Isolation of Malicious External Inputs in a Security Focused Adaptive Execution Environment

Aaron M. Paulos, P. Pal, R. Schantz, B. Benyo, David Johnson, Mike Hibler, E. Eide
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引用次数: 4

Abstract

Reliable isolation of malicious application inputs is necessary for preventing the future success of an observed novel attack after the initial incident. In this paper we describe, measure and analyze, Input-Reduction, a technique that can quickly isolate malicious external inputs that embody unforeseen and potentially novel attacks, from other benign application inputs. The Input-Reduction technique is integrated into an advanced, security-focused, and adaptive execution environment that automates diagnosis and repair. In experiments we show that Input-Reduction is highly accurate and efficient in isolating attack inputs and determining casual relations between inputs. We also measure and show that the cost incurred by key services that support reliable reproduction and fast attack isolation is reasonable in the adaptive execution environment.
在以安全为重点的自适应执行环境中隔离恶意外部输入
可靠地隔离恶意应用程序输入对于防止在最初事件之后观察到的新攻击在未来成功是必要的。在本文中,我们描述,测量和分析,输入减少,一种技术,可以快速隔离包含不可预见的和潜在的新攻击的恶意外部输入,从其他良性应用程序输入。输入减少技术被集成到一个先进的、以安全为中心的、自适应的执行环境中,该环境可以自动诊断和修复。在实验中,我们证明了Input-Reduction在隔离攻击输入和确定输入之间的因果关系方面是非常准确和有效的。我们还度量并表明,在自适应执行环境中,支持可靠复制和快速攻击隔离的关键服务所产生的成本是合理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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