A microkernel virtual machine:: building security with clear interfaces

Xiaoqi Lu, Scott F. Smith
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引用次数: 7

Abstract

In this paper we propose a novel microkernel-based virtual machine (µKVM), a new code-based security framework with a simple and declarative security architecture. The main design goals of the µKVM are to put a clear, inviolable programming interface between different codebases or security components, and to limit the size of the trusted codebase in the spirit of a microkernel. Security policies are enforced solely on the interface because all data must explicitly pass through the inviolable interface. The architecture of the µKVM effectively removes the need for expensive runtime stack inspection, and applies the principle of least privilege to both library and application code elegantly and efficiently. We have implemented a prototype of the proposed µKVM. A series of benchmarks show that the prototype preserves the original functionality of Java and compares favorably with the J2SDK performance-wise.
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一个微内核虚拟机::构建安全与清晰的接口
在本文中,我们提出了一种新的基于微内核的虚拟机(µKVM),这是一种新的基于代码的安全框架,具有简单的声明式安全架构。µKVM的主要设计目标是在不同的代码库或安全组件之间提供一个清晰、不可侵犯的编程接口,并在微内核的精神下限制可信代码库的大小。安全策略仅在接口上执行,因为所有数据必须显式地通过不可侵犯的接口。KVM的架构有效地消除了昂贵的运行时堆栈检查的需要,并将最小特权原则优雅而高效地应用于库和应用程序代码。我们已经实现了拟议的µKVM的原型。一系列基准测试表明,原型保留了Java的原始功能,并且在性能方面优于J2SDK。
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