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    • 45. 发明申请
    • SYSTEM AND METHOD FOR PROCESSING POTENTIALLY SELF-INCONSISTENT MEMORY TRANSACTIONS
    • 用于处理潜在的自发存储器交易的系统和方法
    • US20090164737A1
    • 2009-06-25
    • US11962331
    • 2007-12-21
    • Sanjay R. DeshpandeKlas M. BruceMichael D. Snyder
    • Sanjay R. DeshpandeKlas M. BruceMichael D. Snyder
    • G06F12/00
    • G06F12/0828G06F12/0831G06F2212/1016G06F2212/507
    • A processor provides memory request and a coherency state value for a coherency granule associated with a memory request. The processor further provides either a first indicator or a second indicator depending on whether the coherency state value represents a cumulative coherency state for a plurality of caches of the processor. The first indicator and the second indicator identify the coherency state value as representing a cumulative coherency state or a potentially non-cumulative coherency state, respectively. If the second indicator is provided, a transaction management module determines whether to request the cumulative coherency state for the coherency granule in response to receiving the second indicator. The transaction management module then provides an indicator of the request for the cumulative coherency state to the processor in response to determining to request the cumulative coherency state. Otherwise, the transaction management module processes the memory transaction without requesting the cumulative coherency state.
    • 处理器为与存储器请求相关联的一致性粒子提供存储器请求和一致性状态值。 处理器还根据一致性状态值是否表示处理器的多个高速缓存的累积一致性状态来进一步提供第一指示符或第二指示符。 第一指示符和第二指示符分别表示相关性状态值,表示累积相关性状态或潜在的非累积一致性状态。 如果提供了第二指示符,则事务管理模块响应于接收到第二指示符来确定是否请求相关性颗粒的累积一致性状态。 响应于确定请求累积一致性状态,事务管理模块向处理器提供对累积一致性状态的请求的指示符。 否则,事务管理模块处理存储器事务而不请求累积一致性状态。
    • 48. 发明申请
    • PERFORMANCE MONITORING DEVICE AND METHOD THEREOF
    • 性能监控装置及其方法
    • US20080222382A1
    • 2008-09-11
    • US11682058
    • 2007-03-05
    • Michael D. Snyder
    • Michael D. Snyder
    • G06F9/26
    • G06F11/3471G06F11/3466G06F2201/81G06F2201/86G06F2201/88
    • A performance monitoring device and method are disclosed. The device monitors performance events of a processor. A counter is adjusted in response to the occurrence of a particular performance event. The counter can be associated with a particular instruction address range, or a data address range, so that the counter is adjusted only when the performance event occurs at the instruction address range or the data address range. Accordingly, the information stored in the counter can be analyzed to determine if a particular instruction address range or data address range results in a particular performance event. Multiple counters, each associated with a different performance event, instruction address range, or data address range, can be employed to allow for a detailed analysis of which portions of a program lead to particular performance events.
    • 公开了一种性能监视装置和方法。 该设备监视处理器的性能事件。 响应于特定演出事件的发生而调整计数器。 计数器可以与特定指令地址范围或数据地址范围相关联,使得仅当在指令地址范围或数据地址范围发生性能事件时才调整计数器。 因此,可以分析存储在计数器中的信息,以确定特定指令地址范围或数据地址范围是否导致特定的性能事件。 可以使用多个计数器,每个计数器与不同的性能事件,指令地址范围或数据地址范围相关联,以便对程序的哪些部分导致特定的性能事件进行详细分析。
    • 49. 发明申请
    • METHOD AND SYSTEM FOR DATA TRANSFERS ACROSS DIFFERENT ADDRESS SPACES
    • 用于不同地址空间的数据传输的方法和系统
    • US20080183943A1
    • 2008-07-31
    • US11669804
    • 2007-01-31
    • Becky G. BruceMichael D. SnyderGary L. WhisenhuntKumar Gala
    • Becky G. BruceMichael D. SnyderGary L. WhisenhuntKumar Gala
    • G06F12/02
    • G06F12/0284
    • A processing device includes a first storage location configured to store a first value associated with a first address space, a second storage location configured to store a second value associated with a second address space, and a third storage location configured to store a third value associated with a third address space. The processing device further includes a memory management unit, which includes a first input configured to receive a first address value associated with a data transfer operation, a second input configured to receive an identifier associated with the data transfer operation, and an address space select module configured to identify a select value from the first value, the second value and the third value based on the identifier. The memory management module further includes an address modification module configured to generate a second address value based on the first address value and the select value.
    • 处理设备包括被配置为存储与第一地址空间相关联的第一值的第一存储位置,被配置为存储与第二地址空间相关联的第二值的第二存储位置以及被配置为存储与第二地址空间相关联的第三值的第三存储位置 具有第三个地址空间。 处理装置还包括存储器管理单元,其包括被配置为接收与数据传送操作相关联的第一地址值的第一输入,被配置为接收与数据传送操作相关联的标识符的第二输入以及地址空间选择模块 被配置为基于所述标识符从所述第一值,所述第二值和所述第三值中识别选择值。 存储器管理模块还包括地址修改模块,该地址修改模块被配置为基于第一地址值和选择值生成第二地址值。
    • 50. 发明授权
    • Insertion head for high speed radial lead component sequencing and
inserting machine
    • 高速径向引线元件排序和插入机插入头
    • US4403726A
    • 1983-09-13
    • US141608
    • 1980-04-18
    • Michael D. SnyderCrawford A. Matson
    • Michael D. SnyderCrawford A. Matson
    • B23P19/00H05K13/04B25B5/08
    • H05K13/0421B23P19/001Y10T29/5142
    • Under direction of a machine controller, an endless chain conveyor is incrementally passed by a plurality of loader heads. The loader heads receive a series of components taped on a reel supplied substrate, sever individual taped components from the supply, and load the individual taped components onto clip carriers of the endless conveyor, on command, in a preferred sequence. The clip carrier mounted components are then indexed past a cutter assembly for trimming the lengths of the leads and removing the substrate, and a positioning disc assembly for positioning the components in the clip carriers before being passed to a rotary transfer assembly. The rotary transfer assembly removes individual components from the conveyor and rotates to an unload position above a linear loader, which laterally transfers the components from the rotary transfer to an insert head assembly. At the insert head assembly, the components are oriented and inserted by their leads into the holes of a printed circuit board for clinching by a clinch mechanism. Any components still left on the conveyor after it passes the rotary transfer assembly are removed by a chain unloader.
    • 在机器控制器的方向下,循环链式输送机由多个装载机头递增地通过。 装载机头部接收一系列被卷绕在卷轴供应的基板上的部件,从供应装置中分离出各个胶带部件,并按照优先顺序将各个胶带部件装载到环形输送机的夹子载体上。 然后,夹具承载件安装的部件被转过通过切割器组件以修剪引线的长度和移除基板;以及定位盘组件,用于在传递到旋转传递组件之前将部件定位在夹子载体中。 旋转传递组件从输送机中移除各个部件,并且旋转到线性装载机上方的卸载位置,其将部件从旋转传递横向地传送到插入头组件。 在插入头组件中,组件被引导件定位并插入印刷电路板的孔中,用于通过夹紧机构夹紧。 通过旋转传递组件后仍然留在输送机上的任何部件都被链式卸料机除去。