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    • 1. 发明申请
    • SYSTEMS AND METHODS FOR PROVIDING CLIENT-SIDE ACCELERATION TECHNIQUES
    • 提供客户端加速技术的系统和方法
    • WO2006074072A2
    • 2006-07-13
    • PCT/US2005/047433
    • 2005-12-30
    • CITRIX SYSTEMS, INC.SUNDARRAJAN, PrabakarHE, JunxiaoSINHA, RajivVERZUNOV, SergeyVENKATRAMAN, CharuSHETTY, Anil
    • SUNDARRAJAN, PrabakarHE, JunxiaoSINHA, RajivVERZUNOV, SergeyVENKATRAMAN, CharuSHETTY, Anil
    • H04L29/08G06F9/445
    • H04L67/34H04L47/10H04L63/0272H04L67/28H04L67/2804H04L67/2842H04L67/289H04L69/10H04L69/16H04L69/163
    • The present invention is directed towards systems and methods for dynamically deploying and executing an acceleration program on a client to improve the performance and delivery of remotely accessed applications. The acceleration program of the present invention is automatically installed and executed on a client in a manner transparent to and seamless with the operation of the client. In one embodiment, the acceleration program is dynamically provided by an appliance device upon determination by the device that the client's access to a server or remote application can be accelerated. In some embodiments, the acceleration program performs one or more of the following acceleration techniques on the client: 1) multi­protocol compression 2) transport control protocol pooling, 3) transport control protocol multiplexing 4) transport control protocol buffering and 5) caching. Also, in some embodiments, the acceleration program performs these acceleration techniques in an integrated and efficient manner at the transport layer using a kernel-level data structure. In another embodiment, the client-side acceleration program performs proxy redirection techniques to automatically bypass any intermediary devices to continuously provided access by the client to the server or a remotely accessed application.
    • 本发明涉及用于在客户机上动态部署和执行加速程序以提高远程访问应用的性能和传送的系统和方法。 本发明的加速程序以对客户端的操作透明和无缝的方式在客户端上自动安装和执行。 在一个实施例中,当设备确定客户端对服务器或远程应用程序的访问可以被加速时,加速程序由设备设备动态地提供。 在一些实施例中,加速程序在客户机上执行以下一种或多种加速技术:1)多协议压缩2)传输控制协议池3)传输控制协议复用4)传输控制协议缓冲和5)缓存。 此外,在一些实施例中,加速程序使用内核级数据结构在传输层上以集成且有效的方式执行这些加速技术。 在另一个实施例中,客户端加速程序执行代理重定向技术,以自动绕过任何中间设备,以连续提供客户端访问服务器或远程访问的应用程序。
    • 4. 发明申请
    • SYSTEMS AND METHODS FOR IMPLEMENTING CONNECTION MIRRORING IN A MULTI-CORE SYSTEM
    • 用于在多核系统中实现连接镜像的系统和方法
    • WO2012087934A1
    • 2012-06-28
    • PCT/US2011/065849
    • 2011-12-19
    • CITRIX SYSTEMS, INC.SUGANTHI, JosephineVERZUNOV, Sergey
    • SUGANTHI, JosephineVERZUNOV, Sergey
    • H04L29/14G06F11/20
    • G06F11/203G06F11/2028G06F11/2041G06F11/2048G06F2201/815H04L69/40
    • The present application is directed to systems and methods for providing failover connection mirroring between two or more multi-core devices intermediary between a client and a server. A first multi-core device may receive a hash key of a second multi-core device for mapping packets to cores of the second multi-core device. The first device may identify a core of the second device using (i) the hash key of the second device and (ii) tuple information corresponding to a connection between the client and the server via the first device. The first device may determine that the identified core is not a desired core for providing a failover connection. The first device may modify the tuple information so as to identify the desired core when used with the hash key of the second device. The first device may use the modified tuple information to establish the failover connection.
    • 本申请涉及用于在客户端和服务器之间的中间的两个或多个多核设备之间提供故障切换连接镜像的系统和方法。 第一多核设备可以接收第二多核设备的散列密钥,用于将分组映射到第二多核设备的核心。 第一设备可以使用(i)第二设备的散列密钥来识别第二设备的核心,以及(ii)经由第一设备与客户端和服务器之间的连接相对应的元组信息。 第一设备可以确定所识别的核心不是用于提供故障转移连接的期望核心。 当与第二设备的散列密钥一起使用时,第一设备可以修改元组信息,以便识别期望的核心。 第一个设备可以使用修改的元组信息来建立故障切换连接。
    • 7. 发明申请
    • SYSTEMS AND METHODS FOR MANAGING STATIC PROXIMITY IN MULTI-CORE GSLB APPLIANCE
    • 用于管理多核心GSLB器具的静态偏好的系统和方法
    • WO2011079224A2
    • 2011-06-30
    • PCT/US2010/061890
    • 2010-12-22
    • CITRIX SYSTEMS, INC.VERZUNOV, SergeySHETTY, AnilSUGANTHI, Josephine
    • VERZUNOV, SergeySHETTY, AnilSUGANTHI, Josephine
    • H04L12/24G06F15/16H04L12/56
    • G06F9/5083G06F2209/502
    • The present invention is directed towards systems and methods for providing static proximity load balancing via a multi-core intermediary device. An intermediary device providing global server load balancing identifies a size of a location database comprising static proximity information. The intermediary device stores the location database to an external storage of the intermediary device responsive to determining the size of the location database is greater than a predetermined threshold. A first packet processing engine on the device receives a domain name service request for a first location, determines that proximity information for the first location is not stored in a first memory cache, transmits a request to a second packet processing engine for proximity information of the first location, and transmits a request to the external storage for proximity information of the first location responsive to the second packet processing engine not having the proximity information.
    • 本发明涉及通过多核中间设备提供静态接近负载平衡的系统和方法。 提供全局服务器负载平衡的中间设备识别包括静态邻近信息的位置数据库的大小。 响应于确定位置数据库的大小大于预定阈值,中间设备将位置数据库存储到中间设备的外部存储器。 设备上的第一分组处理引擎接收第一位置的域名服务请求,确定第一位置的接近信息未被存储在第一存储器高速缓存中,将请求发送到第二分组处理引擎以用于 并且响应于不具有邻近信息的第二分组处理引擎向外部存储器发送对第一位置的邻近信息的请求。