PASID BASED ROUTING EXTENSION FOR SCALABLE IOV SYSTEMS

    公开(公告)号:US20210004338A1

    公开(公告)日:2021-01-07

    申请号:US17026516

    申请日:2020-09-21

    Abstract: Methods and apparatus for PASID-based routing extension for Scalable IOV systems. The system may include a Central Processing Unit (CPU) operatively coupled to a scalable Input/Output Virtualization (IOV) device via an in-line device such as a smart controller or accelerator. A Control Process Address Space Identifier (C-PASID) associated with a first memory space is implemented in an Assignable Device Interface (ADI) for the IOV device. The ADI also implements a Data PASID (D-PASID) associated with a second memory space in which data are stored. The C-PASID is used to fetch a descriptor in the first memory space and the D-PASID is employed to fetch data in the second memory space. A hub embedded on the in-line device or implemented as a discrete device is used to steer memory access requests and/or fetches to the CPU or to the in-line device using the C-PASID and D-PASID. IOV devices include multi-PASID helper devices and off-the-shelf devices such as NICs with modified ADIs to support C-PASID and D-PASID usage.

    EXPRESSION CONSTRUCT AND PROCESS FOR ENHANCING THE CARBON, NITROGEN, BIOMASS AND YIELD OF PLANTS
    5.
    发明申请
    EXPRESSION CONSTRUCT AND PROCESS FOR ENHANCING THE CARBON, NITROGEN, BIOMASS AND YIELD OF PLANTS 审中-公开
    用于增加植物的碳,氮,生物量和产量的表达结构和方法

    公开(公告)号:US20140137297A1

    公开(公告)日:2014-05-15

    申请号:US14112681

    申请日:2012-04-19

    Abstract: The assimilated C and N largely influence plant growth and crop yields. Previous attempts to alter the carbon and nitrogen status of the plants attempted with one or two genes The present invention involves simultaneous co-overexpression of three genes wherein one gene (PEPCase) efficiently capture CO2 whereas the other two encode for enzymes (Asp AT and GS) involved in nitrogen assimilation. The combined effect is the enhancement of carbon and nitrogen status of the plant and the productivity.

    Abstract translation: 同化的C和N主要影响植物生长和作物产量。 以前尝试用一个或两个基因改变植物的碳氮状态本发明涉及三个基因的同时共过表达,其中一个基因(PEPCase)有效捕获CO 2,而另外两个基因编码酶(Asp AT和GS )参与氮同化。 综合效应是提高植物碳氮状况和生产力。

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