Merge branch 'develop' into claude/bjdata-ndarray-round-trip-5661

- binary_reader: keep emitting "_ArrayType_" from get_ubjson_size_value()
  (before "_ArraySize_"), now via develop's static bjd_type_name(); drop
  develop's later emission in get_ubjson_array()
- binary_writer: develop's out-of-range check for ND-array elements
  (#5473, #5730) now also requires that single-precision elements survive
  the narrowing exactly, which is what this branch adds for #5661

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
This commit is contained in:
Niels Lohmann
2026-10-04 17:32:26 +02:00
626 changed files with 26990 additions and 19437 deletions
+15 -4
View File
@@ -46,6 +46,10 @@
#define JSON_STRICT_NUL_HANDLING 0
#endif
#ifndef JSON_STRICT_BINARY_UTF8
#define JSON_STRICT_BINARY_UTF8 0
#endif
#if JSON_DIAGNOSTICS
#define NLOHMANN_JSON_ABI_TAG_DIAGNOSTICS _diag
#else
@@ -82,14 +86,20 @@
#define NLOHMANN_JSON_ABI_TAG_STRICT_NUL_HANDLING
#endif
#if JSON_STRICT_BINARY_UTF8
#define NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8 _sbu8
#else
#define NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8
#endif
#ifndef NLOHMANN_JSON_NAMESPACE_NO_VERSION
#define NLOHMANN_JSON_NAMESPACE_NO_VERSION 0
#endif
// Construct the namespace ABI tags component
#define NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f) json_abi ## a ## b ## c ## d ## e ## f
#define NLOHMANN_JSON_ABI_TAGS_CONCAT(a, b, c, d, e, f) \
NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f)
#define NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g) json_abi ## a ## b ## c ## d ## e ## f ## g
#define NLOHMANN_JSON_ABI_TAGS_CONCAT(a, b, c, d, e, f, g) \
NLOHMANN_JSON_ABI_TAGS_CONCAT_EX(a, b, c, d, e, f, g)
#define NLOHMANN_JSON_ABI_TAGS \
NLOHMANN_JSON_ABI_TAGS_CONCAT( \
@@ -98,7 +108,8 @@
NLOHMANN_JSON_ABI_TAG_DIAGNOSTIC_POSITIONS, \
NLOHMANN_JSON_ABI_TAG_BRACE_INIT_COPY_SEMANTICS, \
NLOHMANN_JSON_ABI_TAG_PRECISE_STREAM_POSITION, \
NLOHMANN_JSON_ABI_TAG_STRICT_NUL_HANDLING)
NLOHMANN_JSON_ABI_TAG_STRICT_NUL_HANDLING, \
NLOHMANN_JSON_ABI_TAG_STRICT_BINARY_UTF8)
// Construct the namespace version component
#define NLOHMANN_JSON_NAMESPACE_VERSION_CONCAT_EX(major, minor, patch) \
+81
View File
@@ -0,0 +1,81 @@
// __ _____ _____ _____
// __| | __| | | | 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
#pragma once
#include <cstdint> // uint64_t
#include <nlohmann/detail/abi_macros.hpp>
// Portable bit-level helpers for the number and string scanners. They use
// compiler builtins where available and plain C++ otherwise, so they need no
// platform headers and work regardless of byte order.
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
/// number of leading zero bits of x (x != 0)
inline int count_leading_zeros(std::uint64_t x) noexcept
{
#if defined(__GNUC__) || defined(__clang__)
return __builtin_clzll(x);
#else
int n = 0;
for (int shift = 32; shift != 0; shift >>= 1)
{
if ((x >> (64 - shift)) == 0)
{
n += shift;
x <<= shift;
}
}
return n;
#endif
}
/// the 128-bit product of two 64-bit numbers
struct uint128_parts
{
std::uint64_t low;
std::uint64_t high;
};
inline uint128_parts full_multiplication(std::uint64_t a, std::uint64_t b) noexcept
{
#if defined(__SIZEOF_INT128__)
__extension__ using uint128 = unsigned __int128;
const uint128 r = static_cast<uint128>(a) * b;
return {static_cast<std::uint64_t>(r), static_cast<std::uint64_t>(r >> 64u)};
#else
const std::uint64_t a_lo = a & 0xFFFFFFFFu;
const std::uint64_t a_hi = a >> 32u;
const std::uint64_t b_lo = b & 0xFFFFFFFFu;
const std::uint64_t b_hi = b >> 32u;
const std::uint64_t lo_lo = a_lo * b_lo;
const std::uint64_t hi_lo = a_hi * b_lo;
const std::uint64_t lo_hi = a_lo * b_hi;
const std::uint64_t hi_hi = a_hi * b_hi;
const std::uint64_t cross = (lo_lo >> 32u) + (hi_lo & 0xFFFFFFFFu) + lo_hi;
return {(cross << 32u) | (lo_lo & 0xFFFFFFFFu), (hi_lo >> 32u) + (cross >> 32u) + hi_hi};
#endif
}
/// eight bytes as a little-endian word (compilers fold this into one load on
/// little-endian targets)
inline std::uint64_t read_eight_bytes(const char* p) noexcept
{
const auto* b = reinterpret_cast<const unsigned char*>(p); // NOLINT(cppcoreguidelines-pro-type-reinterpret-cast)
return static_cast<std::uint64_t>(b[0]) | (static_cast<std::uint64_t>(b[1]) << 8u)
| (static_cast<std::uint64_t>(b[2]) << 16u) | (static_cast<std::uint64_t>(b[3]) << 24u)
| (static_cast<std::uint64_t>(b[4]) << 32u) | (static_cast<std::uint64_t>(b[5]) << 40u)
| (static_cast<std::uint64_t>(b[6]) << 48u) | (static_cast<std::uint64_t>(b[7]) << 56u);
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+84 -128
View File
@@ -27,7 +27,6 @@
#include <nlohmann/detail/meta/identity_tag.hpp>
#include <nlohmann/detail/meta/std_fs.hpp>
#include <nlohmann/detail/meta/type_traits.hpp>
#include <nlohmann/detail/meta/logic.hpp>
#include <nlohmann/detail/string_concat.hpp>
#include <nlohmann/detail/value_t.hpp>
@@ -167,9 +166,13 @@ template<typename BasicJsonType, typename EnumType,
enable_if_t<std::is_enum<EnumType>::value, int> = 0>
inline void from_json(const BasicJsonType& j, EnumType& e)
{
typename std::underlying_type<EnumType>::type val;
using underlying_type = typename std::underlying_type<EnumType>::type;
// get_arithmetic_value() does not accept boolean_t; read the number that to_json() wrote instead
using value_type = typename std::conditional<std::is_same<underlying_type, typename BasicJsonType::boolean_t>::value,
typename BasicJsonType::number_unsigned_t, underlying_type>::type;
value_type val;
get_arithmetic_value(j, val);
e = static_cast<EnumType>(val);
e = static_cast<EnumType>(static_cast<underlying_type>(val));
}
#endif // JSON_DISABLE_ENUM_SERIALIZATION
@@ -207,62 +210,29 @@ 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>
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())
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)
{
for (std::size_t i = 0; i < N; ++i)
{
arr[i] = j.at(i).template get<T>();
from_json_c_array_element(j.at(i), arr[i]);
}
}
template<typename BasicJsonType, typename T, std::size_t N1, std::size_t N2>
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<T>(), void())
template<typename BasicJsonType, typename T, std::size_t N>
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<typename std::remove_all_extents<T>::type>(), void())
{
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>();
}
}
}
}
from_json_c_array_element(j, arr);
}
template<typename BasicJsonType>
@@ -282,20 +252,33 @@ 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>
void from_json_array_reserve(ConstructibleArrayType& /*arr*/, std::size_t /*size*/, priority_tag<0> /*unused*/)
{}
template<typename BasicJsonType, typename ConstructibleArrayType,
enable_if_t<
std::is_assignable<ConstructibleArrayType&, ConstructibleArrayType>::value,
int> = 0>
auto from_json_array_impl(const BasicJsonType& j, ConstructibleArrayType& arr, priority_tag<1> /*unused*/)
-> decltype(
arr.reserve(std::declval<typename ConstructibleArrayType::size_type>()),
j.template get<typename ConstructibleArrayType::value_type>(),
void())
{
using std::end;
ConstructibleArrayType ret;
ret.reserve(j.size());
from_json_array_reserve(ret, j.size(), priority_tag<1> {});
std::transform(j.begin(), j.end(),
std::inserter(ret, end(ret)), [](const BasicJsonType & i)
{
@@ -306,27 +289,6 @@ auto from_json_array_impl(const BasicJsonType& j, ConstructibleArrayType& arr, p
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,
enable_if_t <
is_constructible_array_type<BasicJsonType, ConstructibleArrayType>::value&&
@@ -350,22 +312,22 @@ void())
}
template < typename BasicJsonType, typename T, std::size_t... Idx >
std::array<T, sizeof...(Idx)> from_json_inplace_array_impl(BasicJsonType&& j,
std::array<T, sizeof...(Idx)> from_json_inplace_array_impl(const BasicJsonType& j,
identity_tag<std::array<T, sizeof...(Idx)>> /*unused*/, index_sequence<Idx...> /*unused*/)
{
return { { std::forward<BasicJsonType>(j).at(Idx).template get<T>()... } };
return { { j.at(Idx).template get<T>()... } };
}
template < typename BasicJsonType, typename T, std::size_t N >
auto from_json(BasicJsonType&& j, identity_tag<std::array<T, N>> tag)
-> decltype(from_json_inplace_array_impl(std::forward<BasicJsonType>(j), tag, make_index_sequence<N> {}))
auto from_json(const BasicJsonType& j, identity_tag<std::array<T, N>> tag)
-> decltype(from_json_inplace_array_impl(j, tag, make_index_sequence<N> {}))
{
if (JSON_HEDLEY_UNLIKELY(!j.is_array()))
{
JSON_THROW(type_error::create(302, concat("type must be array, but is ", j.type_name()), &j));
}
return from_json_inplace_array_impl(std::forward<BasicJsonType>(j), tag, make_index_sequence<N> {});
return from_json_inplace_array_impl(j, tag, make_index_sequence<N> {});
}
template<typename BasicJsonType>
@@ -429,9 +391,7 @@ inline void from_json(const BasicJsonType& j, ConstructibleObjectType& obj)
}
// overload for arithmetic types, not chosen for basic_json template arguments
// (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?
// (BooleanType, etc.)
template < typename BasicJsonType, typename ArithmeticType,
enable_if_t <
std::is_arithmetic<ArithmeticType>::value&&
@@ -500,99 +460,95 @@ template<std::size_t PTagValue, typename BasicJsonType, typename... Types>
using tuple_type = std::tuple < decltype(from_json_tuple_get_impl(std::declval<BasicJsonType>(), detail::identity_tag<Types> {}, detail::priority_tag<PTagValue> {}))... >;
template<std::size_t PTagValue, typename... Args, typename BasicJsonType, std::size_t... Idx>
tuple_type<PTagValue, BasicJsonType, Args...> from_json_tuple_impl_base(BasicJsonType&& j, index_sequence<Idx...> /*unused*/)
tuple_type<PTagValue, const BasicJsonType&, Args...> from_json_tuple_impl_base(const BasicJsonType& j, index_sequence<Idx...> /*unused*/)
{
return tuple_type<PTagValue, BasicJsonType, Args...>(from_json_tuple_get_impl(std::forward<BasicJsonType>(j).at(Idx), detail::identity_tag<Args> {}, detail::priority_tag<PTagValue> {})...);
return tuple_type<PTagValue, const BasicJsonType&, Args...>(from_json_tuple_get_impl(j.at(Idx), detail::identity_tag<Args> {}, detail::priority_tag<PTagValue> {})...);
}
template<std::size_t PTagValue, typename BasicJsonType>
std::tuple<> from_json_tuple_impl_base(BasicJsonType& /*unused*/, index_sequence<> /*unused*/)
std::tuple<> from_json_tuple_impl_base(const BasicJsonType& /*unused*/, index_sequence<> /*unused*/)
{
return {};
}
template < typename BasicJsonType, class A1, class A2 >
std::pair<A1, A2> from_json_tuple_impl(BasicJsonType&& j, identity_tag<std::pair<A1, A2>> /*unused*/, priority_tag<0> /*unused*/)
std::pair<A1, A2> from_json_tuple_impl(const BasicJsonType& j, identity_tag<std::pair<A1, A2>> /*unused*/, priority_tag<0> /*unused*/)
{
return {std::forward<BasicJsonType>(j).at(0).template get<A1>(),
std::forward<BasicJsonType>(j).at(1).template get<A2>()};
return {j.at(0).template get<A1>(),
j.at(1).template get<A2>()};
}
template<typename BasicJsonType, typename A1, typename A2>
inline void from_json_tuple_impl(BasicJsonType&& j, std::pair<A1, A2>& p, priority_tag<1> /*unused*/)
inline void from_json_tuple_impl(const BasicJsonType& j, std::pair<A1, A2>& p, priority_tag<1> /*unused*/)
{
p = from_json_tuple_impl(std::forward<BasicJsonType>(j), identity_tag<std::pair<A1, A2>> {}, priority_tag<0> {});
p = from_json_tuple_impl(j, identity_tag<std::pair<A1, A2>> {}, priority_tag<0> {});
}
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(const BasicJsonType& j, identity_tag<std::tuple<Args...>> /*unused*/, priority_tag<2> /*unused*/)
{
static_assert(cxpr_and<cxpr_or<cxpr_not<std::is_reference<Args>>, is_compatible_reference_type<BasicJsonType, Args>>...>::value,
static_assert(conjunction<disjunction<negation<std::is_reference<Args>>, is_compatible_reference_type<const BasicJsonType&, Args>>...>::value,
"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...>(j, index_sequence_for<Args...> {});
}
template<typename BasicJsonType, typename... Args>
inline void from_json_tuple_impl(BasicJsonType&& j, std::tuple<Args...>& t, priority_tag<3> /*unused*/)
inline void from_json_tuple_impl(const BasicJsonType& j, std::tuple<Args...>& t, priority_tag<3> /*unused*/)
{
t = from_json_tuple_impl_base<2, Args...>(std::forward<BasicJsonType>(j), index_sequence_for<Args...> {});
t = from_json_tuple_impl_base<2, Args...>(j, index_sequence_for<Args...> {});
}
template<typename BasicJsonType, typename TupleRelated>
auto from_json(BasicJsonType&& j, TupleRelated&& t)
-> decltype(from_json_tuple_impl(std::forward<BasicJsonType>(j), std::forward<TupleRelated>(t), priority_tag<3> {}))
auto from_json(const BasicJsonType& j, TupleRelated&& t)
-> decltype(from_json_tuple_impl(j, std::forward<TupleRelated>(t), priority_tag<3> {}))
{
if (JSON_HEDLEY_UNLIKELY(!j.is_array()))
{
JSON_THROW(type_error::create(302, concat("type must be array, but is ", j.type_name()), &j));
}
return from_json_tuple_impl(std::forward<BasicJsonType>(j), std::forward<TupleRelated>(t), priority_tag<3> {});
return from_json_tuple_impl(j, std::forward<TupleRelated>(t), priority_tag<3> {});
}
// shared body for std::map/std::unordered_map with a non-string Key: both
// containers are read from an array of [key, value] pairs the same way
template<typename BasicJsonType, typename MapType>
void from_json_pair_array_to_map(const BasicJsonType& j, MapType& 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<typename MapType::key_type>(), p.at(1).template get<typename MapType::mapped_type>());
}
}
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)
void from_json(const BasicJsonType& j, std::map<Key, Value, Compare, Allocator>& 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()), &j));
}
m.emplace(p.at(0).template get<Key>(), p.at(1).template get<Value>());
}
from_json_pair_array_to_map(j, m);
}
template < typename BasicJsonType, typename Key, typename Value, typename Hash, typename KeyEqual, typename Allocator,
typename = enable_if_t < !std::is_constructible <
typename BasicJsonType::string_t, Key >::value >>
inline void from_json(const BasicJsonType& j, std::unordered_map<Key, Value, Hash, KeyEqual, Allocator>& m)
void from_json(const BasicJsonType& j, std::unordered_map<Key, Value, Hash, KeyEqual, Allocator>& 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()), &j));
}
m.emplace(p.at(0).template get<Key>(), p.at(1).template get<Value>());
}
from_json_pair_array_to_map(j, m);
}
#if JSON_HAS_FILESYSTEM || JSON_HAS_EXPERIMENTAL_FILESYSTEM
// 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)
// 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)
template<typename BasicJsonType>
struct has_from_json<BasicJsonType, std_fs::path, void> : std::true_type {};
@@ -632,7 +588,7 @@ struct from_json_fn
/// namespace to hold default `from_json` function
/// to see why this is required:
/// http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2015/n4381.html
namespace // NOLINT(cert-dcl59-cpp,fuchsia-header-anon-namespaces,google-build-namespaces)
namespace // NOLINT(cert-dcl59-cpp,fuchsia-header-anon-namespaces,google-build-namespaces,misc-anonymous-namespace-in-header)
{
#endif
JSON_INLINE_VARIABLE constexpr const auto& from_json = // NOLINT(misc-definitions-in-headers)
+20 -16
View File
@@ -178,7 +178,7 @@ struct external_constructor<value_t::array>
template < typename BasicJsonType, typename CompatibleArrayType,
enable_if_t < !std::is_same<CompatibleArrayType, typename BasicJsonType::array_t>::value
#if JSON_HAS_RANGES && !defined(__MINGW32__)
#if JSON_HAS_RANGE_VIEW_CONVERSION
&& !is_compatible_range_view<CompatibleArrayType>::value
#endif
, int > = 0 >
@@ -222,9 +222,7 @@ struct external_constructor<value_t::array>
j.assert_invariant();
}
// 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__)
#if JSON_HAS_RANGE_VIEW_CONVERSION
template<typename BasicJsonType, typename CompatibleArrayType,
enable_if_t<is_compatible_range_view<std::remove_cvref_t<CompatibleArrayType>>::value, int> = 0>
static void construct(BasicJsonType& j, CompatibleArrayType && arr)
@@ -235,8 +233,11 @@ struct external_constructor<value_t::array>
for (auto&& x : std::forward<CompatibleArrayType>(arr))
{
j.m_data.m_value.array->push_back(x);
j.set_parent(j.m_data.m_value.array->back());
}
// set the parents only once all elements are in place: a push_back
// that reallocates moves the earlier elements, which does not keep
// their parent pointers
j.set_parents();
j.assert_invariant();
}
#endif
@@ -287,11 +288,13 @@ struct external_constructor<value_t::object>
#ifdef JSON_HAS_CPP_17
template<typename BasicJsonType, typename T,
enable_if_t<std::is_constructible<BasicJsonType, T>::value, int> = 0>
void to_json(BasicJsonType& j, const std::optional<T>& opt) noexcept
void to_json(BasicJsonType& j, const std::optional<T>& opt) noexcept(std::is_nothrow_assignable<BasicJsonType&, const T&>::value)
{
if (opt.has_value())
{
j = *opt;
// explicit construction, as the conversion from a basic_json with a different
// string type is explicit if JSON_USE_IMPLICIT_CONVERSIONS is 0 (#2649)
j = BasicJsonType(*opt);
}
else
{
@@ -379,7 +382,7 @@ template < typename BasicJsonType, typename CompatibleArrayType,
!std::is_same<typename BasicJsonType::binary_t, CompatibleArrayType>::value&&
!is_compatible_binary_type<BasicJsonType, CompatibleArrayType>::value&&
!is_basic_json<CompatibleArrayType>::value
#if JSON_HAS_RANGES && !defined(__MINGW32__)
#if JSON_HAS_RANGE_VIEW_CONVERSION
&& !is_compatible_range_view<CompatibleArrayType>::value
#endif
,
@@ -389,7 +392,7 @@ inline void to_json(BasicJsonType& j, const CompatibleArrayType& arr)
external_constructor<value_t::array>::construct(j, arr);
}
#if JSON_HAS_RANGES && !defined(__MINGW32__)
#if JSON_HAS_RANGE_VIEW_CONVERSION
template < typename BasicJsonType, typename T,
enable_if_t < is_compatible_range_view<std::remove_cvref_t<T>>::value
&& !is_compatible_string_type<BasicJsonType, std::remove_cvref_t<T>>::value
@@ -471,11 +474,13 @@ inline void to_json_tuple_impl(BasicJsonType& j, const Tuple& t, index_sequence<
j = { std::get<Idx>(t)... };
}
#if JSON_BRACE_INIT_COPY_SEMANTICS
// JSON_BRACE_INIT_COPY_SEMANTICS makes a one-element braced list copy its
// element instead of wrapping it, which would serialize std::tuple<int>{5} as 5
// rather than [5]. Build what the default deduction builds instead: an object
// if the element is a [string, value] pair, a one-element array otherwise.
// A one-element braced list does not reliably wrap its element: with
// JSON_BRACE_INIT_COPY_SEMANTICS it copies it, which would serialize
// std::tuple<int>{5} as 5 rather than [5], and some compilers (e.g., Apple clang
// 15 and 16) copy an element that is itself a basic_json even without it, so
// std::tuple<json>{true} became true rather than [true]. Build what the default
// deduction builds instead: an object if the element is a [string, value] pair,
// a one-element array otherwise.
template<typename BasicJsonType, typename Tuple>
inline void to_json_tuple_impl(BasicJsonType& j, const Tuple& t, index_sequence<0> /*unused*/)
{
@@ -493,7 +498,6 @@ inline void to_json_tuple_impl(BasicJsonType& j, const Tuple& t, index_sequence<
j = BasicJsonType::array({std::move(element)});
}
}
#endif
template<typename BasicJsonType, typename Tuple>
inline void to_json_tuple_impl(BasicJsonType& j, const Tuple& /*unused*/, index_sequence<> /*unused*/)
@@ -546,7 +550,7 @@ struct to_json_fn
/// namespace to hold default `to_json` function
/// to see why this is required:
/// http://www.open-std.org/jtc1/sc22/wg21/docs/papers/2015/n4381.html
namespace // NOLINT(cert-dcl59-cpp,fuchsia-header-anon-namespaces,google-build-namespaces)
namespace // NOLINT(cert-dcl59-cpp,fuchsia-header-anon-namespaces,google-build-namespaces,misc-anonymous-namespace-in-header)
{
#endif
JSON_INLINE_VARIABLE constexpr const auto& to_json = // NOLINT(misc-definitions-in-headers)
+21
View File
@@ -286,6 +286,27 @@ class other_error : public exception
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
NLOHMANN_JSON_NAMESPACE_END
File diff suppressed because it is too large Load Diff
@@ -8,12 +8,12 @@
#pragma once
#include <algorithm> // min
#include <array> // array
#include <cstddef> // size_t
#include <cstdint> // uint32_t
#include <cstring> // strlen
#include <iterator> // begin, end, iterator_traits, random_access_iterator_tag, distance, next
#include <memory> // shared_ptr, make_shared, addressof
#include <numeric> // accumulate
#include <streambuf> // streambuf
#include <string> // string, char_traits
#include <type_traits> // enable_if, is_base_of, is_pointer, is_integral, remove_pointer
@@ -28,6 +28,7 @@
#include <nlohmann/detail/iterators/iterator_traits.hpp>
#include <nlohmann/detail/macro_scope.hpp>
#include <nlohmann/detail/meta/type_traits.hpp>
#include <nlohmann/detail/string_utils.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
@@ -82,8 +83,9 @@ class file_input_adapter
};
/*!
Input adapter for a (caching) istream. Ignores a UFT Byte Order Mark at
beginning of input. Does not support changing the underlying std::streambuf
Input adapter for a (caching) istream. Does not skip a UTF Byte Order Mark
itself; that is done by the lexer's skip_bom(). Does not support changing
the underlying std::streambuf
in mid-input. Maintains underlying std::istream and std::streambuf to support
subsequent use of standard std::istream operations to process any input
characters following those used in parsing the JSON input. Clears the
@@ -106,7 +108,13 @@ class input_stream_adapter
// was given back with release_lookahead()
commit_lookahead();
#endif
is->clear(is->rdstate() & std::ios::eofbit);
// only call clear() if there is something to clear: it throws
// std::ios_base::failure if the stream has exceptions() enabled
// for a state bit that remains set, and a destructor must not throw
if ((is->rdstate() & ~std::ios::eofbit) != 0)
{
is->clear(is->rdstate() & std::ios::eofbit);
}
}
}
@@ -445,35 +453,19 @@ struct wide_string_input_helper<BaseInputAdapter, 4>
}
else
{
// get the current character
const auto wc = input.get_character();
// get the current character; converted to an unsigned type so that
// a negative unit (wint_t is signed on some platforms) is not
// mistaken for an ASCII character or for EOF
const auto wc = static_cast<std::uint32_t>(input.get_character());
// UTF-32 to UTF-8 encoding
if (wc < 0x80)
if (wc <= 0x10FFFF)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(wc);
utf8_bytes_filled = 1;
}
else if (wc <= 0x7FF)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(0xC0u | ((static_cast<unsigned int>(wc) >> 6u) & 0x1Fu));
utf8_bytes[1] = static_cast<std::char_traits<char>::int_type>(0x80u | (static_cast<unsigned int>(wc) & 0x3Fu));
utf8_bytes_filled = 2;
}
else if (wc <= 0xFFFF)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(0xE0u | ((static_cast<unsigned int>(wc) >> 12u) & 0x0Fu));
utf8_bytes[1] = static_cast<std::char_traits<char>::int_type>(0x80u | ((static_cast<unsigned int>(wc) >> 6u) & 0x3Fu));
utf8_bytes[2] = static_cast<std::char_traits<char>::int_type>(0x80u | (static_cast<unsigned int>(wc) & 0x3Fu));
utf8_bytes_filled = 3;
}
else if (wc <= 0x10FFFF)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(0xF0u | ((static_cast<unsigned int>(wc) >> 18u) & 0x07u));
utf8_bytes[1] = static_cast<std::char_traits<char>::int_type>(0x80u | ((static_cast<unsigned int>(wc) >> 12u) & 0x3Fu));
utf8_bytes[2] = static_cast<std::char_traits<char>::int_type>(0x80u | ((static_cast<unsigned int>(wc) >> 6u) & 0x3Fu));
utf8_bytes[3] = static_cast<std::char_traits<char>::int_type>(0x80u | (static_cast<unsigned int>(wc) & 0x3Fu));
utf8_bytes_filled = 4;
// UTF-32 to UTF-8 encoding
utf8_bytes_filled = 0;
encode_utf8(static_cast<std::uint32_t>(wc), [&utf8_bytes, &utf8_bytes_filled](std::uint32_t byte)
{
utf8_bytes[utf8_bytes_filled++] = static_cast<std::char_traits<char>::int_type>(byte);
});
}
else
{
@@ -510,24 +502,15 @@ struct wide_string_input_helper<BaseInputAdapter, 2>
// get the current character
const auto wc = input.get_character();
// UTF-16 to UTF-8 encoding
if (wc < 0x80)
if (0xD800 > wc || wc >= 0xE000)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(wc);
utf8_bytes_filled = 1;
}
else if (wc <= 0x7FF)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(0xC0u | ((static_cast<unsigned int>(wc) >> 6u)));
utf8_bytes[1] = static_cast<std::char_traits<char>::int_type>(0x80u | (static_cast<unsigned int>(wc) & 0x3Fu));
utf8_bytes_filled = 2;
}
else if (0xD800 > wc || wc >= 0xE000)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(0xE0u | ((static_cast<unsigned int>(wc) >> 12u)));
utf8_bytes[1] = static_cast<std::char_traits<char>::int_type>(0x80u | ((static_cast<unsigned int>(wc) >> 6u) & 0x3Fu));
utf8_bytes[2] = static_cast<std::char_traits<char>::int_type>(0x80u | (static_cast<unsigned int>(wc) & 0x3Fu));
utf8_bytes_filled = 3;
// a UTF-16 code unit outside the surrogate range is a valid
// code point (at most U+FFFF) on its own
utf8_bytes_filled = 0;
encode_utf8(static_cast<std::uint32_t>(wc), [&utf8_bytes, &utf8_bytes_filled](std::uint32_t byte)
{
utf8_bytes[utf8_bytes_filled++] = static_cast<std::char_traits<char>::int_type>(byte);
});
}
else
{
@@ -541,22 +524,25 @@ struct wide_string_input_helper<BaseInputAdapter, 2>
bool valid_pair = false;
if (wc <= 0xDBFF && JSON_HEDLEY_UNLIKELY(!input.empty()))
{
const auto wc2 = static_cast<unsigned int>(input.get_character());
// only consume the next unit if it completes the pair
const auto wc2 = static_cast<unsigned int>(*input.current);
if (0xDC00 <= wc2 && wc2 <= 0xDFFF)
{
input.get_character();
const auto charcode = 0x10000u + (((static_cast<unsigned int>(wc) & 0x3FFu) << 10u) | (wc2 & 0x3FFu));
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(0xF0u | (charcode >> 18u));
utf8_bytes[1] = static_cast<std::char_traits<char>::int_type>(0x80u | ((charcode >> 12u) & 0x3Fu));
utf8_bytes[2] = static_cast<std::char_traits<char>::int_type>(0x80u | ((charcode >> 6u) & 0x3Fu));
utf8_bytes[3] = static_cast<std::char_traits<char>::int_type>(0x80u | (charcode & 0x3Fu));
utf8_bytes_filled = 4;
utf8_bytes_filled = 0;
encode_utf8(charcode, [&utf8_bytes, &utf8_bytes_filled](std::uint32_t byte)
{
utf8_bytes[utf8_bytes_filled++] = static_cast<std::char_traits<char>::int_type>(byte);
});
valid_pair = true;
}
}
if (!valid_pair)
{
utf8_bytes[0] = static_cast<std::char_traits<char>::int_type>(wc);
// emit a byte that is never valid UTF-8 (see the UTF-32 case)
utf8_bytes[0] = 0xFF;
utf8_bytes_filled = 1;
}
}
@@ -763,6 +749,9 @@ struct container_input_adapter_factory< ContainerType,
static adapter_type create(ContainerType&& container)
{
// container is forwarded twice on purpose: the resulting begin/end
// iterator types must match adapter_type, computed the same way
// NOLINTNEXTLINE(bugprone-use-after-move,hicpp-invalid-access-moved)
return input_adapter(begin(std::forward<ContainerType>(container)), end(std::forward<ContainerType>(container)));
}
};
@@ -811,12 +800,16 @@ inline file_input_adapter input_adapter(std::FILE* file)
inline input_stream_adapter input_adapter(std::istream& stream)
{
if (stream.rdbuf() == nullptr)
{
JSON_THROW(parse_error::create(101, 0, "attempting to parse an empty input; check that your input string or stream contains the expected JSON", nullptr));
}
return input_stream_adapter(stream);
}
inline input_stream_adapter input_adapter(std::istream&& stream)
{
return input_stream_adapter(stream);
return input_adapter(stream);
}
#endif // JSON_NO_IO
@@ -845,16 +838,28 @@ template<typename T, std::size_t N>
auto input_adapter(T (&array)[N]) -> decltype(input_adapter(array, array + N)) // NOLINT(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays)
{
#if JSON_STRICT_NUL_HANDLING
// A `char` array from string-literal initialization (e.g. json::parse("123"))
// carries a trailing '\0' contributed by the compiler, not by the source
// text; drop exactly that one byte so it is not mistaken for real trailing
// data. Every other element type (unsigned char, std::uint8_t, ...) keeps
// the full extent unconditionally, since a trailing zero byte there is
// genuine data (e.g. CBOR/MessagePack). This intentionally does not
// strlen()-scan the array (as the pointer overload above does for a
// null-delimited string): for a `char` array that is not NUL-terminated
// within its bounds, that would read past the end of the array.
if (std::is_same<typename std::remove_cv<T>::type, char>::value && N > 0 && array[N - 1] == 0)
// A text-literal array from string-literal initialization (e.g.
// json::parse("123") or json::parse(L"123")) carries a trailing '\0'
// contributed by the compiler, not by the source text; drop exactly that
// one byte so it is not mistaken for real trailing data. This covers all
// character types that string literals can use: char, wchar_t, char16_t,
// char32_t, and (C++20) char8_t. Every other element type (unsigned char,
// std::uint8_t, ...) keeps the full extent unconditionally, since a
// trailing zero byte there is genuine data (e.g. CBOR/MessagePack). This
// intentionally does not strlen()-scan the array (as the pointer overload
// above does for a null-delimited string): for an array that is not
// NUL-terminated within its bounds, that would read past the end of the
// array.
using char_t = typename std::remove_cv<T>::type;
constexpr bool is_text_literal_type = std::is_same<char_t, char>::value
|| std::is_same<char_t, wchar_t>::value
|| std::is_same<char_t, char16_t>::value
|| std::is_same<char_t, char32_t>::value
#if defined(__cpp_char8_t)
|| std::is_same<char_t, char8_t>::value
#endif
;
if (is_text_literal_type && N > 0 && array[N - 1] == 0)
{
return input_adapter(array, array + N - 1);
}
@@ -862,9 +867,9 @@ auto input_adapter(T (&array)[N]) -> decltype(input_adapter(array, array + N)) /
return input_adapter(array, array + N);
}
// This class only handles inputs of input_buffer_adapter type.
// It's required so that expressions like {ptr, len} can be implicitly cast
// to the correct adapter.
// This class only handles inputs that construct a contiguous_bytes_input_adapter
// (e.g. span_input_adapter). It's required so that expressions like {ptr, len}
// can be implicitly cast to the correct adapter.
class span_input_adapter
{
public:
+104 -145
View File
@@ -10,6 +10,7 @@
#include <algorithm> // find_if, min
#include <cstddef>
#include <limits> // numeric_limits
#include <string> // string
#include <type_traits> // enable_if_t
#include <utility> // move, pair
@@ -175,6 +176,88 @@ template<typename ArrayType>
inline void reserve_array(ArrayType& /*arr*/, std::size_t /*len*/, priority_tag<0> /*unused*/)
{}
#if JSON_DIAGNOSTIC_POSITIONS
/*!
@brief set the diagnostic positions of a value the DOM SAX parsers just stored
Shared by json_sax_dom_parser and json_sax_dom_callback_parser. basic_json
befriends this struct, as the position members are private.
*/
struct diagnostic_positions
{
/*!
@param[in,out] v the value that was just parsed
@param[in] lexer the lexer that read it, or nullptr to leave @a v alone
*/
template<typename BasicJsonType, typename LexerType>
static void set_from_lexer(BasicJsonType& v, LexerType* lexer)
{
if (lexer)
{
// Lexer has read past the current field value, so set the end position to the current position.
// The start position will be set below based on the length of the string representation
// of the value.
v.end_position = lexer->get_position();
switch (v.type())
{
case value_t::boolean:
{
// 4 and 5 are the string length of "true" and "false"
v.start_position = v.end_position - (v.m_data.m_value.boolean ? 4 : 5);
break;
}
case value_t::null:
{
// 4 is the string length of "null"
v.start_position = v.end_position - 4;
break;
}
case value_t::string:
{
// escape sequences make the token longer than the value it
// parses to, so the start position cannot be derived from
// the value; use the offset the lexer recorded instead
v.start_position = lexer->get_token_start_position();
break;
}
case value_t::discarded:
{
// an object or array the callback of
// json_sax_dom_callback_parser rejected has no position
v.end_position = std::string::npos;
v.start_position = v.end_position;
break;
}
case value_t::binary:
case value_t::number_integer:
case value_t::number_unsigned:
case value_t::number_float:
{
v.start_position = v.end_position - lexer->get_string().size();
break;
}
case value_t::object:
case value_t::array:
{
// object and array are handled in start_object() and start_array() handlers
// skip setting the values here.
break;
}
default: // LCOV_EXCL_LINE
// Handle all possible types discretely, default handler should never be reached.
JSON_ASSERT(false); // NOLINT(cert-dcl03-c,hicpp-static-assert,misc-static-assert) LCOV_EXCL_LINE
}
}
}
};
#endif
/*!
@brief SAX implementation to create a JSON value from SAX events
@@ -376,76 +459,6 @@ class json_sax_dom_parser
private:
#if JSON_DIAGNOSTIC_POSITIONS
void handle_diagnostic_positions_for_json_value(BasicJsonType& v)
{
if (m_lexer_ref)
{
// Lexer has read past the current field value, so set the end position to the current position.
// The start position will be set below based on the length of the string representation
// of the value.
v.end_position = m_lexer_ref->get_position();
switch (v.type())
{
case value_t::boolean:
{
// 4 and 5 are the string length of "true" and "false"
v.start_position = v.end_position - (v.m_data.m_value.boolean ? 4 : 5);
break;
}
case value_t::null:
{
// 4 is the string length of "null"
v.start_position = v.end_position - 4;
break;
}
case value_t::string:
{
// escape sequences make the token longer than the value it
// parses to, so the start position cannot be derived from
// the value; use the offset the lexer recorded instead
v.start_position = m_lexer_ref->get_token_start_position();
break;
}
// As we handle the start and end positions for values created during parsing,
// we do not expect the following value type to be called. Regardless, set the positions
// in case this is created manually or through a different constructor. Exclude from lcov
// since the exact condition of this switch is esoteric.
// LCOV_EXCL_START
case value_t::discarded:
{
v.end_position = std::string::npos;
v.start_position = v.end_position;
break;
}
// LCOV_EXCL_STOP
case value_t::binary:
case value_t::number_integer:
case value_t::number_unsigned:
case value_t::number_float:
{
v.start_position = v.end_position - m_lexer_ref->get_string().size();
break;
}
case value_t::object:
case value_t::array:
{
// object and array are handled in start_object() and start_array() handlers
// skip setting the values here.
break;
}
default: // LCOV_EXCL_LINE
// Handle all possible types discretely, default handler should never be reached.
JSON_ASSERT(false); // NOLINT(cert-dcl03-c,hicpp-static-assert,misc-static-assert,-warnings-as-errors) LCOV_EXCL_LINE
}
}
}
#endif
/*!
@invariant If the ref stack is empty, then the passed value will be the new
root.
@@ -461,7 +474,7 @@ class json_sax_dom_parser
root = BasicJsonType(std::forward<Value>(v));
#if JSON_DIAGNOSTIC_POSITIONS
handle_diagnostic_positions_for_json_value(root);
diagnostic_positions::set_from_lexer(root, m_lexer_ref);
#endif
return &root;
@@ -474,7 +487,7 @@ class json_sax_dom_parser
ref_stack.back()->m_data.m_value.array->emplace_back(std::forward<Value>(v));
#if JSON_DIAGNOSTIC_POSITIONS
handle_diagnostic_positions_for_json_value(ref_stack.back()->m_data.m_value.array->back());
diagnostic_positions::set_from_lexer(ref_stack.back()->m_data.m_value.array->back(), m_lexer_ref);
#endif
return &(ref_stack.back()->m_data.m_value.array->back());
@@ -485,7 +498,7 @@ class json_sax_dom_parser
*object_element = BasicJsonType(std::forward<Value>(v));
#if JSON_DIAGNOSTIC_POSITIONS
handle_diagnostic_positions_for_json_value(*object_element);
diagnostic_positions::set_from_lexer(*object_element, m_lexer_ref);
#endif
return object_element;
@@ -582,8 +595,8 @@ class json_sax_dom_callback_parser
bool start_object(std::size_t len)
{
// check callback for object start
const bool keep = callback(static_cast<int>(ref_stack.size()), parse_event_t::object_start, discarded);
// check callback for object start; not called inside a discarded container
const bool keep = keep_stack.back() && callback(static_cast<int>(ref_stack.size()), parse_event_t::object_start, discarded);
keep_stack.push_back(keep);
// the key this object will be stored under, read before handle_value()
@@ -619,6 +632,18 @@ class json_sax_dom_callback_parser
bool key(string_t& val)
{
if (!keep_stack.back() || !ref_stack.back())
{
// the object is not stored: the value of this key is dropped in
// handle_value() without touching the key stacks
if (keep_stack.back())
{
BasicJsonType k = BasicJsonType(val);
static_cast<void>(callback(static_cast<int>(ref_stack.size()), parse_event_t::key, k));
}
return true;
}
BasicJsonType k = BasicJsonType(val);
// check callback for the key
@@ -662,7 +687,7 @@ class json_sax_dom_callback_parser
#if JSON_DIAGNOSTIC_POSITIONS
// Set start/end positions for discarded object.
handle_diagnostic_positions_for_json_value(*ref_stack.back());
diagnostic_positions::set_from_lexer(*ref_stack.back(), m_lexer_ref);
#endif
}
}
@@ -704,7 +729,7 @@ class json_sax_dom_callback_parser
bool start_array(std::size_t len)
{
const bool keep = callback(static_cast<int>(ref_stack.size()), parse_event_t::array_start, discarded);
const bool keep = keep_stack.back() && callback(static_cast<int>(ref_stack.size()), parse_event_t::array_start, discarded);
keep_stack.push_back(keep);
// see start_object()
@@ -778,7 +803,7 @@ class json_sax_dom_callback_parser
#if JSON_DIAGNOSTIC_POSITIONS
// Set start/end positions for discarded array.
handle_diagnostic_positions_for_json_value(*ref_stack.back());
diagnostic_positions::set_from_lexer(*ref_stack.back(), m_lexer_ref);
#endif
}
}
@@ -831,72 +856,6 @@ class json_sax_dom_callback_parser
private:
#if JSON_DIAGNOSTIC_POSITIONS
void handle_diagnostic_positions_for_json_value(BasicJsonType& v)
{
if (m_lexer_ref)
{
// Lexer has read past the current field value, so set the end position to the current position.
// The start position will be set below based on the length of the string representation
// of the value.
v.end_position = m_lexer_ref->get_position();
switch (v.type())
{
case value_t::boolean:
{
// 4 and 5 are the string length of "true" and "false"
v.start_position = v.end_position - (v.m_data.m_value.boolean ? 4 : 5);
break;
}
case value_t::null:
{
// 4 is the string length of "null"
v.start_position = v.end_position - 4;
break;
}
case value_t::string:
{
// escape sequences make the token longer than the value it
// parses to, so the start position cannot be derived from
// the value; use the offset the lexer recorded instead
v.start_position = m_lexer_ref->get_token_start_position();
break;
}
case value_t::discarded:
{
v.end_position = std::string::npos;
v.start_position = v.end_position;
break;
}
case value_t::binary:
case value_t::number_integer:
case value_t::number_unsigned:
case value_t::number_float:
{
v.start_position = v.end_position - m_lexer_ref->get_string().size();
break;
}
case value_t::object:
case value_t::array:
{
// object and array are handled in start_object() and start_array() handlers
// skip setting the values here.
break;
}
default: // LCOV_EXCL_LINE
// Handle all possible types discretely, default handler should never be reached.
JSON_ASSERT(false); // NOLINT(cert-dcl03-c,hicpp-static-assert,misc-static-assert,-warnings-as-errors) LCOV_EXCL_LINE
}
}
}
#endif
/// if there is a pending duplicate-key stash entry for this exact slot,
/// remove it from the stash; if restore_value is true, the stashed
/// previous value is moved back into the slot first (use this when the
@@ -1018,7 +977,7 @@ class json_sax_dom_callback_parser
auto value = BasicJsonType(std::forward<Value>(v));
#if JSON_DIAGNOSTIC_POSITIONS
handle_diagnostic_positions_for_json_value(value);
diagnostic_positions::set_from_lexer(value, m_lexer_ref);
#endif
// check callback
+45 -222
View File
@@ -9,10 +9,9 @@
#pragma once
#include <array> // array
#include <clocale> // localeconv
#include <cstddef> // size_t
#include <cstdint> // uint32_t
#include <cstdio> // snprintf
#include <cstdlib> // strtof, strtod, strtold, strtoll, strtoull
#include <initializer_list> // initializer_list
#include <string> // char_traits, string
#include <utility> // move
@@ -24,6 +23,7 @@
#include <nlohmann/detail/input/string_scan.hpp>
#include <nlohmann/detail/macro_scope.hpp>
#include <nlohmann/detail/meta/type_traits.hpp>
#include <nlohmann/detail/string_utils.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
@@ -217,26 +217,14 @@ class lexer : public lexer_base<BasicJsonType>
~lexer() = default;
private:
/////////////////////
// locales
/////////////////////
/// return the decimal point of the current locale
static char get_decimal_point() noexcept
{
const auto* loc = localeconv();
JSON_ASSERT(loc != nullptr);
return (loc->decimal_point == nullptr) ? '.' : *(loc->decimal_point);
}
/////////////////////
// scan functions
/////////////////////
/*!
@brief get codepoint from 4 hex characters following `\u`
@brief get codepoint from 4 hex characters following `\\u`
For input "\u c1 c2 c3 c4" the codepoint is:
For input "\\u c1 c2 c3 c4" the codepoint is:
(c1 * 0x1000) + (c2 * 0x0100) + (c3 * 0x0010) + c4
= (c1 << 12) + (c2 << 8) + (c3 << 4) + (c4 << 0)
@@ -500,32 +488,10 @@ class lexer : public lexer_base<BasicJsonType>
JSON_ASSERT(0x00 <= codepoint && codepoint <= 0x10FFFF);
// translate codepoint into bytes
if (codepoint < 0x80)
encode_utf8(static_cast<std::uint32_t>(codepoint), [this](std::uint32_t byte)
{
// 1-byte characters: 0xxxxxxx (ASCII)
add(static_cast<char_int_type>(codepoint));
}
else if (codepoint <= 0x7FF)
{
// 2-byte characters: 110xxxxx 10xxxxxx
add(static_cast<char_int_type>(0xC0u | (static_cast<unsigned int>(codepoint) >> 6u)));
add(static_cast<char_int_type>(0x80u | (static_cast<unsigned int>(codepoint) & 0x3Fu)));
}
else if (codepoint <= 0xFFFF)
{
// 3-byte characters: 1110xxxx 10xxxxxx 10xxxxxx
add(static_cast<char_int_type>(0xE0u | (static_cast<unsigned int>(codepoint) >> 12u)));
add(static_cast<char_int_type>(0x80u | ((static_cast<unsigned int>(codepoint) >> 6u) & 0x3Fu)));
add(static_cast<char_int_type>(0x80u | (static_cast<unsigned int>(codepoint) & 0x3Fu)));
}
else
{
// 4-byte characters: 11110xxx 10xxxxxx 10xxxxxx 10xxxxxx
add(static_cast<char_int_type>(0xF0u | (static_cast<unsigned int>(codepoint) >> 18u)));
add(static_cast<char_int_type>(0x80u | ((static_cast<unsigned int>(codepoint) >> 12u) & 0x3Fu)));
add(static_cast<char_int_type>(0x80u | ((static_cast<unsigned int>(codepoint) >> 6u) & 0x3Fu)));
add(static_cast<char_int_type>(0x80u | (static_cast<unsigned int>(codepoint) & 0x3Fu)));
}
add(static_cast<char_int_type>(byte));
});
break;
}
@@ -975,10 +941,15 @@ class lexer : public lexer_base<BasicJsonType>
case '\n':
case '\r':
case char_traits<char_type>::eof():
return true;
#if !JSON_STRICT_NUL_HANDLING
case '\0':
#endif
// a NUL byte is the end of the input (see scan()),
// so leave it for scan() to see
unget();
return true;
#endif
default:
break;
@@ -1036,24 +1007,6 @@ class lexer : public lexer_base<BasicJsonType>
}
}
JSON_HEDLEY_NON_NULL(2)
static void strtof(float& f, const char* str, char** endptr) noexcept
{
f = std::strtof(str, endptr);
}
JSON_HEDLEY_NON_NULL(2)
static void strtof(double& f, const char* str, char** endptr) noexcept
{
f = std::strtod(str, endptr);
}
JSON_HEDLEY_NON_NULL(2)
static void strtof(long double& f, const char* str, char** endptr) noexcept
{
f = std::strtold(str, endptr);
}
/*!
@brief scan a number literal
@@ -1093,7 +1046,7 @@ class lexer : public lexer_base<BasicJsonType>
@note The scanner is independent of the current locale: token_buffer
always holds `.`. Only the std::strtod fallback of convert_number()
depends on the locale, and it looks up the decimal point right
before converting (see convert_float_locale_aware()).
before converting (see detail::convert_float_locale_aware()).
*/
token_type scan_number() // lgtm [cpp/use-of-goto] `goto` is used in this function to implement the number-parsing state machine described above. By design, any finite input will eventually reach the "done" state or return token_type::parse_error. In each intermediate state, 1 byte of the input is appended to the token_buffer vector, and only the already initialized variables token_buffer, number_type, and error_message are manipulated.
{
@@ -1424,59 +1377,6 @@ scan_number_done:
return token_type::uninitialized;
}
/*!
@brief check whether Clinger's fast path can still succeed for this token
parse_float_fast() needs a significand below 2^53. A mantissa with 17 or
more significant digits is at least 10^16 and therefore always exceeds it,
so calling the fast path would walk the token one extra time only to
decline before strtod has to run anyway.
Significant digits are the mantissa's digits from the first nonzero one on;
the sign, the decimal point, leading zeros, and the exponent do not count.
The answer is derived from indices - the digits are not scanned again - so
this stays off the hot path of the number scanners.
@param[in] mantissa_end offset just past the last mantissa byte in
token_buffer
@return false if parse_float_fast() is guaranteed to decline
*/
bool mantissa_fits_clinger(std::size_t mantissa_end) const
{
// 10^16 already exceeds 2^53, so 17 digits can never fit
constexpr std::size_t limit = 17;
const std::size_t neg = (!token_buffer.empty() && token_buffer[0] == '-') ? 1u : 0u;
const std::size_t has_dot = (decimal_point_position != std::string::npos) ? 1u : 0u;
// the JSON grammar restricts the integer part to "0" or [1-9][0-9]*, so
// a leading zero can only be a lone "0", which is not significant
const std::size_t lead_zero = (token_buffer[neg] == '0') ? 1u : 0u;
JSON_ASSERT(mantissa_end >= neg + has_dot + lead_zero);
std::size_t digits = mantissa_end - neg - has_dot - lead_zero;
if (JSON_HEDLEY_LIKELY(digits < limit))
{
return true;
}
// Only a number below 1 can carry further insignificant zeros, and only
// while the count stays at the limit does removing them change the
// answer - so this loop is skipped for all but a few tokens. The
// fraction is located through decimal_point_position rather than by
// searching '.'.
if (lead_zero != 0)
{
JSON_ASSERT(has_dot != 0); // an integer "0" cannot reach the limit
for (std::size_t i = decimal_point_position + 1;
digits >= limit && i < mantissa_end && token_buffer[i] == '0'; ++i)
{
--digits;
}
}
return digits < limit;
}
/*!
@brief convert the number text in token_buffer to its value and token type
@@ -1490,49 +1390,34 @@ scan_number_done:
token_buffer (the index of 'e'/'E', or
token_buffer.size() when there is no exponent);
used to skip Clinger's fast path when it cannot
possibly succeed - see mantissa_fits_clinger()
possibly succeed - see detail::mantissa_fits_clinger()
*/
token_type convert_number(token_type number_type, std::size_t mantissa_end)
{
// If the caller does not need the converted value (only whether the
// input is syntactically valid; see json_sax_acceptor/accept()), an
// unsigned/integer token can be reported without calling
// strtoull()/strtoll() at all, *provided* we can already tell from
// the digit count alone that the conversion cannot overflow 64 bits.
// Such tokens are always finite and are accepted unconditionally by
// the parser regardless of their actual value (parser::sax_parse_internal()
// never checks finiteness for value_unsigned/value_integer), so the
// classification below is all that is needed.
// accept() only needs to know whether the input is valid, so it sets
// discard_number_values (see json.hpp), and an integer token whose
// digit count shows that it fits is reported without calling
// convert_integer(). A number with up to 18 digits always fits into
// both std::uint64_t and std::int64_t (18 nines is about 1e18, below
// INT64_MAX, which is about 9.2e18). Longer tokens take the exact path
// below, including the fallback to floating point when the value does
// not fit.
//
// A decimal number with up to 18 digits is always representable in
// both std::uint64_t and std::int64_t (18 nines is ~1e18, well below
// both UINT64_MAX ~1.8e19 and INT64_MAX ~9.2e18), so strtoull()/strtoll()
// could not have set errno to ERANGE for it. Numbers with more digits
// (rare in practice) fall through to the exact code below, unchanged,
// so their handling -- including reclassification to value_float when
// the value overflows 64 bits, and rejection when it is not even
// finite as a double -- is bit-for-bit identical to before this
// optimization.
// With a narrower number_unsigned_t/number_integer_t (e.g.
// std::uint32_t), the exact path would reclassify some of these tokens
// as (finite) floats, while this check reports integers. That does not
// change the result of accept(): it always parses through
// json_sax_acceptor, whose number callbacks discard their argument and
// return true, and the parser rejects neither integers nor finite
// floats. value_unsigned/value_integer are left unset here, so a caller
// that reads the converted value must not set discard_number_values.
//
// Note this reasons about std::uint64_t/std::int64_t, not about
// number_unsigned_t/number_integer_t (BasicJsonType's own, possibly
// narrower, template parameters -- e.g. std::uint32_t). That is fine
// *only* because discard_number_values is exclusively set by
// accept() (see json.hpp), and accept() always parses through the
// library's own json_sax_acceptor -- never a user-supplied SAX
// consumer -- whose number_unsigned()/number_integer()/number_float()
// callbacks unconditionally discard their argument and return true.
// So for every caller that can reach this branch, neither the token
// classification below nor the eventual (possibly narrowed, and on
// this fast path left stale/unset) value_unsigned/value_integer is
// ever consulted -- an unsigned/integer token is accepted outright,
// and even a >18-digit token that this fast path deliberately falls
// through for is, once reclassified to value_float, still finite
// (and thus accepted) for any digit count that fits in number_unsigned_t
// or number_integer_t regardless of that type's width. If this
// function is ever taught to run with discard_number_values true for
// a caller that *does* read the converted value, this reasoning (and
// the fast path below) would need to be revisited.
// On contiguous input, scan_number_bulk_contiguous() converts integer
// tokens itself and does not pass them to this function, unless
// JSON_DIAGNOSTIC_POSITIONS is enabled. This check is therefore only
// reached for input without bulk access (e.g. streams), with
// JSON_DIAGNOSTIC_POSITIONS, or when scan_number_bulk_contiguous()
// falls back to scan_number().
if (discard_number_values)
{
constexpr std::size_t safe_digit_count = 18;
@@ -1563,77 +1448,15 @@ scan_number_done:
// (Eisel-Lemire, locale-independent, correctly rounded) when available;
// otherwise the exact Clinger fast path (double only); otherwise the
// locale-aware strtof/strtod/strtold.
if (parse_float_from_chars(num_begin, num_end, value_float))
{
return token_type::value_float;
}
// Skipping a fast path that cannot succeed is lossless and saves a full
// extra pass over the token's bytes, which otherwise shows up on
// high-precision inputs such as canada.json
if (mantissa_fits_clinger(mantissa_end)
&& parse_float_fast(num_begin, num_end, value_float))
if (convert_float_fast(num_begin, num_end, decimal_point_position, mantissa_end, value_float))
{
return token_type::value_float;
}
convert_float_locale_aware();
convert_float_locale_aware(token_buffer, decimal_point_position, value_float);
return token_type::value_float;
}
/*!
@brief convert the float in token_buffer with strtof/strtod/strtold
These functions expect the decimal point of the *current* locale, so it is
looked up right before the conversion instead of once when the lexer is
constructed: a locale change in between (by a parser callback, a SAX
handler, or another thread) must not truncate the value (#5198). The
token has been validated before, so if the conversion stops early and the
decimal point changed in the meantime, the locale changed between the
lookup and the call, and the conversion is repeated with the new decimal
point. If the decimal point did not change, a retry cannot succeed: the
locale's decimal point is not a single character (e.g., the two-byte
U+066B of ar_EG.UTF-8 or fa_IR.UTF-8) and cannot be substituted in place.
The value strtod parsed up to that point is kept, as before this change.
Note that changing the locale in another thread *while* strtod runs is
undefined behavior of the C library, which this function cannot prevent.
*/
void convert_float_locale_aware()
{
const bool has_dot = decimal_point_position != std::string::npos;
char decimal_point = get_decimal_point();
for (;;)
{
const bool substitute = has_dot && decimal_point != '.';
if (substitute)
{
token_buffer[decimal_point_position] = static_cast<typename string_t::value_type>(decimal_point);
}
char* endptr = nullptr; // NOLINT(misc-const-correctness,cppcoreguidelines-pro-type-vararg,hicpp-vararg)
strtof(value_float, token_buffer.data(), &endptr);
if (substitute)
{
// get_string() hands the token to the SAX interface with '.'
token_buffer[decimal_point_position] = '.';
}
if (JSON_HEDLEY_LIKELY(endptr == token_buffer.data() + token_buffer.size()))
{
return;
}
// retry only if the locale changed; otherwise, this would loop forever
const char current_decimal_point = get_decimal_point();
if (current_decimal_point == decimal_point)
{
return;
}
decimal_point = current_decimal_point;
}
}
/*!
@brief contiguous fast path for scanning a number
@@ -2023,7 +1846,7 @@ scan_number_done:
return value_float;
}
/// return current string value (implicitly resets the token; useful only once)
/// return current string value
string_t& get_string()
{
// a number token holds '.' regardless of the locale (#4084)
@@ -2325,11 +2148,11 @@ scan_number_done:
/// the position of the decimal point in token_buffer
std::size_t decimal_point_position = std::string::npos;
/// whether the caller (e.g. accept()/json_sax_acceptor) only needs the
/// token classification and never looks at the converted numeric value;
/// when set, scan_number() may skip strtoull()/strtoll() for
/// value_unsigned/value_integer tokens whose digit count guarantees they
/// fit into 64 bits (see scan_number())
/// whether the caller only needs the token types and never looks at the
/// converted numeric values; set only by accept(), which parses through
/// json_sax_acceptor. When set, convert_number() skips converting integer
/// tokens whose digit count guarantees that they fit into 64 bits (see
/// there)
const bool discard_number_values = false;
};
+420 -2
View File
@@ -3,6 +3,7 @@
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2021 The fast_float authors <https://github.com/fastfloat/fast_float>
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
@@ -10,10 +11,16 @@
#include <array> // array
#include <cfloat> // FLT_EVAL_METHOD
#include <clocale> // localeconv
#include <cstddef> // size_t
#include <cstdint> // int64_t, uint64_t
#include <cstdlib> // strtof, strtod, strtold
#include <cstring> // memcpy
#include <limits> // numeric_limits
#include <string> // string
#include <nlohmann/detail/bit_ops.hpp>
#include <nlohmann/detail/input/pow5_table.hpp>
#include <nlohmann/detail/macro_scope.hpp>
// std::from_chars lives in <charconv>, but being in C++17 mode does not
@@ -29,8 +36,9 @@
// This file contains the value-conversion helpers used by the lexer to turn an
// already-validated number token into a value, without the locale/errno
// overhead of std::strtoull/std::strtod. They are free functions so the lexer
// stays focused on scanning; see lexer::convert_number().
// overhead of std::strtoull/std::strtod where possible. They are free functions
// so the lexer stays focused on scanning (see lexer::convert_number()) and so
// that other parsers of JSON text can convert tokens exactly like it does.
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
@@ -293,5 +301,415 @@ bool parse_float_from_chars(const char* first, const char* last, FloatType& out)
#endif
}
/// whether the eight bytes of @a v (see read_eight_bytes()) are ASCII digits
/// (after fast_float's is_made_of_eight_digits_fast)
inline bool is_eight_digits(std::uint64_t v) noexcept
{
return ((v & 0xF0F0F0F0F0F0F0F0u) | (((v + 0x0606060606060606u) & 0xF0F0F0F0F0F0F0F0u) >> 4u)) == 0x3333333333333333u;
}
/// the value of the eight ASCII digits in @a v (see read_eight_bytes()), three
/// multiplications instead of eight (after simdjson and fast_float)
inline std::uint32_t parse_eight_digits(std::uint64_t v) noexcept
{
v = ((v & 0x0F0F0F0F0F0F0F0Fu) * 2561u) >> 8u;
v = ((v & 0x00FF00FF00FF00FFu) * 6553601u) >> 16u;
return static_cast<std::uint32_t>(((v & 0x0000FFFF0000FFFFu) * 42949672960001u) >> 32u);
}
/*!
@brief the double nearest to w * 10^q (Eisel-Lemire)
The algorithm of Daniel Lemire, "Number Parsing at a Gigabyte per Second"
(Software: Practice and Experience, 2021), after fast_float's compute_float
(used under the MIT license). With a 128-bit approximation of 5^q, the product
is always sufficient to round correctly for w with at most 19 digits (Noble
Mushtak and Daniel Lemire, "Fast number parsing without fallback", Software:
Practice and Experience, 2023). Only integer arithmetic is used, so the result
does not depend on the floating-point environment.
@param[in] q decimal exponent
@param[in] w significand, w != 0
@return the IEEE-754 bits of the positive result (0 for underflow, infinity
for overflow)
*/
inline std::uint64_t eisel_lemire(std::int64_t q, std::uint64_t w) noexcept
{
constexpr int mantissa_bits = 52;
constexpr std::uint64_t infinity = std::uint64_t{0x7FF} << mantissa_bits;
if (q < pow5_128_smallest_power)
{
return 0;
}
if (q > pow5_128_largest_power)
{
return infinity;
}
const int lz = count_leading_zeros(w);
w <<= static_cast<unsigned>(lz);
const auto index = static_cast<std::size_t>(2 * (q - pow5_128_smallest_power));
uint128_parts product = full_multiplication(w, pow5_128()[index]);
constexpr std::uint64_t precision_mask = 0xFFFFFFFFFFFFFFFFu >> (mantissa_bits + 3);
if ((product.high & precision_mask) == precision_mask)
{
// the lower bits may carry into the result: use the next 64 bits of 5^q
const uint128_parts second = full_multiplication(w, pow5_128()[index + 1]);
product.low += second.high;
if (second.high > product.low)
{
++product.high;
}
}
const auto upperbit = static_cast<int>(product.high >> 63u);
const int shift = upperbit + 64 - mantissa_bits - 3;
std::uint64_t mantissa = product.high >> static_cast<unsigned>(shift);
// floor(log2(10^q)) + 63 + 1023, with log2(10) ~ 217706 / 2^16
std::int64_t power2 = (((152170 + 65536) * q) >> 16) + 63 + upperbit - lz + 1023;
if (power2 <= 0) // subnormal
{
if (-power2 + 1 >= 64)
{
return 0;
}
mantissa >>= static_cast<unsigned>(-power2 + 1);
mantissa += (mantissa & 1u);
mantissa >>= 1u;
// rounding up may produce the smallest normal number
power2 = (mantissa < (std::uint64_t{1} << mantissa_bits)) ? 0 : 1;
return mantissa | (static_cast<std::uint64_t>(power2) << mantissa_bits);
}
// a value exactly between two doubles rounds to even; this can only
// happen for small |q|, where 5^q is exact
if (product.low <= 1 && q >= -4 && q <= 23 && (mantissa & 3u) == 1
&& (mantissa << static_cast<unsigned>(shift)) == product.high)
{
mantissa &= ~std::uint64_t{1};
}
mantissa += (mantissa & 1u);
mantissa >>= 1u;
if (mantissa >= (std::uint64_t{2} << mantissa_bits))
{
mantissa = std::uint64_t{1} << mantissa_bits;
++power2;
}
mantissa &= ~(std::uint64_t{1} << mantissa_bits);
if (power2 >= 0x7FF)
{
return infinity;
}
return mantissa | (static_cast<std::uint64_t>(power2) << mantissa_bits);
}
/*!
@brief parse a validated float token with the Eisel-Lemire algorithm
The significand is accumulated eight digits at a time where possible. A token
with more than 19 significant digits is truncated to w; the value then lies
in [w, w + 1) * 10^q, and it is only returned if both ends round to the same
double, which covers all but a few such tokens.
@param[in] first pointer to the first character of the token
@param[in] last pointer past the last character
@param[out] out the correctly rounded value on success (±infinity if it
overflows, like strtod)
@return true on success; false if strtod must decide
*/
inline bool parse_float_eisel_lemire(const char* first, const char* last, double& out) noexcept
{
const char* p = first;
const bool negative = (p != last && *p == '-');
if (negative)
{
++p;
}
std::uint64_t w = 0;
unsigned int digits = 0; // significant digits in w
std::int64_t exponent = 0;
bool truncated = false;
bool in_fraction = false;
for (;;)
{
// eight digits at a time, as long as they fit into w
while (w != 0 && digits <= 19u - 8u && last - p >= 8)
{
const std::uint64_t v = read_eight_bytes(p);
if (!is_eight_digits(v))
{
break;
}
w = (w * 100000000u) + parse_eight_digits(v);
digits += 8u;
exponent -= in_fraction ? 8 : 0;
p += 8;
}
if (p == last)
{
break;
}
const char c = *p;
if (c >= '0' && c <= '9')
{
if (w == 0 && c == '0')
{
// leading zeros are not significant, but scale a fraction
exponent -= in_fraction ? 1 : 0;
}
else if (digits < 19u)
{
w = (w * 10u) + static_cast<std::uint64_t>(c - '0');
++digits;
exponent -= in_fraction ? 1 : 0;
}
else
{
// dropped: the value lies between w and w + 1 (in units of
// the last kept digit) unless all dropped digits are zero
truncated = truncated || c != '0';
exponent += in_fraction ? 0 : 1;
}
++p;
}
else if (c == '.')
{
in_fraction = true;
++p;
}
else
{
break; // 'e' or 'E'
}
}
if (p != last)
{
++p; // 'e' or 'E'
bool exp_negative = false;
if (p != last && (*p == '-' || *p == '+'))
{
exp_negative = (*p == '-');
++p;
}
std::int64_t exp_value = 0;
for (; p != last; ++p)
{
// saturate: any exponent beyond this under- or overflows anyway
if (exp_value < 100000)
{
exp_value = (exp_value * 10) + (*p - '0');
}
}
exponent += exp_negative ? -exp_value : exp_value;
}
std::uint64_t bits = 0;
if (w != 0)
{
bits = eisel_lemire(exponent, w);
if (truncated && (w + 1 == 0 || eisel_lemire(exponent, w + 1) != bits))
{
return false;
}
}
bits |= negative ? (std::uint64_t{1} << 63u) : 0u;
static_assert(sizeof(double) == sizeof(std::uint64_t), "double must have 64 bits");
std::memcpy(&out, &bits, sizeof(out));
return true;
}
/// Eisel-Lemire is only implemented for `double`
template<typename FloatType>
bool parse_float_eisel_lemire(const char* /*first*/, const char* /*last*/, FloatType& /*out*/) noexcept
{
return false;
}
/*!
@brief check whether Clinger's fast path can still succeed for a float token
parse_float_fast() needs a significand below 2^53. A mantissa with 17 or
more significant digits is at least 10^16 and therefore always exceeds it,
so calling the fast path would walk the token one extra time only to
decline before strtod has to run anyway.
Significant digits are the mantissa's digits from the first nonzero one on;
the sign, the decimal point, leading zeros, and the exponent do not count.
The answer is derived from indices - the digits are not scanned again - so
this stays off the hot path of the number scanners.
@param[in] token the validated number token ('.' as decimal point)
@param[in] decimal_point_position index of the '.' in @a token, or
std::string::npos if there is none
@param[in] mantissa_end offset just past the last mantissa byte
@return false if parse_float_fast() is guaranteed to decline
*/
inline bool mantissa_fits_clinger(const char* token, std::size_t decimal_point_position, std::size_t mantissa_end) noexcept
{
// 10^16 already exceeds 2^53, so 17 digits can never fit
constexpr std::size_t limit = 17;
const std::size_t neg = (token[0] == '-') ? 1u : 0u;
const std::size_t has_dot = (decimal_point_position != std::string::npos) ? 1u : 0u;
// the JSON grammar restricts the integer part to "0" or [1-9][0-9]*, so
// a leading zero can only be a lone "0", which is not significant
const std::size_t lead_zero = (token[neg] == '0') ? 1u : 0u;
JSON_ASSERT(mantissa_end >= neg + has_dot + lead_zero);
std::size_t digits = mantissa_end - neg - has_dot - lead_zero;
if (JSON_HEDLEY_LIKELY(digits < limit))
{
return true;
}
// Only a number below 1 can carry further insignificant zeros, and only
// while the count stays at the limit does removing them change the
// answer - so this loop is skipped for all but a few tokens. The
// fraction is located through decimal_point_position rather than by
// searching '.'.
if (lead_zero != 0)
{
JSON_ASSERT(has_dot != 0); // an integer "0" cannot reach the limit
for (std::size_t i = decimal_point_position + 1;
digits >= limit && i < mantissa_end && token[i] == '0'; ++i)
{
--digits;
}
}
return digits < limit;
}
/*!
@brief convert a validated float token without the C library, if possible
Tries std::from_chars (when available), Clinger's exact fast path (double
only, skipped when it cannot succeed), and the Eisel-Lemire algorithm (double
only).
@param[in] first pointer to the first character of the token
@param[in] last pointer past the last character
@param[in] decimal_point_position index of the '.' in the token, or
std::string::npos if there is none
@param[in] mantissa_end offset just past the last mantissa byte (the
index of 'e'/'E', or the token length)
@param[out] value the converted value on success
@return true if the value was converted; false if convert_float_locale_aware()
must convert it
*/
template<typename FloatType>
bool convert_float_fast(const char* first, const char* last, std::size_t decimal_point_position,
std::size_t mantissa_end, FloatType& value) noexcept
{
if (parse_float_from_chars(first, last, value))
{
return true;
}
// Skipping a fast path that cannot succeed is lossless and saves a full
// extra pass over the token's bytes, which otherwise shows up on
// high-precision inputs such as canada.json
if (mantissa_fits_clinger(first, decimal_point_position, mantissa_end)
&& parse_float_fast(first, last, value))
{
return true;
}
return parse_float_eisel_lemire(first, last, value);
}
/// std::strtof, std::strtod, or std::strtold, chosen by the type of @a f
JSON_HEDLEY_NON_NULL(2)
inline void strtof_by_type(float& f, const char* str, char** endptr) noexcept
{
f = std::strtof(str, endptr);
}
/// std::strtof, std::strtod, or std::strtold, chosen by the type of @a f
JSON_HEDLEY_NON_NULL(2)
inline void strtof_by_type(double& f, const char* str, char** endptr) noexcept
{
f = std::strtod(str, endptr);
}
/// std::strtof, std::strtod, or std::strtold, chosen by the type of @a f
JSON_HEDLEY_NON_NULL(2)
inline void strtof_by_type(long double& f, const char* str, char** endptr) noexcept
{
f = std::strtold(str, endptr);
}
/// return the decimal point of the current locale
inline char get_decimal_point() noexcept
{
const auto* loc = localeconv();
JSON_ASSERT(loc != nullptr);
return (loc->decimal_point == nullptr) ? '.' : *(loc->decimal_point);
}
/*!
@brief convert a validated float token with strtof/strtod/strtold
These functions expect the decimal point of the *current* locale, so it is
looked up right before the conversion instead of once when the lexer is
constructed: a locale change in between (by a parser callback, a SAX
handler, or another thread) must not truncate the value (#5198). The
token has been validated before, so if the conversion stops early and the
decimal point changed in the meantime, the locale changed between the
lookup and the call, and the conversion is repeated with the new decimal
point. If the decimal point did not change, a retry cannot succeed: the
locale's decimal point is not a single character (e.g., the two-byte
U+066B of ar_EG.UTF-8 or fa_IR.UTF-8) and cannot be substituted in place.
The value strtod parsed up to that point is kept, as before this change.
Note that changing the locale in another thread *while* strtod runs is
undefined behavior of the C library, which this function cannot prevent.
@param[in,out] token the token with '.' as decimal point; its
decimal point is replaced during the
conversion and restored afterwards
(data() must be NUL-terminated)
@param[in] decimal_point_position index of the '.' in @a token, or
std::string::npos if there is none
@param[out] value the converted value
*/
template<typename StringType, typename FloatType>
void convert_float_locale_aware(StringType& token, std::size_t decimal_point_position, FloatType& value)
{
const bool has_dot = decimal_point_position != std::string::npos;
char decimal_point = get_decimal_point();
for (;;)
{
const bool substitute = has_dot && decimal_point != '.';
if (substitute)
{
token[decimal_point_position] = static_cast<typename StringType::value_type>(decimal_point);
}
char* endptr = nullptr; // NOLINT(misc-const-correctness,cppcoreguidelines-pro-type-vararg,hicpp-vararg)
strtof_by_type(value, token.data(), &endptr);
if (substitute)
{
// the caller hands the token on (e.g. to the SAX interface) with '.'
token[decimal_point_position] = '.';
}
if (JSON_HEDLEY_LIKELY(endptr == token.data() + token.size()))
{
return;
}
// retry only if the locale changed; otherwise, this would loop forever
const char current_decimal_point = get_decimal_point();
if (current_decimal_point == decimal_point)
{
return;
}
decimal_point = current_decimal_point;
}
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+51 -43
View File
@@ -54,7 +54,9 @@ using parser_callback_t =
/*!
@brief syntax analysis
This class implements a recursive descent parser.
This class implements a parser for JSON text. Nested arrays and objects are tracked with an explicit
stack instead of recursion, so deeply nested input does not exhaust the call stack, and what is read
is reported as SAX events.
*/
template<typename BasicJsonType, typename InputAdapterType>
class parser
@@ -98,28 +100,9 @@ class parser
if (callback)
{
json_sax_dom_callback_parser<BasicJsonType, InputAdapterType> sdp(result, callback, allow_exceptions, &m_lexer);
sax_parse_internal(&sdp);
if (strict)
{
// in strict mode, input must be completely read
if (get_token() != token_type::end_of_input)
{
sdp.parse_error(m_lexer.get_position(),
m_lexer.get_token_string(),
parse_error::create(101, m_lexer.get_position(),
exception_message(token_type::end_of_input, "value"), nullptr));
}
}
else
{
// the caller keeps using the input: position it right after
// the value by leaving the character that terminated it
m_lexer.release_lookahead();
}
// in case of an error, return a discarded value
if (sdp.is_errored())
if (!parse_dom(sdp, strict))
{
result = value_t::discarded;
return;
@@ -135,26 +118,9 @@ class parser
else
{
json_sax_dom_parser<BasicJsonType, InputAdapterType> sdp(result, allow_exceptions, &m_lexer);
sax_parse_internal(&sdp);
if (strict)
{
// in strict mode, input must be completely read
if (get_token() != token_type::end_of_input)
{
sdp.parse_error(m_lexer.get_position(),
m_lexer.get_token_string(),
parse_error::create(101, m_lexer.get_position(), exception_message(token_type::end_of_input, "value"), nullptr));
}
}
else
{
// see above
m_lexer.release_lookahead();
}
// in case of an error, return a discarded value
if (sdp.is_errored())
if (!parse_dom(sdp, strict))
{
result = value_t::discarded;
return;
@@ -207,6 +173,46 @@ class parser
}
private:
/*!
@brief run a DOM SAX parser to completion and position the lexer
Shared by both branches of @ref parse(): builds no SAX parser itself,
but drives an already-constructed @a json_sax_dom_parser or
@ref json_sax_dom_callback_parser through @ref sax_parse_internal(),
then applies the strict-EOF check (reporting parse_error.101 through
@a sdp on failure) or, in non-strict mode, releases the lookahead so
the caller can keep reading the input right after the parsed value.
@param[in,out] sdp the DOM SAX parser to run
@param[in] strict whether to expect the last token to be EOF
@return whether @a sdp did not report an error
*/
template<typename DomSax>
bool parse_dom(DomSax& sdp, const bool strict)
{
sax_parse_internal(&sdp);
if (strict)
{
// in strict mode, input must be completely read
if (get_token() != token_type::end_of_input)
{
sdp.parse_error(m_lexer.get_position(),
m_lexer.get_token_string(),
parse_error::create(101, m_lexer.get_position(),
exception_message(token_type::end_of_input, "value"), nullptr));
}
}
else
{
// the caller keeps using the input: position it right after
// the value by leaving the character that terminated it
m_lexer.release_lookahead();
}
return !sdp.is_errored();
}
template<typename SAX>
JSON_HEDLEY_NON_NULL(2)
bool sax_parse_internal(SAX* sax)
@@ -439,8 +445,9 @@ class parser
// We are done with this array. Before we can parse a
// new value, we need to evaluate the new state first.
// By setting skip_to_state_evaluation to false, we
// are effectively jumping to the beginning of this if.
// By setting skip_to_state_evaluation to true, the next
// iteration skips parsing a value and evaluates the
// enclosing state directly.
JSON_ASSERT(!states.empty());
states.pop_back();
skip_to_state_evaluation = true;
@@ -500,8 +507,9 @@ class parser
// We are done with this object. Before we can parse a
// new value, we need to evaluate the new state first.
// By setting skip_to_state_evaluation to false, we
// are effectively jumping to the beginning of this if.
// By setting skip_to_state_evaluation to true, the next
// iteration skips parsing a value and evaluates the
// enclosing state directly.
JSON_ASSERT(!states.empty());
states.pop_back();
skip_to_state_evaluation = true;
@@ -0,0 +1,371 @@
// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2021 The fast_float authors <https://github.com/fastfloat/fast_float>
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
#pragma once
#include <array> // array
#include <cstdint> // int64_t, uint64_t
#include <nlohmann/detail/abi_macros.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
/// the range of decimal exponents covered by pow5_128()
constexpr std::int64_t pow5_128_smallest_power = -342;
constexpr std::int64_t pow5_128_largest_power = 308;
/*!
@brief 128-bit approximations of 5^q for q in [-342, 308]
Entry q (at index 2 * (q + 342)) holds the most significant 128 bits of 5^q,
normalized so that the highest bit is set: for q >= 0 the truncated value, for
q < 0 the value rounded up. This is the table of fast_float (Daniel Lemire and
contributors, used under the MIT license), generated like its
script/table_generation.py; unit-class_lexer.cpp recomputes every entry.
*/
inline const std::array<std::uint64_t, 1302>& pow5_128() noexcept
{
static const std::array<std::uint64_t, 1302> table =
{
{
0xeef453d6923bd65au, 0x113faa2906a13b3fu, 0x9558b4661b6565f8u, 0x4ac7ca59a424c507u,
0xbaaee17fa23ebf76u, 0x5d79bcf00d2df649u, 0xe95a99df8ace6f53u, 0xf4d82c2c107973dcu,
0x91d8a02bb6c10594u, 0x79071b9b8a4be869u, 0xb64ec836a47146f9u, 0x9748e2826cdee284u,
0xe3e27a444d8d98b7u, 0xfd1b1b2308169b25u, 0x8e6d8c6ab0787f72u, 0xfe30f0f5e50e20f7u,
0xb208ef855c969f4fu, 0xbdbd2d335e51a935u, 0xde8b2b66b3bc4723u, 0xad2c788035e61382u,
0x8b16fb203055ac76u, 0x4c3bcb5021afcc31u, 0xaddcb9e83c6b1793u, 0xdf4abe242a1bbf3du,
0xd953e8624b85dd78u, 0xd71d6dad34a2af0du, 0x87d4713d6f33aa6bu, 0x8672648c40e5ad68u,
0xa9c98d8ccb009506u, 0x680efdaf511f18c2u, 0xd43bf0effdc0ba48u, 0x0212bd1b2566def2u,
0x84a57695fe98746du, 0x014bb630f7604b57u, 0xa5ced43b7e3e9188u, 0x419ea3bd35385e2du,
0xcf42894a5dce35eau, 0x52064cac828675b9u, 0x818995ce7aa0e1b2u, 0x7343efebd1940993u,
0xa1ebfb4219491a1fu, 0x1014ebe6c5f90bf8u, 0xca66fa129f9b60a6u, 0xd41a26e077774ef6u,
0xfd00b897478238d0u, 0x8920b098955522b4u, 0x9e20735e8cb16382u, 0x55b46e5f5d5535b0u,
0xc5a890362fddbc62u, 0xeb2189f734aa831du, 0xf712b443bbd52b7bu, 0xa5e9ec7501d523e4u,
0x9a6bb0aa55653b2du, 0x47b233c92125366eu, 0xc1069cd4eabe89f8u, 0x999ec0bb696e840au,
0xf148440a256e2c76u, 0xc00670ea43ca250du, 0x96cd2a865764dbcau, 0x380406926a5e5728u,
0xbc807527ed3e12bcu, 0xc605083704f5ecf2u, 0xeba09271e88d976bu, 0xf7864a44c633682eu,
0x93445b8731587ea3u, 0x7ab3ee6afbe0211du, 0xb8157268fdae9e4cu, 0x5960ea05bad82964u,
0xe61acf033d1a45dfu, 0x6fb92487298e33bdu, 0x8fd0c16206306babu, 0xa5d3b6d479f8e056u,
0xb3c4f1ba87bc8696u, 0x8f48a4899877186cu, 0xe0b62e2929aba83cu, 0x331acdabfe94de87u,
0x8c71dcd9ba0b4925u, 0x9ff0c08b7f1d0b14u, 0xaf8e5410288e1b6fu, 0x07ecf0ae5ee44dd9u,
0xdb71e91432b1a24au, 0xc9e82cd9f69d6150u, 0x892731ac9faf056eu, 0xbe311c083a225cd2u,
0xab70fe17c79ac6cau, 0x6dbd630a48aaf406u, 0xd64d3d9db981787du, 0x092cbbccdad5b108u,
0x85f0468293f0eb4eu, 0x25bbf56008c58ea5u, 0xa76c582338ed2621u, 0xaf2af2b80af6f24eu,
0xd1476e2c07286faau, 0x1af5af660db4aee1u, 0x82cca4db847945cau, 0x50d98d9fc890ed4du,
0xa37fce126597973cu, 0xe50ff107bab528a0u, 0xcc5fc196fefd7d0cu, 0x1e53ed49a96272c8u,
0xff77b1fcbebcdc4fu, 0x25e8e89c13bb0f7au, 0x9faacf3df73609b1u, 0x77b191618c54e9acu,
0xc795830d75038c1du, 0xd59df5b9ef6a2417u, 0xf97ae3d0d2446f25u, 0x4b0573286b44ad1du,
0x9becce62836ac577u, 0x4ee367f9430aec32u, 0xc2e801fb244576d5u, 0x229c41f793cda73fu,
0xf3a20279ed56d48au, 0x6b43527578c1110fu, 0x9845418c345644d6u, 0x830a13896b78aaa9u,
0xbe5691ef416bd60cu, 0x23cc986bc656d553u, 0xedec366b11c6cb8fu, 0x2cbfbe86b7ec8aa8u,
0x94b3a202eb1c3f39u, 0x7bf7d71432f3d6a9u, 0xb9e08a83a5e34f07u, 0xdaf5ccd93fb0cc53u,
0xe858ad248f5c22c9u, 0xd1b3400f8f9cff68u, 0x91376c36d99995beu, 0x23100809b9c21fa1u,
0xb58547448ffffb2du, 0xabd40a0c2832a78au, 0xe2e69915b3fff9f9u, 0x16c90c8f323f516cu,
0x8dd01fad907ffc3bu, 0xae3da7d97f6792e3u, 0xb1442798f49ffb4au, 0x99cd11cfdf41779cu,
0xdd95317f31c7fa1du, 0x40405643d711d583u, 0x8a7d3eef7f1cfc52u, 0x482835ea666b2572u,
0xad1c8eab5ee43b66u, 0xda3243650005eecfu, 0xd863b256369d4a40u, 0x90bed43e40076a82u,
0x873e4f75e2224e68u, 0x5a7744a6e804a291u, 0xa90de3535aaae202u, 0x711515d0a205cb36u,
0xd3515c2831559a83u, 0x0d5a5b44ca873e03u, 0x8412d9991ed58091u, 0xe858790afe9486c2u,
0xa5178fff668ae0b6u, 0x626e974dbe39a872u, 0xce5d73ff402d98e3u, 0xfb0a3d212dc8128fu,
0x80fa687f881c7f8eu, 0x7ce66634bc9d0b99u, 0xa139029f6a239f72u, 0x1c1fffc1ebc44e80u,
0xc987434744ac874eu, 0xa327ffb266b56220u, 0xfbe9141915d7a922u, 0x4bf1ff9f0062baa8u,
0x9d71ac8fada6c9b5u, 0x6f773fc3603db4a9u, 0xc4ce17b399107c22u, 0xcb550fb4384d21d3u,
0xf6019da07f549b2bu, 0x7e2a53a146606a48u, 0x99c102844f94e0fbu, 0x2eda7444cbfc426du,
0xc0314325637a1939u, 0xfa911155fefb5308u, 0xf03d93eebc589f88u, 0x793555ab7eba27cau,
0x96267c7535b763b5u, 0x4bc1558b2f3458deu, 0xbbb01b9283253ca2u, 0x9eb1aaedfb016f16u,
0xea9c227723ee8bcbu, 0x465e15a979c1cadcu, 0x92a1958a7675175fu, 0x0bfacd89ec191ec9u,
0xb749faed14125d36u, 0xcef980ec671f667bu, 0xe51c79a85916f484u, 0x82b7e12780e7401au,
0x8f31cc0937ae58d2u, 0xd1b2ecb8b0908810u, 0xb2fe3f0b8599ef07u, 0x861fa7e6dcb4aa15u,
0xdfbdcece67006ac9u, 0x67a791e093e1d49au, 0x8bd6a141006042bdu, 0xe0c8bb2c5c6d24e0u,
0xaecc49914078536du, 0x58fae9f773886e18u, 0xda7f5bf590966848u, 0xaf39a475506a899eu,
0x888f99797a5e012du, 0x6d8406c952429603u, 0xaab37fd7d8f58178u, 0xc8e5087ba6d33b83u,
0xd5605fcdcf32e1d6u, 0xfb1e4a9a90880a64u, 0x855c3be0a17fcd26u, 0x5cf2eea09a55067fu,
0xa6b34ad8c9dfc06fu, 0xf42faa48c0ea481eu, 0xd0601d8efc57b08bu, 0xf13b94daf124da26u,
0x823c12795db6ce57u, 0x76c53d08d6b70858u, 0xa2cb1717b52481edu, 0x54768c4b0c64ca6eu,
0xcb7ddcdda26da268u, 0xa9942f5dcf7dfd09u, 0xfe5d54150b090b02u, 0xd3f93b35435d7c4cu,
0x9efa548d26e5a6e1u, 0xc47bc5014a1a6dafu, 0xc6b8e9b0709f109au, 0x359ab6419ca1091bu,
0xf867241c8cc6d4c0u, 0xc30163d203c94b62u, 0x9b407691d7fc44f8u, 0x79e0de63425dcf1du,
0xc21094364dfb5636u, 0x985915fc12f542e4u, 0xf294b943e17a2bc4u, 0x3e6f5b7b17b2939du,
0x979cf3ca6cec5b5au, 0xa705992ceecf9c42u, 0xbd8430bd08277231u, 0x50c6ff782a838353u,
0xece53cec4a314ebdu, 0xa4f8bf5635246428u, 0x940f4613ae5ed136u, 0x871b7795e136be99u,
0xb913179899f68584u, 0x28e2557b59846e3fu, 0xe757dd7ec07426e5u, 0x331aeada2fe589cfu,
0x9096ea6f3848984fu, 0x3ff0d2c85def7621u, 0xb4bca50b065abe63u, 0x0fed077a756b53a9u,
0xe1ebce4dc7f16dfbu, 0xd3e8495912c62894u, 0x8d3360f09cf6e4bdu, 0x64712dd7abbbd95cu,
0xb080392cc4349decu, 0xbd8d794d96aacfb3u, 0xdca04777f541c567u, 0xecf0d7a0fc5583a0u,
0x89e42caaf9491b60u, 0xf41686c49db57244u, 0xac5d37d5b79b6239u, 0x311c2875c522ced5u,
0xd77485cb25823ac7u, 0x7d633293366b828bu, 0x86a8d39ef77164bcu, 0xae5dff9c02033197u,
0xa8530886b54dbdebu, 0xd9f57f830283fdfcu, 0xd267caa862a12d66u, 0xd072df63c324fd7bu,
0x8380dea93da4bc60u, 0x4247cb9e59f71e6du, 0xa46116538d0deb78u, 0x52d9be85f074e608u,
0xcd795be870516656u, 0x67902e276c921f8bu, 0x806bd9714632dff6u, 0x00ba1cd8a3db53b6u,
0xa086cfcd97bf97f3u, 0x80e8a40eccd228a4u, 0xc8a883c0fdaf7df0u, 0x6122cd128006b2cdu,
0xfad2a4b13d1b5d6cu, 0x796b805720085f81u, 0x9cc3a6eec6311a63u, 0xcbe3303674053bb0u,
0xc3f490aa77bd60fcu, 0xbedbfc4411068a9cu, 0xf4f1b4d515acb93bu, 0xee92fb5515482d44u,
0x991711052d8bf3c5u, 0x751bdd152d4d1c4au, 0xbf5cd54678eef0b6u, 0xd262d45a78a0635du,
0xef340a98172aace4u, 0x86fb897116c87c34u, 0x9580869f0e7aac0eu, 0xd45d35e6ae3d4da0u,
0xbae0a846d2195712u, 0x8974836059cca109u, 0xe998d258869facd7u, 0x2bd1a438703fc94bu,
0x91ff83775423cc06u, 0x7b6306a34627ddcfu, 0xb67f6455292cbf08u, 0x1a3bc84c17b1d542u,
0xe41f3d6a7377eecau, 0x20caba5f1d9e4a93u, 0x8e938662882af53eu, 0x547eb47b7282ee9cu,
0xb23867fb2a35b28du, 0xe99e619a4f23aa43u, 0xdec681f9f4c31f31u, 0x6405fa00e2ec94d4u,
0x8b3c113c38f9f37eu, 0xde83bc408dd3dd04u, 0xae0b158b4738705eu, 0x9624ab50b148d445u,
0xd98ddaee19068c76u, 0x3badd624dd9b0957u, 0x87f8a8d4cfa417c9u, 0xe54ca5d70a80e5d6u,
0xa9f6d30a038d1dbcu, 0x5e9fcf4ccd211f4cu, 0xd47487cc8470652bu, 0x7647c3200069671fu,
0x84c8d4dfd2c63f3bu, 0x29ecd9f40041e073u, 0xa5fb0a17c777cf09u, 0xf468107100525890u,
0xcf79cc9db955c2ccu, 0x7182148d4066eeb4u, 0x81ac1fe293d599bfu, 0xc6f14cd848405530u,
0xa21727db38cb002fu, 0xb8ada00e5a506a7cu, 0xca9cf1d206fdc03bu, 0xa6d90811f0e4851cu,
0xfd442e4688bd304au, 0x908f4a166d1da663u, 0x9e4a9cec15763e2eu, 0x9a598e4e043287feu,
0xc5dd44271ad3cdbau, 0x40eff1e1853f29fdu, 0xf7549530e188c128u, 0xd12bee59e68ef47cu,
0x9a94dd3e8cf578b9u, 0x82bb74f8301958ceu, 0xc13a148e3032d6e7u, 0xe36a52363c1faf01u,
0xf18899b1bc3f8ca1u, 0xdc44e6c3cb279ac1u, 0x96f5600f15a7b7e5u, 0x29ab103a5ef8c0b9u,
0xbcb2b812db11a5deu, 0x7415d448f6b6f0e7u, 0xebdf661791d60f56u, 0x111b495b3464ad21u,
0x936b9fcebb25c995u, 0xcab10dd900beec34u, 0xb84687c269ef3bfbu, 0x3d5d514f40eea742u,
0xe65829b3046b0afau, 0x0cb4a5a3112a5112u, 0x8ff71a0fe2c2e6dcu, 0x47f0e785eaba72abu,
0xb3f4e093db73a093u, 0x59ed216765690f56u, 0xe0f218b8d25088b8u, 0x306869c13ec3532cu,
0x8c974f7383725573u, 0x1e414218c73a13fbu, 0xafbd2350644eeacfu, 0xe5d1929ef90898fau,
0xdbac6c247d62a583u, 0xdf45f746b74abf39u, 0x894bc396ce5da772u, 0x6b8bba8c328eb783u,
0xab9eb47c81f5114fu, 0x066ea92f3f326564u, 0xd686619ba27255a2u, 0xc80a537b0efefebdu,
0x8613fd0145877585u, 0xbd06742ce95f5f36u, 0xa798fc4196e952e7u, 0x2c48113823b73704u,
0xd17f3b51fca3a7a0u, 0xf75a15862ca504c5u, 0x82ef85133de648c4u, 0x9a984d73dbe722fbu,
0xa3ab66580d5fdaf5u, 0xc13e60d0d2e0ebbau, 0xcc963fee10b7d1b3u, 0x318df905079926a8u,
0xffbbcfe994e5c61fu, 0xfdf17746497f7052u, 0x9fd561f1fd0f9bd3u, 0xfeb6ea8bedefa633u,
0xc7caba6e7c5382c8u, 0xfe64a52ee96b8fc0u, 0xf9bd690a1b68637bu, 0x3dfdce7aa3c673b0u,
0x9c1661a651213e2du, 0x06bea10ca65c084eu, 0xc31bfa0fe5698db8u, 0x486e494fcff30a62u,
0xf3e2f893dec3f126u, 0x5a89dba3c3efccfau, 0x986ddb5c6b3a76b7u, 0xf89629465a75e01cu,
0xbe89523386091465u, 0xf6bbb397f1135823u, 0xee2ba6c0678b597fu, 0x746aa07ded582e2cu,
0x94db483840b717efu, 0xa8c2a44eb4571cdcu, 0xba121a4650e4ddebu, 0x92f34d62616ce413u,
0xe896a0d7e51e1566u, 0x77b020baf9c81d17u, 0x915e2486ef32cd60u, 0x0ace1474dc1d122eu,
0xb5b5ada8aaff80b8u, 0x0d819992132456bau, 0xe3231912d5bf60e6u, 0x10e1fff697ed6c69u,
0x8df5efabc5979c8fu, 0xca8d3ffa1ef463c1u, 0xb1736b96b6fd83b3u, 0xbd308ff8a6b17cb2u,
0xddd0467c64bce4a0u, 0xac7cb3f6d05ddbdeu, 0x8aa22c0dbef60ee4u, 0x6bcdf07a423aa96bu,
0xad4ab7112eb3929du, 0x86c16c98d2c953c6u, 0xd89d64d57a607744u, 0xe871c7bf077ba8b7u,
0x87625f056c7c4a8bu, 0x11471cd764ad4972u, 0xa93af6c6c79b5d2du, 0xd598e40d3dd89bcfu,
0xd389b47879823479u, 0x4aff1d108d4ec2c3u, 0x843610cb4bf160cbu, 0xcedf722a585139bau,
0xa54394fe1eedb8feu, 0xc2974eb4ee658828u, 0xce947a3da6a9273eu, 0x733d226229feea32u,
0x811ccc668829b887u, 0x0806357d5a3f525fu, 0xa163ff802a3426a8u, 0xca07c2dcb0cf26f7u,
0xc9bcff6034c13052u, 0xfc89b393dd02f0b5u, 0xfc2c3f3841f17c67u, 0xbbac2078d443ace2u,
0x9d9ba7832936edc0u, 0xd54b944b84aa4c0du, 0xc5029163f384a931u, 0x0a9e795e65d4df11u,
0xf64335bcf065d37du, 0x4d4617b5ff4a16d5u, 0x99ea0196163fa42eu, 0x504bced1bf8e4e45u,
0xc06481fb9bcf8d39u, 0xe45ec2862f71e1d6u, 0xf07da27a82c37088u, 0x5d767327bb4e5a4cu,
0x964e858c91ba2655u, 0x3a6a07f8d510f86fu, 0xbbe226efb628afeau, 0x890489f70a55368bu,
0xeadab0aba3b2dbe5u, 0x2b45ac74ccea842eu, 0x92c8ae6b464fc96fu, 0x3b0b8bc90012929du,
0xb77ada0617e3bbcbu, 0x09ce6ebb40173744u, 0xe55990879ddcaabdu, 0xcc420a6a101d0515u,
0x8f57fa54c2a9eab6u, 0x9fa946824a12232du, 0xb32df8e9f3546564u, 0x47939822dc96abf9u,
0xdff9772470297ebdu, 0x59787e2b93bc56f7u, 0x8bfbea76c619ef36u, 0x57eb4edb3c55b65au,
0xaefae51477a06b03u, 0xede622920b6b23f1u, 0xdab99e59958885c4u, 0xe95fab368e45ecedu,
0x88b402f7fd75539bu, 0x11dbcb0218ebb414u, 0xaae103b5fcd2a881u, 0xd652bdc29f26a119u,
0xd59944a37c0752a2u, 0x4be76d3346f0495fu, 0x857fcae62d8493a5u, 0x6f70a4400c562ddbu,
0xa6dfbd9fb8e5b88eu, 0xcb4ccd500f6bb952u, 0xd097ad07a71f26b2u, 0x7e2000a41346a7a7u,
0x825ecc24c873782fu, 0x8ed400668c0c28c8u, 0xa2f67f2dfa90563bu, 0x728900802f0f32fau,
0xcbb41ef979346bcau, 0x4f2b40a03ad2ffb9u, 0xfea126b7d78186bcu, 0xe2f610c84987bfa8u,
0x9f24b832e6b0f436u, 0x0dd9ca7d2df4d7c9u, 0xc6ede63fa05d3143u, 0x91503d1c79720dbbu,
0xf8a95fcf88747d94u, 0x75a44c6397ce912au, 0x9b69dbe1b548ce7cu, 0xc986afbe3ee11abau,
0xc24452da229b021bu, 0xfbe85badce996168u, 0xf2d56790ab41c2a2u, 0xfae27299423fb9c3u,
0x97c560ba6b0919a5u, 0xdccd879fc967d41au, 0xbdb6b8e905cb600fu, 0x5400e987bbc1c920u,
0xed246723473e3813u, 0x290123e9aab23b68u, 0x9436c0760c86e30bu, 0xf9a0b6720aaf6521u,
0xb94470938fa89bceu, 0xf808e40e8d5b3e69u, 0xe7958cb87392c2c2u, 0xb60b1d1230b20e04u,
0x90bd77f3483bb9b9u, 0xb1c6f22b5e6f48c2u, 0xb4ecd5f01a4aa828u, 0x1e38aeb6360b1af3u,
0xe2280b6c20dd5232u, 0x25c6da63c38de1b0u, 0x8d590723948a535fu, 0x579c487e5a38ad0eu,
0xb0af48ec79ace837u, 0x2d835a9df0c6d851u, 0xdcdb1b2798182244u, 0xf8e431456cf88e65u,
0x8a08f0f8bf0f156bu, 0x1b8e9ecb641b58ffu, 0xac8b2d36eed2dac5u, 0xe272467e3d222f3fu,
0xd7adf884aa879177u, 0x5b0ed81dcc6abb0fu, 0x86ccbb52ea94baeau, 0x98e947129fc2b4e9u,
0xa87fea27a539e9a5u, 0x3f2398d747b36224u, 0xd29fe4b18e88640eu, 0x8eec7f0d19a03aadu,
0x83a3eeeef9153e89u, 0x1953cf68300424acu, 0xa48ceaaab75a8e2bu, 0x5fa8c3423c052dd7u,
0xcdb02555653131b6u, 0x3792f412cb06794du, 0x808e17555f3ebf11u, 0xe2bbd88bbee40bd0u,
0xa0b19d2ab70e6ed6u, 0x5b6aceaeae9d0ec4u, 0xc8de047564d20a8bu, 0xf245825a5a445275u,
0xfb158592be068d2eu, 0xeed6e2f0f0d56712u, 0x9ced737bb6c4183du, 0x55464dd69685606bu,
0xc428d05aa4751e4cu, 0xaa97e14c3c26b886u, 0xf53304714d9265dfu, 0xd53dd99f4b3066a8u,
0x993fe2c6d07b7fabu, 0xe546a8038efe4029u, 0xbf8fdb78849a5f96u, 0xde98520472bdd033u,
0xef73d256a5c0f77cu, 0x963e66858f6d4440u, 0x95a8637627989aadu, 0xdde7001379a44aa8u,
0xbb127c53b17ec159u, 0x5560c018580d5d52u, 0xe9d71b689dde71afu, 0xaab8f01e6e10b4a6u,
0x9226712162ab070du, 0xcab3961304ca70e8u, 0xb6b00d69bb55c8d1u, 0x3d607b97c5fd0d22u,
0xe45c10c42a2b3b05u, 0x8cb89a7db77c506au, 0x8eb98a7a9a5b04e3u, 0x77f3608e92adb242u,
0xb267ed1940f1c61cu, 0x55f038b237591ed3u, 0xdf01e85f912e37a3u, 0x6b6c46dec52f6688u,
0x8b61313bbabce2c6u, 0x2323ac4b3b3da015u, 0xae397d8aa96c1b77u, 0xabec975e0a0d081au,
0xd9c7dced53c72255u, 0x96e7bd358c904a21u, 0x881cea14545c7575u, 0x7e50d64177da2e54u,
0xaa242499697392d2u, 0xdde50bd1d5d0b9e9u, 0xd4ad2dbfc3d07787u, 0x955e4ec64b44e864u,
0x84ec3c97da624ab4u, 0xbd5af13bef0b113eu, 0xa6274bbdd0fadd61u, 0xecb1ad8aeacdd58eu,
0xcfb11ead453994bau, 0x67de18eda5814af2u, 0x81ceb32c4b43fcf4u, 0x80eacf948770ced7u,
0xa2425ff75e14fc31u, 0xa1258379a94d028du, 0xcad2f7f5359a3b3eu, 0x096ee45813a04330u,
0xfd87b5f28300ca0du, 0x8bca9d6e188853fcu, 0x9e74d1b791e07e48u, 0x775ea264cf55347eu,
0xc612062576589ddau, 0x95364afe032a819eu, 0xf79687aed3eec551u, 0x3a83ddbd83f52205u,
0x9abe14cd44753b52u, 0xc4926a9672793543u, 0xc16d9a0095928a27u, 0x75b7053c0f178294u,
0xf1c90080baf72cb1u, 0x5324c68b12dd6339u, 0x971da05074da7beeu, 0xd3f6fc16ebca5e04u,
0xbce5086492111aeau, 0x88f4bb1ca6bcf585u, 0xec1e4a7db69561a5u, 0x2b31e9e3d06c32e6u,
0x9392ee8e921d5d07u, 0x3aff322e62439fd0u, 0xb877aa3236a4b449u, 0x09befeb9fad487c3u,
0xe69594bec44de15bu, 0x4c2ebe687989a9b4u, 0x901d7cf73ab0acd9u, 0x0f9d37014bf60a11u,
0xb424dc35095cd80fu, 0x538484c19ef38c95u, 0xe12e13424bb40e13u, 0x2865a5f206b06fbau,
0x8cbccc096f5088cbu, 0xf93f87b7442e45d4u, 0xafebff0bcb24aafeu, 0xf78f69a51539d749u,
0xdbe6fecebdedd5beu, 0xb573440e5a884d1cu, 0x89705f4136b4a597u, 0x31680a88f8953031u,
0xabcc77118461cefcu, 0xfdc20d2b36ba7c3eu, 0xd6bf94d5e57a42bcu, 0x3d32907604691b4du,
0x8637bd05af6c69b5u, 0xa63f9a49c2c1b110u, 0xa7c5ac471b478423u, 0x0fcf80dc33721d54u,
0xd1b71758e219652bu, 0xd3c36113404ea4a9u, 0x83126e978d4fdf3bu, 0x645a1cac083126eau,
0xa3d70a3d70a3d70au, 0x3d70a3d70a3d70a4u, 0xccccccccccccccccu, 0xcccccccccccccccdu,
0x8000000000000000u, 0x0000000000000000u, 0xa000000000000000u, 0x0000000000000000u,
0xc800000000000000u, 0x0000000000000000u, 0xfa00000000000000u, 0x0000000000000000u,
0x9c40000000000000u, 0x0000000000000000u, 0xc350000000000000u, 0x0000000000000000u,
0xf424000000000000u, 0x0000000000000000u, 0x9896800000000000u, 0x0000000000000000u,
0xbebc200000000000u, 0x0000000000000000u, 0xee6b280000000000u, 0x0000000000000000u,
0x9502f90000000000u, 0x0000000000000000u, 0xba43b74000000000u, 0x0000000000000000u,
0xe8d4a51000000000u, 0x0000000000000000u, 0x9184e72a00000000u, 0x0000000000000000u,
0xb5e620f480000000u, 0x0000000000000000u, 0xe35fa931a0000000u, 0x0000000000000000u,
0x8e1bc9bf04000000u, 0x0000000000000000u, 0xb1a2bc2ec5000000u, 0x0000000000000000u,
0xde0b6b3a76400000u, 0x0000000000000000u, 0x8ac7230489e80000u, 0x0000000000000000u,
0xad78ebc5ac620000u, 0x0000000000000000u, 0xd8d726b7177a8000u, 0x0000000000000000u,
0x878678326eac9000u, 0x0000000000000000u, 0xa968163f0a57b400u, 0x0000000000000000u,
0xd3c21bcecceda100u, 0x0000000000000000u, 0x84595161401484a0u, 0x0000000000000000u,
0xa56fa5b99019a5c8u, 0x0000000000000000u, 0xcecb8f27f4200f3au, 0x0000000000000000u,
0x813f3978f8940984u, 0x4000000000000000u, 0xa18f07d736b90be5u, 0x5000000000000000u,
0xc9f2c9cd04674edeu, 0xa400000000000000u, 0xfc6f7c4045812296u, 0x4d00000000000000u,
0x9dc5ada82b70b59du, 0xf020000000000000u, 0xc5371912364ce305u, 0x6c28000000000000u,
0xf684df56c3e01bc6u, 0xc732000000000000u, 0x9a130b963a6c115cu, 0x3c7f400000000000u,
0xc097ce7bc90715b3u, 0x4b9f100000000000u, 0xf0bdc21abb48db20u, 0x1e86d40000000000u,
0x96769950b50d88f4u, 0x1314448000000000u, 0xbc143fa4e250eb31u, 0x17d955a000000000u,
0xeb194f8e1ae525fdu, 0x5dcfab0800000000u, 0x92efd1b8d0cf37beu, 0x5aa1cae500000000u,
0xb7abc627050305adu, 0xf14a3d9e40000000u, 0xe596b7b0c643c719u, 0x6d9ccd05d0000000u,
0x8f7e32ce7bea5c6fu, 0xe4820023a2000000u, 0xb35dbf821ae4f38bu, 0xdda2802c8a800000u,
0xe0352f62a19e306eu, 0xd50b2037ad200000u, 0x8c213d9da502de45u, 0x4526f422cc340000u,
0xaf298d050e4395d6u, 0x9670b12b7f410000u, 0xdaf3f04651d47b4cu, 0x3c0cdd765f114000u,
0x88d8762bf324cd0fu, 0xa5880a69fb6ac800u, 0xab0e93b6efee0053u, 0x8eea0d047a457a00u,
0xd5d238a4abe98068u, 0x72a4904598d6d880u, 0x85a36366eb71f041u, 0x47a6da2b7f864750u,
0xa70c3c40a64e6c51u, 0x999090b65f67d924u, 0xd0cf4b50cfe20765u, 0xfff4b4e3f741cf6du,
0x82818f1281ed449fu, 0xbff8f10e7a8921a4u, 0xa321f2d7226895c7u, 0xaff72d52192b6a0du,
0xcbea6f8ceb02bb39u, 0x9bf4f8a69f764490u, 0xfee50b7025c36a08u, 0x02f236d04753d5b4u,
0x9f4f2726179a2245u, 0x01d762422c946590u, 0xc722f0ef9d80aad6u, 0x424d3ad2b7b97ef5u,
0xf8ebad2b84e0d58bu, 0xd2e0898765a7deb2u, 0x9b934c3b330c8577u, 0x63cc55f49f88eb2fu,
0xc2781f49ffcfa6d5u, 0x3cbf6b71c76b25fbu, 0xf316271c7fc3908au, 0x8bef464e3945ef7au,
0x97edd871cfda3a56u, 0x97758bf0e3cbb5acu, 0xbde94e8e43d0c8ecu, 0x3d52eeed1cbea317u,
0xed63a231d4c4fb27u, 0x4ca7aaa863ee4bddu, 0x945e455f24fb1cf8u, 0x8fe8caa93e74ef6au,
0xb975d6b6ee39e436u, 0xb3e2fd538e122b44u, 0xe7d34c64a9c85d44u, 0x60dbbca87196b616u,
0x90e40fbeea1d3a4au, 0xbc8955e946fe31cdu, 0xb51d13aea4a488ddu, 0x6babab6398bdbe41u,
0xe264589a4dcdab14u, 0xc696963c7eed2dd1u, 0x8d7eb76070a08aecu, 0xfc1e1de5cf543ca2u,
0xb0de65388cc8ada8u, 0x3b25a55f43294bcbu, 0xdd15fe86affad912u, 0x49ef0eb713f39ebeu,
0x8a2dbf142dfcc7abu, 0x6e3569326c784337u, 0xacb92ed9397bf996u, 0x49c2c37f07965404u,
0xd7e77a8f87daf7fbu, 0xdc33745ec97be906u, 0x86f0ac99b4e8dafdu, 0x69a028bb3ded71a3u,
0xa8acd7c0222311bcu, 0xc40832ea0d68ce0cu, 0xd2d80db02aabd62bu, 0xf50a3fa490c30190u,
0x83c7088e1aab65dbu, 0x792667c6da79e0fau, 0xa4b8cab1a1563f52u, 0x577001b891185938u,
0xcde6fd5e09abcf26u, 0xed4c0226b55e6f86u, 0x80b05e5ac60b6178u, 0x544f8158315b05b4u,
0xa0dc75f1778e39d6u, 0x696361ae3db1c721u, 0xc913936dd571c84cu, 0x03bc3a19cd1e38e9u,
0xfb5878494ace3a5fu, 0x04ab48a04065c723u, 0x9d174b2dcec0e47bu, 0x62eb0d64283f9c76u,
0xc45d1df942711d9au, 0x3ba5d0bd324f8394u, 0xf5746577930d6500u, 0xca8f44ec7ee36479u,
0x9968bf6abbe85f20u, 0x7e998b13cf4e1ecbu, 0xbfc2ef456ae276e8u, 0x9e3fedd8c321a67eu,
0xefb3ab16c59b14a2u, 0xc5cfe94ef3ea101eu, 0x95d04aee3b80ece5u, 0xbba1f1d158724a12u,
0xbb445da9ca61281fu, 0x2a8a6e45ae8edc97u, 0xea1575143cf97226u, 0xf52d09d71a3293bdu,
0x924d692ca61be758u, 0x593c2626705f9c56u, 0xb6e0c377cfa2e12eu, 0x6f8b2fb00c77836cu,
0xe498f455c38b997au, 0x0b6dfb9c0f956447u, 0x8edf98b59a373fecu, 0x4724bd4189bd5eacu,
0xb2977ee300c50fe7u, 0x58edec91ec2cb657u, 0xdf3d5e9bc0f653e1u, 0x2f2967b66737e3edu,
0x8b865b215899f46cu, 0xbd79e0d20082ee74u, 0xae67f1e9aec07187u, 0xecd8590680a3aa11u,
0xda01ee641a708de9u, 0xe80e6f4820cc9495u, 0x884134fe908658b2u, 0x3109058d147fdcddu,
0xaa51823e34a7eedeu, 0xbd4b46f0599fd415u, 0xd4e5e2cdc1d1ea96u, 0x6c9e18ac7007c91au,
0x850fadc09923329eu, 0x03e2cf6bc604ddb0u, 0xa6539930bf6bff45u, 0x84db8346b786151cu,
0xcfe87f7cef46ff16u, 0xe612641865679a63u, 0x81f14fae158c5f6eu, 0x4fcb7e8f3f60c07eu,
0xa26da3999aef7749u, 0xe3be5e330f38f09du, 0xcb090c8001ab551cu, 0x5cadf5bfd3072cc5u,
0xfdcb4fa002162a63u, 0x73d9732fc7c8f7f6u, 0x9e9f11c4014dda7eu, 0x2867e7fddcdd9afau,
0xc646d63501a1511du, 0xb281e1fd541501b8u, 0xf7d88bc24209a565u, 0x1f225a7ca91a4226u,
0x9ae757596946075fu, 0x3375788de9b06958u, 0xc1a12d2fc3978937u, 0x0052d6b1641c83aeu,
0xf209787bb47d6b84u, 0xc0678c5dbd23a49au, 0x9745eb4d50ce6332u, 0xf840b7ba963646e0u,
0xbd176620a501fbffu, 0xb650e5a93bc3d898u, 0xec5d3fa8ce427affu, 0xa3e51f138ab4cebeu,
0x93ba47c980e98cdfu, 0xc66f336c36b10137u, 0xb8a8d9bbe123f017u, 0xb80b0047445d4184u,
0xe6d3102ad96cec1du, 0xa60dc059157491e5u, 0x9043ea1ac7e41392u, 0x87c89837ad68db2fu,
0xb454e4a179dd1877u, 0x29babe4598c311fbu, 0xe16a1dc9d8545e94u, 0xf4296dd6fef3d67au,
0x8ce2529e2734bb1du, 0x1899e4a65f58660cu, 0xb01ae745b101e9e4u, 0x5ec05dcff72e7f8fu,
0xdc21a1171d42645du, 0x76707543f4fa1f73u, 0x899504ae72497ebau, 0x6a06494a791c53a8u,
0xabfa45da0edbde69u, 0x0487db9d17636892u, 0xd6f8d7509292d603u, 0x45a9d2845d3c42b6u,
0x865b86925b9bc5c2u, 0x0b8a2392ba45a9b2u, 0xa7f26836f282b732u, 0x8e6cac7768d7141eu,
0xd1ef0244af2364ffu, 0x3207d795430cd926u, 0x8335616aed761f1fu, 0x7f44e6bd49e807b8u,
0xa402b9c5a8d3a6e7u, 0x5f16206c9c6209a6u, 0xcd036837130890a1u, 0x36dba887c37a8c0fu,
0x802221226be55a64u, 0xc2494954da2c9789u, 0xa02aa96b06deb0fdu, 0xf2db9baa10b7bd6cu,
0xc83553c5c8965d3du, 0x6f92829494e5acc7u, 0xfa42a8b73abbf48cu, 0xcb772339ba1f17f9u,
0x9c69a97284b578d7u, 0xff2a760414536efbu, 0xc38413cf25e2d70du, 0xfef5138519684abau,
0xf46518c2ef5b8cd1u, 0x7eb258665fc25d69u, 0x98bf2f79d5993802u, 0xef2f773ffbd97a61u,
0xbeeefb584aff8603u, 0xaafb550ffacfd8fau, 0xeeaaba2e5dbf6784u, 0x95ba2a53f983cf38u,
0x952ab45cfa97a0b2u, 0xdd945a747bf26183u, 0xba756174393d88dfu, 0x94f971119aeef9e4u,
0xe912b9d1478ceb17u, 0x7a37cd5601aab85du, 0x91abb422ccb812eeu, 0xac62e055c10ab33au,
0xb616a12b7fe617aau, 0x577b986b314d6009u, 0xe39c49765fdf9d94u, 0xed5a7e85fda0b80bu,
0x8e41ade9fbebc27du, 0x14588f13be847307u, 0xb1d219647ae6b31cu, 0x596eb2d8ae258fc8u,
0xde469fbd99a05fe3u, 0x6fca5f8ed9aef3bbu, 0x8aec23d680043beeu, 0x25de7bb9480d5854u,
0xada72ccc20054ae9u, 0xaf561aa79a10ae6au, 0xd910f7ff28069da4u, 0x1b2ba1518094da04u,
0x87aa9aff79042286u, 0x90fb44d2f05d0842u, 0xa99541bf57452b28u, 0x353a1607ac744a53u,
0xd3fa922f2d1675f2u, 0x42889b8997915ce8u, 0x847c9b5d7c2e09b7u, 0x69956135febada11u,
0xa59bc234db398c25u, 0x43fab9837e699095u, 0xcf02b2c21207ef2eu, 0x94f967e45e03f4bbu,
0x8161afb94b44f57du, 0x1d1be0eebac278f5u, 0xa1ba1ba79e1632dcu, 0x6462d92a69731732u,
0xca28a291859bbf93u, 0x7d7b8f7503cfdcfeu, 0xfcb2cb35e702af78u, 0x5cda735244c3d43eu,
0x9defbf01b061adabu, 0x3a0888136afa64a7u, 0xc56baec21c7a1916u, 0x088aaa1845b8fdd0u,
0xf6c69a72a3989f5bu, 0x8aad549e57273d45u, 0x9a3c2087a63f6399u, 0x36ac54e2f678864bu,
0xc0cb28a98fcf3c7fu, 0x84576a1bb416a7ddu, 0xf0fdf2d3f3c30b9fu, 0x656d44a2a11c51d5u,
0x969eb7c47859e743u, 0x9f644ae5a4b1b325u, 0xbc4665b596706114u, 0x873d5d9f0dde1feeu,
0xeb57ff22fc0c7959u, 0xa90cb506d155a7eau, 0x9316ff75dd87cbd8u, 0x09a7f12442d588f2u,
0xb7dcbf5354e9beceu, 0x0c11ed6d538aeb2fu, 0xe5d3ef282a242e81u, 0x8f1668c8a86da5fau,
0x8fa475791a569d10u, 0xf96e017d694487bcu, 0xb38d92d760ec4455u, 0x37c981dcc395a9acu,
0xe070f78d3927556au, 0x85bbe253f47b1417u, 0x8c469ab843b89562u, 0x93956d7478ccec8eu,
0xaf58416654a6babbu, 0x387ac8d1970027b2u, 0xdb2e51bfe9d0696au, 0x06997b05fcc0319eu,
0x88fcf317f22241e2u, 0x441fece3bdf81f03u, 0xab3c2fddeeaad25au, 0xd527e81cad7626c3u,
0xd60b3bd56a5586f1u, 0x8a71e223d8d3b074u, 0x85c7056562757456u, 0xf6872d5667844e49u,
0xa738c6bebb12d16cu, 0xb428f8ac016561dbu, 0xd106f86e69d785c7u, 0xe13336d701beba52u,
0x82a45b450226b39cu, 0xecc0024661173473u, 0xa34d721642b06084u, 0x27f002d7f95d0190u,
0xcc20ce9bd35c78a5u, 0x31ec038df7b441f4u, 0xff290242c83396ceu, 0x7e67047175a15271u,
0x9f79a169bd203e41u, 0x0f0062c6e984d386u, 0xc75809c42c684dd1u, 0x52c07b78a3e60868u,
0xf92e0c3537826145u, 0xa7709a56ccdf8a82u, 0x9bbcc7a142b17ccbu, 0x88a66076400bb691u,
0xc2abf989935ddbfeu, 0x6acff893d00ea435u, 0xf356f7ebf83552feu, 0x0583f6b8c4124d43u,
0x98165af37b2153deu, 0xc3727a337a8b704au, 0xbe1bf1b059e9a8d6u, 0x744f18c0592e4c5cu,
0xeda2ee1c7064130cu, 0x1162def06f79df73u, 0x9485d4d1c63e8be7u, 0x8addcb5645ac2ba8u,
0xb9a74a0637ce2ee1u, 0x6d953e2bd7173692u, 0xe8111c87c5c1ba99u, 0xc8fa8db6ccdd0437u,
0x910ab1d4db9914a0u, 0x1d9c9892400a22a2u, 0xb54d5e4a127f59c8u, 0x2503beb6d00cab4bu,
0xe2a0b5dc971f303au, 0x2e44ae64840fd61du, 0x8da471a9de737e24u, 0x5ceaecfed289e5d2u,
0xb10d8e1456105dadu, 0x7425a83e872c5f47u, 0xdd50f1996b947518u, 0xd12f124e28f77719u,
0x8a5296ffe33cc92fu, 0x82bd6b70d99aaa6fu, 0xace73cbfdc0bfb7bu, 0x636cc64d1001550bu,
0xd8210befd30efa5au, 0x3c47f7e05401aa4eu, 0x8714a775e3e95c78u, 0x65acfaec34810a71u,
0xa8d9d1535ce3b396u, 0x7f1839a741a14d0du, 0xd31045a8341ca07cu, 0x1ede48111209a050u,
0x83ea2b892091e44du, 0x934aed0aab460432u, 0xa4e4b66b68b65d60u, 0xf81da84d5617853fu,
0xce1de40642e3f4b9u, 0x36251260ab9d668eu, 0x80d2ae83e9ce78f3u, 0xc1d72b7c6b426019u,
0xa1075a24e4421730u, 0xb24cf65b8612f81fu, 0xc94930ae1d529cfcu, 0xdee033f26797b627u,
0xfb9b7cd9a4a7443cu, 0x169840ef017da3b1u, 0x9d412e0806e88aa5u, 0x8e1f289560ee864eu,
0xc491798a08a2ad4eu, 0xf1a6f2bab92a27e2u, 0xf5b5d7ec8acb58a2u, 0xae10af696774b1dbu,
0x9991a6f3d6bf1765u, 0xacca6da1e0a8ef29u, 0xbff610b0cc6edd3fu, 0x17fd090a58d32af3u,
0xeff394dcff8a948eu, 0xddfc4b4cef07f5b0u, 0x95f83d0a1fb69cd9u, 0x4abdaf101564f98eu,
0xbb764c4ca7a4440fu, 0x9d6d1ad41abe37f1u, 0xea53df5fd18d5513u, 0x84c86189216dc5edu,
0x92746b9be2f8552cu, 0x32fd3cf5b4e49bb4u, 0xb7118682dbb66a77u, 0x3fbc8c33221dc2a1u,
0xe4d5e82392a40515u, 0x0fabaf3feaa5334au, 0x8f05b1163ba6832du, 0x29cb4d87f2a7400eu,
0xb2c71d5bca9023f8u, 0x743e20e9ef511012u, 0xdf78e4b2bd342cf6u, 0x914da9246b255416u,
0x8bab8eefb6409c1au, 0x1ad089b6c2f7548eu, 0xae9672aba3d0c320u, 0xa184ac2473b529b1u,
0xda3c0f568cc4f3e8u, 0xc9e5d72d90a2741eu, 0x8865899617fb1871u, 0x7e2fa67c7a658892u,
0xaa7eebfb9df9de8du, 0xddbb901b98feeab7u, 0xd51ea6fa85785631u, 0x552a74227f3ea565u,
0x8533285c936b35deu, 0xd53a88958f87275fu, 0xa67ff273b8460356u, 0x8a892abaf368f137u,
0xd01fef10a657842cu, 0x2d2b7569b0432d85u, 0x8213f56a67f6b29bu, 0x9c3b29620e29fc73u,
0xa298f2c501f45f42u, 0x8349f3ba91b47b8fu, 0xcb3f2f7642717713u, 0x241c70a936219a73u,
0xfe0efb53d30dd4d7u, 0xed238cd383aa0110u, 0x9ec95d1463e8a506u, 0xf4363804324a40aau,
0xc67bb4597ce2ce48u, 0xb143c6053edcd0d5u, 0xf81aa16fdc1b81dau, 0xdd94b7868e94050au,
0x9b10a4e5e9913128u, 0xca7cf2b4191c8326u, 0xc1d4ce1f63f57d72u, 0xfd1c2f611f63a3f0u,
0xf24a01a73cf2dccfu, 0xbc633b39673c8cecu, 0x976e41088617ca01u, 0xd5be0503e085d813u,
0xbd49d14aa79dbc82u, 0x4b2d8644d8a74e18u, 0xec9c459d51852ba2u, 0xddf8e7d60ed1219eu,
0x93e1ab8252f33b45u, 0xcabb90e5c942b503u, 0xb8da1662e7b00a17u, 0x3d6a751f3b936243u,
0xe7109bfba19c0c9du, 0x0cc512670a783ad4u, 0x906a617d450187e2u, 0x27fb2b80668b24c5u,
0xb484f9dc9641e9dau, 0xb1f9f660802dedf6u, 0xe1a63853bbd26451u, 0x5e7873f8a0396973u,
0x8d07e33455637eb2u, 0xdb0b487b6423e1e8u, 0xb049dc016abc5e5fu, 0x91ce1a9a3d2cda62u,
0xdc5c5301c56b75f7u, 0x7641a140cc7810fbu, 0x89b9b3e11b6329bau, 0xa9e904c87fcb0a9du,
0xac2820d9623bf429u, 0x546345fa9fbdcd44u, 0xd732290fbacaf133u, 0xa97c177947ad4095u,
0x867f59a9d4bed6c0u, 0x49ed8eabcccc485du, 0xa81f301449ee8c70u, 0x5c68f256bfff5a74u,
0xd226fc195c6a2f8cu, 0x73832eec6fff3111u, 0x83585d8fd9c25db7u, 0xc831fd53c5ff7eabu,
0xa42e74f3d032f525u, 0xba3e7ca8b77f5e55u, 0xcd3a1230c43fb26fu, 0x28ce1bd2e55f35ebu,
0x80444b5e7aa7cf85u, 0x7980d163cf5b81b3u, 0xa0555e361951c366u, 0xd7e105bcc332621fu,
0xc86ab5c39fa63440u, 0x8dd9472bf3fefaa7u, 0xfa856334878fc150u, 0xb14f98f6f0feb951u,
0x9c935e00d4b9d8d2u, 0x6ed1bf9a569f33d3u, 0xc3b8358109e84f07u, 0x0a862f80ec4700c8u,
0xf4a642e14c6262c8u, 0xcd27bb612758c0fau, 0x98e7e9cccfbd7dbdu, 0x8038d51cb897789cu,
0xbf21e44003acdd2cu, 0xe0470a63e6bd56c3u, 0xeeea5d5004981478u, 0x1858ccfce06cac74u,
0x95527a5202df0ccbu, 0x0f37801e0c43ebc8u, 0xbaa718e68396cffdu, 0xd30560258f54e6bau,
0xe950df20247c83fdu, 0x47c6b82ef32a2069u, 0x91d28b7416cdd27eu, 0x4cdc331d57fa5441u,
0xb6472e511c81471du, 0xe0133fe4adf8e952u, 0xe3d8f9e563a198e5u, 0x58180fddd97723a6u,
0x8e679c2f5e44ff8fu, 0x570f09eaa7ea7648u,
}
};
return table;
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
@@ -35,7 +35,7 @@ This class implements a both iterators (iterator and const_iterator) for the
been set (e.g., by a constructor or a copy assignment). If the iterator is
default-constructed, it is *uninitialized* and most methods are undefined.
**The library uses assertions to detect calls on uninitialized iterators.**
@requirement REQ-JSON-01 The class satisfies the following concept requirements:
This class satisfies the following concept requirements (REQ-JSON-01):
-
[BidirectionalIterator](https://en.cppreference.com/w/cpp/named_req/BidirectionalIterator):
The iterator that can be moved can be moved in both directions (i.e.
@@ -60,9 +60,11 @@ class iter_impl // NOLINT(cppcoreguidelines-special-member-functions,hicpp-speci
static_assert(is_basic_json<typename std::remove_const<BasicJsonType>::type>::value,
"iter_impl only accepts (const) basic_json");
// superficial check for the LegacyBidirectionalIterator named requirement
static_assert(std::is_base_of<std::bidirectional_iterator_tag, std::bidirectional_iterator_tag>::value
&& std::is_base_of<std::bidirectional_iterator_tag, typename std::iterator_traits<typename array_t::iterator>::iterator_category>::value,
"basic_json iterator assumes array and object type iterators satisfy the LegacyBidirectionalIterator named requirement.");
// note: only array_t::iterator is checked here; object_t::iterator may be
// a forward-only iterator as long as reverse iteration and operator--
// are never used on it
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:
/// The std::iterator class template (used as a base class to provide typedefs) is deprecated in C++17.
@@ -213,11 +213,11 @@ namespace std
JSON_HEDLEY_PRAGMA(clang diagnostic ignored "-Wmismatched-tags")
#endif
template<typename IteratorType>
class tuple_size<::nlohmann::detail::iteration_proxy_value<IteratorType>> // NOLINT(cert-dcl58-cpp)
class tuple_size<::nlohmann::detail::iteration_proxy_value<IteratorType>> // NOLINT(cert-dcl58-cpp,bugprone-std-namespace-modification)
: public std::integral_constant<std::size_t, 2> {};
template<std::size_t N, typename IteratorType>
class tuple_element<N, ::nlohmann::detail::iteration_proxy_value<IteratorType >> // NOLINT(cert-dcl58-cpp)
class tuple_element<N, ::nlohmann::detail::iteration_proxy_value<IteratorType >> // NOLINT(cert-dcl58-cpp,bugprone-std-namespace-modification)
{
public:
using type = decltype(
@@ -29,7 +29,7 @@ namespace detail
iterator (to create @ref reverse_iterator) and @ref const_iterator (to
create @ref const_reverse_iterator).
@requirement REQ-JSON-02 The class satisfies the following concept requirements:
This class satisfies the following concept requirements (REQ-JSON-02):
-
[BidirectionalIterator](https://en.cppreference.com/w/cpp/named_req/BidirectionalIterator):
The iterator that can be moved can be moved in both directions (i.e.
+120 -136
View File
@@ -26,6 +26,7 @@
#include <nlohmann/detail/macro_scope.hpp>
#include <nlohmann/detail/string_concat.hpp>
#include <nlohmann/detail/string_escape.hpp>
#include <nlohmann/detail/string_utils.hpp>
#include <nlohmann/detail/value_t.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
@@ -77,7 +78,7 @@ class json_pointer
}
/// @brief return a string representation of the JSON pointer
/// @sa https://json.nlohmann.me/api/json_pointer/operator_string/
/// @sa https://json.nlohmann.me/api/json_pointer/operator_string_t/
JSON_HEDLEY_DEPRECATED_FOR(3.11.0, to_string())
operator string_t() const
{
@@ -86,7 +87,7 @@ class json_pointer
#ifndef JSON_NO_IO
/// @brief write string representation of the JSON pointer to stream
/// @sa https://json.nlohmann.me/api/basic_json/operator_ltlt/
/// @sa https://json.nlohmann.me/api/operator_ltlt/
friend std::ostream& operator<<(std::ostream& o, const json_pointer& ptr)
{
o << ptr.to_string();
@@ -116,7 +117,7 @@ class json_pointer
/// @sa https://json.nlohmann.me/api/json_pointer/operator_slasheq/
json_pointer& operator/=(std::size_t array_idx)
{
return *this /= std::to_string(array_idx);
return *this /= detail::to_string<string_t>(array_idx);
}
/// @brief create a new JSON pointer by appending the right JSON pointer at the end of the left JSON pointer
@@ -239,6 +240,72 @@ class json_pointer
}
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;
}
// the index does not fit into size_type; on 64-bit platforms this is
// only SIZE_MAX itself (see #2203 and #5395)
if (res >= static_cast<unsigned long long>((std::numeric_limits<size_type>::max)())) // NOLINT(runtime/int)
{
return array_index_status::exceeds_size_type;
}
idx = static_cast<size_type>(res);
return array_index_status::ok;
}
/*!
@param[in] s reference token to be converted into an array index
@@ -252,39 +319,25 @@ class json_pointer
template<typename BasicJsonType>
static typename BasicJsonType::size_type array_index(const string_t& s)
{
using size_type = typename BasicJsonType::size_type;
// error condition (cf. RFC 6901, Sect. 4)
if (JSON_HEDLEY_UNLIKELY(s.size() > 1 && s[0] == '0'))
typename BasicJsonType::size_type idx{};
switch (parse_array_index<BasicJsonType>(s, idx))
{
JSON_THROW(detail::parse_error::create(106, 0, detail::concat("array index '", s, "' must not begin with '0'"), nullptr));
// the branches differ in their messages, not after JSON_THROW's expansion
// NOLINTNEXTLINE(bugprone-branch-clone)
case array_index_status::leading_zero:
JSON_THROW(detail::parse_error::create(106, 0, detail::concat("array index '", s, "' 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 '", s, "' is not a number"), nullptr));
case array_index_status::unresolved:
JSON_THROW(detail::out_of_range::create(404, detail::concat("unresolved reference token '", s, "'"), nullptr));
case array_index_status::exceeds_size_type:
JSON_THROW(detail::out_of_range::create(410, detail::concat("array index ", s, " exceeds size_type"), nullptr));
case array_index_status::ok:
default:
break;
}
// 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));
}
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));
}
// 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
}
return static_cast<size_type>(res);
return idx;
}
JSON_PRIVATE_UNLESS_TESTED:
@@ -315,7 +368,7 @@ class json_pointer
/*!
@brief create and return a reference to the pointed to value
@complexity Linear in the number of reference tokens.
Complexity: Linear in the number of reference tokens.
@throw parse_error.106 if an array index begins with '0'
@throw parse_error.109 if array index is not a number
@@ -402,7 +455,7 @@ class json_pointer
@return reference to the JSON value pointed to by the JSON pointer
@complexity Linear in the length of the JSON pointer.
Complexity: Linear in the length of the JSON pointer.
@throw parse_error.106 if an array index begins with '0'
@throw parse_error.109 if an array index was not a number
@@ -535,6 +588,10 @@ class json_pointer
@return const reference to the JSON value pointed to by the JSON
pointer
@pre Every object key and array index the pointer refers to exists.
Like the const operator[] for keys and indices, a missing one is
undefined behavior, guarded by a runtime assertion.
@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
@@ -549,7 +606,8 @@ class json_pointer
{
case detail::value_t::object:
{
// use unchecked object access
// use unchecked object access; the const operator[]
// asserts that the key exists
ptr = &ptr->operator[](reference_token);
break;
}
@@ -562,7 +620,8 @@ class json_pointer
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));
}
// use unchecked array access
// use unchecked array access; the const operator[]
// asserts that the index exists
ptr = &ptr->operator[](array_index<BasicJsonType>(reference_token));
break;
}
@@ -583,63 +642,6 @@ class json_pointer
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
pointer cannot be resolved because a key is missing, an array
@@ -678,18 +680,25 @@ class json_pointer
return nullptr;
}
// may throw parse_error.106/109 for a malformed index; an
// a malformed index throws parse_error.106/109; an
// index that is syntactically valid but cannot be
// represented (out_of_range.404/410) is treated like an
// out-of-range index below
typename BasicJsonType::size_type idx{};
JSON_TRY
switch (parse_array_index<BasicJsonType>(reference_token, idx))
{
idx = array_index<BasicJsonType>(reference_token);
}
JSON_INTERNAL_CATCH (detail::out_of_range&)
{
return nullptr;
// the branches differ in their messages, not after JSON_THROW's expansion
// NOLINTNEXTLINE(bugprone-branch-clone)
case array_index_status::leading_zero:
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(idx >= ptr->m_data.m_value.array->size()))
@@ -717,8 +726,8 @@ class json_pointer
}
/*!
@throw parse_error.106 if an array index begins with '0'
@throw parse_error.109 if an array index was not a number
@note unlike array_index(), this never throws: a malformed or unrepresentable
array index reference token is treated like a missing key (see #5395)
*/
template<typename BasicJsonType>
bool contains(const BasicJsonType* ptr) const
@@ -746,43 +755,17 @@ class json_pointer
// "-" always fails the range check
return false;
}
if (JSON_HEDLEY_UNLIKELY(reference_token.size() == 1 && !("0" <= reference_token && reference_token <= "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.c_str(), &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)
// 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))
{
// the array index cannot be represented as size_type
return false;
}
const auto idx = array_index<BasicJsonType>(reference_token);
if (idx >= ptr->size())
{
// index out of range
@@ -1092,7 +1075,8 @@ class json_pointer
friend bool operator!=(const StringType& lhs,
const json_pointer<RefStringTypeRhs>& rhs);
/// @brief compares two JSON pointer for less-than
/// @brief compares two JSON pointers for less-than
/// @sa https://json.nlohmann.me/api/json_pointer/operator_spaceship/
template<typename RefStringTypeLhs, typename RefStringTypeRhs>
// NOLINTNEXTLINE(readability-redundant-declaration)
friend bool operator<(const json_pointer<RefStringTypeLhs>& lhs,
+29 -57
View File
@@ -9,7 +9,6 @@
#pragma once
#include <utility> // declval, pair
#include <nlohmann/detail/meta/detected.hpp>
#include <nlohmann/thirdparty/hedley/hedley.hpp>
// This file contains all internal macro definitions (except those affecting ABI)
@@ -140,10 +139,12 @@
// libstdc++ < 11 has incomplete C++20 ranges (issue #4440)
#elif defined(_GLIBCXX_RELEASE) && _GLIBCXX_RELEASE < 11
#define JSON_HAS_RANGES 0
// libc++ < 16 has incomplete C++20 ranges (issue #4440)
// clang < 16 with libstdc++ does not implement the ranges customization
// points libstdc++ declares, so its C++20 ranges support is incomplete (issue #5161)
#elif defined(__clang__) && !defined(__apple_build_version__) \
&& __clang_major__ < 16 && defined(__GLIBCXX__)
#define JSON_HAS_RANGES 0
// libc++ < 16 has incomplete C++20 ranges (issue #4440)
#elif defined(_LIBCPP_VERSION) && _LIBCPP_VERSION < 160000
#define JSON_HAS_RANGES 0
// nvcc CUDA 12.0/12.1 chokes on the enable_borrowed_range variable-template
@@ -158,6 +159,18 @@
#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
#if defined(JSON_HAS_CPP_20) && defined(__cpp_lib_format)
#define JSON_HAS_STD_FORMAT 1
@@ -195,13 +208,6 @@
#define JSON_NO_THREAD_LOCAL 1
#endif
// disable documentation warnings on clang
#if defined(__clang__)
#pragma clang diagnostic push
#pragma clang diagnostic ignored "-Wdocumentation"
#pragma clang diagnostic ignored "-Wdocumentation-unknown-command"
#endif
// allow disabling exceptions
#if (defined(__cpp_exceptions) || defined(__EXCEPTIONS) || defined(_CPPUNWIND)) && !defined(JSON_NOEXCEPTION)
#define JSON_THROW(exception) throw exception
@@ -260,7 +266,7 @@
{ \
/* NOLINTNEXTLINE(modernize-type-traits) we use C++11 */ \
static_assert(std::is_enum<ENUM_TYPE>::value, #ENUM_TYPE " must be an enum!"); \
/* NOLINTNEXTLINE(modernize-avoid-c-arrays) we don't want to depend on <array> */ \
/* NOLINTNEXTLINE(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) we don't want to depend on <array> */ \
static const std::pair<ENUM_TYPE, BasicJsonType> m[] = __VA_ARGS__; \
auto it = std::find_if(std::begin(m), std::end(m), \
[e](const std::pair<ENUM_TYPE, BasicJsonType>& ej_pair) -> bool \
@@ -274,7 +280,7 @@
{ \
/* NOLINTNEXTLINE(modernize-type-traits) we use C++11 */ \
static_assert(std::is_enum<ENUM_TYPE>::value, #ENUM_TYPE " must be an enum!"); \
/* NOLINTNEXTLINE(modernize-avoid-c-arrays) we don't want to depend on <array> */ \
/* NOLINTNEXTLINE(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) we don't want to depend on <array> */ \
static const std::pair<ENUM_TYPE, BasicJsonType> m[] = __VA_ARGS__; \
auto it = std::find_if(std::begin(m), std::end(m), \
[&j](const std::pair<ENUM_TYPE, BasicJsonType>& ej_pair) -> bool \
@@ -286,26 +292,11 @@
/*!
@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
on invalid input
@def NLOHMANN_JSON_SERIALIZE_ENUM_STRICT
@since version 3.12.0
@since version 3.13.0
*/
#define NLOHMANN_JSON_SERIALIZE_ENUM_STRICT(ENUM_TYPE, ...) \
template<typename BasicJsonType> \
@@ -313,7 +304,7 @@ void templated_json_throw(ExceptionType exception)
{ \
/* NOLINTNEXTLINE(modernize-type-traits) we use C++11 */ \
static_assert(std::is_enum<ENUM_TYPE>::value, #ENUM_TYPE " must be an enum!"); \
/* NOLINTNEXTLINE(modernize-avoid-c-arrays) we don't want to depend on <array> */ \
/* NOLINTNEXTLINE(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) we don't want to depend on <array> */ \
static const std::pair<ENUM_TYPE, BasicJsonType> m[] = __VA_ARGS__; \
auto it = std::find_if(std::begin(m), std::end(m), \
[e](const std::pair<ENUM_TYPE, BasicJsonType>& ej_pair) -> bool \
@@ -321,14 +312,14 @@ void templated_json_throw(ExceptionType exception)
return ej_pair.first == e; \
}); \
if (it != std::end(m)) j = it->second; \
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)); \
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)); \
} \
template<typename BasicJsonType> \
inline void from_json(const BasicJsonType& j, ENUM_TYPE& e) \
{ \
/* NOLINTNEXTLINE(modernize-type-traits) we use C++11 */ \
static_assert(std::is_enum<ENUM_TYPE>::value, #ENUM_TYPE " must be an enum!"); \
/* NOLINTNEXTLINE(modernize-avoid-c-arrays) we don't want to depend on <array> */ \
/* NOLINTNEXTLINE(cppcoreguidelines-avoid-c-arrays,hicpp-avoid-c-arrays,modernize-avoid-c-arrays) we don't want to depend on <array> */ \
static const std::pair<ENUM_TYPE, BasicJsonType> m[] = __VA_ARGS__; \
auto it = std::find_if(std::begin(m), std::end(m), \
[&j](const std::pair<ENUM_TYPE, BasicJsonType>& ej_pair) -> bool \
@@ -336,7 +327,7 @@ void templated_json_throw(ExceptionType exception)
return ej_pair.second == j; \
}); \
if (it != std::end(m)) e = it->first; \
else templated_json_throw<nlohmann::detail::out_of_range>(nlohmann::detail::out_of_range::create(410,"enum value out of range for " #ENUM_TYPE ": " + j.dump(), &j)); \
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)); \
}
// Ugly macros to avoid uglier copy-paste when specializing basic_json. They
@@ -359,6 +350,7 @@ void templated_json_throw(ExceptionType exception)
// Macros to simplify conversion from/to types
// NLOHMANN_JSON_EXPAND to NLOHMANN_JSON_DOUBLE_PASTE63 are generated by tools/macro_builder (see its README.md)
#define NLOHMANN_JSON_EXPAND( x ) x
#define NLOHMANN_JSON_GET_MACRO(_1, _2, _3, _4, _5, _6, _7, _8, _9, _10, _11, _12, _13, _14, _15, _16, _17, _18, _19, _20, _21, _22, _23, _24, _25, _26, _27, _28, _29, _30, _31, _32, _33, _34, _35, _36, _37, _38, _39, _40, _41, _42, _43, _44, _45, _46, _47, _48, _49, _50, _51, _52, _53, _54, _55, _56, _57, _58, _59, _60, _61, _62, _63, _64, NAME,...) NAME
#define NLOHMANN_JSON_PASTE(...) NLOHMANN_JSON_EXPAND(NLOHMANN_JSON_GET_MACRO(__VA_ARGS__, \
@@ -621,6 +613,10 @@ void templated_json_throw(ExceptionType exception)
// arguments, so dispatching on Type,BaseType,member... directly would run out
// one slot early and cap the derived-type macros at 62 members instead of the
// 63 that NLOHMANN_JSON_PASTE supports.
//
// The slot table below (down to the closing NLOHMANN_JSON_TYPE_BODY_SENTINEL))
// is generated by tools/macro_builder (see its README.md; run with the
// "type_body" argument).
#define NLOHMANN_JSON_TYPE_BODY(Prefix, ...) NLOHMANN_JSON_EXPAND(NLOHMANN_JSON_GET_MACRO(__VA_ARGS__, \
Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, \
Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, Prefix ## MEMBERS, \
@@ -876,30 +872,6 @@ void templated_json_throw(ExceptionType exception)
\
template<typename... 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
@@ -916,6 +888,6 @@ void templated_json_throw(ExceptionType exception)
#define JSON_DISABLE_ENUM_SERIALIZATION 0
#endif
#ifndef JSON_USE_GLOBAL_UDLS
#define JSON_USE_GLOBAL_UDLS 1
#ifndef JSON_DISABLE_TUPLE_REFERENCE_CONVERSION
#define JSON_DISABLE_TUPLE_REFERENCE_CONVERSION 0
#endif
+3 -6
View File
@@ -8,11 +8,6 @@
#pragma once
// restore clang diagnostic settings
#if defined(__clang__)
#pragma clang diagnostic pop
#endif
// clean up
#undef JSON_ASSERT
#undef JSON_INTERNAL_CATCH
@@ -25,7 +20,7 @@
#undef JSON_INLINE_VARIABLE
#undef JSON_NO_UNIQUE_ADDRESS
#undef JSON_DISABLE_ENUM_SERIALIZATION
#undef JSON_USE_GLOBAL_UDLS
#undef JSON_DISABLE_TUPLE_REFERENCE_CONVERSION
#ifndef JSON_TEST_KEEP_MACROS
#undef JSON_CATCH
@@ -40,12 +35,14 @@
#undef JSON_HAS_EXPERIMENTAL_FILESYSTEM
#undef JSON_HAS_THREE_WAY_COMPARISON
#undef JSON_HAS_RANGES
#undef JSON_HAS_RANGE_VIEW_CONVERSION
#undef JSON_HAS_STD_FORMAT
#undef JSON_HAS_STATIC_RTTI
#undef JSON_USE_LEGACY_DISCARDED_VALUE_COMPARISON
#undef JSON_BRACE_INIT_COPY_SEMANTICS
#undef JSON_PRECISE_STREAM_POSITION
#undef JSON_STRICT_NUL_HANDLING
#undef JSON_STRICT_BINARY_UTF8
#endif
#include <nlohmann/thirdparty/hedley/hedley_undef.hpp>
@@ -12,6 +12,6 @@
NLOHMANN_JSON_NAMESPACE_BEGIN
NLOHMANN_CAN_CALL_STD_FUNC_IMPL(begin);
NLOHMANN_CAN_CALL_STD_FUNC_IMPL(begin)
NLOHMANN_JSON_NAMESPACE_END
@@ -12,6 +12,6 @@
NLOHMANN_JSON_NAMESPACE_BEGIN
NLOHMANN_CAN_CALL_STD_FUNC_IMPL(end);
NLOHMANN_CAN_CALL_STD_FUNC_IMPL(end)
NLOHMANN_JSON_NAMESPACE_END
@@ -9,7 +9,6 @@
#pragma once
#include <array> // array
#include <cstddef> // size_t
#include <type_traits> // conditional, enable_if, false_type, integral_constant, is_constructible, is_integral, is_same, remove_cv, remove_reference, true_type
#include <utility> // index_sequence, make_index_sequence, index_sequence_for
@@ -161,11 +160,5 @@ struct static_const
constexpr T static_const<T>::value;
#endif
template<typename T, typename... Args>
constexpr std::array<T, sizeof...(Args)> make_array(Args&& ... args)
{
return std::array<T, sizeof...(Args)> {{static_cast<T>(std::forward<Args>(args))...}};
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+1 -34
View File
@@ -8,7 +8,7 @@
#pragma once
#include <cstdint> // size_t
#include <cstddef> // size_t
#include <utility> // declval
#include <string> // string
@@ -70,37 +70,6 @@ using parse_error_function_t = decltype(std::declval<T&>().parse_error(
std::declval<std::size_t>(), std::declval<const std::string&>(),
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>
struct is_sax_static_asserts
{
@@ -120,8 +89,6 @@ struct is_sax_static_asserts
"Missing/invalid function: bool null()");
static_assert(is_detected_exact<bool, boolean_function_t, SAX>::value,
"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(
is_detected_exact<bool, number_integer_function_t, SAX,
number_integer_t>::value,
-54
View File
@@ -1,54 +0,0 @@
#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
+81 -27
View File
@@ -189,6 +189,37 @@ struct actual_object_comparator
template<typename BasicJsonType>
using actual_object_comparator_t = typename actual_object_comparator<BasicJsonType>::type;
template<typename T>
using detect_key_comp = decltype(std::declval<const T&>().key_comp());
// whether ObjectType can be constructed from a pair of Iterator together with
// a copy of its own comparator, the way std::map can: it needs a nested
// key_compare, a const key_comp() convertible to it, and a matching
// (Iterator, Iterator, const key_compare&) constructor.
//
// used to preserve a stateful comparator when a copy is built from a range
// past the iterative deep copy's nesting bound (see copy_object_level); an
// object type that does not satisfy this, such as nlohmann::ordered_map
// (which has key_compare for its std::map-like interface, but no key_comp()),
// keeps default-constructing its comparator, just as it always has
template<typename ObjectType, typename Iterator, typename = void>
struct is_comparator_constructible_object_type_impl : std::false_type {};
template<typename ObjectType, typename Iterator>
struct is_comparator_constructible_object_type_impl <
ObjectType, Iterator, enable_if_t<is_detected<detect_key_compare, ObjectType>::value >>
{
using key_compare = typename ObjectType::key_compare;
static constexpr bool value =
is_detected_convertible<key_compare, detect_key_comp, ObjectType>::value &&
std::is_constructible<ObjectType, Iterator, Iterator, const key_compare&>::value;
};
template<typename ObjectType, typename Iterator>
struct is_comparator_constructible_object_type
: is_comparator_constructible_object_type_impl<ObjectType, Iterator> {};
/////////////////
// char_traits //
/////////////////
@@ -283,6 +314,13 @@ template<class B, class... Bn>
struct conjunction<B, Bn...>
: 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
template<class B> struct negation : std::integral_constant < bool, !B::value > { };
@@ -477,9 +515,7 @@ 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 {};
#endif
// 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__)
#if JSON_HAS_RANGE_VIEW_CONVERSION
// SafeToCheck guards against types that trigger circular constraints when
// std::ranges::view<T> is evaluated on GCC 12 / libstdc++ 12:
@@ -518,7 +554,7 @@ struct is_compatible_array_type_impl <
// 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
// exclusive: this one handles plain iterable containers, the other handles views.
#if JSON_HAS_RANGES && !defined(__MINGW32__)
#if JSON_HAS_RANGE_VIEW_CONVERSION
&& !is_compatible_range_view<CompatibleArrayType>::value
#endif
>>
@@ -528,7 +564,7 @@ struct is_compatible_array_type_impl <
range_value_t<CompatibleArrayType>>::value;
};
#if JSON_HAS_RANGES && !defined(__MINGW32__)
#if JSON_HAS_RANGE_VIEW_CONVERSION
template<typename BasicJsonType, typename CompatibleArrayType>
struct is_compatible_array_type_impl <
BasicJsonType, CompatibleArrayType,
@@ -604,7 +640,6 @@ struct is_compatible_integer_type_impl <
std::is_integral<CompatibleNumberIntegerType>::value&&
!std::is_same<bool, CompatibleNumberIntegerType>::value >>
{
// is there an assert somewhere on overflows?
using RealLimits = std::numeric_limits<RealIntegerType>;
using CompatibleLimits = std::numeric_limits<CompatibleNumberIntegerType>;
@@ -636,6 +671,18 @@ template<typename BasicJsonType, typename CompatibleType>
struct is_compatible_type
: is_compatible_type_impl<BasicJsonType, CompatibleType> {};
// a one-element std::tuple holding a reference to BasicJsonType, as created by
// std::forward_as_tuple(j); see JSON_DISABLE_TUPLE_REFERENCE_CONVERSION
template<typename BasicJsonType, typename T>
struct is_basic_json_reference_tuple : std::false_type {};
template<typename BasicJsonType, typename T>
struct is_basic_json_reference_tuple<BasicJsonType, std::tuple<T>>
{
static constexpr bool value =
std::is_reference<T>::value && std::is_same<uncvref_t<T>, BasicJsonType>::value;
};
template<typename BasicJsonType, typename CompatibleArrayType>
struct is_compatible_binary_type
{
@@ -725,7 +772,7 @@ std::is_constructible <decltype(std::declval<Compare>()(std::declval<A>(), std::
// avoid their instantiation on all compilers, even when the first operand
// is false. The dispatch on is_json_pointer_of can be removed once the
// deprecated json_pointer comparison operators have been removed.
template<typename Compare, typename A, typename B, bool = is_json_pointer_of<A, B>::value>
template<typename Compare, typename A, typename B, bool = is_json_pointer_of<uncvref_t<A>, uncvref_t<B>>::value>
struct is_comparable : std::false_type {};
template<typename Compare, typename A, typename B>
@@ -748,6 +795,30 @@ using is_usable_as_key_type = typename std::conditional <
std::true_type,
std::false_type >::type;
#ifdef JSON_HAS_CPP_17
// type trait to check if KeyType can only be used as an object key after
// converting it to std::string_view: it is convertible to std::string_view, the
// object's comparator cannot compare it with object_t::key_type directly, but
// can compare a std::string_view. JSON pointers and JSON iterators are ruled out
// first, so that the conversion checks are never instantiated for them (a JSON
// pointer's deprecated conversion to string_t would be named otherwise).
template < typename BasicJsonType, typename KeyTypeCVRef, typename KeyType = uncvref_t<KeyTypeCVRef>,
bool = is_json_pointer<KeyType>::value || is_json_iterator_of<BasicJsonType, KeyType>::value >
struct is_string_view_convertible_key_type : std::false_type {};
template<typename BasicJsonType, typename KeyTypeCVRef, typename KeyType>
struct is_string_view_convertible_key_type<BasicJsonType, KeyTypeCVRef, KeyType, false>
: std::integral_constant < bool,
std::is_convertible<KeyTypeCVRef, std::string_view>::value
&& !is_usable_as_key_type<typename BasicJsonType::object_comparator_t,
typename BasicJsonType::object_t::key_type, KeyTypeCVRef, true, false>::value
&& is_usable_as_key_type<typename BasicJsonType::object_comparator_t,
typename BasicJsonType::object_t::key_type, std::string_view, true, false>::value > {};
#else
template<typename BasicJsonType, typename KeyTypeCVRef>
struct is_string_view_convertible_key_type : std::false_type {};
#endif
// type trait to check if KeyType can be used as an object key
// true if:
// - KeyType is comparable with BasicJsonType::object_t::key_type
@@ -761,9 +832,7 @@ using is_usable_as_basic_json_key_type = typename std::conditional <
typename BasicJsonType::object_t::key_type, KeyTypeCVRef,
RequireTransparentComparator, ExcludeObjectKeyType>::value
&& !is_json_iterator_of<BasicJsonType, KeyType>::value)
#ifdef JSON_HAS_CPP_17
|| std::is_convertible<KeyType, std::string_view>::value
#endif
|| is_string_view_convertible_key_type<BasicJsonType, KeyTypeCVRef>::value
, std::true_type,
std::false_type >::type;
@@ -798,20 +867,7 @@ 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
// ordered_map inherits capacity() from std::vector)
template <typename 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)
};
struct is_ordered_map : has_capacity<T> {};
// 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 >
@@ -835,10 +891,8 @@ using all_signed = conjunction<std::is_signed<Types>...>;
template<typename... Types>
using all_unsigned = conjunction<std::is_unsigned<Types>...>;
// there's a disjunction trait in another PR; replace when merged
template<typename... Types>
using same_sign = std::integral_constant < bool,
all_signed<Types...>::value || all_unsigned<Types...>::value >;
using same_sign = disjunction<all_signed<Types...>, all_unsigned<Types...>>;
template<typename OfType, typename T>
using never_out_of_range = std::integral_constant < bool,
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,50 @@
// __ _____ _____ _____
// __| | __| | | | 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
#pragma once
#include <nlohmann/detail/abi_macros.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
{
/// how to treat decoding errors
///
/// @ref basic_json::dump uses this to decide what to do with ill-formed
/// UTF-8 while escaping a string, and the binary writers (@ref
/// basic_json::to_cbor, @ref basic_json::to_ubjson, @ref
/// basic_json::to_bjdata, @ref basic_json::to_bson) use it the same way for
/// string values and object keys. The binary readers (@ref
/// basic_json::from_cbor, @ref basic_json::from_msgpack, @ref
/// basic_json::from_ubjson, @ref basic_json::from_bjdata, @ref
/// basic_json::from_bson) use it to decide whether to check text strings
/// and object keys for well-formed UTF-8 at all, since none of those
/// formats requires a decoder to do so.
enum class error_handler_t
{
strict, ///< throw a type_error/parse_error exception in case of invalid UTF-8
replace, ///< replace invalid UTF-8 sequences with U+FFFD
ignore, ///< ignore invalid UTF-8 sequences
keep ///< keep invalid UTF-8 sequences unchanged
};
/// the default error handler of the CBOR, UBJSON, BJData, and BSON writers:
/// error_handler_t::strict if JSON_STRICT_BINARY_UTF8 is enabled, otherwise
/// error_handler_t::keep (the behavior before version 3.13.0)
constexpr error_handler_t binary_writer_default_error_handler() noexcept
{
#if JSON_STRICT_BINARY_UTF8
return error_handler_t::strict;
#else
return error_handler_t::keep;
#endif
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
@@ -8,11 +8,10 @@
#pragma once
#include <algorithm> // copy
#include <cstddef> // size_t
#include <iterator> // back_inserter
#include <memory> // shared_ptr, make_shared
#include <string> // basic_string
#include <type_traits> // conditional, integral_constant, is_same
#include <utility> // move
#include <vector> // vector
@@ -31,6 +30,10 @@ namespace detail
template<typename CharType> struct output_adapter_protocol
{
virtual void write_character(CharType c) = 0;
/// @param[in] s pointer to the characters to write; binary_writer legitimately
/// passes a null pointer together with length 0 for an empty
/// string or binary value, so implementations must tolerate that
/// @param[in] length number of characters at @a s
virtual void write_characters(const CharType* s, std::size_t length) = 0;
virtual ~output_adapter_protocol() = default;
@@ -97,7 +100,6 @@ class output_vector_adapter : public output_adapter_protocol<CharType>
sink.write_character(c);
}
JSON_HEDLEY_NON_NULL(2)
void write_characters(const CharType* s, std::size_t length) override
{
sink.write_characters(s, length);
@@ -117,12 +119,13 @@ class output_stream_adapter : public output_adapter_protocol<CharType>
: stream(s)
{}
// NOLINTNEXTLINE(portability-template-virtual-member-function)
void write_character(CharType c) override
{
stream.put(c);
}
JSON_HEDLEY_NON_NULL(2)
// NOLINTNEXTLINE(portability-template-virtual-member-function)
void write_characters(const CharType* s, std::size_t length) override
{
stream.write(s, static_cast<std::streamsize>(length));
@@ -147,7 +150,6 @@ class output_string_adapter : public output_adapter_protocol<CharType>
str.push_back(c);
}
JSON_HEDLEY_NON_NULL(2)
void write_characters(const CharType* s, std::size_t length) override
{
str.append(s, length);
@@ -190,7 +192,82 @@ class output_adapter_sink
output_adapter_t<CharType> oa;
};
template<typename CharType, typename StringType = std::basic_string<CharType>>
/// @brief whether std::basic_string<CharType> has a non-deprecated std::char_traits
/// specialization, and is therefore usable as output_adapter's default StringType
///
/// std::char_traits is only guaranteed (and, on some standard libraries, only
/// implemented without a deprecation warning) for the character types listed
/// below; std::char_traits<T> for any other T (e.g. std::uint8_t, as used by the
/// binary writers) is a non-standard extension some standard libraries deprecate.
/// See https://github.com/nlohmann/json/issues/5725 item 2.
template<typename CharType>
struct is_output_adapter_string_char_type : std::integral_constant < bool,
std::is_same<CharType, char>::value ||
std::is_same<CharType, wchar_t>::value ||
std::is_same<CharType, char16_t>::value ||
std::is_same<CharType, char32_t>::value
#if defined(__cpp_lib_char8_t) && (__cpp_lib_char8_t >= 201907L)
|| std::is_same<CharType, char8_t>::value
#endif
> {};
/// @brief placeholder type for output_adapter's StringType and (with JSON_NO_IO
/// undefined) its std::basic_ostream constructor parameter, for CharType
/// with no non-deprecated std::char_traits specialization
///
/// Never actually used: the StringType- and std::basic_ostream-based
/// output_adapter constructors are neither documented nor tested for such
/// CharType (only the std::vector-based constructor is used for them, by the
/// binary writers). Naming std::basic_string<CharType> or
/// std::basic_ostream<CharType> anywhere such a constructor would otherwise be
/// declared - even as an unused default template argument or an unused,
/// never-called overload - instantiates std::char_traits<CharType> merely to
/// name the type, which is exactly what triggers the deprecation warning this
/// placeholder avoids.
template<typename CharType>
struct output_adapter_no_string_type {};
// Select output_adapter's default StringType (and, below, its ostream
// constructor's parameter type) via partial specialization, not
// std::conditional: std::conditional<B, T, F> requires both T and F to be named
// as template arguments up front, which would still instantiate (and thus name)
// std::basic_string<CharType> / std::basic_ostream<CharType> for every CharType,
// defeating the point. A bool non-type parameter with two specializations only
// ever names the type that is actually selected.
template<typename CharType, bool = is_output_adapter_string_char_type<CharType>::value>
struct output_adapter_default_string_type
{
using type = output_adapter_no_string_type<CharType>;
};
template<typename CharType>
struct output_adapter_default_string_type<CharType, true>
{
using type = std::basic_string<CharType>;
};
#ifndef JSON_NO_IO
/// distinct from output_adapter_no_string_type, so the placeholder overloads of
/// output_adapter's constructor (used when CharType is not a character type)
/// stay distinct overloads instead of colliding into a single redeclaration
template<typename CharType>
struct output_adapter_no_ostream_type {};
template<typename CharType, bool = is_output_adapter_string_char_type<CharType>::value>
struct output_adapter_ostream_type
{
using type = output_adapter_no_ostream_type<CharType>;
};
template<typename CharType>
struct output_adapter_ostream_type<CharType, true>
{
using type = std::basic_ostream<CharType>;
};
#endif // JSON_NO_IO
template < typename CharType, typename StringType =
typename output_adapter_default_string_type<CharType>::type >
class output_adapter
{
public:
@@ -199,7 +276,7 @@ class output_adapter
: oa(std::make_shared<output_vector_adapter<CharType, AllocatorType>>(vec)) {}
#ifndef JSON_NO_IO
output_adapter(std::basic_ostream<CharType>& s)
output_adapter(typename output_adapter_ostream_type<CharType>::type& s)
: oa(std::make_shared<output_stream_adapter<CharType>>(s)) {}
#endif // JSON_NO_IO
+137 -183
View File
@@ -3,24 +3,23 @@
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2008, 2009 Björn Hoehrmann <bjoern@hoehrmann.de>
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
#pragma once
#include <algorithm> // reverse, remove, fill, find, none_of, min
#include <algorithm> // remove, fill, find, none_of, min
#include <array> // array
#include <clocale> // localeconv, lconv
#include <cmath> // labs, isfinite, isnan, signbit
#include <cmath> // isfinite
#include <cstddef> // size_t, ptrdiff_t
#include <cstdint> // uint8_t
#include <cstdio> // snprintf
#include <cstring> // memcpy, memset
#include <iterator> // next
#include <limits> // numeric_limits
#include <string> // string, char_traits
#include <type_traits> // is_same
#include <utility> // move
#include <vector> // vector
#include <nlohmann/detail/conversions/to_chars.hpp>
@@ -28,7 +27,7 @@
#include <nlohmann/detail/input/string_scan.hpp>
#include <nlohmann/detail/macro_scope.hpp>
#include <nlohmann/detail/meta/cpp_future.hpp>
#include <nlohmann/detail/output/binary_writer.hpp>
#include <nlohmann/detail/output/error_handler.hpp>
#include <nlohmann/detail/output/output_adapters.hpp>
#include <nlohmann/detail/recursion_depth_limit.hpp>
#include <nlohmann/detail/string_concat.hpp>
@@ -43,14 +42,6 @@ namespace detail
// serialization //
///////////////////
/// how to treat decoding errors
enum class error_handler_t
{
strict, ///< throw a type_error exception in case of invalid UTF-8
replace, ///< replace invalid UTF-8 sequences with U+FFFD
ignore ///< ignore invalid UTF-8 sequences
};
template<typename BasicJsonType>
class serializer
{
@@ -67,7 +58,7 @@ class serializer
@param[in] ichar indentation character to use
@param[in] pretty_print_ whether the output shall be pretty-printed
@param[in] ensure_ascii_ If @a ensure_ascii_ is true, all non-ASCII
characters in the output are escaped with `\uXXXX` sequences, and the
characters in the output are escaped with `\\uXXXX` sequences, and the
result consists of ASCII characters only.
@param[in] indent_step_ the indent level
@param[in] error_handler_ how to react on decoding errors
@@ -83,7 +74,6 @@ class serializer
const std::size_t indent_step_ = 0,
error_handler_t error_handler_ = error_handler_t::strict)
: o(&s)
, locale(std::localeconv())
, indent_char(ichar)
, pretty_print(pretty_print_)
, ensure_ascii(ensure_ascii_)
@@ -106,9 +96,10 @@ class serializer
additional parameter. Arrays and objects are serialized without recursion,
however deeply they are nested.
- strings and object keys are escaped using `escape_string()`
- integer numbers are converted implicitly via `operator<<`
- floating-point numbers are converted to a string using `"%g"` format
- strings and object keys are escaped using @ref dump_escaped
- integer numbers are converted using a digit-pair lookup table (@ref dump_integer)
- floating-point numbers are converted to a string using @ref dump_float, which
uses `to_chars` for IEEE-754 types and `snprintf` otherwise
- binary values are serialized as objects containing the subtype and the
byte array
@@ -283,127 +274,16 @@ class serializer
}
case value_t::string:
{
put_char('"');
dump_escaped(*val.m_data.m_value.string);
put_char('"');
return;
}
case value_t::binary:
{
if (pretty_print)
{
put_literal("{\n");
// variable to hold indentation for recursive calls
const auto new_indent = next_indent(current_indent, indent_step);
put_indent(new_indent);
put_literal("\"bytes\": [");
if (!val.m_data.m_value.binary->empty())
{
for (auto i = val.m_data.m_value.binary->cbegin();
i != val.m_data.m_value.binary->cend() - 1; ++i)
{
dump_byte(*i);
put_literal(", ");
}
dump_byte(val.m_data.m_value.binary->back());
}
put_literal("],\n");
put_indent(new_indent);
put_literal("\"subtype\": ");
if (val.m_data.m_value.binary->has_subtype())
{
dump_integer(val.m_data.m_value.binary->subtype());
}
else
{
put_literal("null");
}
put_char('\n');
put_indent(current_indent);
put_char('}');
}
else
{
put_literal("{\"bytes\":[");
if (!val.m_data.m_value.binary->empty())
{
for (auto i = val.m_data.m_value.binary->cbegin();
i != val.m_data.m_value.binary->cend() - 1; ++i)
{
dump_byte(*i);
put_char(',');
}
dump_byte(val.m_data.m_value.binary->back());
}
put_literal("],\"subtype\":");
if (val.m_data.m_value.binary->has_subtype())
{
dump_integer(val.m_data.m_value.binary->subtype());
put_char('}');
}
else
{
put_literal("null}");
}
}
return;
}
case value_t::boolean:
{
if (val.m_data.m_value.boolean)
{
put_literal("true");
}
else
{
put_literal("false");
}
return;
}
case value_t::number_integer:
{
dump_integer(val.m_data.m_value.number_integer);
return;
}
case value_t::number_unsigned:
{
dump_integer(val.m_data.m_value.number_unsigned);
return;
}
case value_t::number_float:
{
dump_float(val.m_data.m_value.number_float);
return;
}
case value_t::discarded:
{
put_literal("<discarded>");
return;
}
case value_t::null:
{
put_literal("null");
default:
dump_scalar(val, current_indent);
return;
}
default: // LCOV_EXCL_LINE
JSON_ASSERT(false); // NOLINT(cert-dcl03-c,hicpp-static-assert,misc-static-assert) LCOV_EXCL_LINE
}
}
@@ -560,9 +440,9 @@ class serializer
@brief serialize the value @a val, but not the elements of a container
An object or array with elements is opened and pushed onto @a stack for
@ref dump_internal to walk; everything else - including a binary value,
@ref dump_iteratively to walk; everything else - including a binary value,
which looks like an object but has no elements to descend into - is written
out here in full.
out in full by @ref dump_scalar.
*/
void dump_value(const BasicJsonType& val,
const std::size_t current_indent,
@@ -620,6 +500,35 @@ class serializer
return;
}
case value_t::string:
case value_t::binary:
case value_t::boolean:
case value_t::number_integer:
case value_t::number_unsigned:
case value_t::number_float:
case value_t::discarded:
case value_t::null:
default:
dump_scalar(val, current_indent);
return;
}
}
/*!
@brief serialize the value @a val, which is neither an object nor an array
Shared by @ref dump_internal and @ref dump_value, so that a value is written
the same way however deeply it is nested. A binary value is written out here
in full: it looks like an object, but has no elements to descend into.
@param[in] val value to serialize; not an object or array
@param[in] current_indent the indentation of @a val, used for a
pretty-printed binary value
*/
void dump_scalar(const BasicJsonType& val, const std::size_t current_indent)
{
switch (val.m_data.m_type)
{
case value_t::string:
{
put_char('"');
@@ -740,6 +649,8 @@ class serializer
return;
}
case value_t::object: // LCOV_EXCL_LINE
case value_t::array: // LCOV_EXCL_LINE
default: // LCOV_EXCL_LINE
JSON_ASSERT(false); // NOLINT(cert-dcl03-c,hicpp-static-assert,misc-static-assert) LCOV_EXCL_LINE
}
@@ -768,11 +679,11 @@ class serializer
Escape a string by replacing certain special characters by a sequence of an
escape character (backslash) and another character and other control
characters by a sequence of "\u" followed by a four-digit hex
representation. The escaped string is written to output stream @a o.
representation. The escaped string is appended to @ref write_buffer.
@param[in] s the string to escape
@complexity Linear in the length of string @a s.
Complexity: Linear in the length of string @a s.
*/
void dump_escaped(const string_t& s)
{
@@ -795,6 +706,11 @@ class serializer
@a ensure_ascii is a template parameter here so that the branch on it is
resolved once, outside the loop; see @ref dump_escaped.
*/
#ifdef JSON_HEDLEY_MSVC_VERSION
#pragma warning(push)
// EnsureAscii is a template parameter; C++11 has no if constexpr
#pragma warning(disable : 4127) // conditional expression is constant
#endif
template<bool EnsureAscii>
void dump_escaped_impl(const string_t& s)
{
@@ -921,6 +837,16 @@ class serializer
// EnsureAscii parameter is used, non-ASCII characters
if ((codepoint <= 0x1F) || (EnsureAscii && (codepoint >= 0x7F)))
{
if (EnsureAscii && error_handler == error_handler_t::keep)
{
// this character was buffered as raw bytes
// below in case it turned out to be part of
// an ill-formed sequence (which is kept as
// is); now that it decoded to a well-formed
// code point, undo that and \u-escape it
// like any other character instead
bytes = bytes_after_last_accept;
}
if (codepoint <= 0xFFFF)
{
write_u_escape(bytes, static_cast<std::uint16_t>(codepoint));
@@ -962,7 +888,7 @@ class serializer
{
case error_handler_t::strict:
{
JSON_THROW(type_error::create(316, concat("invalid UTF-8 byte at index ", std::to_string(i), ": 0x", hex_bytes(byte | 0)), nullptr));
JSON_THROW(type_error::create(316, concat("invalid UTF-8 byte at index ", std::to_string(i), ": 0x", detail::hex_byte(byte)), nullptr));
}
case error_handler_t::ignore:
@@ -995,9 +921,9 @@ class serializer
}
else
{
string_buffer[bytes++] = detail::binary_writer<BasicJsonType, char>::to_char_type('\xEF');
string_buffer[bytes++] = detail::binary_writer<BasicJsonType, char>::to_char_type('\xBF');
string_buffer[bytes++] = detail::binary_writer<BasicJsonType, char>::to_char_type('\xBD');
string_buffer[bytes++] = '\xEF';
string_buffer[bytes++] = '\xBF';
string_buffer[bytes++] = '\xBD';
}
// write buffer and reset index; there must be 13 bytes
@@ -1019,6 +945,44 @@ class serializer
break;
}
case error_handler_t::keep:
{
// the bytes of this (now abandoned) ill-formed
// sequence seen so far are already buffered below
// and are kept unchanged in the output
if (undumped_chars > 0)
{
// the byte that ended the sequence may be OK
// for itself (e.g., a quote that must still be
// escaped, or the lead byte of a well-formed
// code point), so read it again
--i;
}
else
{
// a byte that cannot start a sequence (e.g.,
// 0xFF or a stray continuation byte) is kept
// as well
string_buffer[bytes++] = s[i];
}
// write buffer and reset index; there must be 13 bytes
// left, as this is the maximal number of bytes to be
// written ("\uxxxx\uxxxx\0") for one code point
if (string_buffer.size() - bytes < 13)
{
put_buffer(string_buffer, bytes);
bytes = 0;
}
bytes_after_last_accept = bytes;
undumped_chars = 0;
// continue processing the string
state = UTF8_ACCEPT;
break;
}
default: // LCOV_EXCL_LINE
JSON_ASSERT(false); // NOLINT(cert-dcl03-c,hicpp-static-assert,misc-static-assert) LCOV_EXCL_LINE
}
@@ -1027,9 +991,12 @@ class serializer
default: // decode found yet incomplete multibyte code point
{
if (!EnsureAscii)
if (!EnsureAscii || error_handler == error_handler_t::keep)
{
// code point will not be escaped - copy byte to buffer
// code point will not be escaped (or will be kept as
// is if it turns out to be ill-formed) - copy byte to
// buffer; dropped again above if it decodes to a
// well-formed code point that needs \u-escaping
string_buffer[bytes++] = s[i];
}
++undumped_chars;
@@ -1054,7 +1021,7 @@ class serializer
{
case error_handler_t::strict:
{
JSON_THROW(type_error::create(316, concat("incomplete UTF-8 string; last byte: 0x", hex_bytes(static_cast<std::uint8_t>(s[s.size() - 1] | 0))), nullptr));
JSON_THROW(type_error::create(316, concat("incomplete UTF-8 string; last byte: 0x", detail::hex_byte(static_cast<std::uint8_t>(s[s.size() - 1]))), nullptr));
}
case error_handler_t::ignore:
@@ -1080,11 +1047,22 @@ class serializer
break;
}
case error_handler_t::keep:
{
// write the ill-formed trailing bytes as is; they were
// buffered above regardless of EnsureAscii
put_buffer(string_buffer, bytes);
break;
}
default: // LCOV_EXCL_LINE
JSON_ASSERT(false); // NOLINT(cert-dcl03-c,hicpp-static-assert,misc-static-assert) LCOV_EXCL_LINE
}
}
}
#ifdef JSON_HEDLEY_MSVC_VERSION
#pragma warning(pop)
#endif
private:
/*!
@@ -1276,21 +1254,7 @@ class serializer
}
/*!
* @brief convert a byte to a uppercase hex representation
* @param[in] byte byte to represent
* @return representation ("00".."FF")
*/
static std::string hex_bytes(std::uint8_t byte)
{
std::string result = "FF";
constexpr const char* nibble_to_hex = "0123456789ABCDEF";
result[0] = nibble_to_hex[byte / 16];
result[1] = nibble_to_hex[byte % 16];
return result;
}
/*!
* @brief write a lowercase "\uXXXX" escape sequence into @a string_buffer
* @brief write a lowercase "\\uXXXX" escape sequence into @a string_buffer
*
* Branch-free replacement for `snprintf(buf, 7, "\\u%04x", codeunit)` in the
* string escaping hot path. It writes exactly six characters ('\\', 'u' and
@@ -1402,7 +1366,7 @@ class serializer
/*!
@brief dump an integer
Dump a given integer to output stream @a o. Works internally with
Dump a given integer, appending it to @ref write_buffer. Works internally with
@a number_buffer.
@param[in] x integer number (signed or unsigned) to dump
@@ -1439,7 +1403,7 @@ class serializer
}
// use a pointer to fill the buffer
auto buffer_ptr = number_buffer.begin(); // NOLINT(llvm-qualified-auto,readability-qualified-auto,cppcoreguidelines-pro-type-vararg,hicpp-vararg)
auto buffer_ptr = number_buffer.begin(); // NOLINT(llvm-qualified-auto,readability-qualified-auto)
number_unsigned_t abs_value;
@@ -1493,7 +1457,7 @@ class serializer
/*!
@brief dump a floating-point number
Dump a given floating-point number to output stream @a o. Works internally
Dump a given floating-point number, appending it to @ref write_buffer. Works internally
with @a number_buffer.
@param[in] x floating-point number to dump
@@ -1554,21 +1518,28 @@ class serializer
// check if the buffer was large enough
JSON_ASSERT(static_cast<std::size_t>(len) < number_buffer.size());
// look up the locale's thousands separator and decimal point now,
// matching what snprintf_float() just used (see lexer::get_decimal_point())
const auto* loc = std::localeconv();
JSON_ASSERT(loc != nullptr);
const char thousands_sep = (loc->thousands_sep == nullptr) ? '\0' : *loc->thousands_sep;
const char decimal_point = (loc->decimal_point == nullptr) ? '\0' : *loc->decimal_point;
// erase thousands separators
if (locale.thousands_sep != '\0')
if (thousands_sep != '\0')
{
// NOLINTNEXTLINE(readability-qualified-auto,llvm-qualified-auto): std::remove returns an iterator, see https://github.com/nlohmann/json/issues/3081
const auto end = std::remove(number_buffer.begin(), number_buffer.begin() + len, locale.thousands_sep);
const auto end = std::remove(number_buffer.begin(), number_buffer.begin() + len, thousands_sep);
std::fill(end, number_buffer.end(), '\0');
JSON_ASSERT((end - number_buffer.begin()) <= len);
len = (end - number_buffer.begin());
}
// convert decimal point to '.'
if (locale.decimal_point != '\0' && locale.decimal_point != '.')
if (decimal_point != '\0' && decimal_point != '.')
{
// NOLINTNEXTLINE(readability-qualified-auto,llvm-qualified-auto): std::find returns an iterator, see https://github.com/nlohmann/json/issues/3081
const auto dec_pos = std::find(number_buffer.begin(), number_buffer.end(), locale.decimal_point);
const auto dec_pos = std::find(number_buffer.begin(), number_buffer.end(), decimal_point);
if (dec_pos != number_buffer.end())
{
*dec_pos = '.';
@@ -1613,34 +1584,17 @@ class serializer
*/
number_unsigned_t remove_sign(number_integer_t x) noexcept
{
JSON_ASSERT(x < 0 && x < (std::numeric_limits<number_integer_t>::max)()); // NOLINT(misc-redundant-expression)
JSON_ASSERT(x < 0);
return static_cast<number_unsigned_t>(-(x + 1)) + 1;
}
private:
/// the locale's thousand separator and decimal point characters
struct locale_chars
{
explicit locale_chars(const std::lconv* loc) noexcept
: thousands_sep(loc->thousands_sep == nullptr ? '\0' : std::char_traits<char>::to_char_type(* (loc->thousands_sep)))
, decimal_point(loc->decimal_point == nullptr ? '\0' : std::char_traits<char>::to_char_type(* (loc->decimal_point)))
{}
const char thousands_sep;
const char decimal_point;
};
/// the output of the serializer (non-owning; the adapter lives at the call site)
output_adapter_protocol<char>* o = nullptr;
/// a (hopefully) large enough character buffer
std::array<char, 64> number_buffer{{}};
/// computed once from std::localeconv() at construction; @ref
/// locale_chars keeps std::localeconv()'s pointer from having to be held
/// past the constructor, while still letting these stay const
const locale_chars locale;
/// string buffer
std::array<char, 512> string_buffer{{}};
@@ -1650,7 +1604,7 @@ class serializer
/// whether to pretty-print the output
const bool pretty_print;
/// whether to escape non-ASCII characters with \uXXXX sequences
/// whether to escape non-ASCII characters with \\uXXXX sequences
const bool ensure_ascii;
/// the indent level
@@ -19,11 +19,17 @@ namespace detail
/*!
@brief the number of nesting levels an operation recurses into
Operations that walk a value (serializing, hashing, merging, ...) recurse once
Operations that walk a value (copying, comparing, serializing, hashing, merging,
...) recurse once
per nesting level, which is fastest, but a value nested deeply enough would
exhaust the call stack. So they recurse only this many levels deep and finish
whatever lies below with an explicit stack. All of them share this limit.
Most of them pass the depth down as an argument. The copy constructor and the
comparison operators cannot, as their signatures are fixed, so they count it
in basic_json::nesting_depth() instead, a byte per thread; the limit must
therefore stay below 255.
@sa https://github.com/nlohmann/json/issues/5387
*/
constexpr std::size_t recursion_depth_limit() noexcept
@@ -39,7 +39,6 @@ inline std::size_t concat_length(const char /*c*/, const Args& ... rest)
template<typename... Args>
inline std::size_t concat_length(const char* cstr, const Args& ... rest)
{
// cppcheck-suppress ignoredReturnValue
return ::strlen(cstr) + concat_length(rest...);
}
+1 -2
View File
@@ -62,8 +62,7 @@ inline StringType escape(const StringType& s)
/*!
* @brief string unescaping as described in RFC 6901 (Sect. 4)
* @param[in] s string to unescape
* @return unescaped string
* @param[in,out] s string to unescape in place
*
* Note the order of escaping "~1" to "/" and "~0" to "~" is important.
*
+191 -15
View File
@@ -3,6 +3,7 @@
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2008, 2009 Björn Hoehrmann <bjoern@hoehrmann.de>
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
@@ -15,6 +16,7 @@
#include <nlohmann/detail/abi_macros.hpp>
#include <nlohmann/detail/macro_scope.hpp>
#include <nlohmann/detail/output/error_handler.hpp>
NLOHMANN_JSON_NAMESPACE_BEGIN
namespace detail
@@ -36,6 +38,71 @@ StringType to_string(std::size_t value)
return result;
}
/// @return a byte as two uppercase hexadecimal digits
inline std::string hex_byte(const std::uint8_t byte)
{
std::string result = "00";
constexpr const char* nibble_to_hex = "0123456789ABCDEF";
result[0] = nibble_to_hex[byte / 16];
result[1] = nibble_to_hex[byte % 16];
return result;
}
///////////////////
// UTF-8 encoding //
///////////////////
/*!
@brief encode a Unicode code point as UTF-8
Used to turn a decoded code point back into bytes: by the wide-string input
adapters in input_adapters.hpp (one code point per UTF-32 unit, per UTF-16
unit outside the surrogate range, and per valid UTF-16 surrogate pair), and
by the lexer's handling of u-escapes and surrogate pairs in lexer.hpp. Passing a
code point above U+10FFFF, or one in the surrogate range U+D800..U+DFFF, is
undefined behavior; callers are expected to have rejected those already
(the wide-string adapters pass malformed units through unencoded instead of
calling this function, and the lexer rejects unpaired surrogates before
reaching it).
@tparam Out a callable invoked with one byte (as std::uint32_t, 0x00..0xFF)
at a time, most significant byte first
@param[in] cp the code point to encode (at most U+10FFFF)
@param[in] out called once for each byte of the UTF-8 encoding of @a cp
*/
template<typename Out>
void encode_utf8(std::uint32_t cp, const Out& out)
{
JSON_ASSERT(cp <= 0x10FFFF);
if (cp < 0x80)
{
// 1-byte characters: 0xxxxxxx (ASCII)
out(cp);
}
else if (cp <= 0x7FF)
{
// 2-byte characters: 110xxxxx 10xxxxxx
out(0xC0u | (cp >> 6u));
out(0x80u | (cp & 0x3Fu));
}
else if (cp <= 0xFFFF)
{
// 3-byte characters: 1110xxxx 10xxxxxx 10xxxxxx
out(0xE0u | (cp >> 12u));
out(0x80u | ((cp >> 6u) & 0x3Fu));
out(0x80u | (cp & 0x3Fu));
}
else
{
// 4-byte characters: 11110xxx 10xxxxxx 10xxxxxx 10xxxxxx
out(0xF0u | (cp >> 18u));
out(0x80u | ((cp >> 12u) & 0x3Fu));
out(0x80u | ((cp >> 6u) & 0x3Fu));
out(0x80u | (cp & 0x3Fu));
}
}
///////////////////
// UTF-8 decoding //
///////////////////
@@ -51,11 +118,24 @@ This is a single-byte step of a "shift-based" UTF-8 decoder originally
written by Björn Hoehrmann. See
http://bjoern.hoehrmann.de/utf-8/decoder/dfa/ for details.
This decoder is the single source of truth for UTF-8 validation in this
library: it is used both by the serializer (to escape and, in strict mode,
reject ill-formed UTF-8 when dumping a string) and by the binary readers
(to reject ill-formed UTF-8 in CBOR/MessagePack/BSON/UBJSON text strings at
decode time; see @ref is_valid_utf8 below).
The library checks UTF-8 well-formedness (RFC 3629, section 4) in three
places, which differ in speed, diagnostics, and how they read the input:
- decode() below: the serializer, to escape and, in strict mode, reject
ill-formed UTF-8 when dumping a string. The CBOR, MessagePack, BSON,
UBJSON and BJData readers do not use it: none of those specs requires a
decoder to reject ill-formed UTF-8 in text strings, so the readers keep
the bytes as is and leave the check to dump() and the binary writers.
- the per-lead-byte switch in lexer::scan_string(): JSON text, with a
diagnostic for each kind of error.
- validate_one_utf8() and valid_utf8_prefix() in string_scan.hpp: the lexer's
bulk string scan, the bulk path of the BON8 reader, and the BON8 writer.
They must accept exactly what the lexer's switch accepts.
- the byte path of binary_reader::get_bon8_string(): BON8 input without bulk
access, and the bytes the bulk path leaves to it.
All four must accept the same set of sequences, so a change to one needs a
matching change to the others.
@param[in,out] state the current decoder state
@param[in,out] codep codepoint (valid only if resulting state is UTF8_ACCEPT)
@@ -101,19 +181,19 @@ inline std::uint8_t decode(std::uint8_t& state, std::uint32_t& codep, const std:
}
/*!
@brief check whether a string consists solely of valid UTF-8
@brief check a string for well-formed UTF-8 (RFC 3629, section 4)
Used by the CBOR/MessagePack/BSON/UBJSON binary readers to reject text
strings that are not valid UTF-8 at decode time (RFC 8949 §3.1 and the
MessagePack/BSON specifications all require text strings to be UTF-8), so
that malformed input is caught immediately instead of only surfacing later
as a type_error.316 when the resulting value is dumped.
Used by the binary readers (CBOR, MessagePack, UBJSON, BJData, BSON) when an
@ref error_handler_t other than `keep` is requested for a text string value
or object key: none of those formats requires a decoder to reject ill-formed
UTF-8 on its own, so the check is opt-in there, unlike the JSON lexer and the
serializer's @ref decode -based escaping, which always run it.
@param[in] s the string to check
@param[in] first index of the first byte to check; the bytes before it are
assumed to have been validated already and to end on a
code point boundary
@return whether @a s (from index @a first on) is valid UTF-8
@param[in] first the index to start checking at
@return whether `s.substr(first)` is well-formed UTF-8
@sa @ref decode
*/
template<typename StringType>
inline bool is_valid_utf8(const StringType& s, const std::size_t first = 0) noexcept
@@ -133,5 +213,101 @@ inline bool is_valid_utf8(const StringType& s, const std::size_t first = 0) noex
return state == UTF8_ACCEPT;
}
/*!
@brief sanitize a string with ill-formed UTF-8 for @ref error_handler_t::replace or @ref error_handler_t::ignore
Replaces every maximal ill-formed subsequence with U+FFFD (`replace`) or
drops it (`ignore`), using exactly the same boundaries @ref
serializer::dump_escaped_impl uses while escaping a string: a byte that does
not extend the sequence started by the previous byte(s) is reread as the
start of a new one, instead of being swallowed along with them.
@pre @a error_handler is @ref error_handler_t::replace or @ref error_handler_t::ignore
@note Well-formed input is copied through unchanged, including bytes (e.g.
control characters or quotes) that @ref serializer::dump_escaped_impl
would itself escape; this function only concerns itself with
well-formedness, not with producing valid JSON text.
@param[in] s the string to sanitize
@param[in] error_handler @ref error_handler_t::replace or @ref error_handler_t::ignore
@return @a s with every ill-formed subsequence replaced or removed
@sa @ref decode
*/
template<typename StringType>
inline StringType sanitize_utf8(const StringType& s, const error_handler_t error_handler)
{
JSON_ASSERT(error_handler == error_handler_t::replace || error_handler == error_handler_t::ignore);
StringType result;
result.reserve(s.size());
std::uint32_t codepoint = 0;
std::uint8_t state = UTF8_ACCEPT;
// length of result after the last accepted code point
std::size_t result_len_after_last_accept = 0;
// whether bytes of an as yet unresolved sequence were already appended
bool pending = false;
for (std::size_t i = 0; i < s.size(); ++i)
{
switch (decode(state, codepoint, static_cast<std::uint8_t>(s[i])))
{
case UTF8_ACCEPT: // decode found a well-formed code point
{
result.push_back(s[i]);
result_len_after_last_accept = result.size();
pending = false;
break;
}
case UTF8_REJECT: // decode found an ill-formed byte
{
// in case we saw this byte for the first time, read it again,
// because it may be fine for itself, just not for the
// sequence that came before it
if (pending)
{
--i;
}
// drop the bytes of the ill-formed sequence buffered below
result.resize(result_len_after_last_accept);
if (error_handler == error_handler_t::replace)
{
result.append("\xEF\xBF\xBD");
result_len_after_last_accept = result.size();
}
pending = false;
state = UTF8_ACCEPT;
break;
}
default: // decode found yet incomplete multibyte code point
{
result.push_back(s[i]);
pending = true;
break;
}
}
}
// the string ended with an incomplete sequence
if (state != UTF8_ACCEPT)
{
result.resize(result_len_after_last_accept);
if (error_handler == error_handler_t::replace)
{
result.append("\xEF\xBF\xBD");
}
}
return result;
}
} // namespace detail
NLOHMANN_JSON_NAMESPACE_END
+1438 -852
View File
File diff suppressed because it is too large Load Diff
+5 -6
View File
@@ -11,8 +11,7 @@
#include <cstdint> // int64_t, uint64_t
#include <map> // map
#include <memory> // allocator
#include <string> // string
#include <string> // allocator, string
#include <vector> // vector
#include <nlohmann/detail/abi_macros.hpp>
@@ -32,7 +31,7 @@ This serializer ignores the template arguments and uses ADL
for serialization.
*/
template<typename T = void, typename SFINAE = void>
struct adl_serializer;
struct adl_serializer; // IWYU pragma: keep
/// a class to store JSON values
/// @sa https://json.nlohmann.me/api/basic_json/
@@ -48,12 +47,12 @@ template<template<typename U, typename V, typename... Args> class ObjectType =
adl_serializer,
class BinaryType = std::vector<std::uint8_t>, // cppcheck-suppress syntaxError
class CustomBaseClass = void>
class basic_json;
class basic_json; // IWYU pragma: keep
/// @brief JSON Pointer defines a string syntax for identifying a specific value within a JSON document
/// @sa https://json.nlohmann.me/api/json_pointer/
template<typename RefStringType>
class json_pointer;
class json_pointer; // IWYU pragma: keep
/*!
@brief default specialization
@@ -64,7 +63,7 @@ using json = basic_json<>;
/// @brief a minimal map-like container that preserves insertion order
/// @sa https://json.nlohmann.me/api/ordered_map/
template<class Key, class T, class IgnoredLess, class Allocator>
struct ordered_map;
struct ordered_map; // IWYU pragma: keep
/// @brief specialization that maintains the insertion order of object keys
/// @sa https://json.nlohmann.me/api/ordered_json/
+78
View File
@@ -0,0 +1,78 @@
// __ _____ _____ _____
// __| | __| | | | 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
#ifndef INCLUDE_NLOHMANN_JSON_LITERALS_HPP_
#define INCLUDE_NLOHMANN_JSON_LITERALS_HPP_
#include <cstddef> // size_t
#include <string> // string
// NOLINTNEXTLINE(misc-header-include-cycle): json.hpp includes this header at its end
#include <nlohmann/json.hpp>
// This header is included at the end of <nlohmann/json.hpp> unless
// JSON_NO_AUTOMATIC_UDLS is defined, and can be included on its own after that.
// Either way, the library's internal macros are no longer defined here (and the
// amalgamation inlines macro_scope.hpp only once), so only standard and public
// macros may be used below.
// declares the literal operator for the given suffix; GCC 4.8 requires a space
// between "" and the suffix, which newer compilers deprecate (CWG 2521)
#if !defined(__GNUC__) || defined(__clang__) || __GNUC__ > 4 || (__GNUC__ == 4 && __GNUC_MINOR__ >= 9)
#define NLOHMANN_JSON_LITERAL_OPERATOR(suffix) operator""##suffix
#else
#define NLOHMANN_JSON_LITERAL_OPERATOR(suffix) operator"" suffix
#endif
NLOHMANN_JSON_NAMESPACE_BEGIN
inline namespace literals
{
inline namespace json_literals
{
/// @brief user-defined string literal for JSON values
/// @sa https://json.nlohmann.me/api/operator_literal_json/
inline nlohmann::json NLOHMANN_JSON_LITERAL_OPERATOR(_json)(const char* s, std::size_t n)
{
return nlohmann::json::parse(s, s + n);
}
#if defined(__cpp_char8_t)
inline nlohmann::json operator""_json(const char8_t* s, std::size_t n)
{
return nlohmann::json::parse(reinterpret_cast<const char*>(s),
reinterpret_cast<const char*>(s) + n);
}
#endif
/// @brief user-defined string literal for JSON pointer
/// @sa https://json.nlohmann.me/api/operator_literal_json_pointer/
inline nlohmann::json::json_pointer NLOHMANN_JSON_LITERAL_OPERATOR(_json_pointer)(const char* s, std::size_t n)
{
return nlohmann::json::json_pointer(std::string(s, n));
}
#if defined(__cpp_char8_t)
inline nlohmann::json::json_pointer operator""_json_pointer(const char8_t* s, std::size_t n)
{
return nlohmann::json::json_pointer(std::string(reinterpret_cast<const char*>(s), n));
}
#endif
} // namespace json_literals
} // namespace literals
NLOHMANN_JSON_NAMESPACE_END
#if !defined(JSON_USE_GLOBAL_UDLS) || JSON_USE_GLOBAL_UDLS
using nlohmann::literals::json_literals::NLOHMANN_JSON_LITERAL_OPERATOR(_json); // NOLINT(misc-unused-using-decls,google-global-names-in-headers)
using nlohmann::literals::json_literals::NLOHMANN_JSON_LITERAL_OPERATOR(_json_pointer); //NOLINT(misc-unused-using-decls,google-global-names-in-headers)
#endif
#undef NLOHMANN_JSON_LITERAL_OPERATOR
#endif // INCLUDE_NLOHMANN_JSON_LITERALS_HPP_
+141 -123
View File
@@ -8,15 +8,19 @@
#pragma once
#include <algorithm> // max, min
#include <functional> // equal_to, less
#include <initializer_list> // initializer_list
#include <iterator> // input_iterator_tag, iterator_traits
#include <memory> // allocator
#include <memory> // allocator // IWYU pragma: keep
#include <new> // for operator new (placement new)
#include <stdexcept> // for out_of_range
#include <type_traits> // enable_if, is_convertible
#include <utility> // pair
#include <tuple> // forward_as_tuple
#include <type_traits> // enable_if, integral_constant, is_convertible, is_nothrow_move_constructible
#include <utility> // forward, move, pair, piecewise_construct
#include <vector> // vector
#include <nlohmann/detail/abi_macros.hpp>
#include <nlohmann/detail/macro_scope.hpp>
#include <nlohmann/detail/meta/type_traits.hpp>
@@ -70,31 +74,59 @@ template <class Key, class T, class IgnoredLess = std::less<Key>,
return *this;
}
std::pair<iterator, bool> emplace(const key_type& key, T&& t)
private:
/// @brief find the entry for @a key, for either constness of @a self
/// @note the single place that performs the linear key search
template<typename Self, typename KeyType>
static auto find_impl(Self& self, const KeyType& key) -> decltype(self.begin())
{
for (auto it = this->begin(); it != this->end(); ++it)
for (auto it = self.begin(); it != self.end(); ++it)
{
if (m_compare(it->first, key))
if (self.m_compare(it->first, key))
{
return {it, false};
return it;
}
}
Container::emplace_back(key, std::forward<T>(t));
return self.end();
}
/// @brief remove the entry @a it points to, preserving order
/// @note keys are not movable, so the tail is destroyed and re-constructed in place
void erase_at(iterator it)
{
for (auto next = it; ++next != this->end(); ++it)
{
it->~value_type(); // Destroy but keep allocation
new (&*it) value_type{std::move(*next)};
}
Container::pop_back();
}
public:
template<class V, detail::enable_if_t<
detail::is_constructible<T, V>::value, int> = 0>
std::pair<iterator, bool> emplace(const key_type& key, V && t)
{
const auto it = find_impl(*this, key);
if (it != this->end())
{
return {it, false};
}
append(key, std::forward<V>(t));
return {std::prev(this->end()), true};
}
template<class KeyType, detail::enable_if_t<
detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
std::pair<iterator, bool> emplace(KeyType && key, T && t)
template<class KeyType, class V, detail::enable_if_t<
detail::conjunction<detail::is_usable_as_key_type<key_compare, key_type, KeyType>,
detail::is_constructible<T, V>>::value, int> = 0>
std::pair<iterator, bool> emplace(KeyType && key, V && t)
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, key);
if (it != this->end())
{
if (m_compare(it->first, key))
{
return {it, false};
}
return {it, false};
}
Container::emplace_back(std::forward<KeyType>(key), std::forward<T>(t));
append(std::forward<KeyType>(key), std::forward<V>(t));
return {std::prev(this->end()), true};
}
@@ -124,75 +156,55 @@ template <class Key, class T, class IgnoredLess = std::less<Key>,
T& at(const key_type& key)
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, key);
if (it == this->end())
{
if (m_compare(it->first, key))
{
return it->second;
}
JSON_THROW(std::out_of_range("key not found"));
}
JSON_THROW(std::out_of_range("key not found"));
return it->second;
}
template<class KeyType, detail::enable_if_t<
detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
T & at(KeyType && key) // NOLINT(cppcoreguidelines-missing-std-forward)
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, key);
if (it == this->end())
{
if (m_compare(it->first, key))
{
return it->second;
}
JSON_THROW(std::out_of_range("key not found"));
}
JSON_THROW(std::out_of_range("key not found"));
return it->second;
}
const T& at(const key_type& key) const
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, key);
if (it == this->end())
{
if (m_compare(it->first, key))
{
return it->second;
}
JSON_THROW(std::out_of_range("key not found"));
}
JSON_THROW(std::out_of_range("key not found"));
return it->second;
}
template<class KeyType, detail::enable_if_t<
detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
const T & at(KeyType && key) const // NOLINT(cppcoreguidelines-missing-std-forward)
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, key);
if (it == this->end())
{
if (m_compare(it->first, key))
{
return it->second;
}
JSON_THROW(std::out_of_range("key not found"));
}
JSON_THROW(std::out_of_range("key not found"));
return it->second;
}
size_type erase(const key_type& key)
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, key);
if (it != this->end())
{
if (m_compare(it->first, key))
{
// Since we cannot move const Keys, re-construct them in place
for (auto next = it; ++next != this->end(); ++it)
{
it->~value_type(); // Destroy but keep allocation
new (&*it) value_type{std::move(*next)};
}
Container::pop_back();
return 1;
}
erase_at(it);
return 1;
}
return 0;
}
@@ -201,19 +213,11 @@ template <class Key, class T, class IgnoredLess = std::less<Key>,
detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
size_type erase(KeyType && key) // NOLINT(cppcoreguidelines-missing-std-forward)
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, key);
if (it != this->end())
{
if (m_compare(it->first, key))
{
// Since we cannot move const Keys, re-construct them in place
for (auto next = it; ++next != this->end(); ++it)
{
it->~value_type(); // Destroy but keep allocation
new (&*it) value_type{std::move(*next)};
}
Container::pop_back();
return 1;
}
erase_at(it);
return 1;
}
return 0;
}
@@ -278,80 +282,38 @@ template <class Key, class T, class IgnoredLess = std::less<Key>,
size_type count(const key_type& key) const
{
for (auto it = this->begin(); it != this->end(); ++it)
{
if (m_compare(it->first, key))
{
return 1;
}
}
return 0;
return find_impl(*this, key) != this->end() ? 1 : 0;
}
template<class KeyType, detail::enable_if_t<
detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
size_type count(KeyType && key) const // NOLINT(cppcoreguidelines-missing-std-forward)
{
for (auto it = this->begin(); it != this->end(); ++it)
{
if (m_compare(it->first, key))
{
return 1;
}
}
return 0;
return find_impl(*this, key) != this->end() ? 1 : 0;
}
iterator find(const key_type& key)
{
for (auto it = this->begin(); it != this->end(); ++it)
{
if (m_compare(it->first, key))
{
return it;
}
}
return Container::end();
return find_impl(*this, key);
}
template<class KeyType, detail::enable_if_t<
detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
iterator find(KeyType && key) // NOLINT(cppcoreguidelines-missing-std-forward)
{
for (auto it = this->begin(); it != this->end(); ++it)
{
if (m_compare(it->first, key))
{
return it;
}
}
return Container::end();
return find_impl(*this, key);
}
const_iterator find(const key_type& key) const
{
for (auto it = this->begin(); it != this->end(); ++it)
{
if (m_compare(it->first, key))
{
return it;
}
}
return Container::end();
return find_impl(*this, key);
}
template<class KeyType, detail::enable_if_t<
detail::is_usable_as_key_type<key_compare, key_type, KeyType>::value, int> = 0>
const_iterator find(KeyType && key) const // NOLINT(cppcoreguidelines-missing-std-forward)
{
for (auto it = this->begin(); it != this->end(); ++it)
{
if (m_compare(it->first, key))
{
return it;
}
}
return Container::end();
return find_impl(*this, key);
}
std::pair<iterator, bool> insert( value_type&& value )
@@ -361,14 +323,12 @@ template <class Key, class T, class IgnoredLess = std::less<Key>,
std::pair<iterator, bool> insert( const value_type& value )
{
for (auto it = this->begin(); it != this->end(); ++it)
const auto it = find_impl(*this, value.first);
if (it != this->end())
{
if (m_compare(it->first, value.first))
{
return {it, false};
}
return {it, false};
}
Container::push_back(value);
append(value);
return {--this->end(), true};
}
@@ -386,6 +346,64 @@ template <class Key, class T, class IgnoredLess = std::less<Key>,
}
private:
/*!
@brief add an element whose key is not yet contained at the end
A std::vector copies all elements when it grows, because their const keys
make them not nothrow move constructible. For ordered_json, this is a deep
copy of every value. Where the strong exception guarantee can be kept, grow
the storage here instead, copying only the keys and moving the values.
*/
template<typename... Args>
void append(Args&& ... args)
{
// evaluated here rather than at class scope, because T is still
// incomplete when basic_json instantiates its object_t
using move_values = std::integral_constant<bool, detail::conjunction<
detail::negation<std::is_nothrow_move_constructible<value_type>>,
std::is_copy_constructible<key_type>,
detail::is_default_constructible<mapped_type>,
std::is_nothrow_move_assignable<mapped_type>>::value>;
append_impl(move_values{}, std::forward<Args>(args)...);
}
template<typename... Args>
void append_impl(std::true_type /*unused*/, Args&& ... args)
{
if (this->size() < this->capacity())
{
Container::emplace_back(std::forward<Args>(args)...);
return;
}
// 1. May throw, but only changes tmp: copy the keys, value-initialize
// the values, and add the new element. The arguments may refer to
// elements of this container, so they are used before any value is
// moved out of it.
Container tmp(this->get_allocator()); // equal allocators, so swap() is valid
tmp.reserve((std::min)(this->max_size(), (std::max)(size_type{1}, 2 * this->size())));
for (const auto& element : *this)
{
tmp.emplace_back(std::piecewise_construct, std::forward_as_tuple(element.first), std::forward_as_tuple());
}
tmp.emplace_back(std::forward<Args>(args)...);
// 2. Cannot throw: move the values over and adopt the new storage.
auto it = tmp.begin();
for (auto& element : *this)
{
it->second = std::move(element.second);
++it;
}
Container::swap(tmp);
}
template<typename... Args>
void append_impl(std::false_type /*unused*/, Args&& ... args)
{
Container::emplace_back(std::forward<Args>(args)...);
}
JSON_NO_UNIQUE_ADDRESS key_compare m_compare = key_compare();
};