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Non-volatile memories in FPGAs: Exploiting logic similarity to accelerate reconfiguration and increase programming cycles

机译:FPGA中的非易失性存储器:利用逻辑相似性来加速重新配置并增加编程周期

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Non-volatile memory (NVM) technologies have been known for their advantages of large capacity, low energy consumption, high error-resistance, and near-zero power-on delay. It is expected that they will replace traditional SRAM as FPGA reconfigurable blocks. While NVMs promise FPGAs with more reconfigurable resources, lower power consumption, and higher resilience to power interruptions, they also impose two new design challenges: the slow write performance of NVMs may degrade FPGA reconfiguration speed, while their limited write endurance constrains FPGA programming cycles. To overcome these challenges, we propose a similarity driven approach to reduce reconfiguration cost in NVM-based FPGAs. When synthesizing a new design, its similarity to the design currently on the FPGA is characterized by taking both LUT contents and CLB-level topology into consideration. The reconfiguration cost minimization problem is formulated as a bipartite graph matching problem and solved optimally. Experiments on standard circuit benchmarks show that the proposed algorithms eliminate more than 57.4% of NVM writes during the reconfiguration process, thus effectively improving performance and endurance of NVM-based FPGAs.
机译:非易失性存储器(NVM)技术以其大容量,低能耗,高抗错误性和接近零的通电延迟等优点而闻名。预计它们将取代传统的SRAM作为FPGA可重配置模块。 NVM希望FPGA具有更多可重新配置的资源,更低的功耗和更高的电源中断恢复能力,但它们也带来了两个新的设计挑战:NVM的缓慢写入性能可能会降低FPGA的重新配置速度,而其有限的写入寿命会限制FPGA的编程周期。为了克服这些挑战,我们提出了一种相似性驱动的方法,以减少基于NVM的FPGA的重新配置成本。合成新设计时,其与FPGA上当前设计的相似之处在于要兼顾LUT内容和CLB级拓扑。将重构成本最小化问题公式化为二部图匹配问题,并对其进行了优化求解。在标准电路基准测试中的实验表明,所提出的算法在重新配置过程中消除了超过57.4%的NVM写操作,从而有效地提高了基于NVM的FPGA的性能和耐久性。

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