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    • 6. 发明申请
    • AT-SPEED TEST ACCESS PORT OPERATIONS
    • US20170045580A1
    • 2017-02-16
    • US15336101
    • 2016-10-27
    • TEXAS INSTRUMENTS INCORPORATED
    • Lee D. Whetsel
    • G01R31/3177G01R31/317
    • G01R31/3177G01R31/31723G01R31/31727G01R31/318555G01R31/318572G06F11/26H01L27/1222H01L27/1225H01L27/1248H01L27/3246H01L27/3248H01L27/3258H01L27/3262H01L51/5212H01L51/5215H01L51/5253H01L51/56H01L2227/323H01L2251/301H01L2251/308
    • This disclosure describes different ways to improve the operation of a device's 1149.1 TAP to where the TAP can perform at-speed Update & Capture, Shift & Capture and Back to Back Capture & Shift operations. In a first embodiment of the disclosure the at-speed operations are achieved by time division multiplexing CMD signals onto the TMS input to the TAP. The CMD signals are input to a CMD circuit that operates in conjunction with a Dual Port Router to execute the at-speed operations of a circuit. In a second embodiment of the disclosure the at-speed operations are achieved by detecting the TAP's Exit1DR state as a CMD signal that is input to the CMD circuit that operates in conjunction with a Dual Port Router to execute the at-speed operations of a circuit. In a third embodiment of the disclosure the at-speed operations are achieved by detecting the TAP's Exit1DR and PauseDR states and in response producing Capture and Update signals that are input to a Programmable Switch that operates in conjunction with a Dual Port Router to execute the at-speed operations of a circuit. In a fourth embodiment of the disclosure the at-speed operations are achieved by detecting the TAP's Exit1DR and PauseDR states and inputting these states to a Dual Port Router to control the at-speed operations of a circuit. Each of the embodiments may be augmented to include externally accessible Update and Capture input signals that can be selected to allow a tester to directly control the at-speed operations of a circuit. The improvements of the disclosure are achieved without requiring any additional IC pins beyond the 4 required TAP pins, except for examples showing use of additional data input pins (TDI or WPI signals), additional data output pins (TDO or WPO signals) or examples showing use of additional control input pins (Capture and Update signals). Devices including the TAP improvements can be operated compliantly in a daisy-chain arrangement with devices that don't include the TAP improvements.
    • 8. 发明授权
    • System and method to proactively and intelligently schedule disaster recovery (DR) drill(s)/test(s) in computing system environment
    • 系统和方法来主动和智能地计划计算系统环境中的灾难恢复(DR)演练/测试
    • US09465708B2
    • 2016-10-11
    • US14145054
    • 2013-12-31
    • Sanovi Technologies Pvt. Ltd.
    • Devendra GargVinodraj KuppusamyRavi Kumar RaghunathanSivakumar Nagarajan
    • G06F11/20G06F11/26
    • G06F11/26
    • A system and method for proactively and intelligently scheduling Disaster Recovery (DR) drill(s)/test(s) for application, a set of applications or entire site in a computing system environment, the system comprising: one or more Drill Intelligence Modules logically connected to one or more Production Sites and one or more Disaster Recovery Sites, one or more Replication Systems logically connected to said Drill Intelligence Module, said Production Site and said Disaster Recovery Site, a Network connecting said Drill Intelligence Module with the Production Site, said Disaster Recovery Site and said Replication system wherein said Drill Intelligence Module is provided with at least one Configuration Monitoring Module, at least one Application Load Monitoring Module, at least one Drill Tracker Module and at least one Drill Advisor Module.
    • 一种用于主动和智能地计划应用的灾难恢复(DR)演习/测试,计算系统环境中的一组应用程序或整个站点的系统和方法,所述系统和方法包括:逻辑上的一个或多个钻井智能模块 连接到一个或多个生产站点和一个或多个灾难恢复站点,一个或多个复制系统逻辑连接到钻井智能模块,生产现场和灾难恢复站点是将钻井智能模块与生产现场连接的网络,说 灾难恢复站点和所述复制系统,其中所述钻井智能模块被提供有至少一个配置监控模块,至少一个应用负载监控模块,至少一个钻探追踪器模块和至少一个钻井顾问模块。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR ENTITY GENERATION
    • 用于实体生成的系统和方法
    • US20160239360A1
    • 2016-08-18
    • US14621244
    • 2015-02-12
    • Red Hat, Inc.
    • Adam SalehElyezer Mendes Rezende
    • G06F11/07
    • G06F11/3688G06F11/22G06F11/26
    • A system and method for inspecting a testing state includes determining one or more entities to be manipulated during execution of a test of the system, generating an instance of each of the entities using a plurality of entity templates and a plurality of value generators, and executing the test using the generated instances. At least one of the generated instances includes a first value generated randomly. The test is being executed by one or more processors of the system. In some examples, generating an instance of a first one of the entities includes identifying a first one of the entity templates corresponding to a type of the first entity, determining one or more attributes for the first entity based on the first entity template, and generating an instance of each of the attributes using the entity templates and the value generators.
    • 用于检查测试状态的系统和方法包括确定在执行系统的测试期间要被操纵的一个或多个实体,使用多个实体模板和多个值生成器生成每个实体的实例,并且执行 使用生成的实例进行测试。 生成的实例中的至少一个包括随机生成的第一个值。 该测试由系统的一个或多个处理器执行。 在一些示例中,生成实体中的第一实体的实例包括识别与第一实体的类型相对应的实体模板中的第一个,基于第一实体模板确定第一实体的一个或多个属性,以及生成 使用实体模板和值生成器的每个属性的实例。