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af394fca9c |
@@ -287,7 +287,7 @@ struct external_constructor<value_t::object>
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#ifdef JSON_HAS_CPP_17
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template<typename BasicJsonType, typename T,
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enable_if_t<std::is_constructible<BasicJsonType, T>::value, int> = 0>
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void to_json(BasicJsonType& j, const std::optional<T>& opt)
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void to_json(BasicJsonType& j, const std::optional<T>& opt) noexcept
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{
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if (opt.has_value())
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{
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@@ -19,11 +19,17 @@ namespace detail
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/*!
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@brief the number of nesting levels an operation recurses into
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Operations that walk a value (serializing, hashing, merging, ...) recurse once
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Operations that walk a value (copying, comparing, serializing, hashing, merging,
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...) recurse once
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per nesting level, which is fastest, but a value nested deeply enough would
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exhaust the call stack. So they recurse only this many levels deep and finish
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whatever lies below with an explicit stack. All of them share this limit.
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Most of them pass the depth down as an argument. The copy constructor and the
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comparison operators cannot, as their signatures are fixed, so they count it
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in basic_json::nesting_depth() instead, a byte per thread; the limit must
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therefore stay below 255.
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@sa https://github.com/nlohmann/json/issues/5387
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*/
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constexpr std::size_t recursion_depth_limit() noexcept
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@@ -898,12 +898,8 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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}
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#ifndef JSON_NO_THREAD_LOCAL
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/// the number of levels an operation descends into before it finishes the
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/// value below it without the call stack
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static constexpr std::uint8_t nesting_depth_limit()
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{
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return 128;
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}
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// nesting_depth() is a byte and may exceed the limit by one level
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static_assert(detail::recursion_depth_limit() < 255, "the nesting depth count must fit in a byte");
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/*!
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@brief how many levels the operation going on in this thread has descended into
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@@ -945,7 +941,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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static_cast<void>(may_descend);
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return true;
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#else
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return !may_descend || nesting_depth() >= nesting_depth_limit();
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return !may_descend || nesting_depth() >= detail::recursion_depth_limit();
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#endif
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}
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@@ -969,7 +965,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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#ifdef JSON_NO_THREAD_LOCAL
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: m_okay(false)
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#else
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: m_okay(nesting_depth() < nesting_depth_limit())
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: m_okay(nesting_depth() < detail::recursion_depth_limit())
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#endif
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{
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#ifndef JSON_NO_THREAD_LOCAL
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@@ -1173,7 +1169,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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The values whose copy has not been created yet are kept on an explicit
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worklist rather than on the call stack. This is only reached for values
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nested deeper than @ref nesting_depth_limit levels, which is why it copies
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nested deeper than @ref detail::recursion_depth_limit levels, which is why it copies
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every container by hand instead of letting the container do it: the fast
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ways of doing so would descend into the elements and defeat the purpose.
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*/
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@@ -1239,7 +1235,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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Copying a container copies its elements, so a value nested deeply enough
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used to exhaust the call stack. The descent is bounded here: the first
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@ref nesting_depth_limit levels are copied by the containers themselves, just
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@ref detail::recursion_depth_limit levels are copied by the containers themselves, just
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as they always were, and anything below that is copied without the call
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stack by @ref copy_iteratively. Copying a value can therefore no longer
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exhaust the stack, however deeply it is nested, just like destroying one
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@@ -1377,7 +1373,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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/*!
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@brief compare @a lhs and @a rhs without descending into them
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Reached once a comparison has descended @ref nesting_depth_limit levels, so
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Reached once a comparison has descended @ref detail::recursion_depth_limit levels, so
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that comparing values cannot exhaust the call stack however deeply they are
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nested. The two values are walked in lockstep on an explicit stack and
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compared lexicographically, element by element in the order the containers
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@@ -6816,7 +6816,7 @@ struct external_constructor<value_t::object>
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#ifdef JSON_HAS_CPP_17
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template<typename BasicJsonType, typename T,
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enable_if_t<std::is_constructible<BasicJsonType, T>::value, int> = 0>
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void to_json(BasicJsonType& j, const std::optional<T>& opt)
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void to_json(BasicJsonType& j, const std::optional<T>& opt) noexcept
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{
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if (opt.has_value())
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{
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@@ -7281,11 +7281,17 @@ namespace detail
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/*!
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@brief the number of nesting levels an operation recurses into
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Operations that walk a value (serializing, hashing, merging, ...) recurse once
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Operations that walk a value (copying, comparing, serializing, hashing, merging,
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...) recurse once
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per nesting level, which is fastest, but a value nested deeply enough would
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exhaust the call stack. So they recurse only this many levels deep and finish
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whatever lies below with an explicit stack. All of them share this limit.
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Most of them pass the depth down as an argument. The copy constructor and the
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comparison operators cannot, as their signatures are fixed, so they count it
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in basic_json::nesting_depth() instead, a byte per thread; the limit must
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therefore stay below 255.
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@sa https://github.com/nlohmann/json/issues/5387
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*/
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constexpr std::size_t recursion_depth_limit() noexcept
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@@ -26979,12 +26985,8 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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}
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#ifndef JSON_NO_THREAD_LOCAL
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/// the number of levels an operation descends into before it finishes the
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/// value below it without the call stack
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static constexpr std::uint8_t nesting_depth_limit()
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{
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return 128;
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}
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// nesting_depth() is a byte and may exceed the limit by one level
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static_assert(detail::recursion_depth_limit() < 255, "the nesting depth count must fit in a byte");
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/*!
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@brief how many levels the operation going on in this thread has descended into
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@@ -27026,7 +27028,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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static_cast<void>(may_descend);
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return true;
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#else
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return !may_descend || nesting_depth() >= nesting_depth_limit();
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return !may_descend || nesting_depth() >= detail::recursion_depth_limit();
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#endif
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}
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@@ -27050,7 +27052,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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#ifdef JSON_NO_THREAD_LOCAL
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: m_okay(false)
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#else
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: m_okay(nesting_depth() < nesting_depth_limit())
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: m_okay(nesting_depth() < detail::recursion_depth_limit())
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#endif
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{
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#ifndef JSON_NO_THREAD_LOCAL
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@@ -27254,7 +27256,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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The values whose copy has not been created yet are kept on an explicit
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worklist rather than on the call stack. This is only reached for values
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nested deeper than @ref nesting_depth_limit levels, which is why it copies
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nested deeper than @ref detail::recursion_depth_limit levels, which is why it copies
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every container by hand instead of letting the container do it: the fast
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ways of doing so would descend into the elements and defeat the purpose.
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*/
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@@ -27320,7 +27322,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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Copying a container copies its elements, so a value nested deeply enough
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used to exhaust the call stack. The descent is bounded here: the first
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@ref nesting_depth_limit levels are copied by the containers themselves, just
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@ref detail::recursion_depth_limit levels are copied by the containers themselves, just
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as they always were, and anything below that is copied without the call
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stack by @ref copy_iteratively. Copying a value can therefore no longer
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exhaust the stack, however deeply it is nested, just like destroying one
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@@ -27458,7 +27460,7 @@ class basic_json // NOLINT(cppcoreguidelines-special-member-functions,hicpp-spec
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/*!
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@brief compare @a lhs and @a rhs without descending into them
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Reached once a comparison has descended @ref nesting_depth_limit levels, so
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Reached once a comparison has descended @ref detail::recursion_depth_limit levels, so
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that comparing values cannot exhaust the call stack however deeply they are
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nested. The two values are walked in lockstep on an explicit stack and
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compared lexicographically, element by element in the order the containers
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@@ -1826,16 +1826,6 @@ TEST_CASE("std::u8string")
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#endif
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#endif
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// a type whose to_json reports an error by throwing, used below to check that
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// converting a std::optional<T> to JSON propagates an exception thrown while
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// converting its contained value instead of calling std::terminate (#5642)
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struct throwing_to_json_type {};
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void to_json(json&, const throwing_to_json_type&)
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{
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throw std::runtime_error("cannot serialize throwing_to_json_type");
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}
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TEST_CASE("std::optional")
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{
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SECTION("null")
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@@ -1918,19 +1908,6 @@ TEST_CASE("std::optional")
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CHECK(json(opt_object) == j_object);
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CHECK(std::map<std::string, std::optional<int>>(j_object) == opt_object);
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}
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#if !defined(JSON_NOEXCEPTION)
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SECTION("exception from contained value's to_json propagates (#5642)")
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{
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// to_json(BasicJsonType&, const std::optional<T>&) must not be
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// noexcept: it calls T's to_json, which may throw (a user-defined
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// to_json that reports an error, or std::bad_alloc for T =
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// std::string/vector/json). Before the fix, this called
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// std::terminate() instead of letting the exception propagate.
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const std::optional<throwing_to_json_type> opt = throwing_to_json_type{};
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CHECK_THROWS_WITH_AS(json(opt), "cannot serialize throwing_to_json_type", std::runtime_error&);
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}
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#endif
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}
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#endif
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