1*a58d3d2aSXin Li /***********************************************************************
2*a58d3d2aSXin Li Copyright (c) 2006-2011, Skype Limited. All rights reserved.
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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.
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13*a58d3d2aSXin Li products derived from this software without specific prior written
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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 "SigProc_FIX.h"
33*a58d3d2aSXin Li #include "resampler_private.h"
34*a58d3d2aSXin Li
35*a58d3d2aSXin Li /* Upsample by a factor 2, high quality */
36*a58d3d2aSXin Li /* Uses 2nd order allpass filters for the 2x upsampling, followed by a */
37*a58d3d2aSXin Li /* notch filter just above Nyquist. */
silk_resampler_private_up2_HQ(opus_int32 * S,opus_int16 * out,const opus_int16 * in,opus_int32 len)38*a58d3d2aSXin Li void silk_resampler_private_up2_HQ(
39*a58d3d2aSXin Li opus_int32 *S, /* I/O Resampler state [ 6 ] */
40*a58d3d2aSXin Li opus_int16 *out, /* O Output signal [ 2 * len ] */
41*a58d3d2aSXin Li const opus_int16 *in, /* I Input signal [ len ] */
42*a58d3d2aSXin Li opus_int32 len /* I Number of input samples */
43*a58d3d2aSXin Li )
44*a58d3d2aSXin Li {
45*a58d3d2aSXin Li opus_int32 k;
46*a58d3d2aSXin Li opus_int32 in32, out32_1, out32_2, Y, X;
47*a58d3d2aSXin Li
48*a58d3d2aSXin Li silk_assert( silk_resampler_up2_hq_0[ 0 ] > 0 );
49*a58d3d2aSXin Li silk_assert( silk_resampler_up2_hq_0[ 1 ] > 0 );
50*a58d3d2aSXin Li silk_assert( silk_resampler_up2_hq_0[ 2 ] < 0 );
51*a58d3d2aSXin Li silk_assert( silk_resampler_up2_hq_1[ 0 ] > 0 );
52*a58d3d2aSXin Li silk_assert( silk_resampler_up2_hq_1[ 1 ] > 0 );
53*a58d3d2aSXin Li silk_assert( silk_resampler_up2_hq_1[ 2 ] < 0 );
54*a58d3d2aSXin Li
55*a58d3d2aSXin Li /* Internal variables and state are in Q10 format */
56*a58d3d2aSXin Li for( k = 0; k < len; k++ ) {
57*a58d3d2aSXin Li /* Convert to Q10 */
58*a58d3d2aSXin Li in32 = silk_LSHIFT( (opus_int32)in[ k ], 10 );
59*a58d3d2aSXin Li
60*a58d3d2aSXin Li /* First all-pass section for even output sample */
61*a58d3d2aSXin Li Y = silk_SUB32( in32, S[ 0 ] );
62*a58d3d2aSXin Li X = silk_SMULWB( Y, silk_resampler_up2_hq_0[ 0 ] );
63*a58d3d2aSXin Li out32_1 = silk_ADD32( S[ 0 ], X );
64*a58d3d2aSXin Li S[ 0 ] = silk_ADD32( in32, X );
65*a58d3d2aSXin Li
66*a58d3d2aSXin Li /* Second all-pass section for even output sample */
67*a58d3d2aSXin Li Y = silk_SUB32( out32_1, S[ 1 ] );
68*a58d3d2aSXin Li X = silk_SMULWB( Y, silk_resampler_up2_hq_0[ 1 ] );
69*a58d3d2aSXin Li out32_2 = silk_ADD32( S[ 1 ], X );
70*a58d3d2aSXin Li S[ 1 ] = silk_ADD32( out32_1, X );
71*a58d3d2aSXin Li
72*a58d3d2aSXin Li /* Third all-pass section for even output sample */
73*a58d3d2aSXin Li Y = silk_SUB32( out32_2, S[ 2 ] );
74*a58d3d2aSXin Li X = silk_SMLAWB( Y, Y, silk_resampler_up2_hq_0[ 2 ] );
75*a58d3d2aSXin Li out32_1 = silk_ADD32( S[ 2 ], X );
76*a58d3d2aSXin Li S[ 2 ] = silk_ADD32( out32_2, X );
77*a58d3d2aSXin Li
78*a58d3d2aSXin Li /* Apply gain in Q15, convert back to int16 and store to output */
79*a58d3d2aSXin Li out[ 2 * k ] = (opus_int16)silk_SAT16( silk_RSHIFT_ROUND( out32_1, 10 ) );
80*a58d3d2aSXin Li
81*a58d3d2aSXin Li /* First all-pass section for odd output sample */
82*a58d3d2aSXin Li Y = silk_SUB32( in32, S[ 3 ] );
83*a58d3d2aSXin Li X = silk_SMULWB( Y, silk_resampler_up2_hq_1[ 0 ] );
84*a58d3d2aSXin Li out32_1 = silk_ADD32( S[ 3 ], X );
85*a58d3d2aSXin Li S[ 3 ] = silk_ADD32( in32, X );
86*a58d3d2aSXin Li
87*a58d3d2aSXin Li /* Second all-pass section for odd output sample */
88*a58d3d2aSXin Li Y = silk_SUB32( out32_1, S[ 4 ] );
89*a58d3d2aSXin Li X = silk_SMULWB( Y, silk_resampler_up2_hq_1[ 1 ] );
90*a58d3d2aSXin Li out32_2 = silk_ADD32( S[ 4 ], X );
91*a58d3d2aSXin Li S[ 4 ] = silk_ADD32( out32_1, X );
92*a58d3d2aSXin Li
93*a58d3d2aSXin Li /* Third all-pass section for odd output sample */
94*a58d3d2aSXin Li Y = silk_SUB32( out32_2, S[ 5 ] );
95*a58d3d2aSXin Li X = silk_SMLAWB( Y, Y, silk_resampler_up2_hq_1[ 2 ] );
96*a58d3d2aSXin Li out32_1 = silk_ADD32( S[ 5 ], X );
97*a58d3d2aSXin Li S[ 5 ] = silk_ADD32( out32_2, X );
98*a58d3d2aSXin Li
99*a58d3d2aSXin Li /* Apply gain in Q15, convert back to int16 and store to output */
100*a58d3d2aSXin Li out[ 2 * k + 1 ] = (opus_int16)silk_SAT16( silk_RSHIFT_ROUND( out32_1, 10 ) );
101*a58d3d2aSXin Li }
102*a58d3d2aSXin Li }
103*a58d3d2aSXin Li
silk_resampler_private_up2_HQ_wrapper(void * SS,opus_int16 * out,const opus_int16 * in,opus_int32 len)104*a58d3d2aSXin Li void silk_resampler_private_up2_HQ_wrapper(
105*a58d3d2aSXin Li void *SS, /* I/O Resampler state (unused) */
106*a58d3d2aSXin Li opus_int16 *out, /* O Output signal [ 2 * len ] */
107*a58d3d2aSXin Li const opus_int16 *in, /* I Input signal [ len ] */
108*a58d3d2aSXin Li opus_int32 len /* I Number of input samples */
109*a58d3d2aSXin Li )
110*a58d3d2aSXin Li {
111*a58d3d2aSXin Li silk_resampler_state_struct *S = (silk_resampler_state_struct *)SS;
112*a58d3d2aSXin Li silk_resampler_private_up2_HQ( S->sIIR, out, in, len );
113*a58d3d2aSXin Li }
114