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    • 4. 发明申请
    • SYSTEM AND METHOD FOR DYNAMICALLY LOAD BALANCING STORAGE MEDIA DEVICES BASED ON A MINIMUM PERFORMANCE LEVEL
    • 基于最低性能水平的动态负载平衡存储介质设备的系统和方法
    • US20150160891A1
    • 2015-06-11
    • US14099820
    • 2013-12-06
    • Concurrent Ventures, LLC
    • Jesse D. BEESONJesse B. YATES
    • G06F3/06
    • G06F3/0613G06F3/064G06F3/067G06F3/0676
    • A storage controller controlling a plurality of storage media devices receives one or more commands from a queue representing a load, identifies a minimum performance level required for the load, identifies a first set of weighted storage regions having a slow access rate across the plurality of storage media devices and a second set of weighted storage regions having a fast access rate in the plurality of storage media devices, identifies a subset of storage regions within the first set of weighted storage regions having a slow access rate that satisfies the identified minimum performance level, and distributes the load based on the identified minimum performance level by utilizing only the subset of storage regions within the first set of weighted storage regions having the slow access rate and holding the second storage region having the fast access rate in reserve.
    • 控制多个存储介质设备的存储控制器从表示负载的队列接收一个或多个命令,识别所述负载所需的最小性能等级,识别跨所述多个存储器具有较慢访问速率的第一组加权存储区域 媒体设备和在多个存储介质设备中具有快速访问速率的第二组加权存储区域识别具有满足所识别的最低性能级别的慢访问速率的第一组加权存储区域内的存储区域的子集, 并且通过仅利用具有慢访问速率的第一组加权存储区域内的存储区域的子集,并且保留具有快速访问速率的第二存储区域,基于所识别的最小性能级别来分配负载。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR DIVIDING AND SYNCHRONIZING A PROCESSING TASK ACROSS MULTIPLE PROCESSING ELEMENTS/PROCESSORS IN HARDWARE
    • 用于通过多个处理元件/处理器在硬件中分配和同步加工任务的系统和方法
    • US20150160861A1
    • 2015-06-11
    • US14585003
    • 2014-12-29
    • Concurrent Ventures, LLC
    • Jesse D. BEESONJesse B. YATES
    • G06F3/06
    • G06F3/0619G06F3/061G06F3/0644G06F3/065G06F3/0659G06F3/067G06F9/52G06F2209/548
    • A shared counter resource, such as a register, is disclosed in the hardware, where the register representing how much free space there is in the command queue is accessible to one or more processing elements. When a processing element reads the “reservation” register, the hardware automatically decrements the available free space by a preconfigured amount (e.g., 1) and returns the value of the free space immediately prior to the read/reservation. If the read returns 0 (or a number less than the preconfigured amount), there was insufficient free space to satisfy the request. In the event there was insufficient space to satisfy the request the reservation register may be configured to reserve however much space was available or to not reserve any space at all. Any number of processing elements may read these registers and various scenarios are described where the input and output queues are accessible via various processing elements.
    • 诸如寄存器的共享计数器资源在硬件中公开,其中表示命令队列中存在多少可用空间的寄存器可被一个或多个处理元件访问。 当处理单元读取“预约”寄存器时,硬件自动地将可用空闲空间减少预先设定的量(例如1),并在读/预留之前立即返回可用空间的值。 如果读取返回0(或小于预配置量的数字),则没有足够的可用空间来满足请求。 如果没有足够的空间来满足请求,则可以配置保留寄存器来保留空间可用或根本不保留任何空间。 任何数量的处理元件可以读取这些寄存器,并且描述了通过各种处理元件访问输入和输出队列的各种场景。