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    • 81. 发明申请
    • Revision Deletion Markers
    • 修订删除标记
    • US20140344394A1
    • 2014-11-20
    • US14449487
    • 2014-08-01
    • CLEVERSAFE, INC.
    • Jason K. Resch
    • H04L29/08
    • G06F17/30371G06F11/1076G06F11/1443G06F11/1474G06F2211/1028H04L67/1097
    • A method begins by receiving a delete data object request within a dispersed storage network (DSN). The method continues by determining a set of dispersed storage (DS) units within the DSN that store a set of encoded data slices associated with the data object. The method continues by determining a revision number of the set of encoded data slices. The method continues by sending a delete marker and write command to the set of DS units for deletion of the data object. The method continues by receiving at least one receive write acknowledgement from at least some DS units of the set of DS units to produce the deletion. The method continues when a write threshold is met, by sending a commit command to the DS unit storage set and receiving commit acknowledgments from the DS units and sending a finalize command to the set of DS units to delete the data object.
    • 方法开始于在分散存储网络(DSN)内接收删除数据对象请求。 该方法通过确定存储与数据对象相关联的一组编码数据片段的DSN内的一组分散存储(DS)单元继续。 该方法通过确定编码数据片段的版本号继续。 该方法通过向用于删除数据对象的DS单元的集合发送删除标记和写入命令而继续。 该方法通过从DS单元组中的至少一些DS单元接收至少一个接收写入确认来产生删除。 当满足写入阈值时,通过向DS单元存储集发送提交命令并从DS单元接收提交确认并将完成命令发送到DS单元集合以删除数据对象,该方法将继续。
    • 82. 发明授权
    • Pessimistic data reading in a dispersed storage network
    • 在分散的存储网络中进行悲观数据读取
    • US08880940B2
    • 2014-11-04
    • US14042844
    • 2013-10-01
    • Cleversafe, Inc.
    • Greg Dhuse
    • G06F11/00G06F11/14G06F11/10G06F11/18G06F11/34
    • G06F11/1076G06F11/1443G06F11/1474G06F11/18G06F11/186G06F11/3409G06F2201/81G06F2211/1028G06F2211/1057
    • A method begins by a processing module receiving a data retrieval request and determining a read threshold number of dispersed storage (DS). The method continues with the processing module sending read request messages to DS units and receiving encoded data slices to produce received encoded data slices. The method continues with the processing module determining an incremental number of encoded data slices based on the number of received encoded data slices, determining an incremental number of DS units, and sending a read request message to each of the incremental number of DS units when the number of received encoded data slices compares unfavorably to a decode threshold number. The method continues with the processing module dispersed storage error decoding the received encoded data slices to produce data when the number of received encoded data slices compares favorably to the decode threshold number of encoded data slices.
    • 一种方法由接收数据检索请求的处理模块开始,并确定分散存储(DS)的读取阈值数目。 该方法继续处理模块向DS单元发送读请求消息并接收编码数据片以产生接收的编码数据片。 该方法继续处理模块基于接收的编码数据片段的数量确定编码数据片段的增加数量,确定DS单元的增量数量,以及当DS单元的增量数量中的每一个发送读请求消息时, 接收到的编码数据片的数量与解码阈值数不利地进行比较。 该方法继续处理模块分散存储错误解码接收到的编码数据片以产生数据,当接收到的编码数据片的数量与编码数据片的解码阈值数目相比有利时。
    • 83. 发明申请
    • REMOTE COMPUTER DIAGNOSTIC SYSTEM AND METHOD
    • 远程计算机诊断系统及方法
    • US20140304296A1
    • 2014-10-09
    • US14307767
    • 2014-06-18
    • My Computer Works, Inc.
    • David Gerhart
    • G06F17/30
    • G06F17/30967G06F8/61G06F11/1474G06F17/30424G06Q10/06H04M3/5191
    • The system enables a call center to manage requests from remote computing clients for service. The system provides a number of software tools that allow technicians to perform routine maintenance and correct problems remotely. At the front-end, the system enables requests to be submitted by customers via various mediums, accesses a calendar to determine technician availability, determines the urgency of the request, and schedules an appropriate technician to address the reported problem. The system further includes tools that enable a technician to access a remote computing client to perform a number computer maintenance and diagnostics. Other tools enable the technician to correct problems that are detected through diagnostics. Calls to the call center are recorded and maintained in order to track pending issues and identify potential areas of improvement.
    • 该系统使呼叫中心能够管理来自远程计算客户端的服务请求。 该系统提供了许多软件工具,使技术人员能够远程执行日常维护和正确的问题。 在前端,系统使客户可以通过各种介质提交请求,访问日历以确定技术人员的可用性,确定请求的紧急性,并安排适当的技术人员来解决报告的问题。 该系统还包括使得技术人员能够访问远程计算客户端以执行数字计算机维护和诊断的工具。 其他工具使技术人员能够纠正通过诊断检测到的问题。 记录和维护对呼叫中心的呼叫,以便跟踪未决问题并确定潜在的改进领域。
    • 84. 发明授权
    • Management of metadata in a storage subsystem
    • 管理存储子系统中的元数据
    • US08856467B2
    • 2014-10-07
    • US10993022
    • 2004-11-18
    • Aaron S MaharAngelique R BudayaJames A Springer
    • Aaron S MaharAngelique R BudayaJames A Springer
    • G06F12/00G06F3/06G06F11/14
    • G06F3/064G06F3/0605G06F3/061G06F3/0622G06F3/065G06F3/0683G06F11/1471G06F11/1474G06F2211/104G06F2212/466
    • Methods, systems, computer program products and methods for deploying computing infrastructure for managing metadata in a storage subsystem are provided. A call is received from a client to update a portion of a metadata track. Data is also received from the client identifying at least one field of the metadata track to be updated, associated update values for the at least one field to be updated and an update type for the at least one field. A data structure field of a client interface is then populated with the identity of the at least one field and the associated update values and an opcode field of the client interface is populated with the update type. A task control block (TCB) is then allocated to the client call and, at the direction of the TCB, various operations are performed without further activity by the client. The metadata track may also be validated before being updated to ensure that the client has access only to valid updates.
    • 提供了用于部署用于管理存储子系统中的元数据的计算基础设施的方法,系统,计算机程序产品和方法。 从客户端接收到更新元数据轨道的一部分的呼叫。 还从客户端接收识别要更新的元数据轨道的至少一个字段的数据,关于要被更新的至少一个字段的相关联的更新值以及用于该至少一个字段的更新类型。 然后,用至少一个字段的标识和相关联的更新值填充客户机接口的数据结构字段,并且使用更新类型填充客户端接口的操作码字段。 然后,任务控制块(TCB)被分配给客户端呼叫,并且在TCB的方向上执行各种操作,而不进行客户端的进一步的活动。 也可以在更新元数据跟踪之前验证元数据跟踪,以确保客户端只能访问有效的更新。
    • 88. 发明申请
    • TRANSACTIONAL AND NON-TRANSACTIONAL DATA FOR MAINTAINING SESSION STATE
    • 用于维护会议状态的交易和非交易数据
    • US20140229531A1
    • 2014-08-14
    • US14231347
    • 2014-03-31
    • Oracle International Corporation
    • Kevin S. NeelCarol L. ColrainDouglas N. SurberNancy R. IkedaStefan Heinrich RoeschTong ZhouJean De Lavarene
    • H04L29/06
    • H04L67/42G06F11/1443G06F11/1474H04L67/142H04L67/146H04L67/148H04L67/327
    • Transactional and non-transactional data for maintaining session state is described. In a session, a server instance receives, from a client, a request to execute transactional commands and non-transactional commands. The server instance sends at least one first directive executable at the client to store, in a first set of information, one or more first items representing one or more particular transactional commands that are open but not yet committed. The first set of information is maintained separately from a second set of information including one or more second items representing one or more particular non-transactional commands that have been processed. Based on committing one or more particular transactional commands, the server instance sends at least one second directive executable at the client to purge, from the first set of information, the one or more first items without purging, from the second set of information, the one or more second items.
    • 描述用于维护会话状态的事务和非事务性数据。 在会话中,服务器实例从客户端接收执行事务命令和非事务命令的请求。 服务器实例在客户端处发送至少一个第一指令可执行文件,以在第一组信息中存储一个或多个表示一个或多个已经开放但尚未提交的特定事务命令的第一项。 第一组信息与第二组信息分开维护,包括表示一个或多个已处理的特定非事务性命令的一个或多个第二项。 基于提交一个或多个特定事务命令,服务器实例在客户端发送至少一个第二指令可执行文件,从第一组信息中清除一个或多个第一项目,而不从第二组信息中清除 一个或多个第二个项目。
    • 90. 发明授权
    • Remote computer diagnostic system and method
    • 远程计算机诊断系统及方法
    • US08788875B2
    • 2014-07-22
    • US13869683
    • 2013-04-24
    • My Computer Works, Inc.
    • David Gerhart
    • G06F11/00G06F9/445
    • G06F17/30967G06F8/61G06F11/1474G06F17/30424G06Q10/06H04M3/5191
    • The system enables a call center to manage requests from remote computing clients for service. The system provides a number of software tools that allow technicians to perform routine maintenance and correct problems remotely. At the front-end, the system enables requests to be submitted by customers via various mediums, accesses a calendar to determine technician availability, determines the urgency of the request, and schedules an appropriate technician to address the reported problem. The system further includes tools that enable a technician to access a remote computing client to perform a number computer maintenance and diagnostics. Other tools enable the technician to correct problems that are detected through diagnostics. Calls to the call center are recorded and maintained in order to track pending issues and identify potential areas of improvement.
    • 该系统使呼叫中心能够管理来自远程计算客户端的服务请求。 该系统提供了许多软件工具,使技术人员能够远程执行日常维护和正确的问题。 在前端,系统使客户可以通过各种介质提交请求,访问日历以确定技术人员的可用性,确定请求的紧急性,并安排适当的技术人员来解决报告的问题。 该系统还包括使得技术人员能够访问远程计算客户端以执行数字计算机维护和诊断的工具。 其他工具使技术人员能够纠正通过诊断检测到的问题。 记录和维护对呼叫中心的呼叫,以便跟踪未决问题并确定潜在的改进领域。