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/* -*- c++ -*- */
/*
 * Copyright 2004,2010,2012,2018 Free Software Foundation, Inc.
 *
 * This file is part of GNU Radio
 *
 * SPDX-License-Identifier: GPL-3.0-or-later
 *
 */

#ifdef HAVE_CONFIG_H
#include "config.h"
#endif

#include "pccc_encoder_impl.h"
#include <gnuradio/io_signature.h>
#include <iostream>

namespace gr {
namespace trellis {

template <class IN_T, class OUT_T>
typename pccc_encoder<IN_T, OUT_T>::sptr
pccc_encoder<IN_T, OUT_T>::make(const fsm& FSM1,
                                int ST1,
                                const fsm& FSM2,
                                int ST2,
                                const interleaver& INTERLEAVER,
                                int blocklength)
{
    return gnuradio::make_block_sptr<pccc_encoder_impl<IN_T, OUT_T>>(
        FSM1, ST1, FSM2, ST2, INTERLEAVER, blocklength);
}

template <class IN_T, class OUT_T>
pccc_encoder_impl<IN_T, OUT_T>::pccc_encoder_impl(const fsm& FSM1,
                                                  int ST1,
                                                  const fsm& FSM2,
                                                  int ST2,
                                                  const interleaver& INTERLEAVER,
                                                  int blocklength)
    : sync_block("pccc_encoder<IN_T,OUT_T>",
                 io_signature::make(1, 1, sizeof(IN_T)),
                 io_signature::make(1, 1, sizeof(OUT_T))),
      d_FSM1(FSM1),
      d_ST1(ST1),
      d_FSM2(FSM2),
      d_ST2(ST2),
      d_INTERLEAVER(INTERLEAVER),
      d_blocklength(blocklength)
{
    assert(d_FSM1.I() == d_FSM2.I());
    this->set_output_multiple(d_blocklength);
    d_buffer.resize(d_blocklength);
}

template <class IN_T, class OUT_T>
pccc_encoder_impl<IN_T, OUT_T>::~pccc_encoder_impl()
{
}

template <class IN_T, class OUT_T>
int pccc_encoder_impl<IN_T, OUT_T>::work(int noutput_items,
                                         gr_vector_const_void_star& input_items,
                                         gr_vector_void_star& output_items)
{
    for (int b = 0; b < noutput_items / d_blocklength; b++) {
        const IN_T* in = (const IN_T*)input_items[0] + b * d_blocklength;
        OUT_T* out = (OUT_T*)output_items[0] + b * d_blocklength;

        int ST1_tmp = d_ST1;
        int ST2_tmp = d_ST2;
        for (int i = 0; i < d_blocklength; i++) {
            int k = d_INTERLEAVER.INTER()[i];
            int o1 = d_FSM1.OS()[ST1_tmp * d_FSM1.I() + in[i]];
            ST1_tmp = (int)d_FSM1.NS()[ST1_tmp * d_FSM1.I() + in[i]];
            int o2 = d_FSM2.OS()[ST2_tmp * d_FSM2.I() + in[k]];
            ST2_tmp = (int)d_FSM2.NS()[ST2_tmp * d_FSM2.I() + in[k]];
            out[i] = (OUT_T)(o1 * d_FSM2.O() + o2);
        }
    }
    return noutput_items;
}
template class pccc_encoder<std::uint8_t, std::uint8_t>;
template class pccc_encoder<std::uint8_t, std::int16_t>;
template class pccc_encoder<std::uint8_t, std::int32_t>;
template class pccc_encoder<std::int16_t, std::int16_t>;
template class pccc_encoder<std::int16_t, std::int32_t>;
template class pccc_encoder<std::int32_t, std::int32_t>;

} /* namespace trellis */
} /* namespace gr */