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/*****************************************************************************/
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/*
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* sm_afsk2400_8.c -- soundcard radio modem driver, 2400 baud AFSK modem
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*
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* Copyright (C) 1996 Thomas Sailer (sailer@ife.ee.ethz.ch)
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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; either version 2 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 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, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*
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* Please note that the GPL allows you to use the driver, NOT the radio.
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* In order to use the radio, you need a license from the communications
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* authority of your country.
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*
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*/
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/*
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* This driver is intended to be compatible with TCM3105 modems
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* overclocked to 8MHz. The mark and space frequencies therefore
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* lie at 3970 and 2165 Hz.
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* Note that I do _not_ recommend the building of such links, I provide
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* this only for the users who live in the coverage area of such
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* a "legacy" link.
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*/
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#include "sm.h"
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#include "sm_tbl_afsk2400_8.h"
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/* --------------------------------------------------------------------- */
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struct demod_state_afsk24 {
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unsigned int shreg;
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unsigned int bit_pll;
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unsigned char last_sample;
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unsigned int dcd_shreg;
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int dcd_sum0, dcd_sum1, dcd_sum2;
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unsigned int dcd_time;
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unsigned char last_rxbit;
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};
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struct mod_state_afsk24 {
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unsigned int shreg;
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unsigned char tx_bit;
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unsigned int bit_pll;
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unsigned int tx_seq;
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unsigned int phinc;
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};
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/* --------------------------------------------------------------------- */
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static const int dds_inc[2] = { AFSK24_TX_FREQ_LO*0x10000/AFSK24_SAMPLERATE,
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AFSK24_TX_FREQ_HI*0x10000/AFSK24_SAMPLERATE };
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static void modulator_2400_u8(struct sm_state *sm, unsigned char *buf, unsigned int buflen)
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{
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struct mod_state_afsk24 *st = (struct mod_state_afsk24 *)(&sm->m);
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for (; buflen > 0; buflen--, buf++) {
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if (st->tx_seq < 0x5555) {
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if (st->shreg <= 1)
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st->shreg = hdlcdrv_getbits(&sm->hdrv) | 0x10000;
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st->tx_bit = (st->tx_bit ^ (!(st->shreg & 1))) & 1;
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st->shreg >>= 1;
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st->phinc = dds_inc[st->tx_bit & 1];
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}
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st->tx_seq += 0x5555;
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st->tx_seq &= 0xffff;
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*buf = OFFSCOS(st->bit_pll);
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st->bit_pll += st->phinc;
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}
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}
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/* --------------------------------------------------------------------- */
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static void modulator_2400_s16(struct sm_state *sm, short *buf, unsigned int buflen)
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{
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struct mod_state_afsk24 *st = (struct mod_state_afsk24 *)(&sm->m);
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for (; buflen > 0; buflen--, buf++) {
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if (st->tx_seq < 0x5555) {
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if (st->shreg <= 1)
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st->shreg = hdlcdrv_getbits(&sm->hdrv) | 0x10000;
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st->tx_bit = (st->tx_bit ^ (!(st->shreg & 1))) & 1;
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st->shreg >>= 1;
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st->phinc = dds_inc[st->tx_bit & 1];
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}
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st->tx_seq += 0x5555;
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st->tx_seq &= 0xffff;
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*buf = COS(st->bit_pll);
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st->bit_pll += st->phinc;
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}
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}
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/* --------------------------------------------------------------------- */
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extern __inline__ int convolution14_u8(const unsigned char *st, const int *coeff, int csum)
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{
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int sum = -0x80 * csum;
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sum += (st[0] * coeff[0]);
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sum += (st[-1] * coeff[1]);
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sum += (st[-2] * coeff[2]);
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sum += (st[-3] * coeff[3]);
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sum += (st[-4] * coeff[4]);
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sum += (st[-5] * coeff[5]);
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sum += (st[-6] * coeff[6]);
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sum += (st[-7] * coeff[7]);
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sum += (st[-8] * coeff[8]);
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sum += (st[-9] * coeff[9]);
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sum += (st[-10] * coeff[10]);
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sum += (st[-11] * coeff[11]);
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sum += (st[-12] * coeff[12]);
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sum += (st[-13] * coeff[13]);
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sum >>= 7;
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return sum * sum;
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}
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extern __inline__ int convolution14_s16(const short *st, const int *coeff, int csum)
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{
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int sum = 0;
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sum += (st[0] * coeff[0]);
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sum += (st[-1] * coeff[1]);
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sum += (st[-2] * coeff[2]);
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sum += (st[-3] * coeff[3]);
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sum += (st[-4] * coeff[4]);
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sum += (st[-5] * coeff[5]);
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sum += (st[-6] * coeff[6]);
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sum += (st[-7] * coeff[7]);
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sum += (st[-8] * coeff[8]);
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sum += (st[-9] * coeff[9]);
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sum += (st[-10] * coeff[10]);
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sum += (st[-11] * coeff[11]);
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sum += (st[-12] * coeff[12]);
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sum += (st[-13] * coeff[13]);
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sum >>= 15;
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return sum * sum;
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}
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extern __inline__ int do_filter_2400_u8(const unsigned char *buf)
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{
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int sum = convolution14_u8(buf, afsk24_tx_lo_i, SUM_AFSK24_TX_LO_I);
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sum += convolution14_u8(buf, afsk24_tx_lo_q, SUM_AFSK24_TX_LO_Q);
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sum -= convolution14_u8(buf, afsk24_tx_hi_i, SUM_AFSK24_TX_HI_I);
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sum -= convolution14_u8(buf, afsk24_tx_hi_q, SUM_AFSK24_TX_HI_Q);
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return sum;
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}
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extern __inline__ int do_filter_2400_s16(const short *buf)
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{
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int sum = convolution14_s16(buf, afsk24_tx_lo_i, SUM_AFSK24_TX_LO_I);
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sum += convolution14_s16(buf, afsk24_tx_lo_q, SUM_AFSK24_TX_LO_Q);
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sum -= convolution14_s16(buf, afsk24_tx_hi_i, SUM_AFSK24_TX_HI_I);
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sum -= convolution14_s16(buf, afsk24_tx_hi_q, SUM_AFSK24_TX_HI_Q);
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return sum;
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}
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/* --------------------------------------------------------------------- */
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static void demodulator_2400_u8(struct sm_state *sm, const unsigned char *buf, unsigned int buflen)
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{
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struct demod_state_afsk24 *st = (struct demod_state_afsk24 *)(&sm->d);
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int j;
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int sum;
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unsigned char newsample;
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for (; buflen > 0; buflen--, buf++) {
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sum = do_filter_2400_u8(buf);
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st->dcd_shreg <<= 1;
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st->bit_pll += AFSK24_BITPLL_INC;
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newsample = (sum > 0);
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if (st->last_sample ^ newsample) {
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st->last_sample = newsample;
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st->dcd_shreg |= 1;
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if (st->bit_pll < (0x8000+AFSK24_BITPLL_INC/2))
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st->bit_pll += AFSK24_BITPLL_INC/2;
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else
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st->bit_pll -= AFSK24_BITPLL_INC/2;
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j = /* 2 * */ hweight8(st->dcd_shreg & 0x1c)
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- hweight16(st->dcd_shreg & 0x1e0);
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st->dcd_sum0 += j;
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}
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hdlcdrv_channelbit(&sm->hdrv, st->last_sample);
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if ((--st->dcd_time) <= 0) {
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hdlcdrv_setdcd(&sm->hdrv, (st->dcd_sum0 +
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st->dcd_sum1 +
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st->dcd_sum2) < 0);
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st->dcd_sum2 = st->dcd_sum1;
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st->dcd_sum1 = st->dcd_sum0;
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st->dcd_sum0 = 2; /* slight bias */
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st->dcd_time = 120;
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}
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if (st->bit_pll >= 0x10000) {
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st->bit_pll &= 0xffff;
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st->shreg >>= 1;
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st->shreg |= (!(st->last_rxbit ^
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st->last_sample)) << 16;
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st->last_rxbit = st->last_sample;
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diag_trigger(sm);
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if (st->shreg & 1) {
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hdlcdrv_putbits(&sm->hdrv, st->shreg >> 1);
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st->shreg = 0x10000;
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}
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}
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diag_add(sm, (((int)*buf)-0x80) << 8, sum);
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}
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}
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/* --------------------------------------------------------------------- */
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static void demodulator_2400_s16(struct sm_state *sm, const short *buf, unsigned int buflen)
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{
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struct demod_state_afsk24 *st = (struct demod_state_afsk24 *)(&sm->d);
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int j;
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int sum;
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unsigned char newsample;
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for (; buflen > 0; buflen--, buf++) {
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sum = do_filter_2400_s16(buf);
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st->dcd_shreg <<= 1;
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st->bit_pll += AFSK24_BITPLL_INC;
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newsample = (sum > 0);
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if (st->last_sample ^ newsample) {
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st->last_sample = newsample;
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st->dcd_shreg |= 1;
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if (st->bit_pll < (0x8000+AFSK24_BITPLL_INC/2))
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st->bit_pll += AFSK24_BITPLL_INC/2;
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else
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st->bit_pll -= AFSK24_BITPLL_INC/2;
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j = /* 2 * */ hweight8(st->dcd_shreg & 0x1c)
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- hweight16(st->dcd_shreg & 0x1e0);
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st->dcd_sum0 += j;
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}
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hdlcdrv_channelbit(&sm->hdrv, st->last_sample);
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if ((--st->dcd_time) <= 0) {
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hdlcdrv_setdcd(&sm->hdrv, (st->dcd_sum0 +
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st->dcd_sum1 +
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st->dcd_sum2) < 0);
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st->dcd_sum2 = st->dcd_sum1;
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st->dcd_sum1 = st->dcd_sum0;
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st->dcd_sum0 = 2; /* slight bias */
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st->dcd_time = 120;
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}
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if (st->bit_pll >= 0x10000) {
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st->bit_pll &= 0xffff;
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st->shreg >>= 1;
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st->shreg |= (!(st->last_rxbit ^
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st->last_sample)) << 16;
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st->last_rxbit = st->last_sample;
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diag_trigger(sm);
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if (st->shreg & 1) {
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hdlcdrv_putbits(&sm->hdrv, st->shreg >> 1);
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st->shreg = 0x10000;
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}
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}
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diag_add(sm, *buf, sum);
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}
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}
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/* --------------------------------------------------------------------- */
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static void demod_init_2400(struct sm_state *sm)
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{
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struct demod_state_afsk24 *st = (struct demod_state_afsk24 *)(&sm->d);
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st->dcd_time = 120;
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st->dcd_sum0 = 2;
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}
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/* --------------------------------------------------------------------- */
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const struct modem_tx_info sm_afsk2400_8_tx = {
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"afsk2400_8", sizeof(struct mod_state_afsk24), AFSK24_SAMPLERATE, 2400,
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modulator_2400_u8, modulator_2400_s16, NULL
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};
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const struct modem_rx_info sm_afsk2400_8_rx = {
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"afsk2400_8", sizeof(struct demod_state_afsk24),
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AFSK24_SAMPLERATE, 2400, 14, AFSK24_SAMPLERATE/2400,
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demodulator_2400_u8, demodulator_2400_s16, demod_init_2400
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};
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/* --------------------------------------------------------------------- */
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