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Service-Oriented Architecture Design for Virtualization in Network-on-Chip

机译:片上网络虚拟化的面向服务的体系结构设计

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In a conventional Network-on-Chip (NoC) system, a processing element (PE) is to serve only an application task in a fixed time interval. When an application task is allocated to a PE, the PE is thus blocked by the application, even though it is not used by the application all the time. This would lead to a waste of computing resources, which also becomes a bottleneck of performance enhancement. This work tries to solve the above issue by proposing a service-oriented architecture (SoA) design for virtualization in NoC. The proposed SoA design supports Partial Reconfigurable Region as a Service (PRRaaS) and Processing Element as a Service (PEaaS) for varying applications. According to the requirements of software applications, new PEs can be created on-demand by (re)configuring the logic resource of PRRs in the FPGA, while the configured PEs can also be virtualized to support multiple application tasks at the same time. Experimental results show that, although additional logic resources are required, the SoA design can reduce up to 47% of the total processing time required by using the conventional Hermes NoC design.
机译:在常规的片上网络(NoC)系统中,处理单元(PE)仅在固定的时间间隔内服务于一个应用任务。当将应用程序任务分配给PE时,即使应用程序并非始终使用它,PE也会因此被应用程序阻止。这将导致计算资源的浪费,这也成为性能增强的瓶颈。这项工作试图通过为NoC中的虚拟化提出面向服务的体系结构(SoA)设计来解决上述问题。拟议的SoA设计支持针对不同应用程序的部分可重配置区域即服务(PRRaaS)和处理元素即服务(PEaaS)。根据软件应用程序的要求,可以通过在FPGA中(重新)配置PRR的逻辑资源来按需创建新的PE,同时还可以虚拟化已配置的PE以同时支持多个应用程序任务。实验结果表明,尽管需要额外的逻辑资源,但使用传统的Hermes NoC设计,SoA设计最多可以减少所需总处理时间的47%。

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