FLEX:用于构建高效和灵活系统的工具

J. Carter, B. Ford, Mike Hibler, R. Kuramkote, Jeffrey Law, Jay Lepreau, D. Orr, L. Stoller, M. Swanson
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引用次数: 17

摘要

现代操作系统必须为不同的用户群支持各种各样的服务。这些系统的设计者面临着功能和性能之间的权衡。像Mach这样的系统提供了一组通用的抽象,并试图处理每一种情况,这可能会导致常见情况下的性能低下。其他系统,如Unix,提供了一组抽象,可以非常高效地实现,但代价是牺牲功能。我们正在实现一个灵活的系统构建工具FLEX,它允许我们通过在运行时构建专门的模块实现来有效地支持强大的操作系统接口。FLEX通过优化进程间通信路径和重新定位服务器和客户端来减少通信开销,从而提高了现有系统的性能。这些工具将Unix系统在Mach上的调用性能提高了20-400%。此外,FLEX可以以可控的方式动态扩展内核,这使得用户程序可以访问原始操作系统实现者无法想象的特权数据和设备。
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FLEX: a tool for building efficient and flexible systems
Modern operating systems must support a wide variety of services for a diverse set of users. Designers of these systems face a tradeoff between functionality and performance. Systems like Mach provide a set of general abstractions and attempt to handle every situation, which can lead to poor performance for common cases. Other systems, such as Unix, provide a small set of abstractions that can be made very efficient, at the expense of functionality. We are implementing a flexible system building tool, FLEX, that allows us to support a powerful operating systems interface efficiently by constructing specialized module implementations at runtime. FLEX improves the performance of existing systems by optimizing interprocess communications paths and relocating servers and clients to reduce communications overhead. These facilities improve the performance of Unix system calls on Mach from 20-400%. Furthermore, FLEX can dynamically extend the kernel in a controlled fashion, which gives user programs access to privileged data and devices not envisioned by the original operating system implementor.<>
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