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    • 9. 发明授权
    • Computer system with black hole management
    • 电脑系统黑洞管理
    • US07697441B2
    • 2010-04-13
    • US11412612
    • 2006-04-27
    • Deepak BansalSanjay N. KaniyarXinyan Zan
    • Deepak BansalSanjay N. KaniyarXinyan Zan
    • H04L1/00
    • H04L43/10H04L41/06H04L43/0811
    • A computer system with black hole management. The black hole management system shares black hole status information among connections that employ the same path. The black hole status information may indicate either that a black hole exists on the path or that communications have been performed successfully on the path, indicating that no black hole exists. By sharing this information, delays in transmission caused by black hole probing may be reduced. Additionally, status information for a connection is reset when information indicates that the connection has been altered. By resetting the status information, delays in transmission associated with sending reduced sized packets over connections for which black holes were previously detected but may have been eliminated by changes in the connection, are avoided.
    • 具有黑洞管理的电脑系统。 黑洞管理系统在采用相同路径的连接之间共享黑洞状态信息。 黑洞状态信息可以指示路径上存在黑洞或者在路径上成功执行通信,表示没有黑洞存在。 通过分享这些信息,黑洞探测引起的传输延迟可能会降低。 另外,当信息指示连接被更改时,连接的状态信息被重置。 通过重置状态信息,避免了在先前检测到黑洞但可能已经通过连接变化消除的连接上发送减小尺寸的分组的传输延迟。
    • 10. 发明申请
    • TRANSPARENT AUTO-DISCOVERY OF NETWORK DEVICES LOGICALLY LOCATED BETWEEN A CLIENT AND SERVER
    • 网络设备的透明自动发现位于客户端和服务器之间
    • US20130013805A1
    • 2013-01-10
    • US13615844
    • 2012-09-14
    • Murari SridharanDeepak BansalEran YarivRonen BarenboimMaxim StepinAlexander Malvsh
    • Murari SridharanDeepak BansalEran YarivRonen BarenboimMaxim StepinAlexander Malvsh
    • G06F15/16
    • H04L69/16H04L69/163
    • Discovery of intermediate network devices is performed using a technique that piggybacks upon the existing standard TCP (Transport Control Protocol) “SACK” (Selective Acknowledgment) option in a SYN/ACK packet so that discovery information may be shared between pair-wise-deployed peer intermediate devices when a TCP/IP connection (Transport Control Protocol/Internet Protocol) is first established between network endpoints using a conventional three-way handshake. Use of the SACK option is combined with another technique which comprises modifying the original 16-bit value of the TCP receive window size to a special arbitrary value to mark a SYN packet as being generated by a first peer device. The marked SYN when received by the second peer device triggers that device's discovery information to be piggybacked in the SACK option of the SYN/ACK packet. The first device then piggybacks its discovery information in the SACK option of the ACK packet which completes the three-way handshake.
    • 使用在SYN / ACK分组中搭载现有标准TCP(传输控制协议)SACK(选择性确认)选项的技术来执行中间网络设备的发现,使得发现信息可以在成对部署的对等中间设备之间共享 当使用传统的三次握手在网络端点之间首先建立TCP / IP连接(传输控制协议/因特网协议)时。 使用SACK选项与另一种技术相结合,其中包括将TCP接收窗口大小的原始16位值修改为特殊任意值,以将SYN分组标记为由第一对等设备生成。 标记的SYN在第二个对等设备接收时触发该设备的发现信息被捎带在SYN / ACK数据包的SACK选项中。 然后,第一个设备在ACK包的SACK选项中搭载其发现信息,完成三次握手。