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    • 1. 发明授权
    • Graphics processing method applied to a plurality of buffers and graphics processing apparatus thereof
    • 图形处理方法应用于多个缓冲器及其图形处理装置
    • US08823719B2
    • 2014-09-02
    • US12779063
    • 2010-05-13
    • Chin-Jung YangGuoping Li
    • Chin-Jung YangGuoping Li
    • G06T11/40G06T1/60G09G5/36G09G5/397G09G5/399
    • G06T1/60G09G5/363G09G5/397G09G5/399
    • A graphics processing method, which is applied to a plurality of buffers at least including a first buffer served as an on-screen buffer and a second buffer served as an on-drawing buffer, includes the steps of: sending a drawing command related to the second buffer to a drawing engine; when the drawing command related to the second buffer are received, drawing graphic data stored in the second buffer; sending an asynchronous flush command related to the second buffer to the drawing engine in order to confirm whether the drawing command related to the second buffer is completed; flushing the second buffer; and after the second buffer is flushed, sending a first notice signal to notify a display engine that the second buffer is capable of being flipped.
    • 一种图形处理方法,其应用于至少包括作为屏幕缓冲器的第一缓冲器的多个缓冲器和用作绘图缓冲器的第二缓冲器,包括以下步骤:发送与 绘图引擎的第二个缓冲区; 当接收到与第二缓冲器相关的绘制命令时,绘制存储在第二缓冲器中的图形数据; 向所述绘图引擎发送与所述第二缓冲器相关的异步刷新命令,以确认与所述第二缓冲器相关的绘图命令是否完成; 冲洗第二个缓冲区; 并且在第二缓冲器被刷新之后,发送第一通知信号以通知显示引擎第二缓冲器能够被翻转。
    • 4. 发明申请
    • METHOD FOR PERFORMING VIDEO PROCESSING BASED UPON A PLURALITY OF COMMANDS, AND ASSOCIATED VIDEO PROCESSING CIRCUIT
    • 基于多项命令和相关视频处理电路进行视频处理的方法
    • US20120075315A1
    • 2012-03-29
    • US13130299
    • 2010-09-26
    • Guoping LiShih-Rong Kao
    • Guoping LiShih-Rong Kao
    • G06T1/00
    • G06T1/20
    • A method for performing video processing based upon a plurality of commands is provided, where the method is applied to a video processing circuit. The method includes: grouping the commands into command chains, wherein the command chains have respective dependence relationships; and utilizing a plurality of hardware modules of the video processing circuit to execute the command chains, respectively. For example, at a time when the commands are grouped into the command chains, each command of one of the command chains is independent of any command of another of the command chains. In particular, the command chains include a first command chain and a second command chain, where the commands of the first command chain have a first dependence relationship, and the commands of the second command chain have a second dependence relationship. An associated video processing circuit is also provided.
    • 提供了一种基于多个命令执行视频处理的方法,其中该方法被应用于视频处理电路。 该方法包括:将命令分组到命令链中,其中命令链具有各自的依赖关系; 并利用视频处理电路的多个硬件模块分别执行命令链。 例如,当命令分组到命令链中时,其中一个命令链的每个命令与另一个命令链的任何命令无关。 特别地,命令链包括第一命令链和第二命令链,其中第一命令链的命令具有第一依赖关系,并且第二命令链的命令具有第二依赖关系。 还提供了一种相关联的视频处理电路。
    • 6. 发明申请
    • GRAPHICS PROCESSING METHOD APPLIED TO A PLURALITY OF BUFFERS AND GRAPHICS PROCESSING APPARATUS THEREOF
    • 适用于多项缓冲区和图形处理装置的图形处理方法
    • US20110279463A1
    • 2011-11-17
    • US12779063
    • 2010-05-13
    • Chin-Jung YangGuoping Li
    • Chin-Jung YangGuoping Li
    • G06T1/00
    • G06T1/60G09G5/363G09G5/397G09G5/399
    • A graphics processing method, which is applied to a plurality of buffers at least including a first buffer served as an on-screen buffer and a second buffer served as an on-drawing buffer, includes the steps of: sending a drawing command related to the second buffer to a drawing engine; when the drawing command related to the second buffer are received, drawing graphic data stored in the second buffer; sending an asynchronous flush command related to the second buffer to the drawing engine in order to confirm whether the drawing command related to the second buffer is completed; flushing the second buffer; and after the second buffer is flushed, sending a first notice signal to notify a display engine that the second buffer is capable of being flipped.
    • 一种图形处理方法,其应用于至少包括作为屏幕缓冲器的第一缓冲器的多个缓冲器和用作绘图缓冲器的第二缓冲器,包括以下步骤:发送与 绘图引擎的第二个缓冲区; 当接收到与第二缓冲器相关的绘制命令时,绘制存储在第二缓冲器中的图形数据; 向所述绘图引擎发送与所述第二缓冲器相关的异步刷新命令,以确认与所述第二缓冲器相关的绘图命令是否完成; 冲洗第二个缓冲区; 并且在第二缓冲器被刷新之后,发送第一通知信号以通知显示引擎第二缓冲器能够被翻转。
    • 7. 发明申请
    • Method for realizing route forwarding in network
    • 实现网络中路由转发的方法
    • US20070133568A1
    • 2007-06-14
    • US11634941
    • 2006-12-07
    • Wu QingJiandong GeGuoping LiJianzhong Huang
    • Wu QingJiandong GeGuoping LiJianzhong Huang
    • H04L12/56
    • H04L45/00H04L12/66H04L45/50
    • A method for realizing route forwarding in a network, including: establishing LSPs in a bearer network; setting an entrance label in the starting node of each LSP pointing to forwarding information of the LSP; a bearer control entity assigning a transfer path for the service flow and sending the information of all corresponding entrance labels of the transfer path to the ingress edge node of the transfer path; when the service flow needs to be forwarded, the ingress edge node puts the label stack into the data packet of the service flow to generate an MPLS exchange packet; and forwarding the MPLS exchange packet in the bearer network according to the label stack until the packet reaches the egress edge node of the transfer path. The present invention grants high compatibility to the network, minimizes the network investment, and reduces the difficulties in network implementation.
    • 一种实现网络中路由转发的方法,包括:在承载网中建立LSP; 在每个LSP的起始节点上设置指向LSP转发信息的入口标签; 为所述服务流分配传送路径并向所述传送路径的所述入口边缘节点发送所述传送路径的所有对应入口标签的信息的承载控制实体; 当服务流需要转发时,入口边缘节点将标签栈放入业务流的数据包中,生成MPLS交换包; 并根据标签堆栈在承载网中转发MPLS交换报文,直到报文到达传输路径的出口边缘节点。 本发明赋予网络高兼容性,最小化网络投资,减少网络实现的难度。
    • 8. 发明申请
    • Oil-based dispersing method of drag reduction polymers
    • 减阻聚合物的油基分散方法
    • US20070004837A1
    • 2007-01-04
    • US11479868
    • 2006-06-30
    • Bing LiuXuchen BaoYanqing GaoChunman LiGuoping Li
    • Bing LiuXuchen BaoYanqing GaoChunman LiGuoping Li
    • C08K5/09
    • C08K5/0008
    • An oil-based suspension-dispersion system of drag reduction polymers and the method for preparing same, characterized in adding 0.001-0.1 wt % of ultraviolet absorber and 0.001-0.1 wt % of bactericide into 50-90 wt % of vegetable oil and then mixing the obtained mixture to be homogeneous for use as dispersant, adding 2-25 wt % of separant into 10-40% of extra-high-molecular α-olefin-styrene polymer based drag reduction polymer and crushing them into powders at a temperature of lower than −90° C., based on the total weight of the suspension-dispersion system, and then adding the obtained mixture into the dispersant and stirring the mixture by using a high speed emulsion machine to make the mixture homogeneous and emulsified. The system offers a low viscosity of the suspended dispersion system, a high solid content up to 35%; improved high temperature resistance performance, higher flash point, improved safety, and good stability in storage.
    • 减阻聚合物的油基悬浮分散体系及其制备方法,其特征在于在50-90重量%的植物油中加入0.001-0.1重量%的紫外线吸收剂和0.001-0.1重量%的杀菌剂,然后混合 所得混合物均匀,用作分散剂,将2-25重量%的分离剂加入到10-40%的高分子量α-烯烃 - 苯乙烯聚合物基阻聚聚合物中,并在较低温度下粉碎成粉末 基于悬浮分散系统的总重量-90℃,然后将所得混合物加入分散剂中并通过使用高速乳液机搅拌该混合物以使混合物均匀并乳化。 该系统提供了低粘度的悬浮分散系统,高固含量高达35%; 提高耐高温性能,闪点高,安全性提高,储存稳定性好。