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    • 2. 发明申请
    • TECHNOLOGIES FOR DATA INTEGRITY OF MULTI-NETWORK PACKET OPERATIONS
    • 多网络数据包操作的数据完整性技术
    • US20160191678A1
    • 2016-06-30
    • US14583660
    • 2014-12-27
    • Jesse C. BrandeburgScott P. DubalPatrick ConnorJames R. Hearn
    • Jesse C. BrandeburgScott P. DubalPatrick ConnorJames R. Hearn
    • H04L29/06H04L12/743
    • H04L69/161H04L9/3236H04L45/7453H04L63/123H04L69/166H04L69/22
    • Technologies for ensuring data integrity for multi-packet operations include a computing device and a remote computing device communicatively coupled via a network. The computing device is configured to perform a segmentation offload operation on an original network packet, compute a hash value on the payload of each segmented payload of the original network packet, and store the hash value and an indication into the segmented network packet that indicates the hash value is stored in the segmented network packet. The remote computing device is configured to extract the indication and the hash value from a received network packet in response to determining the indication indicates the hash value is stored in the segmented network packet, compute a hash value on the payload of received network packet, and determine an integrity of the payload based on a comparison of the extracted hash value and the computed hash value.
    • 用于确保多分组操作的数据完整性的技术包括计算设备和经由网络通信地耦合的远程计算设备。 计算设备被配置为对原始网络分组执行分段卸载操作,计算原始网络分组的每个分段有效载荷的有效载荷上的散列值,并将散列值和指示存储到分组网络分组中,该分组网络分组指示 散列值存储在分段网络数据包中。 远程计算设备被配置为响应于确定指示表示散列值被存储在分段网络分组中,从接收的网络分组中提取指示和散列值,计算接收到的网络分组的有效载荷上的哈希值,以及 基于提取的散列值和所计算的散列值的比较来确定有效载荷的完整性。
    • 4. 发明申请
    • NUMA NODE PERIPHERAL SWITCH
    • NUMA NODE外围开关
    • US20150067229A1
    • 2015-03-05
    • US14014775
    • 2013-08-30
    • Patrick ConnorMatthew A. JaredDuke C. HongElizabeth M. KapplerChris PavlasScott P. Dubal
    • Patrick ConnorMatthew A. JaredDuke C. HongElizabeth M. KapplerChris PavlasScott P. Dubal
    • G06F13/40
    • Methods, apparatus, and computer platforms and architectures employing many-to-many and many-to-one peripheral switches. The methods and apparatus may be implemented on computer platforms having multiple nodes, such as those employing a Non-uniform Memory Access (NUMA) architecture, wherein each node comprises a plurality of components including a processor having at least one level of memory cache and being operatively coupled to system memory and operatively coupled to a many-to-many peripheral switch that includes a plurality of downstream ports to which NICs and/or peripheral expansion slots are operatively coupled, or a many-to-one switch that enables a peripheral device to be shared by multiple nodes. During operation, packets are received at the NICs and DMA memory writes are initiated using memory write transactions identifying a destination memory address. The many-to-many and many-to-one peripheral switches forwards the transaction packets internally within the switch based on the destination address such that the packets are forwarded to a node via which the memory address can be accessed. The platform architectures may also be configured to support migration operations in response to failure or replacement of a node.
    • 使用多对多和多对一外设交换机的方法,设备和计算机平台和架构。 方法和装置可以在具有多个节点的计算机平台上实现,例如采用非均匀存储器访问(NUMA)架构的那些节点,其中每个节点包括多个部件,包括具有至少一个级别的存储器高速缓存的处理器 可操作地耦合到系统存储器并且可操作地耦合到多对多外围设备交换机,其包括NIC和/或外围扩展槽可操作地耦合到的多个下游端口,或多对一开关,其使外围设备 由多个节点共享。 在操作期间,在NIC处接收数据包,并且使用识别目的地存储器地址的存储器写入事务来启动DMA存储器写入。 多对多和多对一的外设交换机基于目的地地址在交换机内部转发事务分组,使得分组被转发到可以通过其访问存储器地址的节点。 平台架构还可以被配置为支持响应于节点的故障或替换的迁移操作。
    • 7. 发明申请
    • PORT TEAMING
    • 港口团队
    • US20110268111A1
    • 2011-11-03
    • US12771638
    • 2010-04-30
    • Matthew A. JaredPatrick Connor
    • Matthew A. JaredPatrick Connor
    • H04L12/50
    • H04L47/41H04L69/14Y02D50/30
    • An embodiment may include circuitry to be comprised at least in part in a first host, and at least one process to be executed, at least in part, by the circuitry. The circuitry may comprise a first port and a second port. The at least one process may detect, at least in part, a first bandwidth condition of the first port, and may associate, at least in part, in response at least in part to the first bandwidth condition, the first port and the second port with a port team. The second port may have been, prior to being associated, at least in part, with the port team, in a relatively lower power state compared to a relatively higher power state. The second port may be in the relatively higher power state after the second port is associated, at least in part, with the port team.
    • 实施例可以包括至少部分地包括在第一主机中的电路以及至少部分由电路执行的至少一个处理。 电路可以包括第一端口和第二端口。 至少一个进程可以至少部分地检测第一端口的第一带宽条件,并且可以至少部分地至少部分地响应于第一带宽条件来响应第一端口和第二端口 与港口团队。 在相对较高的功率状态下,第二端口可能在至少部分地与端口组相关联之前处于相对较低的功率状态。 在第二端口至少部分地与端口组相关联之后,第二端口可以处于相对较高的功率状态。