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https://github.com/ThePhD/sol2.git
synced 2024-03-22 13:10:44 +08:00
pointers just wanna be included in the fun, man
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46a2b01f33
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@ -530,14 +530,18 @@ namespace sol {
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}
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struct properties_enrollment_allowed {
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int& times_through;
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std::bitset<64>& properties;
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automagic_enrollments& enrollments;
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properties_enrollment_allowed(std::bitset<64>& props, automagic_enrollments& enroll) : properties(props), enrollments(enroll) {
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properties_enrollment_allowed(int& times, std::bitset<64>& props, automagic_enrollments& enroll) : times_through(times), properties(props), enrollments(enroll) {
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}
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bool operator()(meta_function mf) const {
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bool p = properties[static_cast<int>(mf)];
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if (times_through > 0) {
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return p;
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}
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switch (mf) {
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case meta_function::length:
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return enrollments.length_operator && !p;
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@ -965,7 +965,7 @@ namespace sol { namespace u_detail {
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// add intrinsics
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// this one is the actual meta-handling table,
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// the next one will be the one for
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int for_each_backing_metatable_calls = 0;
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auto for_each_backing_metatable = [&](lua_State* L, submetatable_type smt, reference& fast_index_table) {
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// Pointer types, AKA "references" from C++
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const char* metakey = nullptr;
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@ -1039,8 +1039,8 @@ namespace sol { namespace u_detail {
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stack::set_field<false, true>(L, detail::base_class_check_key(), reinterpret_cast<void*>(&detail::inheritance<T>::type_check), t.stack_index());
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stack::set_field<false, true>(L, detail::base_class_cast_key(), reinterpret_cast<void*>(&detail::inheritance<T>::type_cast), t.stack_index());
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auto prop_fx = detail::properties_enrollment_allowed(storage.properties, enrollments);
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auto insert_fx = [&L, &t, &storage](meta_function mf, lua_CFunction reg) {
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auto prop_fx = detail::properties_enrollment_allowed(for_each_backing_metatable_calls, storage.properties, enrollments);
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auto insert_fx = [&L, &t, &storage, &smt](meta_function mf, lua_CFunction reg) {
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stack::set_field<false, true>(L, mf, reg, t.stack_index());
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storage.properties[static_cast<int>(mf)] = true;
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};
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@ -1082,6 +1082,7 @@ namespace sol { namespace u_detail {
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storage.is_using_new_index = true;
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}
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++for_each_backing_metatable_calls;
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fast_index_table = reference(L, t);
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t.pop();
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};
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@ -20,8 +20,8 @@
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// CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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// This file was generated with a script.
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// Generated 2019-05-27 05:35:30.258702 UTC
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// This header was generated with sol v3.0.2 (revision e814868)
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// Generated 2019-05-29 20:53:05.788092 UTC
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// This header was generated with sol v3.0.2 (revision 46a2b01)
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// https://github.com/ThePhD/sol2
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#ifndef SOL_SINGLE_INCLUDE_FORWARD_HPP
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@ -20,8 +20,8 @@
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// CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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// This file was generated with a script.
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// Generated 2019-05-27 05:35:29.780976 UTC
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// This header was generated with sol v3.0.2 (revision e814868)
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// Generated 2019-05-29 20:53:04.799735 UTC
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// This header was generated with sol v3.0.2 (revision 46a2b01)
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// https://github.com/ThePhD/sol2
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#ifndef SOL_SINGLE_INCLUDE_HPP
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@ -9682,14 +9682,18 @@ namespace sol {
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}
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struct properties_enrollment_allowed {
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int& times_through;
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std::bitset<64>& properties;
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automagic_enrollments& enrollments;
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properties_enrollment_allowed(std::bitset<64>& props, automagic_enrollments& enroll) : properties(props), enrollments(enroll) {
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properties_enrollment_allowed(int& times, std::bitset<64>& props, automagic_enrollments& enroll) : times_through(times), properties(props), enrollments(enroll) {
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}
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bool operator()(meta_function mf) const {
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bool p = properties[static_cast<int>(mf)];
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if (times_through > 0) {
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return p;
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}
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switch (mf) {
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case meta_function::length:
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return enrollments.length_operator && !p;
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@ -11686,8 +11690,7 @@ namespace sol { namespace stack {
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static decltype(auto) get(lua_State* L, int index, record& tracking) {
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using Tu = meta::unqualified_t<X>;
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static constexpr bool is_userdata_of_some_kind
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= !std::is_reference_v<
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X> && is_container_v<Tu> && std::is_default_constructible_v<Tu> && !is_lua_primitive_v<Tu> && !is_transparent_argument_v<Tu>;
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= !std::is_reference_v<X> && is_container_v<Tu> && std::is_default_constructible_v<Tu> && !is_lua_primitive_v<Tu> && !is_transparent_argument_v<Tu>;
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if constexpr (is_userdata_of_some_kind) {
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if (type_of(L, index) == type::userdata) {
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return static_cast<Tu>(stack_detail::unchecked_unqualified_get<Tu>(L, index, tracking));
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@ -21676,7 +21679,7 @@ namespace sol { namespace u_detail {
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// add intrinsics
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// this one is the actual meta-handling table,
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// the next one will be the one for
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int for_each_backing_metatable_calls = 0;
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auto for_each_backing_metatable = [&](lua_State* L, submetatable_type smt, reference& fast_index_table) {
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// Pointer types, AKA "references" from C++
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const char* metakey = nullptr;
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@ -21750,8 +21753,8 @@ namespace sol { namespace u_detail {
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stack::set_field<false, true>(L, detail::base_class_check_key(), reinterpret_cast<void*>(&detail::inheritance<T>::type_check), t.stack_index());
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stack::set_field<false, true>(L, detail::base_class_cast_key(), reinterpret_cast<void*>(&detail::inheritance<T>::type_cast), t.stack_index());
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auto prop_fx = detail::properties_enrollment_allowed(storage.properties, enrollments);
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auto insert_fx = [&L, &t, &storage](meta_function mf, lua_CFunction reg) {
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auto prop_fx = detail::properties_enrollment_allowed(for_each_backing_metatable_calls, storage.properties, enrollments);
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auto insert_fx = [&L, &t, &storage, &smt](meta_function mf, lua_CFunction reg) {
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stack::set_field<false, true>(L, mf, reg, t.stack_index());
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storage.properties[static_cast<int>(mf)] = true;
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};
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@ -21793,6 +21796,7 @@ namespace sol { namespace u_detail {
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storage.is_using_new_index = true;
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}
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++for_each_backing_metatable_calls;
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fast_index_table = reference(L, t);
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t.pop();
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};
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@ -29,8 +29,9 @@
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#include <numeric>
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#include <iostream>
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struct T {};
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TEST_CASE("operators/default", "test that generic equality operators and all sorts of equality tests can be used") {
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struct T {};
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struct U {
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int a;
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U(int x = 20) : a(x) {
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@ -186,6 +187,31 @@ TEST_CASE("operators/default", "test that generic equality operators and all sor
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}
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}
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TEST_CASE("operators/default with pointers", "test that default operations still work when working with reference (pointer) types") {
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sol::state lua;
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lua.open_libraries(sol::lib::base);
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lua.new_usertype<T>("T");
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T test;
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lua["t1"] = &test;
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lua["t2"] = &test;
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lua["t3"] = std::unique_ptr<T, no_delete>(&test);
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lua["t4"] = std::unique_ptr<T, no_delete>(&test);
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lua.script("ptr_test = t1 == t2");
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lua.script("ptr_unique_test = t1 == t3");
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lua.script("unique_test = t3 == t4");
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bool ptr_test = lua["ptr_test"];
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bool ptr_unique_test = lua["ptr_unique_test"];
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bool unique_test = lua["unique_test"];
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REQUIRE(ptr_test);
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REQUIRE(ptr_unique_test);
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REQUIRE(unique_test);
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}
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TEST_CASE("operators/call", "test call operator generation") {
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struct callable {
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int operator()(int a, std::string b) {
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@ -65,4 +65,11 @@ struct test_stack_guard {
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}
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};
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struct no_delete {
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template <typename P>
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void operator()(P) const noexcept {
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}
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};
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#endif // SOL_TESTS_SOL_TEST_HPP
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