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AMBA AXI bus to network-on-chip bridge

机译:AMBA AXI总线到片上网络桥

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摘要

Bus architectures are a neccessity for today’s System-On-Chip (SoC) design. Current SoC design is getting more complex with additional features and functions. The bus architecure arbitration need to handle requests from multiple cores where this will ultimately becomes a bottleneck to the bus architecture performances. Most Intellectual Property (IP) designs today use bus protocol such as Advanced Microcontroller Bus Architecture (AMBA) Advanced High-performance Bus (AHB) and are facing such limitations. The ability for an IP core to be reusable in Network-on- Chip (NoC) based SoCs is highly desirable. The solution is to implement the AMBA Advanced eXtensible Interface (AXI) to NoC bridge which emulates the bus protocol and convert it to NoC protocol and vice versa, enabling quick migration of IPs cores designed for a traditional bus architecture to the NoC architecture. In this work, a busto- NoC bridge has been designed. The bus-to-NoC bridge converts the AMBA AXI bus protocol to NoC protocol and sends through NoC interface, achieving performance gain comparable to the traditional AMBA bus architectures. The advantages of busto- NoC bridge architecture includes 1. Two times performance gain in terms of latency and throughput compared to tranditional bus architectures. 2. Supports various AXI command signals such as protection unit supports information signals, Atomic operations signals, error response encoding for AXI and ordering rules signals. 3. The ability to support burst for memory access. This enables the migration of bus architectures to NoC architectures, which will likely be the future design trend.
机译:总线体系结构对于当今的片上系统(SoC)设计是必不可少的。当前的SoC设计通过附加的特性和功能变得越来越复杂。总线架构仲裁需要处理来自多个内核的请求,这最终将成为总线体系结构性能的瓶颈。当今,大多数知识产权(IP)设计都使用诸如高级微控制器总线体系结构(AMBA),高级高性能总线(AHB)之类的总线协议,并且面临此类限制。 IP核可在基于片上网络(NoC)的SoC中重用的能力是非常需要的。解决方案是将AMBA高级可扩展接口(AXI)实施到NoC桥,该桥可模拟总线协议并将其转换为NoC协议,反之亦然,从而可以将为传统总线体系结构设计的IP内核快速迁移到NoC架构。在这项工作中,设计了一个总线至NoC桥。总线到NoC的桥接器将AMBA AXI总线协议转换为NoC协议并通过NoC接口发送,从而实现了与传统AMBA总线体系结构相当的性能提升。总线到NoC桥接架构的优点包括:1.与传统总线架构相比,就延迟和吞吐量而言,性能提高了两倍。 2.支持各种AXI命令信号,例如保护单元支持信息信号,原子操作信号,AXI的错误响应编码和订购规则信号。 3.支持突发访问内存的能力。这使总线架构可以迁移到NoC架构,这很可能是未来的设计趋势。

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    Ng Keng Yoke;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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