用自动合成关系不变量证明序列逻辑的流安全性

Hyoukjun Kwon, William R. Harris, H. Esmaeilzadeh
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引用次数: 7

摘要

由于可重新编程硬件的激增,从各种来源提取的模块构建的核心设计可以直接访问关键系统资源。表达这些模块满足的保证,特别是它们释放关于其无界输入流的信息的动态条件,并自动证明它们满足这些保证,是一个开放和关键的问题。为了解决这些挑战,我们提出了一种特定于领域的语言,名为STREAMS,用于在无界输入流上表达具有解密功能的信息流策略。我们还介绍了一种名为SIMAREL的新算法,该算法给定核心设计C和STREAMS策略P,自动证明或证伪C满足P。SIMAREL设计背后的关键技术见解是一种新的算法,用于有效地综合电路执行对上的关系不变量。我们将独立设计用于研究和生产的核心的预期行为表示为STREAMS策略,并使用SIMAREL检查每个核心是否满足其策略。SIMAREL证明了一半的核心满足预期的行为,但在六个开源设计中发现了意想不到的信息泄漏:以太网控制器,闪存控制器,sd卡存储管理器,机器人控制器,数字信号处理(DSP)模块和调试接口。
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Proving Flow Security of Sequential Logic via Automatically-Synthesized Relational Invariants
Due to the proliferation of reprogrammable hardware, core designs built from modules drawn from a variety of sources execute with direct access to critical system resources. Expressing guarantees that such modules satisfy, in particular the dynamic conditions under which they release information about their unbounded streams of inputs, and automatically proving that they satisfy such guarantees, is an open and critical problem.,,To address these challenges, we propose a domain-specific language, named STREAMS, for expressing information-flow policies with declassification over unbounded input streams. We also introduce a novel algorithm, named SIMAREL, that given a core design C and STREAMS policy P, automatically proves or falsifies that C satisfies P. The key technical insight behind the design of SIMAREL is a novel algorithm for efficiently synthesizing relational invariants over pairs of circuit executions.,,We expressed expected behavior of cores designed independently for research and production as STREAMS policies and used SIMAREL to check if each core satisfies its policy. SIMAREL proved that half of the cores satisfied expected behavior, but found unexpected information leaks in six open-source designs: an Ethernet controller, a flash memory controller, an SD-card storage manager, a robotics controller, a digital-signal processing (DSP) module, and a debugging interface.
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