iPSC/860和iPSC/2的并行双向通信

S. Seidel, Ming-Homg Lee, S. Fotedar
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引用次数: 31

摘要

英特尔iPSCI2和iPSCl860的每个节点都可以并发双向通信,即每个节点都可以同时发送和接收消息。但是,由长消息通信协议创建的链路争用通常会干扰这种并发性来源,从而浪费了通信网络总容量的一半。这种干扰可以通过同步通信对节点来克服。通过利用这种方法,与通常实现的成本相比,算法的成本(用于简单交换、一对所有广播、所有对所有广播和完整交换操作的成本)可以显著降低。这些通信问题的算法性能测量支持这些观察结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concurrent Bidirectional Communication On The Intel iPSC/860 And iPSC/2
Each node of the Intel iPSCI2 and iPSCl860 is capable of concurrent bidirectional communication, that is, each node can concurrently send and receive a message. However, link contention created by the long message communication protocol usually interferes with this source of concurrency so that half of the total capacity of the communication network is wasted. This intelference can be overcome by synchronizing communicating pairs of nodes. The cost of algorith,ms for the simple exchange, the one-to-all broadcast, the allto-all broadcast, and the complete exchange operations can be significantly reduced, compared to the cost of their usual implementations, by exploiting this approach. Performance measurements of algorithms for these communication problems support these observations.
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