VGX: Large-Scale Sample Generation for Boosting Learning-Based Software Vulnerability Analyses
Yu Nong, Richard Fang, Guangbei Yi, Kunsong Zhao, Xiapu Luo, Feng Chen, Haipeng Cai
Abstract
Accompanying the successes of learning-based defensive software vulnerability analyses is the lack of large and quality sets of labeled vulnerable program samples, which impedes further advancement of those defenses. Existing automated sample generation approaches have shown potentials yet still fall short of practical expectations due to the high noise in the generated samples. This paper proposes VGX, a new technique aimed for large-scale generation of high-quality vulnerability datasets. Given a normal program, VGX identifies the code contexts in which vulnerabilities can be injected, using a customized Transformer featured with a new value-flowbased position encoding and pre-trained against new objectives particularly for learning code structure and context. Then, VGX materializes vulnerability-injection code editing in the identified contexts using patterns of such edits obtained from both historical fixes and human knowledge about real-world vulnerabilities. Compared to four state-of-the-art (SOTA) (i.e., pattern-, Transformer-, GNN-, and pattern+Transformer-based) baselines, VGX achieved 99.09-890.06% higher F1 and 22.45%-328.47% higher label accuracy. For in-the-wild sample production, VGX generated 150,392 vulnerable samples, from which we randomly chose 10% to assess how much these samples help vulnerability detection, localization, and repair. Our results show SOTA techniques for these three application tasks achieved 19.15-330.80% higher F1, 12.86-19.31% higher top-10 accuracy, and 85.02-99.30% higher top-50 accuracy, respectively, by adding those samples to their original training data. These samples also helped a SOTA vulnerability detector discover 13 more real-world vulnerabilities (CVEs) in critical systems (e.g., Linux kernel) that would be missed by the original model.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 7d41640f-c9e8-4864-bc96-c052ec95e087Cited by top-tier papers5
- Learning to Detect and Localize Multilingual BugsHaoran Yang, Yu Nong, Tao Zhang, Xiapu Luo et al.FSE 2024 · 8 citations
- SV-TrustEval-C: Evaluating Structure and Semantic Reasoning in Large Language Models for Source Code Vulnerability AnalysisYansong Li, Paula Branco, Alexander M. Hoole, Manish Marwah et al.S&P 2025
- APPATCH: Automated Adaptive Prompting Large Language Models for Real-World Software Vulnerability PatchingYu Nong, Haoran Yang, Long Cheng, Hongxin Hu et al.USENIX Security 2025
- NEXUS: Towards Accurate and Scalable Mapping between Vulnerabilities and Attack TechniquesEhsan Khodayarseresht, Suryadipta Majumdar, Serguei A. Mokhov, Mourad DebbabiNDSS 2026
- Exploring and Improving Real-World Vulnerability Data Generation via Prompting Large Language ModelsGuangbei Yi, Yu Nong, Minzhang Li, Haipeng CaiICSE 2026
Builds on21
- GraphCodeBERT: Pre-training Code Representations with Data FlowDaya Guo, Shuo Ren, Shuai Lu, Zhangyin Feng et al.ICLR 2021 · 1,644 citations
- CodeT5: Identifier-aware Unified Pre-trained Encoder-Decoder Models for Code Understanding and GenerationYue Wang, Weishi Wang, Shafiq R. Joty, Steven C. H. HoiEMNLP 2021 · 1,224 citations
- Vulnerability detection with fine-grained interpretationsYi Li, Shaohua Wang, Tien N. NguyenFSE 2021 · 283 citations
- Hoppity: Learning Graph Transformations to Detect and Fix Bugs in ProgramsElizabeth Dinella, Hanjun Dai, Ziyang Li, Mayur Naik et al.ICLR 2020 · 212 citations
- VulRepair: a T5-based automated software vulnerability repairMichael Fu, Chakkrit Tantithamthavorn, Trung Le, Van Nguyen et al.FSE 2022 · 206 citations
Related papers
- VULGEN: Realistic Vulnerability Generation Via Pattern Mining and Deep LearningYu Nong, Yuzhe Ou, Michael Pradel, Feng Chen et al.ICSE 2023 · 32 citations
- Generating realistic vulnerabilities via neural code editing: an empirical studyYu Nong, Yuzhe Ou, Michael Pradel, Feng Chen et al.FSE 2022 · 23 citations
- Dataflow Analysis-Inspired Deep Learning for Efficient Vulnerability DetectionBenjamin Steenhoek, Hongyang Gao, Wei LeICSE 2024 · 54 citations
- Using Safety Properties to Generate Vulnerability PatchesZhen Huang, David Lie, Gang Tan, Trent JaegerS&P 2019 · 91 citations
- CTX-Coder: Cross-Attention Architectures Empower LLMs for Long-Context Vulnerability DetectionJujie Wang, Kangfeng Zheng, Bin Wu, Chunhua Wu et al.AAAI 2026
