Dynamic Generation of Likely Invariants for Multithreaded Programs

Markus Kusano, Arijit Chattopadhyay, Chao Wang
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引用次数: 9

Abstract

We propose a new method for dynamically generating likely invariants from multithreaded programs.While existing invariant generation tools work well on sequential programs, they are ineffective at reasoning about multithreaded programs both in terms of the number of real invariants generated and in terms of their usefulness in helping programmers. We address this issue by developing a new dynamic invariant generator consisting of an LLVM based code instrumentation front end, a systematic thread interleaving explorer, and a customized invariant inference engine. We show that efficient interleaving exploration strategies can be used to generate a diversified set of executions with little runtime overhead. Furthermore, we show that focusing on a small subset of thread-local transition invariants is often sufficient for reasoning about the concurrency behavior of programs. We have evaluated our new method on a set of open-source multithreaded C/C++ benchmarks. Our experiments show that our method can generate invariants that are significantly higher in quality than the previous state-of-the-art.
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多线程程序可能不变量的动态生成
提出了一种从多线程程序中动态生成似然不变量的新方法。虽然现有的不变量生成工具在顺序程序上工作得很好,但就生成的实际不变量的数量和对程序员的帮助而言,它们在多线程程序的推理方面是无效的。我们通过开发一个新的动态不变量生成器来解决这个问题,该生成器由一个基于LLVM的代码插装前端、一个系统的线程交错管理器和一个定制的不变量推理引擎组成。我们展示了高效的交错探索策略,可以用很少的运行时开销来生成多样化的执行集。此外,我们表明,关注线程局部转换不变量的一小部分通常足以推断程序的并发行为。我们已经在一组开源多线程C/ c++基准测试中评估了我们的新方法。我们的实验表明,我们的方法可以生成质量明显高于以前最先进的不变量。
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