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Idetic: A high-level synthesis approach for enabling long computations on transiently-powered ASICs

机译:Idetic:一种高级综合方法​​,可在瞬态供电的ASIC上进行长时间计算

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We develop Idetic, a set of mechanisms to enable long computations on ultra-low power Application Specific Integrated Circuits (ASICs) with energy harvesting sources. We address the power transiency and unpredictability problem by optimally inserting checkpoints. Idetic targets highlevel synthesis designs and automatically locates and embeds the checkpoints at the register-transfer level. We define an objective function that aims to find the checkpoints which incur minimum overhead and minimize recomputation energy cost. We develop and exploit a dynamic programming technique to solve the optimization problem. For real time operation, Idetic adaptively adjusts the checkpointing rate based on the available energy level in the system. Idetic is deployed and evaluated on cryptographic benchmark circuits. The test platform harvests RF power through an RFID-reader and stores the energy in a 3.3μF capacitor. For storage of checkpointed data, we evaluate and compare the effectiveness of various non-volatile memories including NAND Flash, PCM, and STTM. Extensive evaluations show that Idetic reliably enables execution of long computations under different source power patterns with low overhead. Our benchmark evaluations demonstrate that the area and energy overheads corresponding to the checkpoints are less than 5% and 11% respectively.
机译:我们开发了Idetic,这是一套机制,可以对具有能量收集源的超低功耗专用集成电路(ASIC)进行长时间的计算。我们通过最佳地插入检查点来解决电源瞬态和不可预测性问题。 Idetic面向高级综合设计,并在寄存器传输级别自动定位和嵌入检查点。我们定义了一个目标函数,旨在找到产生最小开销并最小化重新计算能源成本的检查点。我们开发和利用动态编程技术来解决优化问题。对于实时操作,Idetic根据系统中的可用能量水平自适应地调整检查点率。在密码基准电路上部署和评估Idetic。该测试平台通过RFID阅读器收集RF功率,并将能量存储在3.3μF电容器中。对于存储检查点数据,我们评估并比较了各种非易失性存储器(包括NAND闪存,PCM和STTM)的有效性。广泛的评估表明,Idetic能够以低开销在不同的源功率模式下可靠地执行长计算。我们的基准评估表明,与检查点相对应的面积和能源开销分别小于5%和11%。

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