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// Copyright (c) 2018-2025 Jean-Louis Leroy
// Distributed under the Boost Software License, Version 1.0.
// See accompanying file LICENSE_1_0.txt
// or copy at http://www.boost.org/LICENSE_1_0.txt)
#include <boost/openmethod.hpp>
#include <boost/openmethod/interop/std_shared_ptr.hpp>
#include <boost/openmethod/interop/std_unique_ptr.hpp>
#include <boost/openmethod/initialize.hpp>
#include <iostream>
#include <memory>
#include <string>
#define BOOST_TEST_MODULE openmethod
#include <boost/test/unit_test.hpp>
#include <boost/test/tools/output_test_stream.hpp>
#include "test_util.hpp"
using boost::mp11::mp_list;
using std::cout;
using namespace boost::openmethod;
using namespace boost::openmethod::detail;
namespace using_polymorphic_classes {
struct Animal {
virtual ~Animal() {
}
};
struct Dog : Animal {};
BOOST_OPENMETHOD_CLASSES(Animal, Dog);
namespace BOOST_OPENMETHOD_GENSYM {
BOOST_OPENMETHOD(poke, (const virtual_ptr<Animal>&, std::ostream&), void);
BOOST_OPENMETHOD_OVERRIDE(
poke, (const virtual_ptr<Dog>&, std::ostream& os), void) {
os << "bark";
}
static_assert(sizeof(virtual_ptr<Animal>) == 2 * sizeof(void*));
BOOST_AUTO_TEST_CASE(test_virtual_ptr_by_ref) {
boost::openmethod::initialize();
{
boost::test_tools::output_test_stream os;
Dog dog;
virtual_ptr<Animal> vptr(dog);
poke(vptr, os);
}
{
// Using deduction guide.
boost::test_tools::output_test_stream os;
Animal&& animal = Dog();
auto vptr = virtual_ptr(animal);
poke(vptr, os);
BOOST_CHECK(os.is_equal("bark"));
}
{
// Using conversion ctor.
boost::test_tools::output_test_stream os;
Animal&& animal = Dog();
poke(animal, os);
BOOST_CHECK(os.is_equal("bark"));
}
}
} // namespace BOOST_OPENMETHOD_GENSYM
namespace BOOST_OPENMETHOD_GENSYM {
BOOST_OPENMETHOD(poke, (virtual_ptr<Animal>, std::ostream&), void);
BOOST_OPENMETHOD_OVERRIDE(poke, (virtual_ptr<Dog>, std::ostream& os), void) {
os << "bark";
}
BOOST_AUTO_TEST_CASE(test_virtual_shared_by_value) {
boost::openmethod::initialize();
{
boost::test_tools::output_test_stream os;
shared_virtual_ptr<Animal> animal = make_shared_virtual<Dog>();
poke(animal, os);
BOOST_CHECK(os.is_equal("bark"));
}
}
} // namespace BOOST_OPENMETHOD_GENSYM
namespace BOOST_OPENMETHOD_GENSYM {
BOOST_OPENMETHOD(
poke, (const shared_virtual_ptr<Animal>&, std::ostream&), void);
BOOST_OPENMETHOD_OVERRIDE(
poke, (const shared_virtual_ptr<Dog>&, std::ostream& os), void) {
os << "bark";
}
BOOST_AUTO_TEST_CASE(test_virtual_shared_by_const_reference) {
boost::openmethod::initialize();
{
boost::test_tools::output_test_stream os;
shared_virtual_ptr<Animal> animal = make_shared_virtual<Dog>();
poke(animal, os);
BOOST_CHECK(os.is_equal("bark"));
}
}
} // namespace BOOST_OPENMETHOD_GENSYM
namespace BOOST_OPENMETHOD_GENSYM {
BOOST_OPENMETHOD(poke, (unique_virtual_ptr<Animal>, std::ostream&), void);
BOOST_OPENMETHOD_OVERRIDE(
poke, (unique_virtual_ptr<Dog>, std::ostream& os), void) {
os << "bark";
}
BOOST_AUTO_TEST_CASE(test_virtual_unique) {
boost::openmethod::initialize();
{
boost::test_tools::output_test_stream os;
poke(make_unique_virtual<Dog>(), os);
BOOST_CHECK(os.is_equal("bark"));
}
}
} // namespace BOOST_OPENMETHOD_GENSYM
} // namespace using_polymorphic_classes
namespace using_non_polymorphic_classes {
struct Animal {};
struct Dog : Animal {};
BOOST_OPENMETHOD_CLASSES(Animal, Dog);
BOOST_OPENMETHOD(poke, (virtual_ptr<Animal>, std::ostream&), void);
BOOST_OPENMETHOD_OVERRIDE(poke, (virtual_ptr<Dog>, std::ostream& os), void) {
os << "bark";
}
BOOST_AUTO_TEST_CASE(test_virtual_ptr_non_polymorphic) {
boost::openmethod::initialize();
{
boost::test_tools::output_test_stream os;
Dog dog;
auto vptr = virtual_ptr<Dog>::final(dog);
poke(vptr, os);
BOOST_CHECK(os.is_equal("bark"));
}
}
} // namespace using_non_polymorphic_classes
struct Player {
virtual ~Player() {
}
};
struct Warrior : Player {};
struct Wizard : Player {};
struct Bear : Player {};
struct Object {
virtual ~Object() {
}
};
struct Axe : Object {};
template<class VirtualBearPtr>
auto poke_bear(VirtualBearPtr) {
return std::string("growl");
}
template<class VirtualWarriorPtr, class VirtualAxePtr, class VirtualBearPtr>
auto fight_bear(VirtualWarriorPtr, VirtualAxePtr, VirtualBearPtr) {
return "kill bear";
}
template<int N>
struct indirect_test_registry
: test_registry_<N>::template with<policies::indirect_vptr> {};
template<int N>
using policy_types =
boost::mp11::mp_list<test_registry_<N>, indirect_test_registry<N>>;
struct BOOST_OPENMETHOD_ID(poke);
struct BOOST_OPENMETHOD_ID(fight);
namespace BOOST_OPENMETHOD_GENSYM {
BOOST_AUTO_TEST_CASE_TEMPLATE(
test_virtual_ptr, Registry, policy_types<__COUNTER__>) {
BOOST_OPENMETHOD_REGISTER(
use_classes<Player, Warrior, Object, Axe, Bear, Registry>);
using poke = method<
BOOST_OPENMETHOD_ID(poke),
auto(virtual_ptr<Player, Registry>)->std::string, Registry>;
BOOST_OPENMETHOD_REGISTER(typename poke::template override<
poke_bear<virtual_ptr<Player, Registry>>>);
initialize<Registry>();
using vptr_player = virtual_ptr<Player, Registry>;
static_assert(detail::is_virtual_ptr<vptr_player>);
using vptr_bear = virtual_ptr<Bear, Registry>;
Player player;
auto virtual_player = vptr_player::final(player);
BOOST_TEST(&*virtual_player == &player);
BOOST_TEST(
(virtual_player.vptr() == Registry::template static_vptr<Player>));
Bear bear;
BOOST_TEST((&*vptr_bear::final(bear)) == &bear);
BOOST_TEST((
vptr_bear::final(bear).vptr() == Registry::template static_vptr<Bear>));
BOOST_TEST(
(vptr_player(bear).vptr() == Registry::template static_vptr<Bear>));
vptr_bear virtual_bear_ptr(bear);
struct upcast {
static void fn(vptr_player) {
}
};
upcast::fn(virtual_bear_ptr);
}
} // namespace BOOST_OPENMETHOD_GENSYM
namespace test_virtual_ptr_dispatch {
BOOST_AUTO_TEST_CASE_TEMPLATE(
test_virtual_ptr_dispatch, Registry, policy_types<__COUNTER__>) {
BOOST_OPENMETHOD_REGISTER(
use_classes<Player, Warrior, Object, Axe, Bear, Registry>);
using poke = method<
BOOST_OPENMETHOD_ID(poke),
auto(virtual_ptr<Player, Registry>)->std::string, Registry>;
BOOST_OPENMETHOD_REGISTER(typename poke::template override<
poke_bear<virtual_ptr<Player, Registry>>>);
using fight = method<
BOOST_OPENMETHOD_ID(fight),
auto(
virtual_ptr<Player, Registry>, virtual_ptr<Object, Registry>,
virtual_ptr<Player, Registry>)
->std::string,
Registry>;
BOOST_OPENMETHOD_REGISTER(
typename fight::template override<fight_bear<
virtual_ptr<Player, Registry>, virtual_ptr<Object, Registry>,
virtual_ptr<Player, Registry>>>);
initialize<Registry>();
Bear bear;
BOOST_TEST(poke::fn(virtual_ptr<Player, Registry>(bear)) == "growl");
Warrior warrior;
Axe axe;
BOOST_TEST(
fight::fn(
virtual_ptr<Player, Registry>(warrior),
virtual_ptr<Object, Registry>(axe),
virtual_ptr<Player, Registry>(bear)) == "kill bear");
}
} // namespace test_virtual_ptr_dispatch
namespace test_shared_virtual_ptr_dispatch {
BOOST_AUTO_TEST_CASE_TEMPLATE(
test_virtual_ptr_dispatch, Registry, policy_types<__COUNTER__>) {
BOOST_OPENMETHOD_REGISTER(
use_classes<Player, Warrior, Object, Axe, Bear, Registry>);
using poke = method<
BOOST_OPENMETHOD_ID(poke),
auto(shared_virtual_ptr<Player, Registry>)->std::string, Registry>;
BOOST_OPENMETHOD_REGISTER(typename poke::template override<
poke_bear<shared_virtual_ptr<Player, Registry>>>);
using fight = method<
BOOST_OPENMETHOD_ID(fight),
auto(
shared_virtual_ptr<Player, Registry>,
shared_virtual_ptr<Object, Registry>,
shared_virtual_ptr<Player, Registry>)
->std::string,
Registry>;
BOOST_OPENMETHOD_REGISTER(typename fight::template override<fight_bear<
shared_virtual_ptr<Player, Registry>,
shared_virtual_ptr<Object, Registry>,
shared_virtual_ptr<Player, Registry>>>);
initialize<Registry>();
auto bear = make_shared_virtual<Bear, Registry>();
auto warrior = make_shared_virtual<Warrior, Registry>();
auto axe = make_shared_virtual<Axe, Registry>();
BOOST_TEST(poke::fn(bear) == "growl");
BOOST_TEST(fight::fn(warrior, axe, bear) == "kill bear");
}
} // namespace test_shared_virtual_ptr_dispatch
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