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    • 1. 发明申请
    • MANAGING DATA TRANSFER BETWEEN ENDPOINTS IN A DISTRIBUTED COMPUTING ENVIRONMENT
    • 管理在分布式计算环境中的终点之间的数据传输
    • US20090248693A1
    • 2009-10-01
    • US12057364
    • 2008-03-27
    • Akash Jeevan SagarMuthukaruppan AnnamalaiVladimir D. FedorovRichard Y. Chung
    • Akash Jeevan SagarMuthukaruppan AnnamalaiVladimir D. FedorovRichard Y. Chung
    • G06F17/30
    • G06F17/30
    • A file fetcher manager provides commonly-utilized management and resource allocation for multiple file fetchers that each implement a different type of mechanism or protocol for transferring data files between peer endpoints in meshes associated with a cloud-computing service. Each file fetcher is configured with both client-side and server-side components to retrieve and serve out data files. The file fetcher manager encapsulates the file fetchers to provide an abstract interface to callers while hiding the underlying details of the file fetchers. The file fetcher manager is arranged for managing simultaneous operations of the multiple file fetchers to route requests from the callers to the appropriate file fetchers, and for scheduling work items for the file fetchers so that data transfers efficiently utilize available resources while keeping the entire transfer process coherent and organized.
    • 文件提取器管理器为多个文件提取器提供常用的管理和资源分配,每个文件提取器实现用于在与云计算服务相关联的网格中的对等端点之间传送数据文件的不同类型的机制或协议。 每个文件提取器都配置有客户端和服务器端组件,以检索和提供数据文件。 文件抓取器管理器封装文件提取器,以在隐藏文件提取器的底层细节的同时向调用者提供抽象接口。 文件抓取器管理器被安排用于管理多个文件提取器的同时操作以将来自呼叫者的请求路由到适当的文件提取器,并且用于为文件提取器调度工作项,以便数据传输有效地利用可用资源,同时保持整个传送过程 连贯有序。
    • 2. 发明授权
    • Optimistic concurrency utilizing distributed constraint enforcement
    • 利用分布式约束执行的乐观并发
    • US08805924B2
    • 2014-08-12
    • US12787396
    • 2010-05-26
    • Akash J. SagarRichard Y. ChungRaymond E. Endres
    • Akash J. SagarRichard Y. ChungRaymond E. Endres
    • G06F15/16
    • H04L67/1095G06F17/30168G06F17/30174G06F17/30368G06F17/30575H04L67/10
    • Optimistic concurrency is effectuated to manage constraints in a synchronization environment at multiple computing device endpoints in a consistent fashion without utilizing concentrated centralized constraint logic. Implemented data synchronization constraints that identify false violation scenarios may be automatically resolved without user intervention by using an etag system directed by a master component to assist computing device endpoints to maintain data synchronization among them. Data entries defining each file hierarchy component to be synched are generated and shared with the master component and each computing device endpoint in a synchronization environment. Individual computing device endpoints can use the data entries generated locally with those generated by other computing device endpoints to locally resolve identified false violation scenarios.
    • 实现乐观并发,以一致的方式在多个计算设备端点的同步环境中管理约束,而不使用集中的集中式约束逻辑。 识别错误违规情况的实现的数据同步约束可以通过使用由主组件指导的etag系统来辅助计算设备端点在它们之间维持数据同步而自动解决而无需用户干预。 定义要同步的每个文件层次结构组件的数据条目在同步环境中生成并与主组件和每个计算设备端点共享。 单个计算设备端点可以使用本地生成的数据条目与其他计算设备端点生成的数据条目本地地解析识别的错误违规情况。
    • 3. 发明授权
    • Identification of moved or renamed files in file synchronization
    • 识别移动或重命名的文件在文件同步
    • US08332357B1
    • 2012-12-11
    • US13157315
    • 2011-06-10
    • Richard Y. Chung
    • Richard Y. Chung
    • G06F7/00
    • G06F17/30174G06F17/30097G06F17/30283
    • A method for synchronizing files is provided. Current metadata including a filename and a hash identifier for each file of the synchronized folder is created. The current metadata is compared to previous metadata. Based on the comparison, a first file and a first folder added to the synchronized folder and a second file and a second folder deleted from the synchronized folder are identified. The hash identifiers of the first and second files are compared. If the hash identifiers match, the filenames of the first and second files are compared. If the filenames do not match, the first file is identified as a renamed file. Metadata is sent to a synchronized device with information related to the first folder sent before information related to the first file, which is sent before information related to the second folder.
    • 提供了一种用于同步文件的方法。 创建包含同步文件夹的每个文件的文件名和散列标识符的当前元数据。 将当前元数据与先前的元数据进行比较。 基于比较,识别添加到同步文件夹的第一文件和第一文件夹以及从同步文件夹中删除的第二文件和第二文件夹。 比较第一和第二文件的散列标识符。 如果哈希标识符匹配,则比较第一和第二文件的文件名。 如果文件名不匹配,则第一个文件被标识为重命名的文件。 将元数据发送到与第一文件相关的信息相关的信息的同步设备,该信息是在与第二文件夹相关的信息之前发送的与第一文件相关的信息之前发送的。
    • 5. 发明授权
    • System and method for facilitating collaboration in connection with generating documents among a plurality of operators using networked computer systems
    • 与使用网络计算机系统在多个运营商之间生成文档有关的协作的系统和方法
    • US06212534B1
    • 2001-04-03
    • US09311515
    • 1999-05-13
    • Kevin H. LoRichard Y. ChungRay Y. Chun
    • Kevin H. LoRichard Y. ChungRay Y. Chun
    • G06F1721
    • G06Q10/10
    • A system for facilitating collaboration among a plurality of users in connection with generation of a document includes a document information store and one or more user modules. The document information store stores document information relating to documents being generated, the document information including both document structure information and document content information, the document structure information describing document structural elements for each one document and document content information comprising document content elements associated with respective document structural elements. Each user module includes a whiteboard display module, a document update module and an interface module. The whiteboard display module is configured to display a whiteboard to a user, the whiteboard selectively displaying document structure defined by the document structural elements for a document and document content information therefor. The document update module is configured to enable the user to selectively update the document structure and document content information therefor as displayed by the whiteboard display module. The interface module is configured to selectively enable the retrieval it of document information for a document and document content information as requested by said operator for display by the whiteboard display module and update of document information as stored in the document information store to be updated in response to updates received by said document update module.
    • 一种用于促进多个用户之间与文档生成有关的协作的系统包括文档信息存储和一个或多个用户模块。 文档信息存储器存储与正在生成的文档有关的文档信息,包括文档结构信息和文档内容信息两者的文档信息,描述每个文档的文档结构元素的文档结构信息和包括与相应文档相关联的文档内容元素的文档内容信息 结构元素。 每个用户模块包括白板显示模块,文档更新模块和接口模块。 白板显示模块被配置为向用户显示白板,白板选择性地显示由文档的文档结构元素定义的文档结构和文档内容信息。 文档更新模块被配置为使得用户能够选择性地更新文档结构并记录由白板显示模块显示的内容信息。 接口模块被配置为选择性地使得能够检索文档的文档信息,并且由所述操作者请求的文档内容信息由白板显示模块显示,并且更新存储在文档信息存储器中以更新响应的文档信息 由所述文档更新模块接收到的更新。
    • 6. 发明申请
    • Optimistic Concurrency Utilizing Distributed Constraint Enforcement
    • 利用分布式约束执行的乐观并发
    • US20110295929A1
    • 2011-12-01
    • US12787396
    • 2010-05-26
    • Akash J. SagarRichard Y. ChungRaymond E. Endres
    • Akash J. SagarRichard Y. ChungRaymond E. Endres
    • G06F15/16
    • H04L67/1095G06F17/30168G06F17/30174G06F17/30368G06F17/30575H04L67/10
    • Optimistic concurrency is effectuated to manage constraints in a synchronization environment at multiple computing device endpoints in a consistent fashion without utilizing concentrated centralized constraint logic. Implemented data synchronization constraints that identify false violation scenarios may be automatically resolved without user intervention by using an etag system directed by a master component to assist computing device endpoints to maintain data synchronization among them. Data entries defining each file hierarchy component to be synched are generated and shared with the master component and each computing device endpoint in a synchronization environment. Individual computing device endpoints can use the data entries generated locally with those generated by other computing device endpoints to locally resolve identified false violation scenarios.
    • 实现乐观并发,以一致的方式在多个计算设备端点的同步环境中管理约束,而不使用集中的集中式约束逻辑。 识别错误违规情况的实现的数据同步约束可以通过使用由主组件指导的etag系统来辅助计算设备端点在它们之间维持数据同步而自动解决而无需用户干预。 定义要同步的每个文件层次结构组件的数据条目在同步环境中生成并与主组件和每个计算设备端点共享。 单个计算设备端点可以使用本地生成的数据条目与其他计算设备端点生成的数据条目本地地解析识别的错误违规情况。
    • 7. 发明授权
    • Managing data transfer between endpoints in a distributed computing environment
    • 管理分布式计算环境中端点之间的数据传输
    • US08620889B2
    • 2013-12-31
    • US12057364
    • 2008-03-27
    • Akash Jeevan SagarMuthukaruppan AnnamalaiVladimir D. FedorovRichard Y. Chung
    • Akash Jeevan SagarMuthukaruppan AnnamalaiVladimir D. FedorovRichard Y. Chung
    • G06F7/00
    • G06F17/30
    • A file fetcher manager provides commonly-utilized management and resource allocation for multiple file fetchers that each implement a different type of mechanism or protocol for transferring data files between peer endpoints in meshes associated with a cloud-computing service. Each file fetcher is configured with both client-side and server-side components to retrieve and serve out data files. The file fetcher manager encapsulates the file fetchers to provide an abstract interface to callers while hiding the underlying details of the file fetchers. The file fetcher manager is arranged for managing simultaneous operations of the multiple file fetchers to route requests from the callers to the appropriate file fetchers, and for scheduling work items for the file fetchers so that data transfers efficiently utilize available resources while keeping the entire transfer process coherent and organized.
    • 文件提取器管理器为多个文件提取器提供常用的管理和资源分配,每个文件提取器实现用于在与云计算服务相关联的网格中的对等端点之间传送数据文件的不同类型的机制或协议。 每个文件提取器都配置有客户端和服务器端组件,以检索和提供数据文件。 文件抓取器管理器封装文件提取器,以在隐藏文件提取器的底层细节的同时向调用者提供抽象接口。 文件抓取器管理器被安排用于管理多个文件提取器的同时操作以将来自呼叫者的请求路由到适当的文件提取器,并且用于为文件提取器调度工作项,以便数据传输有效地利用可用资源,同时保持整个传送过程 连贯有序。
    • 8. 发明申请
    • SYNCHRONIZATION THROTTLING BASED ON USER ACTIVITY
    • 基于用户活动的同步转向
    • US20090300169A1
    • 2009-12-03
    • US12131942
    • 2008-06-03
    • Akash Jeevan SagarVladimir D. FedorovMuthukaruppan AnnamalaiRichard Y. Chung
    • Akash Jeevan SagarVladimir D. FedorovMuthukaruppan AnnamalaiRichard Y. Chung
    • G06F15/173
    • H04L67/1095H04L41/00H04L43/00
    • Synchronization of data across multiple endpoints in a mesh network that supports a data sharing service is throttled responsively to user activity in the network by monitoring the activity using a component in a mesh operating environment (“MOE”) runtime that is instantiated on each endpoint. The monitoring may include the collection of data that can be used to infer user activity, as well as data that explicitly indicates activity. State information is maintained so that data can be synchronized across the endpoints even when a user goes offline from the service. When the user logs on to the service, makes changes to a shared file, or the endpoint device starts up upon connection to a mesh network, throttling is performed by prioritizing work items associated with synchronization operations so that resources on the endpoint are not excessively consumed which could reduce the quality of the user experience.
    • 通过使用在每个端点上实例化的网格操作环境(“MOE”)运行时中的组件监视活动,响应于网络中的用户活动来对数据跨越支持数据共享服务的网状网络中的多个端点进行数据同步。 监视可以包括可以用于推断用户活动的数据的收集,以及明确指示活动的数据。 维护状态信息,即使当用户从服务脱机时,也可以跨端点同步数据。 当用户登录到服务时,对共享文件进行更改,或者端点设备在连接到网状网络时启动,通过对与同步操作相关联的工作项进行优先级排序来执行限制,以使端点上的资源不会被过度消耗 这可以降低用户体验的质量。
    • 9. 发明申请
    • IDENTIFICATION OF MOVED OR RENAMED FILES IN FILE SYNCHRONIZATION
    • 在文件同步中识别移动或已删除的文件
    • US20120317077A1
    • 2012-12-13
    • US13157315
    • 2011-06-10
    • Richard Y. Chung
    • Richard Y. Chung
    • G06F17/30
    • G06F17/30174G06F17/30097G06F17/30283
    • A method for synchronizing files is provided. Current metadata including a filename and a hash identifier for each file of the synchronized folder is created. The current metadata is compared to previous metadata. Based on the comparison, a first file and a first folder added to the synchronized folder and a second file and a second folder deleted from the synchronized folder are identified. The hash identifiers of the first and second files are compared. If the hash identifiers match, the filenames of the first and second files are compared. If the filenames do not match, the first file is identified as a renamed file. Metadata is sent to a synchronized device with information related to the first folder sent before information related to the first file, which is sent before information related to the second folder.
    • 提供了一种用于同步文件的方法。 创建包含同步文件夹的每个文件的文件名和散列标识符的当前元数据。 将当前元数据与先前的元数据进行比较。 基于比较,识别添加到同步文件夹的第一文件和第一文件夹以及从同步文件夹中删除的第二文件和第二文件夹。 比较第一和第二文件的散列标识符。 如果哈希标识符匹配,则比较第一和第二文件的文件名。 如果文件名不匹配,则第一个文件被标识为重命名的文件。 将元数据发送到与第一文件相关的信息相关的信息的同步设备,该信息是在与第二文件夹相关的信息之前发送的与第一文件相关的信息之前发送的。