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    • 33. 发明授权
    • Virtual machine system
    • 虚拟机系统
    • US08214559B2
    • 2012-07-03
    • US13197919
    • 2011-08-04
    • Toshiomi MorikiKeitaro UeharaYuji Tsushima
    • Toshiomi MorikiKeitaro UeharaYuji Tsushima
    • G06F3/00G06F5/00G06F13/28G06F13/12
    • G06F13/28G06F13/36
    • Arbitration of IO accesses and band control based on the priority of virtual servers is enabled while curbing performance overhead during IO sharing among the virtual servers. A virtual machine system includes a CPU, a memory, a hypervisor that generates plural virtual servers, and an IO controller that controls an IO interface. The IO controller includes: a DMA receiving unit that receives DMA requests from the IO interface; a decoder that decodes received DMA requests and locates the corresponding virtual servers; a DMA monitoring counter that monitors DMA processing status for each of the virtual servers; a threshold register set in advance for each of the virtual servers; and a priority deciding unit that compares the DMA monitoring counter and the value of the threshold register, and based on processing priority obtained as a result of the comparison, decides the priority of processing of the received DMA requests.
    • 基于虚拟服务器优先级的IO访问和频带控制的仲裁功能得以启用,同时在虚拟服务器之间的IO共享过程中抑制性能开销。 虚拟机系统包括CPU,存储器,生成多个虚拟服务器的管理程序以及控制IO接口的IO控制器。 IO控制器包括:DMA接收单元,其从IO接口接收DMA请求; 解码器,其解码所接收的DMA请求并定位相应的虚拟服务器; 一个DMA监视计数器,用于监视每个虚拟服务器的DMA处理状态; 预先为每个虚拟服务器设置的阈值寄存器; 以及比较DMA监视计数器和阈值寄存器的值的优先级确定单元,并且基于作为比较结果获得的处理优先级,决定接收的DMA请求的处理的优先级。
    • 36. 发明申请
    • COMPUTER SYSTEM AND A CHIPSET
    • 电脑系统和电脑
    • US20080162734A1
    • 2008-07-03
    • US11769072
    • 2007-06-27
    • Keitaro UEHARAToshiomi MorikiYuji Tsushima
    • Keitaro UEHARAToshiomi MorikiYuji Tsushima
    • G06F3/00
    • G06F13/387G06F11/004
    • When the entire system is split into plural partitions on chipsets connecting plural processors, IO hubs, and memory controllers, and an OS is operating on each of the partitions, the present invention prevents a failure in a partition from propagating to other partitions. Based on address information or issuer information included in a packet inputted to a chipset, a partition from which the packet was issued is identified, and an identified partition identifier is added to the packet. Based on the added partition identifier, a partition initializing part selectively deletes the packet issued from the partition in which a failure occurred, thereby preventing the influence of the failure in the failure-causing partition from propagating to other partitions.
    • 当整个系统被分割成连接多个处理器,IO集线器和存储器控制器的芯片组上的多个分区,并且OS在每个分区上操作时,本发明防止分区中的故障传播到其他分区。 基于输入到芯片组的分组中包含的地址信息或发行者信息,识别发行分组的分区,并将识别的分区标识符添加到分组。 基于添加的分区标识符,分区初始化部分选择性地删除从发生故障的分区发出的分组,从而防止故障分区中的故障的影响传播到其他分区。
    • 38. 发明申请
    • System and method for resource accounting on computer network
    • 计算机网络资源计费系统和方法
    • US20050010667A1
    • 2005-01-13
    • US10751434
    • 2004-01-06
    • Toshiomi MorikiKeitaro UeharaYuji TsushimaTsuyoshi Tanaka
    • Toshiomi MorikiKeitaro UeharaYuji TsushimaTsuyoshi Tanaka
    • G06F11/34G06F1/00G06F9/50G06F15/173G06F21/22
    • G06F11/3423G06F9/5011G06F11/3476G06F11/3495G06F2201/865G06F2201/875
    • A sever includes an SVP 206 which is a control device capable of executing processing independent of a CPU, and an interrupt 314 is periodically applied to the CPU. An SVP device driver 303, being triggered by the interrupt 314, acquires an amount of server resources used, such as CPU operating time and memory capacity, and user information used by using an API provided by an OS, and delivers such information to an SVP 206. The SVP 206 transmits resource information thus delivered to an accounting server via an NIC 211. The accounting server accounts an amount of server resource used on a user basis and bills the users according to the quantity of server resource used. With such arrangement, it is possible to accurately grasp the usage status of server resource regardless of server loading, and further, it is possible to execute accounting of server resources and billing based on such accounting regardless of types of OS or CPU.
    • 服务器包括SVP 206,其是能够独立于CPU执行处理的控制装置,并且中断314周期性地应用于CPU。 由中断314触发的SVP设备驱动器303获取使用的服务器资源量,例如CPU操作时间和存储器容量,以及使用由OS提供的API使用的用户信息,并将这些信息传送到SVP 206. SVP 206经由NIC211发送这样传送给计费服务器的资源信息。计费服务器根据用户的用户数量来计算使用的服务器资源量,并根据所使用的服务器资源的数量向用户收费。 通过这样的配置,无论服务器负载如何,都能够准确地掌握服务器资源的使用状态,而且,无论OS或CPU的种类如何,都可以基于这样的计费来执行对服务器资源的计费和计费。
    • 39. 发明授权
    • Method and apparatus of out-of-order transaction processing using request side queue pointer and response side queue pointer
    • 使用请求侧队列指针和响应端队列指针进行乱序事务处理的方法和装置
    • US06591325B1
    • 2003-07-08
    • US09547392
    • 2000-04-11
    • Hideya AkashiYuji TsushimaKeitaro UeharaNaoki HamanakaToru ShonaiTetsuhiko OkadaMasamori Kashiyama
    • Hideya AkashiYuji TsushimaKeitaro UeharaNaoki HamanakaToru ShonaiTetsuhiko OkadaMasamori Kashiyama
    • G06F1314
    • G06F13/4204
    • An information processing system that transfers transactions between a plurality of system modules. A request side interface unit in a request side module has a request ID queue in which issued request transactions are stored in order of issuance. A request side queue pointer points to an entry in this request ID queue corresponding to a response transaction to be accepted next. A response side interface unit in a response side module has a response queue in which accepted request transactions are stored in order of acceptance. A response side queue pointer points to an entry in this response queue corresponding to a response transaction to be issued next. Therefore, a request transaction and the corresponding response transaction are transferred between the request side interface unit and the response side interface unit without transferring transaction IDs. When the response order is changed, the response side interface unit issues a command, which changes the value of the request side queue pointer, to inform the request side interface unit of the change in the order.
    • 一种在多个系统模块之间传送交易的信息处理系统。 请求侧模块中的请求侧接口单元具有请求ID队列,其中发出的请求事务按照发布的顺序存储。 请求侧队列指针指向与要接受的响应事务相对应的该请求ID队列中的条目。 响应侧模块中的响应侧接口单元具有响应队列,其中接受请求事务按接受顺序存储。 响应侧队列指针指向对应于接下来要发出的响应事务的该响应队列中的条目。 因此,在请求侧接口单元和响应侧接口单元之间传送请求事务和相应的响应事务,而不转移事务ID。 当响应顺序改变时,响应侧接口单元发出改变请求侧队列指针的值的命令,以通知请求侧接口单元的顺序改变。
    • 40. 发明申请
    • COMPUTER SYSTEM AND METHOD OF DATA CACHE MANAGEMENT
    • 计算机系统和数据缓存管理方法
    • US20110225373A1
    • 2011-09-15
    • US12947248
    • 2010-11-16
    • Daisuke ITOYuji TsushimaHitoshi Hayakawa
    • Daisuke ITOYuji TsushimaHitoshi Hayakawa
    • G06F12/14
    • G06F12/0815G06F12/0866G06F2212/1016H04L63/20H04L67/2842H04L67/288H04L67/2885
    • A computer system including: a file server, cache servers, and a cache management server, wherein: the cache server obtains the authority information from the cache management server, in a case of receiving a command to process a file, wherein the cache server refers to the obtained authority information, wherein the cache server executes the command to process the file, in a case where the cache server has an administration right of the cache data of the file, wherein the cache management server sends to the cache server an update command for transferring the administration right of the cache data to the other cache server, wherein the cache server sends the update command to the other cache server after receiving the update command, and executes a update procedure in which a lock management information is updated.
    • 一种计算机系统,包括:文件服务器,缓存服务器和高速缓存管理服务器,其中:在接收到处理文件的命令的情况下,所述高速缓存服务器从所述高速缓存管理服务器获取所述授权信息,其中所述缓存服务器引用 在高速缓存服务器具有文件的高速缓存数据的管理权限的情况下,其中高速缓存服务器执行处理文件的命令,其中高速缓存管理服务器向缓存服务器发送更新命令 用于将高速缓存数据的管理权限传送到另一高速缓存服务器,其中高速缓存服务器在接收到更新命令之后向另一高速缓存服务器发送更新命令,并且执行其中更新锁管理信息的更新过程。