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A High-Performance Double-Layer Counting Bloom Filter for Multicore Systems

机译:用于多核系统的高性能双层计数布隆滤波器

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The snoopy-based protocol is a widely used cache coherence mechanism for a symmetric multiprocessor (SMP) system. However, this broadcast-based protocol blindly disseminates data sharing information across the system, and introduces many unnecessary data operations. This paper proposes a novel architecture of double-layer counting Bloom filter (DLCBF) to reduce the unnecessary data lookups on the local cache and redundant data transactions on the shared interconnection of an SMP system. By adding an extra filtering layer, the DLCBF effectively exploits the data locality of applications. The two-layer hierarchy reduces the storage size of DLCBF by 18.75%, and achieves 81.99% and 31.36% better filtering rates when compared with a classic Bloom filter (BF) and original counting BF, respectively. When applied on the segmented shared bus of an SMP system, the DLCBF outperforms the previous work by 58% for In-filters and for Out-filters. This paper also comprehensively explores the key design parameters of DLCBF, including the sizes of top-layer, bottom-layer, and multilayer design. The results show that enlarging the layer filters enhance the filtering rates of DLCBF, while adding an extra filter layer only provides slight benefit.
机译:基于探听的协议是对称多处理器(SMP)系统广泛使用的缓存一致性机制。但是,这种基于广播的协议在整个系统中盲目传播数据共享信息,并引入了许多不必要的数据操作。本文提出了一种新颖的双层计数布隆过滤器(DLCBF)架构,以减少SMP系统共享互连上的本地缓存上不必要的数据查找和冗余数据事务。通过添加额外的过滤层,DLCBF有效地利用了应用程序的数据局部性。与传统的Bloom过滤器(BF)和原始计数BF相比,两层层次结构将DLCBF的存储大小减少了18.75%,并分别实现了81.99%和31.36%的更好过滤率。当应用于SMP系统的分段共享总线上时,DLCBF对于In-filters和Out-filters的性能要比以前的工作高58%。本文还全面探讨了DLCBF的关键设计参数,包括顶层,底层和多层设计的大小。结果表明,扩大层过滤器可以提高DLCBF的过滤率,而增加额外的过滤器层则只能带来很小的好处。

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