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    • 3. 发明申请
    • Truth on client persistent caching
    • 客户端持久缓存的真相
    • US20050102370A1
    • 2005-05-12
    • US10692221
    • 2003-10-23
    • Yun LinDavid SteereNavjot VirkShishir PardikarAhmed Mohamed
    • Yun LinDavid SteereNavjot VirkShishir PardikarAhmed Mohamed
    • G06F15/16G06F17/30H04L29/08
    • G06F12/0866G06F12/126G06F17/30902G06F2212/463H04L67/2852H04L67/289H04L69/329
    • The present invention provides a novel client side caching (CSC) infrastructure that supports transition states at the directory level to facilitate a seamless operation across connectivity states between client and remote server. More specifically, persistent caching is performed to safeguard the user (e.g., client) and/or the client applications across connectivity interruptions and/or bandwidth changes. This is accomplished in part by caching to a client data store the desirable file(s) together with the appropriate file access parameters. Moreover, the client maintains access to cached files during periods of disconnect. Furthermore, portions of a path can be offline while other portions upstream can remain online. CSC operates on the logical path which cooperates with DFS which operates on the physical path to keep track of files cached, accessed and changes in the directories. In addition, truth on the client is facilitated whether or not a conflict of file copies exists.
    • 本发明提供了一种新颖的客户端缓存(CSC)基础设施,其支持目录级别的转换状态,以促进跨客户端和远程服务器之间的连接状态的无缝操作。 更具体地,执行持续高速缓存以跨连接中断和/或带宽改变来保护用户(例如,客户端)和/或客户端应用。 这部分是通过将客户端数据存储器连同适当的文件访问参数一起缓存所需的文件来实现的。 此外,客户端在断开连接期间保持对缓存文件的访问。 此外,路径的一部分可以离线,而上游的其他部分可以保持联机。 CSC在与物理路径上运行的DFS协作的逻辑路径上运行,以跟踪缓存,访问和更改目录中的文件。 此外,无论文件副本是否存在冲突,客户端上的真相都是有利的。
    • 6. 发明授权
    • Low-latency peer session establishment
    • 低延迟对等会话建立
    • US08458776B2
    • 2013-06-04
    • US12603401
    • 2009-10-21
    • Tom GalvinDavid Steere
    • Tom GalvinDavid Steere
    • H04L9/30H04L29/02
    • H04L9/0844H04L9/3263H04L9/3273H04L63/061H04L63/166H04L67/104H04L2209/42H04L2209/80
    • A source device and a target device may endeavor to form a secure communication session whereby encrypted messages may be transmitted over an untrusted network, such as the internet. However, the exchange of many messages in the establishment of the communication session may involve considerable latency and computational resources, particularly in scenarios featuring many communication sessions (e.g., peer-to-peer communication sessions.) Techniques for initiating a communication session may be devised that enables the initiation of a communication session with only two exchanged messages, or even with a single message transmitted from the source device to the target device. Some embodiments of these techniques may also permit the inclusion of advantageous security features, such as authentication via public certificate to detect man-in-the-middle attacks and the inclusion of nonces to detect replay attacks, without increasing the number of messages involved in the initiation of the communication session.
    • 源设备和目标设备可以努力形成安全通信会话,从而加密的消息可以通过诸如因特网的不可信网络传输。 然而,在建立通信会话中的许多消息的交换可能涉及相当大的延迟和计算资源,特别是在具有许多通信会话的场景(例如,对等通信会话)中。可以设计用于发起通信会话的技术 这使得能够仅使用两个交换的消息或甚至使用从源设备发送到目标设备的单个消息来发起通信会话。 这些技术的一些实施例还可以允许包括有利的安全特征,诸如通过公共证书进行的认证以检测中间人攻击以及包含随机数以检测重放攻击,而不增加涉及的消息的数量 启动通信会话。
    • 7. 发明申请
    • COMMUNICATION PROTOCOL ABSTRACTION
    • 通信协议摘要
    • US20130110971A1
    • 2013-05-02
    • US13285446
    • 2011-10-31
    • Harel WilliamsNaizhi LiKunal NayyarDavid Steere
    • Harel WilliamsNaizhi LiKunal NayyarDavid Steere
    • G06F15/16
    • H04L67/2819H04L67/02H04L67/104H04L67/2823H04L67/327
    • One or more techniques and/or systems are provided for processing data requests received over various communication protocols. In particular, a data transfer component may be configured to process data requests and/or responses between requesting devices and data handlers utilizing various communication protocols (e.g., peer-to-peer communication protocols, web based communication protocols, etc.). In particular, communication protocol functionality may be abstracted away from the data handlers, and may be handled by the data transfer component. In this way, data handlers may be communication protocol agnostic because the data transfer component may perform the communication protocol functionality on behalf of the data handlers, which may allow the data handlers to be more “lightweight” and focus primarily on fetching and/or formatting requested data.
    • 提供一个或多个技术和/或系统来处理通过各种通信协议接收的数据请求。 特别地,数据传输组件可以被配置为使用各种通信协议(例如,对等通信协议,基于web的通信协议等)处理请求设备和数据处理程序之间的数据请求和/或响应。 特别地,通信协议功能可以从数据处理器中被抽象出来,并且可以由数据传输组件来处理。 以这种方式,数据处理程序可能是通信协议不可知的,因为数据传输组件可以代表数据处理程序执行通信协议功能,这可能使数据处理程序更加“轻量级”,并且主要侧重于获取和/或格式化 请求的数据。
    • 8. 发明授权
    • Communication protocol abstraction
    • 通信协议抽象
    • US09124647B2
    • 2015-09-01
    • US13285446
    • 2011-10-31
    • Harel WilliamsNaizhi LiKunal NayyarDavid Steere
    • Harel WilliamsNaizhi LiKunal NayyarDavid Steere
    • G06F15/16H04L29/08
    • H04L67/2819H04L67/02H04L67/104H04L67/2823H04L67/327
    • One or more techniques and/or systems are provided for processing data requests received over various communication protocols. In particular, a data transfer component may be configured to process data requests and/or responses between requesting devices and data handlers utilizing various communication protocols (e.g., peer-to-peer communication protocols, web based communication protocols, etc.). In particular, communication protocol functionality may be abstracted away from the data handlers, and may be handled by the data transfer component. In this way, data handlers may be communication protocol agnostic because the data transfer component may perform the communication protocol functionality on behalf of the data handlers, which may allow the data handlers to be more “lightweight” and focus primarily on fetching and/or formatting requested data.
    • 提供一个或多个技术和/或系统来处理通过各种通信协议接收的数据请求。 特别地,数据传输组件可以被配置为使用各种通信协议(例如,对等通信协议,基于web的通信协议等)处理请求设备和数据处理程序之间的数据请求和/或响应。 特别地,通信协议功能可以从数据处理器中被抽象出来,并且可以由数据传输组件来处理。 以这种方式,数据处理程序可能是通信协议不可知的,因为数据传输组件可以代表数据处理程序执行通信协议功能,这可能使数据处理程序更加“轻量级”,并且主要侧重于获取和/或格式化 请求的数据。
    • 9. 发明申请
    • Persistent caching directory level support
    • 持久缓存目录级支持
    • US20050165735A1
    • 2005-07-28
    • US11064255
    • 2005-02-22
    • Yun LinNavjot VirkBrian AustShishir PardikarDavid SteereMohammed Samji
    • Yun LinNavjot VirkBrian AustShishir PardikarDavid SteereMohammed Samji
    • G06F7/00G06F17/00G06F17/30
    • G06F17/30902
    • The present invention provides a novel client side caching (CSC) infrastructure that supports transition states at the directory level to facilitate a seamless operation across connectivity states between client and remote server. More specifically, persistent caching is performed to safeguard the user (e.g., client) and/or the client applications across connectivity interruptions and/or bandwidth changes. This is accomplished in part by caching to a client data store the desirable file(s) together with the appropriate file access parameters. Moreover, the client maintains access to cached files during periods of disconnect. Furthermore, portions of a path can be offline while other portions upstream can remain online. CSC operates on the logical path which cooperates with DFS which operates on the physical path to keep track of files cached, accessed and changes in the directories. In addition, truth on the client is facilitated whether or not a conflict of file copies exists.
    • 本发明提供了一种新颖的客户端缓存(CSC)基础设施,其支持目录级别的转换状态,以促进跨客户端和远程服务器之间的连接状态的无缝操作。 更具体地,执行持续高速缓存以跨连接中断和/或带宽改变来保护用户(例如,客户端)和/或客户端应用。 这部分是通过将客户端数据存储器连同适当的文件访问参数一起缓存所需的文件来实现的。 此外,客户端在断开连接期间保持对缓存文件的访问。 此外,路径的一部分可以离线,而上游的其他部分可以保持联机。 CSC在与物理路径上运行的DFS协作的逻辑路径上运行,以跟踪缓存,访问和更改目录中的文件。 此外,无论文件副本是否存在冲突,客户端上的真相都是有利的。