Abstract
Aegis provides users with tamper-evident, authenticated environments in which any physical or software tampering by an adversary is guaranteed to be detected, and private and authenticated tamper-resistant environments where additionally the adversary is unable to obtain any information about software or data by tampering with, or otherwise observing, system operation. aegis enables many applications, such as commercial grid computing, secure mobile agents, software licensing, and digital rights management.Preliminary simulation results indicate that the overhead of security mechanisms in aegis is reasonable. Copyright © 2014 by the Association for Computing Machinery, Inc. (ACM).We describe the architecture for a single-chip aegis processor which can be used to build computing systems secure against both physical and software attacks. Our architecture assumes that all components external to the processor, such as memory, are untrusted. We show two different implementations. In the first case, the core functionality of the operating system is trusted and implemented in a security kernel. We also describe a variant implementation assuming an untrusted operating system.
| Original language | English |
|---|---|
| Title of host publication | ICS 2014 - Proceedings of the 28th ACM InternationaI Conference on Supercomputing |
| Editors | U. Banerjee |
| Publisher | Association for Computing Machinery |
| Pages | 357-368 |
| ISBN (Electronic) | 9781450328401 |
| DOIs | |
| Publication status | Published - 10 Jun 2014 |
| Externally published | Yes |
| Event | 25th ACM International Conference on Supercomputing, ICS 2014 - Munich, Germany Duration: 10 Jun 2014 → 13 Jun 2014 |
Conference
| Conference | 25th ACM International Conference on Supercomputing, ICS 2014 |
|---|---|
| Country/Territory | Germany |
| City | Munich |
| Period | 10/06/14 → 13/06/14 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 16 Peace, Justice and Strong Institutions
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