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    • 61. 发明申请
    • SUSPENSION AND/OR THROTTLING OF PROCESSES FOR CONNECTED STANDBY
    • 连接待机过程的暂停和/或转折
    • US20130042128A1
    • 2013-02-14
    • US13207138
    • 2011-08-10
    • Jon Berry
    • Jon Berry
    • G06F1/00G06F9/46G06F9/44
    • G06F1/00G06F1/3206G06F1/3209G06F1/3234G06F1/324G06F1/329G06F9/4418G06F9/485G06F9/4893Y02D10/126Y02D10/24Y02D10/44Y02D50/20
    • One or more techniques and/or systems are provided for assigning power management classifications to a process, transitioning a computing environment into a connected standby state based upon power management classifications assigned to processes, and transitioning the computing environment from the connected standby state to an execution state. That is, power management classifications, such as exempt, throttle, and/or suspend, may be assigned to processes based upon various factors, such as whether a process provides desired functionality and/or whether the process provides functionality relied upon for basic operation of the computing environment. In this way, the computing environment may be transitioned into a low power connected standby state that may continue executing desired functionality, while reducing power consumption by suspending and/or throttling other functionality. Because some functionality may still execute, the computing environment may transition into the execution state in a responsive manner to quickly provide a user with up-to-date information.
    • 提供了一种或多种技术和/或系统,用于将功率管理分类分配给过程,基于分配给过程的功率管理分类,以及将计算环境从连接的待机状态转换到执行,将计算环境转换为连接的待机状态 州。 也就是说,电力管理分类(例如豁免,节流和/或暂停)可以基于各种因素分配给过程,诸如过程是否提供期望的功能和/或该过程是否提供依赖于基本操作的功能 计算环境。 以这种方式,计算环境可以转变为可以继续执行所需功能的低功率连接待机状态,同时通过暂停和/或调节其他功能来降低功耗。 因为一些功能仍然可以执行,所以计算环境可以以响应的方式转换到执行状态,以便向用户提供最新的信息。
    • 62. 发明申请
    • ZERO POWER HIBERNATION MODE WITH INSTANT ON
    • 零功率自动模式,即时打开
    • US20130031388A1
    • 2013-01-31
    • US13533088
    • 2012-06-26
    • Premanand SAKARDA
    • Premanand SAKARDA
    • G06F1/32
    • G06F1/3287G06F1/3203G06F9/4418Y02D10/171Y02D10/44
    • Systems, methods, and other embodiments associated with a processor configured with a zero power hibernation/sleep mode during which the processor consumes no power are described. According to one embodiment, a processor includes a power management logic. The power management logic is configured to receive a control signal requesting the processor to transition into a power saving mode that reduces power to the processor while retaining a current state of the processor. The power management logic is configured to store, in response to the control signal, a current state of components of the processor in a non-volatile memory. The power management logic is configured to adjust power to the processor to a zero power mode to place the processor into the power saving mode, wherein during the zero power mode the processor is receiving no power.
    • 描述了与处理器配置的处理器相关联的系统,方法和其他实施例,其中处理器不消耗功率的零功率休眠/睡眠模式。 根据一个实施例,处理器包括电源管理逻辑。 电源管理逻辑被配置为接收请求处理器转换到省电模式的控制信号,该模式在保持处理器的当前状态的同时降低处理器的功率。 电源管理逻辑被配置为响应于控制信号而存储非易失性存储器中的处理器的组件的当前状态。 功率管理逻辑被配置为将处理器的功率调整到零功率模式以将处理器置于省电模式,其中在零功率模式期间,处理器不接收功率。
    • 64. 发明申请
    • METHOD AND APPARATUS FOR FACILITATING DEVICE HIBERNATION
    • 用于促进设备自动化的方法和装置
    • US20120185715A1
    • 2012-07-19
    • US13427524
    • 2012-03-22
    • Dean ReeceSimon M. Douglas
    • Dean ReeceSimon M. Douglas
    • G06F1/00
    • G06F1/3203G06F9/4418Y02D10/44
    • One embodiment of the present invention provides a system that enables a computing device to save additional power by entering a “hibernation mode,” wherein the active state of the computing device is preserved in non-volatile storage while power to volatile storage is turned off. During operation, the system reanimates a computing device from a hibernation image by restoring reanimation code from the hibernation image and then executing the reanimation code. While executing this reanimation code, the system restores the rest of the hibernation image by, reading compressed data containing the rest of the hibernation image, and decompressing the compressed data using computational circuitry within the computing device. During this process, the decompression operations are overlapped with the reading operations to improve performance.
    • 本发明的一个实施例提供一种能够使计算设备通过进入“休眠模式”来节省额外功率的系统,其中计算设备的活动状态被保存在非易失性存储器中,而对易失性存储器的电源被关闭。 在操作期间,系统通过从休眠图像中恢复再生代码,然后执行恢复代码,从休眠图像中重新计算计算设备。 在执行该恢复代码的同时,系统通过读取包含休眠图像的其余部分的压缩数据以及使用计算设备内的计算电路解压缩压缩数据来恢复休眠图像的其余部分。 在此过程中,解压缩操作与读取操作重叠以提高性能。
    • 67. 发明申请
    • ARCHITECTURE TO ENABLE ENERGY SAVINGS IN NETWORKED COMPUTERS
    • 在网络计算机中实现能源节约的架构
    • US20110191610A1
    • 2011-08-04
    • US13054471
    • 2009-07-14
    • Yuvraj AgarwalRajesh K. Gupta
    • Yuvraj AgarwalRajesh K. Gupta
    • G06F1/00G06F15/16
    • G06F1/3203G06F1/3287G06F9/4418G06F9/45533H04L12/12H04L12/462Y02D10/171Y02D10/26Y02D10/28Y02D10/44Y02D50/20Y02D50/40Y02D50/42
    • This application includes systems and techniques that permit computers to remain accessible while in a low-power mode. In some implementations, the technique includes receiving at a first computer, via a computer network, information regarding a second computer transitioning to a low-power mode of operation; receiving at the first computer network communications designated for the second computer; processing at the first computer at least a portion of the network communications on behalf of the second computer without transitioning the second computer out of the low-power mode of operation, where the processing comprises processing the at least a portion of the network communications on behalf of the second computer within a virtual machine corresponding to the second computer; and initiating, via the computer network, a transition of the second computer out of the low-power mode of operation when at least one of the network communications satisfies a predetermined condition.
    • 该应用程序包括允许计算机在低功耗模式下保持可访问的系统和技术。 在一些实现中,该技术包括在第一计算机经由计算机网络接收关于第二计算机转换到低功率操作模式的信息; 在第一计算机网络接收为第二台计算机指定的通信; 在第一计算机处理代表第二计算机的至少一部分网络通信而不将第二计算机从低功率操作模式转移出来,其中处理包括代表网络通信的至少一部分处理 在与第二计算机对应的虚拟机内的第二计算机; 以及当所述网络通信中的至少一个满足预定条件时,经由所述计算机网络启动所述第二计算机从所述低功率操作模式的转变。
    • 68. 发明申请
    • HIBERNATION SOLUTION FOR EMBEDDED DEVICES AND SYSTEMS
    • 嵌入式设备和系统的HIBERNATION解决方案
    • US20110107020A1
    • 2011-05-05
    • US12609535
    • 2009-10-30
    • Binghua DUAN
    • Binghua DUAN
    • G06F12/06G06F11/20
    • G06F1/3203G01S19/34G06F9/4418Y02D10/44
    • An embedded device is hibernated by storing state data of the embedded device to a non-volatile data storage medium, and powering off the embedded device. The embedded device is later woken up in response to the detection of a wakeup event from a wakeup source. The state data stored in the RAM of the embedded device comprises data in one or more registers of a Central Processing Unit (CPU) of the embedded device, one or more registers of a system-on-chip (SOC) of the embedded device, and the system and applications code and data. Waking the embedded device comprises loading, from the non-volatile data storage medium, initial memory sections that are used to run a kernel of the embedded device. State data that is stored in the RAM of a system may be compressed by dividing the RAM into a plurality of sections and independently choosing, for each section in the plurality of sections, a corresponding compression arithmetic.
    • 嵌入式设备通过将嵌入式设备的状态数据存储到非易失性数据存储介质中并将嵌入式设备断电来进行休眠。 响应于来自唤醒源的唤醒事件的检测,随后唤醒嵌入式设备。 存储在嵌入式设备的RAM中的状态数据包括嵌入式设备的中央处理单元(CPU)的一个或多个寄存器中的数据,嵌入式设备的片上系统(SOC)的一个或多个寄存器, 以及系统和应用程序的代码和数据。 唤醒嵌入式设备包括从非易失性数据存储介质加载用于运行嵌入式设备的内核的初始存储器部分。 存储在系统的RAM中的状态数据可以通过将RAM划分为多个部分而被压缩,并且对于多个部分中的每个部分独立地选择相应的压缩算术。