* This file is a GNU parallel extension to the Standard C++ Library.
*/
#ifndef _GLIBCXX_PARALLEL_EQUALLY_SPLIT_H
#define _GLIBCXX_PARALLEL_EQUALLY_SPLIT_H 1
namespace __gnu_parallel
{
*
* The resulting sequence s of length num_threads+1 contains the splitting
* positions when splitting the range [0,n) into parts of almost
* equal size (plus minus 1). The first entry is 0, the last one
* n. There may result empty parts.
* @param n Number of elements
* @param num_threads Number of parts
* @param s Splitters
* @returns End of splitter sequence, i. e. @c s+num_threads+1 */
template<typename difference_type, typename OutputIterator>
OutputIterator
equally_split(difference_type n, thread_index_t num_threads, OutputIterator s)
{
difference_type chunk_length = n / num_threads;
difference_type num_longer_chunks = n % num_threads;
difference_type pos = 0;
for (thread_index_t i = 0; i < num_threads; ++i)
{
*s++ = pos;
pos += (i < num_longer_chunks) ? (chunk_length + 1) : chunk_length;
}
*s++ = n;
return s;
}
*
* Returns the position of the splitting point between
* thread number thread_no (included) and
* thread number thread_no+1 (excluded).
* @param n Number of elements
* @param num_threads Number of parts
* @returns _SplittingAlgorithm point */
template<typename difference_type>
difference_type
equally_split_point(difference_type n,
thread_index_t num_threads,
thread_index_t thread_no)
{
difference_type chunk_length = n / num_threads;
difference_type num_longer_chunks = n % num_threads;
if (thread_no < num_longer_chunks)
return thread_no * (chunk_length + 1);
else
return num_longer_chunks * (chunk_length + 1)
+ (thread_no - num_longer_chunks) * chunk_length;
}
}
#endif