Title :
QbDJ: A Novel Framework for Handling Skew in Parallel Join Processing on Distributed Memory
Author :
Long Cheng ; Kotoulas, Spyros ; Ward, Tomas E. ; Theodoropoulos, Georgios
Author_Institution :
Nat. Univ. of Ireland, Maynooth, Ireland
Abstract :
The performance of parallel distributed data management systems becomes increasingly important with the rise of Big Data. Parallel joins have been widely studied both in the parallel processing and the database communities. Nevertheless, most of the algorithms so far developed do not consider the data skew, which naturally exists in various applications. State of the art methods designed to handle this problem are based on extensions to either of the two prevalent conventional approaches to parallel joins - the hash-based and duplication-based frameworks. In this paper, we introduce a novel parallel join framework, query-based distributed join (QbDJ), for handling data skew on distributed architectures. Further, we present an efficient implementation of the method based on the asynchronous partitioned global address space (APGAS) parallel programming model. We evaluate the performance of our approach on a cluster of 192 cores (16 nodes) and datasets of 1 billion tuples with different skews. The results show that the method is scalable, and also runs faster with less network communication compared to state-of-art PRPD approach in [1] under high data skew.
Keywords :
data handling; distributed memory systems; parallel programming; query processing; APGAS parallel programming model; Big Data; QbDJ; asynchronous partitioned global address space parallel programming model; data skew handling; duplication-based framework; hash-based framework; parallel distributed data management systems; parallel join processing; query-based distributed join; Arrays; Distributed databases; Histograms; Instruction sets; Parallel processing; Probes; Silicon; Distributed join; X10; data skew; high performance; parallel join;
Conference_Titel :
High Performance Computing and Communications & 2013 IEEE International Conference on Embedded and Ubiquitous Computing (HPCC_EUC), 2013 IEEE 10th International Conference on
Conference_Location :
Zhangjiajie
DOI :
10.1109/HPCC.and.EUC.2013.214