mirror of
https://github.com/nlohmann/json.git
synced 2026-09-06 16:27:59 +00:00
Compare commits
1
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
|
|
d2c2db92a9 |
@@ -4,8 +4,8 @@
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Hello, world!
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1 2 3 4 5
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string: "Hello, world!"
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number: {"floating-point":17.23,"integer":42}
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null: null
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string: "Hello, world!"
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boolean: true
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array: [1,2,3,4,5]
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@@ -4,8 +4,8 @@
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Hello, world!
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1 2 3 4 5
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string: "Hello, world!"
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number: {"floating-point":17.23,"integer":42}
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null: null
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string: "Hello, world!"
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boolean: true
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array: [1,2,3,4,5]
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@@ -4,9 +4,9 @@
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Hello, world!
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1 2 3 4 5
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string: "Hello, world!"
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number: {"floating-point":17.23,"integer":42}
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null: null
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string: "Hello, world!"
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boolean: true
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array: [1,2,3,4,5]
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[json.exception.type_error.302] type must be boolean, but is string
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@@ -398,34 +398,6 @@ inline void from_json(const BasicJsonType& j, CompatibleArrayType& bin)
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}
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}
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template<typename BasicJsonType, typename ConstructibleObjectType>
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auto from_json_object_impl(const BasicJsonType& j, ConstructibleObjectType& obj, priority_tag<1> /*unused*/)
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-> decltype(
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obj.reserve(std::declval<typename ConstructibleObjectType::size_type>()),
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void())
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{
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ConstructibleObjectType ret;
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const auto* inner_object = j.template get_ptr<const typename BasicJsonType::object_t*>();
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ret.reserve(inner_object->size());
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for (const auto& p : *inner_object)
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{
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ret.emplace(p.first, p.second.template get<typename ConstructibleObjectType::mapped_type>());
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}
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obj = std::move(ret);
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}
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template<typename BasicJsonType, typename ConstructibleObjectType>
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inline void from_json_object_impl(const BasicJsonType& j, ConstructibleObjectType& obj, priority_tag<0> /*unused*/)
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{
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ConstructibleObjectType ret;
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const auto* inner_object = j.template get_ptr<const typename BasicJsonType::object_t*>();
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for (const auto& p : *inner_object)
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{
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ret.emplace(p.first, p.second.template get<typename ConstructibleObjectType::mapped_type>());
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}
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obj = std::move(ret);
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}
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template<typename BasicJsonType, typename ConstructibleObjectType,
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enable_if_t<is_constructible_object_type<BasicJsonType, ConstructibleObjectType>::value, int> = 0>
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inline void from_json(const BasicJsonType& j, ConstructibleObjectType& obj)
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@@ -435,7 +407,13 @@ inline void from_json(const BasicJsonType& j, ConstructibleObjectType& obj)
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JSON_THROW(type_error::create(302, concat("type must be object, but is ", j.type_name()), &j));
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}
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from_json_object_impl(j, obj, priority_tag<1> {});
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ConstructibleObjectType ret;
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const auto* inner_object = j.template get_ptr<const typename BasicJsonType::object_t*>();
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for (const auto& p : *inner_object)
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{
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ret.emplace(p.first, p.second.template get<typename ConstructibleObjectType::mapped_type>());
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}
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obj = std::move(ret);
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}
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// overload for arithmetic types, not chosen for basic_json template arguments
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@@ -1647,6 +1647,20 @@ class binary_writer
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return 'D'; // float 64
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}
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/*!
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@brief checks whether a JSON number fits into @a TargetType
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@param[in] el a JSON number of either the signed or unsigned integer kind
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@return whether @a el's value can be represented by @a TargetType without
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wrapping, regardless of which of the two kinds it is stored as
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*/
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template<typename TargetType>
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static bool bjdata_ndarray_value_in_range(const BasicJsonType& el)
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{
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return el.is_number_unsigned()
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? value_in_range_of<TargetType>(el.template get<std::uint64_t>())
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: value_in_range_of<TargetType>(el.template get<std::int64_t>());
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}
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/*!
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@return false if the object is successfully converted to a bjdata ndarray, true if the type or size is invalid
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*/
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@@ -1731,6 +1745,60 @@ class binary_writer
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}
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}
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// every element is cast to the (possibly narrower) C++ type matching
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// dtype below; a value that does not fit that type would silently
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// wrap (integers) or overflow to infinity (the "single" precision
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// float) instead of being reported, so such an object falls back to
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// a plain object encoding as well
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for (const auto& el : value.at(key))
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{
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bool in_range = true;
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switch (dtype)
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{
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case 'U':
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case 'C':
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case 'B':
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in_range = bjdata_ndarray_value_in_range<std::uint8_t>(el);
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break;
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case 'i':
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in_range = bjdata_ndarray_value_in_range<std::int8_t>(el);
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break;
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case 'u':
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in_range = bjdata_ndarray_value_in_range<std::uint16_t>(el);
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break;
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case 'I':
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in_range = bjdata_ndarray_value_in_range<std::int16_t>(el);
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break;
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case 'm':
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in_range = bjdata_ndarray_value_in_range<std::uint32_t>(el);
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break;
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case 'l':
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in_range = bjdata_ndarray_value_in_range<std::int32_t>(el);
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break;
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case 'M':
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in_range = bjdata_ndarray_value_in_range<std::uint64_t>(el);
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break;
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case 'L':
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in_range = bjdata_ndarray_value_in_range<std::int64_t>(el);
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break;
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case 'd':
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{
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const auto dval = el.template get<double>();
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in_range = !std::isfinite(dval) ||
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(dval >= static_cast<double>(std::numeric_limits<float>::lowest()) &&
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dval <= static_cast<double>((std::numeric_limits<float>::max)()));
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break;
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}
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default:
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// 'D' (double) already spans the full range of number_float_t
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break;
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}
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if (!in_range)
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{
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return true;
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}
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}
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oa->write_character('[');
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oa->write_character('$');
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oa->write_character(dtype);
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@@ -5693,34 +5693,6 @@ inline void from_json(const BasicJsonType& j, CompatibleArrayType& bin)
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}
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}
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template<typename BasicJsonType, typename ConstructibleObjectType>
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auto from_json_object_impl(const BasicJsonType& j, ConstructibleObjectType& obj, priority_tag<1> /*unused*/)
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-> decltype(
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obj.reserve(std::declval<typename ConstructibleObjectType::size_type>()),
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void())
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{
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ConstructibleObjectType ret;
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const auto* inner_object = j.template get_ptr<const typename BasicJsonType::object_t*>();
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ret.reserve(inner_object->size());
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for (const auto& p : *inner_object)
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{
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ret.emplace(p.first, p.second.template get<typename ConstructibleObjectType::mapped_type>());
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}
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obj = std::move(ret);
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}
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template<typename BasicJsonType, typename ConstructibleObjectType>
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inline void from_json_object_impl(const BasicJsonType& j, ConstructibleObjectType& obj, priority_tag<0> /*unused*/)
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{
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ConstructibleObjectType ret;
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const auto* inner_object = j.template get_ptr<const typename BasicJsonType::object_t*>();
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for (const auto& p : *inner_object)
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{
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ret.emplace(p.first, p.second.template get<typename ConstructibleObjectType::mapped_type>());
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}
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obj = std::move(ret);
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}
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template<typename BasicJsonType, typename ConstructibleObjectType,
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enable_if_t<is_constructible_object_type<BasicJsonType, ConstructibleObjectType>::value, int> = 0>
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inline void from_json(const BasicJsonType& j, ConstructibleObjectType& obj)
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@@ -5730,7 +5702,13 @@ inline void from_json(const BasicJsonType& j, ConstructibleObjectType& obj)
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JSON_THROW(type_error::create(302, concat("type must be object, but is ", j.type_name()), &j));
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}
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from_json_object_impl(j, obj, priority_tag<1> {});
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ConstructibleObjectType ret;
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const auto* inner_object = j.template get_ptr<const typename BasicJsonType::object_t*>();
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for (const auto& p : *inner_object)
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{
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ret.emplace(p.first, p.second.template get<typename ConstructibleObjectType::mapped_type>());
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}
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obj = std::move(ret);
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}
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// overload for arithmetic types, not chosen for basic_json template arguments
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@@ -18677,6 +18655,20 @@ class binary_writer
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return 'D'; // float 64
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}
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/*!
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@brief checks whether a JSON number fits into @a TargetType
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@param[in] el a JSON number of either the signed or unsigned integer kind
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@return whether @a el's value can be represented by @a TargetType without
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wrapping, regardless of which of the two kinds it is stored as
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*/
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template<typename TargetType>
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static bool bjdata_ndarray_value_in_range(const BasicJsonType& el)
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{
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return el.is_number_unsigned()
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? value_in_range_of<TargetType>(el.template get<std::uint64_t>())
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: value_in_range_of<TargetType>(el.template get<std::int64_t>());
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}
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/*!
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@return false if the object is successfully converted to a bjdata ndarray, true if the type or size is invalid
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*/
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@@ -18761,6 +18753,60 @@ class binary_writer
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}
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}
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// every element is cast to the (possibly narrower) C++ type matching
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// dtype below; a value that does not fit that type would silently
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// wrap (integers) or overflow to infinity (the "single" precision
|
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// float) instead of being reported, so such an object falls back to
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// a plain object encoding as well
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for (const auto& el : value.at(key))
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{
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bool in_range = true;
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switch (dtype)
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{
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case 'U':
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case 'C':
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case 'B':
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in_range = bjdata_ndarray_value_in_range<std::uint8_t>(el);
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break;
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case 'i':
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in_range = bjdata_ndarray_value_in_range<std::int8_t>(el);
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break;
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case 'u':
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in_range = bjdata_ndarray_value_in_range<std::uint16_t>(el);
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break;
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case 'I':
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in_range = bjdata_ndarray_value_in_range<std::int16_t>(el);
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break;
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case 'm':
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in_range = bjdata_ndarray_value_in_range<std::uint32_t>(el);
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break;
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case 'l':
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in_range = bjdata_ndarray_value_in_range<std::int32_t>(el);
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break;
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case 'M':
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in_range = bjdata_ndarray_value_in_range<std::uint64_t>(el);
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break;
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case 'L':
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in_range = bjdata_ndarray_value_in_range<std::int64_t>(el);
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break;
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case 'd':
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{
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const auto dval = el.template get<double>();
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in_range = !std::isfinite(dval) ||
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(dval >= static_cast<double>(std::numeric_limits<float>::lowest()) &&
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dval <= static_cast<double>((std::numeric_limits<float>::max)()));
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break;
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}
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default:
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// 'D' (double) already spans the full range of number_float_t
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break;
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}
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if (!in_range)
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{
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return true;
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}
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}
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oa->write_character('[');
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oa->write_character('$');
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oa->write_character(dtype);
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@@ -2776,6 +2776,53 @@ TEST_CASE("BJData")
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CHECK(out_num.at(0) == '{');
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CHECK(json::from_bjdata(out_num) == j_num);
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}
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SECTION("ndarray with out-of-range _ArrayData_ elements stays as object")
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{
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// each element is cast to the (possibly narrower) C++ type
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// named by _ArrayType_ before being written; a value that
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// does not fit that type would silently wrap instead of
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// being reported, so such an object falls back to a plain
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// object encoding that still round-trips (see GitHub issue #5403)
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// an unsigned element that does not fit uint8
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json const j_uint8 = json({{"_ArrayType_", "uint8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 256}}});
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const auto out_uint8 = json::to_bjdata(j_uint8);
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CHECK(out_uint8.at(0) == '{');
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CHECK(json::from_bjdata(out_uint8) == j_uint8);
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// a signed element that does not fit int8
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json const j_int8 = json({{"_ArrayType_", "int8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 200}}});
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const auto out_int8 = json::to_bjdata(j_int8);
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CHECK(out_int8.at(0) == '{');
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CHECK(json::from_bjdata(out_int8) == j_int8);
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// a negative element is likewise out of range for an
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// unsigned _ArrayType_
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json const j_uint16_neg = json({{"_ArrayType_", "uint16"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, -1}}});
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const auto out_uint16_neg = json::to_bjdata(j_uint16_neg);
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CHECK(out_uint16_neg.at(0) == '{');
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CHECK(json::from_bjdata(out_uint16_neg) == j_uint16_neg);
|
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|
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// a double element that overflows to infinity when narrowed
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// to the "single" (float) precision named by _ArrayType_
|
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json const j_single = json({{"_ArrayType_", "single"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1.5, 1e40}}});
|
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const auto out_single = json::to_bjdata(j_single);
|
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CHECK(out_single.at(0) == '{');
|
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CHECK(json::from_bjdata(out_single) == j_single);
|
||||
|
||||
// in-range boundary values still use the compact ndarray encoding
|
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json const j_uint8_ok = json({{"_ArrayType_", "uint8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {0, 255}}});
|
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CHECK(json::to_bjdata(j_uint8_ok) == std::vector<uint8_t>({'[', '$', 'U', '#', '[', 'i', 2, ']', 0, 255}));
|
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|
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json const j_int8_ok = json({{"_ArrayType_", "int8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {-128, 127}}});
|
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CHECK(json::to_bjdata(j_int8_ok) == std::vector<uint8_t>({'[', '$', 'i', '#', '[', 'i', 2, ']', 0x80, 0x7F}));
|
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|
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json const j_single_ok = json({{"_ArrayType_", "single"}, {"_ArraySize_", {1}}, {"_ArrayData_", {1.5}}});
|
||||
const auto out_single_ok = json::to_bjdata(j_single_ok);
|
||||
CHECK(out_single_ok.at(0) == '[');
|
||||
CHECK(json::from_bjdata(out_single_ok) == json({1.5f}));
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
@@ -1389,37 +1389,6 @@ TEST_CASE("value conversion")
|
||||
// CHECK(m5["one"] == "eins");
|
||||
}
|
||||
|
||||
SECTION("reserve is called on containers that support it (#5406)")
|
||||
{
|
||||
// build a larger object so that a missing/incorrect reserve()
|
||||
// call would be more likely to corrupt or drop elements
|
||||
json j_large;
|
||||
for (int i = 0; i < 100; ++i)
|
||||
{
|
||||
j_large[std::to_string(i)] = i;
|
||||
}
|
||||
|
||||
SECTION("std::unordered_map (supports reserve)")
|
||||
{
|
||||
const auto m = j_large.get<std::unordered_map<std::string, int>>();
|
||||
CHECK(m.size() == 100);
|
||||
for (int i = 0; i < 100; ++i)
|
||||
{
|
||||
CHECK(m.at(std::to_string(i)) == i);
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("std::map (no reserve, fallback path)")
|
||||
{
|
||||
const auto m = j_large.get<std::map<std::string, int>>();
|
||||
CHECK(m.size() == 100);
|
||||
for (int i = 0; i < 100; ++i)
|
||||
{
|
||||
CHECK(m.at(std::to_string(i)) == i);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
SECTION("std::multimap")
|
||||
{
|
||||
j1.get<std::multimap<std::string, int>>();
|
||||
|
||||
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