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    • 3. 发明授权
    • Automated testing environment framework for testing data storage systems
    • 用于测试数据存储系统的自动测试环境框架
    • US08549522B1
    • 2013-10-01
    • US12173238
    • 2008-07-15
    • Paresh ChatterjeeSrikumar SubramanianNarayanaswami Ganapathy
    • Paresh ChatterjeeSrikumar SubramanianNarayanaswami Ganapathy
    • G06F11/28
    • G06F11/3664G06F11/3672
    • Technologies for an automated testing environment (ATE) framework can support the creation and execution of various automated tests on data storage systems. The ATE framework can support various configurations of multiple client systems exercising multiple storage target systems. A connectionless communication model can be supported among elements within the ATE. Complex tests can be subdivided into smaller jobs that can be executed sequentially, in parallel, or any combination thereof. Sophisticated scheduling mechanisms can include dependency relationships that can require one job to finish before another job begins. Multiple storage targets and multiple initiators can be involved in various configurations and combinations for specific testing tasks. The ATE framework can support extensibility, test tracking, reporting of test results, and fault injection.
    • 自动测试环境(ATE)框架的技术可以支持在数据存储系统上创建和执行各种自动化测试。 ATE框架可以支持运行多个存储目标系统的多个客户端系统的各种配置。 ATE中的元素之间可以支持无连接通信模型。 复杂测试可以细分为可以顺序执行,并行执行的任务或其任何组合的较小作业。 复杂的调度机制可以包括可以在另一个作业开始之前完成一个作业的依赖关系。 多个存储目标和多个启动器可以涉及特定测试任务的各种配置和组合。 ATE框架可以支持可扩展性,测试跟踪,测试结果报告和故障注入。
    • 9. 发明授权
    • Low latency synchronous replication using an N-way router
    • 使用N路由器的低延迟同步复制
    • US08108580B1
    • 2012-01-31
    • US12104129
    • 2008-04-16
    • Paresh ChatterjeeLoganathan RanganathanNarayanan BalakrishnanSrikumar Subramanian
    • Paresh ChatterjeeLoganathan RanganathanNarayanan BalakrishnanSrikumar Subramanian
    • G06F13/12G06F13/00
    • G06F13/00G06F3/067G06F11/14G06F11/1471G06F11/2076G06F13/12G06F2201/855H04L45/00H04L67/1097
    • Technologies for efficient synchronous replication across heterogeneous storage nodes can provide the performance of high-speed storage units while leveraging low-cost and high-capacity backup storage units within the same system. The performance of low-cost, high-capacity hard disks may be improved by initially storing data into sequential physical locations. A sequential journal of I/Os may be used in a replicated secondary node to allow for rapid completion of I/Os. A separate background process can later scatter the sequentially logged I/O data into its proper location for storage. A programmable n-way router can be configured to route I/Os as needed to improve overall performance of the storage unit. A secondary node log device can also be used to provide continuous data protection (CDP). Lastly, packetizing together I/Os prior to delivery to a secondary node may reduce interrupts and context switches in the primary node, thereby improving performance of the storage system.
    • 跨异构存储节点进行高效同步复制的技术可以提供高速存储单元的性能,同时利用同一系统内的低成本和大容量备份存储单元。 通过最初将数据存储到连续的物理位置,可以提高低成本,大容量硬盘的性能。 可以在复制的辅助节点中使用I / O的顺序日志以允许快速完成I / O。 单独的后台进程可以稍后将顺序记录的I / O数据分散到其正确位置进行存储。 可编程n路由器可以配置为根据需要路由I / O,以提高存储单元的整体性能。 次级节点日志设备也可用于提供连续数据保护(CDP)。 最后,在传送到辅助节点之前将I / O分组在一起可以减少主节点中的中断和上下文切换,从而提高存储系统的性能。