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The scalable commutativity rule: designing scalable software for multicore processors

机译:可扩展的可交换规则:为多核处理器设计可扩展的软件

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摘要

What fundamental opportunities for scalability are latent in interfaces, such as system call APIs? Can scalability opportunities be identified even before any implementation exists, simply by considering interface specifications? To answer these questions this paper introduces the following rule: Whenever interface operations commute, they can be implemented in a way that scales. This rule aids developers in building more scalable software starting from interface design and carrying on through implementation, testing, and evaluation.To help developers apply the rule, a new tool named Commuter accepts high-level interface models and generates tests of operations that commute and hence could scale. Using these tests, Commuter can evaluate the scalability of an implementation. We apply Commuter to 18 POSIX calls and use the results to guide the implementation of a new research operating system kernel called sv6. Linux scales for 68% of the 13,664 tests generated by Commuter for these calls, and Commuter finds many problems that have been observed to limit application scalability. sv6 scales for 99% of the tests.
机译:接口(例如系统调用API)中潜在的可伸缩性基本机会是什么?只需考虑接口规范,就可以在实现任何实现之前就确定可扩展性的机会吗?为了回答这些问题,本文引入了以下规则:每当接口操作上下班时,都可以按可扩展的方式实现它们。该规则可帮助开发人员从界面设计到实施,测试和评估的整个过程中构建更多可扩展的软件。为帮助开发人员应用该规则,名为Commuter的新工具将接受高级界面模型并生成通勤和测试操作的测试。因此可以扩展。使用这些测试,Commuter可以评估实现的可伸缩性。我们将Commuter应用于18个POSIX调用,并使用结果指导名为sv6的新研究操作系统内核的实现。在Commuter针对这些调用生成的13,664个测试中,Linux可扩展68%,而Commuter发现了许多已发现的问题,这些问题限制了应用程序的可伸缩性。 sv6可以进行99%的测试。

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