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Output-queued switch emulation by fabrics with limited memory

机译:具有有限内存的结构对输出排队的交换机进行仿真

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The output-queued (OQ) switch is often considered an ideal packet switching architecture for providing quality-of-service guarantees. Unfortunately, the high-speed memory requirements of the OQ switch prevent its use for large-scale devices. A previous result indicates that a crossbar switch fabric combined with lower speed input and output memory and two times speedup can exactly emulate an OQ switch; however, the complexity of the proposed centralized scheduling algorithms prevents scalability. This paper examines switch fabrics with limited memory and their ability to exactly emulate an OQ switch. The switch architecture of interest contains input queueing, fabric queueing, flow-control between the limited fabric buffers and the inputs, and output queueing. We present sufficient conditions that enable this combined input/fabric/output-queued switch with two times speedup to emulate a broad class of scheduling algorithms operating an OQ switch. Novel scheduling algorithms are then presented for the scalable buffered crossbar fabric. It is demonstrated that the addition of a small amount of memory at the crosspoints allows for distributed scheduling and significantly reduces scheduling complexity when compared with the memoryless crossbar fabric. We argue that a buffered crossbar system performing OQ switch emulation is feasible for OQ switch schedulers such as first-in-first-out, strict priority and earliest deadline first, and provides an attractive alternative to both crossbar switch fabrics and to the OQ switch architecture.
机译:输出排队(OQ)交换机通常被认为是用于提供服务质量保证的理想数据包交换体系结构。不幸的是,OQ开关对高速存储的要求使其无法用于大型设备。先前的结果表明,纵横制交换机结构结合了较低速度的输入和输出存储器以及两倍的加速比,可以准确地模拟OQ交换机。然而,所提出的集中式调度算法的复杂性阻止了可伸缩性。本文研究了内存有限的交换矩阵及其精确模拟OQ交换的能力。感兴趣的交换机体系结构包含输入队列,结构队列,有限结构缓冲区和输入之间的流控制以及输出队列。我们提出了充分的条件,以使这种组合的输入/结构/输出排队交换机能够以两倍的速度加速,以模拟操作OQ交换机的广泛调度算法。然后提出了可伸缩缓冲纵横制结构的新型调度算法。结果表明,与无记忆交叉开关结构相比,在交叉点添加少量内存可以实现分布式调度,并显着降低了调度复杂性。我们认为,执行OQ开关仿真的缓冲式交叉开关系统对于OQ开关调度程序是可行的,例如先进先出,严格优先级和最早的截止日期优先,并且为交叉开关结构和OQ开关架构提供了一种有吸引力的替代方案。

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