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System-Level Non-interference of Constant-Time Cryptography. Part Ⅰ: Model

机译:恒定时间密码学的系统级无干扰。第一部分:模型

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This work focuses on the study of constant-time implementations; giving formal guarantees that such implementations are protected against cache-based timing attacks in virtualized platforms where their supporting operating system executes concurrently with other, potentially malicious, operating systems. We develop a model of virtualization that accounts for virtual addresses, physical and machine addresses, memory mappings, page tables, translation lookaside buffer, and cache; and provides an operational semantics for a representative set of actions, including reads and writes, allocation and deallocation, context switching, and hypercalls. We prove a non-interference result on the model that shows that an adversary cannot discover secret information using cache side-channels, from a constant-time victim.
机译:这项工作专注于对固定时间实现的研究。正式保证此类实现在虚拟化平台中不受基于缓存的定时攻击的侵害,在虚拟化平台中,其支持的操作系统与其他潜在的恶意操作系统同时执行。我们开发了一种虚拟化模型,该模型考虑了虚拟地址,物理和机器地址,内存映射,页表,转换后备缓冲区和缓存;并为一组代表性动作提供了操作语义,包括读写,分配和释放,上下文切换和超级调用。我们在模型上证明了一个无干扰的结果,该结果表明对手无法使用高速缓存侧信道从恒定时间受害者中发现秘密信息。

著录项

  • 来源
    《Journal of Automated Reasoning》 |2019年第1期|1-51|共51页
  • 作者单位

    IMDEA Software Inst, Madrid, Spain;

    Univ Republica, InCo, Fac Ingn, Montevideo, Uruguay;

    Univ Republica, InCo, Fac Ingn, Montevideo, Uruguay;

    Univ Republica, InCo, Fac Ingn, Montevideo, Uruguay;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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