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    • 1. 发明申请
    • CONTROLLING SIMULATION SYSTEMS
    • 控制仿真系统
    • US20120101791A1
    • 2012-04-26
    • US13246052
    • 2011-09-27
    • Hideaki KomatsuShingo NagaiFumitomo Ohsawa
    • Hideaki KomatsuShingo NagaiFumitomo Ohsawa
    • G06G7/48
    • G06F17/5009G05B17/02G06F17/5095
    • A method for controlling a simulation system includes storing first-stage and second stage tables in which a value of a predicted time until arrival of an I/O instruction and a type of the instruction are included as entries for each program counter of an instruction set simulator, and in which a value of an earliest time until an output event from a peripheral simulator is included as an entry for each type of instruction; looking up the first-stage table to obtain the type of the instruction and the value of the predicted time until arrival of the instruction, looking up the second-stage table with reference to the obtained type of the instruction to obtain the value of the earliest time until the output event from the peripheral simulator, and returning the predicted time until arrival of the instruction and the earliest time until the output event from the peripheral simulator.
    • 一种用于控制模拟系统的方法,包括存储第一级和第二级表,其中包括I / O指令的到达之前的预测时间的值和指令的类型作为指令集的每个程序计数器的条目 模拟器,并且其中包括来自外围模拟器的输出事件之前的最早时间的值作为每种类型的指令的条目; 查找第一级表以获得指令的类型和直到指令到达的预测时间的值,参考获得的指令类型来查找第二级表以获得最早的值 直到来自外围模拟器的输出事件为止,并返回直到指令到达为止的预测时间和最早的时间,直到来自外围模拟器的输出事件。
    • 5. 发明授权
    • Method, system and program for securing redundancy in parallel computing system
    • 用于在并行计算系统中确保冗余的方法,系统和程序
    • US08713352B2
    • 2014-04-29
    • US11608331
    • 2006-12-08
    • Masakuni OkadaFumitomo OhsawaYoshiko IshiiNaoki Matsuo
    • Masakuni OkadaFumitomo OhsawaYoshiko IshiiNaoki Matsuo
    • G06F11/00
    • G06F11/2046G06F11/2028G06F11/2038
    • In a parallel computing system having a plurality of computing node groups including at least one spare computing node group, a plurality of managing nodes for allocating jobs to the computing node groups and an information management server having respective computing node group status information are associated with the computing node groups, and the respective managing nodes update respective in-use computing node group status information by accessing the information management server. Furthermore, when the managing node detects an occurrence of a failure, the managing node having used then the computing node group disabled due to the failure identifies a spare computing node group by accessing the computing node group status information in the information management server. Then, the managing node having used then the disabled computing node group obtains the computing node group information of the identified spare computing node group. Furthermore, since the managing node having used then the disabled computing node group can continue processing by switching the disabled computing node group to the identified spare computing node group as a computing node group to be used, on the basis of the computing node group information of the identified spare computing node group, the redundancy in the parallel computing system can be secured.
    • 在具有包括至少一个备用计算节点组的多个计算节点组的并行计算系统中,将用于向计算节点组分配作业的多个管理节点和具有各自的计算节点组状态信息的信息管理服务器与 计算节点组,并且相应的管理节点通过访问信息管理服务器来更新相应的使用中的计算节点组状态信息。 此外,当管理节点检测到故障的发生时,由于故障而使计算节点组使用的管理节点通过访问信息管理服务器中的计算节点组状态信息来识别备用计算节点组。 然后,已经使用了被禁用的计算节点组的管理节点获得所识别的备用计算节点组的计算节点组信息。 此外,由于已经使用了被禁用的计算节点组的管理节点可以通过将被禁用的计算节点组切换到所识别的备用计算节点组来继续处理,作为要使用的计算节点组,基于计算节点组信息 识别的备用计算节点组,可以确保并行计算系统中的冗余。
    • 8. 发明申请
    • COMPUTER SYSTEM AND DATA TRANSFER METHOD THEREIN
    • 计算机系统和数据传输方法
    • US20110060852A1
    • 2011-03-10
    • US12874283
    • 2010-09-02
    • Hideaki KomatsuFumitomo OhsawaNobuaki TakahashiGang Zhang
    • Hideaki KomatsuFumitomo OhsawaNobuaki TakahashiGang Zhang
    • G06F13/28
    • G06F13/28
    • A DMA transfer technique which can be adapted to “hardware in the loop simulation” (HILS) and which requires less overhead. In a computer system having a data transfer device, a continuous DMA mechanism successively and repeatedly outputs a data transfer request in response to an enable process. A simulation system for HILS places data as a result of the simulation in a predetermined area in a memory and transfers the data from the memory to the continuous DMA mechanism together with generation ID data. The continuous DMA mechanism stores the transferred generation ID as a received ID, and receives the transferred data in response to the event that the transferred generation ID differs from the received ID being stored. The continuous DMA mechanism successively repeats the data transfer request until it is disabled.
    • 一种DMA传输技术,可以适应“循环仿真中的硬件”(HILS),并且需要更少的开销。 在具有数据传送装置的计算机系统中,连续的DMA机制响应于使能过程而连续并重复地输出数据传送请求。 用于HILS的模拟系统将数据作为在存储器中的预定区域中的模拟的结果,并将数据与生成ID数据一起从存储器传送到连续DMA机制。 连续DMA机制将传送的生成ID存储为接收到的ID,并且响应于所转移的生成ID与所接收的被存储的ID不同的事件接收传送的数据。 连续DMA机制连续重复数据传输请求,直到禁用。
    • 9. 发明申请
    • METHOD, SYSTEM AND PROGRAM FOR SECURING REDUNDANCY IN PARALLEL COMPUTING SYTEM
    • 用于并行计算冗余的方法,系统和程序
    • US20070180288A1
    • 2007-08-02
    • US11608331
    • 2006-12-08
    • Masakuni OkadaFumitomo OhsawaYoshiko IshiiNaoki Matsuo
    • Masakuni OkadaFumitomo OhsawaYoshiko IshiiNaoki Matsuo
    • G06F11/00
    • G06F11/2046G06F11/2028G06F11/2038
    • In a parallel computing system having a plurality of computing node groups including at least one spare computing node group, a plurality of managing nodes for allocating jobs to the computing node groups and an information management server having respective computing node group status information are associated with the computing node groups, and the respective managing nodes update respective in-use computing node group status information by accessing the information management server. Furthermore, when the managing node detects an occurrence of a failure, the managing node having used then the computing node group disabled due to the failure identifies a spare computing node group by accessing the computing node group status information in the information management server. Then, the managing node having used then the disabled computing node group obtains the computing node group information of the identified spare computing node group. Furthermore, since the managing node having used then the disabled computing node group can continue processing by switching the disabled computing node group to the identified spare computing node group as a computing node group to be used, on the basis of the computing node group information of the identified spare computing node group, the redundancy in the parallel computing system can be secured.
    • 在具有包括至少一个备用计算节点组的多个计算节点组的并行计算系统中,将用于向计算节点组分配作业的多个管理节点和具有各自的计算节点组状态信息的信息管理服务器与 计算节点组,并且相应的管理节点通过访问信息管理服务器来更新相应的使用中的计算节点组状态信息。 此外,当管理节点检测到故障的发生时,由于故障而使计算节点组使用的管理节点通过访问信息管理服务器中的计算节点组状态信息来识别备用计算节点组。 然后,已经使用了被禁用的计算节点组的管理节点获得所识别的备用计算节点组的计算节点组信息。 此外,由于已经使用了被禁用的计算节点组的管理节点可以通过将被禁用的计算节点组切换到所识别的备用计算节点组来继续处理,作为要使用的计算节点组,基于计算节点组信息 识别的备用计算节点组,可以确保并行计算系统中的冗余。