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    • 7. 发明申请
    • UPDATING VIRTUAL MEMORY ADDRESSES OF TARGET APPLICATION FUNCTIONALITIES FOR AN UPDATED VERSION OF APPLICATION BINARY CODE
    • 更新应用程序二进制代码更新版本的目标应用程序功能的虚拟内存地址
    • WO2018022256A1
    • 2018-02-01
    • PCT/US2017/040495
    • 2017-06-30
    • QUALCOMM INCORPORATED
    • DE, Subrato Kumar
    • G06F21/53G06F21/56
    • Systems, methods, and computer programs are disclosed for updating virtual memory addresses of target application functionalities for an updated version of application binary code. The method comprises storing a virtual address mapping table associated with application binary code registered with a high-level operating system. The virtual address mapping table comprises a plurality of virtual addresses mapped to corresponding target application functionalities in the application binary code. In response to receiving an updated version of the application binary code, a pseudo binary code template is selected, which is associated with one or more of the plurality of virtual addresses in the virtual address mapping table. The pseudo binary code template is matched to binary instructions in the updated version of the application binary code. The new virtual addresses corresponding to the matching binary instructions are determined. The virtual address mapping table is updated with the new virtual addresses.
    • 公开了用于针对应用二进制代码的更新版本更新目标应用功能的虚拟存储器地址的系统,方法和计算机程序。 该方法包括存储与在高级操作系统中注册的应用二进制代码相关联的虚拟地址映射表。 虚拟地址映射表包括映射到应用二进制代码中的相应目标应用功能的多个虚拟地址。 响应于接收到应用二进制代码的更新版本,选择与虚拟地址映射表中的多个虚拟地址中的一个或多个相关联的伪二进制代码模板。 伪二进制代码模板与应用程序二进制代码更新版本中的二进制指令相匹配。 确定对应于匹配二进制指令的新虚拟地址。 虚拟地址映射表用新的虚拟地址更新。
    • 9. 发明申请
    • PREEMPTIVE DECOMPRESSION SCHEDULING FOR A NAND STORAGE DEVICE
    • NAND存储设备的预压缩调度
    • WO2017222752A1
    • 2017-12-28
    • PCT/US2017/034858
    • 2017-05-26
    • QUALCOMM INCORPORATED
    • DE, Subrato KumarCHUN, DexterLI, Yanru
    • G06F9/445G06F12/02
    • Systems, methods, and computer programs are disclosed for scheduling decompression of an application from flash storage. One embodiment of a system comprises a flash memory device and a preemptive decompression scheduler component. The preemptive decompression scheduler component comprises logic configured to generate and store metadata defining one or more dependent objects associated with the compressed application in response to an application installer component installing a compressed application to the flash memory device. In response to a launch of the compressed application by an application launcher component, the preemptive decompression scheduler component determines from the stored metadata the one or more dependent objects associated with the compressed application to be launched. The preemptive decompression scheduler component preemptively schedules decompression of the one or more dependent objects based on the stored metadata.
    • 公开了用于调度来自闪存的应用的解压缩的系统,方法和计算机程序。 系统的一个实施例包括闪存设备和抢先解压缩调度器组件。 抢先解压缩调度器组件包括被配置为响应于应用安装器组件将压缩应用安装到闪存设备而生成并存储定义与压缩应用相关联的一个或多个依赖对象的元数据的逻辑。 响应于由应用程序启动器组件启动压缩应用程序,抢先解压缩调度器组件从存储的元数据中确定与将要启动的压缩应用程序相关联的一个或多个依赖对象。 抢先解压缩调度器组件基于存储的元数据预先调度一个或多个依赖对象的解压缩。
    • 10. 发明申请
    • SYSTEMS AND METHODS FOR DETERMINING A SUSTAINED THERMAL POWER ENVELOPE COMPRISING MULTIPLE HEAT SOURCES
    • 用于确定包括多个热源的持续热功率包络的系统和方法
    • WO2017155658A2
    • 2017-09-14
    • PCT/US2017/017149
    • 2017-02-09
    • QUALCOMM INCORPORATED
    • LEE, KwangyoonWAN, Kai YeeCUNNINGHAM, AdamOCLIMA, Melanie Dolores
    • G06F1/20
    • Various embodiments of systems and methods are disclosed for determining a thermal power envelope. One method comprises determining a set of component and operating point combinations for a plurality of components in a portable computing device. Each component and operating point combination in the set defines an available operating point for each of the plurality of components. The portable computing device is iteratively set to each of the component and operating point combinations in the set. At each of the component and operating point combinations, power consumption data and skin temperature data is collected from a plurality of temperature sensors. An enhanced thermal power envelope is generated comprising the power consumption data and the skin temperature data for each of the component and operating point combinations.
    • 公开了用于确定热功率包络的系统和方法的各种实施例。 一种方法包括确定用于便携式计算设备中的多个组件的一组组件和操作点组合。 该组中的每个组件和操作点组合为多个组件中的每个组件定义可用的操作点。 便携式计算设备被迭代地设置为该组中的每个组件和操作点组合。 在每个组件和操作点组合中,从多个温度传感器收集功耗数据和皮肤温度数据。 生成增强的热功率包络,包括用于每个组件和操作点组合的功耗数据和皮肤温度数据。