// __ _____ _____ _____ // __| | __| | | | JSON for Modern C++ (supporting code) // | | |__ | | | | | | version 3.12.0 // |_____|_____|_____|_|___| https://github.com/nlohmann/json // // SPDX-FileCopyrightText: 2013-2026 Niels Lohmann // SPDX-License-Identifier: MIT #include #include #include "doctest_compatibility.h" #include using nlohmann::json; namespace persons { class person_with_private_data { private: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; public: bool operator==(const person_with_private_data& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_with_private_data() = default; person_with_private_data(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} NLOHMANN_DEFINE_TYPE_INTRUSIVE(person_with_private_data, age, name, metadata) }; class derived_person_with_private_data : public person_with_private_data { private: std::string hair_color{"blue"}; public: bool operator==(const derived_person_with_private_data& rhs) const { return person_with_private_data::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_with_private_data() = default; derived_person_with_private_data(std::string name_, int age_, json metadata_, std::string hair_color_) : person_with_private_data(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE(derived_person_with_private_data, person_with_private_data, hair_color) }; class person_with_private_data_2 { private: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; public: bool operator==(const person_with_private_data_2& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_with_private_data_2() = default; person_with_private_data_2(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} std::string getName() const { return name; } int getAge() const { return age; } json getMetadata() const { return metadata; } NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_DEFAULT(person_with_private_data_2, age, name, metadata) }; class person_with_private_data_3 { private: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; public: bool operator==(const person_with_private_data_3& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_with_private_data_3() = default; person_with_private_data_3(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_NAMES(person_with_private_data_3, "json_age", age, "json_name", name, "json_metadata", metadata) }; class derived_person_with_private_data_3 : public person_with_private_data_3 { private: std::string hair_color{"blue"}; public: bool operator==(const derived_person_with_private_data_3& rhs) const { return person_with_private_data_3::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_with_private_data_3() = default; derived_person_with_private_data_3(std::string name_, int age_, json metadata_, std::string hair_color_) : person_with_private_data_3(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_NAMES(derived_person_with_private_data_3, person_with_private_data_3, "json_hair_color", hair_color) }; class person_with_private_data_4 { private: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; public: bool operator==(const person_with_private_data_4& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_with_private_data_4() = default; person_with_private_data_4(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} std::string getName() const { return name; } int getAge() const { return age; } json getMetadata() const { return metadata; } NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_DEFAULT_WITH_NAMES(person_with_private_data_4, "json_age", age, "json_name", name, "json_metadata", metadata) }; class derived_person_with_private_data_2 : public person_with_private_data_2 { private: std::string hair_color{"blue"}; public: bool operator==(const derived_person_with_private_data_2& rhs) const { return person_with_private_data_2::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_with_private_data_2() = default; derived_person_with_private_data_2(std::string name_, int age_, json metadata_, std::string hair_color_) : person_with_private_data_2(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} std::string getHairColor() const { return hair_color; } NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_DEFAULT(derived_person_with_private_data_2, person_with_private_data_2, hair_color) }; class derived_person_with_private_data_4 : public person_with_private_data_4 { private: std::string hair_color{"blue"}; public: bool operator==(const derived_person_with_private_data_4& rhs) const { return person_with_private_data_4::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_with_private_data_4() = default; derived_person_with_private_data_4(std::string name_, int age_, json metadata_, std::string hair_color_) : person_with_private_data_4(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} std::string getHairColor() const { return hair_color; } NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_DEFAULT_WITH_NAMES(derived_person_with_private_data_4, person_with_private_data_4, "json_hair_color", hair_color) }; class person_without_private_data_1 { public: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; bool operator==(const person_without_private_data_1& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_without_private_data_1() = default; person_without_private_data_1(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} NLOHMANN_DEFINE_TYPE_INTRUSIVE(person_without_private_data_1, age, name, metadata) }; class derived_person_without_private_data_1 : public person_without_private_data_1 { public: std::string hair_color{"blue"}; public: bool operator==(const derived_person_without_private_data_1& rhs) const { return person_without_private_data_1::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_without_private_data_1() = default; derived_person_without_private_data_1(std::string name_, int age_, json metadata_, std::string hair_color_) : person_without_private_data_1(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE(derived_person_without_private_data_1, person_without_private_data_1, hair_color) }; class person_without_private_data_2 { public: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; bool operator==(const person_without_private_data_2& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_without_private_data_2() = default; person_without_private_data_2(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE(person_without_private_data_2, age, name, metadata) class derived_person_without_private_data_2 : public person_without_private_data_2 { public: std::string hair_color{"blue"}; public: bool operator==(const derived_person_without_private_data_2& rhs) const { return person_without_private_data_2::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_without_private_data_2() = default; derived_person_without_private_data_2(std::string name_, int age_, json metadata_, std::string hair_color_) : person_without_private_data_2(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE(derived_person_without_private_data_2, person_without_private_data_2, hair_color) class person_without_private_data_3 { public: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; bool operator==(const person_without_private_data_3& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_without_private_data_3() = default; person_without_private_data_3(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} std::string getName() const { return name; } int getAge() const { return age; } json getMetadata() const { return metadata; } }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_DEFAULT(person_without_private_data_3, age, name, metadata) class derived_person_without_private_data_3 : public person_without_private_data_3 { public: std::string hair_color{"blue"}; public: bool operator==(const derived_person_without_private_data_3& rhs) const { return person_without_private_data_3::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_without_private_data_3() = default; derived_person_without_private_data_3(std::string name_, int age_, json metadata_, std::string hair_color_) : person_without_private_data_3(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} std::string getHairColor() const { return hair_color; } }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_DEFAULT(derived_person_without_private_data_3, person_without_private_data_3, hair_color) class person_without_private_data_4 { public: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; bool operator==(const person_without_private_data_4& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_without_private_data_4() = default; person_without_private_data_4(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_NAMES(person_without_private_data_4, "json_age", age, "json_name", name, "json_metadata", metadata) }; class derived_person_without_private_data_4 : public person_without_private_data_4 { public: std::string hair_color{"blue"}; public: bool operator==(const derived_person_without_private_data_4& rhs) const { return person_without_private_data_4::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_without_private_data_4() = default; derived_person_without_private_data_4(std::string name_, int age_, json metadata_, std::string hair_color_) : person_without_private_data_4(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_NAMES(derived_person_without_private_data_4, person_without_private_data_4, "json_hair_color", hair_color) }; class person_without_private_data_5 { public: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; bool operator==(const person_without_private_data_5& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_without_private_data_5() = default; person_without_private_data_5(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_NAMES(person_without_private_data_5, "json_age", age, "json_name", name, "json_metadata", metadata) class derived_person_without_private_data_5 : public person_without_private_data_5 { public: std::string hair_color{"blue"}; public: bool operator==(const derived_person_without_private_data_5& rhs) const { return person_without_private_data_5::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_without_private_data_5() = default; derived_person_without_private_data_5(std::string name_, int age_, json metadata_, std::string hair_color_) : person_without_private_data_5(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_NAMES(derived_person_without_private_data_5, person_without_private_data_5, "json_hair_color", hair_color) class person_without_private_data_6 { public: std::string name{}; // NOLINT(readability-redundant-member-init) int age = 0; json metadata = nullptr; bool operator==(const person_without_private_data_6& rhs) const { return name == rhs.name && age == rhs.age && metadata == rhs.metadata; } person_without_private_data_6() = default; person_without_private_data_6(std::string name_, int age_, json metadata_) : name(std::move(name_)) , age(age_) , metadata(std::move(metadata_)) {} std::string getName() const { return name; } int getAge() const { return age; } json getMetadata() const { return metadata; } }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_DEFAULT_WITH_NAMES(person_without_private_data_6, "json_age", age, "json_name", name, "json_metadata", metadata) class derived_person_without_private_data_6 : public person_without_private_data_6 { public: std::string hair_color{"blue"}; public: bool operator==(const derived_person_without_private_data_6& rhs) const { return person_without_private_data_6::operator==(rhs) && hair_color == rhs.hair_color; } derived_person_without_private_data_6() = default; derived_person_without_private_data_6(std::string name_, int age_, json metadata_, std::string hair_color_) : person_without_private_data_6(std::move(name_), age_, std::move(metadata_)) , hair_color(std::move(hair_color_)) {} std::string getHairColor() const { return hair_color; } }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_DEFAULT_WITH_NAMES(derived_person_without_private_data_6, person_without_private_data_6, "json_hair_color", hair_color) class person_with_private_alphabet { public: bool operator==(const person_with_private_alphabet& other) const { return a == other.a && b == other.b && c == other.c && d == other.d && e == other.e && f == other.f && g == other.g && h == other.h && i == other.i && j == other.j && k == other.k && l == other.l && m == other.m && n == other.n && o == other.o && p == other.p && q == other.q && r == other.r && s == other.s && t == other.t && u == other.u && v == other.v && w == other.w && x == other.x && y == other.y && z == other.z; } private: int a = 0; int b = 0; int c = 0; int d = 0; int e = 0; int f = 0; int g = 0; int h = 0; int i = 0; int j = 0; int k = 0; int l = 0; int m = 0; int n = 0; int o = 0; int p = 0; int q = 0; int r = 0; int s = 0; int t = 0; int u = 0; int v = 0; int w = 0; int x = 0; int y = 0; int z = 0; NLOHMANN_DEFINE_TYPE_INTRUSIVE(person_with_private_alphabet, a, b, c, d, e, f, g, h, i, j, k, l, m, n, o, p, q, r, s, t, u, v, w, x, y, z) }; class person_with_public_alphabet { public: bool operator==(const person_with_public_alphabet& other) const { return a == other.a && b == other.b && c == other.c && d == other.d && e == other.e && f == other.f && g == other.g && h == other.h && i == other.i && j == other.j && k == other.k && l == other.l && m == other.m && n == other.n && o == other.o && p == other.p && q == other.q && r == other.r && s == other.s && t == other.t && u == other.u && v == other.v && w == other.w && x == other.x && y == other.y && z == other.z; } int a = 0; int b = 0; int c = 0; int d = 0; int e = 0; int f = 0; int g = 0; int h = 0; int i = 0; int j = 0; int k = 0; int l = 0; int m = 0; int n = 0; int o = 0; int p = 0; int q = 0; int r = 0; int s = 0; int t = 0; int u = 0; int v = 0; int w = 0; int x = 0; int y = 0; int z = 0; }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE(person_with_public_alphabet, a, b, c, d, e, f, g, h, i, j, k, l, m, n, o, p, q, r, s, t, u, v, w, x, y, z) class person_without_default_constructor_1 { public: std::string name; int age; bool operator==(const person_without_default_constructor_1& other) const { return name == other.name && age == other.age; } person_without_default_constructor_1(std::string name_, int age_) : name{std::move(name_)} , age{age_} {} NLOHMANN_DEFINE_TYPE_INTRUSIVE_ONLY_SERIALIZE(person_without_default_constructor_1, name, age) }; class person_without_default_constructor_2 { public: std::string name; int age; bool operator==(const person_without_default_constructor_2& other) const { return name == other.name && age == other.age; } person_without_default_constructor_2(std::string name_, int age_) : name{std::move(name_)} , age{age_} {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE(person_without_default_constructor_2, name, age) class person_without_default_constructor_3 { public: std::string name; int age; bool operator==(const person_without_default_constructor_3& other) const { return name == other.name && age == other.age; } person_without_default_constructor_3(std::string name_, int age_) : name{std::move(name_)} , age{age_} {} NLOHMANN_DEFINE_TYPE_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES(person_without_default_constructor_3, "json_name", name, "json_age", age) }; class person_without_default_constructor_4 { public: std::string name; int age; bool operator==(const person_without_default_constructor_4& other) const { return name == other.name && age == other.age; } person_without_default_constructor_4(std::string name_, int age_) : name{std::move(name_)} , age{age_} {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES(person_without_default_constructor_4, "json_name", name, "json_age", age) class derived_person_only_serialize_public_1 : public person_without_default_constructor_1 { public: std::string hair_color; derived_person_only_serialize_public_1(std::string name_, int age_, std::string hair_color_) : person_without_default_constructor_1(std::move(name_), age_) , hair_color(std::move(hair_color_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE(derived_person_only_serialize_public_1, person_without_default_constructor_1, hair_color) class derived_person_only_serialize_public_3 : public person_without_default_constructor_3 { public: std::string hair_color; derived_person_only_serialize_public_3(std::string name_, int age_, std::string hair_color_) : person_without_default_constructor_3(std::move(name_), age_) , hair_color(std::move(hair_color_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES(derived_person_only_serialize_public_3, person_without_default_constructor_3, "json_hair_color", hair_color) class derived_person_only_serialize_private_1 : person_without_default_constructor_1 { private: std::string hair_color; public: derived_person_only_serialize_private_1(std::string name_, int age_, std::string hair_color_) : person_without_default_constructor_1(std::move(name_), age_) , hair_color(std::move(hair_color_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_ONLY_SERIALIZE(derived_person_only_serialize_private_1, person_without_default_constructor_1, hair_color) }; class derived_person_only_serialize_private_3 : person_without_default_constructor_3 { private: std::string hair_color; public: derived_person_only_serialize_private_3(std::string name_, int age_, std::string hair_color_) : person_without_default_constructor_3(std::move(name_), age_) , hair_color(std::move(hair_color_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES(derived_person_only_serialize_private_3, person_without_default_constructor_3, "json_hair_color", hair_color) }; // Zero-member types for issue #4041: NLOHMANN_DEFINE_TYPE_* and // NLOHMANN_DEFINE_DERIVED_TYPE_* must compile and produce a valid (empty) // JSON object when no member arguments are given. class empty_intrusive { public: bool operator==(const empty_intrusive& /*rhs*/) const { return true; } NLOHMANN_DEFINE_TYPE_INTRUSIVE(empty_intrusive) }; class empty_intrusive_with_default { public: bool operator==(const empty_intrusive_with_default& /*rhs*/) const { return true; } NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_DEFAULT(empty_intrusive_with_default) }; class empty_intrusive_only_serialize { public: NLOHMANN_DEFINE_TYPE_INTRUSIVE_ONLY_SERIALIZE(empty_intrusive_only_serialize) }; class empty_non_intrusive { public: bool operator==(const empty_non_intrusive& /*rhs*/) const { return true; } }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE(empty_non_intrusive) class empty_non_intrusive_with_default { public: bool operator==(const empty_non_intrusive_with_default& /*rhs*/) const { return true; } }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_DEFAULT(empty_non_intrusive_with_default) class empty_non_intrusive_only_serialize {}; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE(empty_non_intrusive_only_serialize) class empty_derived_intrusive : public person_with_private_data { public: empty_derived_intrusive() = default; empty_derived_intrusive(std::string name_, int age_, json metadata_) : person_with_private_data(std::move(name_), age_, std::move(metadata_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE(empty_derived_intrusive, person_with_private_data) }; class empty_derived_intrusive_with_default : public person_with_private_data { public: empty_derived_intrusive_with_default() = default; empty_derived_intrusive_with_default(std::string name_, int age_, json metadata_) : person_with_private_data(std::move(name_), age_, std::move(metadata_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_DEFAULT(empty_derived_intrusive_with_default, person_with_private_data) }; class empty_derived_intrusive_only_serialize : public person_with_private_data { public: empty_derived_intrusive_only_serialize() = default; empty_derived_intrusive_only_serialize(std::string name_, int age_, json metadata_) : person_with_private_data(std::move(name_), age_, std::move(metadata_)) {} NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_ONLY_SERIALIZE(empty_derived_intrusive_only_serialize, person_with_private_data) }; class empty_derived_non_intrusive : public person_with_private_data { public: empty_derived_non_intrusive() = default; empty_derived_non_intrusive(std::string name_, int age_, json metadata_) : person_with_private_data(std::move(name_), age_, std::move(metadata_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE(empty_derived_non_intrusive, person_with_private_data) class empty_derived_non_intrusive_with_default : public person_with_private_data { public: empty_derived_non_intrusive_with_default() = default; empty_derived_non_intrusive_with_default(std::string name_, int age_, json metadata_) : person_with_private_data(std::move(name_), age_, std::move(metadata_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_DEFAULT(empty_derived_non_intrusive_with_default, person_with_private_data) class empty_derived_non_intrusive_only_serialize : public person_with_private_data { public: empty_derived_non_intrusive_only_serialize() = default; empty_derived_non_intrusive_only_serialize(std::string name_, int age_, json metadata_) : person_with_private_data(std::move(name_), age_, std::move(metadata_)) {} }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE(empty_derived_non_intrusive_only_serialize, person_with_private_data) // Types at the documented maximum member count (63) for issue #4041's // argument-count dispatch. The derived-type macros carry a two-token // Type,BaseType prefix, so they reach two slots further into // NLOHMANN_JSON_GET_MACRO than the non-derived ones and are the first to break // if the tag dispatch runs out of positional slots. class max_members { public: int m1{}, m2{}, m3{}, m4{}, m5{}, m6{}, m7{}, m8{}, m9{}, m10{}, m11{}, m12{}, m13{}, m14{}, m15{}, m16{}, m17{}, m18{}, m19{}, m20{}, m21{}, m22{}, m23{}, m24{}, m25{}, m26{}, m27{}, m28{}, m29{}, m30{}, m31{}, m32{}, m33{}, m34{}, m35{}, m36{}, m37{}, m38{}, m39{}, m40{}, m41{}, m42{}, m43{}, m44{}, m45{}, m46{}, m47{}, m48{}, m49{}, m50{}, m51{}, m52{}, m53{}, m54{}, m55{}, m56{}, m57{}, m58{}, m59{}, m60{}, m61{}, m62{}, m63{}; NLOHMANN_DEFINE_TYPE_INTRUSIVE(max_members, m1, m2, m3, m4, m5, m6, m7, m8, m9, m10, m11, m12, m13, m14, m15, m16, m17, m18, m19, m20, m21, m22, m23, m24, m25, m26, m27, m28, m29, m30, m31, m32, m33, m34, m35, m36, m37, m38, m39, m40, m41, m42, m43, m44, m45, m46, m47, m48, m49, m50, m51, m52, m53, m54, m55, m56, m57, m58, m59, m60, m61, m62, m63) }; class max_members_base { public: int base_value = 0; NLOHMANN_DEFINE_TYPE_INTRUSIVE(max_members_base, base_value) }; class max_members_derived : public max_members_base { public: int m1{}, m2{}, m3{}, m4{}, m5{}, m6{}, m7{}, m8{}, m9{}, m10{}, m11{}, m12{}, m13{}, m14{}, m15{}, m16{}, m17{}, m18{}, m19{}, m20{}, m21{}, m22{}, m23{}, m24{}, m25{}, m26{}, m27{}, m28{}, m29{}, m30{}, m31{}, m32{}, m33{}, m34{}, m35{}, m36{}, m37{}, m38{}, m39{}, m40{}, m41{}, m42{}, m43{}, m44{}, m45{}, m46{}, m47{}, m48{}, m49{}, m50{}, m51{}, m52{}, m53{}, m54{}, m55{}, m56{}, m57{}, m58{}, m59{}, m60{}, m61{}, m62{}, m63{}; NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE(max_members_derived, max_members_base, m1, m2, m3, m4, m5, m6, m7, m8, m9, m10, m11, m12, m13, m14, m15, m16, m17, m18, m19, m20, m21, m22, m23, m24, m25, m26, m27, m28, m29, m30, m31, m32, m33, m34, m35, m36, m37, m38, m39, m40, m41, m42, m43, m44, m45, m46, m47, m48, m49, m50, m51, m52, m53, m54, m55, m56, m57, m58, m59, m60, m61, m62, m63) }; // User macros named like the dispatch suffixes (EMPTY is a common empty-macro // idiom) must not leak into the NLOHMANN_DEFINE_TYPE_* dispatch. #define EMPTY #define MEMBERS clobbered_by_user_macro class dispatch_with_user_macros_empty { public: NLOHMANN_DEFINE_TYPE_INTRUSIVE(dispatch_with_user_macros_empty) }; class dispatch_with_user_macros_members { public: int value = 0; NLOHMANN_DEFINE_TYPE_INTRUSIVE(dispatch_with_user_macros_members, value) }; class dispatch_with_user_macros_derived_empty : public dispatch_with_user_macros_members { }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE(dispatch_with_user_macros_derived_empty, dispatch_with_user_macros_members) class dispatch_with_user_macros_derived_members : public dispatch_with_user_macros_members { public: int own = 0; }; // NOLINTNEXTLINE(misc-use-internal-linkage) NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE(dispatch_with_user_macros_derived_members, dispatch_with_user_macros_members, own) #undef EMPTY #undef MEMBERS } // namespace persons TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_TYPE_INTRUSIVE and NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE", Pair, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) std::pair, std::pair, std::pair, std::pair, std::pair, std::pair) { using Json = typename Pair::first_type; using T = typename Pair::second_type; constexpr bool is_ordered = std::is_same::value; SECTION("person") { // serialization T p1("Erik", 1, {{"haircuts", 2}}); CHECK(Json(p1).dump() == (is_ordered ? R"({"age":1,"name":"Erik","metadata":{"haircuts":2}})" : R"({"age":1,"metadata":{"haircuts":2},"name":"Erik"})")); // deserialization auto p2 = Json(p1).template get(); CHECK(p2 == p1); // roundtrip CHECK(T(Json(p1)) == p1); CHECK(Json(T(Json(p1))) == Json(p1)); // check exception in case of missing field Json j = Json(p1); j.erase("age"); CHECK_THROWS_WITH_AS(j.template get(), "[json.exception.out_of_range.403] key 'age' not found", typename Json::out_of_range); } } TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE and NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE", Pair, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) std::pair, std::pair, std::pair, std::pair, std::pair, std::pair) { using Json = typename Pair::first_type; using T = typename Pair::second_type; constexpr bool is_ordered = std::is_same::value; SECTION("person") { // serialization T p1("Erik", 1, {{"haircuts", 2}}, "red"); CHECK(Json(p1).dump() == (is_ordered ? R"({"age":1,"name":"Erik","metadata":{"haircuts":2},"hair_color":"red"})" : R"({"age":1,"hair_color":"red","metadata":{"haircuts":2},"name":"Erik"})")); // deserialization auto p2 = Json(p1).template get(); CHECK(p2 == p1); // roundtrip CHECK(T(Json(p1)) == p1); CHECK(Json(T(Json(p1))) == Json(p1)); // check exception in case of missing field Json j = Json(p1); j.erase("age"); CHECK_THROWS_WITH_AS(j.template get(), "[json.exception.out_of_range.403] key 'age' not found", typename Json::out_of_range); } } TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_NAMES and NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_NAMES", T, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) persons::person_with_private_data_3, persons::person_without_private_data_4, persons::person_without_private_data_5) { SECTION("person") { // serialization T p1("Erik", 1, {{"haircuts", 2}}); CHECK(json(p1).dump() == "{\"json_age\":1,\"json_metadata\":{\"haircuts\":2},\"json_name\":\"Erik\"}"); // deserialization auto p2 = json(p1).get(); CHECK(p2 == p1); // roundtrip CHECK(T(json(p1)) == p1); CHECK(json(T(json(p1))) == json(p1)); // check exception in case of missing field json j = json(p1); j.erase("json_age"); CHECK_THROWS_WITH_AS(j.get(), "[json.exception.out_of_range.403] key 'json_age' not found", json::out_of_range); } } TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_NAMES and NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_NAMES", T, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) persons::derived_person_with_private_data_3, persons::derived_person_without_private_data_4, persons::derived_person_without_private_data_5) { SECTION("person") { // serialization T p1("Erik", 1, {{"haircuts", 2}}, "red"); CHECK(json(p1).dump() == "{\"json_age\":1,\"json_hair_color\":\"red\",\"json_metadata\":{\"haircuts\":2},\"json_name\":\"Erik\"}"); // deserialization auto p2 = json(p1).get(); CHECK(p2 == p1); // roundtrip CHECK(T(json(p1)) == p1); CHECK(json(T(json(p1))) == json(p1)); // check exception in case of missing field json j = json(p1); j.erase("json_age"); CHECK_THROWS_WITH_AS(j.get(), "[json.exception.out_of_range.403] key 'json_age' not found", json::out_of_range); } } TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_DEFAULT and NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_DEFAULT", Pair, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) std::pair, std::pair, std::pair, std::pair) { using Json = typename Pair::first_type; using T = typename Pair::second_type; constexpr bool is_ordered = std::is_same::value; SECTION("person with default values") { // serialization of default constructed object const T p0{}; CHECK(Json(p0).dump() == (is_ordered ? R"({"age":0,"name":"","metadata":null})" : R"({"age":0,"metadata":null,"name":""})")); // serialization T p1("Erik", 1, {{"haircuts", 2}}); CHECK(Json(p1).dump() == (is_ordered ? R"({"age":1,"name":"Erik","metadata":{"haircuts":2}})" : R"({"age":1,"metadata":{"haircuts":2},"name":"Erik"})")); // deserialization auto p2 = Json(p1).template get(); CHECK(p2 == p1); // roundtrip CHECK(T(Json(p1)) == p1); CHECK(Json(T(Json(p1))) == Json(p1)); // check default value in case of missing field Json j = Json(p1); j.erase("name"); j.erase("age"); j.erase("metadata"); const T p3 = j.template get(); CHECK(p3.getName() == ""); CHECK(p3.getAge() == 0); CHECK(p3.getMetadata() == nullptr); // check default value in case of empty json const Json j4; const T p4 = j4.template get(); CHECK(p4.getName() == ""); CHECK(p4.getAge() == 0); CHECK(p4.getMetadata() == nullptr); } } TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_DEFAULT and NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_DEFAULT", Pair, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) std::pair, std::pair, std::pair, std::pair) { using Json = typename Pair::first_type; using T = typename Pair::second_type; constexpr bool is_ordered = std::is_same::value; SECTION("derived person with default values") { // serialization of default constructed object const T p0{}; CHECK(Json(p0).dump() == (is_ordered ? R"({"age":0,"name":"","metadata":null,"hair_color":"blue"})" : R"({"age":0,"hair_color":"blue","metadata":null,"name":""})")); // serialization T p1("Erik", 1, {{"haircuts", 2}}, "red"); CHECK(Json(p1).dump() == (is_ordered ? R"({"age":1,"name":"Erik","metadata":{"haircuts":2},"hair_color":"red"})" : R"({"age":1,"hair_color":"red","metadata":{"haircuts":2},"name":"Erik"})")); // deserialization auto p2 = Json(p1).template get(); CHECK(p2 == p1); // roundtrip CHECK(T(Json(p1)) == p1); CHECK(Json(T(Json(p1))) == Json(p1)); // check default value in case of missing field Json j = Json(p1); j.erase("name"); j.erase("age"); j.erase("metadata"); j.erase("hair_color"); const T p3 = j.template get(); CHECK(p3.getName() == ""); CHECK(p3.getAge() == 0); CHECK(p3.getMetadata() == nullptr); CHECK(p3.getHairColor() == "blue"); } } TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_DEFAULT_WITH_NAMES and NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_DEFAULT_WITH_NAMES", T, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) persons::person_with_private_data_4, persons::person_without_private_data_6) { SECTION("person with default values") { // serialization of default constructed object T p0; CHECK(json(p0).dump() == "{\"json_age\":0,\"json_metadata\":null,\"json_name\":\"\"}"); // serialization T p1("Erik", 1, {{"haircuts", 2}}); CHECK(json(p1).dump() == "{\"json_age\":1,\"json_metadata\":{\"haircuts\":2},\"json_name\":\"Erik\"}"); // deserialization auto p2 = json(p1).get(); CHECK(p2 == p1); // roundtrip CHECK(T(json(p1)) == p1); CHECK(json(T(json(p1))) == json(p1)); // check default value in case of missing field json j = json(p1); j.erase("json_name"); j.erase("json_age"); j.erase("json_metadata"); T p3 = j.get(); CHECK(p3.getName() == ""); CHECK(p3.getAge() == 0); CHECK(p3.getMetadata() == nullptr); } } TEST_CASE_TEMPLATE("Serialization/deserialization via NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_DEFAULT_WITH_NAMES and NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_DEFAULT_WITH_NAMES", T, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) persons::derived_person_with_private_data_4, persons::derived_person_without_private_data_6) { SECTION("derived person with default values") { // serialization of default constructed object T p0; CHECK(json(p0).dump() == "{\"json_age\":0,\"json_hair_color\":\"blue\",\"json_metadata\":null,\"json_name\":\"\"}"); // serialization T p1("Erik", 1, {{"haircuts", 2}}, "red"); CHECK(json(p1).dump() == "{\"json_age\":1,\"json_hair_color\":\"red\",\"json_metadata\":{\"haircuts\":2},\"json_name\":\"Erik\"}"); // deserialization auto p2 = json(p1).get(); CHECK(p2 == p1); // roundtrip CHECK(T(json(p1)) == p1); CHECK(json(T(json(p1))) == json(p1)); // check default value in case of missing field json j = json(p1); j.erase("json_name"); j.erase("json_age"); j.erase("json_metadata"); j.erase("json_hair_color"); T p3 = j.get(); CHECK(p3.getName() == ""); CHECK(p3.getAge() == 0); CHECK(p3.getMetadata() == nullptr); CHECK(p3.getHairColor() == "blue"); } } TEST_CASE_TEMPLATE("Serialization/deserialization of classes with 26 public/private member variables via NLOHMANN_DEFINE_TYPE_INTRUSIVE and NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE", Pair, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization, bugprone-throwing-static-initialization) std::pair, std::pair, std::pair, std::pair) { using Json = typename Pair::first_type; using T = typename Pair::second_type; SECTION("alphabet") { T obj1; // NOLINT(misc-const-correctness) Json const j = obj1; T obj2; j.get_to(obj2); CHECK(obj1 == obj2); } } TEST_CASE_TEMPLATE("Serialization of non-default-constructible classes via NLOHMANN_DEFINE_TYPE_INTRUSIVE_ONLY_SERIALIZE and NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE", Pair, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization, bugprone-throwing-static-initialization) std::pair, std::pair, std::pair, std::pair) { using Json = typename Pair::first_type; using T = typename Pair::second_type; constexpr bool is_ordered = std::is_same::value; SECTION("person") { // serialization of a single object const T person{"Erik", 1}; CHECK(Json(person).dump() == (is_ordered ? R"({"name":"Erik","age":1})" : R"({"age":1,"name":"Erik"})")); // serialization of a container with objects std::vector const two_persons { {"Erik", 1}, {"Kyle", 2} }; CHECK(Json(two_persons).dump() == (is_ordered ? R"([{"name":"Erik","age":1},{"name":"Kyle","age":2}])" : R"([{"age":1,"name":"Erik"},{"age":2,"name":"Kyle"}])")); } } TEST_CASE_TEMPLATE("Serialization of non-default-constructible classes via NLOHMANN_DEFINE_TYPE_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES and NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES", T, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) persons::person_without_default_constructor_3, persons::person_without_default_constructor_4) { SECTION("person") { { // serialization of a single object T person{"Erik", 1}; CHECK(json(person).dump() == "{\"json_age\":1,\"json_name\":\"Erik\"}"); // serialization of a container with objects std::vector const two_persons { {"Erik", 1}, {"Kyle", 2} }; CHECK(json(two_persons).dump() == "[{\"json_age\":1,\"json_name\":\"Erik\"},{\"json_age\":2,\"json_name\":\"Kyle\"}]"); } } } TEST_CASE_TEMPLATE("Serialization of non-default-constructible classes via NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_ONLY_SERIALIZE and NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE", Pair, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) std::pair, std::pair, std::pair, std::pair) { using Json = typename Pair::first_type; using T = typename Pair::second_type; constexpr bool is_ordered = std::is_same::value; SECTION("derived person only serialize") { // serialization of a single object const T person{"Erik", 1, "brown"}; CHECK(Json(person).dump() == (is_ordered ? R"({"name":"Erik","age":1,"hair_color":"brown"})" : R"({"age":1,"hair_color":"brown","name":"Erik"})")); // serialization of a container with objects std::vector const two_persons { {"Erik", 1, "brown"}, {"Kyle", 2, "black"} }; CHECK(Json(two_persons).dump() == (is_ordered ? R"([{"name":"Erik","age":1,"hair_color":"brown"},{"name":"Kyle","age":2,"hair_color":"black"}])" : R"([{"age":1,"hair_color":"brown","name":"Erik"},{"age":2,"hair_color":"black","name":"Kyle"}])")); } } TEST_CASE_TEMPLATE("Serialization of non-default-constructible classes via NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES and NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE_WITH_NAMES", T, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) persons::derived_person_only_serialize_public_3, persons::derived_person_only_serialize_private_3) { SECTION("derived person only serialize") { { // serialization of a single object T person{"Erik", 1, "brown"}; CHECK(json(person).dump() == "{\"json_age\":1,\"json_hair_color\":\"brown\",\"json_name\":\"Erik\"}"); // serialization of a container with objects std::vector const two_persons { {"Erik", 1, "brown"}, {"Kyle", 2, "black"} }; CHECK(json(two_persons).dump() == "[{\"json_age\":1,\"json_hair_color\":\"brown\",\"json_name\":\"Erik\"},{\"json_age\":2,\"json_hair_color\":\"black\",\"json_name\":\"Kyle\"}]"); } } } // Regression tests for issue #4041: NLOHMANN_DEFINE_TYPE_* and // NLOHMANN_DEFINE_DERIVED_TYPE_* macros must compile and produce valid // (empty, or base-only for the derived case) JSON objects when no member // arguments are given, on every supported C++ standard. TEST_CASE_TEMPLATE("Serialization/deserialization of zero-member types via NLOHMANN_DEFINE_TYPE_* (issue #4041)", Json, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) nlohmann::json, nlohmann::ordered_json) { constexpr bool is_ordered = std::is_same::value; const char* const derived_dump = is_ordered ? R"({"age":1,"name":"Erik","metadata":null})" : R"({"age":1,"metadata":null,"name":"Erik"})"; SECTION("NLOHMANN_DEFINE_TYPE_INTRUSIVE with zero members") { persons::empty_intrusive obj{}; Json j = obj; CHECK(j.dump() == "{}"); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_TYPE_INTRUSIVE_WITH_DEFAULT with zero members") { persons::empty_intrusive_with_default obj{}; Json j = obj; CHECK(j.dump() == "{}"); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_TYPE_INTRUSIVE_ONLY_SERIALIZE with zero members") { const persons::empty_intrusive_only_serialize obj{}; Json j = obj; CHECK(j.dump() == "{}"); } SECTION("NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE with zero members") { persons::empty_non_intrusive obj{}; Json j = obj; CHECK(j.dump() == "{}"); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_WITH_DEFAULT with zero members") { persons::empty_non_intrusive_with_default obj{}; Json j = obj; CHECK(j.dump() == "{}"); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE with zero members") { const persons::empty_non_intrusive_only_serialize obj{}; Json j = obj; CHECK(j.dump() == "{}"); } SECTION("NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE with zero own members") { persons::empty_derived_intrusive obj{"Erik", 1, nullptr}; Json j = obj; CHECK(j.dump() == derived_dump); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_WITH_DEFAULT with zero own members") { persons::empty_derived_intrusive_with_default obj{"Erik", 1, nullptr}; Json j = obj; CHECK(j.dump() == derived_dump); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE_ONLY_SERIALIZE with zero own members") { const persons::empty_derived_intrusive_only_serialize obj{"Erik", 1, nullptr}; Json j = obj; CHECK(j.dump() == derived_dump); } SECTION("NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE with zero own members") { persons::empty_derived_non_intrusive obj{"Erik", 1, nullptr}; Json j = obj; CHECK(j.dump() == derived_dump); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_WITH_DEFAULT with zero own members") { persons::empty_derived_non_intrusive_with_default obj{"Erik", 1, nullptr}; Json j = obj; CHECK(j.dump() == derived_dump); CHECK(j.template get() == obj); } SECTION("NLOHMANN_DEFINE_DERIVED_TYPE_NON_INTRUSIVE_ONLY_SERIALIZE with zero own members") { const persons::empty_derived_non_intrusive_only_serialize obj{"Erik", 1, nullptr}; Json j = obj; CHECK(j.dump() == derived_dump); } } // Regression test for the argument-count dispatch added for issue #4041: the // documented maximum of 63 members must keep working, including for the // derived-type macros whose Type,BaseType prefix consumes two dispatch slots. TEST_CASE_TEMPLATE("Serialization/deserialization of maximum-member-count types via NLOHMANN_DEFINE_TYPE_*", Json, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) nlohmann::json, nlohmann::ordered_json) { SECTION("NLOHMANN_DEFINE_TYPE_INTRUSIVE with 63 members") { persons::max_members obj{}; obj.m1 = 1; obj.m63 = 63; Json j = obj; CHECK(j.size() == 63); const auto obj2 = j.template get(); CHECK(obj2.m1 == 1); CHECK(obj2.m63 == 63); } SECTION("NLOHMANN_DEFINE_DERIVED_TYPE_INTRUSIVE with 63 own members") { persons::max_members_derived obj{}; obj.base_value = 7; obj.m1 = 1; obj.m63 = 63; Json j = obj; CHECK(j.size() == 64); const auto obj2 = j.template get(); CHECK(obj2.base_value == 7); CHECK(obj2.m1 == 1); CHECK(obj2.m63 == 63); } } TEST_CASE_TEMPLATE("NLOHMANN_DEFINE_TYPE_* dispatch is unaffected by user macros named EMPTY or MEMBERS", Json, // NOLINT(readability-math-missing-parentheses, bugprone-throwing-static-initialization) nlohmann::json, nlohmann::ordered_json) { SECTION("zero members") { const persons::dispatch_with_user_macros_empty obj{}; const Json j = obj; CHECK(j == Json::object()); CHECK_NOTHROW(j.template get()); } SECTION("one member") { persons::dispatch_with_user_macros_members obj{}; obj.value = 42; const Json j = obj; CHECK(j == Json({{"value", 42}})); CHECK(j.template get().value == 42); } SECTION("derived with zero own members") { persons::dispatch_with_user_macros_derived_empty obj{}; obj.value = 42; const Json j = obj; CHECK(j == Json({{"value", 42}})); CHECK(j.template get().value == 42); } SECTION("derived with own members") { persons::dispatch_with_user_macros_derived_members obj{}; obj.value = 42; obj.own = 7; const Json j = obj; CHECK(j == Json({{"value", 42}, {"own", 7}})); const auto obj2 = j.template get(); CHECK(obj2.value == 42); CHECK(obj2.own == 7); } }