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    • 2. 发明授权
    • Cache partitioning with a partition table to effect allocation of ways and rows of the cache to virtual machine in virtualized environments
    • 使用分区表进行缓存分区,以在虚拟化环境中将缓存的方式和行分配到虚拟机
    • US08745618B2
    • 2014-06-03
    • US12546791
    • 2009-08-25
    • Jiang LinLixin Zhang
    • Jiang LinLixin Zhang
    • G06F9/455G06F12/00G06F12/08
    • G06F9/455G06F12/084G06F12/0842G06F12/0848G06F12/0864G06F12/121
    • A mechanism is provided in a virtual machine monitor for providing cache partitioning in virtualized environments. The mechanism assigns a virtual identification (ID) to each virtual machine in the virtualized environment. The processing core stores the virtual ID of the virtual machine in a special register. The mechanism also creates an entry for the virtual machine in a partition table. The mechanism may partition a shared cache using a vertical (way) partition and/or a horizontal partition. The entry in the partition table includes a vertical partition control and a horizontal partition control. For each cache access, the virtual machine passes the virtual ID along with the address to the shared cache. If the cache access results in a miss, the shared cache uses the partition table to select a victim cache line for replacement.
    • 在虚拟机监视器中提供了一种机制,用于在虚拟化环境中提供高速缓存分区。 该机制为虚拟化环境中的每个虚拟机分配一个虚拟标识(ID)。 处理核心将虚拟机的虚拟ID存储在专用寄存器中。 该机制还为分区表中的虚拟机创建一个条目。 该机制可以使用垂直(方式)分区和/或水平分区来划分共享高速缓存。 分区表中的条目包括垂直分区控制和水平分区控制。 对于每个缓存访问,虚拟机将虚拟ID与该地址一起传递到共享缓存。 如果缓存访问导致错过,共享缓存使用分区表选择受害缓存行进行替换。
    • 3. 发明授权
    • Cache partitioning with a partition table to effect allocation of shared cache to virtual machines in virtualized environments
    • 使用分区表进行缓存分区,以实现虚拟化环境中共享高速缓存到虚拟机的分配
    • US08739159B2
    • 2014-05-27
    • US13444439
    • 2012-04-11
    • Jiang LinLixin Zhang
    • Jiang LinLixin Zhang
    • G06F9/455G06F12/00G06F12/08
    • G06F9/455G06F12/084G06F12/0842G06F12/0848G06F12/0864G06F12/121
    • A mechanism is provided in a virtual machine monitor for providing cache partitioning in virtualized environments. The mechanism assigns a virtual identification (ID) to each virtual machine in the virtualized environment. The processing core stores the virtual ID of the virtual machine in a special register. The mechanism also creates an entry for the virtual machine in a partition table. The mechanism may partition a shared cache using a vertical (way) partition and/or a horizontal partition. The entry in the partition table includes a vertical partition control and a horizontal partition control. For each cache access, the virtual machine passes the virtual ID along with the address to the shared cache. If the cache access results in a miss, the shared cache uses the partition table to select a victim cache line for replacement.
    • 在虚拟机监视器中提供了一种机制,用于在虚拟化环境中提供高速缓存分区。 该机制为虚拟化环境中的每个虚拟机分配一个虚拟标识(ID)。 处理核心将虚拟机的虚拟ID存储在专用寄存器中。 该机制还为分区表中的虚拟机创建一个条目。 该机制可以使用垂直(方式)分区和/或水平分区来划分共享高速缓存。 分区表中的条目包括垂直分区控制和水平分区控制。 对于每个缓存访问,虚拟机将虚拟ID与该地址一起传递到共享缓存。 如果缓存访问导致错过,共享缓存使用分区表选择受害缓存行进行替换。
    • 4. 发明授权
    • Circular stapler with an automatic safety mechanism
    • 具有自动安全机构的圆形订书机
    • US07900806B2
    • 2011-03-08
    • US12097252
    • 2006-11-15
    • Wang-dong ChenJiang LinWei-zhong Yin
    • Wang-dong ChenJiang LinWei-zhong Yin
    • A61B17/068
    • A61B17/115A61B17/068A61B17/1155A61B2090/0814
    • A circular stapler with an automatic safety mechanism comprises a stapler body, a stapler head, an actuating mechanism and a transmission adjusting mechanism; wherein the actuating mechanism comprises a handle and a handle coat, the transmission adjusting mechanism comprises a screw rod and an adjusting knob; a stopper is disposed either inside said handle or said handle coat; a safety rod and a pulling sheet are further provided, the safety rod has a safety block on one end and has a protruding block and a pin hole as its middle portion, a cylindrical pin is inserted into the pin hole so as to get the safety rod to be pivotally connected with the stapler body; the pulling sheet has a rear portion mounted on the screw rod and has a pulling hook at its front portion, the pulling hook hooks with the protruding block.
    • 具有自动安全机构的圆形订书机包括订书机主体,订书机头,致动机构和传动调节机构; 其中所述致动机构包括手柄和手柄涂层,所述变速器调节机构包括螺杆和调节旋钮; 止动器设置在所述手柄或所述手柄外套的内部; 还设有安全杆和牵引片,安全杆在一端具有安全块,并具有突出块和针孔作为其中间部分,圆柱销插入针孔,以获得安全 杆与订书机本体枢转连接; 牵引片具有安装在螺杆上的后部,并且在其前部具有拉钩,拉钩与突出块钩挂。
    • 5. 发明授权
    • Metering pump and drive device thereof
    • 计量泵及其驱动装置
    • US08197237B2
    • 2012-06-12
    • US12854193
    • 2010-08-11
    • Bo LinJiang Lin
    • Bo LinJiang Lin
    • F04B7/04
    • F04B13/00F04B7/04F04B35/01
    • A drive device, comprising a housing, a rod, a limiting device, a sliding block, a rotating block, a pair of springs, a pair of first grooves, and a second groove. The rod passes through the sliding block, an axis is disposed on the sliding block, the rotating block is disposed on the axis, the springs are disposed on both sides of the rotating block, the top of the spring is contacted with one side of the rotating block, the first grooves are disposed on one side of the rod opposite to the housing, the second groove is disposed on inner side of the housing opposite to the first groove, a middle part of the second groove is lower than other parts thereof, one end of the rotating block slides in the second groove, and the other end of the rotating block slides in and between the first grooves.
    • 一种驱动装置,包括壳体,杆,限制装置,滑动块,旋转块,一对弹簧,一对第一凹槽和第二凹槽。 杆穿过滑动块,轴线设置在滑动块上,旋转块设置在轴上,弹簧设置在旋转块的两侧,弹簧的顶部与 所述第一凹槽设置在与所述壳体相对的所述杆的一侧上,所述第二凹槽设置在所述壳体的与所述第一凹槽相对的内侧上,所述第二凹槽的中间部分比其他部分低, 旋转块的一端在第二槽中滑动,并且旋转块的另一端在第一槽之间滑动。
    • 6. 发明授权
    • Methods and apparatuses of fast cross motion estimation for video encoding
    • 用于视频编码的快速交叉运动估计的方法和装置
    • US08139634B2
    • 2012-03-20
    • US11712845
    • 2007-02-28
    • Yaqiang DingJiang LinFu-Huei Lin
    • Yaqiang DingJiang LinFu-Huei Lin
    • H04N11/02
    • H04N19/557H04N19/51H04N19/533H04N19/56
    • This disclosure is related to a fast motion estimation method for implementing in a video encoder. A particular method includes determining early termination based on the value of a sum of absolute difference (SAD0). The method also includes performing motion prediction using a motion vector from a previous frame as a prediction point. The method further includes using the prediction point as the center to obtain the integral motion vector by conducting a 3×3 cross searching until a minimum sum of absolute difference (minSAD) is located at the center of the cross and predicting a location of a half-pixel point based upon a point corresponding to the integral motion vector, values of the minimum sum of absolute difference of other four cross points.
    • 本公开涉及用于在视频编码器中实现的快速运动估计方法。 一种特定方法包括基于绝对差值(SAD0)的值确定提前终止。 该方法还包括使用来自前一帧的运动矢量作为预测点来执行运动预测。 该方法还包括使用预测点作为中心,通过进行3×3交叉搜索来获得积分运动矢量,直到绝对差值(minSAD)的最小和位于十字的中心并预测一半的位置 基于与积分运动矢量相对应的点的像素点,其他四个交叉点的绝对差的最小和的值。
    • 8. 发明申请
    • Methods and apparatuses of fast cross motion estimation for video encoding
    • 用于视频编码的快速交叉运动估计的方法和装置
    • US20070206677A1
    • 2007-09-06
    • US11712845
    • 2007-02-28
    • Yaqiang DingJiang LinFuhuei Lin
    • Yaqiang DingJiang LinFuhuei Lin
    • H04N11/02H04N7/12
    • H04N19/557H04N19/51H04N19/533H04N19/56
    • This disclosure is related to a fast motion estimation method for implementing in a video encoder. A particular method includes determining early termination based on the value of a sum of absolute difference (SAD0). The method also includes performing motion prediction using a motion vector from a previous frame as a prediction point. The method further includes using the prediction point as the center to obtain the integral motion vector by conducting a 3×3 cross searching until a minimum sum of absolute difference (minSAD) is located at the center of the cross and predicting a location of a half-pixel point based upon a point corresponding to the integral motion vector, values of the minimum sum of absolute difference of other four cross points.
    • 本公开涉及用于在视频编码器中实现的快速运动估计方法。 一种特定的方法包括基于绝对差值(SAD 0)的值来确定提前终止。 该方法还包括使用来自前一帧的运动矢量作为预测点来执行运动预测。 该方法还包括使用预测点作为中心,通过进行3×3交叉搜索来获得积分运动矢量,直到绝对差的最小和(minSAD)位于十字的中心并预测半像素的位置 基于与积分运动矢量对应的点,其他四个交叉点的绝对差的最小和的值。
    • 10. 发明申请
    • Cache Partitioning in Virtualized Environments
    • 虚拟化环境中的高速缓存分区
    • US20110055827A1
    • 2011-03-03
    • US12546791
    • 2009-08-25
    • Jiang LinLixin Zhang
    • Jiang LinLixin Zhang
    • G06F12/08G06F9/455
    • G06F9/455G06F12/084G06F12/0842G06F12/0848G06F12/0864G06F12/121
    • A mechanism is provided in a virtual machine monitor for providing cache partitioning in virtualized environments. The mechanism assigns a virtual identification (ID) to each virtual machine in the virtualized environment. The processing core stores the virtual ID of the virtual machine in a special register. The mechanism also creates an entry for the virtual machine in a partition table. The mechanism may partition a shared cache using a vertical (way) partition and/or a horizontal partition. The entry in the partition table includes a vertical partition control and a horizontal partition control. For each cache access, the virtual machine passes the virtual ID along with the address to the shared cache. If the cache access results in a miss, the shared cache uses the partition table to select a victim cache line for replacement.
    • 在虚拟机监视器中提供了一种机制,用于在虚拟化环境中提供高速缓存分区。 该机制为虚拟化环境中的每个虚拟机分配一个虚拟标识(ID)。 处理核心将虚拟机的虚拟ID存储在专用寄存器中。 该机制还为分区表中的虚拟机创建一个条目。 该机制可以使用垂直(方式)分区和/或水平分区来划分共享高速缓存。 分区表中的条目包括垂直分区控制和水平分区控制。 对于每个缓存访问,虚拟机将虚拟ID与该地址一起传递到共享缓存。 如果缓存访问导致错过,共享缓存使用分区表选择受害缓存行进行替换。