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Author SHA1 Message Date
Niels Lohmann 404427ab72 Merge branch 'develop' into claude/noexception-value-json-pointer-5672
Conflicts:
- tests/src/unit-disabled_exceptions.cpp: kept both new sections (#5672 value(json_pointer) test and develop's ordered_json growth test)

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-30 20:31:16 +02:00
Niels Lohmann 57890cebad Fix value(json_pointer, default) aborting under JSON_NOEXCEPTION
With exceptions disabled (JSON_NOEXCEPTION or -fno-exceptions),
value(const json_pointer&, default) called std::abort() for array
reference tokens that array_index() rejects with out_of_range.404/410:
indices too large to fit size_type, the empty token ("/"), and tokens
like "/1a". With exceptions enabled, the same tokens correctly yielded
the default value, because get_checked_or_null() relied on
JSON_TRY/JSON_INTERNAL_CATCH (detail::out_of_range&) to turn the
exception into nullptr; under JSON_NOEXCEPTION, JSON_THROW aborts
before that catch is ever reached.

get_checked_or_null() now detects those out-of-range tokens itself,
the same way contains(json_pointer) already does (#5495), and only
calls array_index() for tokens that must still raise parse_error.106
or parse_error.109 (e.g. "/01", "/+1"), matching the documented
behavior of value().

Added regression tests to tests/src/unit-disabled_exceptions.cpp
(built with JSON_NOEXCEPTION and -fno-exceptions) and the matching
checks to tests/src/unit-element_access2.cpp for normal exception
mode.

Fixes #5672.
Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-29 23:41:00 +02:00
19 changed files with 923 additions and 588 deletions
+1
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@@ -53,6 +53,7 @@ cc_library(
"include/nlohmann/detail/meta/detected.hpp", "include/nlohmann/detail/meta/detected.hpp",
"include/nlohmann/detail/meta/identity_tag.hpp", "include/nlohmann/detail/meta/identity_tag.hpp",
"include/nlohmann/detail/meta/is_sax.hpp", "include/nlohmann/detail/meta/is_sax.hpp",
"include/nlohmann/detail/meta/logic.hpp",
"include/nlohmann/detail/meta/std_fs.hpp", "include/nlohmann/detail/meta/std_fs.hpp",
"include/nlohmann/detail/meta/type_traits.hpp", "include/nlohmann/detail/meta/type_traits.hpp",
"include/nlohmann/detail/meta/void_t.hpp", "include/nlohmann/detail/meta/void_t.hpp",
@@ -27,6 +27,7 @@
#include <nlohmann/detail/meta/identity_tag.hpp> #include <nlohmann/detail/meta/identity_tag.hpp>
#include <nlohmann/detail/meta/std_fs.hpp> #include <nlohmann/detail/meta/std_fs.hpp>
#include <nlohmann/detail/meta/type_traits.hpp> #include <nlohmann/detail/meta/type_traits.hpp>
#include <nlohmann/detail/meta/logic.hpp>
#include <nlohmann/detail/string_concat.hpp> #include <nlohmann/detail/string_concat.hpp>
#include <nlohmann/detail/value_t.hpp> #include <nlohmann/detail/value_t.hpp>
@@ -210,29 +211,62 @@ inline void from_json(const BasicJsonType& j, std::valarray<T>& l)
}); });
} }
// element is not itself a C array: read it directly
template<typename BasicJsonType, typename T>
auto from_json_c_array_element(const BasicJsonType& j, T& e)
-> decltype(e = j.template get<T>(), void())
{
e = j.template get<T>();
}
// element is itself a C array: recurse one dimension at a time, so any rank is supported
template<typename BasicJsonType, typename T, std::size_t N> template<typename BasicJsonType, typename T, std::size_t N>
void from_json_c_array_element(const BasicJsonType& j, T (&arr)[N]) // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) auto from_json(const BasicJsonType& j, T (&arr)[N]) // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
-> decltype(j.template get<T>(), void())
{ {
for (std::size_t i = 0; i < N; ++i) for (std::size_t i = 0; i < N; ++i)
{ {
from_json_c_array_element(j.at(i), arr[i]); arr[i] = j.at(i).template get<T>();
} }
} }
template<typename BasicJsonType, typename T, std::size_t N> template<typename BasicJsonType, typename T, std::size_t N1, std::size_t N2>
auto from_json(const BasicJsonType& j, T (&arr)[N]) // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) auto from_json(const BasicJsonType& j, T (&arr)[N1][N2]) // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
-> decltype(j.template get<typename std::remove_all_extents<T>::type>(), void()) -> decltype(j.template get<T>(), void())
{ {
from_json_c_array_element(j, arr); for (std::size_t i1 = 0; i1 < N1; ++i1)
{
for (std::size_t i2 = 0; i2 < N2; ++i2)
{
arr[i1][i2] = j.at(i1).at(i2).template get<T>();
}
}
}
template<typename BasicJsonType, typename T, std::size_t N1, std::size_t N2, std::size_t N3>
auto from_json(const BasicJsonType& j, T (&arr)[N1][N2][N3]) // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
-> decltype(j.template get<T>(), void())
{
for (std::size_t i1 = 0; i1 < N1; ++i1)
{
for (std::size_t i2 = 0; i2 < N2; ++i2)
{
for (std::size_t i3 = 0; i3 < N3; ++i3)
{
arr[i1][i2][i3] = j.at(i1).at(i2).at(i3).template get<T>();
}
}
}
}
template<typename BasicJsonType, typename T, std::size_t N1, std::size_t N2, std::size_t N3, std::size_t N4>
auto from_json(const BasicJsonType& j, T (&arr)[N1][N2][N3][N4]) // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
-> decltype(j.template get<T>(), void())
{
for (std::size_t i1 = 0; i1 < N1; ++i1)
{
for (std::size_t i2 = 0; i2 < N2; ++i2)
{
for (std::size_t i3 = 0; i3 < N3; ++i3)
{
for (std::size_t i4 = 0; i4 < N4; ++i4)
{
arr[i1][i2][i3][i4] = j.at(i1).at(i2).at(i3).at(i4).template get<T>();
}
}
}
}
} }
template<typename BasicJsonType> template<typename BasicJsonType>
@@ -252,33 +286,20 @@ auto from_json_array_impl(const BasicJsonType& j, std::array<T, N>& arr,
} }
} }
// reserve() is called through this pair (modeled on from_json_object_reserve)
// so from_json_array_impl below has a single body for both ConstructibleArrayType
// that support reserve() and those that don't.
template<typename ConstructibleArrayType>
auto from_json_array_reserve(ConstructibleArrayType& arr, typename ConstructibleArrayType::size_type size, priority_tag<1> /*unused*/)
-> decltype(arr.reserve(size), void())
{
arr.reserve(size);
}
template<typename ConstructibleArrayType>
inline void from_json_array_reserve(ConstructibleArrayType& /*arr*/, std::size_t /*size*/, priority_tag<0> /*unused*/)
{}
template<typename BasicJsonType, typename ConstructibleArrayType, template<typename BasicJsonType, typename ConstructibleArrayType,
enable_if_t< enable_if_t<
std::is_assignable<ConstructibleArrayType&, ConstructibleArrayType>::value, std::is_assignable<ConstructibleArrayType&, ConstructibleArrayType>::value,
int> = 0> int> = 0>
auto from_json_array_impl(const BasicJsonType& j, ConstructibleArrayType& arr, priority_tag<1> /*unused*/) auto from_json_array_impl(const BasicJsonType& j, ConstructibleArrayType& arr, priority_tag<1> /*unused*/)
-> decltype( -> decltype(
arr.reserve(std::declval<typename ConstructibleArrayType::size_type>()),
j.template get<typename ConstructibleArrayType::value_type>(), j.template get<typename ConstructibleArrayType::value_type>(),
void()) void())
{ {
using std::end; using std::end;
ConstructibleArrayType ret; ConstructibleArrayType ret;
from_json_array_reserve(ret, j.size(), priority_tag<1> {}); ret.reserve(j.size());
std::transform(j.begin(), j.end(), std::transform(j.begin(), j.end(),
std::inserter(ret, end(ret)), [](const BasicJsonType & i) std::inserter(ret, end(ret)), [](const BasicJsonType & i)
{ {
@@ -289,6 +310,27 @@ auto from_json_array_impl(const BasicJsonType& j, ConstructibleArrayType& arr, p
arr = std::move(ret); arr = std::move(ret);
} }
template<typename BasicJsonType, typename ConstructibleArrayType,
enable_if_t<
std::is_assignable<ConstructibleArrayType&, ConstructibleArrayType>::value,
int> = 0>
inline void from_json_array_impl(const BasicJsonType& j, ConstructibleArrayType& arr,
priority_tag<0> /*unused*/)
{
using std::end;
ConstructibleArrayType ret;
std::transform(
j.begin(), j.end(), std::inserter(ret, end(ret)),
[](const BasicJsonType & i)
{
// get<BasicJsonType>() returns *this, this won't call a from_json
// method when value_type is BasicJsonType
return i.template get<typename ConstructibleArrayType::value_type>();
});
arr = std::move(ret);
}
template < typename BasicJsonType, typename ConstructibleArrayType, template < typename BasicJsonType, typename ConstructibleArrayType,
enable_if_t < enable_if_t <
is_constructible_array_type<BasicJsonType, ConstructibleArrayType>::value&& is_constructible_array_type<BasicJsonType, ConstructibleArrayType>::value&&
@@ -391,7 +433,9 @@ inline void from_json(const BasicJsonType& j, ConstructibleObjectType& obj)
} }
// overload for arithmetic types, not chosen for basic_json template arguments // overload for arithmetic types, not chosen for basic_json template arguments
// (BooleanType, etc.) // (BooleanType, etc.); note: Is it really necessary to provide explicit
// overloads for boolean_t etc. in case of a custom BooleanType which is not
// an arithmetic type?
template < typename BasicJsonType, typename ArithmeticType, template < typename BasicJsonType, typename ArithmeticType,
enable_if_t < enable_if_t <
std::is_arithmetic<ArithmeticType>::value&& std::is_arithmetic<ArithmeticType>::value&&
@@ -487,7 +531,7 @@ inline void from_json_tuple_impl(BasicJsonType&& j, std::pair<A1, A2>& p, priori
template<typename BasicJsonType, typename... Args> template<typename BasicJsonType, typename... Args>
std::tuple<Args...> from_json_tuple_impl(BasicJsonType&& j, identity_tag<std::tuple<Args...>> /*unused*/, priority_tag<2> /*unused*/) std::tuple<Args...> from_json_tuple_impl(BasicJsonType&& j, identity_tag<std::tuple<Args...>> /*unused*/, priority_tag<2> /*unused*/)
{ {
static_assert(conjunction<disjunction<negation<std::is_reference<Args>>, is_compatible_reference_type<BasicJsonType, Args>>...>::value, static_assert(cxpr_and<cxpr_or<cxpr_not<std::is_reference<Args>>, is_compatible_reference_type<BasicJsonType, Args>>...>::value,
"Can not return a tuple containing references to types not contained in a Json, try Json::get_to()"); "Can not return a tuple containing references to types not contained in a Json, try Json::get_to()");
return from_json_tuple_impl_base<1, Args...>(std::forward<BasicJsonType>(j), index_sequence_for<Args...> {}); return from_json_tuple_impl_base<1, Args...>(std::forward<BasicJsonType>(j), index_sequence_for<Args...> {});
} }
@@ -510,10 +554,10 @@ auto from_json(BasicJsonType&& j, TupleRelated&& t)
return from_json_tuple_impl(std::forward<BasicJsonType>(j), std::forward<TupleRelated>(t), priority_tag<3> {}); return from_json_tuple_impl(std::forward<BasicJsonType>(j), std::forward<TupleRelated>(t), priority_tag<3> {});
} }
// shared body for std::map/std::unordered_map with a non-string Key: both template < typename BasicJsonType, typename Key, typename Value, typename Compare, typename Allocator,
// containers are read from an array of [key, value] pairs the same way typename = enable_if_t < !std::is_constructible <
template<typename BasicJsonType, typename MapType> typename BasicJsonType::string_t, Key >::value >>
inline void from_json_pair_array_to_map(const BasicJsonType& j, MapType& m) inline void from_json(const BasicJsonType& j, std::map<Key, Value, Compare, Allocator>& m)
{ {
if (JSON_HEDLEY_UNLIKELY(!j.is_array())) if (JSON_HEDLEY_UNLIKELY(!j.is_array()))
{ {
@@ -526,29 +570,33 @@ inline void from_json_pair_array_to_map(const BasicJsonType& j, MapType& m)
{ {
JSON_THROW(type_error::create(302, concat("type must be array, but is ", p.type_name()), &p)); JSON_THROW(type_error::create(302, concat("type must be array, but is ", p.type_name()), &p));
} }
m.emplace(p.at(0).template get<typename MapType::key_type>(), p.at(1).template get<typename MapType::mapped_type>()); m.emplace(p.at(0).template get<Key>(), p.at(1).template get<Value>());
} }
} }
template < typename BasicJsonType, typename Key, typename Value, typename Compare, typename Allocator,
typename = enable_if_t < !std::is_constructible <
typename BasicJsonType::string_t, Key >::value >>
inline void from_json(const BasicJsonType& j, std::map<Key, Value, Compare, Allocator>& m)
{
from_json_pair_array_to_map(j, m);
}
template < typename BasicJsonType, typename Key, typename Value, typename Hash, typename KeyEqual, typename Allocator, template < typename BasicJsonType, typename Key, typename Value, typename Hash, typename KeyEqual, typename Allocator,
typename = enable_if_t < !std::is_constructible < typename = enable_if_t < !std::is_constructible <
typename BasicJsonType::string_t, Key >::value >> typename BasicJsonType::string_t, Key >::value >>
inline void from_json(const BasicJsonType& j, std::unordered_map<Key, Value, Hash, KeyEqual, Allocator>& m) inline void from_json(const BasicJsonType& j, std::unordered_map<Key, Value, Hash, KeyEqual, Allocator>& m)
{ {
from_json_pair_array_to_map(j, m); if (JSON_HEDLEY_UNLIKELY(!j.is_array()))
{
JSON_THROW(type_error::create(302, concat("type must be array, but is ", j.type_name()), &j));
}
m.clear();
for (const auto& p : j)
{
if (JSON_HEDLEY_UNLIKELY(!p.is_array()))
{
JSON_THROW(type_error::create(302, concat("type must be array, but is ", p.type_name()), &p));
}
m.emplace(p.at(0).template get<Key>(), p.at(1).template get<Value>());
}
} }
#if JSON_HAS_FILESYSTEM || JSON_HAS_EXPERIMENTAL_FILESYSTEM #if JSON_HAS_FILESYSTEM || JSON_HAS_EXPERIMENTAL_FILESYSTEM
// Workaround for MSVC 19.51 (and possibly later): in large cpp files, the compiler may fail to resolve with generic has_from_json (issue #4996) // Workaround for MSVC 19.51 (and possibly later): in large in large cpp files, the compiler may fail to resolve with generic has_from_json (issue #4996)
template<typename BasicJsonType> template<typename BasicJsonType>
struct has_from_json<BasicJsonType, std_fs::path, void> : std::true_type {}; struct has_from_json<BasicJsonType, std_fs::path, void> : std::true_type {};
@@ -178,7 +178,7 @@ struct external_constructor<value_t::array>
template < typename BasicJsonType, typename CompatibleArrayType, template < typename BasicJsonType, typename CompatibleArrayType,
enable_if_t < !std::is_same<CompatibleArrayType, typename BasicJsonType::array_t>::value enable_if_t < !std::is_same<CompatibleArrayType, typename BasicJsonType::array_t>::value
#if JSON_HAS_RANGE_VIEW_CONVERSION #if JSON_HAS_RANGES && !defined(__MINGW32__)
&& !is_compatible_range_view<CompatibleArrayType>::value && !is_compatible_range_view<CompatibleArrayType>::value
#endif #endif
, int > = 0 > , int > = 0 >
@@ -222,7 +222,9 @@ struct external_constructor<value_t::array>
j.assert_invariant(); j.assert_invariant();
} }
#if JSON_HAS_RANGE_VIEW_CONVERSION // std::ranges does not work properly on MinGW due to incomplete C++20 support
// see https://github.com/nlohmann/json/issues/4916
#if JSON_HAS_RANGES && !defined(__MINGW32__)
template<typename BasicJsonType, typename CompatibleArrayType, template<typename BasicJsonType, typename CompatibleArrayType,
enable_if_t<is_compatible_range_view<std::remove_cvref_t<CompatibleArrayType>>::value, int> = 0> enable_if_t<is_compatible_range_view<std::remove_cvref_t<CompatibleArrayType>>::value, int> = 0>
static void construct(BasicJsonType& j, CompatibleArrayType && arr) static void construct(BasicJsonType& j, CompatibleArrayType && arr)
@@ -377,7 +379,7 @@ template < typename BasicJsonType, typename CompatibleArrayType,
!std::is_same<typename BasicJsonType::binary_t, CompatibleArrayType>::value&& !std::is_same<typename BasicJsonType::binary_t, CompatibleArrayType>::value&&
!is_compatible_binary_type<BasicJsonType, CompatibleArrayType>::value&& !is_compatible_binary_type<BasicJsonType, CompatibleArrayType>::value&&
!is_basic_json<CompatibleArrayType>::value !is_basic_json<CompatibleArrayType>::value
#if JSON_HAS_RANGE_VIEW_CONVERSION #if JSON_HAS_RANGES && !defined(__MINGW32__)
&& !is_compatible_range_view<CompatibleArrayType>::value && !is_compatible_range_view<CompatibleArrayType>::value
#endif #endif
, ,
@@ -387,7 +389,7 @@ inline void to_json(BasicJsonType& j, const CompatibleArrayType& arr)
external_constructor<value_t::array>::construct(j, arr); external_constructor<value_t::array>::construct(j, arr);
} }
#if JSON_HAS_RANGE_VIEW_CONVERSION #if JSON_HAS_RANGES && !defined(__MINGW32__)
template < typename BasicJsonType, typename T, template < typename BasicJsonType, typename T,
enable_if_t < is_compatible_range_view<std::remove_cvref_t<T>>::value enable_if_t < is_compatible_range_view<std::remove_cvref_t<T>>::value
&& !is_compatible_string_type<BasicJsonType, std::remove_cvref_t<T>>::value && !is_compatible_string_type<BasicJsonType, std::remove_cvref_t<T>>::value
-21
View File
@@ -286,27 +286,6 @@ class other_error : public exception
other_error(int id_, const char* what_arg) : exception(id_, what_arg) {} other_error(int id_, const char* what_arg) : exception(id_, what_arg) {}
}; };
/*!
@brief helper function to call JSON_THROW from a template
@note JSON_THROW is a macro that, depending on the JSON_THROW_USER /
JSON_TRY_USER / JSON_NOEXCEPTION configuration, may expand to code
that does not reference its argument (e.g. `std::abort()`), which
would trigger a compilation error if the argument's type depends on
a template parameter that is otherwise unused. Wrapping the call in
a templated function avoids this and gives the compiler a single
place to see the (possibly unused) parameter.
*/
template<typename ExceptionType>
void templated_json_throw(ExceptionType exception)
{
JSON_THROW(exception);
// JSON_THROW may expand to code that discards its argument (e.g. when
// exceptions are disabled) - the cast below avoids an unused-parameter
// warning with -Werror in that case
(void)exception;
}
} // namespace detail } // namespace detail
NLOHMANN_JSON_NAMESPACE_END NLOHMANN_JSON_NAMESPACE_END
@@ -60,11 +60,9 @@ class iter_impl // NOLINT(cppcoreguidelines-special-member-functions,hicpp-speci
static_assert(is_basic_json<typename std::remove_const<BasicJsonType>::type>::value, static_assert(is_basic_json<typename std::remove_const<BasicJsonType>::type>::value,
"iter_impl only accepts (const) basic_json"); "iter_impl only accepts (const) basic_json");
// superficial check for the LegacyBidirectionalIterator named requirement // superficial check for the LegacyBidirectionalIterator named requirement
// note: only array_t::iterator is checked here; object_t::iterator may be static_assert(std::is_base_of<std::bidirectional_iterator_tag, std::bidirectional_iterator_tag>::value
// a forward-only iterator as long as reverse iteration and operator-- && std::is_base_of<std::bidirectional_iterator_tag, typename std::iterator_traits<typename array_t::iterator>::iterator_category>::value,
// are never used on it "basic_json iterator assumes array and object type iterators satisfy the LegacyBidirectionalIterator named requirement.");
static_assert(std::is_base_of<std::bidirectional_iterator_tag, typename std::iterator_traits<typename array_t::iterator>::iterator_category>::value,
"basic_json iterator assumes array type iterators satisfy the LegacyBidirectionalIterator named requirement.");
public: public:
/// The std::iterator class template (used as a base class to provide typedefs) is deprecated in C++17. /// The std::iterator class template (used as a base class to provide typedefs) is deprecated in C++17.
+135 -98
View File
@@ -240,72 +240,6 @@ class json_pointer
} }
private: private:
/*!
@brief result of @ref parse_array_index
@ref array_index maps each value to the corresponding parse_error/out_of_range
exception; @ref contains and @ref get_checked_or_null, which must not throw for
an out-of-range or unrepresentable index, switch on it directly instead.
*/
enum class array_index_status
{
ok, ///< @a s is a valid, representable array index
leading_zero, ///< @a s begins with '0' but has more than one character
not_a_number, ///< @a s does not begin with a digit
unresolved, ///< @a s could not be converted to an integer
exceeds_size_type ///< @a s converts to an integer that exceeds size_type
};
/*!
@param[in] s reference token to be converted into an array index
@param[out] idx the integer representation of @a s if @ref array_index_status::ok
is returned; left unchanged otherwise
@return whether @a s is a valid array index, and if not, why
@note this function never throws; @ref array_index and the callers that must not
throw (@ref contains, @ref get_checked_or_null) build on it instead of each
re-implementing the RFC 6901 digit rules and the @a size_type range check
*/
template<typename BasicJsonType>
static array_index_status parse_array_index(const string_t& s, typename BasicJsonType::size_type& idx) noexcept
{
using size_type = typename BasicJsonType::size_type;
// error condition (cf. RFC 6901, Sect. 4)
if (JSON_HEDLEY_UNLIKELY(s.size() > 1 && s[0] == '0'))
{
return array_index_status::leading_zero;
}
// error condition (cf. RFC 6901, Sect. 4)
if (JSON_HEDLEY_UNLIKELY(s.size() > 1 && !(s[0] >= '1' && s[0] <= '9')))
{
return array_index_status::not_a_number;
}
const char* p = s.data();
char* p_end = nullptr; // NOLINT(misc-const-correctness)
errno = 0; // strtoull doesn't reset errno
const unsigned long long res = std::strtoull(p, &p_end, 10); // NOLINT(runtime/int)
if (p == p_end // invalid input or empty string
|| errno == ERANGE // out of range
|| JSON_HEDLEY_UNLIKELY(static_cast<std::size_t>(p_end - p) != s.size())) // incomplete read
{
return array_index_status::unresolved;
}
// only triggered on special platforms (like 32bit), see also
// https://github.com/nlohmann/json/pull/2203
if (res >= static_cast<unsigned long long>((std::numeric_limits<size_type>::max)())) // NOLINT(runtime/int)
{
return array_index_status::exceeds_size_type; // LCOV_EXCL_LINE
}
idx = static_cast<size_type>(res);
return array_index_status::ok;
}
/*! /*!
@param[in] s reference token to be converted into an array index @param[in] s reference token to be converted into an array index
@@ -319,30 +253,39 @@ class json_pointer
template<typename BasicJsonType> template<typename BasicJsonType>
static typename BasicJsonType::size_type array_index(const string_t& s) static typename BasicJsonType::size_type array_index(const string_t& s)
{ {
typename BasicJsonType::size_type idx{}; using size_type = typename BasicJsonType::size_type;
const auto status = parse_array_index<BasicJsonType>(s, idx);
if (JSON_HEDLEY_UNLIKELY(status == array_index_status::leading_zero)) // error condition (cf. RFC 6901, Sect. 4)
if (JSON_HEDLEY_UNLIKELY(s.size() > 1 && s[0] == '0'))
{ {
JSON_THROW(detail::parse_error::create(106, 0, detail::concat("array index '", s, "' must not begin with '0'"), nullptr)); JSON_THROW(detail::parse_error::create(106, 0, detail::concat("array index '", s, "' must not begin with '0'"), nullptr));
} }
if (JSON_HEDLEY_UNLIKELY(status == array_index_status::not_a_number)) // error condition (cf. RFC 6901, Sect. 4)
if (JSON_HEDLEY_UNLIKELY(s.size() > 1 && !(s[0] >= '1' && s[0] <= '9')))
{ {
JSON_THROW(detail::parse_error::create(109, 0, detail::concat("array index '", s, "' is not a number"), nullptr)); JSON_THROW(detail::parse_error::create(109, 0, detail::concat("array index '", s, "' is not a number"), nullptr));
} }
if (JSON_HEDLEY_UNLIKELY(status == array_index_status::unresolved)) const char* p = s.data();
char* p_end = nullptr; // NOLINT(misc-const-correctness)
errno = 0; // strtoull doesn't reset errno
const unsigned long long res = std::strtoull(p, &p_end, 10); // NOLINT(runtime/int)
if (p == p_end // invalid input or empty string
|| errno == ERANGE // out of range
|| JSON_HEDLEY_UNLIKELY(static_cast<std::size_t>(p_end - p) != s.size())) // incomplete read
{ {
JSON_THROW(detail::out_of_range::create(404, detail::concat("unresolved reference token '", s, "'"), nullptr)); JSON_THROW(detail::out_of_range::create(404, detail::concat("unresolved reference token '", s, "'"), nullptr));
} }
if (JSON_HEDLEY_UNLIKELY(status == array_index_status::exceeds_size_type)) // only triggered on special platforms (like 32bit), see also
// https://github.com/nlohmann/json/pull/2203
if (res >= static_cast<unsigned long long>((std::numeric_limits<size_type>::max)())) // NOLINT(runtime/int)
{ {
JSON_THROW(detail::out_of_range::create(410, detail::concat("array index ", s, " exceeds size_type"), nullptr)); // LCOV_EXCL_LINE JSON_THROW(detail::out_of_range::create(410, detail::concat("array index ", s, " exceeds size_type"), nullptr)); // LCOV_EXCL_LINE
} }
return idx; return static_cast<size_type>(res);
} }
JSON_PRIVATE_UNLESS_TESTED: JSON_PRIVATE_UNLESS_TESTED:
@@ -641,6 +584,63 @@ class json_pointer
return *ptr; return *ptr;
} }
/*!
@throw parse_error.106 if an array index begins with '0'
@throw parse_error.109 if an array index was not a number
@throw out_of_range.402 if the array index '-' is used
@throw out_of_range.404 if the JSON pointer can not be resolved
*/
template<typename BasicJsonType>
const BasicJsonType& get_checked(const BasicJsonType* ptr) const
{
for (const auto& reference_token : reference_tokens)
{
switch (ptr->type())
{
case detail::value_t::object:
{
// note: at performs range check
ptr = &ptr->at(reference_token);
break;
}
case detail::value_t::array:
{
if (JSON_HEDLEY_UNLIKELY(reference_token == "-"))
{
// "-" always fails the range check
JSON_THROW(detail::out_of_range::create(402, detail::concat(
"array index '-' (", std::to_string(ptr->m_data.m_value.array->size()),
") is out of range"), ptr));
}
const auto idx = array_index<BasicJsonType>(reference_token);
// Bounds check before access to avoid exception with JSON_NOEXCEPTION
if (JSON_HEDLEY_UNLIKELY(idx >= ptr->m_data.m_value.array->size()))
{
JSON_THROW(detail::out_of_range::create(401, detail::concat(
"array index ", std::to_string(idx), " is out of range"), ptr));
}
ptr = &ptr->operator[](idx);
break;
}
case detail::value_t::null:
case detail::value_t::string:
case detail::value_t::boolean:
case detail::value_t::number_integer:
case detail::value_t::number_unsigned:
case detail::value_t::number_float:
case detail::value_t::binary:
case detail::value_t::discarded:
default:
JSON_THROW(detail::out_of_range::create(404, detail::concat("unresolved reference token '", reference_token, "'"), ptr));
}
}
return *ptr;
}
/*! /*!
@brief return a pointer to the pointed to value, or `nullptr` if the @brief return a pointer to the pointed to value, or `nullptr` if the
pointer cannot be resolved because a key is missing, an array pointer cannot be resolved because a key is missing, an array
@@ -679,24 +679,29 @@ class json_pointer
return nullptr; return nullptr;
} }
// a malformed index still throws parse_error.106/109; an // tokens that array_index() rejects with parse_error.106/109
// index that is syntactically valid but cannot be // are passed on to it; all other tokens that it would reject
// represented (out_of_range.404/410) is treated like an // with out_of_range.404/410 are detected here, so that this
// out-of-range index below // also works without exceptions
typename BasicJsonType::size_type idx{}; if (JSON_HEDLEY_UNLIKELY(reference_token.size() > 1 && !(reference_token[0] >= '1' && reference_token[0] <= '9')))
switch (parse_array_index<BasicJsonType>(reference_token, idx))
{ {
case array_index_status::leading_zero: static_cast<void>(array_index<BasicJsonType>(reference_token)); // throws parse_error.106/109
JSON_THROW(detail::parse_error::create(106, 0, detail::concat("array index '", reference_token, "' must not begin with '0'"), nullptr));
case array_index_status::not_a_number:
JSON_THROW(detail::parse_error::create(109, 0, detail::concat("array index '", reference_token, "' is not a number"), nullptr));
case array_index_status::unresolved:
case array_index_status::exceeds_size_type:
return nullptr;
case array_index_status::ok:
default:
break;
} }
if (JSON_HEDLEY_UNLIKELY(reference_token.empty() || !std::all_of(reference_token.begin(), reference_token.end(), [](const char c)
{
return c >= '0' && c <= '9';
})))
{
return nullptr;
}
errno = 0; // strtoull() does not reset errno on success
char* p_end = nullptr; // NOLINT(misc-const-correctness)
const unsigned long long magnitude = std::strtoull(reference_token.data(), &p_end, 10); // NOLINT(runtime/int)
if (JSON_HEDLEY_UNLIKELY(errno == ERANGE || magnitude >= static_cast<unsigned long long>((std::numeric_limits<typename BasicJsonType::size_type>::max)()))) // NOLINT(runtime/int)
{
return nullptr;
}
const auto idx = static_cast<typename BasicJsonType::size_type>(magnitude);
if (JSON_HEDLEY_UNLIKELY(idx >= ptr->m_data.m_value.array->size())) if (JSON_HEDLEY_UNLIKELY(idx >= ptr->m_data.m_value.array->size()))
{ {
@@ -723,8 +728,8 @@ class json_pointer
} }
/*! /*!
@note unlike array_index(), this never throws: a malformed or unrepresentable @throw parse_error.106 if an array index begins with '0'
array index reference token is treated like a missing key (see #5395) @throw parse_error.109 if an array index was not a number
*/ */
template<typename BasicJsonType> template<typename BasicJsonType>
bool contains(const BasicJsonType* ptr) const bool contains(const BasicJsonType* ptr) const
@@ -752,17 +757,49 @@ class json_pointer
// "-" always fails the range check // "-" always fails the range check
return false; return false;
} }
if (JSON_HEDLEY_UNLIKELY(reference_token.empty()))
// any parse failure (malformed index, or one that is syntactically
// valid but not representable as size_type) means the reference
// token cannot denote an existing array element -- contains() must
// not throw (see #5395), so it is treated as "not found"
typename BasicJsonType::size_type idx{};
if (JSON_HEDLEY_UNLIKELY(parse_array_index<BasicJsonType>(reference_token, idx) != array_index_status::ok))
{ {
// an empty reference token is not an array index; array_index()
// would throw out_of_range.404 -- contains() must not throw (see #5395)
return false;
}
if (JSON_HEDLEY_UNLIKELY(reference_token.size() == 1 && !('0' <= reference_token[0] && reference_token[0] <= '9')))
{
// invalid char
return false;
}
if (JSON_HEDLEY_UNLIKELY(reference_token.size() > 1))
{
if (JSON_HEDLEY_UNLIKELY(!('1' <= reference_token[0] && reference_token[0] <= '9')))
{
// the first char should be between '1' and '9'
return false;
}
for (std::size_t i = 1; i < reference_token.size(); i++)
{
if (JSON_HEDLEY_UNLIKELY(!('0' <= reference_token[i] && reference_token[i] <= '9')))
{
// other char should be between '0' and '9'
return false;
}
}
}
// the reference token consists only of digits at this point (cf. checks
// above); however, its numeric value might not be representable, in which
// case array_index() would throw out_of_range.404/410 -- contains() must
// not throw (see #5395), so such a reference token is treated as "not found"
errno = 0; // strtoull() does not reset errno on success
char* p_end = nullptr; // NOLINT(misc-const-correctness)
const unsigned long long magnitude = std::strtoull(reference_token.data(), &p_end, 10); // NOLINT(runtime/int)
if (JSON_HEDLEY_UNLIKELY(errno == ERANGE // the value exceeds ULLONG_MAX
|| magnitude >= static_cast<unsigned long long>((std::numeric_limits<typename BasicJsonType::size_type>::max)()))) // NOLINT(runtime/int)
{
// the array index cannot be represented as size_type
return false; return false;
} }
const auto idx = array_index<BasicJsonType>(reference_token);
if (idx >= ptr->size()) if (idx >= ptr->size())
{ {
// index out of range // index out of range
+44 -18
View File
@@ -9,6 +9,7 @@
#pragma once #pragma once
#include <utility> // declval, pair #include <utility> // declval, pair
#include <nlohmann/detail/meta/detected.hpp>
#include <nlohmann/thirdparty/hedley/hedley.hpp> #include <nlohmann/thirdparty/hedley/hedley.hpp>
// This file contains all internal macro definitions (except those affecting ABI) // This file contains all internal macro definitions (except those affecting ABI)
@@ -139,12 +140,10 @@
// libstdc++ < 11 has incomplete C++20 ranges (issue #4440) // libstdc++ < 11 has incomplete C++20 ranges (issue #4440)
#elif defined(_GLIBCXX_RELEASE) && _GLIBCXX_RELEASE < 11 #elif defined(_GLIBCXX_RELEASE) && _GLIBCXX_RELEASE < 11
#define JSON_HAS_RANGES 0 #define JSON_HAS_RANGES 0
// clang < 16 with libstdc++ does not implement the ranges customization // libc++ < 16 has incomplete C++20 ranges (issue #4440)
// points libstdc++ declares, so its C++20 ranges support is incomplete (issue #5161)
#elif defined(__clang__) && !defined(__apple_build_version__) \ #elif defined(__clang__) && !defined(__apple_build_version__) \
&& __clang_major__ < 16 && defined(__GLIBCXX__) && __clang_major__ < 16 && defined(__GLIBCXX__)
#define JSON_HAS_RANGES 0 #define JSON_HAS_RANGES 0
// libc++ < 16 has incomplete C++20 ranges (issue #4440)
#elif defined(_LIBCPP_VERSION) && _LIBCPP_VERSION < 160000 #elif defined(_LIBCPP_VERSION) && _LIBCPP_VERSION < 160000
#define JSON_HAS_RANGES 0 #define JSON_HAS_RANGES 0
// nvcc CUDA 12.0/12.1 chokes on the enable_borrowed_range variable-template // nvcc CUDA 12.0/12.1 chokes on the enable_borrowed_range variable-template
@@ -159,18 +158,6 @@
#endif #endif
#endif #endif
// std::ranges view conversion (to_json/is_compatible_array_type_impl) additionally
// needs to be disabled on MinGW, whose std::ranges support is incomplete
// (issue #4916); this macro combines both conditions so the check and its
// reason are not duplicated at every use site.
#ifndef JSON_HAS_RANGE_VIEW_CONVERSION
#if JSON_HAS_RANGES && !defined(__MINGW32__)
#define JSON_HAS_RANGE_VIEW_CONVERSION 1
#else
#define JSON_HAS_RANGE_VIEW_CONVERSION 0
#endif
#endif
#ifndef JSON_HAS_STD_FORMAT #ifndef JSON_HAS_STD_FORMAT
#if defined(JSON_HAS_CPP_20) && defined(__cpp_lib_format) #if defined(JSON_HAS_CPP_20) && defined(__cpp_lib_format)
#define JSON_HAS_STD_FORMAT 1 #define JSON_HAS_STD_FORMAT 1
@@ -299,11 +286,26 @@
/*!
@brief function to wrap JSON_THROW_MACRO - there can be compilation errors about
there being no arguments to JSON_THROW that depend on template arguments
if this is not used to call JSON_THROW
*/
template<typename ExceptionType>
void templated_json_throw(ExceptionType exception)
{
JSON_THROW(exception);
/* JSON_THROW(exception) discards exception and aborts - void cast needed to supress
compilation error if compiled with -Werror and Wunused-parameter */
(void)exception;
}
/*! /*!
@brief macro to briefly define a mapping between an enum and JSON with exception @brief macro to briefly define a mapping between an enum and JSON with exception
on invalid input on invalid input
@def NLOHMANN_JSON_SERIALIZE_ENUM_STRICT @def NLOHMANN_JSON_SERIALIZE_ENUM_STRICT
@since version 3.13.0 @since version 3.12.0
*/ */
#define NLOHMANN_JSON_SERIALIZE_ENUM_STRICT(ENUM_TYPE, ...) \ #define NLOHMANN_JSON_SERIALIZE_ENUM_STRICT(ENUM_TYPE, ...) \
template<typename BasicJsonType> \ template<typename BasicJsonType> \
@@ -319,7 +321,7 @@
return ej_pair.first == e; \ return ej_pair.first == e; \
}); \ }); \
if (it != std::end(m)) j = it->second; \ if (it != std::end(m)) j = it->second; \
else ::nlohmann::detail::templated_json_throw<nlohmann::detail::out_of_range>(nlohmann::detail::out_of_range::create(410,"enum value out of range for " #ENUM_TYPE, nullptr)); \ else templated_json_throw<nlohmann::detail::out_of_range>(nlohmann::detail::out_of_range::create(410,"enum value out of range for " #ENUM_TYPE, nullptr)); \
} \ } \
template<typename BasicJsonType> \ template<typename BasicJsonType> \
inline void from_json(const BasicJsonType& j, ENUM_TYPE& e) \ inline void from_json(const BasicJsonType& j, ENUM_TYPE& e) \
@@ -334,7 +336,7 @@
return ej_pair.second == j; \ return ej_pair.second == j; \
}); \ }); \
if (it != std::end(m)) e = it->first; \ if (it != std::end(m)) e = it->first; \
else ::nlohmann::detail::templated_json_throw<nlohmann::detail::out_of_range>(nlohmann::detail::out_of_range::create(410, nlohmann::detail::concat("enum value out of range for " #ENUM_TYPE ": ", j.dump(-1, ' ', false, nlohmann::detail::error_handler_t::replace)), &j)); \ else templated_json_throw<nlohmann::detail::out_of_range>(nlohmann::detail::out_of_range::create(410, nlohmann::detail::concat("enum value out of range for " #ENUM_TYPE ": ", j.dump(-1, ' ', false, nlohmann::detail::error_handler_t::replace)), &j)); \
} }
// Ugly macros to avoid uglier copy-paste when specializing basic_json. They // Ugly macros to avoid uglier copy-paste when specializing basic_json. They
@@ -874,6 +876,30 @@
\ \
template<typename... T> \ template<typename... T> \
using result_of_##std_name = decltype(std_name(std::declval<T>()...)); \ using result_of_##std_name = decltype(std_name(std::declval<T>()...)); \
} \
\
namespace detail2 { \
struct std_name##_tag \
{ \
}; \
\
template<typename... T> \
std_name##_tag std_name(T&&...); \
\
template<typename... T> \
using result_of_##std_name = decltype(std_name(std::declval<T>()...)); \
\
template<typename... T> \
struct would_call_std_##std_name \
{ \
static constexpr auto const value = ::nlohmann::detail:: \
is_detected_exact<std_name##_tag, result_of_##std_name, T...>::value; \
}; \
} /* namespace detail2 */ \
\
template<typename... T> \
struct would_call_std_##std_name : detail2::would_call_std_##std_name<T...> \
{ \
} }
#ifndef JSON_USE_IMPLICIT_CONVERSIONS #ifndef JSON_USE_IMPLICIT_CONVERSIONS
@@ -39,7 +39,6 @@
#undef JSON_HAS_EXPERIMENTAL_FILESYSTEM #undef JSON_HAS_EXPERIMENTAL_FILESYSTEM
#undef JSON_HAS_THREE_WAY_COMPARISON #undef JSON_HAS_THREE_WAY_COMPARISON
#undef JSON_HAS_RANGES #undef JSON_HAS_RANGES
#undef JSON_HAS_RANGE_VIEW_CONVERSION
#undef JSON_HAS_STD_FORMAT #undef JSON_HAS_STD_FORMAT
#undef JSON_HAS_STATIC_RTTI #undef JSON_HAS_STATIC_RTTI
#undef JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON #undef JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON
@@ -12,6 +12,6 @@
NLOHMANN_JSON_NAMESPACE_BEGIN NLOHMANN_JSON_NAMESPACE_BEGIN
NLOHMANN_CAN_CALL_STD_FUNC_IMPL(begin) NLOHMANN_CAN_CALL_STD_FUNC_IMPL(begin);
NLOHMANN_JSON_NAMESPACE_END NLOHMANN_JSON_NAMESPACE_END
@@ -12,6 +12,6 @@
NLOHMANN_JSON_NAMESPACE_BEGIN NLOHMANN_JSON_NAMESPACE_BEGIN
NLOHMANN_CAN_CALL_STD_FUNC_IMPL(end) NLOHMANN_CAN_CALL_STD_FUNC_IMPL(end);
NLOHMANN_JSON_NAMESPACE_END NLOHMANN_JSON_NAMESPACE_END
@@ -62,5 +62,9 @@ using detected_or_t = typename detected_or<Default, Op, Args...>::type;
template<class Expected, template<class...> class Op, class... Args> template<class Expected, template<class...> class Op, class... Args>
using is_detected_exact = std::is_same<Expected, detected_t<Op, Args...>>; using is_detected_exact = std::is_same<Expected, detected_t<Op, Args...>>;
template<class To, template<class...> class Op, class... Args>
using is_detected_convertible =
std::is_convertible<detected_t<Op, Args...>, To>;
} // namespace detail } // namespace detail
NLOHMANN_JSON_NAMESPACE_END NLOHMANN_JSON_NAMESPACE_END
+34 -1
View File
@@ -8,7 +8,7 @@
#pragma once #pragma once
#include <cstddef> // size_t #include <cstdint> // size_t
#include <utility> // declval #include <utility> // declval
#include <string> // string #include <string> // string
@@ -70,6 +70,37 @@ using parse_error_function_t = decltype(std::declval<T&>().parse_error(
std::declval<std::size_t>(), std::declval<const std::string&>(), std::declval<std::size_t>(), std::declval<const std::string&>(),
std::declval<const Exception&>())); std::declval<const Exception&>()));
template<typename SAX, typename BasicJsonType>
struct is_sax
{
private:
static_assert(is_basic_json<BasicJsonType>::value,
"BasicJsonType must be of type basic_json<...>");
using number_integer_t = typename BasicJsonType::number_integer_t;
using number_unsigned_t = typename BasicJsonType::number_unsigned_t;
using number_float_t = typename BasicJsonType::number_float_t;
using string_t = typename BasicJsonType::string_t;
using binary_t = typename BasicJsonType::binary_t;
using exception_t = typename BasicJsonType::exception;
public:
static constexpr bool value =
is_detected_exact<bool, null_function_t, SAX>::value &&
is_detected_exact<bool, boolean_function_t, SAX>::value &&
is_detected_exact<bool, number_integer_function_t, SAX, number_integer_t>::value &&
is_detected_exact<bool, number_unsigned_function_t, SAX, number_unsigned_t>::value &&
is_detected_exact<bool, number_float_function_t, SAX, number_float_t, string_t>::value &&
is_detected_exact<bool, string_function_t, SAX, string_t>::value &&
is_detected_exact<bool, binary_function_t, SAX, binary_t>::value &&
is_detected_exact<bool, start_object_function_t, SAX>::value &&
is_detected_exact<bool, key_function_t, SAX, string_t>::value &&
is_detected_exact<bool, end_object_function_t, SAX>::value &&
is_detected_exact<bool, start_array_function_t, SAX>::value &&
is_detected_exact<bool, end_array_function_t, SAX>::value &&
is_detected_exact<bool, parse_error_function_t, SAX, exception_t>::value;
};
template<typename SAX, typename BasicJsonType> template<typename SAX, typename BasicJsonType>
struct is_sax_static_asserts struct is_sax_static_asserts
{ {
@@ -89,6 +120,8 @@ struct is_sax_static_asserts
"Missing/invalid function: bool null()"); "Missing/invalid function: bool null()");
static_assert(is_detected_exact<bool, boolean_function_t, SAX>::value, static_assert(is_detected_exact<bool, boolean_function_t, SAX>::value,
"Missing/invalid function: bool boolean(bool)"); "Missing/invalid function: bool boolean(bool)");
static_assert(is_detected_exact<bool, boolean_function_t, SAX>::value,
"Missing/invalid function: bool boolean(bool)");
static_assert( static_assert(
is_detected_exact<bool, number_integer_function_t, SAX, is_detected_exact<bool, number_integer_function_t, SAX,
number_integer_t>::value, number_integer_t>::value,
+54
View File
@@ -0,0 +1,54 @@
#pragma once
#include <nlohmann/detail/macro_scope.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
#ifdef JSON_HAS_CPP_17
template<bool... Booleans>
struct cxpr_or_impl : std::integral_constant < bool, (Booleans || ...) > {};
template<bool... Booleans>
struct cxpr_and_impl : std::integral_constant < bool, (Booleans &&...) > {};
#else
template<bool... Booleans>
struct cxpr_or_impl : std::false_type {};
template<bool... Booleans>
struct cxpr_or_impl<true, Booleans...> : std::true_type {};
template<bool... Booleans>
struct cxpr_or_impl<false, Booleans...> : cxpr_or_impl<Booleans...> {};
template<bool... Booleans>
struct cxpr_and_impl : std::true_type {};
template<bool... Booleans>
struct cxpr_and_impl<true, Booleans...> : cxpr_and_impl<Booleans...> {};
template<bool... Booleans>
struct cxpr_and_impl<false, Booleans...> : std::false_type {};
#endif
template<class Boolean>
struct cxpr_not : std::integral_constant < bool, !Boolean::value > {};
template<class... Booleans>
struct cxpr_or : cxpr_or_impl<Booleans::value...> {};
template<bool... Booleans>
struct cxpr_or_c : cxpr_or_impl<Booleans...> {};
template<class... Booleans>
struct cxpr_and : cxpr_and_impl<Booleans::value...> {};
template<bool... Booleans>
struct cxpr_and_c : cxpr_and_impl<Booleans...> {};
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+23 -12
View File
@@ -283,13 +283,6 @@ template<class B, class... Bn>
struct conjunction<B, Bn...> struct conjunction<B, Bn...>
: std::conditional<static_cast<bool>(B::value), conjunction<Bn...>, B>::type {}; : std::conditional<static_cast<bool>(B::value), conjunction<Bn...>, B>::type {};
// https://en.cppreference.com/w/cpp/types/disjunction
template<class...> struct disjunction : std::false_type { };
template<class B> struct disjunction<B> : B { };
template<class B, class... Bn>
struct disjunction<B, Bn...>
: std::conditional<static_cast<bool>(B::value), B, disjunction<Bn...>>::type {};
// https://en.cppreference.com/w/cpp/types/negation // https://en.cppreference.com/w/cpp/types/negation
template<class B> struct negation : std::integral_constant < bool, !B::value > { }; template<class B> struct negation : std::integral_constant < bool, !B::value > { };
@@ -484,7 +477,9 @@ template<typename T> struct is_range_view_optional_type<std::optional<T>> : std:
template<typename T> struct is_range_view_optional_type : std::false_type {}; template<typename T> struct is_range_view_optional_type : std::false_type {};
#endif #endif
#if JSON_HAS_RANGE_VIEW_CONVERSION // std::ranges does not work properly on MinGW due to incomplete C++20 support
// see https://github.com/nlohmann/json/issues/4916
#if JSON_HAS_RANGES && !defined(__MINGW32__)
// SafeToCheck guards against types that trigger circular constraints when // SafeToCheck guards against types that trigger circular constraints when
// std::ranges::view<T> is evaluated on GCC 12 / libstdc++ 12: // std::ranges::view<T> is evaluated on GCC 12 / libstdc++ 12:
@@ -523,7 +518,7 @@ struct is_compatible_array_type_impl <
// filter_view) can match BOTH this iterator-based specialization AND the view-based one // filter_view) can match BOTH this iterator-based specialization AND the view-based one
// below, causing ambiguity. Exclude views here so the two specializations are mutually // below, causing ambiguity. Exclude views here so the two specializations are mutually
// exclusive: this one handles plain iterable containers, the other handles views. // exclusive: this one handles plain iterable containers, the other handles views.
#if JSON_HAS_RANGE_VIEW_CONVERSION #if JSON_HAS_RANGES && !defined(__MINGW32__)
&& !is_compatible_range_view<CompatibleArrayType>::value && !is_compatible_range_view<CompatibleArrayType>::value
#endif #endif
>> >>
@@ -533,7 +528,7 @@ struct is_compatible_array_type_impl <
range_value_t<CompatibleArrayType>>::value; range_value_t<CompatibleArrayType>>::value;
}; };
#if JSON_HAS_RANGE_VIEW_CONVERSION #if JSON_HAS_RANGES && !defined(__MINGW32__)
template<typename BasicJsonType, typename CompatibleArrayType> template<typename BasicJsonType, typename CompatibleArrayType>
struct is_compatible_array_type_impl < struct is_compatible_array_type_impl <
BasicJsonType, CompatibleArrayType, BasicJsonType, CompatibleArrayType,
@@ -609,6 +604,7 @@ struct is_compatible_integer_type_impl <
std::is_integral<CompatibleNumberIntegerType>::value&& std::is_integral<CompatibleNumberIntegerType>::value&&
!std::is_same<bool, CompatibleNumberIntegerType>::value >> !std::is_same<bool, CompatibleNumberIntegerType>::value >>
{ {
// is there an assert somewhere on overflows?
using RealLimits = std::numeric_limits<RealIntegerType>; using RealLimits = std::numeric_limits<RealIntegerType>;
using CompatibleLimits = std::numeric_limits<CompatibleNumberIntegerType>; using CompatibleLimits = std::numeric_limits<CompatibleNumberIntegerType>;
@@ -802,7 +798,20 @@ struct has_capacity : std::integral_constant<bool, is_detected<detect_capacity,
// a naive helper to check if a type is an ordered_map (exploits the fact that // a naive helper to check if a type is an ordered_map (exploits the fact that
// ordered_map inherits capacity() from std::vector) // ordered_map inherits capacity() from std::vector)
template <typename T> template <typename T>
struct is_ordered_map : has_capacity<T> {}; struct is_ordered_map
{
using one = char;
struct two
{
char x[2]; // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
};
template <typename C> static one test( decltype(&C::capacity) ) ;
template <typename C> static two test(...);
enum { value = sizeof(test<T>(nullptr)) == sizeof(char) }; // NOLINT(cppcoreguidelines-pro-type-vararg,hicpp-vararg,cppcoreguidelines-use-enum-class)
};
// to avoid useless casts (see https://github.com/nlohmann/json/issues/2893#issuecomment-889152324) // to avoid useless casts (see https://github.com/nlohmann/json/issues/2893#issuecomment-889152324)
template < typename T, typename U, enable_if_t < !std::is_same<T, U>::value, int > = 0 > template < typename T, typename U, enable_if_t < !std::is_same<T, U>::value, int > = 0 >
@@ -826,8 +835,10 @@ using all_signed = conjunction<std::is_signed<Types>...>;
template<typename... Types> template<typename... Types>
using all_unsigned = conjunction<std::is_unsigned<Types>...>; using all_unsigned = conjunction<std::is_unsigned<Types>...>;
// there's a disjunction trait in another PR; replace when merged
template<typename... Types> template<typename... Types>
using same_sign = disjunction<all_signed<Types...>, all_unsigned<Types...>>; using same_sign = std::integral_constant < bool,
all_signed<Types...>::value || all_unsigned<Types...>::value >;
template<typename OfType, typename T> template<typename OfType, typename T>
using never_out_of_range = std::integral_constant < bool, using never_out_of_range = std::integral_constant < bool,
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-59
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@@ -430,37 +430,6 @@ TEST_CASE("value conversion")
CHECK(std::equal(std::begin(nbs[0][0][0]), std::end(nbs[1][1][1]), std::begin(nbs2[0][0][0]))); CHECK(std::equal(std::begin(nbs[0][0][0]), std::end(nbs[1][1][1]), std::begin(nbs2[0][0][0])));
} }
SECTION("built-in arrays: 5D")
{
// NOLINTBEGIN(misc-const-correctness,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
const int nbs[1][1][1][2][2] = {{{{{0, 1}, {2, 3}}}}};
int nbs2[1][1][1][2][2] = {{{{{0, 0}, {0, 0}}}}};
// NOLINTEND(misc-const-correctness,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
const json j2 = nbs;
j2.get_to(nbs2);
CHECK(std::equal(std::begin(nbs[0][0][0][0]), std::end(nbs[0][0][0][1]), std::begin(nbs2[0][0][0][0])));
}
SECTION("built-in arrays: mismatched shape")
{
// NOLINTBEGIN(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
int nbs2[2][3] = {{0, 0, 0}, {0, 0, 0}};
// NOLINTEND(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
SECTION("not an array")
{
const json j2 = 42;
CHECK_THROWS_WITH_AS(j2.get_to(nbs2), "[json.exception.type_error.304] cannot use at() with number", json::type_error&);
}
SECTION("too few elements")
{
const json j2 = {{0, 1, 2}};
CHECK_THROWS_WITH_AS(j2.get_to(nbs2), "[json.exception.out_of_range.401] array index 1 is out of range", json::out_of_range&);
}
}
SECTION("std::deque<json>") SECTION("std::deque<json>")
{ {
std::deque<json> a{"previous", "value"}; std::deque<json> a{"previous", "value"};
@@ -1757,34 +1726,6 @@ NLOHMANN_JSON_SERIALIZE_ENUM_STRICT(StrictTaskState,
{STRICT_TS_COMPLETED, "completed"}, {STRICT_TS_COMPLETED, "completed"},
}) })
// regression test for #5708 item 2: NLOHMANN_JSON_SERIALIZE_ENUM_STRICT must not rely on
// unqualified lookup of a helper name that a user's own namespace may also declare
namespace ns_with_colliding_name
{
// NOLINTNEXTLINE(misc-use-internal-linkage) - used to shadow the library's internal helper name
inline void templated_json_throw(int /*unused*/) {}
enum class colliding_enum { a, b };
// NOLINTNEXTLINE(misc-use-internal-linkage,misc-const-correctness,cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) - false positive
NLOHMANN_JSON_SERIALIZE_ENUM_STRICT(colliding_enum,
{
{colliding_enum::a, "a"},
{colliding_enum::b, "b"}
})
} // namespace ns_with_colliding_name
TEST_CASE("NLOHMANN_JSON_SERIALIZE_ENUM_STRICT in a namespace with a colliding name")
{
using ns_with_colliding_name::colliding_enum;
CHECK(json(colliding_enum::a) == "a");
CHECK(colliding_enum::b == json("b"));
json _;
CHECK_THROWS_WITH_AS(_ = json("nope").get<colliding_enum>(), "[json.exception.out_of_range.410] enum value out of range for colliding_enum: \"nope\"", json::out_of_range&);
}
TEST_CASE("Strict JSON to enum mapping") TEST_CASE("Strict JSON to enum mapping")
{ {
SECTION("enum class") SECTION("enum class")
+15
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@@ -47,6 +47,21 @@ TEST_CASE("Tests with disabled exceptions")
delete sax_no_exception::error_string; // NOLINT(cppcoreguidelines-owning-memory) delete sax_no_exception::error_string; // NOLINT(cppcoreguidelines-owning-memory)
} }
SECTION("issue #5672 - value(json_pointer, default) must not abort for array tokens that are not a valid index")
{
const json j = {1, 2, 3};
// a syntactically valid index that is out of range for this array
CHECK(j.value("/7"_json_pointer, 42) == 42);
// a reference token that is not a number at all
CHECK(j.value("/1a"_json_pointer, 42) == 42);
// the empty reference token (JSON pointer "/")
CHECK(j.value("/"_json_pointer, 42) == 42);
// an index whose magnitude does not fit into size_type
CHECK(j.value("/99999999999999999999999"_json_pointer, 42) == 42);
CHECK(j.value("/18446744073709551615"_json_pointer, 42) == 42);
}
SECTION("growing an ordered_json object") SECTION("growing an ordered_json object")
{ {
auto j = nlohmann::ordered_json::object(); auto j = nlohmann::ordered_json::object();
+12 -7
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@@ -516,16 +516,21 @@ TEST_CASE_TEMPLATE("element access 2", Json, nlohmann::json, nlohmann::ordered_j
CHECK(j_array.value("/-"_json_pointer, 42) == 42); CHECK(j_array.value("/-"_json_pointer, 42) == 42);
CHECK(j_array_const.value("/-"_json_pointer, 42) == 42); CHECK(j_array_const.value("/-"_json_pointer, 42) == 42);
// Test an index that is syntactically valid but exceeds size_type, and one // Test an index with a non-digit after a valid leading digit; this is
// with a trailing non-digit: both must yield the default value rather than // out_of_range (not parse_error) and must not throw (see #5672)
// throw, even with exceptions disabled (regression test for #5708 item 4 /
// #5672: get_checked_or_null() no longer relies on a JSON_TRY/
// JSON_INTERNAL_CATCH around array_index() to turn these into "not found")
CHECK(j_array.value("/18446744073709551615"_json_pointer, 42) == 42);
CHECK(j_array_const.value("/18446744073709551615"_json_pointer, 42) == 42);
CHECK(j_array.value("/1a"_json_pointer, 42) == 42); CHECK(j_array.value("/1a"_json_pointer, 42) == 42);
CHECK(j_array_const.value("/1a"_json_pointer, 42) == 42); CHECK(j_array_const.value("/1a"_json_pointer, 42) == 42);
// Test the empty reference token (JSON pointer "/"); see #5672
CHECK(j_array.value("/"_json_pointer, 42) == 42);
CHECK(j_array_const.value("/"_json_pointer, 42) == 42);
// Test an index whose magnitude does not fit into size_type (see #5672)
CHECK(j_array.value("/99999999999999999999999"_json_pointer, 42) == 42);
CHECK(j_array_const.value("/99999999999999999999999"_json_pointer, 42) == 42);
CHECK(j_array.value("/18446744073709551615"_json_pointer, 42) == 42);
CHECK(j_array_const.value("/18446744073709551615"_json_pointer, 42) == 42);
#if !defined(JSON_NOEXCEPTION) #if !defined(JSON_NOEXCEPTION)
// Test malformed index (non-numeric) throws parse_error // Test malformed index (non-numeric) throws parse_error
CHECK_THROWS_WITH_AS(j_array.value("/foo"_json_pointer, 1), "[json.exception.parse_error.109] parse error: array index 'foo' is not a number", typename Json::parse_error&); CHECK_THROWS_WITH_AS(j_array.value("/foo"_json_pointer, 1), "[json.exception.parse_error.109] parse error: array index 'foo' is not a number", typename Json::parse_error&);
-12
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@@ -10,14 +10,10 @@
#if JSON_TEST_USING_MULTIPLE_HEADERS #if JSON_TEST_USING_MULTIPLE_HEADERS
#include <nlohmann/detail/meta/type_traits.hpp> #include <nlohmann/detail/meta/type_traits.hpp>
#include <nlohmann/ordered_map.hpp>
#else #else
#include <nlohmann/json.hpp> #include <nlohmann/json.hpp>
#endif #endif
#include <map>
#include <string>
TEST_CASE("type traits") TEST_CASE("type traits")
{ {
SECTION("is_c_string") SECTION("is_c_string")
@@ -87,12 +83,4 @@ TEST_CASE("type traits")
} }
} }
} }
SECTION("is_ordered_map")
{
using nlohmann::detail::is_ordered_map;
CHECK(is_ordered_map<nlohmann::ordered_map<std::string, int>>::value);
CHECK_FALSE(is_ordered_map<std::map<std::string, int>>::value);
}
} }