SymCall:通过虚拟机到客户机的上行调用实现共生虚拟化

J. Lange, P. Dinda
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引用次数: 29

摘要

共生虚拟化是一种新的系统虚拟化方法,在这种方法中,客户机操作系统像在完全系统虚拟化中一样以本机硬件接口为目标,但也有选择地公开一个软件接口,如果存在的话,VMM可以使用该软件接口来提高性能和功能。VMM和操作系统都不需要支持共生虚拟化接口才能一起工作,但如果两者都支持,则两者都受益。我们描述了SymCall共生虚拟化接口的设计和实现,该接口在我们面向现代x86机器的公开可用的Palacios VMM中。SymCall使Palacios能够将干净的同步向上调用转换为共生客户机,就像系统调用一样。symcalls的一个用途是允许在退出处理期间同步收集语义丰富的客户机数据,以便启用新的VMM特性。我们描述了SwapBypass的实现,这是一个基于SymCall的VMM服务,它可以重新考虑共生Linux客户机所做的交换决策。最后,我们给出了SwapBypass和SymCall的详细性能评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SymCall: symbiotic virtualization through VMM-to-guest upcalls
Symbiotic virtualization is a new approach to system virtualization in which a guest OS targets the native hardware interface as in full system virtualization, but also optionally exposes a software interface that can be used by a VMM, if present, to increase performance and functionality. Neither the VMM nor the OS needs to support the symbiotic virtualization interface to function together, but if both do, both benefit. We describe the design and implementation of the SymCall symbiotic virtualization interface in our publicly available Palacios VMM for modern x86 machines. SymCall makes it possible for Palacios to make clean synchronous upcalls into a symbiotic guest, much like system calls. One use of symcalls is to allow synchronous collection of semantically rich guest data during exit handling in order to enable new VMM features. We describe the implementation of SwapBypass, a VMM service based on SymCall that reconsiders swap decisions made by a symbiotic Linux guest. Finally, we present a detailed performance evaluation of both SwapBypass and SymCall.
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