CRISP: Confidentiality, Rollback, and Integrity Storage Protection for Confidential Cloud-Native Computing

Ardhi Putra Pratama Hartono, Andrey Brito, Christof Fetzer
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Abstract

Trusted execution environments (TEEs) protect the integrity and confidentiality of running code and its associated data. Nevertheless, TEEs' integrity protection does not extend to the state saved on disk. Furthermore, modern cloud-native applications heavily rely on orchestration (e.g., through systems such as Kubernetes) and, thus, have their services frequently restarted. During restarts, attackers can revert the state of confidential services to a previous version that may aid their malicious intent. This paper presents CRISP, a rollback protection mechanism that uses an existing runtime for Intel SGX and transparently prevents rollback. Our approach can constrain the attack window to a fixed and short period or give developers the tools to avoid the vulnerability window altogether. Finally, experiments show that applying CRISP in a critical stateful cloud-native application may incur a resource increase but only a minor performance penalty.
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CRISP:为机密云原生计算提供机密性、回滚和完整性存储保护
可信执行环境(TEE)可保护运行代码及其相关数据的完整性和保密性。然而,TEEs 的完整性保护并不包括保存在磁盘上的状态。此外,现代云原生应用在很大程度上依赖于协调(例如,通过 Kubernetes 等系统),因此其服务会频繁重启。在重启过程中,攻击者可以将机密服务的状态恢复到以前的版本,这可能有助于他们的恶意意图。本文介绍的 CRISP 是一种回滚保护机制,它使用英特尔 SGX 的现有运行时,以透明方式防止回滚。我们的方法可以将攻击窗口限制在一个固定而短暂的时间段内,或者为开发人员提供完全避免漏洞窗口的工具。最后,实验表明,在关键的有状态云原生应用中应用 CRISP 可能会导致资源增加,但只有轻微的性能损失。
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