A bug was discovered in glaze which prevented valid toml output. We have switched to toml++ and reflect-cpp. The interface has remained the same so this should not break any code
134 lines
4.9 KiB
C++
134 lines
4.9 KiB
C++
#ifndef RFL_PARSING_TUPLEPARSER_HPP_
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#define RFL_PARSING_TUPLEPARSER_HPP_
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#include <cstddef>
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#include <map>
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#include <type_traits>
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#include <utility>
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#include "../Result.hpp"
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#include "../Tuple.hpp"
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#include "../always_false.hpp"
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#include "../internal/nth_element_t.hpp"
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#include "../internal/ptr_cast.hpp"
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#include "Parent.hpp"
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#include "TupleReader.hpp"
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#include "call_destructors_on_tuple_where_necessary.hpp"
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#include "schema/Type.hpp"
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#include "schemaful/IsSchemafulReader.hpp"
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#include "schemaful/IsSchemafulWriter.hpp"
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#include "schemaful/tuple_to_named_tuple.hpp"
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#include "schemaful/tuple_to_named_tuple_t.hpp"
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namespace rfl::parsing {
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template <class R, class W, bool _ignore_empty_containers, bool _all_required,
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class ProcessorsType, class TupleType>
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requires AreReaderAndWriter<R, W, TupleType>
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struct TupleParser {
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public:
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using InputArrayType = typename R::InputArrayType;
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using InputVarType = typename R::InputVarType;
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using ParentType = Parent<W>;
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static Result<TupleType> read(const R& _r,
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const InputVarType& _var) noexcept {
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if constexpr (schemaful::IsSchemafulReader<R>) {
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using NamedTupleType = schemaful::tuple_to_named_tuple_t<TupleType>;
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const auto to_tuple = [](auto&& _named_tuple) {
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return [&]<int... _is>(std::integer_sequence<int, _is...>) {
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return TupleType(std::move(rfl::get<_is>(_named_tuple))...);
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}(std::make_integer_sequence<int, NamedTupleType::size()>());
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};
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return Parser<R, W, NamedTupleType, ProcessorsType>::read(_r, _var)
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.transform(to_tuple);
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} else {
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const auto parse = [&](const InputArrayType& _arr) -> Result<TupleType> {
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alignas(TupleType) unsigned char buf[sizeof(TupleType)]{};
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auto ptr = internal::ptr_cast<TupleType*>(&buf);
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const auto tuple_reader =
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TupleReader<R, W, TupleType, _ignore_empty_containers,
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_all_required, ProcessorsType>(&_r, ptr);
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auto err = _r.read_array(tuple_reader, _arr);
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if (err) {
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call_destructors_on_tuple_where_necessary(tuple_reader.num_set(),
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ptr);
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return error(*err);
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}
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err = tuple_reader.handle_missing_fields();
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if (err) {
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call_destructors_on_tuple_where_necessary(tuple_reader.num_set(),
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ptr);
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return error(*err);
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}
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auto res = Result<TupleType>(std::move(*ptr));
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call_destructors_on_tuple_where_necessary(tuple_reader.num_set(), ptr);
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return res;
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};
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return _r.to_array(_var).and_then(parse);
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}
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}
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template <class P>
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static void write(const W& _w, const TupleType& _tup, const P& _parent) {
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if constexpr (schemaful::IsSchemafulWriter<W>) {
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const auto named_tuple = schemaful::tuple_to_named_tuple(_tup);
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Parser<R, W, std::remove_cvref_t<decltype(named_tuple)>,
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ProcessorsType>::write(_w, named_tuple, _parent);
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} else {
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constexpr auto size = rfl::tuple_size_v<TupleType>;
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auto arr = ParentType::add_array(_w, size, _parent);
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const auto new_parent = typename ParentType::Array{&arr};
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to_array(_w, _tup, new_parent, std::make_integer_sequence<int, size>());
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_w.end_array(&arr);
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}
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}
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static schema::Type to_schema(
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std::map<std::string, schema::Type>* _definitions) {
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std::vector<schema::Type> types;
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build_schema(
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_definitions, &types,
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std::make_integer_sequence<int, rfl::tuple_size_v<TupleType>>());
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return schema::Type{schema::Type::Tuple{.types_ = std::move(types)}};
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}
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private:
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template <size_t _i>
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static void add_to_schema(std::map<std::string, schema::Type>* _definitions,
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std::vector<schema::Type>* _types) noexcept {
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using U = std::remove_cvref_t<rfl::tuple_element_t<_i, TupleType>>;
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_types->push_back(Parser<R, W, U, ProcessorsType>::to_schema(_definitions));
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}
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template <int... _is>
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static void build_schema(std::map<std::string, schema::Type>* _definitions,
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std::vector<schema::Type>* _types,
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std::integer_sequence<int, _is...>) noexcept {
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(add_to_schema<_is>(_definitions, _types), ...);
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}
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template <int _i, class P>
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static void add_to_array(const W& _w, const TupleType& _tup,
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const P& _parent) {
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using NewFieldType =
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std::remove_cvref_t<rfl::tuple_element_t<_i, TupleType>>;
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Parser<R, W, NewFieldType, ProcessorsType>::write(_w, rfl::get<_i>(_tup),
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_parent);
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}
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template <int... _is, class P>
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static void to_array(const W& _w, const TupleType& _tup, const P& _parent,
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std::integer_sequence<int, _is...>) {
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(add_to_array<_is>(_w, _tup, _parent), ...);
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}
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};
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} // namespace rfl::parsing
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#endif
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