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    • 2. 发明申请
    • Reducing Number of Rejected Snoop Requests By Extending Time To Respond To Snoop Request
    • 通过延长响应Snoop请求的时间减少被拒绝的侦听请求数
    • US20080077744A1
    • 2008-03-27
    • US11950717
    • 2007-12-05
    • Benjiman GoodmanGuy GuthrieWilliam StarkeJeffrey StuecheliDerek Williams
    • Benjiman GoodmanGuy GuthrieWilliam StarkeJeffrey StuecheliDerek Williams
    • G06F13/28
    • G06F12/0831
    • A cache, system and method for reducing the number of rejected snoop requests. A “stall/reorder unit” in a cache receives a snoop request from an interconnect. Information, such as the address, of the snoop request is stored in a queue of the stall/reorder unit. The stall/reorder unit forwards the snoop request to a selector which also receives a request from a processor. An arbitration mechanism selects either the snoop request or the request from the processor. If the snoop request is denied by the arbitration mechanism, information, e.g., address, about the snoop request may be maintained in the stall/reorder unit. The request may be later resent to the selector. This process may be repeated up to “n” clock cycles. By providing the snoop request additional opportunities (n clock cycles) to be accepted by the arbitration mechanism, fewer snoop requests may ultimately be denied.
    • 用于减少拒绝的窥探请求数量的缓存,系统和方法。 缓存中的“停止/重新排序单元”从互连中接收窥探请求。 窥探请求的诸如地址的信息被存储在失速/重新排序单元的队列中。 停止/重新排序单元将窥探请求转发到也从处理器接收请求的选择器。 仲裁机制选择来自处理器的窥探请求或请求。 如果侦听请求被仲裁机制拒绝,关于窥探请求的信息(例如地址)可以被保留在停止/重新排序单元中。 请求可能会稍后重新发送到选择器。 该过程可以重复直到“n”个时钟周期。 通过提供窥探请求仲裁机制接受的额外机会(n个时钟周期),最终可能会拒绝更少的侦听请求。
    • 3. 发明申请
    • Data processing system and method for efficient communication utilizing an Tn and Ten coherency states
    • 数据处理系统和利用Tn和10相​​关性状态的高效通信方法
    • US20080040556A1
    • 2008-02-14
    • US11835984
    • 2007-08-08
    • James FieldsBenjiman GoodmanGuy GuthrieWilliam StarkeDerek Williams
    • James FieldsBenjiman GoodmanGuy GuthrieWilliam StarkeDerek Williams
    • G06F12/08
    • G06F12/0817G06F12/0831G06F12/084
    • A cache coherent data processing system includes at least first and second coherency domains each including at least one processing unit. The first coherency domain includes a first cache memory and a second cache memory, and the second coherency domain includes a remote coherent cache memory. The first cache memory includes a cache controller, a data array including a data storage location for caching a memory block, and a cache directory. The cache directory includes a tag field for storing an address tag in association with the memory block and a coherency state field associated with the tag field and the data storage location. The coherency state field has a plurality of possible states including a state that indicates that the memory block is possibly shared with the second cache memory in the first coherency domain and cached only within the first coherency domain.
    • 高速缓存一致数据处理系统至少包括第一和第二相关域,每个域包括至少一个处理单元。 第一相关域包括第一高速缓存存储器和第二高速缓冲存储器,并且第二相干域包括远程一致高速缓存存储器。 第一高速缓存存储器包括高速缓存控制器,包括用于高速缓存存储器块的数据存储位置的数据阵列和高速缓存目录。 缓存目录包括用于存储与存储器块相关联的地址标签的标签字段和与标签字段和数据存储位置相关联的一致性状态字段。 相关性状态字段具有多个可能的状态,包括指示存储器块可能与第一相关域中的第二高速缓冲存储器共享并且仅在第一相干域内缓存的状态。
    • 4. 发明申请
    • Reducing Number of Rejected Snoop Requests By Extending Time to Respond to Snoop Request
    • 通过延长响应Snoop请求的时间来减少被拒绝的侦听请求数
    • US20070294486A1
    • 2007-12-20
    • US11847941
    • 2007-08-30
    • Benjiman GoodmanGuy GuthrieWilliam StarkeJeffrey StuecheliDerek Williams
    • Benjiman GoodmanGuy GuthrieWilliam StarkeJeffrey StuecheliDerek Williams
    • G06F12/00
    • G06F12/0831
    • A cache, system and method for reducing the number of rejected snoop requests. A “stall/reorder unit” in a cache receives a snoop request from an interconnect. Information, such as the address, of the snoop request is stored in a queue of the stall/reorder unit. The stall/reorder unit forwards the snoop request to a selector which also receives a request from a processor. An arbitration mechanism selects either the snoop request or the request from the processor. If the snoop request is denied by the arbitration mechanism, information, e.g., address, about the snoop request may be maintained in the stall/reorder unit. The request may be later resent to the selector. This process may be repeated up to “n” clock cycles. By providing the snoop request additional opportunities (n clock cycles) to be accepted by the arbitration mechanism, fewer snoop requests may ultimately be denied.
    • 用于减少拒绝的窥探请求数量的缓存,系统和方法。 缓存中的“停止/重新排序单元”从互连中接收窥探请求。 窥探请求的诸如地址的信息被存储在失速/重新排序单元的队列中。 停止/重新排序单元将窥探请求转发到也从处理器接收请求的选择器。 仲裁机制选择来自处理器的窥探请求或请求。 如果侦听请求被仲裁机制拒绝,关于窥探请求的信息(例如地址)可以被保留在停止/重新排序单元中。 请求可能会稍后重新发送到选择器。 该过程可以重复直到“n”个时钟周期。 通过提供窥探请求仲裁机制接受的额外机会(n个时钟周期),最终可能会拒绝更少的侦听请求。
    • 10. 发明申请
    • Data processing system, method and interconnect fabric supporting multiple planes of processing nodes
    • 支持多个处理节点平面的数据处理系统,方法和互连结构
    • US20070081516A1
    • 2007-04-12
    • US11245887
    • 2005-10-07
    • Ravi ArimilliBenjiman GoodmanGuy GuthriePraveen ReddyWilliam Starke
    • Ravi ArimilliBenjiman GoodmanGuy GuthriePraveen ReddyWilliam Starke
    • H04L12/28
    • G06F15/16
    • A data processing system includes a first plane including a first plurality of processing nodes, each including multiple processing units, and a second plane including a second plurality of processing nodes, each including multiple processing units. The data processing system also includes a plurality of point-to-point first tier links. Each of the first plurality and second plurality of processing nodes includes one or more first tier links among the plurality of first tier links, where the first tier link(s) within each processing node connect a pair of processing units in the same processing node for communication. The data processing system further includes a plurality of point-to-point second tier links. At least a first of the plurality of second tier links connects processing units in different ones of the first plurality of processing nodes, at least a second of the plurality of second tier links connects processing units in different ones of the second plurality of processing nodes, and at least a third of the plurality of second tier links connects a processing unit in the first plane to a processing unit in the second plane.
    • 数据处理系统包括包括第一多个处理节点的第一平面,每个处理节点包括多个处理单元,以及包括第二多个处理节点的第二平面,每个处理节点包括多个处理单元。 数据处理系统还包括多个点对点第一层链路。 第一多个处理节点和第二多个处理节点中的每一个包括多个第一层链路之中的一个或多个第一层链路,其中每个处理节点内的第一层链路连接相同处理节点中的一对处理单元,用于 通讯。 数据处理系统还包括多个点到点第二层链路。 所述多个第二层链路中的至少第一层连接所述第一多个处理节点中的不同处理节点中的处理单元,所述多个第二层链路中的至少一个链接连接所述第二多个处理节点中的不同处理节点中的处理单元, 并且所述多个第二层链路中的至少三分之一链路将所述第一平面中的处理单元连接到所述第二平面中的处理单元。