#include #include #include template void TestMinElementSimple(void) { typedef typename Vector::value_type T; Vector data(6); data[0] = 3; data[1] = 5; data[2] = 1; data[3] = 2; data[4] = 5; data[5] = 1; ASSERT_EQUAL( *thrust::min_element(data.begin(), data.end()), 1); ASSERT_EQUAL( thrust::min_element(data.begin(), data.end()) - data.begin(), 2); ASSERT_EQUAL( *thrust::min_element(data.begin(), data.end(), thrust::greater()), 5); ASSERT_EQUAL( thrust::min_element(data.begin(), data.end(), thrust::greater()) - data.begin(), 1); } DECLARE_VECTOR_UNITTEST(TestMinElementSimple); template void TestMinElementWithTransform(void) { typedef typename Vector::value_type T; Vector data(6); data[0] = 3; data[1] = 5; data[2] = 1; data[3] = 2; data[4] = 5; data[5] = 1; ASSERT_EQUAL( *thrust::min_element( thrust::make_transform_iterator(data.begin(), thrust::negate()), thrust::make_transform_iterator(data.end(), thrust::negate())), -5); ASSERT_EQUAL( *thrust::min_element( thrust::make_transform_iterator(data.begin(), thrust::negate()), thrust::make_transform_iterator(data.end(), thrust::negate()), thrust::greater()), -1); } DECLARE_VECTOR_UNITTEST(TestMinElementWithTransform); template void TestMinElement(const size_t n) { thrust::host_vector h_data = unittest::random_samples(n); thrust::device_vector d_data = h_data; typename thrust::host_vector::iterator h_min = thrust::min_element(h_data.begin(), h_data.end()); typename thrust::device_vector::iterator d_min = thrust::min_element(d_data.begin(), d_data.end()); ASSERT_EQUAL(h_min - h_data.begin(), d_min - d_data.begin()); typename thrust::host_vector::iterator h_max = thrust::min_element(h_data.begin(), h_data.end(), thrust::greater()); typename thrust::device_vector::iterator d_max = thrust::min_element(d_data.begin(), d_data.end(), thrust::greater()); ASSERT_EQUAL(h_max - h_data.begin(), d_max - d_data.begin()); } DECLARE_VARIABLE_UNITTEST(TestMinElement); template ForwardIterator min_element(my_system &system, ForwardIterator first, ForwardIterator) { system.validate_dispatch(); return first; } void TestMinElementDispatchExplicit() { thrust::device_vector vec(1); my_system sys(0); thrust::min_element(sys, vec.begin(), vec.end()); ASSERT_EQUAL(true, sys.is_valid()); } DECLARE_UNITTEST(TestMinElementDispatchExplicit); template ForwardIterator min_element(my_tag, ForwardIterator first, ForwardIterator) { *first = 13; return first; } void TestMinElementDispatchImplicit() { thrust::device_vector vec(1); thrust::min_element(thrust::retag(vec.begin()), thrust::retag(vec.end())); ASSERT_EQUAL(13, vec.front()); } DECLARE_UNITTEST(TestMinElementDispatchImplicit); void TestMinElementWithBigIndexesHelper(int magnitude) { thrust::counting_iterator begin(1); thrust::counting_iterator end = begin + (1ll << magnitude); ASSERT_EQUAL(thrust::distance(begin, end), 1ll << magnitude); ASSERT_EQUAL( *thrust::min_element(thrust::device, begin, end, thrust::greater()), (1ll << magnitude)); } void TestMinElementWithBigIndexes() { TestMinElementWithBigIndexesHelper(30); TestMinElementWithBigIndexesHelper(31); TestMinElementWithBigIndexesHelper(32); TestMinElementWithBigIndexesHelper(33); } DECLARE_UNITTEST(TestMinElementWithBigIndexes);