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    • 2. 发明授权
    • Command accumulation tool
    • 命令累积工具
    • US07313638B2
    • 2007-12-25
    • US10869338
    • 2004-06-16
    • Jonathan Wade AinLouie Arthur DickensCraig Anthony Klein
    • Jonathan Wade AinLouie Arthur DickensCraig Anthony Klein
    • G06F3/00
    • G06F11/2221
    • A command accumulation tool, a testing tool for a queue, and a method, are provided, which, for example, may cause commands to accumulate in queue(s). In one embodiment, a testing tool comprises an I/O interface for connecting with a target having the queue(s); and an I/O interface for connecting with initiator(s). Trigger logic intercepts a predetermined response at the target I/O interface from a target to an initiator with respect to a command of the initiator, and asserts a trigger signal. Outbound logic responds to the trigger signal, providing a reject and retry response at the target I/O interface for the target with respect to the response from the target, whereby a timeout timer for the command of the initiator is stopped for the queue(s). The outbound logic additionally conducts flow control with respect to the target at the target I/O interface.
    • 提供了命令累积工具,用于队列的测试工具和方法,其例如可以使命令累积在队列中。 在一个实施例中,测试工具包括用于与具有队列的目标连接的I / O接口; 以及用于与启动器连接的I / O接口。 触发逻辑相对于发起者的命令在目标I / O接口处截取从目标到发起者的预定响应,并且断言触发信号。 出站逻辑响应触发信号,针对目标的目标I / O接口提供关于目标的响应的拒绝和重试响应,从而针对队列停止启动器命令的超时定时器 )。 出站逻辑还在目标I / O接口上对目标进行流量控制。
    • 3. 发明授权
    • Power-up of device via optical serial interface
    • 通过光串行接口上​​电设备
    • US08542991B2
    • 2013-09-24
    • US13453654
    • 2012-04-23
    • Louie Arthur DickensTimothy A JohnsonCraig Anthony KleinGregg Steven LucasDaniel James Winarski
    • Louie Arthur DickensTimothy A JohnsonCraig Anthony KleinGregg Steven LucasDaniel James Winarski
    • H04B10/08H04B17/00H04B10/00H04J14/00
    • H04B10/40
    • An optical communication serial interface is employed to power up a device from a powered down state to a powered on state. An optical receiver element receives serial optical signals transmitted by at least one optical fiber and converts the received serial optical signals to electrical signals. A low level reception converter detects and decodes the electrical signals to provide data and control words from detected and decoded normal electrical signals for a high level command processor. A power supply maintains low level power to at least the optical receiver element and the low level reception converter of the optical communication serial interface while the device is in the powered down state. The low level reception converter detects a particular abnormal sequence of electrical signals; and in response to detecting the particular abnormal sequence of electrical signals, asserts a control signal to power up the device controllable power supply.
    • 采用光通信串行接口将设备从掉电状态加电到上电状态。 光接收器元件接收由至少一个光纤传输的串行光信号,并将接收到的串行光信号转换为电信号。 低电平接收转换器检测并解码电信号,以提供来自用于高级命令处理器的检测和解码的正常电信号的数据和控制字。 当设备处于掉电状态时,电源至少保持光接收器元件和光通信串行接口的低电平接收转换器的低电平功率。 低电平接收转换器检测电信号的特定异常序列; 并且响应于检测到电信号的特定异常序列,断言控制信号以使设备可控电源上电。
    • 6. 发明申请
    • SERIAL ATTACHED SCSI AND SERIAL ATA WIDE PORT TUNNELLING THROUGH A FIBRE CHANNEL CONNECTION
    • 串行连接SCSI和串行ATA宽端口隧道通过光纤通道连接
    • US20110289233A1
    • 2011-11-24
    • US13195642
    • 2011-08-01
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • G06F15/16
    • H04L12/4633
    • Network traffic encoded in a first protocol is transmitted across a first communications link, wherein the first protocol allows a first plurality of simultaneous logical connections. The transmitted network traffic is received at a first interface between the first communications link and a second communications link. The received network traffic is encapsulated within frames at the first interface, wherein the frames are generated in accordance with a second protocol, and wherein the second protocol does not allow any plurality of simultaneous logical connections that are allowed by the first protocol. The frames are transmitted from the first interface to a second interface across the second communications link. The frames are received and then unencapsulated network traffic is generated from the frames at the second interface, wherein the second interface is between the second communications link and a third communications link. The unencapsulated network traffic is routed to a selected logical connection of a second plurality of simultaneous logical connections across the third communications link, wherein transmission across the third communications link is in the first protocol.
    • 在第一通信链路中传送以第一协议编码的网络业务,其中第一协议允许第一多个同时的逻辑连接。 所发送的网络流量在第一通信链路和第二通信链路之间的第一接口处被接收。 所接收的网络流量被封装在第一接口的帧内,其中根据第二协议生成帧,并且其中第二协议不允许由第一协议允许的任何多个同时的逻辑连接。 帧通过第二通信链路从第一接口发送到第二接口。 接收帧,然后从第二接口的帧生成未封装的网络业务,其中第二接口位于第二通信链路和第三通信链路之间。 未封装的网络流量被路由到跨越第三通信链路的第二多个并行逻辑连接的选定逻辑连接,其中穿过第三通信链路的传输处于第一协议中。
    • 8. 发明授权
    • Serial attached SCSI and serial ATA wide port tunnelling through a fibre channel connection
    • 串行连接SCSI和串行ATA宽端口通过光纤通道连接隧道
    • US08516154B2
    • 2013-08-20
    • US13195642
    • 2011-08-01
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • G06F15/16
    • H04L12/4633
    • Network traffic encoded in a first protocol is transmitted across a first communications link, wherein the first protocol allows a first plurality of simultaneous logical connections. The transmitted network traffic is received at a first interface between the first communications link and a second communications link. The received network traffic is encapsulated within frames at the first interface, wherein the frames are generated in accordance with a second protocol, and wherein the second protocol does not allow any plurality of simultaneous logical connections that are allowed by the first protocol. The frames are transmitted from the first interface to a second interface across the second communications link. The frames are received and then unencapsulated network traffic is generated from the frames at the second interface, wherein the second interface is between the second communications link and a third communications link. The unencapsulated network traffic is routed to a selected logical connection of a second plurality of simultaneous logical connections across the third communications link, wherein transmission across the third communications link is in the first protocol.
    • 在第一通信链路中传送以第一协议编码的网络业务,其中第一协议允许第一多个同时的逻辑连接。 所发送的网络流量在第一通信链路和第二通信链路之间的第一接口处被接收。 所接收的网络流量被封装在第一接口的帧内,其中根据第二协议生成帧,并且其中第二协议不允许由第一协议允许的任何多个同时的逻辑连接。 帧通过第二通信链路从第一接口发送到第二接口。 接收帧,然后从第二接口的帧生成未封装的网络业务,其中第二接口位于第二通信链路和第三通信链路之间。 未封装的网络流量被路由到跨越第三通信链路的第二多个并行逻辑连接的选定逻辑连接,其中穿过第三通信链路的传输处于第一协议中。
    • 10. 发明授权
    • Serial attached SCSI and serial ATA wide port tunnelling through a fibre channel connection
    • 串行连接SCSI和串行ATA宽端口通过光纤通道连接隧道
    • US08019895B2
    • 2011-09-13
    • US12054855
    • 2008-03-25
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • Louie Arthur DickensTimothy A. JohnsonCraig Anthony KleinDaniel James Winarski
    • G06F15/16
    • H04L12/4633
    • Network traffic encoded in a first protocol is transmitted across a first communications link, wherein the first protocol allows a first plurality of simultaneous logical connections. The transmitted network traffic is received at a first interface between the first communications link and a second communications link. The received network traffic is encapsulated within frames at the first interface, wherein the frames are generated in accordance with a second protocol, and wherein the second protocol does not allow any plurality of simultaneous logical connections that are allowed by the first protocol. The frames are transmitted from the first interface to a second interface across the second communications link. The frames are received and then unencapsulated network traffic is generated from the frames at the second interface, wherein the second interface is between the second communications link and a third communications link. The unencapsulated network traffic is routed to a selected logical connection of a second plurality of simultaneous logical connections across the third communications link, wherein transmission across the third communications link is in the first protocol.
    • 在第一通信链路中传送以第一协议编码的网络业务,其中第一协议允许第一多个同时的逻辑连接。 所发送的网络流量在第一通信链路和第二通信链路之间的第一接口处被接收。 所接收的网络流量被封装在第一接口的帧内,其中根据第二协议生成帧,并且其中第二协议不允许由第一协议允许的任何多个同时的逻辑连接。 帧通过第二通信链路从第一接口发送到第二接口。 接收帧,然后从第二接口的帧生成未封装的网络业务,其中第二接口位于第二通信链路和第三通信链路之间。 未封装的网络流量被路由到跨越第三通信链路的第二多个并行逻辑连接的选定逻辑连接,其中穿过第三通信链路的传输处于第一协议中。