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    • 1. 发明授权
    • Log structure array
    • 日志结构数组
    • US08862819B2
    • 2014-10-14
    • US13638096
    • 2011-03-31
    • Doron Tal
    • Doron Tal
    • G06F13/00G06F3/06
    • G06F13/00G06F3/061G06F3/0643G06F3/065G06F3/0685
    • A storage system, comprising: (a) a primary storage entity utilized for persistently storing an entire data-set; (b) a secondary storage entity; and (c) a secondary storage controller (“SSC”) responsive to a destage stream pending to be written to the second storage entity for identifying a succession of physical locations on the secondary storage entity formed by non-protected locations in an extent that is sufficient to accommodate the destage stream and one or more intervening protected locations between two or more of the non-protected locations; wherein said SSC is adapted to retrieve from said primary storage entity protected data associated with the intervening protected location(s), pad the stream of data with the protected data and write the padded stream of data to said secondary storage entity as a single successive write sequence over said succession of physical locations.
    • 一种存储系统,包括:(a)用于持久存储整个数据集的主存储实体; (b)二级存储实体; 以及(c)响应于要等待被写入到第二存储实体的流水流的辅助存储控制器(“SSC”),用于识别由非保护位置形成的辅助存储实体上的一系列物理位置, 足以容纳在两个或更多个非保护位置之间的流出物流和一个或多个中间保护位置; 其中所述SSC适于从所述主存储实体检索与所述中间保护位置相关联的受保护数据,用受保护数据填充数据流,并将填充的数据流作为单个连续写入写入所述辅助存储实体 在所述连续的物理位置上的顺序。
    • 2. 发明申请
    • IMPLEMENTING A LOGICAL UNIT RESET COMMAND IN A DISTRIBUTED STORAGE SYSTEM
    • 在分布式存储系统中实现逻辑单元复位命令
    • US20130246660A1
    • 2013-09-19
    • US13423549
    • 2012-03-19
    • Smadar GONENBenny KorenEran MannEyal GordonDoron TalIdo Benda
    • Smadar GONENBenny KorenEran MannEyal GordonDoron TalIdo Benda
    • G06F3/00
    • G06F11/0727G06F11/0751G06F11/1658G06F11/2089G06F11/2092
    • A method of implementing a logical unit reset across a plurality of interfaces in a distributed storage system, comprising: initiating a session for implementing the logical unit reset across the plurality of interfaces in response to receiving at a central controller a logical unit reset command from an originator interface, and writing session-data including an indication that the originator interface implemented the respective logical unit reset locally; communicating a logical unit reset command from the central controller to each interface other than the originator interface; updating the session data in response to receiving an indication from an interface that the logical unit was successfully reset locally and when each one of the plurality of interfaces implemented the logical unit reset locally, communicating a success response to each one of the plurality of interfaces.
    • 一种在分布式存储系统中跨多个接口实现逻辑单元重置的方法,包括:响应于在中央控制器处接收来自一个或多个接口的逻辑单元复位命令,发起用于实现跨多个接口的逻辑单元复位的会话 发起者接口和写入会话数据,包括:发起者接口实现相应逻辑单元本地复位的指示; 将逻辑单元复位命令从中央控制器传送到除始发者接口之外的每个接口; 响应于接收到来自接口的指示,逻辑单元在本地被成功地重置,并且当多个接口中的每一个实现逻辑单元在本地重置时,向多个接口中的每一个传送成功响应,来更新会话数据。
    • 4. 发明授权
    • Techniques for Wi-Fi acceleration in residential gateways
    • 住宅网关Wi-Fi加速技术
    • US08804533B2
    • 2014-08-12
    • US12979587
    • 2010-12-28
    • Yuri PodlyasGil BenamarYoav LevyDoron Tal
    • Yuri PodlyasGil BenamarYoav LevyDoron Tal
    • H04L1/00H04W24/00
    • H04W76/12
    • A method for acceleration of wireless communication in a residential gateway, the residential gateway enables communication between a plurality of subscriber devices connected in a wireless local area network (WLAN) and a passive optical network (PON). The method comprises pre-configuring a wireless controller to intercept networking functions programmed in a wireless stack of a wireless driver, wherein the wireless controller and the wireless driver are components of a kernel of an operating system executed by a host processor; monitoring system calls initiated by the wireless driver to the kernel; for each monitored system call, checking if a system call is a request for a networking function; and forwarding the system call for a network function to a packet processor.
    • 一种用于在住宅网关中加速无线通信的方法,住宅网关实现了连接在无线局域网(WLAN)和无源光网络(PON)之间的多个用户设备之间的通信。 该方法包括预先配置无线控制器以拦截在无线驱动器的无线堆栈中编程的网络功能,其中无线控制器和无线驱动器是由主处理器执行的操作系统的内核的组件; 将无线驱动程序发起的监控系统呼叫发送到内核; 对于每个被监视的系统调用,检查系统调用是否是对联网功能的请求; 并将用于网络功能的系统调用转发到分组处理器。
    • 9. 发明授权
    • System architecture
    • 系统架构
    • US06662254B1
    • 2003-12-09
    • US09599797
    • 2000-06-22
    • Doron TalGonen ZilberGil Biran
    • Doron TalGonen ZilberGil Biran
    • G06F1300
    • G06F13/4045
    • A system for a high capacity computer-based communications device is described. The system has an enhance backplane supporting a plurality of busses working independently of each other and each utilized for a different data type. The backplane supports a cPCI bus, a H.110 bus, and a StarLan bus. The system provides for increasing the capacity of the cPCI bus through bridging between two cPCI segments. A first serializer, operatively connected to the first cPCI segment, is used to receive data from a first PCI bus, serializes the data, and transfers the serial data stream to a second serializer which is operatively coupled to the second bus. The second serializer de-serializes the transferred data and transfers it to the second PCI bus. The backplane is utilized with a router and I/O modules to provide a device which combines traditional IP routing capabilities with a gateway for non-IP traffic to the IP network. A unique routing method is utilized to reduce the overhead associated with identifying data flows at the I/O module. The router receives the incoming datagrams and looks at the layer 3 and above headers to determine which I/O module to send the data to and to identify the data flow. The router then encapsulates the data into a specialized frame which designates the I/O module and uniquely identifies the data flow and forwards this over the network bus to the appropriate module. The module then determines the destination of the data via the specialized frame without having to look at the layer 3 and above headers.
    • 描述了一种用于高容量基于计算机的通信设备的系统。 该系统具有增强的背板,其支撑彼此独立工作并且各自用于不同数据类型的多个总线。 背板支持cPCI总线,H.110总线和StarLan总线。 该系统通过桥接两个cPCI段来提高cPCI总线的容量。 可操作地连接到第一cPCI段的第一串行器用于从第一PCI总线接收数据,串行化数据,并将串行数据流传送到可操作地耦合到第二总线的第二串行器。 第二个串行器解除串行化传输的数据并将其传输到第二个PCI总线。 背板与路由器和I / O模块一起使用,以提供将传统IP路由功能与用于非IP流量到IP网络的网关相结合的设备。 利用独特的路由方法来减少与识别I / O模块上的数据流相关的开销。 路由器接收传入的数据报,并查看第3层及以上标题,以确定哪个I / O模块将数据发送到并识别数据流。 然后,路由器将数据封装到专门的帧中,该帧指定I / O模块,并唯一地标识数据流,并将其通过网络总线转发到适当的模块。 然后,该模块经由专用框架确定数据的目的地,而不必查看层3及以上标题。