#include #include #include #include #include #include #include #include // this example illustrates how to make strided access to a range of values // examples: // strided_range([0, 1, 2, 3, 4, 5, 6], 1) -> [0, 1, 2, 3, 4, 5, 6] // strided_range([0, 1, 2, 3, 4, 5, 6], 2) -> [0, 2, 4, 6] // strided_range([0, 1, 2, 3, 4, 5, 6], 3) -> [0, 3, 6] // ... template class strided_range { public: typedef typename thrust::iterator_difference::type difference_type; struct stride_functor : public thrust::unary_function { difference_type stride; stride_functor(difference_type stride) : stride(stride) {} __host__ __device__ difference_type operator()(const difference_type& i) const { return stride * i; } }; typedef typename thrust::counting_iterator CountingIterator; typedef typename thrust::transform_iterator TransformIterator; typedef typename thrust::permutation_iterator PermutationIterator; // type of the strided_range iterator typedef PermutationIterator iterator; // construct strided_range for the range [first,last) strided_range(Iterator first, Iterator last, difference_type stride) : first(first), last(last), stride(stride) {} iterator begin(void) const { return PermutationIterator(first, TransformIterator(CountingIterator(0), stride_functor(stride))); } iterator end(void) const { return begin() + ((last - first) + (stride - 1)) / stride; } protected: Iterator first; Iterator last; difference_type stride; }; int main(void) { thrust::device_vector data(8); data[0] = 10; data[1] = 20; data[2] = 30; data[3] = 40; data[4] = 50; data[5] = 60; data[6] = 70; data[7] = 80; // print the initial data std::cout << "data: "; thrust::copy(data.begin(), data.end(), std::ostream_iterator(std::cout, " ")); std::cout << std::endl; typedef thrust::device_vector::iterator Iterator; // create strided_range with indices [0,2,4,6] strided_range evens(data.begin(), data.end(), 2); std::cout << "sum of even indices: " << thrust::reduce(evens.begin(), evens.end()) << std::endl; // create strided_range with indices [1,3,5,7] strided_range odds(data.begin() + 1, data.end(), 2); std::cout << "sum of odd indices: " << thrust::reduce(odds.begin(), odds.end()) << std::endl; // set odd elements to 0 with fill() std::cout << "setting odd indices to zero: "; thrust::fill(odds.begin(), odds.end(), 0); thrust::copy(data.begin(), data.end(), std::ostream_iterator(std::cout, " ")); std::cout << std::endl; return 0; }