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    • 5. 发明授权
    • Computer, computer system, and data communication method
    • 计算机,计算机系统和数据通信方法
    • US08504780B2
    • 2013-08-06
    • US13127071
    • 2011-04-08
    • Hiroshi MineKen NomuraDamien Le MoalTadashi Takeuchi
    • Hiroshi MineKen NomuraDamien Le MoalTadashi Takeuchi
    • G06F12/00
    • G06F9/544G06F2213/0038
    • A computer includes first and second processors, first and second I/O devices, a shared memory, and an interrupt controller. The first processor issues a control command for causing the first I/O device to read target data from the first apparatus and store the target data in the shared memory. The first I/O device reads the target data from the first apparatus and, transfers the target data to the shared memory, and generates an I/O complete interrupt. The interrupt controller delivers the generated I/O complete interrupt to the second processor. When the second processor receives the I/O complete interrupt, the second processor issues a control command for causing the second I/O device to read the target data from the shared memory and send the target data to the second apparatus. The second I/O device reads the target data from the shared memory and sends the target data to the second apparatus.
    • 计算机包括第一和第二处理器,第一和第二I / O设备,共享存储器和中断控制器。 第一处理器发出用于使第一I / O设备从第一设备读取目标数据并将目标数据存储在共享存储器中的控制命令。 第一个I / O设备从第一个装置读取目标数据,并将目标数据传送到共享存储器,并产生一个I / O完成中断。 中断控制器将生成的I / O完成中断传递给第二个处理器。 当第二处理器接收到I / O完成中断时,第二处理器发出用于使第二I / O设备从共享存储器读取目标数据并将目标数据发送到第二设备的控制命令。 第二I / O设备从共享存储器读取目标数据并将目标数据发送到第二设备。
    • 6. 发明授权
    • Techniques for managing processor resource for a multi-processor server executing multiple operating systems
    • 用于管理执行多个操作系统的多处理器服务器的处理器资源的技术
    • US08195859B2
    • 2012-06-05
    • US12308658
    • 2008-12-03
    • Damien Le Moal
    • Damien Le Moal
    • G06F12/00
    • G06F9/5077G06F9/5083Y02D10/22Y02D10/36
    • A multiprocessor server system executes a plurality of multiprocessor or single-processor operating systems each using a plurality of storage adapters and a plurality of network adapters. Each operating system maintains load information about all its processors and shares the information with other operating systems. Upon changes in the processor load of the operating systems, processors are dynamically reassigned among operating systems to improve performance if the maximum load of the storage adapters and network adapters of the reassignment target operating system is not already reached. Processor reassignment includes shutting down and restarting dynamically operating systems to allow the reassignment of the processors used by single-processor operating systems. Furthermore, the process scheduler of multi-processor operating systems keeps some processors idle under light processor load conditions in order to allow the immediate reassignment of processors to heavily loaded operating systems.
    • 多处理器服务器系统执行多个多处理器或单处理器操作系统,每个操作系统使用多个存储适配器和多个网络适配器。 每个操作系统维护有关其所有处理器的负载信息,并与其他操作系统共享信息。 在操作系统的处理器负载发生变化时,如果尚未达到重新分配目标操作系统的存储适配器和网络适配器的最大负载,处理器将在操作系统之间动态重新分配,以提高性能。 处理器重新分配包括关闭和重新启动动态操作系统,以允许重新分配单处理器操作系统使用的处理器。 此外,多处理器操作系统的进程调度程序在一些处理器负载条件下使一些处理器处于空闲状态,以便将处理器立即重新分配给负载较重的操作系统。
    • 8. 发明授权
    • Storage control apparatus
    • 存储控制装置
    • US08499112B2
    • 2013-07-30
    • US13203830
    • 2011-08-16
    • Hiroshi MineKen NomuraDamien Le MoalTadashi TakeuchiMasaaki Iwasaki
    • Hiroshi MineKen NomuraDamien Le MoalTadashi TakeuchiMasaaki Iwasaki
    • G06F13/24
    • G06F9/45533G06F9/5077G06F11/0712G06F11/0724G06F11/0793G06F11/301G06F11/3055
    • An aspect of the invention is a storage control apparatus, comprising a plurality of processors, a memory, an I/O device coupled to a storage device, a virtualization module that allocates a first processor to a first guest and a second processor to a second guest from among the plurality of processors, and an interrupt control module that receives an interrupt from the I/O device and transmits the interrupt to any one of the plurality of processors, wherein the virtualization module comprises, a state detection module that detects at least one of a state of the first guest and a state of the first processor, and an interrupt delivery destination control module that switches the interrupt with respect to the first processor to the second processor when at least one of the state of the first guest and the state of the first processor becomes a predetermined state.
    • 本发明的一个方面是一种存储控制装置,包括多个处理器,存储器,耦合到存储装置的I / O装置,将第一处理器分配给第一客户机和第二处理器的虚拟化模块, 多个处理器中的客户端以及从所述I / O设备接收中断并将所述中断发送到所述多个处理器中的任何一个的中断控制模块,其中所述虚拟化模块包括:至少检测到的状态检测模块 第一访客的状态和第一处理器的状态之一,以及当第一访客和第二处理器的状态中的至少一个状态中的至少一个时,将中断相对于第一处理器切换到第二处理器的中断传送目的地控制模块 第一处理器的状态变为预定状态。
    • 9. 发明申请
    • Techniques for managing processor resource for a multi-processor server executing multiple operating systems
    • 用于管理执行多个操作系统的多处理器服务器的处理器资源的技术
    • US20110191783A1
    • 2011-08-04
    • US12308658
    • 2007-12-03
    • Damien Le Moal
    • Damien Le Moal
    • G06F9/46
    • G06F9/5077G06F9/5083Y02D10/22Y02D10/36
    • A multiprocessor server system executes a plurality of multiprocessor or single-processor operating systems each using a plurality of storage adapters and a plurality of network adapters. Each operating system maintains load information about all its processors and shares the information with other operating systems. Upon changes in the processor load of the operating systems, processors are dynamically reassigned among operating systems to improve performance if the maximum load of the storage adapters and network adapters of the reassignment target operating system is not already reached. Processor reassignment includes shutting down and restarting dynamically operating systems to allow the reassignment of the processors used by single-processor operating systems. Furthermore, the process scheduler of multi-processor operating systems keeps some processors idle under light processor load conditions in order to allow the immediate reassignment of processors to heavily loaded operating systems.
    • 多处理器服务器系统执行多个多处理器或单处理器操作系统,每个操作系统使用多个存储适配器和多个网络适配器。 每个操作系统维护有关其所有处理器的负载信息,并与其他操作系统共享信息。 在操作系统的处理器负载发生变化时,如果尚未达到重新分配目标操作系统的存储适配器和网络适配器的最大负载,处理器将在操作系统之间动态重新分配,以提高性能。 处理器重新分配包括关闭和重新启动动态操作系统,以允许重新分配单处理器操作系统使用的处理器。 此外,多处理器操作系统的进程调度程序在一些处理器负载条件下使一些处理器处于空闲状态,以便将处理器立即重新分配给负载较重的操作系统。
    • 10. 发明授权
    • Storage device adapter equipped with integrated cache
    • 存储设备适配器配有集成缓存
    • US07062608B2
    • 2006-06-13
    • US10783753
    • 2004-02-20
    • Damien Le MoalHiroshi Mine
    • Damien Le MoalHiroshi Mine
    • G06F12/00
    • G06F12/0888
    • When streaming data is sent to a client, server capabilities are restricted by the ability to retrieve data from a storage unit, the data transfer rate drops and processing time increases. A device adapter that connects a host and a storage includes a cache controller, a cache interface that accesses a cache device and a storage interface that accesses the storage. With the cache controller, data retrieved from the storage can be stored in a cache without the awareness of a host computer. The cache controller includes a cache directory that manages storage region allocation of the cache and a monitor that maintains load and performance information of the storage and the cache. The storage and the cache are appropriately used not only depending on the presence of requested data inside the cache but also depending on the present load and performance of the storage.
    • 当流数据发送到客户端时,服务器功能受到从存储单元检索数据的能力的限制,数据传输速率下降,处理时间增加。 连接主机和存储器的设备适配器包括高速缓存控制器,访问高速缓存设备的高速缓存接口和访问存储器的存储接口。 使用高速缓存控制器,从存储器检索的数据可以被存储在高速缓存中,而不需要主计算机的意识。 高速缓存控制器包括管理高速缓存的存储区域分配的高速缓存目录和维护存储器和高速缓存的负载和性能信息的监视器。 存储和高速缓存不仅取决于高速缓存中所请求的数据的存在而且还取决于当前的存储负载和性能而适当地使用。