Many-core compiler fuzzing

Christopher Lidbury, Andrei Lascu, Nathan Chong, A. Donaldson
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引用次数: 24

Abstract

We address the compiler correctness problem for many-core systems through novel applications of fuzz testing to OpenCL compilers. Focusing on two methods from prior work, random differential testing and testing via equivalence modulo inputs (EMI), we present several strategies for random generation of deterministic, communicating OpenCL kernels, and an injection mechanism that allows EMI testing to be applied to kernels that otherwise exhibit little or no dynamically-dead code. We use these methods to conduct a large, controlled testing campaign with respect to 21 OpenCL (device, compiler) configurations, covering a range of CPU, GPU, accelerator, FPGA and emulator implementations. Our study provides independent validation of claims in prior work related to the effectiveness of random differential testing and EMI testing, proposes novel methods for lifting these techniques to the many-core setting and reveals a significant number of OpenCL compiler bugs in commercial implementations.
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多核编译器模糊测试
我们通过对OpenCL编译器进行模糊测试的新应用,解决了多核系统的编译器正确性问题。重点关注之前工作中的两种方法,随机差分测试和通过等效模输入(EMI)进行测试,我们提出了几种随机生成确定性、通信OpenCL内核的策略,以及一种注入机制,该机制允许EMI测试应用于内核,否则会显示很少或没有动态死代码。我们使用这些方法对21种OpenCL(设备、编译器)配置进行了大规模、可控的测试活动,涵盖了一系列CPU、GPU、加速器、FPGA和模拟器实现。我们的研究为之前与随机差分测试和EMI测试有效性相关的工作提供了独立的验证,提出了将这些技术提升到多核设置的新方法,并揭示了商业实现中大量的OpenCL编译器错误。
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