552 lines
17 KiB
C++
552 lines
17 KiB
C++
#pragma once
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#include <cstring>
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#include "../common/adc_utils.h"
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// #include "adc_netmsg.h"
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namespace adc
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{
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/* ABSTRACT DEVICE DEFAULT APPLICATION-LEVEL NETWORK PROTOCOL DEFINITIONS */
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namespace constants
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{
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static constexpr char ADC_DEFAULT_KEY_VALUE_DELIMITER1[] = " ";
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static constexpr char ADC_DEFAULT_KEY_PARAM_DELIMITER[] = " ";
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static constexpr char ADC_DEFAULT_PARAM_PARAM_DELIMITER[] = " ";
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static constexpr char ADC_DEFAULT_VALUE_DELIMITER[] = " ";
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static constexpr char ADC_DEFAULT_COMPOSITE_PARAM_DELIMITER[] = ",";
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static constexpr char ADC_DEFAULT_COMPOSITE_VALUE_DELIMITER[] = ",";
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} // namespace constants
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template <traits::adc_char_range ByteSeqT,
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const char KEY_VALUE_DELIM[] = constants::ADC_DEFAULT_KEY_VALUE_DELIMITER1,
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const char VALUE_DELIM[] = constants::ADC_DEFAULT_VALUE_DELIMITER,
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const char COMPOSITE_VALUE_DELIM[] = constants::ADC_DEFAULT_COMPOSITE_VALUE_DELIMITER>
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class AdcKeyValueMessage
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{
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public:
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static constexpr size_t keyValueDelimiterSize = utils::AdcCharArrSize(KEY_VALUE_DELIM);
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static constexpr std::span keyValueDelimiter{KEY_VALUE_DELIM, keyValueDelimiterSize};
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static constexpr size_t valueDelimiterSize = utils::AdcCharArrSize(VALUE_DELIM);
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static constexpr std::span valueDelimiter{VALUE_DELIM, valueDelimiterSize};
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static constexpr size_t compValueDelimiterSize = utils::AdcCharArrSize(COMPOSITE_VALUE_DELIM);
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static constexpr std::span compValueDelimiter{COMPOSITE_VALUE_DELIM, compValueDelimiterSize};
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static_assert(keyValueDelimiterSize && valueDelimiterSize && compValueDelimiterSize,
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"KEY-VALUE, VALUE-PARTS AND COMPOSITE-VALUE DELIMITERS MUST NOT BE AN EMPTY ARRAY!!!");
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AdcKeyValueMessage(ByteSeqT& byte_seq) : _byteSequence(byte_seq) {}
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virtual ~AdcKeyValueMessage() = default;
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bool empty() const
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{
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return std::ranges::size(_byteSequence) == 0;
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}
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template <typename T>
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requires(traits::adc_char_view<T> && std::ranges::contiguous_range<ByteSeqT>) ||
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traits::adc_output_char_range<T>
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auto key() const
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{
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if constexpr (traits::adc_char_view<T> && std::ranges::contiguous_range<ByteSeqT>) {
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auto bs = utils::AdcTrimSpacesView<T>(_byteSequence, utils::AdcTrimType::TRIM_LEFT);
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auto found = std::ranges::search(bs, keyValueDelimiter);
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if (found.empty()) { // no value
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return bs;
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}
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return utils::AdcTrimSpacesView<T>(std::span<const char>(bs.begin(), found.begin()),
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utils::AdcTrimType::TRIM_RIGHT);
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} else {
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T res;
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auto bs = _byteSequence | std::views::drop_while([](const auto& ch) { return ch = ' '; });
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auto found = std::ranges::search(bs, keyValueDelimiter);
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std::ranges::copy(bs.begin(), found.begin(), std::back_inserter(res));
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// if (found.empty()) { // no value
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// std::ranges::copy(bs, std::back_inserter(res));
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// } else {
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// std::ranges::copy(bs.begin(), found.begin(), std::back_inserter(res));
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// }
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return res;
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}
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}
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auto key() const
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{
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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return key<std::string_view>();
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} else {
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return key<std::string>();
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}
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}
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template <typename T>
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requires(traits::adc_char_view<T> && std::ranges::contiguous_range<ByteSeqT>) ||
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traits::adc_output_char_range<T>
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auto value() const
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{
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if constexpr (traits::adc_char_view<T> && std::ranges::contiguous_range<ByteSeqT>) {
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auto bs = utils::AdcTrimSpacesView<T>(_byteSequence, utils::AdcTrimType::TRIM_LEFT);
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auto found = std::ranges::search(bs, keyValueDelimiter);
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return T(found.end(), bs.end());
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} else {
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T res;
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auto bs = _byteSequence | std::views::drop_while([](const auto& ch) { return ch = ' '; });
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auto found = std::ranges::search(bs, keyValueDelimiter);
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if (!found.empty()) {
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std::ranges::copy(found.end(), bs.end(), std::back_inserter(res));
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}
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return res;
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}
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}
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auto value() const
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{
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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return value<std::string_view>();
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} else {
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return value<std::string>();
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}
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}
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template <typename T>
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requires(std::ranges::contiguous_range<ByteSeqT> && traits::adc_char_view<std::ranges::range_value_t<T>>) ||
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traits::adc_range_of_output_char_range<T>
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auto valueParts(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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auto val = value<std::ranges::range_value_t<T>>();
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return utils::AdcSplitCharRange<T>(val, valueDelimiter, start, N);
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}
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auto valueParts(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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return valueParts<std::vector<std::string_view>>(start, N);
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} else {
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return valueParts<std::vector<std::string>>(start, N);
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}
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}
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template <typename T>
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requires traits::adc_output_char_range<T> || traits::adc_char_view<T>
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auto joinValueParts(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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T res;
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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auto pp = valueParts<std::vector<std::span<const char>>>(start, N);
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if (pp.size()) {
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res = T{pp.front().begin(), pp.back().end()};
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}
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} else {
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utils::AdcJoinRange(valueParts<std::vector<std::vector<const char>>>(start, N), valueDelimiter, res);
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}
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return res;
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}
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auto joinValueParts(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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return joinValueParts<std::string_view>(start, N);
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} else {
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return joinValueParts<std::string>(start, N);
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}
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}
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// template <typename KeyT, typename ValueT>
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// requires traits::adc_output_char_range<ByteSeqT>
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// AdcKeyValueMessage& setKeyValue(KeyT&& key, ValueT&& value)
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// {
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// if (std::ranges::size(_byteSequence)) {
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// _byteSequence = ByteSeqT();
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// }
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// std::ranges::copy(
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// utils::AdcDefaultValueConverter<VALUE_DELIM>::template serialize<ByteSeqT>(std::forward<KeyT>(key)),
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// std::back_inserter(_byteSequence));
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// std::ranges::copy(keyValueDelimiter, std::back_inserter(_byteSequence));
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// std::ranges::copy(
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// utils::AdcDefaultValueConverter<VALUE_DELIM>::template serialize<ByteSeqT>(std::forward<ValueT>(value)),
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// std::back_inserter(_byteSequence));
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// return *this;
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// }
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// template <typename ValueT>
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// AdcKeyValueMessage& setValue(ValueT&& value)
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// requires traits::adc_output_char_range<ByteSeqT>
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// {
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// std::vector<char> kw;
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// std::ranges::copy(key<std::span<const char>>(), std::back_inserter(kw));
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// return setKeyValue(kw, std::forward<ValueT>(value));
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// }
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template <typename KeyT, typename... ValuePartTs>
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requires traits::adc_output_char_range<ByteSeqT>
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AdcKeyValueMessage& setKeyValue(KeyT&& key, ValuePartTs&&... values)
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{
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if (std::ranges::size(_byteSequence)) {
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_byteSequence = ByteSeqT();
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}
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std::ranges::copy(utils::AdcDefaultValueConverter<COMPOSITE_VALUE_DELIM>::template serialize<ByteSeqT>(
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std::forward<KeyT>(key)),
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std::back_inserter(_byteSequence));
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if constexpr (sizeof...(ValuePartTs)) {
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std::ranges::copy(keyValueDelimiter, std::back_inserter(_byteSequence));
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setValueHelper(std::forward<ValuePartTs>(values)...);
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}
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return *this;
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}
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template <typename... ValuePartTs>
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requires traits::adc_output_char_range<ByteSeqT>
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AdcKeyValueMessage& setValue(ValuePartTs&&... values)
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{
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std::vector<char> kw;
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std::ranges::copy(key<std::span<const char>>(), std::back_inserter(kw));
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return setValue(kw, std::forward<ValuePartTs>(values)...);
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}
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protected:
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ByteSeqT& _byteSequence;
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template <typename ValuePartT, typename... ValuePartTs>
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void setValueHelper(ValuePartT&& value, ValuePartTs&&... values)
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{
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std::ranges::copy(utils::AdcDefaultValueConverter<COMPOSITE_VALUE_DELIM>::template serialize<ByteSeqT>(
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std::forward<ValuePartT>(value)),
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std::back_inserter(_byteSequence));
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if constexpr (sizeof...(ValuePartTs)) {
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std::ranges::copy(valueDelimiter, std::back_inserter(_byteSequence));
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setValueHelper(std::forward<ValuePartTs>(values)...);
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}
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}
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};
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template <traits::adc_char_range ByteSeqT,
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const char* KEY_PARAM_DELIM = constants::ADC_DEFAULT_KEY_PARAM_DELIMITER,
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const char* PARAM_PARAM_DELIM = constants::ADC_DEFAULT_PARAM_PARAM_DELIMITER,
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const char* COMPOSITE_PARAM_DELIM = constants::ADC_DEFAULT_COMPOSITE_PARAM_DELIMITER>
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class AdcDeviceNetMessage : public AdcKeyValueMessage<ByteSeqT, KEY_PARAM_DELIM, COMPOSITE_PARAM_DELIM>
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{
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using base_t = AdcKeyValueMessage<ByteSeqT, KEY_PARAM_DELIM, COMPOSITE_PARAM_DELIM>;
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public:
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static constexpr std::span keyParamDelimiter{KEY_PARAM_DELIM, utils::AdcCharArrSize(KEY_PARAM_DELIM)};
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static constexpr std::span paramParamDelimiter{PARAM_PARAM_DELIM, utils::AdcCharArrSize(PARAM_PARAM_DELIM)};
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static constexpr std::span compParamDelimiter{COMPOSITE_PARAM_DELIM, utils::AdcCharArrSize(COMPOSITE_PARAM_DELIM)};
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AdcDeviceNetMessage(ByteSeqT& byte_seq) : base_t(byte_seq) {}
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virtual ~AdcDeviceNetMessage() = default;
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template <typename T>
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requires(std::ranges::contiguous_range<ByteSeqT> && traits::adc_char_view<std::ranges::range_value_t<T>>) ||
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traits::adc_range_of_output_char_range<T>
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auto params(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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auto val = base_t::template value<std::ranges::range_value_t<T>>();
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return utils::AdcSplitCharRange<T>(val, paramParamDelimiter, start, N);
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}
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auto params(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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return params<std::vector<std::string_view>>(start, N);
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} else {
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return params<std::vector<std::string>>(start, N);
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}
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}
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template <typename T>
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requires traits::adc_output_char_range<T> || traits::adc_char_view<T>
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auto joinParams(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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T res;
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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auto pp = params<std::vector<std::span<const char>>>(start, N);
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if (pp.size()) {
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res = T{pp.front().begin(), pp.back().end()};
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}
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} else {
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utils::AdcJoinRange(params<std::vector<std::vector<const char>>>(start, N), paramParamDelimiter, res);
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}
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return res;
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}
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auto joinParams(size_t start = 0, size_t N = std::numeric_limits<size_t>::max()) const
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{
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if constexpr (std::ranges::contiguous_range<ByteSeqT>) {
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return joinParams<std::string_view>(start, N);
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} else {
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return joinParams<std::string>(start, N);
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}
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}
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template <traits::adc_input_char_range KeyT, typename... ParamTs>
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requires traits::adc_output_char_range<ByteSeqT>
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AdcDeviceNetMessage& setKeyParams(KeyT&& key, ParamTs&&... params)
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{
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this->setKeyValue(std::forward<KeyT>(key), std::string_view());
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if constexpr (sizeof...(ParamTs)) {
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setParamsHelper(std::forward<ParamTs>(params)...);
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}
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return *this;
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}
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protected:
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template <typename ParamT, typename... ParamTs>
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void setParamsHelper(ParamT&& param, ParamTs&&... params)
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{
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std::ranges::copy(utils::AdcDefaultValueConverter<COMPOSITE_PARAM_DELIM>::template serialize<ByteSeqT>(
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std::forward<ParamT>(param)),
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std::back_inserter(this->_byteSequence));
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if constexpr (sizeof...(ParamTs)) {
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std::ranges::copy(paramParamDelimiter, std::back_inserter(this->_byteSequence));
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setParamsHelper(std::forward<ParamTs>(params)...);
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}
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}
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};
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template <traits::adc_char_range ByteSeqT,
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const char KEY_VALUE_DELIM[] = constants::ADC_DEFAULT_KEY_VALUE_DELIMITER1,
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const char VALUE_DELIM[] = constants::ADC_DEFAULT_VALUE_DELIMITER,
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const char COMPOSITE_VALUE_DELIM[] = constants::ADC_DEFAULT_COMPOSITE_VALUE_DELIMITER>
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class AdcDeviceProtoMessage
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: protected AdcKeyValueMessage<ByteSeqT, KEY_VALUE_DELIM, VALUE_DELIM, COMPOSITE_VALUE_DELIM>
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{
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using base_t = AdcKeyValueMessage<ByteSeqT, KEY_VALUE_DELIM, VALUE_DELIM, COMPOSITE_VALUE_DELIM>;
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public:
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static constexpr std::string_view ACK_KEY{"ACK"};
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static constexpr std::string_view SET_KEY{"SET"};
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static constexpr std::string_view GET_KEY{"GET"};
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static constexpr std::string_view CMD_KEY{"CMD"};
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static constexpr std::string_view ERR_KEY{"ERR"};
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static constexpr std::string_view HELLO_KEY{"HELLO"};
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static constexpr std::string_view DEVICE_KEY{"DEVICE"};
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static constexpr std::string_view NAMES_KEY{"NAMES"};
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static constexpr std::array VALID_KEY{ACK_KEY, SET_KEY, GET_KEY, CMD_KEY,
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ERR_KEY, HELLO_KEY, DEVICE_KEY, NAMES_KEY};
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typedef std::array<size_t, VALID_KEY.size()> keyword_hash_array_t;
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enum KEY_IDX : size_t {
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ACK_KEY_IDX,
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SET_KEY_IDX,
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GET_KEY_IDX,
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CMD_KEY_IDX,
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ERR_KEY_IDX,
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HELLO_KEY_IDX,
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DEVICE_KEY_IDX,
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NAMES_KEY_IDX
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};
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private: // include here to allow clang compilation
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size_t _keyHash = 0;
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template <size_t... I>
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static constexpr auto computeKeywordHashesImpl(std::index_sequence<I...>)
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{
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return keyword_hash_array_t{utils::AdcFNV1aHash(VALID_KEY[I])...};
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}
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template <typename Indices = std::make_index_sequence<VALID_KEY.size()>>
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static constexpr auto computeKeywordHashes()
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{
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return computeKeywordHashesImpl(Indices{});
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}
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static constexpr keyword_hash_array_t KEY_HASHES = computeKeywordHashes();
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auto keyHash()
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{
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return _keyHash = utils::AdcFNV1aHash(key());
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}
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bool isKey(size_t idx) const
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{
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return _keyHash == KEY_HASHES[idx];
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}
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public:
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AdcDeviceProtoMessage(ByteSeqT& byte_seq) : base_t(byte_seq)
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{
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keyHash();
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}
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bool isValid() const
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{
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return std::ranges::any_of(KEY_HASHES, [this](size_t h) { return _keyHash == h; });
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}
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bool isACK() const
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{
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return isKey(ACK_KEY_IDX);
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}
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bool isSET() const
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{
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return isKey(SET_KEY_IDX);
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}
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bool isGET() const
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{
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return isKey(GET_KEY_IDX);
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}
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bool isCMD() const
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{
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return isKey(CMD_KEY_IDX);
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}
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bool isERR() const
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{
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return isKey(ERR_KEY_IDX);
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}
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bool isHELLO() const
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{
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return isKey(HELLO_KEY_IDX);
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}
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bool isDEVICE() const
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{
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return isKey(DEVICE_KEY_IDX);
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}
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bool isNAMES() const
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{
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return isKey(NAMES_KEY_IDX);
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}
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template <typename T>
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requires(traits::adc_char_view<T> && std::ranges::contiguous_range<ByteSeqT>) ||
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traits::adc_output_char_range<T>
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auto key() const
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{
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return base_t::template key<T>();
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}
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auto key() const
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{
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return base_t::key();
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}
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void ack()
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{
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base_t::setKeyValue(ACK_KEY);
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keyHash();
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}
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template <traits::adc_input_char_range AttrNameT, typename ValueT, typename... ValueTs>
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void set(AttrNameT&& attr_name, ValueT&& value, ValueTs&&... values)
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|
{
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|
base_t::setKeyValue(SET_KEY, std::forward<AttrNameT>(attr_name), std::forward<ValueT>(value),
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|
std::forward<ValueTs>(values)...);
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|
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|
keyHash();
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|
}
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|
|
|
template <traits::adc_input_char_range AttrNameT>
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|
void get(AttrNameT&& attr_name)
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|
{
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|
base_t::setKeyValue(GET_KEY, std::forward<AttrNameT>(attr_name));
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|
|
|
keyHash();
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|
}
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|
|
|
template <traits::adc_input_char_range CmdNameT>
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|
void cmd(CmdNameT&& cmd_name)
|
|
{
|
|
base_t::setKeyValue(CMD_KEY, std::forward<CmdNameT>(cmd_name));
|
|
|
|
keyHash();
|
|
}
|
|
|
|
void err(const std::error_code& ec)
|
|
{
|
|
base_t::setKeyValue(ERR_KEY, ec.value(), ec.category(), ec.message());
|
|
|
|
keyHash();
|
|
}
|
|
|
|
template <traits::adc_input_char_range SenderNameT, typename... ParamTs>
|
|
void hello(SenderNameT&& name, ParamTs&&... params)
|
|
{
|
|
base_t::setKeyValue(HELLO_KEY, std::forward<SenderNameT>(name), std::forward<ParamTs>(params)...);
|
|
|
|
keyHash();
|
|
}
|
|
|
|
template <traits::adc_input_char_range DevNameT>
|
|
void device(DevNameT&& dev_name)
|
|
{
|
|
base_t::setKeyValue(DEVICE_KEY, std::forward<DevNameT>(dev_name));
|
|
|
|
keyHash();
|
|
}
|
|
|
|
void names()
|
|
{
|
|
base_t::setKeyValue(NAMES_KEY);
|
|
|
|
keyHash();
|
|
}
|
|
};
|
|
} // namespace adc
|