Deferred concretization in symbolic execution via fuzzing

Awanish Pandey, Phani Raj Goutham Kotcharlakota, Subhajit Roy
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引用次数: 17

Abstract

Concretization is an effective weapon in the armory of symbolic execution engines. However, concretization can lead to loss in coverage, path divergence, and generation of test-cases on which the intended bugs are not reproduced. In this paper, we propose an algorithm, Deferred Concretization, that uses a new category for values within symbolic execution (referred to as the symcrete values) to pend concretization till they are actually needed. Our tool, COLOSSUS, built around these ideas, was able to gain an average coverage improvement of 66.94% and reduce divergence by more than 55% relative to the state-of-the-art symbolic execution engine, KLEE. Moreover, we found that KLEE loses about 38.60% of the states in the symbolic execution tree that COLOSSUS is able to recover, showing that COLOSSUS is capable of covering a much larger coverage space.
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通过模糊处理实现符号执行中的延迟具体化
具体化是符号执行引擎武器库中的一种有效武器。然而,具体化可能会导致覆盖率的损失、路径的发散,以及无法重现预期错误的测试用例的生成。在本文中,我们提出了一种算法,延迟具体化,它使用符号执行中的值的一个新类别(称为symcrete值)来延迟具体化,直到它们实际需要。我们的工具,COLOSSUS,建立在这些想法的基础上,能够获得66.94%的平均覆盖率提高,并且相对于最先进的符号执行引擎KLEE,能够减少超过55%的差异。此外,我们发现KLEE丢失了COLOSSUS能够恢复的符号执行树中约38.60%的状态,这表明COLOSSUS能够覆盖更大的覆盖空间。
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ISSTA '22: 31st ACM SIGSOFT International Symposium on Software Testing and Analysis, Virtual Event, South Korea, July 18 - 22, 2022 ISSTA '21: 30th ACM SIGSOFT International Symposium on Software Testing and Analysis, Virtual Event, Denmark, July 11-17, 2021 Automatic support for the identification of infeasible testing requirements Program-aware fuzzing for MQTT applications ISSTA '20: 29th ACM SIGSOFT International Symposium on Software Testing and Analysis, Virtual Event, USA, July 18-22, 2020
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