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Author SHA1 Message Date
Niels Lohmann ea04c24fdc Fall back to plain-object encoding when _ArrayType_ is not a string
write_bjdata_ndarray() looked up _ArrayType_ by calling get<string_t>()
directly, which throws type_error.302 when the annotation is not a
string (e.g. a number, null, boolean, array, or object). Per the
documented BJData ndarray contract, an object only qualifies for the
compact ndarray encoding if _ArrayType_ names a known type; anything
else must fall back to plain-object encoding, the same way an unknown
type-name string already does.

Add an is_string() check before the get<string_t>() call so a
non-string _ArrayType_ takes the existing "unrecognized type name"
fallback path instead of throwing.

Fixes #5398.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-05 21:54:45 +02:00
Niels Lohmann 50e392ab1a Fix to_bjdata() emitting the Draft-3-only 'B' marker in default Draft-2 mode
_ArrayType_ = "byte" mapped unconditionally to the BJData type marker
'B', regardless of the requested bjdata_version. 'B' is defined only by
BJData Draft 3; with the default version (draft2), this produced a
stream that is invalid for Draft 2 and, unlike every other
_ArrayType_, round-tripped back as a binary value instead of the
original annotated object.

Only accept "byte" / emit 'B' when bjdata_version selects Draft 3.
Under Draft 2, fall back to the same plain-object encoding used
elsewhere in this function for other invalid-annotation cases, so the
value round-trips correctly.

Fixes #5404.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-05 20:52:54 +02:00
Niels Lohmann d2c2db92a9 Fix to_bjdata() silently truncating out-of-range _ArrayData_ elements
write_bjdata_ndarray() validated that each _ArrayData_ element matched
the number kind (integer vs. float) named by _ArrayType_, but not its
range. An element that did not fit the target C++ type (e.g. 256 for
"uint8") was silently wrapped by the static_cast used to write it, or,
for "single", silently overflowed to infinity.

Range-check each element against the type named by _ArrayType_ before
writing it, reusing the existing fallback path that already encodes
the annotated object as a plain object for other invalid-annotation
cases in this function.

Fixes #5403.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-05 20:43:55 +02:00
10 changed files with 368 additions and 538 deletions
+1 -1
View File
@@ -241,7 +241,7 @@ update_hedley:
rm -f include/nlohmann/thirdparty/hedley/hedley.hpp include/nlohmann/thirdparty/hedley/hedley_undef.hpp
curl https://raw.githubusercontent.com/nemequ/hedley/master/hedley.h -o include/nlohmann/thirdparty/hedley/hedley.hpp
$(SED) -i 's/HEDLEY_/JSON_HEDLEY_/g' include/nlohmann/thirdparty/hedley/hedley.hpp
grep -oE "#[[:blank:]]*define[[:blank:]]+JSON_HEDLEY_[A-Za-z0-9_]+" include/nlohmann/thirdparty/hedley/hedley.hpp | awk '{print $$NF}' | grep -v "__" | sort -u | $(SED) 's/^/#undef /' > include/nlohmann/thirdparty/hedley/hedley_undef.hpp
grep "[[:blank:]]*#[[:blank:]]*undef" include/nlohmann/thirdparty/hedley/hedley.hpp | grep -v "__" | sort | uniq | $(SED) 's/ //g' | $(SED) 's/undef/undef /g' > include/nlohmann/thirdparty/hedley/hedley_undef.hpp
$(SED) -i '1s/^/#pragma once\n\n/' include/nlohmann/thirdparty/hedley/hedley.hpp
$(SED) -i '1s/^/#pragma once\n\n/' include/nlohmann/thirdparty/hedley/hedley_undef.hpp
$(MAKE) amalgamate
@@ -1074,9 +1074,9 @@ char* to_chars(char* first, const char* last, FloatType value)
*first++ = '-';
}
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
if (value == 0) // +-0
{
@@ -1086,7 +1086,9 @@ char* to_chars(char* first, const char* last, FloatType value)
*first++ = '0';
return first;
}
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
JSON_ASSERT(last - first >= std::numeric_limits<FloatType>::max_digits10);
+5 -3
View File
@@ -32,9 +32,9 @@
// functions to. As a result, we suppress this warning here to avoid client
// code stumbling over this. See https://github.com/nlohmann/json/issues/4087
// for a discussion.
JSON_HEDLEY_DIAGNOSTIC_PUSH
#if defined(__clang__)
JSON_HEDLEY_PRAGMA(clang diagnostic ignored "-Wweak-vtables")
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wweak-vtables"
#endif
NLOHMANN_JSON_NAMESPACE_BEGIN
@@ -286,4 +286,6 @@ class other_error : public exception
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
JSON_HEDLEY_DIAGNOSTIC_POP
#if defined(__clang__)
#pragma clang diagnostic pop
#endif
@@ -18,7 +18,6 @@
#endif
#include <nlohmann/detail/abi_macros.hpp>
#include <nlohmann/detail/macro_scope.hpp>
#include <nlohmann/detail/meta/type_traits.hpp>
#include <nlohmann/detail/string_utils.hpp>
#include <nlohmann/detail/value_t.hpp>
@@ -207,10 +206,10 @@ NLOHMANN_JSON_NAMESPACE_END
namespace std
{
// Fix: https://github.com/nlohmann/json/issues/1401
JSON_HEDLEY_DIAGNOSTIC_PUSH
#if defined(__clang__)
JSON_HEDLEY_PRAGMA(clang diagnostic ignored "-Wmismatched-tags")
// Fix: https://github.com/nlohmann/json/issues/1401
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wmismatched-tags"
#endif
template<typename IteratorType>
class tuple_size<::nlohmann::detail::iteration_proxy_value<IteratorType>> // NOLINT(cert-dcl58-cpp)
@@ -224,7 +223,9 @@ class tuple_element<N, ::nlohmann::detail::iteration_proxy_value<IteratorType >>
get<N>(std::declval <
::nlohmann::detail::iteration_proxy_value<IteratorType >> ()));
};
JSON_HEDLEY_DIAGNOSTIC_POP
#if defined(__clang__)
#pragma clang diagnostic pop
#endif
} // namespace std
@@ -1647,6 +1647,20 @@ class binary_writer
return 'D'; // float 64
}
/*!
@brief checks whether a JSON number fits into @a TargetType
@param[in] el a JSON number of either the signed or unsigned integer kind
@return whether @a el's value can be represented by @a TargetType without
wrapping, regardless of which of the two kinds it is stored as
*/
template<typename TargetType>
static bool bjdata_ndarray_value_in_range(const BasicJsonType& el)
{
return el.is_number_unsigned()
? value_in_range_of<TargetType>(el.template get<std::uint64_t>())
: value_in_range_of<TargetType>(el.template get<std::int64_t>());
}
/*!
@return false if the object is successfully converted to a bjdata ndarray, true if the type or size is invalid
*/
@@ -1658,6 +1672,16 @@ class binary_writer
};
string_t key = "_ArrayType_";
// the type name is looked up as a string below; a non-string
// annotation (e.g. a number, null, or an array) cannot name a known
// dtype, so it is treated the same as an unrecognized type name and
// falls back to a plain object encoding instead of throwing
// type_error.302 out of get<string_t>()
if (!value.at(key).is_string())
{
return true;
}
// use get<string_t>() instead of static_cast<string_t> to avoid an
// ambiguous conversion under explicit instantiation on C++17 (see #4825)
auto it = bjdtype.find(value.at(key).template get<string_t>());
@@ -1667,6 +1691,16 @@ class binary_writer
}
CharType dtype = it->second;
// the 'B' (byte) marker is only defined by BJData Draft 3; emitting it
// under the default Draft 2 mode would produce a stream that Draft 2
// readers reject, so such an object falls back to a plain object
// encoding instead (see the "Binary values" section of the BJData
// documentation)
if (dtype == 'B' && bjdata_version != bjdata_version_t::draft3)
{
return true;
}
key = "_ArraySize_";
// the dimensions are written verbatim as the header length below, so a
// value that is not an array cannot produce a valid one: null emits 'Z'
@@ -1731,6 +1765,60 @@ class binary_writer
}
}
// every element is cast to the (possibly narrower) C++ type matching
// dtype below; a value that does not fit that type would silently
// wrap (integers) or overflow to infinity (the "single" precision
// float) instead of being reported, so such an object falls back to
// a plain object encoding as well
for (const auto& el : value.at(key))
{
bool in_range = true;
switch (dtype)
{
case 'U':
case 'C':
case 'B':
in_range = bjdata_ndarray_value_in_range<std::uint8_t>(el);
break;
case 'i':
in_range = bjdata_ndarray_value_in_range<std::int8_t>(el);
break;
case 'u':
in_range = bjdata_ndarray_value_in_range<std::uint16_t>(el);
break;
case 'I':
in_range = bjdata_ndarray_value_in_range<std::int16_t>(el);
break;
case 'm':
in_range = bjdata_ndarray_value_in_range<std::uint32_t>(el);
break;
case 'l':
in_range = bjdata_ndarray_value_in_range<std::int32_t>(el);
break;
case 'M':
in_range = bjdata_ndarray_value_in_range<std::uint64_t>(el);
break;
case 'L':
in_range = bjdata_ndarray_value_in_range<std::int64_t>(el);
break;
case 'd':
{
const auto dval = el.template get<double>();
in_range = !std::isfinite(dval) ||
(dval >= static_cast<double>(std::numeric_limits<float>::lowest()) &&
dval <= static_cast<double>((std::numeric_limits<float>::max)()));
break;
}
default:
// 'D' (double) already spans the full range of number_float_t
break;
}
if (!in_range)
{
return true;
}
}
oa->write_character('[');
oa->write_character('$');
oa->write_character(dtype);
@@ -1849,9 +1937,9 @@ class binary_writer
void write_compact_float(const number_float_t n, detail::input_format_t format)
{
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
if (!std::isfinite(n) || ((static_cast<double>(n) >= static_cast<double>(std::numeric_limits<float>::lowest()) &&
static_cast<double>(n) <= static_cast<double>((std::numeric_limits<float>::max)()) &&
@@ -1869,7 +1957,9 @@ class binary_writer
: get_msgpack_float_prefix(n));
write_number(n);
}
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
}
public:
+10 -6
View File
@@ -3769,13 +3769,15 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
/// @sa https://json.nlohmann.me/api/basic_json/operator_eq/
bool operator==(const_reference rhs) const noexcept
{
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
const_reference lhs = *this;
JSON_IMPLEMENT_OPERATOR( ==, true, false, false)
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
}
/// @brief comparison: equal
@@ -3860,12 +3862,14 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
/// @sa https://json.nlohmann.me/api/basic_json/operator_eq/
friend bool operator==(const_reference lhs, const_reference rhs) noexcept
{
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
JSON_IMPLEMENT_OPERATOR( ==, true, false, false)
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
}
/// @brief comparison: equal
+1 -4
View File
@@ -17,7 +17,7 @@
#undef JSON_HEDLEY_CLANG_HAS_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_BUILTIN
#undef JSON_HEDLEY_CLANG_HAS_CPP_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_DECLSPEC_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_DECLSPEC_DECLSPEC_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_EXTENSION
#undef JSON_HEDLEY_CLANG_HAS_FEATURE
#undef JSON_HEDLEY_CLANG_HAS_WARNING
@@ -108,10 +108,7 @@
#undef JSON_HEDLEY_PELLES_VERSION_CHECK
#undef JSON_HEDLEY_PGI_VERSION
#undef JSON_HEDLEY_PGI_VERSION_CHECK
#undef JSON_HEDLEY_PRAGMA
#undef JSON_HEDLEY_PREDICT
#undef JSON_HEDLEY_PREDICT_FALSE
#undef JSON_HEDLEY_PREDICT_TRUE
#undef JSON_HEDLEY_PRINTF_FORMAT
#undef JSON_HEDLEY_PRIVATE
#undef JSON_HEDLEY_PUBLIC
+120 -25
View File
@@ -4944,9 +4944,9 @@ NLOHMANN_JSON_NAMESPACE_END
// functions to. As a result, we suppress this warning here to avoid client
// code stumbling over this. See https://github.com/nlohmann/json/issues/4087
// for a discussion.
JSON_HEDLEY_DIAGNOSTIC_PUSH
#if defined(__clang__)
JSON_HEDLEY_PRAGMA(clang diagnostic ignored "-Wweak-vtables")
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wweak-vtables"
#endif
NLOHMANN_JSON_NAMESPACE_BEGIN
@@ -5198,7 +5198,9 @@ class other_error : public exception
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
JSON_HEDLEY_DIAGNOSTIC_POP
#if defined(__clang__)
#pragma clang diagnostic pop
#endif
// #include <nlohmann/detail/macro_scope.hpp>
@@ -5973,8 +5975,6 @@ NLOHMANN_JSON_NAMESPACE_END
// #include <nlohmann/detail/abi_macros.hpp>
// #include <nlohmann/detail/macro_scope.hpp>
// #include <nlohmann/detail/meta/type_traits.hpp>
// #include <nlohmann/detail/string_utils.hpp>
@@ -6204,10 +6204,10 @@ NLOHMANN_JSON_NAMESPACE_END
namespace std
{
// Fix: https://github.com/nlohmann/json/issues/1401
JSON_HEDLEY_DIAGNOSTIC_PUSH
#if defined(__clang__)
JSON_HEDLEY_PRAGMA(clang diagnostic ignored "-Wmismatched-tags")
// Fix: https://github.com/nlohmann/json/issues/1401
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wmismatched-tags"
#endif
template<typename IteratorType>
class tuple_size<::nlohmann::detail::iteration_proxy_value<IteratorType>> // NOLINT(cert-dcl58-cpp)
@@ -6221,7 +6221,9 @@ class tuple_element<N, ::nlohmann::detail::iteration_proxy_value<IteratorType >>
get<N>(std::declval <
::nlohmann::detail::iteration_proxy_value<IteratorType >> ()));
};
JSON_HEDLEY_DIAGNOSTIC_POP
#if defined(__clang__)
#pragma clang diagnostic pop
#endif
} // namespace std
@@ -18653,6 +18655,20 @@ class binary_writer
return 'D'; // float 64
}
/*!
@brief checks whether a JSON number fits into @a TargetType
@param[in] el a JSON number of either the signed or unsigned integer kind
@return whether @a el's value can be represented by @a TargetType without
wrapping, regardless of which of the two kinds it is stored as
*/
template<typename TargetType>
static bool bjdata_ndarray_value_in_range(const BasicJsonType& el)
{
return el.is_number_unsigned()
? value_in_range_of<TargetType>(el.template get<std::uint64_t>())
: value_in_range_of<TargetType>(el.template get<std::int64_t>());
}
/*!
@return false if the object is successfully converted to a bjdata ndarray, true if the type or size is invalid
*/
@@ -18664,6 +18680,16 @@ class binary_writer
};
string_t key = "_ArrayType_";
// the type name is looked up as a string below; a non-string
// annotation (e.g. a number, null, or an array) cannot name a known
// dtype, so it is treated the same as an unrecognized type name and
// falls back to a plain object encoding instead of throwing
// type_error.302 out of get<string_t>()
if (!value.at(key).is_string())
{
return true;
}
// use get<string_t>() instead of static_cast<string_t> to avoid an
// ambiguous conversion under explicit instantiation on C++17 (see #4825)
auto it = bjdtype.find(value.at(key).template get<string_t>());
@@ -18673,6 +18699,16 @@ class binary_writer
}
CharType dtype = it->second;
// the 'B' (byte) marker is only defined by BJData Draft 3; emitting it
// under the default Draft 2 mode would produce a stream that Draft 2
// readers reject, so such an object falls back to a plain object
// encoding instead (see the "Binary values" section of the BJData
// documentation)
if (dtype == 'B' && bjdata_version != bjdata_version_t::draft3)
{
return true;
}
key = "_ArraySize_";
// the dimensions are written verbatim as the header length below, so a
// value that is not an array cannot produce a valid one: null emits 'Z'
@@ -18737,6 +18773,60 @@ class binary_writer
}
}
// every element is cast to the (possibly narrower) C++ type matching
// dtype below; a value that does not fit that type would silently
// wrap (integers) or overflow to infinity (the "single" precision
// float) instead of being reported, so such an object falls back to
// a plain object encoding as well
for (const auto& el : value.at(key))
{
bool in_range = true;
switch (dtype)
{
case 'U':
case 'C':
case 'B':
in_range = bjdata_ndarray_value_in_range<std::uint8_t>(el);
break;
case 'i':
in_range = bjdata_ndarray_value_in_range<std::int8_t>(el);
break;
case 'u':
in_range = bjdata_ndarray_value_in_range<std::uint16_t>(el);
break;
case 'I':
in_range = bjdata_ndarray_value_in_range<std::int16_t>(el);
break;
case 'm':
in_range = bjdata_ndarray_value_in_range<std::uint32_t>(el);
break;
case 'l':
in_range = bjdata_ndarray_value_in_range<std::int32_t>(el);
break;
case 'M':
in_range = bjdata_ndarray_value_in_range<std::uint64_t>(el);
break;
case 'L':
in_range = bjdata_ndarray_value_in_range<std::int64_t>(el);
break;
case 'd':
{
const auto dval = el.template get<double>();
in_range = !std::isfinite(dval) ||
(dval >= static_cast<double>(std::numeric_limits<float>::lowest()) &&
dval <= static_cast<double>((std::numeric_limits<float>::max)()));
break;
}
default:
// 'D' (double) already spans the full range of number_float_t
break;
}
if (!in_range)
{
return true;
}
}
oa->write_character('[');
oa->write_character('$');
oa->write_character(dtype);
@@ -18855,9 +18945,9 @@ class binary_writer
void write_compact_float(const number_float_t n, detail::input_format_t format)
{
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
if (!std::isfinite(n) || ((static_cast<double>(n) >= static_cast<double>(std::numeric_limits<float>::lowest()) &&
static_cast<double>(n) <= static_cast<double>((std::numeric_limits<float>::max)()) &&
@@ -18875,7 +18965,9 @@ class binary_writer
: get_msgpack_float_prefix(n));
write_number(n);
}
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
}
public:
@@ -20048,9 +20140,9 @@ char* to_chars(char* first, const char* last, FloatType value)
*first++ = '-';
}
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
if (value == 0) // +-0
{
@@ -20060,7 +20152,9 @@ char* to_chars(char* first, const char* last, FloatType value)
*first++ = '0';
return first;
}
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
JSON_ASSERT(last - first >= std::numeric_limits<FloatType>::max_digits10);
@@ -25191,13 +25285,15 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
/// @sa https://json.nlohmann.me/api/basic_json/operator_eq/
bool operator==(const_reference rhs) const noexcept
{
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
const_reference lhs = *this;
JSON_IMPLEMENT_OPERATOR( ==, true, false, false)
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
}
/// @brief comparison: equal
@@ -25282,12 +25378,14 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
/// @sa https://json.nlohmann.me/api/basic_json/operator_eq/
friend bool operator==(const_reference lhs, const_reference rhs) noexcept
{
JSON_HEDLEY_DIAGNOSTIC_PUSH
#ifdef __GNUC__
JSON_HEDLEY_PRAGMA(GCC diagnostic ignored "-Wfloat-equal")
#pragma GCC diagnostic push
#pragma GCC diagnostic ignored "-Wfloat-equal"
#endif
JSON_IMPLEMENT_OPERATOR( ==, true, false, false)
JSON_HEDLEY_DIAGNOSTIC_POP
#ifdef __GNUC__
#pragma GCC diagnostic pop
#endif
}
/// @brief comparison: equal
@@ -26955,7 +27053,7 @@ struct formatter<nlohmann::NLOHMANN_BASIC_JSON_TPL, char> // NOLINT(cert-dcl58-c
#undef JSON_HEDLEY_CLANG_HAS_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_BUILTIN
#undef JSON_HEDLEY_CLANG_HAS_CPP_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_DECLSPEC_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_DECLSPEC_DECLSPEC_ATTRIBUTE
#undef JSON_HEDLEY_CLANG_HAS_EXTENSION
#undef JSON_HEDLEY_CLANG_HAS_FEATURE
#undef JSON_HEDLEY_CLANG_HAS_WARNING
@@ -27046,10 +27144,7 @@ struct formatter<nlohmann::NLOHMANN_BASIC_JSON_TPL, char> // NOLINT(cert-dcl58-c
#undef JSON_HEDLEY_PELLES_VERSION_CHECK
#undef JSON_HEDLEY_PGI_VERSION
#undef JSON_HEDLEY_PGI_VERSION_CHECK
#undef JSON_HEDLEY_PRAGMA
#undef JSON_HEDLEY_PREDICT
#undef JSON_HEDLEY_PREDICT_FALSE
#undef JSON_HEDLEY_PREDICT_TRUE
#undef JSON_HEDLEY_PRINTF_FORMAT
#undef JSON_HEDLEY_PRIVATE
#undef JSON_HEDLEY_PUBLIC
+127 -2
View File
@@ -2586,7 +2586,12 @@ TEST_CASE("BJData")
CHECK(json::to_bjdata(json::from_bjdata(v_d), true, true) == v_d);
CHECK(json::to_bjdata(json::from_bjdata(v_D), true, true) == v_D);
CHECK(json::to_bjdata(json::from_bjdata(v_C), true, true) == v_C);
CHECK(json::to_bjdata(json::from_bjdata(v_B), true, true) == v_B);
// v_B uses the Draft-3-only 'B' marker, so it round-trips only when
// Draft 3 is explicitly selected (see GitHub issue #5404); the
// default Draft 2 falls back to a plain object instead, covered by
// the "ndarray with _ArrayType_ "byte" is gated by the BJData draft
// version" section below
CHECK(json::to_bjdata(json::from_bjdata(v_B), true, true, json::bjdata_version_t::draft3) == v_B);
}
SECTION("ndarray with data not matching _ArrayType_ is written as an object")
@@ -2629,8 +2634,10 @@ TEST_CASE("BJData")
// the C++ API stores an int literal as number_integer, so _ArrayType_
// names the wire type rather than the storage. Both storages have to
// produce the same typed array for every type.
// "byte" is checked separately below since it additionally requires
// BJData Draft 3 to be selected explicitly (see GitHub issue #5404).
for (const char* type :
{"uint8", "int8", "uint16", "int16", "uint32", "int32", "uint64", "int64", "char", "byte"
{"uint8", "int8", "uint16", "int16", "uint32", "int32", "uint64", "int64", "char"
})
{
CAPTURE(type);
@@ -2641,6 +2648,14 @@ TEST_CASE("BJData")
CHECK(from_text == json::to_bjdata(json({{"_ArrayType_", type}, {"_ArraySize_", {2, 3}}, {"_ArrayData_", {1, 2, 3, 4, 5, 6}}})));
}
{
const std::string text = R"({"_ArrayType_":"byte","_ArraySize_":[2,3],"_ArrayData_":[1,2,3,4,5,6]})";
const auto from_text = json::to_bjdata(json::parse(text), true, true, json::bjdata_version_t::draft3);
CHECK(from_text.at(0) == '[');
CHECK(from_text == json::to_bjdata(json({{"_ArrayType_", "byte"}, {"_ArraySize_", {2, 3}}, {"_ArrayData_", {1, 2, 3, 4, 5, 6}}}),
true, true, json::bjdata_version_t::draft3));
}
// negative values under a signed type behave the same way
const auto from_neg = json::to_bjdata(json::parse(R"({"_ArrayType_":"int32","_ArraySize_":[2],"_ArrayData_":[-5,7]})"));
CHECK(from_neg.at(0) == '[');
@@ -2731,6 +2746,39 @@ TEST_CASE("BJData")
CHECK(json::from_bjdata(json::to_bjdata(j_size), true, true) == j_size);
}
SECTION("ndarray whose _ArrayType_ is not a string stays as object")
{
// the type name is looked up as a string below the annotation
// check; a non-string _ArrayType_ cannot name a known dtype,
// so calling get<string_t>() on it would throw type_error.302
// instead of falling back like an unrecognized type name
// already does (see GitHub issue #5398)
json const j_number = json({{"_ArrayType_", 1}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 2}}});
const auto out_number = json::to_bjdata(j_number);
CHECK(out_number.at(0) == '{');
CHECK(json::from_bjdata(out_number) == j_number);
json const j_null = json({{"_ArrayType_", nullptr}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 2}}});
const auto out_null = json::to_bjdata(j_null);
CHECK(out_null.at(0) == '{');
CHECK(json::from_bjdata(out_null) == j_null);
json const j_bool = json({{"_ArrayType_", true}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 2}}});
const auto out_bool = json::to_bjdata(j_bool);
CHECK(out_bool.at(0) == '{');
CHECK(json::from_bjdata(out_bool) == j_bool);
json const j_array = json({{"_ArrayType_", {"uint8"}}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 2}}});
const auto out_array = json::to_bjdata(j_array);
CHECK(out_array.at(0) == '{');
CHECK(json::from_bjdata(out_array) == j_array);
json const j_object = json({{"_ArrayType_", {{"a", 1}}}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 2}}});
const auto out_object = json::to_bjdata(j_object);
CHECK(out_object.at(0) == '{');
CHECK(json::from_bjdata(out_object) == j_object);
}
SECTION("ndarray whose dimensions overflow stays as object")
{
// the product of the dimensions wraps around std::size_t to 0
@@ -2776,6 +2824,83 @@ TEST_CASE("BJData")
CHECK(out_num.at(0) == '{');
CHECK(json::from_bjdata(out_num) == j_num);
}
SECTION("ndarray with out-of-range _ArrayData_ elements stays as object")
{
// each element is cast to the (possibly narrower) C++ type
// named by _ArrayType_ before being written; a value that
// does not fit that type would silently wrap instead of
// being reported, so such an object falls back to a plain
// object encoding that still round-trips (see GitHub issue #5403)
// an unsigned element that does not fit uint8
json const j_uint8 = json({{"_ArrayType_", "uint8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 256}}});
const auto out_uint8 = json::to_bjdata(j_uint8);
CHECK(out_uint8.at(0) == '{');
CHECK(json::from_bjdata(out_uint8) == j_uint8);
// a signed element that does not fit int8
json const j_int8 = json({{"_ArrayType_", "int8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, 200}}});
const auto out_int8 = json::to_bjdata(j_int8);
CHECK(out_int8.at(0) == '{');
CHECK(json::from_bjdata(out_int8) == j_int8);
// a negative element is likewise out of range for an
// unsigned _ArrayType_
json const j_uint16_neg = json({{"_ArrayType_", "uint16"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1, -1}}});
const auto out_uint16_neg = json::to_bjdata(j_uint16_neg);
CHECK(out_uint16_neg.at(0) == '{');
CHECK(json::from_bjdata(out_uint16_neg) == j_uint16_neg);
// a double element that overflows to infinity when narrowed
// to the "single" (float) precision named by _ArrayType_
json const j_single = json({{"_ArrayType_", "single"}, {"_ArraySize_", {2}}, {"_ArrayData_", {1.5, 1e40}}});
const auto out_single = json::to_bjdata(j_single);
CHECK(out_single.at(0) == '{');
CHECK(json::from_bjdata(out_single) == j_single);
// in-range boundary values still use the compact ndarray encoding
json const j_uint8_ok = json({{"_ArrayType_", "uint8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {0, 255}}});
CHECK(json::to_bjdata(j_uint8_ok) == std::vector<uint8_t>({'[', '$', 'U', '#', '[', 'i', 2, ']', 0, 255}));
json const j_int8_ok = json({{"_ArrayType_", "int8"}, {"_ArraySize_", {2}}, {"_ArrayData_", {-128, 127}}});
CHECK(json::to_bjdata(j_int8_ok) == std::vector<uint8_t>({'[', '$', 'i', '#', '[', 'i', 2, ']', 0x80, 0x7F}));
json const j_single_ok = json({{"_ArrayType_", "single"}, {"_ArraySize_", {1}}, {"_ArrayData_", {1.5}}});
const auto out_single_ok = json::to_bjdata(j_single_ok);
CHECK(out_single_ok.at(0) == '[');
CHECK(json::from_bjdata(out_single_ok) == json({1.5f}));
}
SECTION("ndarray with _ArrayType_ \"byte\" is gated by the BJData draft version")
{
// the 'B' (byte) marker used by _ArrayType_ "byte" is only defined
// by BJData Draft 3; Draft 2 (the default) has no such marker, so
// emitting it unconditionally produced a stream that a Draft 2
// reader could not parse as intended (see GitHub issue #5404).
// Two dimensions are used so that a successfully written ndarray
// round-trips back into the annotated object (a single dimension
// is, by the BJData ndarray convention, read back as a plain
// binary value rather than the annotated object, same as every
// other single-dimension ndarray of a non-"byte" type is read
// back as a plain array instead of the annotated object).
json const j_byte = json({{"_ArrayType_", "byte"}, {"_ArraySize_", {2, 3}}, {"_ArrayData_", {1, 2, 3, 4, 5, 6}}});
// default (Draft 2): falls back to a plain object and round-trips
const auto out_draft2 = json::to_bjdata(j_byte);
CHECK(out_draft2.at(0) == '{');
CHECK(json::from_bjdata(out_draft2) == j_byte);
// explicit Draft 2: same as the default
const auto out_draft2_explicit = json::to_bjdata(j_byte, true, true, json::bjdata_version_t::draft2);
CHECK(out_draft2_explicit.at(0) == '{');
CHECK(json::from_bjdata(out_draft2_explicit) == j_byte);
// Draft 3 explicitly selected: still uses the compact 'B' ndarray encoding
const auto out_draft3 = json::to_bjdata(j_byte, true, true, json::bjdata_version_t::draft3);
CHECK(out_draft3 == std::vector<uint8_t>({'[', '$', 'B', '#', '[', '$', 'i', '#', 'i', 2, 2, 3, 1, 2, 3, 4, 5, 6}));
CHECK(json::from_bjdata(out_draft3) == j_byte);
}
}
}
-486
View File
@@ -1,486 +0,0 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
// This file makes sure that none of the internal JSON_HEDLEY_* macros (vendored
// from https://nemequ.github.io/hedley/, see
// include/nlohmann/thirdparty/hedley/hedley.hpp) leak into the including
// translation unit. include/nlohmann/detail/macro_unscope.hpp is supposed to
// #undef every JSON_HEDLEY_* macro (via hedley_undef.hpp) once json.hpp has
// been fully processed. See https://github.com/nlohmann/json/issues/5408,
// where JSON_HEDLEY_PRAGMA, JSON_HEDLEY_PREDICT_TRUE, JSON_HEDLEY_PREDICT_FALSE,
// and JSON_HEDLEY_CLANG_HAS_DECLSPEC_ATTRIBUTE escaped this cleanup because
// hedley_undef.hpp had no matching #undef for them.
//
// The #ifdef/#error checks below are mechanically derived from the full list
// of macro names in hedley_undef.hpp, so every JSON_HEDLEY_* macro is covered
// -- not just the four that leaked historically.
#include "doctest_compatibility.h"
#include <nlohmann/json.hpp>
#ifdef JSON_HEDLEY_ALWAYS_INLINE
#error "JSON_HEDLEY_ALWAYS_INLINE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_ARM_VERSION
#error "JSON_HEDLEY_ARM_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_ARM_VERSION_CHECK
#error "JSON_HEDLEY_ARM_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_ARRAY_PARAM
#error "JSON_HEDLEY_ARRAY_PARAM must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_ASSUME
#error "JSON_HEDLEY_ASSUME must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_BEGIN_C_DECLS
#error "JSON_HEDLEY_BEGIN_C_DECLS must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CLANG_HAS_ATTRIBUTE
#error "JSON_HEDLEY_CLANG_HAS_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CLANG_HAS_BUILTIN
#error "JSON_HEDLEY_CLANG_HAS_BUILTIN must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CLANG_HAS_CPP_ATTRIBUTE
#error "JSON_HEDLEY_CLANG_HAS_CPP_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CLANG_HAS_DECLSPEC_ATTRIBUTE
#error "JSON_HEDLEY_CLANG_HAS_DECLSPEC_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CLANG_HAS_EXTENSION
#error "JSON_HEDLEY_CLANG_HAS_EXTENSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CLANG_HAS_FEATURE
#error "JSON_HEDLEY_CLANG_HAS_FEATURE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CLANG_HAS_WARNING
#error "JSON_HEDLEY_CLANG_HAS_WARNING must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_COMPCERT_VERSION
#error "JSON_HEDLEY_COMPCERT_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_COMPCERT_VERSION_CHECK
#error "JSON_HEDLEY_COMPCERT_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CONCAT
#error "JSON_HEDLEY_CONCAT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CONCAT3
#error "JSON_HEDLEY_CONCAT3 must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CONCAT3_EX
#error "JSON_HEDLEY_CONCAT3_EX must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CONCAT_EX
#error "JSON_HEDLEY_CONCAT_EX must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CONST
#error "JSON_HEDLEY_CONST must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CONSTEXPR
#error "JSON_HEDLEY_CONSTEXPR must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CONST_CAST
#error "JSON_HEDLEY_CONST_CAST must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CPP_CAST
#error "JSON_HEDLEY_CPP_CAST must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CRAY_VERSION
#error "JSON_HEDLEY_CRAY_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_CRAY_VERSION_CHECK
#error "JSON_HEDLEY_CRAY_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_C_DECL
#error "JSON_HEDLEY_C_DECL must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DEPRECATED
#error "JSON_HEDLEY_DEPRECATED must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DEPRECATED_FOR
#error "JSON_HEDLEY_DEPRECATED_FOR must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_DISABLE_CAST_QUAL
#error "JSON_HEDLEY_DIAGNOSTIC_DISABLE_CAST_QUAL must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_DISABLE_CPP98_COMPAT_WRAP_
#error "JSON_HEDLEY_DIAGNOSTIC_DISABLE_CPP98_COMPAT_WRAP_ must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_DISABLE_DEPRECATED
#error "JSON_HEDLEY_DIAGNOSTIC_DISABLE_DEPRECATED must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_DISABLE_UNKNOWN_CPP_ATTRIBUTES
#error "JSON_HEDLEY_DIAGNOSTIC_DISABLE_UNKNOWN_CPP_ATTRIBUTES must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_DISABLE_UNKNOWN_PRAGMAS
#error "JSON_HEDLEY_DIAGNOSTIC_DISABLE_UNKNOWN_PRAGMAS must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_DISABLE_UNUSED_FUNCTION
#error "JSON_HEDLEY_DIAGNOSTIC_DISABLE_UNUSED_FUNCTION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_POP
#error "JSON_HEDLEY_DIAGNOSTIC_POP must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DIAGNOSTIC_PUSH
#error "JSON_HEDLEY_DIAGNOSTIC_PUSH must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DMC_VERSION
#error "JSON_HEDLEY_DMC_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_DMC_VERSION_CHECK
#error "JSON_HEDLEY_DMC_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_EMPTY_BASES
#error "JSON_HEDLEY_EMPTY_BASES must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_EMSCRIPTEN_VERSION
#error "JSON_HEDLEY_EMSCRIPTEN_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_EMSCRIPTEN_VERSION_CHECK
#error "JSON_HEDLEY_EMSCRIPTEN_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_END_C_DECLS
#error "JSON_HEDLEY_END_C_DECLS must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_FALL_THROUGH
#error "JSON_HEDLEY_FALL_THROUGH must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_FLAGS
#error "JSON_HEDLEY_FLAGS must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_FLAGS_CAST
#error "JSON_HEDLEY_FLAGS_CAST must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_HAS_ATTRIBUTE
#error "JSON_HEDLEY_GCC_HAS_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_HAS_BUILTIN
#error "JSON_HEDLEY_GCC_HAS_BUILTIN must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_HAS_CPP_ATTRIBUTE
#error "JSON_HEDLEY_GCC_HAS_CPP_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_HAS_DECLSPEC_ATTRIBUTE
#error "JSON_HEDLEY_GCC_HAS_DECLSPEC_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_HAS_EXTENSION
#error "JSON_HEDLEY_GCC_HAS_EXTENSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_HAS_FEATURE
#error "JSON_HEDLEY_GCC_HAS_FEATURE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_HAS_WARNING
#error "JSON_HEDLEY_GCC_HAS_WARNING must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_NOT_CLANG_VERSION_CHECK
#error "JSON_HEDLEY_GCC_NOT_CLANG_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_VERSION
#error "JSON_HEDLEY_GCC_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GCC_VERSION_CHECK
#error "JSON_HEDLEY_GCC_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_HAS_ATTRIBUTE
#error "JSON_HEDLEY_GNUC_HAS_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_HAS_BUILTIN
#error "JSON_HEDLEY_GNUC_HAS_BUILTIN must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_HAS_CPP_ATTRIBUTE
#error "JSON_HEDLEY_GNUC_HAS_CPP_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_HAS_DECLSPEC_ATTRIBUTE
#error "JSON_HEDLEY_GNUC_HAS_DECLSPEC_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_HAS_EXTENSION
#error "JSON_HEDLEY_GNUC_HAS_EXTENSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_HAS_FEATURE
#error "JSON_HEDLEY_GNUC_HAS_FEATURE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_HAS_WARNING
#error "JSON_HEDLEY_GNUC_HAS_WARNING must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_VERSION
#error "JSON_HEDLEY_GNUC_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_GNUC_VERSION_CHECK
#error "JSON_HEDLEY_GNUC_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_ATTRIBUTE
#error "JSON_HEDLEY_HAS_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_BUILTIN
#error "JSON_HEDLEY_HAS_BUILTIN must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_CPP_ATTRIBUTE
#error "JSON_HEDLEY_HAS_CPP_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_CPP_ATTRIBUTE_NS
#error "JSON_HEDLEY_HAS_CPP_ATTRIBUTE_NS must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_DECLSPEC_ATTRIBUTE
#error "JSON_HEDLEY_HAS_DECLSPEC_ATTRIBUTE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_EXTENSION
#error "JSON_HEDLEY_HAS_EXTENSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_FEATURE
#error "JSON_HEDLEY_HAS_FEATURE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_HAS_WARNING
#error "JSON_HEDLEY_HAS_WARNING must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_IAR_VERSION
#error "JSON_HEDLEY_IAR_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_IAR_VERSION_CHECK
#error "JSON_HEDLEY_IAR_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_IBM_VERSION
#error "JSON_HEDLEY_IBM_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_IBM_VERSION_CHECK
#error "JSON_HEDLEY_IBM_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_IMPORT
#error "JSON_HEDLEY_IMPORT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_INLINE
#error "JSON_HEDLEY_INLINE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_INTEL_CL_VERSION
#error "JSON_HEDLEY_INTEL_CL_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_INTEL_CL_VERSION_CHECK
#error "JSON_HEDLEY_INTEL_CL_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_INTEL_VERSION
#error "JSON_HEDLEY_INTEL_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_INTEL_VERSION_CHECK
#error "JSON_HEDLEY_INTEL_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_IS_CONSTANT
#error "JSON_HEDLEY_IS_CONSTANT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_IS_CONSTEXPR_
#error "JSON_HEDLEY_IS_CONSTEXPR_ must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_LIKELY
#error "JSON_HEDLEY_LIKELY must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_MALLOC
#error "JSON_HEDLEY_MALLOC must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_MCST_LCC_VERSION
#error "JSON_HEDLEY_MCST_LCC_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_MCST_LCC_VERSION_CHECK
#error "JSON_HEDLEY_MCST_LCC_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_MESSAGE
#error "JSON_HEDLEY_MESSAGE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_MSVC_VERSION
#error "JSON_HEDLEY_MSVC_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_MSVC_VERSION_CHECK
#error "JSON_HEDLEY_MSVC_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_NEVER_INLINE
#error "JSON_HEDLEY_NEVER_INLINE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_NON_NULL
#error "JSON_HEDLEY_NON_NULL must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_NO_ESCAPE
#error "JSON_HEDLEY_NO_ESCAPE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_NO_RETURN
#error "JSON_HEDLEY_NO_RETURN must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_NO_THROW
#error "JSON_HEDLEY_NO_THROW must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_NULL
#error "JSON_HEDLEY_NULL must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PELLES_VERSION
#error "JSON_HEDLEY_PELLES_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PELLES_VERSION_CHECK
#error "JSON_HEDLEY_PELLES_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PGI_VERSION
#error "JSON_HEDLEY_PGI_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PGI_VERSION_CHECK
#error "JSON_HEDLEY_PGI_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PRAGMA
#error "JSON_HEDLEY_PRAGMA must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PREDICT
#error "JSON_HEDLEY_PREDICT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PREDICT_FALSE
#error "JSON_HEDLEY_PREDICT_FALSE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PREDICT_TRUE
#error "JSON_HEDLEY_PREDICT_TRUE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PRINTF_FORMAT
#error "JSON_HEDLEY_PRINTF_FORMAT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PRIVATE
#error "JSON_HEDLEY_PRIVATE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PUBLIC
#error "JSON_HEDLEY_PUBLIC must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_PURE
#error "JSON_HEDLEY_PURE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_REINTERPRET_CAST
#error "JSON_HEDLEY_REINTERPRET_CAST must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_REQUIRE
#error "JSON_HEDLEY_REQUIRE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_REQUIRE_CONSTEXPR
#error "JSON_HEDLEY_REQUIRE_CONSTEXPR must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_REQUIRE_MSG
#error "JSON_HEDLEY_REQUIRE_MSG must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_RESTRICT
#error "JSON_HEDLEY_RESTRICT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_RETURNS_NON_NULL
#error "JSON_HEDLEY_RETURNS_NON_NULL must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_SENTINEL
#error "JSON_HEDLEY_SENTINEL must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_STATIC_ASSERT
#error "JSON_HEDLEY_STATIC_ASSERT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_STATIC_CAST
#error "JSON_HEDLEY_STATIC_CAST must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_STRINGIFY
#error "JSON_HEDLEY_STRINGIFY must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_STRINGIFY_EX
#error "JSON_HEDLEY_STRINGIFY_EX must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_SUNPRO_VERSION
#error "JSON_HEDLEY_SUNPRO_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_SUNPRO_VERSION_CHECK
#error "JSON_HEDLEY_SUNPRO_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TINYC_VERSION
#error "JSON_HEDLEY_TINYC_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TINYC_VERSION_CHECK
#error "JSON_HEDLEY_TINYC_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_ARMCL_VERSION
#error "JSON_HEDLEY_TI_ARMCL_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_ARMCL_VERSION_CHECK
#error "JSON_HEDLEY_TI_ARMCL_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL2000_VERSION
#error "JSON_HEDLEY_TI_CL2000_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL2000_VERSION_CHECK
#error "JSON_HEDLEY_TI_CL2000_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL430_VERSION
#error "JSON_HEDLEY_TI_CL430_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL430_VERSION_CHECK
#error "JSON_HEDLEY_TI_CL430_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL6X_VERSION
#error "JSON_HEDLEY_TI_CL6X_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL6X_VERSION_CHECK
#error "JSON_HEDLEY_TI_CL6X_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL7X_VERSION
#error "JSON_HEDLEY_TI_CL7X_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CL7X_VERSION_CHECK
#error "JSON_HEDLEY_TI_CL7X_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CLPRU_VERSION
#error "JSON_HEDLEY_TI_CLPRU_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_CLPRU_VERSION_CHECK
#error "JSON_HEDLEY_TI_CLPRU_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_VERSION
#error "JSON_HEDLEY_TI_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_TI_VERSION_CHECK
#error "JSON_HEDLEY_TI_VERSION_CHECK must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_UNAVAILABLE
#error "JSON_HEDLEY_UNAVAILABLE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_UNLIKELY
#error "JSON_HEDLEY_UNLIKELY must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_UNPREDICTABLE
#error "JSON_HEDLEY_UNPREDICTABLE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_UNREACHABLE
#error "JSON_HEDLEY_UNREACHABLE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_UNREACHABLE_RETURN
#error "JSON_HEDLEY_UNREACHABLE_RETURN must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_VERSION
#error "JSON_HEDLEY_VERSION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_VERSION_DECODE_MAJOR
#error "JSON_HEDLEY_VERSION_DECODE_MAJOR must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_VERSION_DECODE_MINOR
#error "JSON_HEDLEY_VERSION_DECODE_MINOR must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_VERSION_DECODE_REVISION
#error "JSON_HEDLEY_VERSION_DECODE_REVISION must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_VERSION_ENCODE
#error "JSON_HEDLEY_VERSION_ENCODE must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_WARNING
#error "JSON_HEDLEY_WARNING must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_WARN_UNUSED_RESULT
#error "JSON_HEDLEY_WARN_UNUSED_RESULT must not remain defined after including json.hpp"
#endif
#ifdef JSON_HEDLEY_WARN_UNUSED_RESULT_MSG
#error "JSON_HEDLEY_WARN_UNUSED_RESULT_MSG must not remain defined after including json.hpp"
#endif
TEST_CASE("no JSON_HEDLEY_* macro leaks after including json.hpp")
{
// if this test compiles at all, none of the JSON_HEDLEY_* macros checked
// above remained defined after including <nlohmann/json.hpp>
CHECK(true);
}