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Multi-core, main-memory joins: sort vs. hash revisited

Published: 01 September 2013 Publication History

Abstract

In this paper we experimentally study the performance of main-memory, parallel, multi-core join algorithms, focusing on sort-merge and (radix-)hash join. The relative performance of these two join approaches have been a topic of discussion for a long time. With the advent of modern multi-core architectures, it has been argued that sort-merge join is now a better choice than radix-hash join. This claim is justified based on the width of SIMD instructions (sort-merge outperforms radix-hash join once SIMD is sufficiently wide), and NUMA awareness (sort-merge is superior to hash join in NUMA architectures). We conduct extensive experiments on the original and optimized versions of these algorithms. The experiments show that, contrary to these claims, radix-hash join is still clearly superior, and sort-merge approaches to performance of radix only when very large amounts of data are involved. The paper also provides the fastest implementations of these algorithms, and covers many aspects of modern hardware architectures relevant not only for joins but for any parallel data processing operator.

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Published In

cover image Proceedings of the VLDB Endowment
Proceedings of the VLDB Endowment  Volume 7, Issue 1
September 2013
96 pages
ISSN:2150-8097
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VLDB Endowment

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Published: 01 September 2013
Published in PVLDB Volume 7, Issue 1

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  • (2024)Optimization of Sparse Matrix Computation for Algebraic Multigrid on GPUsACM Transactions on Architecture and Code Optimization10.1145/366492421:3(1-27)Online publication date: 15-May-2024
  • (2024)How Does Software Prefetching Work on GPU Query Processing?Proceedings of the 20th International Workshop on Data Management on New Hardware10.1145/3662010.3663445(1-9)Online publication date: 10-Jun-2024
  • (2024)SIMDified Data Processing - Foundations, Abstraction, and Advanced TechniquesCompanion of the 2024 International Conference on Management of Data10.1145/3626246.3654694(613-621)Online publication date: 9-Jun-2024
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