2016-10-07 14:43:09 +02:00
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#define SOL_CHECK_ARGUMENTS
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#include <sol.hpp>
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#include <catch.hpp>
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#include <iostream>
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TEST_CASE("inheritance/basic", "test that metatables are properly inherited") {
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struct A {
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int a = 5;
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};
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struct B {
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int b() {
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return 10;
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}
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};
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struct C : B, A {
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double c = 2.4;
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};
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struct D : C {
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bool d() const {
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return true;
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}
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};
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sol::state lua;
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lua.new_usertype<A>("A",
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"a", &A::a
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);
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lua.new_usertype<B>("B",
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"b", &B::b
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);
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lua.new_usertype<C>("C",
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"c", &C::c,
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sol::base_classes, sol::bases<B, A>()
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);
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lua.new_usertype<D>("D",
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"d", &D::d,
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sol::base_classes, sol::bases<C, B, A>()
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);
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lua.script("obj = D.new()");
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lua.script("d = obj:d()");
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bool d = lua["d"];
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lua.script("c = obj.c");
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double c = lua["c"];
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lua.script("b = obj:b()");
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int b = lua["b"];
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lua.script("a = obj.a");
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int a = lua["a"];
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REQUIRE(d);
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REQUIRE(c == 2.4);
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REQUIRE(b == 10);
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REQUIRE(a == 5);
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}
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TEST_CASE("inheritance/multi-base", "test that multiple bases all work and overloading for constructors works with them") {
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class TestClass00 {
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public:
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int Thing() const { return 123; }
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};
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class TestClass01 : public TestClass00 {
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public:
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TestClass01() : a(1) {}
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TestClass01(const TestClass00& other) : a(other.Thing()) {}
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int a;
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};
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class TestClass02 : public TestClass01 {
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public:
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TestClass02() : b(2) {}
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TestClass02(const TestClass01& other) : b(other.a) {}
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TestClass02(const TestClass00& other) : b(other.Thing()) {}
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int b;
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};
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class TestClass03 : public TestClass02 {
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public:
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TestClass03() : c(2) {}
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TestClass03(const TestClass02& other) : c(other.b) {}
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TestClass03(const TestClass01& other) : c(other.a) {}
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TestClass03(const TestClass00& other) : c(other.Thing()) {}
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int c;
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};
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sol::state lua;
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sol::usertype<TestClass00> s_TestUsertype00(
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sol::call_constructor, sol::constructors<sol::types<>>(),
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"Thing", &TestClass00::Thing
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);
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lua.set_usertype("TestClass00", s_TestUsertype00);
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sol::usertype<TestClass01> s_TestUsertype01(
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sol::call_constructor, sol::constructors<sol::types<>, sol::types<const TestClass00&>>(),
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sol::base_classes, sol::bases<TestClass00>(),
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"a", &TestClass01::a
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);
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lua.set_usertype("TestClass01", s_TestUsertype01);
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sol::usertype<TestClass02> s_TestUsertype02(
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sol::call_constructor, sol::constructors<sol::types<>, sol::types<const TestClass01&>, sol::types<const TestClass00&>>(),
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sol::base_classes, sol::bases<TestClass01, TestClass00>(),
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"b", &TestClass02::b
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);
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lua.set_usertype("TestClass02", s_TestUsertype02);
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sol::usertype<TestClass03> s_TestUsertype03(
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sol::call_constructor, sol::constructors<sol::types<>, sol::types<const TestClass02&>, sol::types<const TestClass01&>, sol::types<const TestClass00&>>(),
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sol::base_classes, sol::bases<TestClass02, TestClass01, TestClass00>(),
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"c", &TestClass03::c
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);
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lua.set_usertype("TestClass03", s_TestUsertype03);
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lua.script(R"(
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tc0 = TestClass00()
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)");
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lua.script(R"(
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tc2 = TestClass02(tc0)
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)");
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lua.script(R"(
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tc1 = TestClass01()
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)");
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lua.script(R"(
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tc3 = TestClass03(tc1)
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)");
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TestClass00& tc0 = lua["tc0"];
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TestClass01& tc1 = lua["tc1"];
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TestClass02& tc2 = lua["tc2"];
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TestClass03& tc3 = lua["tc3"];
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2017-02-05 16:01:50 +01:00
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REQUIRE(tc0.Thing() == 123);
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2016-10-07 14:43:09 +02:00
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REQUIRE(tc1.a == 1);
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REQUIRE(tc2.a == 1);
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REQUIRE(tc2.b == 123);
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REQUIRE(tc3.a == 1);
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REQUIRE(tc3.b == 2);
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REQUIRE(tc3.c == 1);
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}
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TEST_CASE("inheritance/simple-multi-base", "test that multiple bases all work and overloading for constructors works with them") {
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class TestClass00 {
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public:
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int Thing() const { return 123; }
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};
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class TestClass01 : public TestClass00 {
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public:
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TestClass01() : a(1) {}
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TestClass01(const TestClass00& other) : a(other.Thing()) {}
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int a;
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};
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class TestClass02 : public TestClass01 {
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public:
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TestClass02() : b(2) {}
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TestClass02(const TestClass01& other) : b(other.a) {}
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TestClass02(const TestClass00& other) : b(other.Thing()) {}
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int b;
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};
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class TestClass03 : public TestClass02 {
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public:
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TestClass03() : c(2) {}
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TestClass03(const TestClass02& other) : c(other.b) {}
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TestClass03(const TestClass01& other) : c(other.a) {}
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TestClass03(const TestClass00& other) : c(other.Thing()) {}
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int c;
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};
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sol::state lua;
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sol::simple_usertype<TestClass00> s_TestUsertype00( lua,
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sol::call_constructor, sol::constructors<sol::types<>>(),
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"Thing", &TestClass00::Thing
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);
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lua.set_usertype("TestClass00", s_TestUsertype00);
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sol::simple_usertype<TestClass01> s_TestUsertype01( lua,
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sol::call_constructor, sol::constructors<sol::types<>, sol::types<const TestClass00&>>(),
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sol::base_classes, sol::bases<TestClass00>(),
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"a", &TestClass01::a
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);
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lua.set_usertype("TestClass01", s_TestUsertype01);
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sol::simple_usertype<TestClass02> s_TestUsertype02( lua,
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sol::call_constructor, sol::constructors<sol::types<>, sol::types<const TestClass01&>, sol::types<const TestClass00&>>(),
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sol::base_classes, sol::bases<TestClass01, TestClass00>(),
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"b", &TestClass02::b
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);
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lua.set_usertype("TestClass02", s_TestUsertype02);
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sol::simple_usertype<TestClass03> s_TestUsertype03( lua,
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sol::call_constructor, sol::constructors<sol::types<>, sol::types<const TestClass02&>, sol::types<const TestClass01&>, sol::types<const TestClass00&>>(),
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sol::base_classes, sol::bases<TestClass02, TestClass01, TestClass00>(),
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"c", &TestClass03::c
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);
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lua.set_usertype("TestClass03", s_TestUsertype03);
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lua.script(R"(
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tc0 = TestClass00()
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)");
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lua.script(R"(
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tc2 = TestClass02(tc0)
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)");
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lua.script(R"(
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tc1 = TestClass01()
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)");
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lua.script(R"(
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tc3 = TestClass03(tc1)
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)");
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TestClass00& tc0 = lua["tc0"];
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TestClass01& tc1 = lua["tc1"];
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TestClass02& tc2 = lua["tc2"];
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TestClass03& tc3 = lua["tc3"];
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REQUIRE(tc1.a == 1);
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REQUIRE(tc2.a == 1);
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REQUIRE(tc2.b == 123);
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REQUIRE(tc3.a == 1);
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REQUIRE(tc3.b == 2);
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REQUIRE(tc3.c == 1);
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}
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