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    • 91. 发明申请
    • DATABASE AND DATA ACCESSING METHOD THEREOF
    • 数据库和数据访问方法
    • US20160062841A1
    • 2016-03-03
    • US14525232
    • 2014-10-28
    • Lite-On Technology Corporation
    • Lieh-Kuang HuMing-Huang Wu
    • G06F11/14
    • G06F12/0866G06F11/1402G06F12/0888G06F2212/163G06F2212/463
    • A database and a data accessing method thereof are provided. The database includes a memory, a CPU, a data storage element and a data cache element. The memory is configured to store a kernel program. The CPU is coupled to the memory and configured to execute the kernel program. The data storage element and the data cache element are coupled to the CPU. When receiving a data read command or a data write command from an application, the kernel program determines whether the data storage element is set for accelerated data accessing. If yes, the kernel program guides the data read command to read a copy file from the data cache element or writes a file of the data write command into the data storage element and the data cache element. The copy file is corresponding to a target file in the data storage element.
    • 提供了一种数据库及其数据访问方法。 数据库包括存储器,CPU,数据存储元件和数据高速缓存元件。 内存被配置为存储内核程序。 CPU耦合到存储器并配置为执行内核程序。 数据存储元件和数据高速缓存元件耦合到CPU。 当从应用程序接收到数据读取命令或数据写入命令时,内核程序确定数据存储元件是否被设置用于加速数据访问。 如果是,内核程序引导数据读取命令从数据高速缓存元件读取复制文件,或者将数据写入命令的文件写入数据存储元件和数据高速缓存元件。 复制文件对应于数据存储元件中的目标文件。
    • 92. 发明授权
    • Dynamically allocating memory for processes
    • 动态分配进程内存
    • US09152549B1
    • 2015-10-06
    • US13854891
    • 2013-04-01
    • Alex Kesselman
    • Alex Kesselman
    • G06F12/02G06F9/50G06F12/06
    • G06F12/023G06F9/5016G06F9/5061G06F12/0253G06F12/0646G06F2212/1048G06F2212/163
    • A system, computer-readable storage medium storing at least one program, and a computer-implemented method for dynamically allocating memory for processes is presented. A first request to allocate memory for a first process is received, where the first process is associated with a first quality-of-service class in a plurality of quality-of-service classes. A first memory allocation for the first quality-of-service class is calculated as a function of a current amount of free memory on the server and a first minimum memory allocation for the first quality-of-service class. An amount of memory currently used by processes associated with the first quality-of-service class is determined. The first request is rejected when the amount of memory currently used by the processes associated with the first quality-of-service class is greater than or equal to the first memory allocation.
    • 提出了存储至少一个程序的系统,计算机可读存储介质和用于动态分配用于进程的存储器的计算机实现的方法。 接收对第一进程分配内存的第一请求,其中第一进程与多个服务质量类中的第一服务质量类相关联。 根据当前服务器上的可用内存量和第一服务质量类的第一最小内存分配计算第一服务质量等级的第一内存分配。 确定与第一服务质量类相关联的进程当前使用的内存量。 当与第一服务质量类相关联的进程当前使用的内存量大于或等于第一内存分配时,第一请求被拒绝。
    • 94. 发明申请
    • DATA CENTER EQUIPMENT CABINET INFORMATION CENTER AND UPDATEABLE ASSET TRACKING SYSTEM
    • 数据中心设备柜信息中心和可更新资产跟踪系统
    • US20150102101A1
    • 2015-04-16
    • US14577674
    • 2014-12-19
    • METHODE ELECTRONICS, INC.
    • Tim Hazzard
    • H05K7/14H05K7/20H04B5/00H05K5/02
    • H05K7/1498G06F1/181G06F1/183G06F1/184G06F17/30067G06F2212/161G06F2212/163G06Q10/087H04B5/0062H05K5/0208H05K7/1492H05K7/20836
    • A cabinet frame enclosure is provided having a first side wall, a second side wall, a first opening and a second opening each in combination defining an interior space for accommodating a plurality of equipment, the equipment being removable through the first opening. A plurality of functional modules are provided such as: an asset tracking module for detecting the presence or absence of the equipment from the interior space of the cabinet frame enclosure, the asset tracking module disposed in the first side wall adjacent the first opening; an access control module for providing electronic locking and access control to the interior space of the cabinet frame enclosure; an environmental management module for monitoring and controlling environmental conditions within the interior space of the cabinet frame enclosure; a power management module for monitoring and controlling power distribution to equipment located in the interior space of the cabinet frame enclosure, the power management module disposed in one of the first side wall or second side wall and adjacent the second opening; and a cabinet control module (CCM) for providing consolidated connectivity to the plurality of functional modules, wherein the CCM presents a single network connection for managing the equipment located in the cabinet frame enclosure.
    • 提供了一种橱柜框架,其具有第一侧壁,第二侧壁,第一开口和第二开口,每个组合限定用于容纳多个设备的内部空间,所述设备可通过第一开口移除。 提供了多个功能模块,例如:资产跟踪模块,用于从橱柜框架的内部空间检测设备的存在或不存在,资产跟踪模块设置在与第一开口相邻的第一侧壁中; 访问控制模块,用于向机柜框架外壳的内部空间提供电子锁定和访问控制; 一个环境管理模块,用于监控和控制橱柜框架内部空间内的环境状况; 电力管理模块,用于监测和控制对位于柜框架外壳的内部空间中的设备的配电,电源管理模块设置在第一侧壁或第二侧壁之一中并邻近第二开口; 以及用于提供与所述多个功能模块的统一连接的机柜控制模块(CCM),其中所述CCM呈现用于管理位于所述机柜框架外壳中的设备的单个网络连接。
    • 98. 发明授权
    • Read-ahead processing in networked client-server architecture
    • 联网客户机 - 服务器架构中的预读处理
    • US08832385B2
    • 2014-09-09
    • US13488157
    • 2012-06-04
    • Lior AronovichKonstantin MushkinOded Sonin
    • Lior AronovichKonstantin MushkinOded Sonin
    • G06F12/14H04L29/06G06F3/06G06F12/08
    • G06F12/0862G06F3/067G06F12/0802G06F2212/163H04L67/42
    • Read messages are grouped by a plurality of unique sequence identifications (IDs), where each of the sequence IDs corresponds to a specific read sequence, consisting of all read and read-ahead requests related to a specific storage segment that is being read sequentially by a thread of execution in a client application. The storage system uses the sequence id value in order to identify and filter read-ahead messages that are obsolete when received by the storage system, as the client application has already moved to read a different storage segment. Basically, a message is discarded when its sequence id value is less recent than the most recent value already seen by the storage system. The sequence IDs are used by the storage system to determine corresponding read-ahead data to be loaded into a read-ahead cache.
    • 读取消息由多个唯一的序列标识(ID)分组,其中序列ID中的每一个对应于特定的读取序列,其包括与由特定存储段顺序读取的特定存储段相关的所有读取和预读请求 在客户端应用程序中执行的线程。 存储系统使用序列ID值,以便识别和过滤存储系统接收到的过期的预读消息,因为客户端应用程序已经移动到读取不同的存储段。 基本上,当其序列ID值比存储系统已经看到的最新值更新时,消息被丢弃。 序列ID由存储系统使用以确定要加载到预读高速缓存中的相应的预读数据。