新型网络化I/O体系结构中数据传输的性能方面

C. Taylor, J. Pasquale
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引用次数: 1

摘要

我们展示了一种新的分布式I/O软件架构的性能结果,该架构支持远程应用程序与本地I/O设备交互。该体系结构强调网络透明性和易于定制/可扩展性,以支持各种应用程序和设备的巨大不同需求,这些需求可以从远程I/O中受益。网络I/O是通过网络设备驱动程序实现的,该驱动程序被分成两部分,分别位于网络的两侧。一个I/O流在一端发出,在另一端接收,可以通过一组流水线转换模块进行修改。每个模块都是成对的,在网络的两端各有一个模块,通常一端执行一些操作,另一端执行相应的操作,例如对数据格式进行编码和解码,或者暂停和恢复消息的发送。由于转换模块的配对特性,系统能够支持以各种方式修改I/O流,以补偿网络问题(远程I/O的关键问题之一),同时对应用程序保持透明。我们表明,即使使用几乎完全在用户级别(即,在操作系统之外)操作的实现,也可以实现足以满足高强度I/O的良好性能水平,无论是在效率还是吞吐量方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Aspects of Data Transfer in a New Networked I/O Architecture
We present performance results of a new distributed I/O software architecture to support remote applications interacting with local I/O devices. The architecture emphasizes network transparency and ease of customization/extensibility in support of the vastly different needs of various applications and devices that can benefit from remote I/O. Networked I/O is achieved via a networked device driver that is split into two parts, one on each side of the network. An I/O stream that is sourced at one end and sinked at the other may be modified by a set of pipelined transformation modules. Each module comes in a pair, one on each side of the network, with one side typically applying some operation and the other side applying a corresponding one, such as encoding and decoding the format of the data or pausing and resuming the sending of messages. Because of the paired nature of transformation modules, the system is capable of supporting the modification of the I/O stream in a variety of ways to compensate for network issues, one of the key problems of remote I/O, while remaining transparent to the application. We show that even with an implementation that operates almost entirely at user level (i.e., outside the operating system), good levels of performance that are adequate for even high intensity I/O, both in terms of efficiency and throughput, can be achieved.
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