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Scalable distributed compact trie hashing (CTH~*)

机译:可扩展的分布式紧凑Trie哈希(CTH〜*)

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This last decade, a new class of data structures named Scalable Distributed Data Structures (SDDSs), is appeared completely dedicated to a distributed environment. This type of data structures opened an important axis of research, considering that the data management in a transparent manner is fundamental in a computer network. All the existing methods are mainly based on Linear hashing (LH~*) and Range-partitioning (RP~*). In this paper, we propose a new method with the constraints of the SDDS. Our approach is an adaptation of the well-known method Trie hashing (TH) for a distributed environment, i.e. a network of interconnected computers. The latter uses a digital tree (trie) as access function. Our major objective is the distribution of file buckets and the tree representing the hashing function. We have considered TH with the tree represented in compact form (CTH) because this option is probably more interesting for the reduction of the message size circulating on the network. Contrary to the majority of the existing methods, the proposed one provides the order of distributed files, then facilitates both the range query operations and the ordered traversal of files. Moreover, the following properties make our method a promising opening towards a new class of SDDS: (a) preservation of the order of records, (b) works without multicast (c) three bytes are sufficient to address a server, (d) the transfer of some bytes is enough for the update of the client trees. The access performances should exceed the ones of traditional files and some competitive scalable and distributed data structures.
机译:在过去的十年中,一类名为可伸缩分布式数据结构(SDDS)的新型数据结构似乎完全专用于分布式环境。考虑到以透明方式进行数据管理对于计算机网络至关重要,因此这类数据结构打开了一个重要的研究方向。现有的所有方法主要基于线性哈希(LH〜*)和范围划分(RP〜*)。在本文中,我们提出了一种受SDDS约束的新方法。我们的方法是针对分布式环境(即互连计算机的网络)的著名方法Trie哈希(TH)的改编。后者使用数字树(trie)作为访问功能。我们的主要目标是文件存储区和代表哈希函数的树的分布。我们考虑将TH与以紧凑形式(CTH)表示的树一起使用,因为此选项对于减小网络上循环的消息大小可能更有趣。与大多数现有方法相反,提出的方法提供了分布式文件的顺序,然后方便了范围查询操作和文件的有序遍历。此外,以下特性使我们的方法有望向新型SDDS敞开大门:(a)保留记录顺序,(b)在没有多播的情况下工作(c)三个字节足以寻址服务器,(d)传输一些字节足以更新客户端树。访问性能应超过传统文件和某些竞争性的可伸缩和分布式数据结构。

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