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Side by Side Diff: third_party/opus/src/silk/quant_LTP_gains.c

Issue 2962373002: [Opus] Update to v1.2.1 (Closed)
Patch Set: Pre-increment instead of post-increment Created 3 years, 5 months ago
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1 /*********************************************************************** 1 /***********************************************************************
2 Copyright (c) 2006-2011, Skype Limited. All rights reserved. 2 Copyright (c) 2006-2011, Skype Limited. All rights reserved.
3 Redistribution and use in source and binary forms, with or without 3 Redistribution and use in source and binary forms, with or without
4 modification, are permitted provided that the following conditions 4 modification, are permitted provided that the following conditions
5 are met: 5 are met:
6 - Redistributions of source code must retain the above copyright notice, 6 - Redistributions of source code must retain the above copyright notice,
7 this list of conditions and the following disclaimer. 7 this list of conditions and the following disclaimer.
8 - Redistributions in binary form must reproduce the above copyright 8 - Redistributions in binary form must reproduce the above copyright
9 notice, this list of conditions and the following disclaimer in the 9 notice, this list of conditions and the following disclaimer in the
10 documentation and/or other materials provided with the distribution. 10 documentation and/or other materials provided with the distribution.
(...skipping 15 matching lines...) Expand all
26 ***********************************************************************/ 26 ***********************************************************************/
27 27
28 #ifdef HAVE_CONFIG_H 28 #ifdef HAVE_CONFIG_H
29 #include "config.h" 29 #include "config.h"
30 #endif 30 #endif
31 31
32 #include "main.h" 32 #include "main.h"
33 #include "tuning_parameters.h" 33 #include "tuning_parameters.h"
34 34
35 void silk_quant_LTP_gains( 35 void silk_quant_LTP_gains(
36 opus_int16 B_Q14[ MAX_NB_SUBFR * LTP_ORDER ], /* I /O (un)quantized LTP gains */ 36 opus_int16 B_Q14[ MAX_NB_SUBFR * LTP_ORDER ], /* O Quantized LTP gains */
37 opus_int8 cbk_index[ MAX_NB_SUBFR ], /* O Codebook Index */ 37 opus_int8 cbk_index[ MAX_NB_SUBFR ], /* O Codebook Index */
38 opus_int8 *periodicity_index, /* O Periodicity Index */ 38 opus_int8 *periodicity_index, /* O Periodicity Index */
39 opus_int32 *sum_log_gain_Q7, /* I /O Cumulative max prediction gain */ 39 opus_int32 *sum_log_gain_Q7, /* I /O Cumulative max prediction gain */
40 const opus_int32 W_Q18[ MAX_NB_SUBFR*LTP_ORDER*LTP_ORDER ], /* I Error Weights in Q18 */ 40 opus_int *pred_gain_dB_Q7, /* O LTP prediction gain */
41 opus_int mu_Q9, /* I Mu value (R/D tradeoff) */ 41 const opus_int32 XX_Q17[ MAX_NB_SUBFR*LTP_ORDER*LTP_ORDER ], /* I Correlation matrix in Q18 */
42 opus_int lowComplexity, /* I Flag for low complexity */ 42 const opus_int32 xX_Q17[ MAX_NB_SUBFR*LTP_ORDER ], /* I Correlation vector in Q18 */
43 const opus_int nb_subfr, /* I number of subframes */ 43 const opus_int subfr_len, /* I Number of samples per subframe */
44 const opus_int nb_subfr, /* I Number of subframes */
44 int arch /* I Run-time architecture */ 45 int arch /* I Run-time architecture */
45 ) 46 )
46 { 47 {
47 opus_int j, k, cbk_size; 48 opus_int j, k, cbk_size;
48 opus_int8 temp_idx[ MAX_NB_SUBFR ]; 49 opus_int8 temp_idx[ MAX_NB_SUBFR ];
49 const opus_uint8 *cl_ptr_Q5; 50 const opus_uint8 *cl_ptr_Q5;
50 const opus_int8 *cbk_ptr_Q7; 51 const opus_int8 *cbk_ptr_Q7;
51 const opus_uint8 *cbk_gain_ptr_Q7; 52 const opus_uint8 *cbk_gain_ptr_Q7;
52 const opus_int16 *b_Q14_ptr; 53 const opus_int32 *XX_Q17_ptr, *xX_Q17_ptr;
53 const opus_int32 *W_Q18_ptr; 54 opus_int32 res_nrg_Q15_subfr, res_nrg_Q15, rate_dist_Q7_subfr, rat e_dist_Q7, min_rate_dist_Q7;
54 opus_int32 rate_dist_Q14_subfr, rate_dist_Q14, min_rate_dist_Q14; 55 opus_int32 sum_log_gain_tmp_Q7, best_sum_log_gain_Q7, max_gain_Q7;
55 opus_int32 sum_log_gain_tmp_Q7, best_sum_log_gain_Q7, max_gain_Q7, gain_Q7; 56 opus_int gain_Q7;
56 57
57 /***************************************************/ 58 /***************************************************/
58 /* iterate over different codebooks with different */ 59 /* iterate over different codebooks with different */
59 /* rates/distortions, and choose best */ 60 /* rates/distortions, and choose best */
60 /***************************************************/ 61 /***************************************************/
61 min_rate_dist_Q14 = silk_int32_MAX; 62 min_rate_dist_Q7 = silk_int32_MAX;
62 best_sum_log_gain_Q7 = 0; 63 best_sum_log_gain_Q7 = 0;
63 for( k = 0; k < 3; k++ ) { 64 for( k = 0; k < 3; k++ ) {
64 /* Safety margin for pitch gain control, to take into account factors 65 /* Safety margin for pitch gain control, to take into account factors
65 such as state rescaling/rewhitening. */ 66 such as state rescaling/rewhitening. */
66 opus_int32 gain_safety = SILK_FIX_CONST( 0.4, 7 ); 67 opus_int32 gain_safety = SILK_FIX_CONST( 0.4, 7 );
67 68
68 cl_ptr_Q5 = silk_LTP_gain_BITS_Q5_ptrs[ k ]; 69 cl_ptr_Q5 = silk_LTP_gain_BITS_Q5_ptrs[ k ];
69 cbk_ptr_Q7 = silk_LTP_vq_ptrs_Q7[ k ]; 70 cbk_ptr_Q7 = silk_LTP_vq_ptrs_Q7[ k ];
70 cbk_gain_ptr_Q7 = silk_LTP_vq_gain_ptrs_Q7[ k ]; 71 cbk_gain_ptr_Q7 = silk_LTP_vq_gain_ptrs_Q7[ k ];
71 cbk_size = silk_LTP_vq_sizes[ k ]; 72 cbk_size = silk_LTP_vq_sizes[ k ];
72 73
73 /* Set up pointer to first subframe */ 74 /* Set up pointers to first subframe */
74 W_Q18_ptr = W_Q18; 75 XX_Q17_ptr = XX_Q17;
75 b_Q14_ptr = B_Q14; 76 xX_Q17_ptr = xX_Q17;
76 77
77 rate_dist_Q14 = 0; 78 res_nrg_Q15 = 0;
79 rate_dist_Q7 = 0;
78 sum_log_gain_tmp_Q7 = *sum_log_gain_Q7; 80 sum_log_gain_tmp_Q7 = *sum_log_gain_Q7;
79 for( j = 0; j < nb_subfr; j++ ) { 81 for( j = 0; j < nb_subfr; j++ ) {
80 max_gain_Q7 = silk_log2lin( ( SILK_FIX_CONST( MAX_SUM_LOG_GAIN_DB / 6.0, 7 ) - sum_log_gain_tmp_Q7 ) 82 max_gain_Q7 = silk_log2lin( ( SILK_FIX_CONST( MAX_SUM_LOG_GAIN_DB / 6.0, 7 ) - sum_log_gain_tmp_Q7 )
81 + SILK_FIX_CONST( 7, 7 ) ) - gain_safety ; 83 + SILK_FIX_CONST( 7, 7 ) ) - gain_safety ;
82
83 silk_VQ_WMat_EC( 84 silk_VQ_WMat_EC(
84 &temp_idx[ j ], /* O index of best codebook vector */ 85 &temp_idx[ j ], /* O index of best codebook vector */
85 &rate_dist_Q14_subfr, /* O best weighted quantization error + mu * rate */ 86 &res_nrg_Q15_subfr, /* O residual energy */
87 &rate_dist_Q7_subfr, /* O best weighted quantization error + mu * rate */
86 &gain_Q7, /* O sum of absolute LTP coefficients */ 88 &gain_Q7, /* O sum of absolute LTP coefficients */
87 b_Q14_ptr, /* I input vector to be quantized */ 89 XX_Q17_ptr, /* I correlation matrix */
88 W_Q18_ptr, /* I weighting matrix */ 90 xX_Q17_ptr, /* I correlation vector */
89 cbk_ptr_Q7, /* I codebook */ 91 cbk_ptr_Q7, /* I codebook */
90 cbk_gain_ptr_Q7, /* I codebook effective gains */ 92 cbk_gain_ptr_Q7, /* I codebook effective gains */
91 cl_ptr_Q5, /* I code length for each codebook ve ctor */ 93 cl_ptr_Q5, /* I code length for each codebook ve ctor */
92 mu_Q9, /* I tradeoff between weighted error and rate */ 94 subfr_len, /* I number of samples per subframe */
93 max_gain_Q7, /* I maximum sum of absolute LTP coef ficients */ 95 max_gain_Q7, /* I maximum sum of absolute LTP coef ficients */
94 cbk_size, /* I number of vectors in codebook */ 96 cbk_size, /* I number of vectors in codebook */
95 arch /* I Run-time architecture */ 97 arch /* I Run-time architecture */
96 ); 98 );
97 99
98 rate_dist_Q14 = silk_ADD_POS_SAT32( rate_dist_Q14, rate_dist_Q14_sub fr ); 100 res_nrg_Q15 = silk_ADD_POS_SAT32( res_nrg_Q15, res_nrg_Q15_subfr );
101 rate_dist_Q7 = silk_ADD_POS_SAT32( rate_dist_Q7, rate_dist_Q7_subfr );
99 sum_log_gain_tmp_Q7 = silk_max(0, sum_log_gain_tmp_Q7 102 sum_log_gain_tmp_Q7 = silk_max(0, sum_log_gain_tmp_Q7
100 + silk_lin2log( gain_safety + gain_Q7 ) - SILK_F IX_CONST( 7, 7 )); 103 + silk_lin2log( gain_safety + gain_Q7 ) - SILK_F IX_CONST( 7, 7 ));
101 104
102 b_Q14_ptr += LTP_ORDER; 105 XX_Q17_ptr += LTP_ORDER * LTP_ORDER;
103 W_Q18_ptr += LTP_ORDER * LTP_ORDER; 106 xX_Q17_ptr += LTP_ORDER;
104 } 107 }
105 108
106 /* Avoid never finding a codebook */ 109 if( rate_dist_Q7 <= min_rate_dist_Q7 ) {
107 rate_dist_Q14 = silk_min( silk_int32_MAX - 1, rate_dist_Q14 ); 110 min_rate_dist_Q7 = rate_dist_Q7;
108
109 if( rate_dist_Q14 < min_rate_dist_Q14 ) {
110 min_rate_dist_Q14 = rate_dist_Q14;
111 *periodicity_index = (opus_int8)k; 111 *periodicity_index = (opus_int8)k;
112 silk_memcpy( cbk_index, temp_idx, nb_subfr * sizeof( opus_int8 ) ); 112 silk_memcpy( cbk_index, temp_idx, nb_subfr * sizeof( opus_int8 ) );
113 best_sum_log_gain_Q7 = sum_log_gain_tmp_Q7; 113 best_sum_log_gain_Q7 = sum_log_gain_tmp_Q7;
114 } 114 }
115
116 /* Break early in low-complexity mode if rate distortion is below thresh old */
117 if( lowComplexity && ( rate_dist_Q14 < silk_LTP_gain_middle_avg_RD_Q14 ) ) {
118 break;
119 }
120 } 115 }
121 116
122 cbk_ptr_Q7 = silk_LTP_vq_ptrs_Q7[ *periodicity_index ]; 117 cbk_ptr_Q7 = silk_LTP_vq_ptrs_Q7[ *periodicity_index ];
123 for( j = 0; j < nb_subfr; j++ ) { 118 for( j = 0; j < nb_subfr; j++ ) {
124 for( k = 0; k < LTP_ORDER; k++ ) { 119 for( k = 0; k < LTP_ORDER; k++ ) {
125 B_Q14[ j * LTP_ORDER + k ] = silk_LSHIFT( cbk_ptr_Q7[ cbk_index[ j ] * LTP_ORDER + k ], 7 ); 120 B_Q14[ j * LTP_ORDER + k ] = silk_LSHIFT( cbk_ptr_Q7[ cbk_index[ j ] * LTP_ORDER + k ], 7 );
126 } 121 }
127 } 122 }
123
124 if( nb_subfr == 2 ) {
125 res_nrg_Q15 = silk_RSHIFT32( res_nrg_Q15, 1 );
126 } else {
127 res_nrg_Q15 = silk_RSHIFT32( res_nrg_Q15, 2 );
128 }
129
128 *sum_log_gain_Q7 = best_sum_log_gain_Q7; 130 *sum_log_gain_Q7 = best_sum_log_gain_Q7;
131 *pred_gain_dB_Q7 = (opus_int)silk_SMULBB( -3, silk_lin2log( res_nrg_Q15 ) - ( 15 << 7 ) );
129 } 132 }
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