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    • 1. 发明申请
    • TECHNOLOGIES FOR AUTOMATED APPLICATION TESTING COVERAGE AND RESULTS EVALUATION
    • 自动化应用测试覆盖和结果评估技术
    • WO2017107173A1
    • 2017-06-29
    • PCT/CN2015/098840
    • 2015-12-25
    • INTEL CORPORATIONDENG, TaoSHEN, HaihaoWANG, YunGONG, JiongHUANG, Zao
    • DENG, TaoSHEN, HaihaoWANG, YunGONG, JiongHUANG, Zao
    • G06F11/36
    • G06F11/3664
    • Technologies for application testing include a host computing device (102) and a test computing device (104, 104a, 104b). The host computing device (102) captures a frame of a display interface generated by an application executed by the test computing device (104, 104a, 104b). The host computing device (102) may detect a crash indication as a function of the captured frame. In response to detecting the crash indication, the host computing device (102) may detect an application crash based on an error log and in response report a test failure. The host computing device (102) may capture a scene of the display interface, recognize one or more user interface objects of the scene, select a test action based on the scene, and perform the test action. The test action and a user interface object may be selected probabilistically. The host computing device (102) records test coverage data in response to performing the test action.
    • 用于应用测试的技术包括主机计算设备(102)和测试计算设备(104,104a,104b)。 主机计算设备(102)捕捉由测试计算设备(104,104a,104b)执行的应用程序生成的显示界面的帧。 主机计算设备(102)可以根据所捕获的帧来检测碰撞指示。 响应于检测到崩溃指示,主机计算设备(102)可以基于错误日志检测应用程序崩溃并且作为响应报告测试失败。 主计算设备(102)可捕捉显示界面的场景,识别场景的一个或多个用户界面对象,基于场景选择测试动作,并执行测试动作。 测试操作和用户界面对象可以概率性地选择。 主机计算设备(102)响应于执行测试动作而记录测试覆盖数据。
    • 2. 发明申请
    • TECHNOLOGIES FOR DEVICE INDEPENDENT AUTOMATED APPLICATION TESTING
    • 独立自动化应用测试技术
    • WO2016206113A1
    • 2016-12-29
    • PCT/CN2015/082542
    • 2015-06-26
    • INTEL CORPORATIONGONG, JiongWANG, YunSHEN, Haihao
    • GONG, JiongWANG, YunSHEN, Haihao
    • G06F11/36
    • G06F11/3664G06F3/04817G06F11/36G06F11/3688
    • Technologies for device-independent application testing include a host computing device and one or more test computing devices. The host computer device records user interface events generated by an application of the test computing device and video data indicative of the display interface of the application. The host computing device detects user interface objects in the video data that correspond to user interface events using a computer vision algorithm, which may include image feature detection or optical character recognition. The host computing device generates an object-based test script that identifies the user interface object and a user interaction. The host computing device may identify the user interface object in the display interface of an application executed by a different test computing device using the computer vision algorithm. The host computing device performs the specified user interaction on the detected user interface object. Other embodiments are described and claimed.
    • 用于与设备无关的应用测试的技术包括主机计算设备和一个或多个测试计算设备。 主计算机设备记录由测试计算设备的应用产生的用户界面事件和表示应用的显示界面的视频数据。 主计算设备使用计算机视觉算法来检测与用户界面事件相对应的视频数据中的用户界面对象,其可以包括图像特征检测或光学字符识别。 主机计算设备生成标识用户界面对象和用户交互的基于对象的测试脚本。 主计算设备可以使用计算机视觉算法来识别由不同测试计算设备执行的应用的显示界面中的用户界面对象。 主机计算设备在检测到的用户界面对象上执行指定的用户交互。 描述和要求保护其他实施例。
    • 3. 发明申请
    • TECHNOLOGIES FOR AUTOMATED APPLICATION EXPLORATORY TESTING
    • 自动化应用探测技术
    • WO2017049649A1
    • 2017-03-30
    • PCT/CN2015/090852
    • 2015-09-26
    • INTEL CORPORATIONSHEN, HaihaoWANG, YunCHENG, WenhuaGONG, Jiong
    • SHEN, HaihaoWANG, YunCHENG, WenhuaGONG, Jiong
    • G06F9/44
    • G06F11/3664
    • Technologies for automated application exploratory testing include a host computing device and a test computing device. The host computing device captures a frame of a display interface of a test application executed by the test computing device. The host computing device determines whether the captured frame matches video data associated with predefined test scripts. The host computing device may detect still features of the video data and compare the captured frame to the still features. The host computing device may schedule a test script for execution that is associated with a matching video. The host computing device may continue executing a currently executing test script if it is associated with a matching video. If no video matches the captured frame, the host computing device performs exploratory execution of the application and may dismiss a transient user interface. Other embodiments are described and claimed.
    • 用于自动化应用探索性测试的技术包括主机计算设备和测试计算设备。 主计算设备捕获由测试计算设备执行的测试应用的显示界面的帧。 主机计算设备确定捕获的帧是否匹配与预定义测试脚本相关联的视频数据。 主计算设备可以检测视频数据的静态特征,并将捕获的帧与静态特征进行比较。 主计算设备可以安排与匹配视频相关联的用于执行的测试脚本。 主机计算设备如果与匹配的视频相关联,则可以继续执行当前正在执行的测试脚本。 如果没有视频与捕获的帧匹配,则主机计算设备执行应用的探索性执行,并且可以忽略临时用户界面。 描述和要求保护其他实施例。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR SUPPORTING HETEROGENEOUS VIRTUALIZATION
    • 支持异构虚拟化的方法和装置
    • WO2007115425A1
    • 2007-10-18
    • PCT/CN2006/000564
    • 2006-03-30
    • INTEL CORPORATIONWANG, YunDONG, Yaozu
    • WANG, YunDONG, Yaozu
    • G06F12/00
    • G06F9/45545G06F9/45554G06F9/45558G06F9/5077G06F12/0246G06F12/1036G06F12/109
    • Machine-readable media, methods, apparatus and system are described. In some embodiments, a virtual machine monitor of a computer platform may comprise a service virtual machine created by the virtual machine monitor partitioning an underlying hardware machine to support execution of a plurality of overlying guest operating systems, wherein the plurality of guest operating systems comprise a guest operating system complying with a non-native guest system architecture different from a host system architecture with which the hardware machine complies. The service virtual machine may further comprise a translation layer to translate instructions from the guest operating system complying with the non-native guest system architecture into instructions complying with the host system architecture.
    • 描述了机器可读介质,方法,装置和系统。 在一些实施例中,计算机平台的虚拟机监视器可以包括由虚拟机监视器创建的服务虚拟机,该虚拟机监视器划分底层硬件机器以支持多个重叠的客户操作系统的执行,其中多个客户操作系统包括 符合非本地客户机系统架构的客户机操作系统与硬件机器符合的主机系统架构不同。 服务虚拟机还可以包括翻译层,以将符合非本地客户系统体系结构的来宾操作系统的指令转换为符合主机系统体系结构的指令。
    • 7. 发明公开
    • LARGE-SIZE FLOATING STATE MANUFACTURING METHOD FOR MARINE ENGINEERING EQUIPMENT
    • GROSSANGELEGTES HERSTELLUNGSVERFAHREN IM SCHWIMMENDEN ZUSTANDFÜRSCHIFFSMASCHINENBAU
    • EP2669174A1
    • 2013-12-04
    • EP11875748.3
    • 2011-12-16
    • Jiangsu UniversityWang, FeiWang, YunGu, YongyuCui, ChengyunTong, Yanqun
    • WANG, FeiWANG, YunGU, YongyuCUI, ChengyunTONG, YanqunZHANG, YongkangZHANG, Chaoyang
    • B63B9/06
    • B63B9/065
    • A large-size floating state manufacturing method for marine engineering equipment comprises: using a submersible long working platform (5) as a floating platform for constructing marine engineering equipment, each section of a bottom layer block (1) being carried and integrated on the working platform; submerging the submersible long working platform (5) after the bottom layer block (1) is constructed, so as to use the buoyancy of water to make the bottom layer block (1) be separated from the working platform (5) and go into the water; and then, using the bottom layer block (1) as the floating platform, and constructing a main hull (2, 3) and a deck (4) of the marine engineering platform and performing outfitting thereon. In the method, manufacturing is performed in sections in allowance-free sectional construction manner on the floating working platform, and then superposition is performed layer by layer; in the manufacturing process, dynamic measurement and anti-deformation control technologies are adopted, so as to ensure quality and precision of floating state manufacturing, and finally realize construction of large-scale marine engineering equipment.
    • 海洋工程设备的大型浮式制造方法包括:使用潜水长工作平台(5)作为构建海洋工程设备的浮动平台,底层块(1)的每个部分承载并整合在工作中 平台; 在底层块(1)构造后,浸没潜水长工作平台(5),以利用水的浮力使底层块(1)与工作平台(5)分离,并进入 水; 然后使用底层块(1)作为浮动平台,并构建海洋工程平台的主船体(2,3)和甲板(4),并对其进行装备。 在该方法中,在浮动工作平台上以无余量的构造方式进行制造,然后逐层叠加; 在制造过程中,采取动态测量和抗变形控制技术,确保浮式制造的质量和精度,最终实现大型海洋工程设备的建设。