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Cost effective RISC core supporting the Large Sending Offload: For high communication rate up to 100 Gbps

机译:支撑大发送卸载的经济高效RISC核心:高达100 Gbps的高通信率

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The Ethernet speed has increased sending and receiving frames from 40 to 100 Gbps after the IEEE P802.3ba released. The industry and academia have focused scaling up the TCP/IP protocol processing for 40-100 Gbps. LSO is a de facto standard, which is offloaded to network interface for sending packets up to 10 Gbps. It not clears whether a network interface can support such function for new 40-100 Gbps. The widely use of the hardware-based NIC such as the use of a fully customized logic based network interface can be due to the following reasons; Still it is not clear whether the General Purpose Processor (GPP) can provide the processing required for high-speed line beyond the 10 Gbps. Also, the limit of the GPP's clock in supporting the processing of network interfaces. However, using a RISC core engine for offloading the LSO function can deliver some important features to network interfaces design, such as simplicity, scalability, shorter developing cycle time. In this paper, we have investigated using a specialized RISC core to process the LSO functions for TCP/IP and UDP/IP for high-speed communications rate up to 100 Gbps. To achieve this, we have enhanced the LSO algorithm to scale it to 100 Gbps. A fast DMA is used to support transferring data in the network interface. The LSO processing methodology on the network has presented. In addition, the RISC's performance and data movements for high communication rate up to 100 Gbps have been measured. A 148 MHz RISC core can support the sending-side processing for up to 100 Gbps transmission speed for the TCP/IP and UDP/IP protocol when the MTU is applied (1500 bytes). A DMA with 3759 MHz is required to eliminate the idle cycles while transferring data over the 64-bit local bus.
机译:在IEEE P802.3BA释放后,以太网速度增加了40到100 Gbps的发送和接收帧。该行业和学术界的重点是40-100 Gbps的TCP / IP协议处理。 LSO是一个事实样的标准,它卸载到网络接口,用于发送高达10 Gbps的数据包。它不清楚网络接口是否可以为新的40-100 Gbps提供此类功能。广泛应用于基于硬件的NIC,例如使用完全定制的基于逻辑的网络接口可能是由于以下原因;尚不清楚通用处理器(GPP)是否可以提供超出10 Gbps的高速线所需的处理。此外,GPP时钟在支持网络接口处理时的极限。但是,使用RISC核心引擎卸载LSO功能可以为网络接口设计提供一些重要的功能,例如简单,可扩展性,更短的开发周期时间。在本文中,我们使用专门的RISC核心进行了调查,以处理TCP / IP和UDP / IP的LSO功能,高速通信率高达100 Gbps。为此,我们已增强LSO算法将其扩展到100 Gbps。快速DMA用于支持在网络接口中传输数据。网络上的LSO处理方法呈现。此外,还测量了RISC的性能和高达100 Gbps的高通信率的数据变动。 148 MHz RISC核心可以在应用MTU时支持TCP / IP和UDP / IP协议的最多100 Gbps传输速度的发送端处理(1500字节)。需要使用3759 MHz的DMA来消除空闲周期,同时在64位本地总线上传输数据。

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