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Gregory Maxwellae231142011-07-30 08:18:48 -04001/***********************************************************************
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Jean-Marc Valinae00e602012-04-20 16:31:04 -04004modification, are permitted provided that the following conditions
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Gregory Maxwellae231142011-07-30 08:18:48 -04006- Redistributions of source code must retain the above copyright notice,
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Timothy B. Terriberry80ad3832013-05-19 18:00:39 -070015THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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Gregory Maxwellae231142011-07-30 08:18:48 -040026***********************************************************************/
27
Jean-Marc Valin5a484122011-08-15 10:49:53 -040028#ifdef HAVE_CONFIG_H
29#include "config.h"
30#endif
31
Gregory Maxwellae231142011-07-30 08:18:48 -040032/*
Gregory Maxwellae231142011-07-30 08:18:48 -040033 Elliptic/Cauer filters designed with 0.1 dB passband ripple,
Koen Vosacc7a6c2011-10-28 19:44:26 -040034 80 dB minimum stopband attenuation, and
35 [0.95 : 0.15 : 0.35] normalized cut off frequencies.
Gregory Maxwellae231142011-07-30 08:18:48 -040036*/
Koen Vosacc7a6c2011-10-28 19:44:26 -040037
Jean-Marc Valin1c2f5632011-09-16 01:16:53 -070038#include "main.h"
Gregory Maxwellae231142011-07-30 08:18:48 -040039
40/* Helper function, interpolates the filter taps */
Gregory Maxwell7830cf12013-10-17 15:56:52 -070041static OPUS_INLINE void silk_LP_interpolate_filter_taps(
Gregory Maxwellae231142011-07-30 08:18:48 -040042 opus_int32 B_Q28[ TRANSITION_NB ],
43 opus_int32 A_Q28[ TRANSITION_NA ],
44 const opus_int ind,
45 const opus_int32 fac_Q16
46)
47{
48 opus_int nb, na;
49
50 if( ind < TRANSITION_INT_NUM - 1 ) {
51 if( fac_Q16 > 0 ) {
52 if( fac_Q16 < 32768 ) { /* fac_Q16 is in range of a 16-bit int */
53 /* Piece-wise linear interpolation of B and A */
54 for( nb = 0; nb < TRANSITION_NB; nb++ ) {
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -070055 B_Q28[ nb ] = silk_SMLAWB(
Gregory Maxwellae231142011-07-30 08:18:48 -040056 silk_Transition_LP_B_Q28[ ind ][ nb ],
57 silk_Transition_LP_B_Q28[ ind + 1 ][ nb ] -
58 silk_Transition_LP_B_Q28[ ind ][ nb ],
59 fac_Q16 );
60 }
61 for( na = 0; na < TRANSITION_NA; na++ ) {
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -070062 A_Q28[ na ] = silk_SMLAWB(
Gregory Maxwellae231142011-07-30 08:18:48 -040063 silk_Transition_LP_A_Q28[ ind ][ na ],
64 silk_Transition_LP_A_Q28[ ind + 1 ][ na ] -
65 silk_Transition_LP_A_Q28[ ind ][ na ],
66 fac_Q16 );
67 }
68 } else { /* ( fac_Q16 - ( 1 << 16 ) ) is in range of a 16-bit int */
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -070069 silk_assert( fac_Q16 - ( 1 << 16 ) == silk_SAT16( fac_Q16 - ( 1 << 16 ) ) );
Gregory Maxwellae231142011-07-30 08:18:48 -040070 /* Piece-wise linear interpolation of B and A */
71 for( nb = 0; nb < TRANSITION_NB; nb++ ) {
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -070072 B_Q28[ nb ] = silk_SMLAWB(
Gregory Maxwellae231142011-07-30 08:18:48 -040073 silk_Transition_LP_B_Q28[ ind + 1 ][ nb ],
74 silk_Transition_LP_B_Q28[ ind + 1 ][ nb ] -
75 silk_Transition_LP_B_Q28[ ind ][ nb ],
Jean-Marc Valin905197d2012-03-08 14:09:09 -050076 fac_Q16 - ( (opus_int32)1 << 16 ) );
Gregory Maxwellae231142011-07-30 08:18:48 -040077 }
78 for( na = 0; na < TRANSITION_NA; na++ ) {
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -070079 A_Q28[ na ] = silk_SMLAWB(
Gregory Maxwellae231142011-07-30 08:18:48 -040080 silk_Transition_LP_A_Q28[ ind + 1 ][ na ],
81 silk_Transition_LP_A_Q28[ ind + 1 ][ na ] -
82 silk_Transition_LP_A_Q28[ ind ][ na ],
Jean-Marc Valin905197d2012-03-08 14:09:09 -050083 fac_Q16 - ( (opus_int32)1 << 16 ) );
Gregory Maxwellae231142011-07-30 08:18:48 -040084 }
85 }
86 } else {
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -070087 silk_memcpy( B_Q28, silk_Transition_LP_B_Q28[ ind ], TRANSITION_NB * sizeof( opus_int32 ) );
88 silk_memcpy( A_Q28, silk_Transition_LP_A_Q28[ ind ], TRANSITION_NA * sizeof( opus_int32 ) );
Gregory Maxwellae231142011-07-30 08:18:48 -040089 }
90 } else {
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -070091 silk_memcpy( B_Q28, silk_Transition_LP_B_Q28[ TRANSITION_INT_NUM - 1 ], TRANSITION_NB * sizeof( opus_int32 ) );
92 silk_memcpy( A_Q28, silk_Transition_LP_A_Q28[ TRANSITION_INT_NUM - 1 ], TRANSITION_NA * sizeof( opus_int32 ) );
Gregory Maxwellae231142011-07-30 08:18:48 -040093 }
94}
95
96/* Low-pass filter with variable cutoff frequency based on */
97/* piece-wise linear interpolation between elliptic filters */
98/* Start by setting psEncC->mode <> 0; */
99/* Deactivate by setting psEncC->mode = 0; */
100void silk_LP_variable_cutoff(
Koen Vosacc7a6c2011-10-28 19:44:26 -0400101 silk_LP_state *psLP, /* I/O LP filter state */
102 opus_int16 *frame, /* I/O Low-pass filtered output signal */
103 const opus_int frame_length /* I Frame length */
Gregory Maxwellae231142011-07-30 08:18:48 -0400104)
105{
106 opus_int32 B_Q28[ TRANSITION_NB ], A_Q28[ TRANSITION_NA ], fac_Q16 = 0;
107 opus_int ind = 0;
108
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -0700109 silk_assert( psLP->transition_frame_no >= 0 && psLP->transition_frame_no <= TRANSITION_FRAMES );
Gregory Maxwellae231142011-07-30 08:18:48 -0400110
111 /* Run filter if needed */
112 if( psLP->mode != 0 ) {
113 /* Calculate index and interpolation factor for interpolation */
114#if( TRANSITION_INT_STEPS == 64 )
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -0700115 fac_Q16 = silk_LSHIFT( TRANSITION_FRAMES - psLP->transition_frame_no, 16 - 6 );
Gregory Maxwellae231142011-07-30 08:18:48 -0400116#else
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -0700117 fac_Q16 = silk_DIV32_16( silk_LSHIFT( TRANSITION_FRAMES - psLP->transition_frame_no, 16 ), TRANSITION_FRAMES );
Gregory Maxwellae231142011-07-30 08:18:48 -0400118#endif
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -0700119 ind = silk_RSHIFT( fac_Q16, 16 );
120 fac_Q16 -= silk_LSHIFT( ind, 16 );
Gregory Maxwellae231142011-07-30 08:18:48 -0400121
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -0700122 silk_assert( ind >= 0 );
123 silk_assert( ind < TRANSITION_INT_NUM );
Gregory Maxwellae231142011-07-30 08:18:48 -0400124
125 /* Interpolate filter coefficients */
126 silk_LP_interpolate_filter_taps( B_Q28, A_Q28, ind, fac_Q16 );
127
128 /* Update transition frame number for next frame */
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -0700129 psLP->transition_frame_no = silk_LIMIT( psLP->transition_frame_no + psLP->mode, 0, TRANSITION_FRAMES );
Gregory Maxwellae231142011-07-30 08:18:48 -0400130
131 /* ARMA low-pass filtering */
Jean-Marc Valinfb3a4372011-09-16 00:58:26 -0700132 silk_assert( TRANSITION_NB == 3 && TRANSITION_NA == 2 );
Jean-Marc Valin957f7f12011-09-01 18:02:43 -0400133 silk_biquad_alt( frame, B_Q28, A_Q28, psLP->In_LP_State, frame, frame_length, 1);
Gregory Maxwellae231142011-07-30 08:18:48 -0400134 }
135}