Q14 ) {
158
31.6k
            opus_int   scale_Q10;
159
31.6k
            opus_int32 tmp;
160
161
31.6k
            tmp = silk_LSHIFT( V_PITCH_GAIN_START_MIN_Q14, 10 );
162
31.6k
            scale_Q10 = silk_DIV32( tmp, silk_max( LTP_Gain_Q14, 1 ) );
163
189k
            for( i = 0; i < LTP_ORDER; i++ ) {
164
158k
                psPLC->LTPCoef_Q14[ i ] = silk_RSHIFT( silk_SMULBB( psPLC->LTPCoef_Q14[ i ], scale_Q10 ), 10 );
165
158k
            }
166
89.8k
        } else if( LTP_Gain_Q14 > V_PITCH_GAIN_START_MAX_Q14 ) {
167
44.3k
            opus_int   scale_Q14;
168
44.3k
            opus_int32 tmp;
169
170
44.3k
            tmp = silk_LSHIFT( V_PITCH_GAIN_START_MAX_Q14, 14 );
171
44.3k
            scale_Q14 = silk_DIV32( tmp, silk_max( LTP_Gain_Q14, 1 ) );
172
265k
            for( i = 0; i < LTP_ORDER; i++ ) {
173
221k
                psPLC->LTPCoef_Q14[ i ] = silk_RSHIFT( silk_SMULBB( psPLC->LTPCoef_Q14[ i ], scale_Q14 ), 14 );
174
221k
            }
175
44.3k
        }
176
330k
    } else {
177
330k
        psPLC->pitchL_Q8 = silk_LSHIFT( silk_SMULBB( psDec->fs_kHz, 18 ), 8 );
178
330k
        silk_memset( psPLC->LTPCoef_Q14, 0, LTP_ORDER * sizeof( opus_int16 ));
179
330k
    }
180
181
    /* Save LPC coeficients */
182
452k
    silk_memcpy( psPLC->prevLPC_Q12, psDecCtrl->PredCoef_Q12[ 1 ], psDec->LPC_order * sizeof( opus_int16 ) );
183
452k
    psPLC->prevLTP_scale_Q14 = psDecCtrl->LTP_scale_Q14;
184
185
    /* Save last two gains */
186
452k
    silk_memcpy( psPLC->prevGain_Q16, &psDecCtrl->Gains_Q16[ psDec->nb_subfr - 2 ], 2 * sizeof( opus_int32 ) );
187
188
452k
    psPLC->subfr_length = psDec->subfr_length;
189
452k
    psPLC->nb_subfr = psDec->nb_subfr;
190
452k
}
191
192
static OPUS_INLINE void silk_PLC_energy(opus_int32 *energy1, opus_int *shift1, opus_int32 *energy2, opus_int *shift2,
193
      const opus_int32 *exc_Q14, const opus_int32 *prevGain_Q10, int subfr_length, int nb_subfr)
194
184k
{
195
184k
    int i, k;
196
184k
    VARDECL( opus_int16, exc_buf );
197
184k
    opus_int16 *exc_buf_ptr;
198
184k
    SAVE_STACK;
199
184k
    ALLOC( exc_buf, 2*subfr_length, opus_int16 );
200
    /* Find random noise component */
201
    /* Scale previous excitation signal */
202
184k
    exc_buf_ptr = exc_buf;
203
554k
    for( k = 0; k < 2; k++ ) {
204
24.1M
        for( i = 0; i < subfr_length; i++ ) {
205
23.7M
            exc_buf_ptr[ i ] = (opus_int16)silk_SAT16( silk_RSHIFT(
206
23.7M
                silk_SMULWW( exc_Q14[ i + ( k + nb_subfr - 2 ) * subfr_length ], prevGain_Q10[ k ] ), 8 ) );
207
23.7M
        }
208
369k
        exc_buf_ptr += subfr_length;
209
369k
    }
210
    /* Find the subframe with lowest energy of the last two and use that as random noise generator */
211
184k
    silk_sum_sqr_shift( energy1, shift1, exc_buf,                  subfr_length );
212
184k
    silk_sum_sqr_shift( energy2, shift2, &exc_buf[ subfr_length ], subfr_length );
213
184k
    RESTORE_STACK;
214
184k
}
215
216
static OPUS_INLINE void silk_PLC_conceal(
217
    silk_decoder_state                  *psDec,             /* I/O Decoder state        */
218
    silk_decoder_control                *psDecCtrl,         /* I/O Decoder control      */
219
    opus_int16                          frame[],            /* O LPC residual signal    */
220
#ifdef ENABLE_DEEP_PLC
221
    LPCNetPLCState                      *lpcnet,
222
#endif
223
    int                                 arch                /* I Run-time architecture  */
224
)
225
184k
{
226
184k
    opus_int   i, j, k;
227
184k
    opus_int   lag, idx, sLTP_buf_idx, shift1, shift2;
228
184k
    opus_int32 rand_seed, harm_Gain_Q15, rand_Gain_Q15, inv_gain_Q30;
229
184k
    opus_int32 energy1, energy2, *rand_ptr, *pred_lag_ptr;
230
184k
    opus_int32 LPC_pred_Q10, LTP_pred_Q12;
231
184k
    opus_int16 rand_scale_Q14;
232
184k
    opus_int16 *B_Q14;
233
184k
    opus_int32 *sLPC_Q14_ptr;
234
184k
    opus_int16 A_Q12[ MAX_LPC_ORDER ];
235
#ifdef SMALL_FOOTPRINT
236
    opus_int16 *sLTP;
237
#else
238
184k
    VARDECL( opus_int16, sLTP );
239
184k
#endif
240
184k
    VARDECL( opus_int32, sLTP_Q14 );
241
184k
    silk_PLC_struct *psPLC = &psDec->sPLC;
242
184k
    opus_int32 prevGain_Q10[2];
243
184k
    SAVE_STACK;
244
245
184k
    ALLOC( sLTP_Q14, psDec->ltp_mem_length + psDec->frame_length, opus_int32 );
246
#ifdef SMALL_FOOTPRINT
247
    /* Ugly hack that breaks aliasing rules to save stack: put sLTP at the very end of sLTP_Q14. */
248
    sLTP = ((opus_int16*)&sLTP_Q14[psDec->ltp_mem_length + psDec->frame_length])-psDec->ltp_mem_length;
249
#else
250
184k
    ALLOC( sLTP, psDec->ltp_mem_length, opus_int16 );
251
184k
#endif
252
253
184k
    prevGain_Q10[0] = silk_RSHIFT( psPLC->prevGain_Q16[ 0 ], 6);
254
184k
    prevGain_Q10[1] = silk_RSHIFT( psPLC->prevGain_Q16[ 1 ], 6);
255
256
184k
    if( psDec->first_frame_after_reset ) {
257
49.8k
       silk_memset( psPLC->prevLPC_Q12, 0, sizeof( psPLC->prevLPC_Q12 ) );
258
49.8k
    }
259
260
184k
    silk_PLC_energy(&energy1, &shift1, &energy2, &shift2, psDec->exc_Q14, prevGain_Q10, psDec->subfr_length, psDec->nb_subfr);
261
262
184k
    if( silk_RSHIFT( energy1, shift2 ) < silk_RSHIFT( energy2, shift1 ) ) {
263
        /* First sub-frame has lowest energy */
264
74.7k
        rand_ptr = &psDec->exc_Q14[ silk_max_int( 0, ( psPLC->nb_subfr - 1 ) * psPLC->subfr_length - RAND_BUF_SIZE ) ];
265
109k
    } else {
266
        /* Second sub-frame has lowest energy */
267
109k
        rand_ptr = &psDec->exc_Q14[ silk_max_int( 0, psPLC->nb_subfr * psPLC->subfr_length - RAND_BUF_SIZE ) ];
268
109k
    }
269
270
    /* Set up Gain to random noise component */
271
184k
    B_Q14          = psPLC->LTPCoef_Q14;
272
184k
    rand_scale_Q14 = psPLC->randScale_Q14;
273
274
    /* Set up attenuation gains */
275
184k
    harm_Gain_Q15 = HARM_ATT_Q15[ silk_min_int( NB_ATT - 1, psDec->lossCnt ) ];
276
184k
    if( psDec->prevSignalType == TYPE_VOICED ) {
277
41.1k
        rand_Gain_Q15 = PLC_RAND_ATTENUATE_V_Q15[  silk_min_int( NB_ATT - 1, psDec->lossCnt ) ];
278
143k
    } else {
279
143k
        rand_Gain_Q15 = PLC_RAND_ATTENUATE_UV_Q15[ silk_min_int( NB_ATT - 1, psDec->lossCnt ) ];
280
143k
    }
281
282
    /* LPC concealment. Apply BWE to previous LPC */
283
184k
    silk_bwexpander( psPLC->prevLPC_Q12, psDec->LPC_order, SILK_FIX_CONST( BWE_COEF, 16 ) );
284
285
    /* Preload LPC coeficients to array on stack. Gives small performance gain */
286
184k
    silk_memcpy( A_Q12, psPLC->prevLPC_Q12, psDec->LPC_order * sizeof( opus_int16 ) );
287
288
    /* First Lost frame */
289
184k
    if( psDec->lossCnt == 0 ) {
290
82.5k
        rand_scale_Q14 = 1 << 14;
291
292
        /* Reduce random noise Gain for voiced frames */
293
82.5k
        if( psDec->prevSignalType == TYPE_VOICED ) {
294
110k
            for( i = 0; i < LTP_ORDER; i++ ) {
295
92.3k
                rand_scale_Q14 -= B_Q14[ i ];
296
92.3k
            }
297
18.4k
            rand_scale_Q14 = silk_max_16( 3277, rand_scale_Q14 ); /* 0.2 */
298
18.4k
            rand_scale_Q14 = (opus_int16)silk_RSHIFT( silk_SMULBB( rand_scale_Q14, psPLC->prevLTP_scale_Q14 ), 14 );
299
64.0k
        } else {
300
            /* Reduce random noise for unvoiced frames with high LPC gain */
301
64.0k
            opus_int32 invGain_Q30, down_scale_Q30;
302
303
64.0k
            invGain_Q30 = silk_LPC_inverse_pred_gain( psPLC->prevLPC_Q12, psDec->LPC_order, arch );
304
305
64.0k
            down_scale_Q30 = silk_min_32( silk_RSHIFT( (opus_int32)1 << 30, LOG2_INV_LPC_GAIN_HIGH_THRES ), invGain_Q30 );
306
64.0k
            down_scale_Q30 = silk_max_32( silk_RSHIFT( (opus_int32)1 << 30, LOG2_INV_LPC_GAIN_LOW_THRES ), down_scale_Q30 );
307
64.0k
            down_scale_Q30 = silk_LSHIFT( down_scale_Q30, LOG2_INV_LPC_GAIN_HIGH_THRES );
308
309
64.0k
            rand_Gain_Q15 = silk_RSHIFT( silk_SMULWB( down_scale_Q30, rand_Gain_Q15 ), 14 );
310
64.0k
        }
311
82.5k
    }
312
313
184k
    rand_seed    = psPLC->rand_seed;
314
184k
    lag          = silk_RSHIFT_ROUND( psPLC->pitchL_Q8, 8 );
315
184k
    sLTP_buf_idx = psDec->ltp_mem_length;
316
317
    /* Rewhiten LTP state */
318
184k
    idx = psDec->ltp_mem_length - lag - psDec->LPC_order - LTP_ORDER / 2;
319
184k
    celt_assert( idx > 0 );
320
184k
    silk_LPC_analysis_filter( &sLTP[ idx ], &psDec->outBuf[ idx ], A_Q12, psDec->ltp_mem_length - idx, psDec->LPC_order, arch );
321
    /* Scale LTP state */
322
184k
    inv_gain_Q30 = silk_INVERSE32_varQ( psPLC->prevGain_Q16[ 1 ], 46 );
323
184k
    inv_gain_Q30 = silk_min( inv_gain_Q30, silk_int32_MAX >> 1 );
324
32.5M
    for( i = idx + psDec->LPC_order; i < psDec->ltp_mem_length; i++ ) {
325
32.4M
        sLTP_Q14[ i ] = silk_SMULWB( inv_gain_Q30, sLTP[ i ] );
326
32.4M
    }
327
328
    /***************************/
329
    /* LTP synthesis filtering */
330
    /***************************/
331
780k
    for( k = 0; k < psDec->nb_subfr; k++ ) {
332
        /* Set up pointer */
333
596k
        pred_lag_ptr = &sLTP_Q14[ sLTP_buf_idx - lag + LTP_ORDER / 2 ];
334
38.1M
        for( i = 0; i < psDec->subfr_length; i++ ) {
335
            /* Unrolled loop */
336
            /* Avoids introducing a bias because silk_SMLAWB() always rounds to -inf */
337
37.5M
            LTP_pred_Q12 = 2;
338
37.5M
            LTP_pred_Q12 = silk_SMLAWB( LTP_pred_Q12, pred_lag_ptr[  0 ], B_Q14[ 0 ] );
339
37.5M
            LTP_pred_Q12 = silk_SMLAWB( LTP_pred_Q12, pred_lag_ptr[ -1 ], B_Q14[ 1 ] );
340
37.5M
            LTP_pred_Q12 = silk_SMLAWB( LTP_pred_Q12, pred_lag_ptr[ -2 ], B_Q14[ 2 ] );
341
37.5M
            LTP_pred_Q12 = silk_SMLAWB( LTP_pred_Q12, pred_lag_ptr[ -3 ], B_Q14[ 3 ] );
342
37.5M
            LTP_pred_Q12 = silk_SMLAWB( LTP_pred_Q12, pred_lag_ptr[ -4 ], B_Q14[ 4 ] );
343
37.5M
            pred_lag_ptr++;
344
345
            /* Generate LPC excitation */
346
37.5M
            rand_seed = silk_RAND( rand_seed );
347
37.5M
            idx = silk_RSHIFT( rand_seed, 25 ) & RAND_BUF_MASK;
348
37.5M
            sLTP_Q14[ sLTP_buf_idx ] = silk_LSHIFT32( silk_SMLAWB( LTP_pred_Q12, rand_ptr[ idx ], rand_scale_Q14 ), 2 );
349
37.5M
            sLTP_buf_idx++;
350
37.5M
        }
351
352
        /* Gradually reduce LTP gain */
353
3.57M
        for( j = 0; j < LTP_ORDER; j++ ) {
354
2.98M
            B_Q14[ j ] = silk_RSHIFT( silk_SMULBB( harm_Gain_Q15, B_Q14[ j ] ), 15 );
355
2.98M
        }
356
        /* Gradually reduce excitation gain */
357
596k
        rand_scale_Q14 = silk_RSHIFT( silk_SMULBB( rand_scale_Q14, rand_Gain_Q15 ), 15 );
358
359
        /* Slowly increase pitch lag */
360
596k
        psPLC->pitchL_Q8 = silk_SMLAWB( psPLC->pitchL_Q8, psPLC->pitchL_Q8, PITCH_DRIFT_FAC_Q16 );
361
596k
        psPLC->pitchL_Q8 = silk_min_32( psPLC->pitchL_Q8, silk_LSHIFT( silk_SMULBB( MAX_PITCH_LAG_MS, psDec->fs_kHz ), 8 ) );
362
596k
        lag = silk_RSHIFT_ROUND( psPLC->pitchL_Q8, 8 );
363
596k
    }
364
365
    /***************************/
366
    /* LPC synthesis filtering */
367
    /***************************/
368
184k
    sLPC_Q14_ptr = &sLTP_Q14[ psDec->ltp_mem_length - MAX_LPC_ORDER ];
369
370
    /* Copy LPC state */
371
184k
    silk_memcpy( sLPC_Q14_ptr, psDec->sLPC_Q14_buf, MAX_LPC_ORDER * sizeof( opus_int32 ) );
372
373
184k
    celt_assert( psDec->LPC_order >= 10 ); /* check that unrolling works */
374
37.7M
    for( i = 0; i < psDec->frame_length; i++ ) {
375
        /* partly unrolled */
376
        /* Avoids introducing a bias because silk_SMLAWB() always rounds to -inf */
377
37.5M
        LPC_pred_Q10 = silk_RSHIFT( psDec->LPC_order, 1 );
378
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  1 ], A_Q12[ 0 ] );
379
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  2 ], A_Q12[ 1 ] );
380
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  3 ], A_Q12[ 2 ] );
381
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  4 ], A_Q12[ 3 ] );
382
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  5 ], A_Q12[ 4 ] );
383
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  6 ], A_Q12[ 5 ] );
384
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  7 ], A_Q12[ 6 ] );
385
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  8 ], A_Q12[ 7 ] );
386
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i -  9 ], A_Q12[ 8 ] );
387
37.5M
        LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i - 10 ], A_Q12[ 9 ] );
388
166M
        for( j = 10; j < psDec->LPC_order; j++ ) {
389
128M
            LPC_pred_Q10 = silk_SMLAWB( LPC_pred_Q10, sLPC_Q14_ptr[ MAX_LPC_ORDER + i - j - 1 ], A_Q12[ j ] );
390
128M
        }
391
392
        /* Add prediction to LPC excitation */
393
37.5M
        sLPC_Q14_ptr[ MAX_LPC_ORDER + i ] = silk_ADD_SAT32( sLPC_Q14_ptr[ MAX_LPC_ORDER + i ],
394
37.5M
                                            silk_LSHIFT_SAT32( LPC_pred_Q10, 4 ));
395
396
        /* Scale with Gain */
397
37.5M
        frame[ i ] = (opus_int16)silk_SAT16( silk_SAT16( silk_RSHIFT_ROUND( silk_SMULWW( sLPC_Q14_ptr[ MAX_LPC_ORDER + i ], prevGain_Q10[ 1 ] ), 8 ) ) );
398
37.5M
    }
399
#ifdef ENABLE_DEEP_PLC
400
    if ( lpcnet != NULL && lpcnet->loaded && psDec->sPLC.fs_kHz == 16 ) {
401
        int run_deep_plc = psDec->sPLC.enable_deep_plc || lpcnet->fec_fill_pos != 0;
402
        if( run_deep_plc ) {
403
            for( k = 0; k < psDec->nb_subfr; k += 2 ) {
404
                lpcnet_plc_conceal( lpcnet, frame + k * psDec->subfr_length );
405
            }
406
            /* We *should* be able to copy only from psDec->frame_length-MAX_LPC_ORDER, i.e. the last MAX_LPC_ORDER samples. */
407
            for( i = 0; i < psDec->frame_length; i++ ) {
408
                sLPC_Q14_ptr[ MAX_LPC_ORDER + i ] = (int)floor(.5 + frame[ i ] * (float)(1 << 24) / prevGain_Q10[ 1 ] );
409
            }
410
        } else {
411
          for( k = 0; k < psDec->nb_subfr; k += 2 ) {
412
              lpcnet_plc_update( lpcnet, frame + k * psDec->subfr_length );
413
          }
414
        }
415
    }
416
#endif
417
418
    /* Save LPC state */
419
184k
    silk_memcpy( psDec->sLPC_Q14_buf, &sLPC_Q14_ptr[ psDec->frame_length ], MAX_LPC_ORDER * sizeof( opus_int32 ) );
420
421
    /**************************************/
422
    /* Update states                      */
423
    /**************************************/
424
184k
    psPLC->rand_seed     = rand_seed;
425
184k
    psPLC->randScale_Q14 = rand_scale_Q14;
426
923k
    for( i = 0; i < MAX_NB_SUBFR; i++ ) {
427
738k
        psDecCtrl->pitchL[ i ] = lag;
428
738k
    }
429
184k
    RESTORE_STACK;
430
184k
}
431
432
/* Glues concealed frames with new good received frames */
433
void silk_PLC_glue_frames(
434
    silk_decoder_state                  *psDec,             /* I/O decoder state        */
435
    opus_int16                          frame[],            /* I/O signal               */
436
    opus_int                            length              /* I length of signal       */
437
)
438
637k
{
439
637k
    opus_int   i, energy_shift;
440
637k
    opus_int32 energy;
441
637k
    silk_PLC_struct *psPLC;
442
637k
    psPLC = &psDec->sPLC;
443
444
637k
    if( psDec->lossCnt ) {
445
        /* Calculate energy in concealed residual */
446
184k
        silk_sum_sqr_shift( &psPLC->conc_energy, &psPLC->conc_energy_shift, frame, length );
447
448
184k
        psPLC->last_frame_lost = 1;
449
452k
    } else {
450
452k
        if( psDec->sPLC.last_frame_lost ) {
451
            /* Calculate residual in decoded signal if last frame was lost */
452
21.8k
            silk_sum_sqr_shift( &energy, &energy_shift, frame, length );
453
454
            /* Normalize energies */
455
21.8k
            if( energy_shift > psPLC->conc_energy_shift ) {
456
6.00k
                psPLC->conc_energy = silk_RSHIFT( psPLC->conc_energy, energy_shift - psPLC->conc_energy_shift );
457
15.8k
            } else if( energy_shift < psPLC->conc_energy_shift ) {
458
4.52k
                energy = silk_RSHIFT( energy, psPLC->conc_energy_shift - energy_shift );
459
4.52k
            }
460
461
            /* Fade in the energy difference */
462
21.8k
            if( energy > psPLC->conc_energy ) {
463
15.2k
                opus_int32 frac_Q24, LZ;
464
15.2k
                opus_int32 gain_Q16, slope_Q16;
465
466
15.2k
                LZ = silk_CLZ32( psPLC->conc_energy );
467
15.2k
                LZ = LZ - 1;
468
15.2k
                psPLC->conc_energy = silk_LSHIFT( psPLC->conc_energy, LZ );
469
15.2k
                energy = silk_RSHIFT( energy, silk_max_32( 24 - LZ, 0 ) );
470
471
15.2k
                frac_Q24 = silk_DIV32( psPLC->conc_energy, silk_max( energy, 1 ) );
472
473
15.2k
                gain_Q16 = silk_LSHIFT( silk_SQRT_APPROX( frac_Q24 ), 4 );
474
15.2k
                slope_Q16 = silk_DIV32_16( ( (opus_int32)1 << 16 ) - gain_Q16, length );
475
                /* Make slope 4x steeper to avoid missing onsets after DTX */
476
15.2k
                slope_Q16 = silk_LSHIFT( slope_Q16, 2 );
477
#ifdef ENABLE_DEEP_PLC
478
                if ( psDec->sPLC.fs_kHz != 16 )
479
#endif
480
15.2k
                {
481
837k
                    for( i = 0; i < length; i++ ) {
482
837k
                        frame[ i ] = silk_SMULWB( gain_Q16, frame[ i ] );
483
837k
                        gain_Q16 += slope_Q16;
484
837k
                        if( gain_Q16 > (opus_int32)1 << 16 ) {
485
15.1k
                            break;
486
15.1k
                        }
487
837k
                    }
488
15.2k
                }
489
15.2k
            }
490
21.8k
        }
491
452k
        psPLC->last_frame_lost = 0;
492
452k
    }
493
637k
}