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| struct make_pair_functor | |
| { | |
| template<typename T1, typename T2> | |
| __host__ __device__ | |
| thrust::pair<T1,T2> operator()(const T1 &x, const T2 &y) | |
| { | |
| return thrust::make_pair(x,y); | |
| } // end operator()() | |
| }; // end make_pair_functor | |
| struct add_pairs | |
| { | |
| template <typename Pair1, typename Pair2> | |
| __host__ __device__ | |
| Pair1 operator()(const Pair1 &x, const Pair2 &y) | |
| { | |
| return thrust::make_pair(x.first + y.first, x.second + y.second); | |
| } // end operator() | |
| }; // end add_pairs | |
| template <typename T> | |
| struct TestPairTransform | |
| { | |
| void operator()(const size_t n) | |
| { | |
| typedef thrust::pair<T,T> P; | |
| thrust::host_vector<T> h_p1 = unittest::random_integers<T>(n); | |
| thrust::host_vector<T> h_p2 = unittest::random_integers<T>(n); | |
| thrust::host_vector<P> h_result(n); | |
| thrust::device_vector<T> d_p1 = h_p1; | |
| thrust::device_vector<T> d_p2 = h_p2; | |
| thrust::device_vector<P> d_result(n); | |
| // zip up pairs on the host | |
| thrust::transform(h_p1.begin(), h_p1.end(), h_p2.begin(), h_result.begin(), make_pair_functor()); | |
| // zip up pairs on the device | |
| thrust::transform(d_p1.begin(), d_p1.end(), d_p2.begin(), d_result.begin(), make_pair_functor()); | |
| ASSERT_EQUAL_QUIET(h_result, d_result); | |
| // add pairs on the host | |
| thrust::transform(h_result.begin(), h_result.end(), h_result.begin(), h_result.begin(), add_pairs()); | |
| // add pairs on the device | |
| thrust::transform(d_result.begin(), d_result.end(), d_result.begin(), d_result.begin(), add_pairs()); | |
| ASSERT_EQUAL_QUIET(h_result, d_result); | |
| } | |
| }; // end TestPairZip | |
| VariableUnitTest<TestPairTransform, unittest::type_list<unittest::int8_t,unittest::int16_t,unittest::int32_t> > TestPairTransformInstance; | |