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    • 4. 发明申请
    • Scalable Virtual Appliance Cloud (SVAC) and Methods Usable in an SVAC
    • 可扩展虚拟设备云(SVAC)和SVAC中可用的方法
    • US20130242999A1
    • 2013-09-19
    • US13484216
    • 2012-05-30
    • Keshav G. KambleDar-Ren LeuNilanjan MukherjeeVijoy A. Pandey
    • Keshav G. KambleDar-Ren LeuNilanjan MukherjeeVijoy A. Pandey
    • H04L12/56
    • H04L63/101G06F9/45558H04L45/64H04L47/125
    • According to one embodiment, a method for providing scalable virtual appliance cloud (SVAC) services includes receiving incoming data traffic having multiple packets directed toward a SVAC using at least one switching distributed line card (DLC), determining that a packet satisfies a condition of an access control list (ACL), designating a destination port to send the packet based on the condition of the ACL being satisfied, fragmenting the packet into cells, wherein the designated destination port is stored in a cell header of the cells, sending the cells to the destination port via at least one switch fabric controller (SFC), receiving the cells at a fabric interface of an appliance DLC, reassembling the cells into a second packet, performing one or more services on the second packet using the appliance DLC, and sending the second packet to its intended port.
    • 根据一个实施例,一种用于提供可伸缩虚拟设备云(SVAC)服务的方法包括使用至少一个交换分布式线卡(DLC)接收具有指向SVAC的多个分组的输入数据业务,确定分组满足条件 访问控制列表(ACL),根据满足ACL的条件指定发送分组的目的地端口,将分组分段成小区,其中指定的目的地端口存储在小区的小区头部中,将小区发送到 经由至少一个交换结构控制器(SFC)的目的地端口,在设备DLC的结构接口处接收小区,将小区重新组合成第二分组,使用设备DLC在第二分组上执行一个或多个服务,以及发送 第二个数据包到其预定端口。
    • 8. 发明申请
    • Thread Execution in a Computing Environment
    • 线程在计算环境中执行
    • US20120324460A1
    • 2012-12-20
    • US13602365
    • 2012-09-04
    • Dayavanti G. KamathNirapada GhoshDar-ren LeuNilanjan MukherjeeVijoy Pandey
    • Dayavanti G. KamathNirapada GhoshDar-ren LeuNilanjan MukherjeeVijoy Pandey
    • G06F9/46
    • G06F9/52G06F9/4881G06F2209/486
    • A technique for executing normally interruptible threads of a process in a non-preemptive manner includes in response to a first entry associated with a first message for a first thread reaching a head of a run queue, receiving, by the first thread, a first wake-up signal. In response to receiving the wake-up signal, the first thread waits for a global lock. In response to the first thread receiving the global lock, the first thread retrieves the first message from an associated message queue and processes the retrieved first message. In response to completing the processing of the first message, the first thread transmits a second wake-up signal to a second thread whose associated entry is next in the run queue. Finally, following the transmitting of the second wake-up signal, the first thread releases the global lock.
    • 用于以非预先方式执行进程的正常可中断线程的技术包括响应于与第一消息相关联的第一条目,用于第一线程到达运行队列的头部,由第一线程接收第一唤醒 -up信号。 响应于接收到唤醒信号,第一个线程等待一个全局锁定。 响应于接收全局锁的第一线程,第一线程从相关联的消息队列中检索第一消息并处理检索到的第一消息。 响应于完成第一消息的处理,第一线程向第二线程发送第二唤醒信号,该第二线程的相关条目在下一个运行队列中。 最后,在发送第二个唤醒信号之后,第一个线程释放全局锁定。