Lightweight Shadow Paging for Efficient Memory Isolation in Gandalf VMM

Megumi Ito, S. Oikawa
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引用次数: 7

Abstract

Demands are increasing for consolidating multiple OSes on a single multi-core CPU rather than using multiple sets of an OS and a CPU. A VMM enables multiple guest OSes to run concurrently on one CPU while providing separate security domains. We have developed Gandalf a lightweight VMM targeting embedded systems with multi-core CPUs. This paper focuses on the shadow paging mechanism of Gandalf which enables physical memory isolation among guest OSes by separating guest page tables from CPUs, because shadow paging significantly affects VMM overheads and is a key to make a VMM lightweight. We designed and implemented two models of shadow paging, single shadow model and multiple shadow model. The measurement results show that they are realized lightweight.
在Gandalf VMM中实现高效内存隔离的轻量级阴影分页
在单个多核CPU上整合多个操作系统的需求正在增加,而不是使用多组操作系统和CPU。VMM允许多个客户机操作系统在一个CPU上并发运行,同时提供单独的安全域。我们已经开发了一款针对多核cpu嵌入式系统的轻量级VMM Gandalf。本文关注的是Gandalf的影子分页机制,它通过将客户机页表与cpu分离来实现客户机操作系统之间的物理内存隔离,因为影子分页会显著影响VMM的开销,并且是使VMM轻量级的关键。我们设计并实现了两种影子分页模型:单影子模型和多影子模型。测试结果表明,它们实现了轻量化。
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