Secure Memory Management on Modern Hardware
Almost all modern hardware, from phone SoCs to high-end servers with accelerators, contain memory translation and protection hardware like IOMMUs, firewalls, and lookup tables which make it impossible to reason about, and enforce protection and isolation based solely on the processor's MMUs. Th...
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Zusammenfassung: | Almost all modern hardware, from phone SoCs to high-end servers with
accelerators, contain memory translation and protection hardware like IOMMUs,
firewalls, and lookup tables which make it impossible to reason about, and
enforce protection and isolation based solely on the processor's MMUs. This has
led to numerous bugs and security vulnerabilities in today's system software.
In this paper we regain the ability to reason about and enforce access
control using the proven concept of a reference monitor mediating accesses to
memory resources. We present a fine-grained, realistic memory protection model
that makes this traditional concept applicable today, and bring system software
in line with the complexity of modern, heterogeneous hardware.
Our design is applicable to any operating system, regardless of architecture.
We show that it not only enforces the integrity properties of a system, but
does so with no inherent performance overhead and it is even amenable to
automation through code generation from trusted hardware specifications. |
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DOI: | 10.48550/arxiv.2009.02737 |