/usr/include/boost/compute/algorithm
NameSizeModeActions
detail/-0755rm
accumulate.hpp63750644editdlrm
adjacent_difference.hpp44160644editdlrm
adjacent_find.hpp53130644editdlrm
all_of.hpp14270644editdlrm
any_of.hpp15440644editdlrm
binary_search.hpp14800644editdlrm
copy.hpp314830644editdlrm
copy_if.hpp25740644editdlrm
copy_n.hpp19400644editdlrm
count.hpp21030644editdlrm
count_if.hpp23880644editdlrm
equal.hpp22090644editdlrm
equal_range.hpp16360644editdlrm
exclusive_scan.hpp40420644editdlrm
fill.hpp100300644editdlrm
fill_n.hpp13670644editdlrm
find.hpp20040644editdlrm
find_end.hpp47720644editdlrm
find_if.hpp15040644editdlrm
find_if_not.hpp16520644editdlrm
for_each.hpp21310644editdlrm
for_each_n.hpp14230644editdlrm
gather.hpp27960644editdlrm
generate.hpp19030644editdlrm
generate_n.hpp12770644editdlrm
includes.hpp56150644editdlrm
inclusive_scan.hpp34020644editdlrm
inner_product.hpp38490644editdlrm
inplace_merge.hpp20470644editdlrm
iota.hpp17350644editdlrm
is_partitioned.hpp17850644editdlrm
is_permutation.hpp27440644editdlrm
is_sorted.hpp24360644editdlrm
lexicographical_compare.hpp49500644editdlrm
lower_bound.hpp15730644editdlrm
max_element.hpp27810644editdlrm
merge.hpp50370644editdlrm
minmax_element.hpp26680644editdlrm
min_element.hpp27800644editdlrm
mismatch.hpp34090644editdlrm
next_permutation.hpp57030644editdlrm
none_of.hpp14260644editdlrm
nth_element.hpp28680644editdlrm
partial_sum.hpp16760644editdlrm
partition.hpp15230644editdlrm
partition_copy.hpp25920644editdlrm
partition_point.hpp18580644editdlrm
prev_permutation.hpp56950644editdlrm
random_shuffle.hpp30100644editdlrm
reduce.hpp114540644editdlrm
reduce_by_key.hpp59330644editdlrm
remove.hpp20020644editdlrm
remove_if.hpp18500644editdlrm
replace.hpp25880644editdlrm
replace_copy.hpp22300644editdlrm
reverse.hpp24380644editdlrm
reverse_copy.hpp26780644editdlrm
rotate.hpp18130644editdlrm
rotate_copy.hpp15290644editdlrm
scatter.hpp34350644editdlrm
scatter_if.hpp47300644editdlrm
search.hpp29670644editdlrm
search_n.hpp44280644editdlrm
set_difference.hpp69410644editdlrm
set_intersection.hpp66460644editdlrm
set_symmetric_difference.hpp75330644editdlrm
set_union.hpp73840644editdlrm
sort.hpp65690644editdlrm
sort_by_key.hpp61560644editdlrm
stable_partition.hpp27370644editdlrm
stable_sort.hpp38090644editdlrm
stable_sort_by_key.hpp60710644editdlrm
swap_ranges.hpp18700644editdlrm
transform.hpp32520644editdlrm
transform_if.hpp47370644editdlrm
transform_reduce.hpp36830644editdlrm
unique.hpp25650644editdlrm
unique_copy.hpp64290644editdlrm
upper_bound.hpp15610644editdlrm
Edit: /usr/include/boost/compute/algorithm/includes.hpp (5615B)
//---------------------------------------------------------------------------// // Copyright (c) 2014 Roshan // // Distributed under the Boost Software License, Version 1.0 // See accompanying file LICENSE_1_0.txt or copy at // http://www.boost.org/LICENSE_1_0.txt // // See http://boostorg.github.com/compute for more information. //---------------------------------------------------------------------------// #ifndef BOOST_COMPUTE_ALGORITHM_INCLUDES_HPP #define BOOST_COMPUTE_ALGORITHM_INCLUDES_HPP #include #include #include #include #include #include #include #include #include #include #include namespace boost { namespace compute { namespace detail { /// /// \brief Serial includes kernel class /// /// Subclass of meta_kernel to perform includes operation after tiling /// class serial_includes_kernel : meta_kernel { public: serial_includes_kernel() : meta_kernel("includes") { } template void set_range(InputIterator1 first1, InputIterator2 first2, InputIterator3 tile_first1, InputIterator3 tile_last1, InputIterator4 tile_first2, OutputIterator result) { m_count = iterator_range_size(tile_first1, tile_last1) - 1; *this << "uint i = get_global_id(0);\n" << "uint start1 = " << tile_first1[expr("i")] << ";\n" << "uint end1 = " << tile_first1[expr("i+1")] << ";\n" << "uint start2 = " << tile_first2[expr("i")] << ";\n" << "uint end2 = " << tile_first2[expr("i+1")] << ";\n" << "uint includes = 1;\n" << "while(start1("start1")] << " == " << first2[expr("start2")] << ")\n" << " {\n" << " start1++; start2++;\n" << " }\n" << " else if(" << first1[expr("start1")] << " < " << first2[expr("start2")] << ")\n" << " start1++;\n" << " else\n" << " {\n" << " includes = 0;\n" << " break;\n" << " }\n" << "}\n" << "if(start2("i")] << " = includes;\n"; } event exec(command_queue &queue) { if(m_count == 0) { return event(); } return exec_1d(queue, 0, m_count); } private: size_t m_count; }; } //end detail namespace /// /// \brief Includes algorithm /// /// Finds if the sorted range [first1, last1) includes the sorted /// range [first2, last2). In other words, it checks if [first1, last1) is /// a superset of [first2, last2). /// /// \return True, if [first1, last1) includes [first2, last2). False otherwise. /// /// \param first1 Iterator pointing to start of first set /// \param last1 Iterator pointing to end of first set /// \param first2 Iterator pointing to start of second set /// \param last2 Iterator pointing to end of second set /// \param queue Queue on which to execute /// /// Space complexity: \Omega(distance(\p first1, \p last1) + distance(\p first2, \p last2)) template inline bool includes(InputIterator1 first1, InputIterator1 last1, InputIterator2 first2, InputIterator2 last2, command_queue &queue = system::default_queue()) { BOOST_STATIC_ASSERT(is_device_iterator::value); BOOST_STATIC_ASSERT(is_device_iterator::value); size_t tile_size = 1024; size_t count1 = detail::iterator_range_size(first1, last1); size_t count2 = detail::iterator_range_size(first2, last2); vector tile_a((count1+count2+tile_size-1)/tile_size+1, queue.get_context()); vector tile_b((count1+count2+tile_size-1)/tile_size+1, queue.get_context()); // Tile the sets detail::balanced_path_kernel tiling_kernel; tiling_kernel.tile_size = static_cast(tile_size); tiling_kernel.set_range(first1, last1, first2, last2, tile_a.begin()+1, tile_b.begin()+1); fill_n(tile_a.begin(), 1, uint_(0), queue); fill_n(tile_b.begin(), 1, uint_(0), queue); tiling_kernel.exec(queue); fill_n(tile_a.end()-1, 1, static_cast(count1), queue); fill_n(tile_b.end()-1, 1, static_cast(count2), queue); vector result((count1+count2+tile_size-1)/tile_size, queue.get_context()); // Find individually detail::serial_includes_kernel includes_kernel; includes_kernel.set_range(first1, first2, tile_a.begin(), tile_a.end(), tile_b.begin(), result.begin()); includes_kernel.exec(queue); return find(result.begin(), result.end(), 0, queue) == result.end(); } } //end compute namespace } //end boost namespace #endif // BOOST_COMPUTE_ALGORITHM_SET_UNION_HPP