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Towards Inter-Vendor Compatibility of True Random Number Generators for FPGAs

机译:朝着FPGA的真实随机数发生器的供应商兼容性

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True random number generators (TRNGs) are fundamental constituents of secure embedded cryptographic systems. In this paper, we introduce a general methodology for porting TRNG across different FPGA vendor families. In order to demonstrate our methodology, we applied it to the delay-chain based TRNG (DC-TRNG) on Intel Cyclone IV and Cyclone V FPGAs. We examine vendor-agnostic generality of the underlying DC-TRNG principle and propose modifications to address differences in structure of FPGAs. Implementation of the DC-TRNG on Cyclone IV uses 149 LEs (<0.1% of available resources) and has a throughput of 5Mbps, while on Cyclone V it occupies 230 ALMs (<1.5% of resources) with an output rate of 12.5 Mbps. The quality of the random bits produced by the DC-TRNG on Intel Cyclone IV and V is further confirmed by using NIST statistical test suite.
机译:真正的随机数发生器(TRNG)是安全嵌入式加密系统的基本成分。在本文中,我们介绍了在不同FPGA供应商家庭中移植TRNG的一般方法。为了证明我们的方法,我们将其应用于Intel Cyclone IV和Cyclone V FPGA上的基于延迟链的TRNG(DC-TRNG)。我们研究了潜在的DC-TRNG原理的供应商 - 不可知的一般性,并提出了解决FPGA结构差异的修改。 Cyclone IV上的DC-TRNG的实现使用149 LES(<0.1%的可用资源)并具有5Mbps的吞吐量,而在Cyclone V上,它占用230个施用(资源的<1.5%),输出率为12.5 Mbps。通过使用NIST统计测试套件进一步证实了由Intel Cyclone IV和V上的DC-TRNG产生的随机位的质量。

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