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Improving functional density of time-critical applications using hardware-based dynamic reconfiguration and bitstream specialisation

机译:使用基于硬件的动态重新配置和比特流专用提高时间关键应用的功能密度

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The dynamic reconfiguration of an FPGA has many advantages, but the overhead from the process reduces the functional density of applications. Functional density is an indication of the composite benefits a reconfigured application obtains above its generic counterpart and measures the computational throughput per unit hardware resources. Typically, only quasi-static applications obtain a functional density advantage by dynamically reconfiguring its parameters. Contributing to the functional density reduction of applications with tight time constraints is the overhead to generate a new configuration, and the time it takes to load it onto the device. Normally these applications have to reuse their hardware numerous times between configurations before obtaining a functional density advantage. The most promising reconfiguration method to improve functional density with minimal hardware reuse was one that extracts certain characteristics from the bitstream and then implements a bitstream specialiser that generates new hardware at bit-level while the device is being reconfigured. While it was shown that this method allows reconfiguration of an application in real-time, its effect on functional density was not determined. This paper will show that a significant increase in functional density can be achieved for applications where reconfiguration is required before the next execution cycle of the application.
机译:FPGA的动态重新配置具有许多优点,但从过程中的开销降低了应用的功能密度。功能密度是复合效益的指示,重新配置的应用程序在其通用对应上方获得,并测量每个单位硬件资源的计算吞吐量。通常,只有准静态应用通过动态重新配置其参数来获得功能密度优势。有助于具有紧密时间限制的应用程序的功能密度减少是生成新配置的开销,以及将其加载到设备上所需的时间。通常,在获得功能密度优势之前,这些应用程序必须多次在配置之间重复使用它们的硬件。最有前途的重新配置方法,以提高具有最小硬件重用的功能浓度的方法是从比特流中提取某些特征的方法,然后实现在设备重新配置时在比特级生成新硬件的比特流专家。虽然显示该方法允许实时地重新配置应用,但不确定其对功能密度的影响。本文将表明,对于在应用程序的下一个执行周期之前需要重新配置的应用,可以实现功能密度的显着增加。

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