Files
json/tests/src/unit-udt_macro.cpp
Niels Lohmann 632a5812a8 Support zero-member types in NLOHMANN_DEFINE_TYPE_* macros (#4041) (#5272)
* Support zero-member types in NLOHMANN_DEFINE_TYPE_* macros (#4041)

NLOHMANN_DEFINE_TYPE_INTRUSIVE(Type) and its 11 sibling macros produced
broken code for types with no members to serialize. Invoking a variadic
macro so __VA_ARGS__ is empty is only standard-conforming since C++20,
so a plain __VA_OPT__ fix (as tried in #5142) breaks every pre-C++20
build under -pedantic. Instead, make all 12 macros purely variadic and
dispatch on argument count using a sentinel-padded extension of the
existing NLOHMANN_JSON_GET_MACRO idiom, giving full C++11-C++26 support
with no feature-test gate.

Verified against real GCC 16 and Clang at -std=c++11/14/17/20 with
-pedantic -Werror -Wvariadic-macros: zero regressions in the existing
unit-udt_macro.cpp suite plus 12 new zero-member test cases.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Fix CI failures in zero-member NLOHMANN_DEFINE_TYPE_* macros

Three issues surfaced on PR #5272's real CI that weren't caught by
local testing against a narrower flag set:

- GCC -Werror=noexcept: the four truly-empty from_json bodies (plain
  INTRUSIVE/NON_INTRUSIVE, with and without _WITH_DEFAULT) provably
  never throw but weren't declared noexcept; mark them noexcept
  explicitly. to_json and the derived-type from_json overloads are
  left alone since they genuinely can throw (object assignment /
  delegating to the base class's from_json).
- clang-tidy bugprone-macro-parentheses: false positive on the same
  8 zero-member bodies (Type/BaseType used purely as declarator
  types); suppressed with NOLINTNEXTLINE comments in the same style
  already used elsewhere in this file (see NLOHMANN_JSON_SERIALIZE_ENUM).
- MSVC's traditional preprocessor doesn't fully expand
  NLOHMANN_JSON_CAT(prefix, NLOHMANN_JSON_TYPE_TAG(...))(...) in one
  pass, which broke a pre-existing one-member usage in
  unit-regression2.cpp with syntax errors. Wrap all 12 public
  dispatcher macros in an extra outer NLOHMANN_JSON_EXPAND(...),
  matching the pattern NLOHMANN_JSON_PASTE already uses for the same
  MSVC quirk.

Re-verified against real GCC 16 and Clang at -std=c++11/14/17/20 with
-pedantic -Werror -Wvariadic-macros -Wnoexcept, including the exact
files that failed in CI (unit-udt_macro.cpp, unit-regression2.cpp),
against both the modular headers and the re-amalgamated single header.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Fix clang-tidy misc-const-correctness in unit-udt_macro.cpp

The four zero-member ONLY_SERIALIZE test objects are only ever read
(via to_json), never mutated, so mark them const per clang-tidy.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Fix derived-type macro dispatch capping members at 62 instead of 63

NLOHMANN_JSON_GET_MACRO resolves 64 positional arguments, with NAME at
position 65. NLOHMANN_JSON_TYPE_TAG dispatches on Type plus the member
list, so it resolves correctly up to the 63 members NLOHMANN_JSON_PASTE
supports. NLOHMANN_JSON_DERIVED_TYPE_TAG dispatched on the two-token
Type,BaseType prefix plus the member list, running out one slot early:
at 63 members, position 65 landed on the last member name instead of a
sentinel and NLOHMANN_JSON_CAT built an undefined identifier such as
NLOHMANN_JSON_DEFINE_DERIVED_TYPE_INTRUSIVE_m63, with the compiler
reporting "unknown type name 'm1'" once per member and nothing pointing
at an argument-count limit.

That silently reduced all six NLOHMANN_DEFINE_DERIVED_TYPE_* macros from
63 members to 62, contradicting the "up to 63 members" contract in
docs/mkdocs/docs/api/macros/nlohmann_define_derived_type.md.

Drop the leading Type and defer to NLOHMANN_JSON_TYPE_TAG so the tag is
computed from BaseType plus the member list, which fits the available
slots. The zero-own-member derived bodies are therefore selected by tag
1 rather than 2, and the sentinel table for the derived tag is no longer
needed.

Add a regression test at the documented maximum for both the plain and
the derived macros; it fails to compile against the previous dispatch.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Name the zero-member macro bodies by intent, not argument count

The dispatch tag was the literal token 1 or N, pasted onto a macro prefix
to select the zero-member or member-carrying body. For the derived-type
macros that reads wrong: their tag is computed after dropping the leading
Type, so the zero-member body was named _1 while taking two parameters
(Type, BaseType).

Emit EMPTY and MEMBERS instead. The mechanism is unchanged -- the tag is
still a token pasted onto the prefix by NLOHMANN_JSON_CAT -- but the body
names now say what they are rather than encoding an argument count that
only lines up for half of the macros.

Collapse the four duplicated zero-member bodies while here: with no
members there is nothing to default, so each _WITH_DEFAULT_EMPTY body was
a byte-for-byte copy of its plain counterpart. They are now one-line
aliases, leaving a single definition of what an empty object serializes
to per intrusive/non-intrusive and base/derived combination.

No functional change: for both zero-member and member-carrying types the
preprocessed to_json/from_json output is token-for-token identical, and
the arity limits are unchanged (63 members, base and derived).

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Document zero-member support in the macro API reference

docs/mkdocs/docs/features/arbitrary_types.md already gained a note, but
the three api/macros pages are where the parameter contract is actually
specified and they still described member as a non-empty list.

State that the list may be empty on each page, and add a note showing
what the zero-member case generates: an empty JSON object for the plain
macros, and base-type-only serialization for the derived ones. Both notes
record that the WITH_NAMES variants do not support this.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Keep user macros named EMPTY or MEMBERS out of the member-count dispatch

The dispatch produced the bare token EMPTY or MEMBERS and pasted it onto
the macro prefix afterwards. In between, the token was rescanned, so a
user macro with either name replaced it: with `#define MEMBERS x` in
scope, even NLOHMANN_DEFINE_TYPE_INTRUSIVE(A, member) -- which compiled
before -- expanded to garbage, and `#define EMPTY` broke the zero-member
form.

Paste the suffix onto the prefix directly in the GET_MACRO slot table
instead. Operands of ## are not macro-expanded, so the selected body name
is formed before any user macro can interfere. NLOHMANN_JSON_TYPE_TAG and
NLOHMANN_JSON_DERIVED_TYPE_TAG become NLOHMANN_JSON_TYPE_BODY and
NLOHMANN_JSON_DERIVED_TYPE_BODY, taking the prefix as their first
argument; NLOHMANN_JSON_CAT is no longer needed. The body macro names are
unchanged, and so is the generated code.

Add a regression test that defines EMPTY and MEMBERS around plain and
derived types, with and without members.

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

* Test for EMPTY and MEMBERS so -Wunused-macros accepts them

Signed-off-by: Niels Lohmann <mail@nlohmann.me>

---------

Signed-off-by: Niels Lohmann <mail@nlohmann.me>
2026-09-25 20:44:30 +02:00

1561 lines
56 KiB
C++

// __ _____ _____ _____
// __| | __| | | | JSON for Modern C++ (supporting code)
// | | |__ | | | | | | version 3.12.0
// |_____|_____|_____|_|___| https://github.com/nlohmann/json
//
// SPDX-FileCopyrightText: 2013-2026 Niels Lohmann <https://nlohmann.me>
// SPDX-License-Identifier: MIT
#include <string>
#include <vector>
#include "doctest_compatibility.h"
#include <nlohmann/json.hpp>
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)
// testing for the macros also keeps -Wunused-macros from rejecting them
#if !defined(EMPTY) || !defined(MEMBERS)
#error "EMPTY and MEMBERS must stay defined for the tests above"
#endif
#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<nlohmann::json, persons::person_with_private_data>,
std::pair<nlohmann::json, persons::person_without_private_data_1>,
std::pair<nlohmann::json, persons::person_without_private_data_2>,
std::pair<nlohmann::ordered_json, persons::person_with_private_data>,
std::pair<nlohmann::ordered_json, persons::person_without_private_data_1>,
std::pair<nlohmann::ordered_json, persons::person_without_private_data_2>)
{
using Json = typename Pair::first_type;
using T = typename Pair::second_type;
constexpr bool is_ordered = std::is_same<Json, nlohmann::ordered_json>::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<T>();
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<T>(), "[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<nlohmann::json, persons::derived_person_with_private_data>,
std::pair<nlohmann::json, persons::derived_person_without_private_data_1>,
std::pair<nlohmann::json, persons::derived_person_without_private_data_2>,
std::pair<nlohmann::ordered_json, persons::derived_person_with_private_data>,
std::pair<nlohmann::ordered_json, persons::derived_person_without_private_data_1>,
std::pair<nlohmann::ordered_json, persons::derived_person_without_private_data_2>)
{
using Json = typename Pair::first_type;
using T = typename Pair::second_type;
constexpr bool is_ordered = std::is_same<Json, nlohmann::ordered_json>::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<T>();
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<T>(), "[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<T>();
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<T>(), "[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<T>();
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<T>(), "[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<nlohmann::json, persons::person_with_private_data_2>,
std::pair<nlohmann::json, persons::person_without_private_data_3>,
std::pair<nlohmann::ordered_json, persons::person_with_private_data_2>,
std::pair<nlohmann::ordered_json, persons::person_without_private_data_3>)
{
using Json = typename Pair::first_type;
using T = typename Pair::second_type;
constexpr bool is_ordered = std::is_same<Json, nlohmann::ordered_json>::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<T>();
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<T>();
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<T>();
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<nlohmann::json, persons::derived_person_with_private_data_2>,
std::pair<nlohmann::json, persons::derived_person_without_private_data_3>,
std::pair<nlohmann::ordered_json, persons::derived_person_with_private_data_2>,
std::pair<nlohmann::ordered_json, persons::derived_person_without_private_data_3>)
{
using Json = typename Pair::first_type;
using T = typename Pair::second_type;
constexpr bool is_ordered = std::is_same<Json, nlohmann::ordered_json>::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<T>();
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<T>();
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<T>();
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<T>();
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<T>();
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<T>();
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<nlohmann::json, persons::person_with_private_alphabet>,
std::pair<nlohmann::json, persons::person_with_public_alphabet>,
std::pair<nlohmann::ordered_json, persons::person_with_private_alphabet>,
std::pair<nlohmann::ordered_json, persons::person_with_public_alphabet>)
{
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<nlohmann::json, persons::person_without_default_constructor_1>,
std::pair<nlohmann::json, persons::person_without_default_constructor_2>,
std::pair<nlohmann::ordered_json, persons::person_without_default_constructor_1>,
std::pair<nlohmann::ordered_json, persons::person_without_default_constructor_2>)
{
using Json = typename Pair::first_type;
using T = typename Pair::second_type;
constexpr bool is_ordered = std::is_same<Json, nlohmann::ordered_json>::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<T> 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<T> 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<nlohmann::json, persons::derived_person_only_serialize_public_1>,
std::pair<nlohmann::json, persons::derived_person_only_serialize_private_1>,
std::pair<nlohmann::ordered_json, persons::derived_person_only_serialize_public_1>,
std::pair<nlohmann::ordered_json, persons::derived_person_only_serialize_private_1>)
{
using Json = typename Pair::first_type;
using T = typename Pair::second_type;
constexpr bool is_ordered = std::is_same<Json, nlohmann::ordered_json>::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<T> 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<T> 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<Json, nlohmann::ordered_json>::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<persons::empty_intrusive>() == 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<persons::empty_intrusive_with_default>() == 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<persons::empty_non_intrusive>() == 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<persons::empty_non_intrusive_with_default>() == 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<persons::empty_derived_intrusive>() == 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<persons::empty_derived_intrusive_with_default>() == 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<persons::empty_derived_non_intrusive>() == 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<persons::empty_derived_non_intrusive_with_default>() == 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<persons::max_members>();
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<persons::max_members_derived>();
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<persons::dispatch_with_user_macros_empty>());
}
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<persons::dispatch_with_user_macros_members>().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<persons::dispatch_with_user_macros_derived_empty>().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<persons::dispatch_with_user_macros_derived_members>();
CHECK(obj2.value == 42);
CHECK(obj2.own == 7);
}
}