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    • 62. 发明授权
    • Storage system configurations
    • 存储系统配置
    • US07299334B2
    • 2007-11-20
    • US10886372
    • 2004-07-07
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • G06F12/00
    • G06F3/0632G06F3/0607G06F3/0635G06F3/0647G06F3/0689G06F11/2087G06F2206/1012
    • A storage system, including: one or more mass storage devices, coupled to store data at respective first ranges of logical addresses (LAs), and one or more interfaces, which are adapted to receive input/output (IO) requests from host processors directed to specified LAs. The system also includes a plurality of caches coupled to the one or more interfaces so as to receive the IO requests therefrom, each cache being assigned a respective second range of the LAs and being coupled to the one or more mass storage devices, the respective first ranges of which overlap the respective second range, so as to receive data from and provide data to the one or more mass storage devices, and being coupled to accept the IO requests within the respective second range directed thereto.
    • 一种存储系统,包括:一个或多个大容量存储设备,其耦合以在相应的第一逻辑地址范围(LAs)处存储数据,以及一个或多个接口,其适于从主机处理器接收输入/输出(IO)请求 到指定的LAs。 该系统还包括耦合到该一个或多个接口的多个高速缓存以便从其接收IO请求,每个高速缓存分配了相应的第二范围的LAs并且耦合到一个或多个大容量存储设备,相应的第一 其范围与相应的第二范围重叠,以便从一个或多个大容量存储设备接收数据并向其提供数据,并且被耦合以在指向其的相应第二范围内接受IO请求。
    • 63. 发明申请
    • Automatic rebalancing of a data storage system
    • 自动重新平衡数据存储系统
    • US20070016726A1
    • 2007-01-18
    • US11182338
    • 2005-07-15
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • G06F12/16
    • G06F11/3485G06F3/0601G06F11/2056G06F11/3433G06F2003/0697G06F2201/88G06F2201/885G06F2206/1012
    • A method for operating a data storage system that includes a plurality of mass storage devices, which are configured to store data redundantly, the method including determining a characteristic service level of one or more of the mass storage devices and defining a reduced service level, which is less than the characteristic service level. The method further includes performing the following steps automatically: detecting the reduced service level on a first mass storage device in the data storage system; determining that data on the first mass storage device is stored redundantly on a second mass storage device in the data storage system; and in response to detecting the reduced service level, diverting an input/output (IO) request for the data directed to the first mass storage device to the second mass storage device, while operating the first mass storage device at the reduced service level.
    • 一种用于操作数据存储系统的方法,所述数据存储系统包括被配置为冗余地存储数据的多个大容量存储设备,所述方法包括确定所述大容量存储设备中的一个或多个的特征服务水平并且定义降低的服务水平, 小于特色服务水平。 该方法还包括自动执行以下步骤:检测数据存储系统中的第一大容量存储设备上的降低的服务等级; 确定所述第一海量存储设备上的数据被冗余地存储在所述数据存储系统中的第二海量存储设备上; 并且响应于检测到降低的服务水平,在以降低的服务水平操作第一大容量存储设备的同时,将针对第一大容量存储设备的数据的输入/输出(IO)请求转发到第二大容量存储设备。
    • 64. 发明申请
    • Automatic disk healing
    • 自动磁盘恢复
    • US20060253674A1
    • 2006-11-09
    • US11123634
    • 2005-05-06
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • G06F13/00
    • G06F11/0793G06F11/0727
    • A method for operating a data storage system that responds to IO data requests from one or more hosts, the system including a first and one or more second mass storage devices, each of the devices having respective data stored therein. The method includes defining an unacceptable level of activity, and performing the following steps automatically, without intervention by a human operator. Detecting the unacceptable level of activity on the first mass storage device; in response to detecting the unacceptable level of activity, transferring the data stored in the first mass storage device to the second mass storage devices, while responding to the IO data requests; reformatting the first mass storage device; and, after reformatting the first mass storage device, transferring the data stored in the second mass storage devices to the first mass storage device, while responding to the IO data requests.
    • 一种用于操作响应来自一个或多个主机的IO数据请求的数据存储系统的方法,所述系统包括第一和一个或多个第二大容量存储设备,每个设备具有存储在其中的相应数据。 该方法包括定义不可接受的活动水平,以及在不经人操作的情况下自动执行以下步骤。 检测第一大容量存储设备上不可接受的活动水平; 响应于检测到不可接受的活动级别,在响应于IO数据请求的同时,将存储在第一大容量存储设备中的数据传送到第二大容量存储设备; 重新格式化第一大容量存储设备; 并且在重新格式化第一大容量存储装置之后,在将IO数据请求作出响应的同时,将存储在第二大容量存储装置中的数据传送到第一大容量存储装置。
    • 65. 发明申请
    • Method, system and circuit for efficiently managing a cache storage device
    • 用于有效管理高速缓存存储设备的方法,系统和电路
    • US20060143383A1
    • 2006-06-29
    • US11123633
    • 2005-05-06
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • G06F12/00
    • G06F12/0866G06F12/084
    • A system, method and circuit for efficiently managing a cache storage device. A cache storage device may include a cache management module. The cache management module may be adapted to generate a management unit and to associate the management unit with new data that is to be written into the cache. The cache management module may be further adapted to assign two or more allocation units for each management unit, to store the new data in the cache. A cache management module may include a management unit module. The management unit module may be adapted to generate management units associated with predefined global cache management functions. The cache management module may further include an allocation unit module in communication with the management unit module. The allocation unit module may be adapted to assign allocation units for storing data written into the cache.
    • 一种用于有效管理高速缓存存储设备的系统,方法和电路。 缓存存储设备可以包括高速缓存管理模块。 高速缓存管理模块可以适于生成管理单元并且将管理单元与要写入高速缓存的新数据相关联。 高速缓存管理模块还可以适于为每个管理单元分配两个或更多个分配单元,以将新数据存储在高速缓存中。 高速缓存管理模块可以包括管理单元模块。 管理单元模块可以适于生成与预定义的全局高速缓存管理功能相关联的管理单元。 高速缓存管理模块还可以包括与管理单元模块通信的分配单元模块。 分配单元模块可以适于分配用于存储写入高速缓存的数据的分配单元。
    • 70. 发明授权
    • Parallel asynchronous order-preserving transaction processing
    • 并行异步订单保留事务处理
    • US08214588B2
    • 2012-07-03
    • US10701800
    • 2003-11-05
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • Ofir ZoharYaron RevahHaim HelmanDror CohenShemer Schwartz
    • G06F12/00
    • G06F11/2064G06F11/2074Y10S707/99953
    • A method for data mirroring including receiving a sequence of transactions at a first storage node from a host indicating data to be stored by the node, storing the data therein, and delineating a first batch of the transactions. The node returns to the host an acknowledgment of having stored the data, delineates a second batch of the transactions received subsequent to the acknowledgment, and conveys the data to a second storage node. The first node also conveys to the second node a first record of the transactions in the first batch and a second record of the transactions in the second batch, and the data are stored in the second node responsively to the first and second records, so that all data indicated by the transactions in the first batch are stored by the second node prior to storing data indicated by the transactions in the second batch.
    • 一种用于数据镜像的方法,包括从主机在第一存储节点处接收指示要由节点存储的数据的事务序列,将数据存储在其中,以及描绘第一批事务。 节点向主机返回存储数据的确认,描述在确认之后接收到的事务的第二批,并将数据传送到第二存储节点。 第一节点还向第二节点传送第一批中的事务的第一记录和第二批中的事务的第二记录,并且响应于第一和第二记录将数据存储在第二节点中,使得 由第一批中的事务指示的所有数据在存储由第二批中的事务指示的数据之前由第二节点存储。