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    • 1. 发明授权
    • Managing backup solutions with light-weight storage nodes
    • 使用轻量级存储节点管理备份解决方案
    • US07546484B2
    • 2009-06-09
    • US11350019
    • 2006-02-08
    • Vijay SenKarandeep Singh AnandVinay S. BadamiSunil PaiCharumathy SrinivasanAbid Ali
    • Vijay SenKarandeep Singh AnandVinay S. BadamiSunil PaiCharumathy SrinivasanAbid Ali
    • G06F11/00
    • G06F11/1464G06F11/1456G06F11/1469G06F2201/84
    • A backup system in accordance with an implementation of the present invention includes one or more light-weight (i.e., stateless) storage nodes that are positioned close enough to one or more assigned production servers to enable as rapid and efficient a data recovery as possible. The one or more light-weight storage nodes are driven by, and implement backup policies in accordance with, control settings determined by and received from a centralized backup server. Changes to the control settings are simply produced at the centralized backup server and propagated to each storage node in the system. In addition to efficient backup times, general backup administration can be greatly simplified at least in part since a large number of production serves can be serviced through a small or large number of light-weight storage nodes, which in turn can be managed by a single centralized backup server.
    • 根据本发明的实现的备份系统包括一个或多个轻量级(即,无状态)存储节点,其被定位成足够靠近一个或多个分配的生产服务器,以使得尽可能快速和有效地进行数据恢复。 一个或多个轻量级存储节点由根据由集中式备份服务器确定和接收的控制设置来驱动并实施备份策略。 对控制设置的更改仅在集中式备份服务器上生成,并传播到系统中的每个存储节点。 除了有效的备份时间之外,至少部分地可以大大简化总体备份管理,因为可以通过少量或大量的轻量级存储节点来服务大量的生产服务,这又可以由单个管理 集中备份服务器。
    • 2. 发明申请
    • Managing backup solutions with light-weight storage nodes
    • 使用轻量级存储节点管理备份解决方案
    • US20070220320A1
    • 2007-09-20
    • US11350019
    • 2006-02-08
    • Vijay SenKarandeep AnandVinay BadamiSunil PaiCharumathy SrinivasanAbid Ali
    • Vijay SenKarandeep AnandVinay BadamiSunil PaiCharumathy SrinivasanAbid Ali
    • G06F11/00
    • G06F11/1464G06F11/1456G06F11/1469G06F2201/84
    • A backup system in accordance with an implementation of the present invention includes one or more light-weight (i.e., stateless) storage nodes that are positioned close enough to one or more assigned production servers to enable as rapid and efficient a data recovery as possible. The one or more light-weight storage nodes are driven by, and implement backup policies in accordance with, control settings determined by and received from a centralized backup server. Changes to the control settings are simply produced at the centralized backup server and propagated to each storage node in the system. In addition to efficient backup times, general backup administration can be greatly simplified at least in part since a large number of production serves can be serviced through a small or large number of light-weight storage nodes, which in turn can be managed by a single centralized backup server.
    • 根据本发明的实现的备份系统包括一个或多个轻量级(即,无状态)存储节点,其被定位成足够靠近一个或多个分配的生产服务器,以使得尽可能快速和有效地进行数据恢复。 一个或多个轻量级存储节点由根据由集中式备份服务器确定和接收的控制设置来驱动并实施备份策略。 对控制设置的更改仅在集中式备份服务器上生成,并传播到系统中的每个存储节点。 除了有效的备份时间之外,至少部分地可以大大简化总体备份管理,因为可以通过少量或大量的轻量级存储节点来服务大量的生产服务,这又可以由单个管理 集中备份服务器。
    • 4. 发明授权
    • Method and system for using expanded memory for operating system buffers
and application buffers
    • 使用扩展内存操作系统缓冲区和应用程序缓冲区的方法和系统
    • US5146580A
    • 1992-09-08
    • US427343
    • 1989-10-25
    • Harish K. NaiduThomas E. LennonMike R. WilliamsonSunil Pai
    • Harish K. NaiduThomas E. LennonMike R. WilliamsonSunil Pai
    • G06F9/50G06F12/06
    • G06F9/5016G06F12/0623
    • A method and system for allowing both operating system buffers and application program buffers to reside in expanded memory is provided. In a preferred embodiment, a page frame in conventional memory is provided through which pages in expanded memory are accessed. An application program allocates pages in expanded memory and maps pages into the page frame. An operating system also allocates pages in expanded memory. In a preferred embodiment, an application program maps its allocated pages into each page of the page frame. The application then issues a read request to read data from a file storage device into the page frame. Upon completion of the transfer from the file storage device, the operating system determines if there are system buffers that contain a more current version of the data transferred. If so, the operating system maps a system buffer into the highest page of the page frame and then transfers the more current data from the system buffer to the application buffer. If, however, the application buffer to receive the more current data occupies the highest page in the page frame, then the system buffer is mapped into the lowest page of the page frame.
    • 提供了一种用于允许操作系统缓冲器和应用程序缓冲器驻留在扩展存储器中的方法和系统。 在优选实施例中,提供常规存储器中的页框,通过该页帧访问扩展存储器中的页面。 应用程序分配扩展内存中的页面并将页面映射到页面框架中。 操作系统还会在扩展内存中分配页面。 在优选实施例中,应用程序将其分配的页面映射到页面帧的每一页。 然后,应用程序发出读取请求,以将数据从文件存储设备读取到页面框架中。 在完成从文件存储设备的传送之后,操作系统确定是否存在包含传送的数据的更新版本的系统缓冲器。 如果是这样,操作系统将系统缓冲区映射到页面的最高页面,然后将更多的当前数据从系统缓冲区传输到应用程序缓冲区。 然而,如果用于接收更多当前数据的应用缓冲区占据页面帧中的最高页面,则系统缓冲区被映射到页面帧的最低页面。