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    • 2. 发明申请
    • PROGRAMMABLE BLENDING IN A GRAPHICS PROCESSING UNIT
    • 图形处理单元中的可编程混合
    • WO2008049110A2
    • 2008-04-24
    • PCT/US2007/081952
    • 2007-10-19
    • QUALCOMM IncorporatedJIAO, GuofangYU, ChunCHEN, Lingjun, FrankDU, Yun
    • JIAO, GuofangYU, ChunCHEN, Lingjun, FrankDU, Yun
    • G06T15/50
    • G06T15/503G06T2210/32
    • Techniques for implementing blending equations for various blending modes with a base set of operations are described. Each blending equation may be decomposed into a sequence of operations. In one design, a device includes a processing unit that implements a set of operations for multiple blending modes and a storage unit that stores operands and results. The processing unit receives a sequence of instructions for a sequence of operations for a blending mode selected from the plurality of blending modes and executes each instruction in the sequence to perform blending in accordance with the selected blending mode. The processing unit may include (a) an ALU that performs at least one operation in the base set, e.g., a dot product, (b) a pre-formatting unit that performs gamma correction and alpha scaling of inbound color values, and (c) a post-formatting unit that performs gamma compression and alpha scaling of outbound color values.
    • 描述了用于具有基本操作集合的用于各种混合模式的混合方程的技术。 每个混合方程可以分解为一系列操作。 在一种设计中,设备包括一个处理单元,该处理单元实现多种混合模式的一组操作,以及存储操作数和结果的存储单元。 处理单元接收用于从多个混合模式中选择的混合模式的操作序列的指令序列,并且执行该顺序中的每个指令以根据所选择的混合模式执行混合。 处理单元可以包括(a)执行基本集合中的至少一个操作的ALU,例如点积,(b)执行伽马校正和入站颜色值的α缩放的预格式化单元,以及(c )一个后格式化单元,用于执行出色色彩值的伽玛压缩和alpha缩放。
    • 5. 发明申请
    • GRAPHICS PROCESSING UNIT WITH DEFERRED VERTEX SHADING
    • 图形处理单元,带有VERTEX SHADING
    • WO2010138870A3
    • 2012-04-12
    • PCT/US2010036661
    • 2010-05-28
    • QUALCOMM INCJIAO GUOFANGDU YUNCHEN LINGJUNYU CHUN
    • JIAO GUOFANGDU YUNCHEN LINGJUNYU CHUN
    • G06T15/00
    • G06T15/40G06T1/20G06T15/005
    • Techniques are described for processing graphics images with a graphics processing unit (GPU) using deferred vertex shading. An example method includes the following: generating, within a processing pipeline of a graphics processing unit (GPU), vertex coordinates for vertices of each primitive within an image geometry, wherein the vertex coordinates comprise a location and a perspective parameter for each one of the vertices, and wherein the image geometry represents a graphics image; identifying, within the processing pipeline of the GPU, visible primitives within the image geometry based upon the vertex coordinates; and, responsive to identifying the visible primitives, generating, within the processing pipeline of the GPU, vertex attributes only for the vertices of the visible primitives in order to determine surface properties of the graphics image.
    • 描述了使用延迟顶点着色处理具有图形处理单元(GPU)的图形图像的技术。 示例性方法包括以下:在图形处理单元(GPU)的处理流水线内生成图像几何中每个图元的顶点的顶点坐标,其中顶点坐标包括位置和透视参数 顶点,并且其中图像几何表示图形图像; 在GPU的处理流水线内识别基于顶点坐标的图像几何图形内的可见原始图形; 并且响应于识别可见原语,在GPU的处理流水线内生成仅针对可见图元的顶点的顶点属性,以便确定图形图像的表面特性。
    • 6. 发明申请
    • METHOD AND DEVICE FOR PERFORMING USER-DEFINED CLIPPING IN OBJECT SPACE
    • 用于在对象空间中执行用户定义的剪辑的方法和设备
    • WO2008033895A3
    • 2009-04-30
    • PCT/US2007078237
    • 2007-09-12
    • QUALCOMM INCBI NINGCHEN LINCHEN LINGJUN FRANK
    • BI NINGCHEN LINCHEN LINGJUN FRANK
    • G06T15/30
    • G06T15/30
    • A method and device for performing and processing user-defined clipping in object space to reduce the number of computations needed for the clipping operation. The method and device also combine the modelview transformation of the vertex coordinates with projection transform. The user-defined clipping in object space provides a higher performance and less power consumption by avoiding generation of eye coordinates if there is no lighting. The device includes a driver for the user-defined clipping in the object space to perform dual mode user-defined clipping in object space when a lighting function is disabled and in eye space when the lighting function is enabled.
    • 一种用于在对象空间中执行和处理用户定义的限幅以减少剪切操作所需的计算次数的方法和装置。 该方法和装置还将顶点坐标的modelview变换与投影变换相结合。 对象空间中的用户定义的剪辑通过避免在没有照明的情况下产生眼睛坐标来提供更高的性能和更低的功耗。 该设备包括用于在对象空间中的用户定义的剪切的驱动器,以在禁用照明功能时在对象空间中执行双模式用户定义的剪辑,并且在启用照明功能时在眼睛空间中执行双模式用户定义的剪辑。
    • 7. 发明申请
    • SAMPLE MULTIPROCESSING
    • 样本多媒体
    • WO2005121963A2
    • 2005-12-22
    • PCT/US2005020095
    • 2005-06-07
    • IQUUM INCCHEN SHUQILEMIEUX BERTRANDCHEN LINGJUN
    • CHEN SHUQILEMIEUX BERTRANDCHEN LINGJUN
    • G06F11/00
    • B01L3/502B01L3/505B01L7/52B01L2200/0647B01L2200/10B01L2300/0681B01L2300/0809B01L2300/0864B01L2300/0867B01L2300/087B01L2300/123B01L2400/0481B01L2400/0683Y10T436/25
    • A sample processing cartridge may include a plurality of segments arranged in an array at least two rows long and two columns wide. Each segment may be defined by at least one wall of the sample cartridge, fluidly isolated from adjacent segments at least in part by at least one breakable seal or by at least one permanent seal, so expandable as to receive a volume of fluid expelled from another segment, and so compressible as to contain substantially no fluid when so compressed. At least two adjacent segments of at least one row of the array may be aligned along a longitudinal axis of the row and have substantially the same height along a latitudinal axis of the row. At least two adjacent segments in at least one row may be separated by a permanent seal to form at least two tracks. At least one segment, or at least two adjacent segments separated by a breakable seal, may be in fluid communication with the at least two tracks. At least one segment may contain at least one reagent.
    • 样品处理盒可以包括以至少两行长和两列宽的阵列排列的多个片段。 每个段可以由样品盒的至少一个壁限定,至少部分地通过至少一个可破坏密封件或至少一个永久性密封件与相邻节段流体隔离,从而可膨胀以接收从另一个排出的体积的流体 并且如此压缩时可压缩成基本上不含流体。 阵列的至少一排的至少两个相邻的段可以沿着该行的纵向轴线对准,并且沿着该行的横向轴线具有基本上相同的高度。 在至少一行中的至少两个相邻的区段可以通过永久密封件分开以形成至少两个轨道。 由可破坏的密封件分隔开的至少一个段或至少两个相邻段可以与至少两个轨道流体连通。 至少一个片段可以包含至少一个试剂。
    • 10. 发明申请
    • PROGRAMMABLE BLENDING IN A GRAPHICS PROCESSING UNIT
    • 图形处理单元中的可编程混合
    • WO2008049110A3
    • 2008-07-17
    • PCT/US2007081952
    • 2007-10-19
    • QUALCOMM INCJIAO GUOFANGYU CHUNCHEN LINGJUN FRANKDU YUN
    • JIAO GUOFANGYU CHUNCHEN LINGJUN FRANKDU YUN
    • G06T15/50
    • G06T15/503G06T2210/32
    • Techniques for implementing blending equations for various blending modes with a base set of operations are described. Each blending equation may be decomposed into a sequence of operations. In one design, a device includes a processing unit that implements a set of operations for multiple blending modes and a storage unit that stores operands and results. The processing unit receives a sequence of instructions for a sequence of operations for a blending mode selected from the plurality of blending modes and executes each instruction in the sequence to perform blending in accordance with the selected blending mode. The processing unit may include (a) an ALU that performs at least one operation in the base set, e.g., a dot product, (b) a pre-formatting unit that performs gamma correction and alpha scaling of inbound color values, and (c) a post-formatting unit that performs gamma compression and alpha scaling of outbound color values.
    • 描述了用一组基本操作来实现各种混合模式的混合方程的技术。 每个混合等式可以被分解为一系列操作。 在一种设计中,设备包括处理单元,其执行用于多个混合模式的一组操作以及存储操作数和结果的存储单元。 处理单元接收用于从多个混合模式中选择的混合模式的一系列操作的指令序列,并且执行该序列中的每个指令以根据所选择的混合模式执行混合。 处理单元可以包括(a)在基本集合中执行至少一个操作的ALU,例如点积,(b)执行入站颜色值的伽马校正和阿尔法缩放的预格式化单元,以及(c) )后格式化单元,用于执行出站颜色值的伽玛压缩和alpha缩放。