Lower Bounds in the Asymmetric External Memory Model
- ,
- Nodari Sitchinava
- ,
- ,
- Aarhus University
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 247-254Publication milestones
- Published - 07/2017
Publication status
Published - 07/2017
Publisher
Association for Computing Machinery, United StatesISBN (Print)
978-1-4503-4593-4Publication IDs
- Scopus: 85027860615
Host publication title
SPAA '17 Proceedings of the 29th ACM Symposium on Parallelism in Algorithms and Architectures Abstract
Motivated by the asymmetric read and write costs of emerging non-volatile memory technologies, we study lower bounds for the problems of sorting, permuting and multiplying a sparse matrix by a dense vector in the asymmetric external memory model (AEM). Given an AEM with internal (symmetric) memory of size M, transfers between symmetric and asymmetric memory in blocks of size B and the ratio ω between write and read costs, we show Ω(min (N, ωN/B logω M/B N/B) lower bound for the cost of permuting N input elements. This lower bound also applies to the problem of sorting N elements. This proves that the existing sorting algorithms in the AEM model are optimal to within a constant factor for reasonable ranges of parameters N, M, B, and ω. We also show a lower bound of Ω(min {H, ω H/B logω M/B N/ max{δ ,M}}) for the cost of multiplying an N x N matrix with at most H= δ N non-empty entries by a vector with N elements.
Publication metrics
PlumX, opens in new tab
Citations
12
Captures
7
Access to documents
Accepted author manuscript, 669.63 KB
Accepted author manuscript
