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D-ORAM: Path-ORAM Delegation for Low Execution Interference on Cloud Servers with Untrusted Memory

机译:D-ORAM:路径-ORAM委派,可在具有不受信任的内存的云服务器上实现低执行干扰

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Cloud computing has evolved into a promising computing paradigm. However, it remains a challenging task to protect application privacy and, in particular, the memory access patterns, on cloud servers. The Path ORAM protocol achieves high-level privacy protection but requires large memory bandwidth, which introduces severe execution interference. The recently proposed secure memory model greatly reduces the security enhancement overhead but demands the secure integration of cryptographic logic and memory devices, a memory architecture that is yet to prevail in mainstream cloud servers. In this paper, we propose D-ORAM, a novel Path ORAM scheme for achieving high-level privacy protection and low execution interference on cloud servers with untrusted memory. D-ORAM leverages the buffer-on-board (BOB) memory architecture to offload the Path ORAM primitives to a secure engine in the BOB unit, which greatly alleviates the contention for the off-chip memory bus between secure and non-secure applications. D-ORAM upgrades only one secure memory channel and employs Path ORAM tree split to extend the secure application flexibly across multiple channels, in particular, the non-secure channels. D-ORAM optimizes the link utilization to further improve the system performance. Our evaluation shows that D-ORAM effectively protects application privacy on mainstream computing servers with untrusted memory, with an improvement of NS-App performance by 22.5% on average over the Path ORAM baseline.
机译:云计算已经发展成为一种有前途的计算范例。但是,保护应用程序隐私,尤其是云服务器上的内存访问模式仍然是一项艰巨的任务。路径ORAM协议可实现高级隐私保护,但需要较大的内存带宽,这会带来严重的执行干扰。最近提出的安全内存模型极大地降低了安全性增强的开销,但是需要安全加密密码逻辑和存储设备的集成,这种存储体系结构尚未在主流云服务器中流行。在本文中,我们提出了D-ORAM,这是一种新颖的Path ORAM方案,可在具有不受信任的内存的云服务器上实现高级隐私保护和低执行干扰。 D-ORAM利用板上缓冲(BOB)内存体系结构将Path ORAM原语卸载到BOB单元中的安全引擎,从而大大缓解了安全应用程序与非安全应用程序之间的片外内存总线的争用。 D-ORAM仅升级一个安全存储通道,并采用Path ORAM树拆分来跨多个通道(特别是非安全通道)灵活扩展安全应用程序。 D-ORAM优化了链路利用率,以进一步提高系统性能。我们的评估表明,D-ORAM有效保护了具有不受信任内存的主流计算服务器上的应用程序隐私,与Path ORAM基准相比,NS-App性能平均提高了22.5%。

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