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    • 26. 发明授权
    • Communications path status detection system
    • 通信路径状态检测系统
    • US08365010B2
    • 2013-01-29
    • US13399668
    • 2012-02-17
    • Erik OlsonDavid Thompson
    • Erik OlsonDavid Thompson
    • G06F11/00
    • H04L41/06G06F11/2007H04L43/0811H04L43/50
    • Virtual network interface selection manager in a client-server system, in which client and server are connectable through a plural alternate networks. System includes plural interfaces connectable to server through the plural networks, current interface indicator identifying a current interface through which data is transmitted to and/or received from the server, and prioritized listing of plural interfaces ranked in a descending order. Event detector detects occurrence of an event including time-out condition; successful interface test; and change in the plurality of interfaces, and a tester tests each plural interface in prioritized listing in a ranked order to test whether server is reachable. Marker identifies which of plural interfaces successfully pass the test, and switch switches from current interface to a higher priority interface when the marker identifies a higher priority interface as having successfully passed the test, whereby current interface indicator will identify the higher priority interface as current interface.
    • 客户机 - 服务器系统中的虚拟网络接口选择管理器,其中客户端和服务器可通过多个备用网络连接。 系统包括通过多个网络连接到服务器的多个接口,当前接口指示符,标识当前接口通过数据从服务器发送和/或从服务器接收数据,以及优先列出以降序排列的多个接口。 事件检测器检测事件的发生,包括超时状态; 成功的界面测试; 并改变多个接口,并且测试者以排序顺序对优先级列表中的每个多个接口进行测试,以测试服务器是否可达。 标记识别多个接口中的哪一个成功通过测试,并且当标记识别出较高优先级接口已成功通过测试时,将交换机从当前接口切换到较高优先级接口,由此当前接口指示符将识别较高优先级的接口作为当前接口 。
    • 28. 发明申请
    • Managing network response buffering behavior
    • 管理网络响应缓冲行为
    • US20070244993A1
    • 2007-10-18
    • US11404412
    • 2006-04-14
    • Michael VolodarskyErik OlsonAnil Ruia
    • Michael VolodarskyErik OlsonAnil Ruia
    • G06F15/16
    • H04L67/02H04L67/28H04L67/2833H04L67/2852
    • The present invention extends to methods, systems, and computer program products for managing network response buffering behavior. A computer system receives a request for content from a client. The computer system has a default response buffering behavior used when transferring content. The computer system maps the request to a handler configured to serve the requested content. The computer system accesses buffering behavior data for the handler. The computer system determines that the requested content is to be transferred in accordance with altered response buffering behavior based at least on the buffering behavior data. The altered response buffering behavior corresponds to the requested content as an exception to the default response buffering. The computer system accesses a portion of the requested content from the handler. The computer system transfers the portion of requested content to the client in accordance with the altered response buffer behavior.
    • 本发明扩展到用于管理网络响应缓冲行为的方法,系统和计算机程序产品。 计算机系统从客户端接收对内容的请求。 计算机系统具有传输内容时使用的默认响应缓冲行为。 计算机系统将请求映射到配置为服务所请求的内容的处理程序。 计算机系统访问处理程序的缓冲行为数据。 计算机系统基于至少基于缓冲行为数据确定根据改变的响应缓冲行为来传送所请求的内容。 改变的响应缓冲行为对应于所请求的内容作为默认响应缓冲的例外。 计算机系统从处理程序中访问所请求内容的一部分。 计算机系统根据改变的响应缓冲器行为将所请求的内容的一部分传送到客户端。
    • 29. 发明申请
    • Multi-cache cooperation for response output caching
    • 响应输出缓存多缓存协作
    • US20070214320A1
    • 2007-09-13
    • US11370585
    • 2006-03-08
    • Anil RuiaErik OlsonMichael Volodarsky
    • Anil RuiaErik OlsonMichael Volodarsky
    • G06F12/00
    • G06F12/0897G06F12/0811
    • Caching data. A method may be practiced, for example, in a computing environment including a server system that provides data to client systems. The server system includes a number of caches for storing data. The method allows a least expensive cache to first cache data or return data requested by a client. The method includes receiving data to be cached at a cache. The method further includes determining that the data has not been previously cached at a preceding cache. If the data has not been previously cached at a preceding cache the data is cached at the cache. Alternatively, requests for data may be received at a first cache. If the data is at the first cache, the first cache returns the data. If the data is not at the first cache, the request for data is forwarded to a subsequent cache.
    • 缓存数据。 例如,可以在包括向客户端系统提供数据的服务器系统的计算环境中实施一种方法。 服务器系统包括用于存储数据的多个高速缓存。 该方法允许最便宜的缓存首先缓存数据或返回客户端请求的数据。 该方法包括接收要缓存在缓存上的数据。 该方法还包括确定数据先前未被缓存在先前的高速缓存中。 如果数据以前没有缓存在先前的缓存中,则数据将缓存在缓存中。 或者,可以在第一高速缓存处接收对数据的请求。 如果数据位于第一个缓存,则第一个缓存返回数据。 如果数据不在第一缓存中,则将数据请求转发到后续高速缓存。
    • 30. 发明申请
    • Modular server architecture for multi-environment HTTP request processing
    • 用于多环境HTTP请求处理的模块化服务器架构
    • US20060288085A1
    • 2006-12-21
    • US11140192
    • 2005-05-27
    • Bilal AlamErik OlsonAnil RuiaMichael VolodarskyDavid WangJaroslav Dunajsky
    • Bilal AlamErik OlsonAnil RuiaMichael VolodarskyDavid WangJaroslav Dunajsky
    • G06F15/16
    • G06F9/44521H04L67/02
    • Methods are provided for utilizing a modular server architecture for processing requests for services, such as authorization and authentication, in a web server. The modular server architecture includes self-contained modular components that can be plugged in and out of the web server, as needed, to provide requested web services. The modular server architecture is also extensible in that it provides set of server APIs for processing requests for supporting built-in server functionality as well as functionality provided by third party modular components. The modular server architecture also supports the integration of request processing tasks for both native and managed modular components, such as ASP.NET modules, by virtue of a managed module host component. The modular server architecture also optimizes server performance by only providing modular component functionality when needed. By utilizing the modular server architecture, server functionality is extended, duplication of request processing tasks is eliminated and performance administrative overhead is reduced.
    • 提供了用于利用模块化服务器架构处理Web服务器中的服务请求(如授权和身份验证)的方法。 模块化服务器体系结构包括独立的模块化组件,可根据需要插入和移出Web服务器,以提供所需的Web服务。 模块化服务器架构也是可扩展的,因为它提供了一组服务器API来处理用于支持内置服务器功能的请求以及由第三方模块化组件提供的功能。 模块化服务器架构还支持通过托管模块主机组件对本机和托管模块化组件(如ASP.NET模块)的请求处理任务进行集成。 模块化服务器架构还可以在需要时提供模块化组件功能来优化服务器性能。 通过利用模块化服务器架构,扩展了服务器功能,消除了重复的请求处理任务,降低了性能管理开销。