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    • 1. 发明申请
    • DYNAMIC INTERRUPT RECONFIGURATION FOR EFFECTIVE POWER MANAGEMENT
    • 动态中断重新配置有效的电源管理
    • US20130318334A1
    • 2013-11-28
    • US13977605
    • 2012-04-24
    • Peter P. Waskiewicz, JR.
    • Peter P. Waskiewicz, JR.
    • G06F9/38
    • G06F9/3861G06F1/3203G06F1/329G06F9/4812G06F13/24Y02D10/24
    • Methods, apparatus, and systems for facilitating effective power management through dynamic reconfiguration of interrupts. Interrupt vectors are mapped to various processor cores in a multi-core processor, and interrupt workloads on the processor cores are monitored. When an interrupt workload for a given processor core is detected to fall below a threshold, the interrupt vectors are dynamically reconfigured by remapping interrupt vectors that are currently mapped to the processor core to at least one other processor core, such that there are no interrupt vectors mapped to the processor core after reconfiguration. The core is then enabled to be put in a deeper idle state. Similar operations can be applied to additional processor cores, effecting a collapsing of interrupt vectors onto fewer processor cores. In response to detecting cores emerging from idle states, reconfiguration of interrupt vectors can be performed to rebalance the assignment of the vectors across active cores by remapping a portion of the vectors to those cores.
    • 用于通过动态重新配置中断来促进有效电源管理的方法,装置和系统。 中断向量映射到多核处理器中的各种处理器内核,并监视处理器内核上的中断工作负载。 当检测到给定处理器核心的中断工作负载低于阈值时,通过将当前映射到处理器核心的中断向量重新映射到至少一个其他处理器核心,中断向量被动态重新配置,使得不存在中断向量 重新配置后映射到处理器核心。 然后核心能够被置于更深的空闲状态。 类似的操作可以应用于附加的处理器内核,从而将中断向量折叠到较少的处理器内核上。 响应于检测到从空闲状态出现的核心,可以执行重新配置中断向量,以通过将一部分向量重新映射到这些核来重新平衡跨活动核心的向量分配。
    • 3. 发明申请
    • METHOD OF AUTOMATICALLY DETERMINING LINK SPEED FOR A MULTISPEED FIBER LINK MODULE
    • 自动确定多路光纤链路模块链路速率的方法
    • US20110320618A1
    • 2011-12-29
    • US12823882
    • 2010-06-25
    • Aaron K. SalterPeter P. Waskiewicz, JR.Scott P. DubalBrian Kantor
    • Aaron K. SalterPeter P. Waskiewicz, JR.Scott P. DubalBrian Kantor
    • G06F15/16
    • H04B10/0731
    • Automatically determining a link speed between link partners using a multispeed fiber module. An embodiment solves the problem of how to determine the highest common link speed between short range (SR)/long range (LR) fiber link partners when at least one of the link partners is using a multispeed fiber module. In an embodiment, a multispeed fiber module comprises a module that is capable of both 10 gigabit (GB) per second Ethernet and 1 GB per second Ethernet or lesser data transfer speeds over a fiber optical link. In an embodiment, the method comprises trying each link speed in a known succession, from highest supported speed to lowest supported speed. In an embodiment, an initiator link partner “blinks” a transmit laser, which alerts the link partners that a link speed determination session is being initiated. By automatically determining link speed, the user is relieved of the necessity to manually configure the link speed.
    • 使用多速光纤模块自动确定链路伙伴之间的链路速度。 一个实施例解决了当至少一个链路伙伴使用多速光纤模块时如何确定短距离(SR)/远程(LR)光纤链路伙伴之间的最高公共链路速度的问题。 在一个实施例中,多速光纤模块包括能够每秒10吉比特(GB)以太网和1GB /秒以太网或光纤光链路上的较小数据传输速度的模块。 在一个实施例中,该方法包括以已知连续的方式尝试每个链路速度,从最高支持速度到最低支持速度。 在一个实施例中,发起者链路伙伴“闪烁”发射激光器,其向链路伙伴通知正在启动链路速度确定会话。 通过自动确定链路速度,用户不需要手动配置链路速度。