1*a58d3d2aSXin Li /***********************************************************************
2*a58d3d2aSXin Li Copyright (c) 2006-2011, Skype Limited. All rights reserved.
3*a58d3d2aSXin Li Redistribution and use in source and binary forms, with or without
4*a58d3d2aSXin Li modification, are permitted provided that the following conditions
5*a58d3d2aSXin Li are met:
6*a58d3d2aSXin Li - Redistributions of source code must retain the above copyright notice,
7*a58d3d2aSXin Li this list of conditions and the following disclaimer.
8*a58d3d2aSXin Li - Redistributions in binary form must reproduce the above copyright
9*a58d3d2aSXin Li notice, this list of conditions and the following disclaimer in the
10*a58d3d2aSXin Li documentation and/or other materials provided with the distribution.
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13*a58d3d2aSXin Li products derived from this software without specific prior written
14*a58d3d2aSXin Li permission.
15*a58d3d2aSXin Li THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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26*a58d3d2aSXin Li ***********************************************************************/
27*a58d3d2aSXin Li
28*a58d3d2aSXin Li #ifdef HAVE_CONFIG_H
29*a58d3d2aSXin Li #include "config.h"
30*a58d3d2aSXin Li #endif
31*a58d3d2aSXin Li
32*a58d3d2aSXin Li #include "main_FIX.h"
33*a58d3d2aSXin Li #include "stack_alloc.h"
34*a58d3d2aSXin Li
35*a58d3d2aSXin Li /* Calculates residual energies of input subframes where all subframes have LPC_order */
36*a58d3d2aSXin Li /* of preceding samples */
silk_residual_energy_FIX(opus_int32 nrgs[MAX_NB_SUBFR],opus_int nrgsQ[MAX_NB_SUBFR],const opus_int16 x[],opus_int16 a_Q12[2][MAX_LPC_ORDER],const opus_int32 gains[MAX_NB_SUBFR],const opus_int subfr_length,const opus_int nb_subfr,const opus_int LPC_order,int arch)37*a58d3d2aSXin Li void silk_residual_energy_FIX(
38*a58d3d2aSXin Li opus_int32 nrgs[ MAX_NB_SUBFR ], /* O Residual energy per subframe */
39*a58d3d2aSXin Li opus_int nrgsQ[ MAX_NB_SUBFR ], /* O Q value per subframe */
40*a58d3d2aSXin Li const opus_int16 x[], /* I Input signal */
41*a58d3d2aSXin Li opus_int16 a_Q12[ 2 ][ MAX_LPC_ORDER ], /* I AR coefs for each frame half */
42*a58d3d2aSXin Li const opus_int32 gains[ MAX_NB_SUBFR ], /* I Quantization gains */
43*a58d3d2aSXin Li const opus_int subfr_length, /* I Subframe length */
44*a58d3d2aSXin Li const opus_int nb_subfr, /* I Number of subframes */
45*a58d3d2aSXin Li const opus_int LPC_order, /* I LPC order */
46*a58d3d2aSXin Li int arch /* I Run-time architecture */
47*a58d3d2aSXin Li )
48*a58d3d2aSXin Li {
49*a58d3d2aSXin Li opus_int offset, i, j, rshift, lz1, lz2;
50*a58d3d2aSXin Li opus_int16 *LPC_res_ptr;
51*a58d3d2aSXin Li VARDECL( opus_int16, LPC_res );
52*a58d3d2aSXin Li const opus_int16 *x_ptr;
53*a58d3d2aSXin Li opus_int32 tmp32;
54*a58d3d2aSXin Li SAVE_STACK;
55*a58d3d2aSXin Li
56*a58d3d2aSXin Li x_ptr = x;
57*a58d3d2aSXin Li offset = LPC_order + subfr_length;
58*a58d3d2aSXin Li
59*a58d3d2aSXin Li /* Filter input to create the LPC residual for each frame half, and measure subframe energies */
60*a58d3d2aSXin Li ALLOC( LPC_res, ( MAX_NB_SUBFR >> 1 ) * offset, opus_int16 );
61*a58d3d2aSXin Li celt_assert( ( nb_subfr >> 1 ) * ( MAX_NB_SUBFR >> 1 ) == nb_subfr );
62*a58d3d2aSXin Li for( i = 0; i < nb_subfr >> 1; i++ ) {
63*a58d3d2aSXin Li /* Calculate half frame LPC residual signal including preceding samples */
64*a58d3d2aSXin Li silk_LPC_analysis_filter( LPC_res, x_ptr, a_Q12[ i ], ( MAX_NB_SUBFR >> 1 ) * offset, LPC_order, arch );
65*a58d3d2aSXin Li
66*a58d3d2aSXin Li /* Point to first subframe of the just calculated LPC residual signal */
67*a58d3d2aSXin Li LPC_res_ptr = LPC_res + LPC_order;
68*a58d3d2aSXin Li for( j = 0; j < ( MAX_NB_SUBFR >> 1 ); j++ ) {
69*a58d3d2aSXin Li /* Measure subframe energy */
70*a58d3d2aSXin Li silk_sum_sqr_shift( &nrgs[ i * ( MAX_NB_SUBFR >> 1 ) + j ], &rshift, LPC_res_ptr, subfr_length );
71*a58d3d2aSXin Li
72*a58d3d2aSXin Li /* Set Q values for the measured energy */
73*a58d3d2aSXin Li nrgsQ[ i * ( MAX_NB_SUBFR >> 1 ) + j ] = -rshift;
74*a58d3d2aSXin Li
75*a58d3d2aSXin Li /* Move to next subframe */
76*a58d3d2aSXin Li LPC_res_ptr += offset;
77*a58d3d2aSXin Li }
78*a58d3d2aSXin Li /* Move to next frame half */
79*a58d3d2aSXin Li x_ptr += ( MAX_NB_SUBFR >> 1 ) * offset;
80*a58d3d2aSXin Li }
81*a58d3d2aSXin Li
82*a58d3d2aSXin Li /* Apply the squared subframe gains */
83*a58d3d2aSXin Li for( i = 0; i < nb_subfr; i++ ) {
84*a58d3d2aSXin Li /* Fully upscale gains and energies */
85*a58d3d2aSXin Li lz1 = silk_CLZ32( nrgs[ i ] ) - 1;
86*a58d3d2aSXin Li lz2 = silk_CLZ32( gains[ i ] ) - 1;
87*a58d3d2aSXin Li
88*a58d3d2aSXin Li tmp32 = silk_LSHIFT32( gains[ i ], lz2 );
89*a58d3d2aSXin Li
90*a58d3d2aSXin Li /* Find squared gains */
91*a58d3d2aSXin Li tmp32 = silk_SMMUL( tmp32, tmp32 ); /* Q( 2 * lz2 - 32 )*/
92*a58d3d2aSXin Li
93*a58d3d2aSXin Li /* Scale energies */
94*a58d3d2aSXin Li nrgs[ i ] = silk_SMMUL( tmp32, silk_LSHIFT32( nrgs[ i ], lz1 ) ); /* Q( nrgsQ[ i ] + lz1 + 2 * lz2 - 32 - 32 )*/
95*a58d3d2aSXin Li nrgsQ[ i ] += lz1 + 2 * lz2 - 32 - 32;
96*a58d3d2aSXin Li }
97*a58d3d2aSXin Li RESTORE_STACK;
98*a58d3d2aSXin Li }
99