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https://github.com/fraillt/bitsery.git
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format code base in Mozilla style
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@@ -1,28 +1,27 @@
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//MIT License
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// MIT License
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//
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//Copyright (c) 2019 Mindaugas Vinkelis
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// Copyright (c) 2019 Mindaugas Vinkelis
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//
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//Permission is hereby granted, free of charge, to any person obtaining a copy
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//of this software and associated documentation files (the "Software"), to deal
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//in the Software without restriction, including without limitation the rights
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//to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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//copies of the Software, and to permit persons to whom the Software is
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//furnished to do so, subject to the following conditions:
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to deal
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// in the Software without restriction, including without limitation the rights
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// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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// copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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//The above copyright notice and this permission notice shall be included in all
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//copies or substantial portions of the Software.
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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//THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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//IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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//FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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//AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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//LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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//OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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//SOFTWARE.
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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// SOFTWARE.
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#include <gmock/gmock.h>
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#include "serialization_test_utils.h"
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#include <gmock/gmock.h>
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#if __cplusplus > 201402L
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@@ -33,142 +32,153 @@ using testing::Eq;
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template<typename T, size_t N>
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using OverloadValue = bitsery::ext::OverloadValue<T, N>;
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TEST(SerializeExtensionStdVariant, UseSerializeFunction) {
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TEST(SerializeExtensionStdVariant, UseSerializeFunction)
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{
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std::variant<MyStruct1, MyStruct2> t1{MyStruct1{978, 15}};
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std::variant<MyStruct1, MyStruct2> r1{MyStruct2{}};
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SerializationContext ctx;
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ctx.createSerializer().ext(t1, bitsery::ext::StdVariant{});
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ctx.createDeserializer().ext(r1, bitsery::ext::StdVariant{});
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EXPECT_THAT(t1, Eq(r1));
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std::variant<MyStruct1, MyStruct2> t1{ MyStruct1{ 978, 15 } };
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std::variant<MyStruct1, MyStruct2> r1{ MyStruct2{} };
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SerializationContext ctx;
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ctx.createSerializer().ext(t1, bitsery::ext::StdVariant{});
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ctx.createDeserializer().ext(r1, bitsery::ext::StdVariant{});
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EXPECT_THAT(t1, Eq(r1));
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}
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TEST(SerializeExtensionStdVariant, WhenTwoIndicesWithSameTypeThenDeserializeCorrectIndex) {
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TEST(SerializeExtensionStdVariant,
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WhenTwoIndicesWithSameTypeThenDeserializeCorrectIndex)
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{
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std::variant<MyStruct1, MyStruct2, MyStruct1> t1{std::in_place_index_t<2>{}, MyStruct1{978, 15}};
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std::variant<MyStruct1, MyStruct2, MyStruct1> r1{MyStruct2{}};
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SerializationContext ctx;
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ctx.createSerializer().ext(t1, bitsery::ext::StdVariant{});
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ctx.createDeserializer().ext(r1, bitsery::ext::StdVariant{});
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EXPECT_THAT(t1, Eq(r1));
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std::variant<MyStruct1, MyStruct2, MyStruct1> t1{ std::in_place_index_t<2>{},
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MyStruct1{ 978, 15 } };
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std::variant<MyStruct1, MyStruct2, MyStruct1> r1{ MyStruct2{} };
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SerializationContext ctx;
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ctx.createSerializer().ext(t1, bitsery::ext::StdVariant{});
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ctx.createDeserializer().ext(r1, bitsery::ext::StdVariant{});
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EXPECT_THAT(t1, Eq(r1));
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}
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TEST(SerializeExtensionStdVariant, ValueTypesCanBeSerializedWithLambda) {
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TEST(SerializeExtensionStdVariant, ValueTypesCanBeSerializedWithLambda)
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{
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std::variant<float, char, MyStruct1> t1{5.6f};
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std::variant<float, char, MyStruct1> r1{MyStruct1{}};
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SerializationContext ctx;
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auto fncFloat = [](auto& s, float& v) {
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s.value4b(v);
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};
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auto fncChar = [](auto& s, char& v) {
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s.value1b(v);
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};
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ctx.createSerializer().ext(t1, bitsery::ext::StdVariant{fncFloat, fncChar});
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ctx.createDeserializer().ext(r1, bitsery::ext::StdVariant{fncFloat, fncChar});
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EXPECT_THAT(t1, Eq(r1));
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std::variant<float, char, MyStruct1> t1{ 5.6f };
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std::variant<float, char, MyStruct1> r1{ MyStruct1{} };
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SerializationContext ctx;
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auto fncFloat = [](auto& s, float& v) { s.value4b(v); };
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auto fncChar = [](auto& s, char& v) { s.value1b(v); };
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ctx.createSerializer().ext(t1, bitsery::ext::StdVariant{ fncFloat, fncChar });
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ctx.createDeserializer().ext(r1,
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bitsery::ext::StdVariant{ fncFloat, fncChar });
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EXPECT_THAT(t1, Eq(r1));
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}
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TEST(SerializeExtensionStdVariant, ValueTypesCanBeSerializedWithLambdaAndOrCallableObject) {
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std::variant<float, char, MyStruct1> t1{'Z'};
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std::variant<float, char, MyStruct1> r1{MyStruct1{}};
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SerializationContext ctx;
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auto fncFloat = [](auto& s, float& v) {
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s.value4b(v);
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};
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TEST(SerializeExtensionStdVariant,
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ValueTypesCanBeSerializedWithLambdaAndOrCallableObject)
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{
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std::variant<float, char, MyStruct1> t1{ 'Z' };
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std::variant<float, char, MyStruct1> r1{ MyStruct1{} };
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SerializationContext ctx;
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auto fncFloat = [](auto& s, float& v) { s.value4b(v); };
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ctx.createSerializer().ext(t1, bitsery::ext::StdVariant{fncFloat, OverloadValue<char, 1>{}});
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ctx.createDeserializer().ext(r1, bitsery::ext::StdVariant{fncFloat, OverloadValue<char, 1>{}});
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EXPECT_THAT(t1, Eq(r1));
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ctx.createSerializer().ext(
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t1, bitsery::ext::StdVariant{ fncFloat, OverloadValue<char, 1>{} });
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ctx.createDeserializer().ext(
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r1, bitsery::ext::StdVariant{ fncFloat, OverloadValue<char, 1>{} });
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EXPECT_THAT(t1, Eq(r1));
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}
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TEST(SerializeExtensionStdVariant, CanOverloadDefaultSerializationFunction) {
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std::variant<MyStruct2, MyStruct1, int32_t> t1{MyStruct1{5, 9}};
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std::variant<MyStruct2, MyStruct1, int32_t> r1{MyStruct1{}};
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SerializationContext ctx;
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auto exec = [](auto& s, std::variant<MyStruct2, MyStruct1, int32_t>& o) {
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using S = decltype(s);
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s.ext(o, bitsery::ext::StdVariant{
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[](S& s, MyStruct1& v) {
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s.value4b(v.i1);
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//do not serialize other element, it should be 0 (default)
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},
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OverloadValue<int32_t, 4>{}
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});
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};
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TEST(SerializeExtensionStdVariant, CanOverloadDefaultSerializationFunction)
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{
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std::variant<MyStruct2, MyStruct1, int32_t> t1{ MyStruct1{ 5, 9 } };
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std::variant<MyStruct2, MyStruct1, int32_t> r1{ MyStruct1{} };
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SerializationContext ctx;
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auto exec = [](auto& s, std::variant<MyStruct2, MyStruct1, int32_t>& o) {
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using S = decltype(s);
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s.ext(o,
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bitsery::ext::StdVariant{ [](S& s, MyStruct1& v) {
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s.value4b(v.i1);
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// do not serialize other element, it
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// should be 0 (default)
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},
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OverloadValue<int32_t, 4>{} });
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};
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ctx.createSerializer().object(t1, exec);
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ctx.createDeserializer().object(r1, exec);
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EXPECT_THAT(std::get<1>(r1).i2, Eq(0));
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ctx.createSerializer().object(t1, exec);
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ctx.createDeserializer().object(r1, exec);
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EXPECT_THAT(std::get<1>(r1).i2, Eq(0));
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}
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struct NonDefaultConstructable
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{
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explicit NonDefaultConstructable(float x)
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: _x{ x }
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{
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}
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struct NonDefaultConstructable {
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explicit NonDefaultConstructable(float x) : _x{x} {}
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float _x;
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float _x;
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bool operator==(const NonDefaultConstructable& rhs) const {
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return _x == rhs._x;
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}
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bool operator==(const NonDefaultConstructable& rhs) const
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{
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return _x == rhs._x;
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}
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private:
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friend class bitsery::Access;
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friend class bitsery::Access;
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NonDefaultConstructable() : _x{0.0f} {};
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NonDefaultConstructable()
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: _x{ 0.0f } {};
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};
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TEST(SerializeExtensionStdVariant, CanUseNonDefaultConstructableTypes) {
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std::variant<NonDefaultConstructable, MyStruct1, int32_t> t1{NonDefaultConstructable{123.456f}};
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std::variant<NonDefaultConstructable, MyStruct1, int32_t> r1{MyStruct1{}};
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SerializationContext ctx;
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TEST(SerializeExtensionStdVariant, CanUseNonDefaultConstructableTypes)
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{
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std::variant<NonDefaultConstructable, MyStruct1, int32_t> t1{
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NonDefaultConstructable{ 123.456f }
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};
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std::variant<NonDefaultConstructable, MyStruct1, int32_t> r1{ MyStruct1{} };
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SerializationContext ctx;
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auto exec = [](auto& s, std::variant<NonDefaultConstructable, MyStruct1, int32_t>& o) {
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using S = decltype(s);
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s.ext(o, bitsery::ext::StdVariant{
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[](S& s, NonDefaultConstructable& v) {
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s.value4b(v._x);
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},
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OverloadValue<int32_t, 4>{}
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});
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};
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auto exec = [](auto& s,
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std::variant<NonDefaultConstructable, MyStruct1, int32_t>& o) {
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using S = decltype(s);
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s.ext(o,
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bitsery::ext::StdVariant{
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[](S& s, NonDefaultConstructable& v) { s.value4b(v._x); },
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OverloadValue<int32_t, 4>{} });
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};
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ctx.createSerializer().object(t1, exec);
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ctx.createDeserializer().object(r1, exec);
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ctx.createSerializer().object(t1, exec);
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ctx.createDeserializer().object(r1, exec);
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EXPECT_THAT(t1, Eq(r1));
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EXPECT_THAT(t1, Eq(r1));
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}
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TEST(SerializeExtensionStdVariant, CorrectlyHandleMonoState)
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{
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std::variant<std::monostate, NonDefaultConstructable, MyStruct1> t1{};
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std::variant<std::monostate, NonDefaultConstructable, MyStruct1> r1{};
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SerializationContext ctx;
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TEST(SerializeExtensionStdVariant, CorrectlyHandleMonoState) {
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std::variant<std::monostate, NonDefaultConstructable, MyStruct1> t1{};
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std::variant<std::monostate, NonDefaultConstructable, MyStruct1> r1{};
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SerializationContext ctx;
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auto exec = [](auto& s, auto& o) {
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using S = decltype(s);
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s.ext(o,
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bitsery::ext::StdVariant{
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[](S& s, NonDefaultConstructable& v) { s.value4b(v._x); },
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});
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};
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auto exec = [](auto& s, auto& o) {
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using S = decltype(s);
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s.ext(o, bitsery::ext::StdVariant{
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[](S& s, NonDefaultConstructable& v) {
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s.value4b(v._x);
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},
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});
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};
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ctx.createSerializer().object(t1, exec);
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ctx.createDeserializer().object(r1, exec);
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EXPECT_THAT(t1, Eq(r1));
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std::variant<std::monostate> t2{};
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std::variant<std::monostate> r2{};
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SerializationContext ctx1;
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ctx1.createSerializer().ext(t2, bitsery::ext::StdVariant{});
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ctx1.createDeserializer().ext(r2, bitsery::ext::StdVariant{});
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EXPECT_THAT(t2, Eq(r2));
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ctx.createSerializer().object(t1, exec);
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ctx.createDeserializer().object(r1, exec);
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EXPECT_THAT(t1, Eq(r1));
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std::variant<std::monostate> t2{};
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std::variant<std::monostate> r2{};
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SerializationContext ctx1;
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ctx1.createSerializer().ext(t2, bitsery::ext::StdVariant{});
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ctx1.createDeserializer().ext(r2, bitsery::ext::StdVariant{});
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EXPECT_THAT(t2, Eq(r2));
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}
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#elif defined(_MSC_VER)
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#pragma message("C++17 and /Zc:__cplusplus option is required to enable std::variant tests")
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#pragma message( \
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"C++17 and /Zc:__cplusplus option is required to enable std::variant tests")
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#else
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#pragma message("C++17 is required to enable std::variant tests")
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#endif
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