These and some other resources are listed on the useful links page. To learn more about fuzzing in general, we recommend reading libFuzzer tutorial and the other docs in google/fuzzing repository. This documentation describes how to use OSS-Fuzz service for your open source project. OSS-Fuzz supports fuzzing x86_64 and i386 builds. Other languages supported by LLVM may work too. We support the libFuzzer, AFL++, Honggfuzz, and Centipede fuzzing engines in combination with Sanitizers, as well as ClusterFuzz, a distributed fuzzer execution environment and reporting tool.Ĭurrently, OSS-Fuzz supports C/C++, Rust, Go, Python and Java/JVM code. closed source) can run their own instances of ClusterFuzz or ClusterFuzzLite. Projects that do not qualify for OSS-Fuzz (e.g. In cooperation with the Core Infrastructure Initiative and the OpenSSF, OSS-Fuzz aims to make common open source software more secure and stable by combining modern fuzzing techniques with scalable, distributed execution. Google has found thousands of security vulnerabilities and stability bugs by deploying guided in-process fuzzing of Chrome components, and we now want to share that service with the open source community. Many of these detectable errors, like buffer overflow, can have serious security implications. Fuzz testing is a well-known technique for uncovering programming errors in software.
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