Perturbation analysis of computer programs

L. Morell, B. Murrill, Renata Rand
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引用次数: 13

Abstract

Error flow analysis is the study of how errors originate, spread, and propagate during program execution based on the three steps of the fault/failure model: execution, infection, and propagation. These three steps are defined relative to a virtual computer-by judiciously selecting the instruction set and data state of this computer the need for infection analysis can be reduced or eliminated in favor of execution and propagation analysis. A key aspect of propagation analysis is injecting errors into the data state and tracing their expect. Perturbation analysis injects errors by directly modifying the data state of on executing program. The resulting code that is executed-the tail code-is analyzed for its error-flow behavior. Perturbation analysis is a language-independent and efficient method of characterizing the propagation rate of each tail function, the function computed by all tail code originating at a given location. This paper defines a model for perturbation analysis, and uses the model to explain the performance of analysis techniques (e.g. statement, data flow, and mutation analysis).
计算机程序的摄动分析
错误流分析是基于故障/故障模型的三个步骤:执行、感染和传播,研究错误在程序执行期间如何产生、传播和传播。这三个步骤是定义相对于虚拟的计算机明智地选择这台计算机的指令集和数据状态可以减少或消除感染的必要性分析的执行和传播分析。传播分析的一个关键方面是将错误注入数据状态并跟踪它们的预期。摄动分析通过直接修改一个正在执行的程序的数据状态来注入错误。分析执行的结果代码(尾部代码)的错误流行为。微扰分析是一种独立于语言的有效方法,用于表征每个尾函数的传播速率,该函数由所有尾代码在给定位置产生计算。本文定义了一个微扰分析模型,并用该模型来解释分析技术(如语句、数据流和突变分析)的性能。
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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