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AIM: Fast and energy-efficient AES in-memory implementation for emerging non-volatile main memory

机译:目的:用于新兴的非易失性主存储器的快速和节能AES内存实现

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Non-volatile main memory-based systems pose an opportunity for an attacker to readily access sensitive information on the memory because of its long retention time. While real-time memory encryption with dedicated AES engine can address this vulnerability, it incurs extra performance and energy overheads. As an alternative, we propose an AES in-memory implementation, AIM, to encrypt the whole/part of the memory only when it is necessary. We leverage the benefits offered by the inmemory computing architecture to address the challenges of the bandwidth intensive encryption application. We take advantage of NVM's intrinsic logic operation capability to implement the AES task. Embracing the massive parallelism inside the memory, AIM outperforms existing mechanisms with higher throughput yet lower energy consumption. Compared with state-of-the-art AES engine running at 2.1GHz, AIM can speed up the encryption process by 80 χ for a 1GB NVM.
机译:基于非易失性的主要内存系统构成了攻击者因其长期保留时间而易于访问内存的敏感信息的机会。虽然使用专用AES引擎的实时内存加密可以解决此漏洞,但它会引发额外的性能和能量开销。作为替代方案,我们提出了一种内存的实现,目的,仅在需要时加密整个/部分内存。我们利用InmeMory计算架构提供的福利来解决带宽密集加密应用的挑战。我们利用NVM的内在逻辑操作能力来实现AES任务。在记忆中拥抱巨大的并行性,目标优于具有较高吞吐量的现有机制较低的能量消耗。与在2.1GHz运行的最先进的AES发动机相比,AIM可以将加密过程加速80次,用于1GB NVM。

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