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Crossbar switch employing computer mutual coupling coupler

机译:采用计算机互耦耦合器的纵横开关

摘要

A computer interconnect coupler has a set of junctors which are assigned to channel transmitters and channel receivers for the routing of messages from the channel receivers which are addressed to the channel transmitters. When a message is received by a channel receiver, the channel receiver stores the beginning portion of the message in a first-in-first-out buffer, and sends a route message request to central switch logic. If the destination transmitter or receiver is busy, the central logic places the message request on a destination queue and returns a signal to the requesting source transmitter to turn on a flow control signal which is transmitted back to the data processing device having originated the message. Any message addressed to this data processing device, however, is inserted into the flow control carrier with pauses both before and after the message, and provisions are also made to allow the data processing device to return an acknowledgment code responsive to the incoming message. To permit incremental expansion of the coupler to accommodate an increased number of channels, additional channel interface boards may be added and a hierarchical rotating priority scheme enables the additional channels to have equal priority with the previously existing channels without requiring programming. Moreover, the processing and queuing of routing requests is made more effective by grouping the requests into different priority levels and using separate but duplicate arbitration logic to resolve simultaneous requests within the same priority group. The coupler also includes a plurality of timers which determine fault conditions, and a diagnostic processor monitors the timers and associated error flags to diagnose faults to the board level. The conditions existing at the time of fault diagnosis are written into a non-volatile memory located on the circuit board. Therefore, the information is physically carried along with the board to the repair facility.
机译:计算机互连耦合器具有一组连接器,这些连接器分配给信道发送器和信道接收器,用于路由来自信道接收器的,寻址到信道发送器的消息。当通道接收器收到消息时,通道接收器将消息的开始部分存储在先进先出缓冲区中,然后将路由消息请求发送到中央交换逻辑。如果目的地发送器或接收器忙,则中央逻辑将消息请求放置在目的地队列上,并向请求源发送器返回信号,以打开流控制信号,该流控制信号被发送回发起消息的数据处理设备。然而,发给该数据处理设备的任何消息都在消息之前和之后都带有暂停地插入到流控制载体中,并且还做出规定以允许数据处理设备响应于传入消息而返回确认代码。为了允许耦合器的增量扩展以容纳更多数量的通道,可以添加其他通道接口板,并且分层旋转优先级方案使其他通道能够与先前存在的通道具有相同的优先级,而无需编程。此外,通过将请求分组到不同的优先级级别,并使用单独但重复的仲裁逻辑来解决同一优先级组中的同时请求,路由请求的处理和排队会更加有效。耦合器还包括多个确定故障状况的计时器,诊断处理器监视计时器和相关的错误标志,以将故障诊断为板级。故障诊断时存在的条件将被写入电路板上的非易失性存储器中。因此,该信息与电路板一起物理地运送到维修机构。

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