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			406 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			406 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2019 Edouard Griffiths, F4EXB <f4exb06@gmail.com>               //
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//                                                                               //
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// This program is free software; you can redistribute it and/or modify          //
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// it under the terms of the GNU General Public License as published by          //
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// the Free Software Foundation as version 3 of the License, or                  //
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// (at your option) any later version.                                           //
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//                                                                               //
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// This program is distributed in the hope that it will be useful,               //
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// but WITHOUT ANY WARRANTY; without even the implied warranty of                //
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the                  //
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// GNU General Public License V3 for more details.                               //
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//                                                                               //
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// You should have received a copy of the GNU General Public License             //
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// along with this program. If not, see <http://www.gnu.org/licenses/>.          //
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///////////////////////////////////////////////////////////////////////////////////
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#include <algorithm>
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#include "audiog722.h"
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#define G722_SAMPLE_RATE_8000 1
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#define G722_PACKED 2
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const int AudioG722::q6[32] =
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{
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       0,   35,   72,  110,  150,  190,  233,  276,
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     323,  370,  422,  473,  530,  587,  650,  714,
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     786,  858,  940, 1023, 1121, 1219, 1339, 1458,
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    1612, 1765, 1980, 2195, 2557, 2919,    0,    0
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};
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const int AudioG722::iln[32] =
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{
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     0, 63, 62, 31, 30, 29, 28, 27,
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    26, 25, 24, 23, 22, 21, 20, 19,
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    18, 17, 16, 15, 14, 13, 12, 11,
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    10,  9,  8,  7,  6,  5,  4,  0
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};
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const int AudioG722::ilp[32] =
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{
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     0, 61, 60, 59, 58, 57, 56, 55,
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    54, 53, 52, 51, 50, 49, 48, 47,
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    46, 45, 44, 43, 42, 41, 40, 39,
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    38, 37, 36, 35, 34, 33, 32,  0
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};
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const int AudioG722::wl[8] =
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{
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    -60, -30, 58, 172, 334, 538, 1198, 3042
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};
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const int AudioG722::rl42[16] =
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{
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    0, 7, 6, 5, 4, 3, 2, 1, 7, 6, 5, 4, 3, 2, 1, 0
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};
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const int AudioG722::ilb[32] =
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{
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    2048, 2093, 2139, 2186, 2233, 2282, 2332,
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    2383, 2435, 2489, 2543, 2599, 2656, 2714,
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    2774, 2834, 2896, 2960, 3025, 3091, 3158,
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    3228, 3298, 3371, 3444, 3520, 3597, 3676,
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    3756, 3838, 3922, 4008
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};
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const int AudioG722::qm4[16] =
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{
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         0, -20456, -12896, -8968,
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     -6288,  -4240,  -2584, -1200,
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     20456,  12896,   8968,  6288,
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      4240,   2584,   1200,     0
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};
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const int AudioG722::qm2[4] =
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{
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    -7408,  -1616,   7408,   1616
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};
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const int AudioG722::qmf_coeffs[12] =
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{
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       3,  -11,   12,   32, -210,  951, 3876, -805,  362, -156,   53,  -11,
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};
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const int AudioG722::ihn[3] = {0, 1, 0};
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const int AudioG722::ihp[3] = {0, 3, 2};
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const int AudioG722::wh[3] = {0, -214, 798};
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const int AudioG722::rh2[4] = {2, 1, 2, 1};
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AudioG722::g722_encode_state::g722_encode_state()
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{
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    init(64000, 0);
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}
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void AudioG722::g722_encode_state::init(int rate, int options)
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{
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    itu_test_mode = 0;
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    std::fill(x, x+24, 0);
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    in_buffer = 0;
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    in_bits = 0;
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    out_buffer = 0;
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    out_bits = 0;
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    char *pBand = (char *) band;
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    std::fill(pBand, pBand + sizeof(band), 0);
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    if (rate == 48000) {
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        bits_per_sample = 6;
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    } else if (rate == 56000) {
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        bits_per_sample = 7;
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    } else {
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        bits_per_sample = 8;
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    }
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    if ((options & G722_SAMPLE_RATE_8000)) {
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        eight_k = 1;
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    } else {
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        eight_k = 0;
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    }
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    if ((options & G722_PACKED)  &&  bits_per_sample != 8) {
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        packed = 1;
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    } else {
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        packed = 0;
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    }
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    band[0].det = 32;
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    band[1].det = 8;
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}
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AudioG722::AudioG722()
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{}
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AudioG722::~AudioG722()
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{}
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void AudioG722::init(int rate, int options)
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{
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    state.init(rate, options);
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}
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void AudioG722::block4(int band, int d)
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{
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    int wd1;
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    int wd2;
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    int wd3;
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    int i;
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    /* Block 4, RECONS */
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    state.band[band].d[0] = d;
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    state.band[band].r[0] = saturate(state.band[band].s + d);
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    /* Block 4, PARREC */
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    state.band[band].p[0] = saturate(state.band[band].sz + d);
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    /* Block 4, UPPOL2 */
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    for (i = 0;  i < 3;  i++) {
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        state.band[band].sg[i] = state.band[band].p[i] >> 15;
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    }
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    wd1 = saturate(state.band[band].a[1] << 2);
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    wd2 = (state.band[band].sg[0] == state.band[band].sg[1])  ?  -wd1  :  wd1;
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    if (wd2 > 32767) {
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        wd2 = 32767;
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    }
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    wd3 = (wd2 >> 7) + ((state.band[band].sg[0] == state.band[band].sg[2])  ?  128  :  -128);
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    wd3 += (state.band[band].a[2]*32512) >> 15;
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    if (wd3 > 12288) {
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        wd3 = 12288;
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    } else if (wd3 < -12288) {
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        wd3 = -12288;
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    }
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    state.band[band].ap[2] = wd3;
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    /* Block 4, UPPOL1 */
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    state.band[band].sg[0] = state.band[band].p[0] >> 15;
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    state.band[band].sg[1] = state.band[band].p[1] >> 15;
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    wd1 = (state.band[band].sg[0] == state.band[band].sg[1])  ?  192  :  -192;
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    wd2 = (state.band[band].a[1]*32640) >> 15;
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    state.band[band].ap[1] = saturate(wd1 + wd2);
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    wd3 = saturate(15360 - state.band[band].ap[2]);
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    if (state.band[band].ap[1] > wd3) {
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        state.band[band].ap[1] = wd3;
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    } else if (state.band[band].ap[1] < -wd3) {
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        state.band[band].ap[1] = -wd3;
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    }
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    /* Block 4, UPZERO */
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    wd1 = (d == 0)  ?  0  :  128;
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    state.band[band].sg[0] = d >> 15;
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    for (i = 1;  i < 7;  i++)
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    {
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        state.band[band].sg[i] = state.band[band].d[i] >> 15;
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        wd2 = (state.band[band].sg[i] == state.band[band].sg[0])  ?  wd1  :  -wd1;
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        wd3 = (state.band[band].b[i]*32640) >> 15;
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        state.band[band].bp[i] = saturate(wd2 + wd3);
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    }
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    /* Block 4, DELAYA */
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    for (i = 6;  i > 0;  i--)
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    {
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        state.band[band].d[i] = state.band[band].d[i - 1];
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        state.band[band].b[i] = state.band[band].bp[i];
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    }
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    for (i = 2;  i > 0;  i--)
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    {
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        state.band[band].r[i] = state.band[band].r[i - 1];
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        state.band[band].p[i] = state.band[band].p[i - 1];
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        state.band[band].a[i] = state.band[band].ap[i];
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    }
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    /* Block 4, FILTEP */
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    wd1 = saturate(state.band[band].r[1] + state.band[band].r[1]);
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    wd1 = (state.band[band].a[1]*wd1) >> 15;
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    wd2 = saturate(state.band[band].r[2] + state.band[band].r[2]);
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    wd2 = (state.band[band].a[2]*wd2) >> 15;
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    state.band[band].sp = saturate(wd1 + wd2);
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    /* Block 4, FILTEZ */
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    state.band[band].sz = 0;
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    for (i = 6;  i > 0;  i--)
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    {
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        wd1 = saturate(state.band[band].d[i] + state.band[band].d[i]);
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        state.band[band].sz += (state.band[band].b[i]*wd1) >> 15;
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    }
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    state.band[band].sz = saturate(state.band[band].sz);
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    /* Block 4, PREDIC */
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    state.band[band].s = saturate(state.band[band].sp + state.band[band].sz);
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}
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int AudioG722::encode(uint8_t g722_data[], const int16_t amp[], int len)
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{
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    int dlow;
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    int dhigh;
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    int el;
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    int wd;
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    int wd1;
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    int ril;
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    int wd2;
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    int il4;
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    int ih2;
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    int wd3;
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    int eh;
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    int mih;
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    int i;
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    int j;
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    /* Low and high band PCM from the QMF */
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    int xlow;
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    int xhigh;
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    int g722_bytes;
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    /* Even and odd tap accumulators */
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    int sumeven;
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    int sumodd;
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    int ihigh;
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    int ilow;
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    int code;
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    g722_bytes = 0;
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    xhigh = 0;
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    for (j = 0;  j < len;  )
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    {
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        if (state.itu_test_mode)
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        {
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            xhigh = amp[j++] >> 1;
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            xlow = xhigh;
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        }
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        else
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        {
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            if (state.eight_k)
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            {
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                xlow = amp[j++] >> 1;
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            }
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            else
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            {
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                /* Apply the transmit QMF */
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                /* Shuffle the buffer down */
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                for (i = 0;  i < 22;  i++) {
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                    state.x[i] = state.x[i + 2];
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                }
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                state.x[22] = amp[j++];
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                state.x[23] = amp[j++];
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                /* Discard every other QMF output */
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                sumeven = 0;
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                sumodd = 0;
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                for (i = 0;  i < 12;  i++)
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                {
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                    sumodd += state.x[2*i]*qmf_coeffs[i];
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                    sumeven += state.x[2*i + 1]*qmf_coeffs[11 - i];
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                }
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                xlow = (sumeven + sumodd) >> 14;
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                xhigh = (sumeven - sumodd) >> 14;
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            }
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        }
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        /* Block 1L, SUBTRA */
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        el = saturate(xlow - state.band[0].s);
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        /* Block 1L, QUANTL */
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        wd = (el >= 0)  ?  el  :  -(el + 1);
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        for (i = 1;  i < 30;  i++)
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        {
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            wd1 = (q6[i]*state.band[0].det) >> 12;
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            if (wd < wd1) {
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                break;
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            }
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        }
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        ilow = (el < 0)  ?  iln[i]  :  ilp[i];
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        /* Block 2L, INVQAL */
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        ril = ilow >> 2;
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        wd2 = qm4[ril];
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        dlow = (state.band[0].det*wd2) >> 15;
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        /* Block 3L, LOGSCL */
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        il4 = rl42[ril];
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        wd = (state.band[0].nb*127) >> 7;
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        state.band[0].nb = wd + wl[il4];
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        if (state.band[0].nb < 0) {
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            state.band[0].nb = 0;
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        } else if (state.band[0].nb > 18432) {
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            state.band[0].nb = 18432;
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        }
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        /* Block 3L, SCALEL */
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        wd1 = (state.band[0].nb >> 6) & 31;
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        wd2 = 8 - (state.band[0].nb >> 11);
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        wd3 = (wd2 < 0)  ?  (ilb[wd1] << -wd2)  :  (ilb[wd1] >> wd2);
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        state.band[0].det = wd3 << 2;
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        block4(0, dlow);
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        if (state.eight_k)
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        {
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            /* Just leave the high bits as zero */
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            code = (0xC0 | ilow) >> (8 - state.bits_per_sample);
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        }
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        else
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        {
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            /* Block 1H, SUBTRA */
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            eh = saturate(xhigh - state.band[1].s);
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            /* Block 1H, QUANTH */
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            wd = (eh >= 0)  ?  eh  :  -(eh + 1);
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            wd1 = (564*state.band[1].det) >> 12;
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            mih = (wd >= wd1)  ?  2  :  1;
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            ihigh = (eh < 0)  ?  ihn[mih]  :  ihp[mih];
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            /* Block 2H, INVQAH */
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            wd2 = qm2[ihigh];
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            dhigh = (state.band[1].det*wd2) >> 15;
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            /* Block 3H, LOGSCH */
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            ih2 = rh2[ihigh];
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            wd = (state.band[1].nb*127) >> 7;
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            state.band[1].nb = wd + wh[ih2];
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            if (state.band[1].nb < 0) {
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                state.band[1].nb = 0;
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            } else if (state.band[1].nb > 22528) {
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                state.band[1].nb = 22528;
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            }
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            /* Block 3H, SCALEH */
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            wd1 = (state.band[1].nb >> 6) & 31;
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            wd2 = 10 - (state.band[1].nb >> 11);
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            wd3 = (wd2 < 0)  ?  (ilb[wd1] << -wd2)  :  (ilb[wd1] >> wd2);
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            state.band[1].det = wd3 << 2;
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            block4(1, dhigh);
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            code = ((ihigh << 6) | ilow) >> (8 - state.bits_per_sample);
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        }
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        if (state.packed)
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        {
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            /* Pack the code bits */
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            state.out_buffer |= (code << state.out_bits);
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            state.out_bits += state.bits_per_sample;
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            if (state.out_bits >= 8)
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            {
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                g722_data[g722_bytes++] = (uint8_t) (state.out_buffer & 0xFF);
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                state.out_bits -= 8;
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                state.out_buffer >>= 8;
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            }
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        }
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        else
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        {
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            g722_data[g722_bytes++] = (uint8_t) code;
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        }
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    }
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    return g722_bytes;
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}
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