ARMageddon: Cache Attacks on Mobile Devices
ARMageddon: кэш-атаки на мобильные устройства
2015-11-16
SCID: 54.1/9ccmkb6x
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ARM cache attacksAndroid smartphonesFlush+ReloadPrime+Probecross-core cache attacks
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Abstract (AI)
In the last 10 years, cache attacks on Intel x86 CPUs have gained increasing attention among the scientific community and powerful techniques to exploit cache side channels have been developed. However, modern smartphones use one or more multi-core ARM CPUs that have a different cache organization and instruction set than Intel x86 CPUs. So far, no cross-core cache attacks have been demonstrated on non-rooted Android smartphones. In this work, we demonstrate how to solve key challenges to perform the most powerful cross-core cache attacks Prime+Probe, Flush+Reload, Evict+Reload, and Flush+Flush on non-rooted ARM-based devices without any privileges. Based on our techniques, we demonstrate covert channels that outperform state-of-the-art covert channels on Android by several orders of magnitude. Moreover, we present attacks to monitor tap and swipe events as well as keystrokes, and even derive the lengths of words entered on the touchscreen. Eventually, we are the first to attack cryptographic primitives implemented in Java. Our attacks work across CPUs and can even monitor cache activity in the ARM TrustZone from the normal world. The techniques we present can be used to attack hundreds of millions of Android devices.
Key Findings
1
Cache attacks can monitor touchscreen tap and swipe events, keystrokes, and even infer the lengths of words entered.
2
The attacks operate across CPUs and can monitor cache activity in ARM TrustZone from the normal world, potentially affecting hundreds of millions of Android devices.
3
The demonstrated covert channels outperform previous state-of-the-art Android covert channels by several orders of magnitude.
4
The study presents the first attacks on cryptographic primitives implemented in Java using ARM cache side channels.
5
The work enables cross-core Prime+Probe, Flush+Reload, Evict+Reload, and Flush+Flush attacks on non-rooted ARM-based Android devices without privileges.
Research Object
non-rooted ARM-based Android smartphones and their cross-core CPU caches
Research Subject
cross-core cache side-channel vulnerabilities, covert-channel performance, and inference of touchscreen input and cryptographic activity
Publication Details
Publication Date
2015-11-16
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