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    • 2. 发明授权
    • Method to synchronize and upload an offloaded network stack connection with a network stack
    • 与网络堆栈同步并上传卸载的网络堆栈连接的方法
    • US07171489B2
    • 2007-01-30
    • US11047479
    • 2005-01-31
    • James PinkertonAbolade GbadegesinSanjay KaniyarNK Srinivas
    • James PinkertonAbolade GbadegesinSanjay KaniyarNK Srinivas
    • G06F15/173G06F15/16
    • H04L69/16H04L69/10H04L69/161H04L69/166H04L69/32
    • A method to synchronize and upload an offloaded network stack connection between a host network stack and processing device is presented. A state object for each layer in the stack is sent to the device that includes state variables that are classified as a constant, a cached variable handled by the host, or a delegated variable handled by the device. State that must be updated by the network stack and the processing device is cleanly divided. For example, statistics are tracked by the host, the device, or the host and the device. A statistic tracked by both the host and processing device is divided into non-overlapping portions and combined to produce the statistic. Once an upload is initiated, the device achieves a consistent state and hands delegated states to the stack. Each layer in the stack takes control of its delegated state and resources at the device are freed.
    • 提出了一种在主机网络堆栈和处理设备之间同步和上传卸载的网络堆栈连接的方法。 堆栈中的每个层的状态对象被发送到包含状态变量的设备,该状态变量被分类为常数,由主机处理的缓存变量,或由设备处理的委托变量。 必须由网络堆栈和处理设备更新的状态是干净的。 例如,主机,设备或主机和设备跟踪统计信息。 由主机和处理设备跟踪的统计量被划分为不重叠的部分并组合以产生统计。 一旦上传被启动,设备实现一致的状态,并将委托状态指派给堆栈。 堆栈中的每个层都控制其委托状态,并释放设备上的资源。
    • 10. 发明申请
    • Computer system with black hole management
    • 电脑系统黑洞管理
    • US20070253335A1
    • 2007-11-01
    • US11412612
    • 2006-04-27
    • Deepak BansalSanjay KaniyarXinyan Zan
    • Deepak BansalSanjay KaniyarXinyan Zan
    • H04J3/14
    • 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。