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Transferring Backdoors between Large Language Models by Knowledge Distillation
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Backdoor Attacks have been a serious vulnerability against Large Language Models (LLMs). However, previous methods only reveal such risk in specific models, or present tasks transferability after attacking the pre-trained phase. So, how risky is the model transferability of a backdoor attack? In this paper, we focus on whether existing mini-LLMs may be unconsciously instructed in backdoor knowledge by poisoned teacher LLMs through knowledge distillation (KD). Specifically, we propose ATBA, an adaptive transferable backdoor attack, which can effectively distill the backdoor of teacher LLMs into small models when only executing clean-tuning. We first propose the Target Trigger Generation (TTG) module that filters out a set of indicative trigger candidates from the token list based on cosine similarity distribution. Then, we exploit a shadow model to imitate the distilling process and introduce an Adaptive Trigger Optimization (ATO) module to realize a gradient-based greedy feedback to search optimal triggers. Extensive experiments show that ATBA generates not only positive guidance for student models but also implicitly transfers backdoor knowledge. Our attack is robust and stealthy, with over 80% backdoor transferability, and hopes the attention of security.
Forward citations
Cited by 3 Pith papers
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BackWeak: Backdooring Knowledge Distillation Simply with Weak Triggers and Fine-tuning
Fine-tuning a benign teacher on a weak trigger at a 100x-reduced learning rate is sufficient to make the backdoor survive knowledge distillation into student models.
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LLM in the Middle: A Systematic Review of Threats and Mitigations to Real-World LLM-based Systems
A systematic review that categorizes LLM threats, severity scores, and mitigations across development and operation life cycles and multiple deployment scenarios.
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A Survey on Backdoor Threats in Large Language Models (LLMs): Attacks, Defenses, and Evaluations
A literature review that taxonomizes LLM backdoor attacks and defenses by model construction phase, with no new experimental results.
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