资源与支持

SiFive 博客

来自 RISC-V 专家的最新洞察与深度技术解析

September 03, 2020

Randomness is Secure with SiFive Shield HCA

Building a secure foundation using the concept of randomness seems, on the surface, counter-intuitive.

As an aspect of entropy, randomness enables the generation of cryptographic methods to protect data, chips, and systems. By harnessing the nature of randomness as the basis of a secure system, it is possible to enhance the security of computer systems and protect vital information.

In July, SiFive introduced the SiFive Shield hardware cryptographic accelerator (HCA), as part of the improvements contained in the SiFive 20G1 release. The SiFive Shield HCA block consists of the necessary elements to accelerate cryptography to securely boot an SoC, protect communications, and restrict access to the debug interface.

I’m pleased to share with you that the SiFive HCA IP block includes a 100% digital true random number generator (TRNG) that has successfully passed a conformance evaluation against the stringent NIST SP-800-90B recommendation for entropy sources used for random bit generation.

The SiFive HCA TRNG is a fully-digital IP block that offers customization options for the entropy source, including customization of the entropy rate. SiFive’s selected independent partner, Penumbra Security, Inc. (Penumbra) is a NVLAP-accredited Cryptographic and Security Testing laboratory under the Cryptographic Module Validation Program (CMVP) at National Institute of Standards and Technology (NIST).

Happily, Penumbra asserts that SiFive’s method of customizing the entropy rate is effective, and demonstrated targeted entropy rates between 64.9% entropy and 92.4% entropy with the predicted entropy rates aligning with the actual entropy rates. Once integrated, the TRNG can be evaluated and certified against NIST SP-800-90C standard since through an additional SP-800-90A conditioning step enabled via SiFive software library that leverages the SiFive HCA hardware SHA/AES.

The SiFive HCA block can be added into SiFive RISC-V processor cores, alongside other SiFive Shield components such as SiFive WorldGuard. SiFive WorldGuard enables true multi-domain security with multiple hardware enforced domains available for securely processing data across the whole SoC, even in multi-core designs with many primary bus controllers. SiFive Shield is portable and scalable with broad process technology support to ensure consistency over time.

The SiFive 20G1 release with SiFive HCA block is available now. You can read more about the SiFive 20G1 release in our blog, here.

Read more Insights from the RISC-V Experts

X100 系统安全防护:RISC-V 边缘端的 AI
Blog Post
X100 系统安全防护:RISC-V 边缘端的 AI
边缘 AI 是多种技术的融合,包括人工智能、物联网、边缘计算和嵌入式系统。它们共同发挥关键作用,使智能处理和决策能够在网络边缘实现。边缘 AI 利用嵌入式算法监控远程系统的活动,并处理由传感器及其他数据采集装置收集的非结构化数据,如温度、语言、脸部、运动、图像、距离及其他模拟输入信号。
在智能加速器上构建 AI 的未来 
Blog Post
在智能加速器上构建 AI 的未来 
在之前的《本地 AI 的完美解决方案》文章中,我们介绍了 SiFive Intelligence X100 产品系列的部分高层设计理念,并展示了与其他成熟厂商的性能对比。我们还讨论了 AI 市场的快速创新,以及这如何使设计“完美”的硬件加速器变得极具挑战性。而从客户那里可以看到的是,他们希望在加速器之外配备一个可编程的前端,我们称之为加速器控制单元(ACU)。这使得客户能将更多精力(和研发支出)集中在加速器的数据处理能力上,而控制和管理功能则交由 SiFive 基于 RISC-V 的方法来实现。
赋能远端边缘的 AI 创新
Blog Post
赋能远端边缘的 AI 创新
当前行业的焦点,更多投向那些能够将数据中心 AI 性能推向更高峰的硬件技术上。在 HotChips 2025 大会期间,对超大规模计算性能提升的需求占据绝大多数议程,而功能强大的大型芯片则成为了焦点。
Got a question?

Our AI chatbot can help!

Chat Now