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Content Provider | ACM Digital Library |
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Author | Kaya, Kamer Çatalyürek, Ümit V. Sariyüce, Ahmet Erdem Saule, Erik |
Abstract | The betweenness centrality metric has always been intriguing for graph analyses and used in various applications. Yet, it is one of the most computationally expensive kernels in graph mining. In this work, we investigate a set of techniques to make the betweenness centrality computations faster on GPUs as well as on heterogeneous CPU/GPU architectures. Our techniques are based on virtualization of the vertices with high degree, strided access to adjacency lists, removal of the vertices with degree 1, and graph ordering. By combining these techniques within a fine-grain parallelism, we reduced the computation time on GPUs significantly for a set of social networks. On CPUs, which can usually have access to a large amount of memory, we used a coarse-grain parallelism. We showed that heterogeneous computing, i.e., using both architectures at the same time, is a promising solution for betweenness centrality. Experimental results show that the proposed techniques can be a great arsenal to reduce the centrality computation time for networks. In particular, it reduces the computation time of a 234 million edges graph from more than 4 months to less than 12 days. |
Starting Page | 76 |
Ending Page | 85 |
Page Count | 10 |
File Format | |
ISBN | 9781450320177 |
DOI | 10.1145/2458523.2458531 |
Language | English |
Publisher | Association for Computing Machinery (ACM) |
Publisher Date | 2013-03-16 |
Publisher Place | New York |
Access Restriction | Subscribed |
Subject Keyword | Betweenness Graph compression Gpus Shared memory parallelism Heterogeneous computing Virtual vertices |
Content Type | Text |
Resource Type | Article |
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