// Copyright 2019 The Pigweed Authors // // Licensed under the Apache License, Version 2.0 (the "License"); you may not // use this file except in compliance with the License. You may obtain a copy of // the License at // // https://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, WITHOUT // WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the // License for the specific language governing permissions and limitations under // the License. // Include all of the provided headers, even if they aren't tested. #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "gtest/gtest.h" namespace { TEST(Algorithm, Basic) { static_assert(std::min(1, 2) == 1); static_assert(std::max(1, 2) == 2); EXPECT_EQ(std::forward(2), 2); } TEST(Array, Basic) { constexpr std::array array{0, 1, 2, 3}; static_assert(array[2] == 2); for (int i = 0; i < static_cast(array.size()); ++i) { EXPECT_EQ(i, array[i]); } } TEST(Cmath, Basic) { EXPECT_EQ(std::abs(-1), 1); EXPECT_EQ(std::abs(1), 1); EXPECT_TRUE(std::isfinite(1.0)); EXPECT_FALSE(std::isfinite(1.0 / 0.0)); EXPECT_FALSE(std::isnan(1.0)); EXPECT_TRUE(std::isnan(0.0 / 0.0)); EXPECT_FALSE(std::signbit(1.0)); EXPECT_TRUE(std::signbit(-1.0)); } TEST(Cstddef, Basic) { using std::byte; byte foo = byte{12}; EXPECT_EQ(foo, byte{12}); } TEST(Iterator, Basic) { std::array foo{3, 2, 1}; EXPECT_EQ(std::data(foo), foo.data()); EXPECT_EQ(std::size(foo), foo.size()); foo.fill(99); EXPECT_EQ(foo[0], 99); EXPECT_EQ(foo[1], 99); EXPECT_EQ(foo[2], 99); } template int SumFromInitializerList(std::initializer_list values) { int sum = 0; for (auto value : values) { sum += value; } return sum; } TEST(InitializerList, Empty) { std::initializer_list mt; EXPECT_EQ(0, SumFromInitializerList(mt)); EXPECT_EQ(0, SumFromInitializerList({})); } TEST(InitializerList, Declared) { std::initializer_list list{'\3', '\3', '\4'}; EXPECT_EQ(10, SumFromInitializerList(list)); } TEST(InitializerList, Inline) { EXPECT_EQ(42, SumFromInitializerList({42})); EXPECT_EQ(2, SumFromInitializerList({true, false, true})); EXPECT_EQ(15, SumFromInitializerList({1, 2, 3, 4, 5})); } TEST(Limits, Basic) { static_assert(std::numeric_limits::is_specialized); static_assert(std::numeric_limits::is_integer); static_assert(std::numeric_limits::min() == 0u); static_assert(std::numeric_limits::max() == 255u); static_assert(std::numeric_limits::is_specialized); static_assert(std::numeric_limits::is_integer); static_assert(std::numeric_limits::min() == -128); static_assert(std::numeric_limits::max() == 127); // Assume 64-bit long long static_assert(std::numeric_limits::is_specialized); static_assert(std::numeric_limits::is_integer); static_assert(std::numeric_limits::min() == (-9223372036854775807ll - 1)); static_assert(std::numeric_limits::max() == 9223372036854775807ll); static_assert(std::numeric_limits::is_specialized); static_assert(std::numeric_limits::is_integer); static_assert(std::numeric_limits::min() == 0u); static_assert(std::numeric_limits::max() == 18446744073709551615ull); } TEST(New, PlacementNew) { unsigned char value[4]; new (value) int(1234); int int_value; std::memcpy(&int_value, value, sizeof(int_value)); EXPECT_EQ(1234, int_value); } TEST(New, Launder) { unsigned char value[4]; int* int_ptr = std::launder(reinterpret_cast(value)); EXPECT_EQ(static_cast(int_ptr), static_cast(value)); } TEST(StringView, Basic) { constexpr std::string_view value("1234567890"); static_assert(value.size() == 10); static_assert(value[1] == '2'); char buffer[] = "!!!!!"; constexpr size_t buffer_size = sizeof(buffer) - 1; // always keep the \0 value.copy(buffer, buffer_size, 10); EXPECT_STREQ(buffer, "!!!!!"); value.copy(buffer, buffer_size, 9); EXPECT_STREQ(buffer, "0!!!!"); value.copy(buffer, buffer_size, 2); EXPECT_STREQ(buffer, "34567"); value.copy(buffer, buffer_size); EXPECT_STREQ(buffer, "12345"); } TEST(TypeTraits, Basic) { static_assert(std::is_integral_v); static_assert(!std::is_integral_v); static_assert(std::is_floating_point_v); static_assert(!std::is_floating_point_v); static_assert(std::is_same_v); static_assert(!std::is_same_v); } struct MoveTester { MoveTester(int magic_value) : magic_value(magic_value), moved(false) {} MoveTester(const MoveTester&) = default; MoveTester(MoveTester&& other) : magic_value(other.magic_value), moved(true) { other.magic_value = 0xffff; } int magic_value; bool moved; }; TEST(Utility, Move) { MoveTester test(123); MoveTester copied(test); EXPECT_EQ(copied.magic_value, 123); EXPECT_FALSE(copied.moved); MoveTester moved(std::move(copied)); EXPECT_EQ(123, moved.magic_value); EXPECT_EQ(0xffff, copied.magic_value); EXPECT_TRUE(moved.moved); } } // namespace