安全编译和超属性保存

Marco Patrignani, D. Garg
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引用次数: 41

摘要

安全编译领域的目标是设计编译器,使其生成的代码能够抵御来自低级关联组件的攻击。到目前为止,对于安全编译器还没有正式的正确性标准,并且还没有明确了解该标准实际提供了哪些安全属性。理想情况下,我们希望有这样一个标准:如果编译器实现了这个标准,那么它可以保证源语言程序的大类安全属性在编译后的程序中继续保持不变,即使编译后的程序是针对具有低级攻击能力的对手运行的。本文为安全编译器提供了一种新的正确性标准,称为跟踪保持编译(TPC)。我们证明了TPC保留了一大类安全属性,即所有的安全超属性。此外,我们还展示了TPC比完全抽象(用于安全编译的事实标准)保留了更多的属性。然后,我们证明了文献中描述的几个完全抽象的编译器满足一个额外的、共同的属性,这意味着它们也满足TPC。作为例证,我们证明了从类型化源语言到非类型化目标语言的完全抽象编译器满足TPC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secure Compilation and Hyperproperty Preservation
The area of secure compilation aims to design compilers which produce hardened code that can withstand attacks from low-level co-linked components. So far, there is no formal correctness criterion for secure compilers that comes with a clear understanding of what security properties the criterion actually provides. Ideally, we would like a criterion that, if fulfilled by a compiler, guarantees that large classes of security properties of source language programs continue to hold in the compiled program, even as the compiled program is run against adversaries with low-level attack capabilities. This paper provides such a novel correctness criterion for secure compilers, called trace-preserving compilation (TPC). We show that TPC preserves a large class of security properties, namely all safety hyperproperties. Further, we show that TPC preserves more properties than full abstraction, the de-facto criterion used for secure compilation. Then, we show that several fully abstract compilers described in literature satisfy an additional, common property, which implies that they also satisfy TPC. As an illustration, we prove that a fully abstract compiler from a typed source language to an untyped target language satisfies TPC.
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