对静态误差的一般诊断

Danfeng Zhang, A. Myers
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引用次数: 53

摘要

我们介绍了一种通用的方法来定位由静态分析(如类型检查)检测到的程序员错误。程序分析是用约束语言表达的,在约束语言中,错误会导致不满意的约束。给定一个不可满足的约束系统,对可满足约束和不可满足约束进行分析,以确定最可能导致不可满足的程序表达式。在假设程序员的代码基本正确的情况下,评估不同错误解释的可能性,因此选择最简单的解释,遵循贝叶斯原则。对于依赖于程序员陈述的假设的分析,诊断还可以识别可能被忽略的假设。新的错误诊断方法已经在两种非常不同的程序分析中实现:OCaml中的类型推断和Jif中的信息流检查。使用先前收集的包含错误的程序来评估该方法的有效性。结果表明,与现有的编译器和其他工具相比,通用技术可以更准确地识别程序员错误的位置。
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Toward general diagnosis of static errors
We introduce a general way to locate programmer mistakes that are detected by static analyses such as type checking. The program analysis is expressed in a constraint language in which mistakes result in unsatisfiable constraints. Given an unsatisfiable system of constraints, both satisfiable and unsatisfiable constraints are analyzed, to identify the program expressions most likely to be the cause of unsatisfiability. The likelihood of different error explanations is evaluated under the assumption that the programmer's code is mostly correct, so the simplest explanations are chosen, following Bayesian principles. For analyses that rely on programmer-stated assumptions, the diagnosis also identifies assumptions likely to have been omitted. The new error diagnosis approach has been implemented for two very different program analyses: type inference in OCaml and information flow checking in Jif. The effectiveness of the approach is evaluated using previously collected programs containing errors. The results show that when compared to existing compilers and other tools, the general technique identifies the location of programmer errors significantly more accurately.
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Session details: Verified systems Session details: Semantic models 2 Session details: Program analysis 3 Session details: Program analysis 1 Session details: Type system design
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