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    • 2. 发明申请
    • Data transfer device
    • 数据传输设备
    • US20060123136A1
    • 2006-06-08
    • US11211570
    • 2005-08-26
    • Tomoyuki OkuTakeki YazakiMichitaka OkunoMinoru HidakaShinichi Akahane
    • Tomoyuki OkuTakeki YazakiMichitaka OkunoMinoru HidakaShinichi Akahane
    • G06F15/16
    • H04L45/00H04L45/60H04L45/742
    • A high quality network is provided by not generating a sorting time when registering look-up conditions in a content addressable memory, and the physical banks activated during look-up of the look-up conditions are limited. The power consumption in a content addressable memory for routing and content addressable memory for flow control can be reduced by a hash function unit for routing for limiting the physical banks to be made active in a content addressable memory for routing which uses a routing look-up key or routing look-up data as input elements, and a routing register which stores values showing one or more physical bank numbers for converting hash values which may have discrepancies, and a hash function unit for flow control for limiting the physical banks to be made active in a content addressable memory for flow control which uses a flow control look-up key or flow control look-up data as input elements, and a flow control register which stores values showing one or more physical bank numbers for converting hash values which may have discrepancies.
    • 通过在内容可寻址存储器中注册查找条件时不产生排序时间来提供高质量网络,并且在查找条件的查找期间激活的物理库被限制。 用于路由的内容可寻址存储器中的功率消耗和用于流控制的内容可寻址存储器可以通过用于路由的散列函数单元来减少,用于限制在内容可寻址存储器中被激活的物理存储器,用于使用路由查找的路由 密钥或路由查找数据作为输入元素,以及路由寄存器,其存储表示用于转换可能具有差异的哈希值的一个或多个物理库号的值,以及用于限制要进行的物理银行的流量控制的散列函数单元 活动在用于流控制的内容可寻址存储器中,其使用流控制查找键或流控制查找数据作为输入元素,以及流控制寄存器,其存储表示用于转换散列值的一个或多个物理库号, 有差异。
    • 3. 发明授权
    • Packet transfer apparatus for storage system
    • 存储系统的分组传送装置
    • US08094558B2
    • 2012-01-10
    • US11020484
    • 2004-12-27
    • Masayuki TakaseMinoru HidakaTakeki YazakiTomoyuki Oku
    • Masayuki TakaseMinoru HidakaTakeki YazakiTomoyuki Oku
    • H04L12/26
    • H04L47/10H04L47/20H04L47/21
    • To control a bandwidth without the need for a large-capacity buffer. This invention provides a packet transfer apparatus connected to first device and second device, with a network therebetween, including: an input unit that receives a packet from the first device; a packet storage unit that stores the packet; a packet processing unit that stores the packet in the packet storage unit; a packet checking unit that checks whether the packet is related to data request; a packet analyzing unit that analyzes the amount of data requested by the data request; a transfer control unit that controls transfer of the packet on the basis of the analyzed amount of data; and an output unit that sends the received packet to the second device.
    • 控制带宽,无需大容量缓冲区。 本发明提供了一种连接到第一设备和第二设备的分组传送设备,其间具有网络,包括:输入单元,其从第一设备接收分组; 存储分组的分组存储单元; 分组处理单元,其将分组存储在分组存储单元中; 分组检查单元,检查分组是否与数据请求相关; 分组分析单元,其分析由所述数据请求请求的数据量; 传送控制单元,其基于分析的数据量来控制分组的传送; 以及将接收到的分组发送到第二设备的输出单元。
    • 4. 发明申请
    • Packet transfer apparatus for storage system
    • 存储系统的分组传送装置
    • US20060077915A1
    • 2006-04-13
    • US11020484
    • 2004-12-27
    • Masayuki TakaseMinoru HidakaTakeki YazakiTomoyuki Oku
    • Masayuki TakaseMinoru HidakaTakeki YazakiTomoyuki Oku
    • H04L5/22
    • H04L47/10H04L47/20H04L47/21
    • To control a bandwidth without the need for a large-capacity buffer. This invention provides a packet transfer apparatus connected to first device and second device, with a network therebetween, including: an input unit that receives a packet from the first device; a packet storage unit that stores the packet; a packet processing unit that stores the packet in the packet storage unit; a packet checking unit that checks whether the packet is related to data request; a packet analyzing unit that analyzes the amount of data requested by the data request; a transfer control unit that controls transfer of the packet on the basis of the analyzed amount of data; and an output unit that sends the received packet to the second device.
    • 控制带宽,无需大容量缓冲区。 本发明提供了一种连接到第一设备和第二设备的分组传送设备,其间具有网络,包括:输入单元,其从第一设备接收分组; 存储分组的分组存储单元; 分组处理单元,其将分组存储在分组存储单元中; 分组检查单元,检查分组是否与数据请求相关; 分组分析单元,其分析由所述数据请求请求的数据量; 传送控制单元,其基于分析的数据量来控制分组的传送; 以及将接收到的分组发送到第二设备的输出单元。
    • 5. 发明申请
    • INFORMATION SYSTEM, APPARATUS AND METHOD
    • 信息系统,装置和方法
    • US20110202658A1
    • 2011-08-18
    • US13028282
    • 2011-02-16
    • Michitaka OKUNOTakeki YazakiYuji TsushimaHidetaka Aoki
    • Michitaka OKUNOTakeki YazakiYuji TsushimaHidetaka Aoki
    • G06F15/173G06F15/16
    • H04L45/54G06F9/505H04L41/083H04L41/0833H04L45/02H04L45/38H04L67/34H04L69/22Y02D10/22
    • A system permitting alteration of the information processing position, where an existing information system is used, while minimizing alterations in configuration or the like, is to be provided. Intelligent nodes each having an information processing section and any desired address altering section are arranged on boundaries of a network where packets are likely to pass. This node has a flow table for recognizing as a flow a group of packets transmitted from each user's terminal, a flow status table for determining the connection state and the next destination address or the final destination address of each flow, and a module to observe the loaded state of its own information processing function. It rewrites the destination address of any flow not in a connection-established state in the flow status table to a less loaded one out of its own information processing function section or external information processing apparatus.
    • 提供一种允许改变信息处理位置的系统,其中使用现有的信息系统,同时最小化配置等的改变。 每个具有信息处理部分和任何期望的地址改变部分的智能节点被布置在分组可能通过的网络的边界上。 该节点具有流表,用于将从每个用户终端发送的一组分组识别为流,用于确定连接状态的流状态表和下一目的地地址或每个流的最终目的地地址,以及观察该 加载状态自己的信息处理功能。 它将流状态表中不处于连接建立状态的任何流的目的地地址重写为其自己的信息处理功能部分或外部信息处理装置中较少加载的目的地址。
    • 8. 发明申请
    • Network Node Apparatus System, Apparatus, and Method
    • 网络节点装置系统,装置和方法
    • US20140010068A1
    • 2014-01-09
    • US13391424
    • 2011-03-23
    • Michitaka OkunoTakeki Yazaki
    • Michitaka OkunoTakeki Yazaki
    • H04L12/24
    • H04L41/0668H04L49/557
    • Between network node apparatuses that operate as a duplex system, when a failure occurs in an information processing unit of one system, the service is maintained and continued in an information processing unit of the other system without interruption of the service. In a system using an active system network node apparatus 100-1 and a standby system network node apparatus 100-2 both in an operating state, a switch processing unit 110 has a transfer processing unit 112 that copies and transfers a packet flow to be a subject of information processing in the information processing unit 200 to two output destinations, when the switch processing unit operates as an active system. The information processing unit 200 has a mutual monitoring processing unit 203 that checks mutual operating states between the active system and the standby system, determines that a failure has occurred when the active system does not return a response and causes the standby system to operate as an active system, and a halt processing unit that, upon operation as the information processing unit of the standby system, halts output of a packet to be a subject of information processing.
    • 在作为双工系统工作的网络节点设备之间,当在一个系统的信息处理单元中发生故障时,在另一个系统的信息处理单元中维护并继续该服务,而不会中断服务。 在使用活动系统网络节点设备100-1和备用系统网络节点设备100-2的系统中,在操作状态下,交换处理单元110具有传送处理单元112,其将数据包流复制并传送到 信息处理单元200中的信息处理到两个输出目的地,当切换处理单元作为活动系统工作时。 信息处理单元200具有相互监视处理单元203,其检查活动系统和备用系统之间的相互操作状态,当活动系统没有返回响应时,确定发生了故障,并使备用系统作为 活动系统和停止处理单元,其在作为备用系统的信息处理单元的操作时停止作为信息处理对象的分组的输出。
    • 9. 发明授权
    • Network node apparatus system, apparatus, and method
    • 网络节点设备系统,设备和方法
    • US09294342B2
    • 2016-03-22
    • US13391424
    • 2011-03-23
    • Michitaka OkunoTakeki Yazaki
    • Michitaka OkunoTakeki Yazaki
    • G01R31/08H04L12/24H04L12/939
    • H04L41/0668H04L49/557
    • Between network node apparatuses that operate as a duplex system, when a failure occurs in an information processing unit of one system, the service is maintained and continued in an information processing unit of the other system without interruption of the service. In a system using an active system network node apparatus 100-1 and a standby system network node apparatus 100-2 both in an operating state, a switch processing unit 110 has a transfer processing unit 112 that copies and transfers a packet flow to be a subject of information processing in the information processing unit 200 to two output destinations, when the switch processing unit operates as an active system. The information processing unit 200 has a mutual monitoring processing unit 203 that checks mutual operating states between the active system and the standby system, determines that a failure has occurred when the active system does not return a response and causes the standby system to operate as an active system, and a halt processing unit that, upon operation as the information processing unit of the standby system, halts output of a packet to be a subject of information processing.
    • 在作为双工系统工作的网络节点设备之间,当在一个系统的信息处理单元中发生故障时,在另一个系统的信息处理单元中维护并继续该服务,而不会中断服务。 在使用活动系统网络节点设备100-1和备用系统网络节点设备100-2的系统中,在操作状态下,交换处理单元110具有传送处理单元112,其将数据包流复制并传送到 信息处理单元200中的信息处理到两个输出目的地,当切换处理单元作为活动系统工作时。 信息处理单元200具有相互监视处理单元203,其检查活动系统和备用系统之间的相互操作状态,当活动系统没有返回响应时,确定发生了故障,并使备用系统作为 活动系统和停止处理单元,其在作为备用系统的信息处理单元的操作时停止作为信息处理对象的分组的输出。
    • 10. 发明授权
    • Distributed router computing at network nodes
    • 分布式路由器计算在网络节点
    • US08782239B2
    • 2014-07-15
    • US13028282
    • 2011-02-16
    • Michitaka OkunoTakeki YazakiYuji TsushimaHidetaka Aoki
    • Michitaka OkunoTakeki YazakiYuji TsushimaHidetaka Aoki
    • G06F15/177G06F15/173
    • H04L45/54G06F9/505H04L41/083H04L41/0833H04L45/02H04L45/38H04L67/34H04L69/22Y02D10/22
    • A system permitting alteration of the information processing position, where an existing information system is used, while minimizing alterations in configuration or the like, is to be provided. Intelligent nodes each having an information processing section and any desired address altering section are arranged on boundaries of a network where packets are likely to pass. This node has a flow table for recognizing as a flow a group of packets transmitted from each user's terminal, a flow status table for determining the connection state and the next destination address or the final destination address of each flow, and a module to observe the loaded state of its own information processing function. It rewrites the destination address of any flow not in a connection-established state in the flow status table to a less loaded one out of its own information processing function section or external information processing apparatus.
    • 提供一种允许改变信息处理位置的系统,其中使用现有的信息系统,同时最小化配置等的改变。 每个具有信息处理部分和任何期望的地址改变部分的智能节点被布置在分组可能通过的网络的边界上。 该节点具有流表,用于将从每个用户终端发送的一组分组识别为流,用于确定连接状态的流状态表和下一目的地地址或每个流的最终目的地地址,以及观察该 加载状态自己的信息处理功能。 它将流状态表中不处于连接建立状态的任何流的目的地地址重写为其自己的信息处理功能部分或外部信息处理装置中较少加载的目的地址。