vtk-m/vtkm/testing/UnitTestBinaryOperators.cxx
Allison Vacanti 84eedc8855 Make BinaryOperators/Predicates more flexible.
Allow the argument types to differ. This allows ArrayPortalValueReferences to be used.
2019-12-18 15:51:59 -05:00

174 lines
5.3 KiB
C++

//============================================================================
// Copyright (c) Kitware, Inc.
// All rights reserved.
// See LICENSE.txt for details.
//
// This software is distributed WITHOUT ANY WARRANTY; without even
// the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
// PURPOSE. See the above copyright notice for more information.
//============================================================================
#include <vtkm/BinaryOperators.h>
#include <vtkm/testing/Testing.h>
namespace
{
//general pair test
template <typename T>
void BinaryOperatorTest()
{
//Not using TestValue method as it causes roll-over to occur with
//uint8 and int8 leading to unexpected comparisons.
//test Sum
{
vtkm::Sum sum;
T result;
result = sum(vtkm::TypeTraits<T>::ZeroInitialization(), T(1));
VTKM_TEST_ASSERT(result == T(1), "Sum wrong.");
result = sum(T(1), T(1));
VTKM_TEST_ASSERT(result == T(2), "Sum wrong.");
}
//test Product
{
vtkm::Product product;
T result;
result = product(vtkm::TypeTraits<T>::ZeroInitialization(), T(1));
VTKM_TEST_ASSERT(result == vtkm::TypeTraits<T>::ZeroInitialization(), "Product wrong.");
result = product(T(1), T(1));
VTKM_TEST_ASSERT(result == T(1), "Product wrong.");
result = product(T(2), T(3));
VTKM_TEST_ASSERT(result == T(6), "Product wrong.");
}
//test Maximum
{
vtkm::Maximum maximum;
VTKM_TEST_ASSERT(maximum(T(1), T(2)) == T(2), "Maximum wrong.");
VTKM_TEST_ASSERT(maximum(T(2), T(2)) == T(2), "Maximum wrong.");
VTKM_TEST_ASSERT(maximum(T(2), T(1)) == T(2), "Maximum wrong.");
}
//test Minimum
{
vtkm::Minimum minimum;
VTKM_TEST_ASSERT(minimum(T(1), T(2)) == T(1), "Minimum wrong.");
VTKM_TEST_ASSERT(minimum(T(1), T(1)) == T(1), "Minimum wrong.");
VTKM_TEST_ASSERT(minimum(T(3), T(2)) == T(2), "Minimum wrong.");
}
//test MinAndMax
{
vtkm::MinAndMax<T> min_and_max;
vtkm::Vec<T, 2> result;
// Test1: basic param
{
result = min_and_max(T(1));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(1), T(1))), "Test1 MinAndMax wrong");
}
// Test2: basic param
{
result = min_and_max(vtkm::TypeTraits<T>::ZeroInitialization(), T(1));
VTKM_TEST_ASSERT(
test_equal(result, vtkm::Vec<T, 2>(vtkm::TypeTraits<T>::ZeroInitialization(), T(1))),
"Test2 MinAndMax wrong");
result = min_and_max(T(2), T(1));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(1), T(2))), "Test2 MinAndMax wrong");
}
// Test3: 1st param vector, 2nd param basic
{
result = min_and_max(vtkm::Vec<T, 2>(3, 5), T(7));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(3), T(7))), "Test3 MinAndMax Wrong");
result = min_and_max(vtkm::Vec<T, 2>(3, 5), T(2));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(2), T(5))), "Test3 MinAndMax Wrong");
}
// Test4: 1st param basic, 2nd param vector
{
result = min_and_max(T(7), vtkm::Vec<T, 2>(3, 5));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(3), T(7))), "Test4 MinAndMax Wrong");
result = min_and_max(T(2), vtkm::Vec<T, 2>(3, 5));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(2), T(5))), "Test4 MinAndMax Wrong");
}
// Test5: 2 vector param
{
result = min_and_max(vtkm::Vec<T, 2>(2, 4), vtkm::Vec<T, 2>(3, 5));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(2), T(5))), "Test5 MinAndMax Wrong");
result = min_and_max(vtkm::Vec<T, 2>(2, 7), vtkm::Vec<T, 2>(3, 5));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(2), T(7))), "Test5 MinAndMax Wrong");
result = min_and_max(vtkm::Vec<T, 2>(4, 4), vtkm::Vec<T, 2>(1, 8));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(1), T(8))), "Test5 MinAndMax Wrong");
result = min_and_max(vtkm::Vec<T, 2>(4, 4), vtkm::Vec<T, 2>(3, 3));
VTKM_TEST_ASSERT(test_equal(result, vtkm::Vec<T, 2>(T(3), T(4))), "Test5 MinAndMax Wrong");
}
}
}
struct BinaryOperatorTestFunctor
{
template <typename T>
void operator()(const T&) const
{
BinaryOperatorTest<T>();
}
};
void TestBinaryOperators()
{
vtkm::testing::Testing::TryTypes(BinaryOperatorTestFunctor());
vtkm::UInt32 v1 = 0xccccccccu;
vtkm::UInt32 v2 = 0xffffffffu;
vtkm::UInt32 v3 = 0x0u;
//test BitwiseAnd
{
vtkm::BitwiseAnd bitwise_and;
VTKM_TEST_ASSERT(bitwise_and(v1, v2) == (v1 & v2), "bitwise_and wrong.");
VTKM_TEST_ASSERT(bitwise_and(v1, v3) == (v1 & v3), "bitwise_and wrong.");
VTKM_TEST_ASSERT(bitwise_and(v2, v3) == (v2 & v3), "bitwise_and wrong.");
}
//test BitwiseOr
{
vtkm::BitwiseOr bitwise_or;
VTKM_TEST_ASSERT(bitwise_or(v1, v2) == (v1 | v2), "bitwise_or wrong.");
VTKM_TEST_ASSERT(bitwise_or(v1, v3) == (v1 | v3), "bitwise_or wrong.");
VTKM_TEST_ASSERT(bitwise_or(v2, v3) == (v2 | v3), "bitwise_or wrong.");
}
//test BitwiseXor
{
vtkm::BitwiseXor bitwise_xor;
VTKM_TEST_ASSERT(bitwise_xor(v1, v2) == (v1 ^ v2), "bitwise_xor wrong.");
VTKM_TEST_ASSERT(bitwise_xor(v1, v3) == (v1 ^ v3), "bitwise_xor wrong.");
VTKM_TEST_ASSERT(bitwise_xor(v2, v3) == (v2 ^ v3), "bitwise_xor wrong.");
}
}
} // anonymous namespace
int UnitTestBinaryOperators(int argc, char* argv[])
{
return vtkm::testing::Testing::Run(TestBinaryOperators, argc, argv);
}