《建筑保安规例》

IF 1.4 3区 计算机科学 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Adam Hastings;Ryan Piersma;Simha Sethumadhavan
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引用次数: 0

摘要

世界各地的政府都在制定法规,目的是改善计算机安全状况。在本文中,我们提出了如何在体系结构层面制定和实施安全法规。我们的建议称为FAIRSHARE,要求架构师将预先确定的一部分系统资源(例如,执行周期)用于安全性,但将如何以及在何处花费该预算的决定留给这些系统的架构师。我们将讨论如何提高安全性,并概述实现此类解决方案所需的关键体系结构支持。我们的工作是第一个在建筑和法规的交叉点工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architectural Security Regulation
Across the world, governments are instituting regulations with the goal of improving the state of computer security. In this paper, we propose how security regulation can be formulated and implemented at the architectural level. Our proposal, called FAIRSHARE, requires architects to spend a pre-determined fraction of system resources (e.g., execution cycles) towards security but leaves the decision of how and where to spend this budget up to the architects of these systems. We discuss how this can elevate security and outline the key architectural support necessary to implement such a solution. Our work is the first work at the intersection of architecture and regulation.
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来源期刊
IEEE Computer Architecture Letters
IEEE Computer Architecture Letters COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
CiteScore
4.60
自引率
4.30%
发文量
29
期刊介绍: IEEE Computer Architecture Letters is a rigorously peer-reviewed forum for publishing early, high-impact results in the areas of uni- and multiprocessor computer systems, computer architecture, microarchitecture, workload characterization, performance evaluation and simulation techniques, and power-aware computing. Submissions are welcomed on any topic in computer architecture, especially but not limited to: microprocessor and multiprocessor systems, microarchitecture and ILP processors, workload characterization, performance evaluation and simulation techniques, compiler-hardware and operating system-hardware interactions, interconnect architectures, memory and cache systems, power and thermal issues at the architecture level, I/O architectures and techniques, independent validation of previously published results, analysis of unsuccessful techniques, domain-specific processor architectures (e.g., embedded, graphics, network, etc.), real-time and high-availability architectures, reconfigurable systems.
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