Leaking Information Through Cache LRU States
Wenjie Xiong, Jakub Szefer
Abstract
The Least-Recently Used cache replacement policy and its variants are widely deployed in modern processors. This paper shows for the first time in detail that the LRU states of caches can be used to leak information: any access to a cache by a sender will modify the LRU state, and the receiver is able to observe this through a timing measurement. This paper presents LRU timing-based channels both when the sender and the receiver have shared memory, e.g., shared library data pages, and when they are separate processes without shared memory. In addition, the new LRU timing-based channels are demonstrated on both Intel and AMD processors in scenarios where the sender and the receiver are sharing the cache in both hyper-threaded setting and time-sliced setting. The transmission rate of the LRU channels can be up to 600Kbps per cache set in the hyper-threaded setting. Different from the majority of existing cache channels which require the sender to trigger cache misses, the new LRU channels work with the sender only having cache hits, making the channel faster and more stealthy. This paper also demonstrates that the new LRU channels can be used in transient execution attacks, e.g., Spectre. Further, this paper shows that the LRU channels pose threats to existing secure cache designs, and this work demonstrates the LRU channels affect the secure PL cache. The paper finishes by discussing and evaluating possible defenses.
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 f94f9d19-5410-4eaa-8e56-0edb71d61cd9Cited by top-tier papers26
- DOLMA: Securing Speculation with the Principle of Transient Non-ObservabilityKevin Loughlin, Ian Neal, Jiacheng Ma, Elisa Tsai et al.USENIX Security 2021 · 94 citations
- Speculative interference attacks: breaking invisible speculation schemesMohammad Behnia, Prateek Sahu, Riccardo Paccagnella, Jiyong Yu et al.ASPLOS 2021 · 69 citations
- Prime+Scope: Overcoming the Observer Effect for High-Precision Cache Contention AttacksAntoon Purnal, Furkan Turan, Ingrid VerbauwhedeCCS 2021 · 55 citations
- Adversarial Prefetch: New Cross-Core Cache Side Channel AttacksYanan Guo, Andrew Zigerelli, Youtao Zhang, Jun YangS&P 2022 · 43 citations
- CacheQuery: learning replacement policies from hardware cachesPepe Vila, Pierre Ganty, Marco Guarnieri, Boris KöpfPLDI 2020 · 38 citations
Builds on9
- Spectre Attacks: Exploiting Speculative ExecutionPaul Kocher, Jann Horn, Anders Fogh, Daniel Genkin et al.S&P 2019 · 2,435 citations
- Meltdown: Reading Kernel Memory from User SpaceMoritz Lipp, Michael Schwarz, Daniel Gruss, Thomas Prescher et al.USENIX Security 2018 · 1,456 citations
- Sanctum: Minimal Hardware Extensions for Strong Software IsolationVictor Costan, Ilia A. Lebedev, Srinivas DevadasUSENIX Security 2016 · 649 citations
- A Systematic Evaluation of Transient Execution Attacks and DefensesClaudio Canella, Jo Van Bulck, Michael Schwarz, Moritz Lipp et al.USENIX Security 2019 · 442 citations
- ret2spec: Speculative Execution Using Return Stack BuffersGiorgi Maisuradze, Christian RossowCCS 2018 · 282 citations
Related papers
- I See Dead µops: Leaking Secrets via Intel/AMD Micro-Op CachesXida Ren, Logan Moody, Mohammadkazem Taram, Matthew Jordan et al.ISCA 2021 · 59 citations
- Exploitation of Security Vulnerability on RetirementKe Xu, Ming Tang, Quancheng Wang, Han WangHPCA 2024 · 3 citations
- Abusing Cache Line Dirty States to Leak Information in Commercial ProcessorsYujie Cui, Chun Yang, Xu ChengHPCA 2022 · 10 citations
- RELOAD+REFRESH: Abusing Cache Replacement Policies to Perform Stealthy Cache AttacksSamira Briongos, Pedro Malagón, José Manuel Moya, Thomas EisenbarthUSENIX Security 2020
- TimeCache: Using Time to Eliminate Cache Side Channels when Sharing SoftwareDivya Ojha, Sandhya DwarkadasISCA 2021 · 14 citations
