2022-06-07 03:22:18 +02:00
										 
									 
								 
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								#include "Util.h"
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								#include "Golay24.h"
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											2022-07-04 23:03:07 +02:00
										 
									 
								 
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								namespace modemm17 {
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											2022-06-07 03:22:18 +02:00
										 
									 
								 
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								std::array<Golay24::SyndromeMapEntry, Golay24::LUT_SIZE> Golay24::LUT = Golay24::make_lut();
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								Golay24::Golay24()
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								{}
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								uint32_t Golay24::syndrome(uint32_t codeword)
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								{
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								    codeword &= 0xffffffl;
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								    for (size_t i = 0; i != 12; ++i)
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								    {
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								        if (codeword & 1) {
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								            codeword ^= POLY;
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								        }
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								        codeword >>= 1;
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								    }
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								    return (codeword << 12);
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								}
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								bool Golay24::parity(uint32_t codeword)
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								{
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								    return popcount(codeword) & 1;
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								}
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								Golay24::SyndromeMapEntry Golay24::makeSyndromeMapEntry(uint64_t val)
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								{
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								    return SyndromeMapEntry{uint32_t(val >> 16), uint16_t(val & 0xFFFF)};
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								}
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								uint64_t Golay24::makeSME(uint64_t syndrome, uint32_t bits)
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								{
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								    return (syndrome << 24) | (bits & 0xFFFFFF);
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								}
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								uint32_t Golay24::encode23(uint16_t data)
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								{
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								    // data &= 0xfff;
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								    uint32_t codeword = data;
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								    for (size_t i = 0; i != 12; ++i)
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								    {
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								        if (codeword & 1) {
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								            codeword ^= POLY;
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								        }
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								        codeword >>= 1;
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								    }
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								    return codeword | (data << 11);
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								}
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								uint32_t Golay24::encode24(uint16_t data)
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								{
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								    auto codeword = encode23(data);
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								    return ((codeword << 1) | parity(codeword));
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								}
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								bool Golay24::decode(uint32_t input, uint32_t& output)
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								{
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								    auto syndrm = syndrome(input >> 1);
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								    auto it = std::lower_bound(
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								        LUT.begin(),
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								        LUT.end(),
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								        syndrm,
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								        [](const SyndromeMapEntry& sme, uint32_t val){
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								            return (sme.a >> 8) < val;
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								        }
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								    );
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								    if ((it->a >> 8) == syndrm)
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								    {
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								        // Build the correction from the compressed entry.
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								        auto correction = ((((it->a & 0xFF) << 16) | it->b) << 1);
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								        // Apply the correction to the input.
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								        output = input ^ correction;
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								        // Only test parity for 3-bit errors.
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								        return popcount(syndrm) < 3 || !parity(output);
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								    }
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								    return false;
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								}
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								std::array<Golay24::SyndromeMapEntry, Golay24::LUT_SIZE> Golay24::make_lut()
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								{
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								    constexpr size_t VECLEN=23;
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								    Golay24_detail::array<uint64_t, LUT_SIZE> result{};
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								    size_t index = 0;
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								    result[index++] = makeSME(syndrome(0), 0);
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								    for (size_t i = 0; i != VECLEN; ++i)
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								    {
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								        auto v = (1 << i);
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								        result[index++] = makeSME(syndrome(v), v);
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								    }
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								    for (size_t i = 0; i != VECLEN - 1; ++i)
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								    {
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								        for (size_t j = i + 1; j != VECLEN; ++j)
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								        {
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								            auto v = (1 << i) | (1 << j);
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								            result[index++] = makeSME(syndrome(v), v);
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								        }
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								    }
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								    for (size_t i = 0; i != VECLEN - 2; ++i)
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								    {
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								        for (size_t j = i + 1; j != VECLEN - 1; ++j)
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								        {
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								            for (size_t k = j + 1; k != VECLEN; ++k)
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								            {
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								                auto v = (1 << i) | (1 << j) | (1 << k);
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								                result[index++] = makeSME(syndrome(v), v);
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								            }
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								        }
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								    }
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								    result = Golay24_detail::sort(result);
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								    std::array<SyndromeMapEntry, LUT_SIZE> tmp;
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								    for (size_t i = 0; i != LUT_SIZE; ++i)
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								    {
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								        tmp[i] = makeSyndromeMapEntry(result[i]);
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								    }
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								    return tmp;
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								}
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								} // modemm17
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