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Efficient multicast support in large IP routers

机译:大型IP路由器中有效的多播支持

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We investigate techniques for the support of multicast traffic in IP routers that have a large number of switch fabric ports (from 128 to 1024) and internally operate on relatively small fixed-size data units (cells of 64 bytes each). In small packet switches, multicast traffic is typically handled by prepending a local multicast label (LML) to each cell. The LML consists of a bitmap with as many bits as switch ports. The bitmap identifies the set of ports to which copies of the cell must be transferred. The bItmap approach is no longer feasible in switches with 128 ports or more, where the LML length cannot be smaller than 16 bytes, an intolerable overhead when the internal cell payload is only 64 bytes. We devise several compression algorithms, both static and adaptive, to reduce the size of the LML's to be attached to multicast cells. The algorithms define compressed representations of the distribution sets of the multicast cells, trading the additional bandwidth needed to transfer redundant cell copies (i.e., copies directed to outputs that do not belong to the actual distribution sets) for the cell header overhead otherwise needed to deliver the cells only to the proper outputs. We use simulation experiments to compare the performance of the compression algorithms.
机译:我们研究了具有大量交换机结构端口(从128到1024)的IP路由器中的多播流量支持的技术,并且在相对较小的固定尺寸数据单元上内部运行(每个64字节的单元)。在小型数据包交换机中,多播流量通常通过将本地多播标签(LML)进行到每个单元格来处理。 LML由位图组成,具有与交换机端口一样多的位。位图标识必须传输单元格的副本的端口集。位图方法在具有128个端口或更多的交换机中不再可行,其中LML长度不能小于16个字节,当内部单元有效载荷仅为64字节时,无法静电开销。我们设计了几种压缩算法,静态和自适应,以减小LML的大小附加到多播单元格。该算法定义了多播单元的分布集的压缩表示,交易传输传输冗余小区副本所需的附加带宽(即,指向不属于实际分配集的输出的副本),用于小区报头展示需要交付仅对适当的输出电池。我们使用模拟实验来比较压缩算法的性能。

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