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Properties and performance of the block shift network

机译:区块移动网络的性质和性能

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As an interconnection network, hypercube topology offers certain advantages such as high data bandwidth and low message latency to achieve computational efficiency. However, a significant drawback of this topology is that the number of ports per node increases with the number of nodes. In addition, in many applications not all the links are used equally frequently, and links on certain dimensions may be idle most of the time during a computation. This suggests that we can provide connections over certain dimensions only to reduce the number of links and can still attain comparable performance. In this paper, we propose a new network, called the Block Shift Network (BSN), for constructing very large multicomputer systems for efficient parallel processing. The network is defined through a pair of parameters and cost and performance of a BSN can be controlled by carefully selecting appropriate parameters defining the network. Actually, many popular networks such as the hypercube, the shuffle-exchange, and the complete networks are instances of the BSN. The topological properties of the BSN with different parameters are analyzed and compared with those of existing popular networks. Basic data movement operations on the BSN are also designed and analyzed. The results show that the BSN with certain parameters can surpasses the hypercube in several respects while retaining most of its advantages, especially when the traffic has the locality property
机译:作为一个互连网络,超立方体拓扑提供了某些优势,例如高数据带宽和低消息延迟,以实现计算效率。但是,此拓扑的显着缺点是每个节点的端口数随节点数的增加而增加。另外,在许多应用中,并非所有链接都被同样频繁地使用,并且某些尺寸的链接在计算过程中大部分时间可能是空闲的。这表明我们可以提供一定尺寸的连接,只是为了减少链接数量,并且仍然可以达到可比的性能。在本文中,我们提出了一种新的网络,称为块移位网络(BSN),用于构造非常大型的多计算机系统以进行有效的并行处理。通过一对参数定义网络,并且可以通过仔细选择定义网络的适当参数来控制BSN的成本和性能。实际上,许多流行的网络(例如超立方体,随机交换和完整的网络)都是BSN的实例。分析了具有不同参数的BSN的拓扑特性,并将其与现有流行网络的拓扑特性进行了比较。还设计和分析了BSN上的基本数据移动操作。结果表明,具有一定参数的BSN可以在很多方面超过超立方体,同时保留其大部分优势,特别是在具有局部性的情况下。

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