#include #include #include #include #include #include #include #include #include #include struct DispatchTest : torch::test::SeedingFixture {}; TEST_F(DispatchTest, TestAVX2) { const std::vector ints {1, 2, 3, 4}; const std::vector result {1, 4, 27, 256}; const auto vals_tensor = torch::tensor(ints); const auto pows_tensor = torch::tensor(ints); #ifdef _WIN32 _putenv("ATEN_CPU_CAPABILITY=avx2"); #else setenv("ATEN_CPU_CAPABILITY", "avx2", 1); #endif const auto actual_pow_avx2 = vals_tensor.pow(pows_tensor); for (int i = 0; i < 4; i++) { ASSERT_EQ(result[i], actual_pow_avx2[i].item()); } } TEST_F(DispatchTest, TestAVX) { const std::vector ints {1, 2, 3, 4}; const std::vector result {1, 4, 27, 256}; const auto vals_tensor = torch::tensor(ints); const auto pows_tensor = torch::tensor(ints); #ifdef _WIN32 _putenv("ATEN_CPU_CAPABILITY=avx"); #else setenv("ATEN_CPU_CAPABILITY", "avx", 1); #endif const auto actual_pow_avx = vals_tensor.pow(pows_tensor); for (int i = 0; i < 4; i++) { ASSERT_EQ(result[i], actual_pow_avx[i].item()); } } TEST_F(DispatchTest, TestDefault) { const std::vector ints {1, 2, 3, 4}; const std::vector result {1, 4, 27, 256}; const auto vals_tensor = torch::tensor(ints); const auto pows_tensor = torch::tensor(ints); #ifdef _WIN32 _putenv("ATEN_CPU_CAPABILITY=default"); #else setenv("ATEN_CPU_CAPABILITY", "default", 1); #endif const auto actual_pow_default = vals_tensor.pow(pows_tensor); for (int i = 0; i < 4; i++) { ASSERT_EQ(result[i], actual_pow_default[i].item()); } }