mirror of
https://github.com/ToruNiina/toml11.git
synced 2024-11-26 22:30:06 +00:00
709 lines
22 KiB
C++
709 lines
22 KiB
C++
#ifndef TOML11_VALUE
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#define TOML11_VALUE
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#include "datetime.hpp"
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#include "traits.hpp"
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#include "utility.hpp"
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#include "exception.hpp"
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#include <vector>
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#include <tuple>
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#include <unordered_map>
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#include <cassert>
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#include <cstdint>
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namespace toml
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{
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using character = char;
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class value;
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using key = std::basic_string<character>;
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using Boolean = bool;
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using Integer = std::int64_t;
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using Float = double;
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using String = std::basic_string<character>;
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using Datetime = basic_datetime<unsigned int, int>;
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using Array = std::vector<value>;
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using Table = std::unordered_map<key, value>;
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enum class value_t : std::uint8_t
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{
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Boolean = 1,
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Integer = 2,
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Float = 3,
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String = 4,
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Datetime = 5,
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Array = 6,
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Table = 7,
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Empty = 0,
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Unknown = 255,
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};
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template<typename charT = character, typename traits = std::char_traits<charT>>
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inline std::basic_ostream<charT, traits>&
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operator<<(std::basic_ostream<charT, traits>& os, value_t t)
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{
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switch(t)
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{
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case toml::value_t::Boolean : os << "Boolean"; return os;
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case toml::value_t::Integer : os << "Integer"; return os;
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case toml::value_t::Float : os << "Float"; return os;
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case toml::value_t::String : os << "String"; return os;
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case toml::value_t::Datetime: os << "Datetime"; return os;
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case toml::value_t::Array : os << "Array"; return os;
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case toml::value_t::Table : os << "Table"; return os;
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case toml::value_t::Empty : os << "Empty"; return os;
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case toml::value_t::Unknown : os << "Unknown"; return os;
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default : os << "Nothing"; return os;
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}
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}
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template<typename charT = character, typename traits = std::char_traits<charT>,
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typename alloc = std::allocator<charT>>
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inline std::basic_string<charT, traits, alloc>
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stringize(value_t t)
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{
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switch(t)
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{
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case toml::value_t::Boolean : return "Boolean";
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case toml::value_t::Integer : return "Integer";
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case toml::value_t::Float : return "Float";
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case toml::value_t::String : return "String";
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case toml::value_t::Datetime: return "Datetime";
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case toml::value_t::Array : return "Array";
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case toml::value_t::Table : return "Table";
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case toml::value_t::Empty : return "Empty";
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case toml::value_t::Unknown : return "Unknown";
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default : return "Nothing";
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}
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}
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namespace detail
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{
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template<typename T>
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constexpr inline value_t check_type()
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{
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return std::is_same<unwrap_t<T>, toml::Boolean >::value ? value_t::Boolean :
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std::is_integral<unwrap_t<T>>::value ? value_t::Integer :
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std::is_floating_point<unwrap_t<T>>::value ? value_t::Float :
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std::is_convertible<unwrap_t<T>, toml::String >::value ? value_t::String :
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std::is_convertible<unwrap_t<T>, toml::Datetime>::value ? value_t::Datetime:
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std::is_convertible<unwrap_t<T>, toml::Array >::value ? value_t::Array :
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std::is_convertible<unwrap_t<T>, toml::Table >::value ? value_t::Table :
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value_t::Unknown;
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}
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constexpr inline bool is_valid(value_t vt)
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{
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return vt != value_t::Unknown;
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}
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template<typename T> struct is_toml_array : std::false_type{};
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template<> struct is_toml_array<toml::Array> : std::true_type {};
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template<typename T> struct is_toml_table : std::false_type{};
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template<> struct is_toml_table<toml::Table> : std::true_type {};
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struct is_key_convertible_impl
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{
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template<typename T>
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static std::is_convertible<typename T::key_type, toml::key>
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check(typename T::key_type*);
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template<typename T> static std::false_type check(...);
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};
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template<typename T>
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struct is_key_convertible : decltype(is_key_convertible_impl::check<T>(nullptr)){};
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template<value_t t> struct toml_default_type{};
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template<> struct toml_default_type<value_t::Boolean >{typedef Boolean type;};
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template<> struct toml_default_type<value_t::Integer >{typedef Integer type;};
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template<> struct toml_default_type<value_t::Float >{typedef Float type;};
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template<> struct toml_default_type<value_t::String >{typedef String type;};
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template<> struct toml_default_type<value_t::Datetime>{typedef Datetime type;};
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template<> struct toml_default_type<value_t::Array >{typedef Array type;};
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template<> struct toml_default_type<value_t::Table >{typedef Table type;};
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template<> struct toml_default_type<value_t::Empty >{typedef void type;};
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template<> struct toml_default_type<value_t::Unknown >{typedef void type;};
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struct storage_base
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{
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storage_base(): type(toml::value_t::Empty){}
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storage_base(toml::value_t t): type(t){}
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virtual ~storage_base() = default;
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toml::value_t type;
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};
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template<typename T>
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struct storage : public storage_base
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{
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static_assert(is_toml_array<T>::value || is_toml_table<T>::value,
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"toml::detail::storage is for toml::Array or toml::Table!");
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typedef T value_type;
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storage() = default;
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~storage() override = default;
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storage(storage const&) = default;
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storage(storage&&) = default;
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storage& operator=(storage const&) = default;
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storage& operator=(storage&&) = default;
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storage(value_type const& v) : value(v){}
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storage(value_type&& v) : value(std::move(v)){}
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value_type value;
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};
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} // detail
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template<typename T>
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struct value_traits
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{
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constexpr static value_t type_index = detail::check_type<T>();
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constexpr static bool is_toml_type = detail::is_valid(type_index);
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typedef typename detail::toml_default_type<type_index>::type type;
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};
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class value
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{
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typedef std::unique_ptr<detail::storage_base> storage_ptr;
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public:
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value() : type_(value_t::Empty){}
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~value();
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value(const value& v);
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value(value&& v);
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value& operator=(const value& v);
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value& operator=(value&& v);
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template<typename T, typename std::enable_if<
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value_traits<T>::is_toml_type, std::nullptr_t>::type = nullptr>
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value(T&& v);
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template<typename T, typename std::enable_if<
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value_traits<T>::is_toml_type, std::nullptr_t>::type = nullptr>
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value& operator=(T&& v);
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template<typename T, typename std::enable_if<
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value_traits<T>::is_toml_type, std::nullptr_t>::type = nullptr>
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value(std::initializer_list<T> init);
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value(std::initializer_list<std::pair<toml::key, toml::value>> init);
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value_t type() const {return type_;}
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template<value_t T>
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typename detail::toml_default_type<T>::type const& cast() const;
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template<value_t T>
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typename detail::toml_default_type<T>::type& cast();
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private:
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void switch_clean(value_t t);
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template<value_t t> struct switch_assign;
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template<value_t t> struct switch_cast;
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static bool should_be_cleaned(value_t vt)
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{
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return (vt == value_t::String) || (vt == value_t::Array) ||
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(vt == value_t::Table) || (vt == value_t::Datetime);
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}
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private:
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value_t type_;
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union
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{
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Boolean boolean_;
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Integer integer_;
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Float float_;
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String string_;
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Datetime datetime_;
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storage_ptr storage_; //ptr to table or array
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};
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};
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template<> struct value::switch_assign<value_t::Boolean>
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{
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template<typename valT>
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static void invoke(value& v, valT&& val)
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{
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v.boolean_ = static_cast<Boolean>(val);
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}
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};
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template<> struct value::switch_assign<value_t::Integer>
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{
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template<typename valT>
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static void invoke(value& v, valT&& val)
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{
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v.integer_ = static_cast<Integer>(val);
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}
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};
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template<> struct value::switch_assign<value_t::Float>
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{
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template<typename valT>
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static void invoke(value& v, valT&& val)
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{
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v.float_ = static_cast<Float>(val);
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}
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};
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template<> struct value::switch_assign<value_t::String>
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{
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template<typename valT>
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static void invoke(value& v, valT&& val)
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{
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new(&v.string_) String(val);
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}
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};
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template<> struct value::switch_assign<value_t::Datetime>
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{
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template<typename valT>
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static void invoke(value& v, valT&& val)
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{
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new(&v.datetime_) Datetime(val);
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}
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};
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template<> struct value::switch_assign<value_t::Array>
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{
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template<typename valT>
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static void invoke(value& v, valT&& val)
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{
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new(&v.storage_) storage_ptr(
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toml::make_unique<detail::storage<Array>>(val));
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}
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};
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template<> struct value::switch_assign<value_t::Table>
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{
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template<typename valT>
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static void invoke(value& v, valT&& val)
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{
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new(&v.storage_) storage_ptr(
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toml::make_unique<detail::storage<Table>>(val));
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}
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};
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template<> struct value::switch_cast<value_t::Boolean>
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{
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static Boolean& invoke(value& v) {return v.boolean_;}
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static Boolean const& invoke(value const& v) {return v.boolean_;}
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};
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template<> struct value::switch_cast<value_t::Integer>
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{
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static Integer& invoke(value& v) {return v.integer_;}
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static Integer const& invoke(value const& v) {return v.integer_;}
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};
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template<> struct value::switch_cast<value_t::Float>
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{
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static Float& invoke(value& v) {return v.float_;}
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static Float const& invoke(value const& v) {return v.float_;}
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};
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template<> struct value::switch_cast<value_t::String>
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{
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static String& invoke(value& v) {return v.string_;}
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static String const& invoke(value const& v) {return v.string_;}
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};
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template<> struct value::switch_cast<value_t::Datetime>
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{
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static Datetime& invoke(value& v) {return v.datetime_;}
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static Datetime const& invoke(value const& v) {return v.datetime_;}
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};
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template<> struct value::switch_cast<value_t::Array>
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{
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// switch_cast assumes tmeplate argument is correct.
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// if not, the behaviour is undefined.
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static Array& invoke(value& v)
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{
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return static_cast<detail::storage<Array>*>(v.storage_.get())->value;
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}
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static Array const& invoke(value const& v)
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{
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return static_cast<detail::storage<Array>*>(v.storage_.get())->value;
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}
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};
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template<> struct value::switch_cast<value_t::Table>
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{
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static Table& invoke(value& v)
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{
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return static_cast<detail::storage<Table>*>(v.storage_.get())->value;
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}
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static Table const& invoke(value const& v)
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{
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return static_cast<detail::storage<Table>*>(v.storage_.get())->value;
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}
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};
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inline void value::switch_clean(value_t t)
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{
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switch(t)
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{
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case value_t::Boolean : {boolean_.~Boolean(); return;}
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case value_t::Integer : {integer_.~Integer(); return;}
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case value_t::Float : {float_.~Float(); return;}
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case value_t::String : {string_.~String(); return;}
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case value_t::Datetime : {datetime_.~Datetime(); return;}
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case value_t::Array : {storage_.~storage_ptr(); return;}
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case value_t::Table : {storage_.~storage_ptr(); return;}
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case value_t::Empty : return;
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case value_t::Unknown : assert(false);
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default : assert(false);
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}
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}
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inline value::~value()
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{
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switch_clean(this->type_);
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}
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inline value::value(const value& v) : type_(v.type())
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{
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switch(v.type())
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{
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case value_t::Boolean :
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{
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switch_assign<value_t::Boolean>::invoke(
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*this, v.cast<value_t::Boolean>());
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break;
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}
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case value_t::Integer :
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{
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switch_assign<value_t::Integer>::invoke(
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*this, v.cast<value_t::Integer>());
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break;
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}
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case value_t::Float :
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{
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switch_assign<value_t::Float>::invoke(
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*this, v.cast<value_t::Float>());
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break;
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}
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case value_t::String :
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{
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switch_assign<value_t::String>::invoke(
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*this, v.cast<value_t::String>());
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break;
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}
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case value_t::Datetime:
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{
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switch_assign<value_t::Datetime>::invoke(
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*this, v.cast<value_t::Datetime>());
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break;
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}
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case value_t::Array :
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{
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switch_assign<value_t::Array>::invoke(
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*this, v.cast<value_t::Array>());
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break;
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}
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case value_t::Table :
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{
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switch_assign<value_t::Table>::invoke(
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*this, v.cast<value_t::Table>());
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break;
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}
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case value_t::Empty : break;
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case value_t::Unknown : assert(false);
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default: assert(false);
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}
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}
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inline value::value(value&& v)
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{
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this->type_ = v.type_;
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switch(this->type_)
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{
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case value_t::Boolean :
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{
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switch_assign<value_t::Boolean>::invoke(*this,
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std::move(v.cast<value_t::Boolean>()));
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break;
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}
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case value_t::Integer :
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{
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switch_assign<value_t::Integer>::invoke(*this,
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std::move(v.cast<value_t::Integer>()));
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break;
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}
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case value_t::Float :
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{
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switch_assign<value_t::Float>::invoke(*this,
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std::move(v.cast<value_t::Float>()));
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break;
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}
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case value_t::String :
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{
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switch_assign<value_t::String>::invoke(*this,
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std::move(v.cast<value_t::String>()));
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break;
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}
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case value_t::Datetime:
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{
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switch_assign<value_t::Datetime>::invoke(*this,
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std::move(v.cast<value_t::Datetime>()));
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break;
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}
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case value_t::Array :
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{
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new(&this->storage_) storage_ptr(std::move(v.storage_));
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break;
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}
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case value_t::Table :
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{
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new(&this->storage_) storage_ptr(std::move(v.storage_));
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break;
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}
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case value_t::Empty : break;
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case value_t::Unknown : assert(false);
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default: assert(false);
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}
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}
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inline value& value::operator=(const value& v)
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{
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if(should_be_cleaned(this->type_))
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{
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this->switch_clean(this->type_);
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}
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this->type_ = v.type();
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switch(this->type_)
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{
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case value_t::Boolean :
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{
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switch_assign<value_t::Boolean>::invoke(*this,
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v.cast<value_t::Boolean>());
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break;
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}
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case value_t::Integer :
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{
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switch_assign<value_t::Integer>::invoke(*this,
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v.cast<value_t::Integer>());
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break;
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}
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case value_t::Float :
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{
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switch_assign<value_t::Float>::invoke(*this,
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v.cast<value_t::Float>());
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break;
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}
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case value_t::String :
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{
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switch_assign<value_t::String>::invoke(*this,
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v.cast<value_t::String>());
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break;
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}
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case value_t::Datetime:
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{
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switch_assign<value_t::Datetime>::invoke(*this,
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v.cast<value_t::Datetime>());
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break;
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}
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case value_t::Array :
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{
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switch_assign<value_t::Array>::invoke(*this,
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v.cast<value_t::Array>());
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break;
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}
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case value_t::Table :
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{
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switch_assign<value_t::Table>::invoke(*this,
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v.cast<value_t::Table>());
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break;
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}
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case value_t::Empty : break;
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case value_t::Unknown : assert(false);
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default: assert(false);
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}
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return *this;
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}
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inline value& value::operator=(value&& v)
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{
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if(should_be_cleaned(this->type_))
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{
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this->switch_clean(this->type_);
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}
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this->type_ = v.type_;
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|
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switch(this->type_)
|
|
{
|
|
case value_t::Boolean :
|
|
{
|
|
switch_assign<value_t::Boolean>::invoke(*this,
|
|
std::move(v.cast<value_t::Boolean>()));
|
|
break;
|
|
}
|
|
case value_t::Integer :
|
|
{
|
|
switch_assign<value_t::Integer>::invoke(*this,
|
|
std::move(v.cast<value_t::Integer>()));
|
|
break;
|
|
}
|
|
case value_t::Float :
|
|
{
|
|
switch_assign<value_t::Float>::invoke(*this,
|
|
std::move(v.cast<value_t::Float>()));
|
|
break;
|
|
}
|
|
case value_t::String :
|
|
{
|
|
switch_assign<value_t::String>::invoke(*this,
|
|
std::move(v.cast<value_t::String>()));
|
|
break;
|
|
}
|
|
case value_t::Datetime:
|
|
{
|
|
switch_assign<value_t::Datetime>::invoke(*this,
|
|
std::move(v.cast<value_t::Datetime>()));
|
|
break;
|
|
}
|
|
case value_t::Array :
|
|
{
|
|
switch_assign<value_t::Array>::invoke(*this,
|
|
std::move(v.cast<value_t::Array>()));
|
|
break;
|
|
}
|
|
case value_t::Table :
|
|
{
|
|
switch_assign<value_t::Table>::invoke(*this,
|
|
std::move(v.cast<value_t::Table>()));
|
|
break;
|
|
}
|
|
case value_t::Empty : break;
|
|
case value_t::Unknown : assert(false);
|
|
default: assert(false);
|
|
}
|
|
return *this;
|
|
}
|
|
|
|
template<typename T, typename std::enable_if<
|
|
value_traits<T>::is_toml_type, std::nullptr_t>::type>
|
|
value::value(T&& v) : type_(toml::detail::check_type<T>())
|
|
{
|
|
switch_assign<toml::detail::check_type<T>()>::invoke(
|
|
*this, std::forward<T>(v));
|
|
}
|
|
|
|
template<typename T, typename std::enable_if<
|
|
value_traits<T>::is_toml_type, std::nullptr_t>::type>
|
|
value& value::operator=(T&& v)
|
|
{
|
|
if(should_be_cleaned(this->type_))
|
|
{
|
|
switch_clean(this->type_);
|
|
}
|
|
this->type_ = toml::detail::check_type<T>();
|
|
switch_assign<toml::detail::check_type<T>()>::invoke(
|
|
*this, std::forward<T>(v));
|
|
return *this;
|
|
}
|
|
|
|
template<typename T, typename std::enable_if<
|
|
value_traits<T>::is_toml_type, std::nullptr_t>::type>
|
|
value::value(std::initializer_list<T> init)
|
|
: type_(toml::value_t::Array)
|
|
{
|
|
toml::Array arr; arr.reserve(init.size());
|
|
for(auto&& item : init)
|
|
arr.emplace_back(std::move(item));
|
|
switch_assign<toml::value_t::Array>::invoke(*this, std::move(arr));
|
|
}
|
|
|
|
inline value::value(
|
|
std::initializer_list<std::pair<toml::key, toml::value>> init)
|
|
: type_(toml::value_t::Table)
|
|
{
|
|
toml::Table tmp;
|
|
for(auto&& item : init)
|
|
tmp.emplace(std::move(item.first), std::move(item.second));
|
|
switch_assign<toml::value_t::Table>::invoke(*this, std::move(tmp));
|
|
}
|
|
|
|
template<value_t T>
|
|
inline typename detail::toml_default_type<T>::type const&
|
|
value::cast() const
|
|
{
|
|
if(T != this->type_)
|
|
throw type_error("current type: " + stringize(this->type_) +
|
|
std::string(" is not query type: ") + stringize(T));
|
|
return switch_cast<T>::invoke(*this);
|
|
}
|
|
template<value_t T>
|
|
inline typename detail::toml_default_type<T>::type&
|
|
value::cast()
|
|
{
|
|
if(T != this->type_)
|
|
throw type_error("current type: " + stringize(this->type_) +
|
|
std::string(" is not query type: ") + stringize(T));
|
|
return switch_cast<T>::invoke(*this);
|
|
}
|
|
|
|
inline bool operator==(const toml::value& lhs, const toml::value& rhs)
|
|
{
|
|
if(lhs.type() != rhs.type()) return false;
|
|
switch(lhs.type())
|
|
{
|
|
case value_t::Boolean :
|
|
return lhs.cast<value_t::Boolean >() == rhs.cast<value_t::Boolean >();
|
|
case value_t::Integer :
|
|
return lhs.cast<value_t::Integer >() == rhs.cast<value_t::Integer >();
|
|
case value_t::Float :
|
|
return lhs.cast<value_t::Float >() == rhs.cast<value_t::Float >();
|
|
case value_t::String :
|
|
return lhs.cast<value_t::String >() == rhs.cast<value_t::String >();
|
|
case value_t::Datetime:
|
|
return lhs.cast<value_t::Datetime>() == rhs.cast<value_t::Datetime>();
|
|
case value_t::Array :
|
|
return lhs.cast<value_t::Array >() == rhs.cast<value_t::Array >();
|
|
case value_t::Table :
|
|
return lhs.cast<value_t::Table >() == rhs.cast<value_t::Table >();
|
|
case value_t::Empty : return true;
|
|
case value_t::Unknown : return false;
|
|
default: return false;
|
|
}
|
|
}
|
|
inline bool operator<(const toml::value& lhs, const toml::value& rhs)
|
|
{
|
|
if(lhs.type() != rhs.type()) return (lhs.type() < rhs.type());
|
|
switch(lhs.type())
|
|
{
|
|
case value_t::Boolean :
|
|
return lhs.cast<value_t::Boolean >() < rhs.cast<value_t::Boolean >();
|
|
case value_t::Integer :
|
|
return lhs.cast<value_t::Integer >() < rhs.cast<value_t::Integer >();
|
|
case value_t::Float :
|
|
return lhs.cast<value_t::Float >() < rhs.cast<value_t::Float >();
|
|
case value_t::String :
|
|
return lhs.cast<value_t::String >() < rhs.cast<value_t::String >();
|
|
case value_t::Datetime:
|
|
return lhs.cast<value_t::Datetime>() < rhs.cast<value_t::Datetime>();
|
|
case value_t::Array :
|
|
return lhs.cast<value_t::Array >() < rhs.cast<value_t::Array >();
|
|
case value_t::Table :
|
|
return lhs.cast<value_t::Table >() < rhs.cast<value_t::Table >();
|
|
case value_t::Empty : return false;
|
|
case value_t::Unknown : return false;
|
|
default: return false;
|
|
}
|
|
}
|
|
|
|
inline bool operator!=(const toml::value& lhs, const toml::value& rhs)
|
|
{
|
|
return !(lhs == rhs);
|
|
}
|
|
inline bool operator<=(const toml::value& lhs, const toml::value& rhs)
|
|
{
|
|
return (lhs < rhs) || (lhs == rhs);
|
|
}
|
|
inline bool operator>(const toml::value& lhs, const toml::value& rhs)
|
|
{
|
|
return !(lhs <= rhs);
|
|
}
|
|
inline bool operator>=(const toml::value& lhs, const toml::value& rhs)
|
|
{
|
|
return !(lhs < rhs);
|
|
}
|
|
|
|
}// toml
|
|
#endif// TOML11_VALUE
|