Testing a metaverse application for rendering errors across multiple devices

    公开(公告)号:US20240362159A1

    公开(公告)日:2024-10-31

    申请号:US18769134

    申请日:2024-07-10

    发明人: Swathi Bussa

    IPC分类号: G06F11/36 G06F11/07 G06T7/00

    摘要: A system includes a memory and a processor coupled to the memory. The processor renders a virtual environment on a user device. The processor detects that a first view of the virtual environment has been rendered and accesses from the memory a first expected view pattern that corresponds to the first view. The processor compares the first view to the first expected view pattern and detects that a pattern of one or more visual elements in the first view does not match with an expected pattern of visual elements in the first expected view pattern. In response, the processor determines that an error has occurred relating to rendering the virtual environment. The processor obtains a solution corresponding to the error and applies the solution to resolve the detected error.

    APPLICATION CRASH TESTING PLATFORM
    2.
    发明公开

    公开(公告)号:US20240362155A1

    公开(公告)日:2024-10-31

    申请号:US18287857

    申请日:2022-04-26

    申请人: ARC-FY, LLC

    发明人: Dennis HUANG

    IPC分类号: G06F11/36

    摘要: Example implementations described herein are directed to an application crash testing platform that tests provided applications through a machine learning algorithm. Multiple instances of the application are spawned on a cloud-based platform, wherein the machine learning algorithm provides input to each of the instances until an incident causing the application to become inoperable is reached.

    SYSTEMS AND METHODS FOR EFFICIENTLY ROTATING TEST AND PRODUCTION SERVERS

    公开(公告)号:US20240362152A1

    公开(公告)日:2024-10-31

    申请号:US18632096

    申请日:2024-04-10

    申请人: Ronald Abramson

    发明人: Ronald Abramson

    IPC分类号: G06F11/36

    CPC分类号: G06F11/3672

    摘要: Systems and methods in the field of software development and workflows for networked applications. System would allow rotation of test, staging, and production servers by reassigning their respective addressing, with minimal or no modification to the servers. It would reduce or eliminate uncertainty, additional testing, delays, and downtime as a result of server rotation and maintenance.

    DEBUG CIRCUIT AND INFORMATION PROCESSING SYSTEM

    公开(公告)号:US20240362150A1

    公开(公告)日:2024-10-31

    申请号:US18642829

    申请日:2024-04-23

    发明人: Kenji NOZAKI

    IPC分类号: G06F11/36

    CPC分类号: G06F11/3648 G06F11/3636

    摘要: A debug circuit is provided in an information processing device and performs debugging of a polling program that polls a flag of a control register used for control on a peripheral function of the information processing device. The debug circuit includes: an execution instruction detection circuit that detects an execution instruction of the peripheral function to generate a detection signal; an expected value comparison circuit that compares a flag value of a flag read from the control register against an expected value of the flag; and a polling time measurement circuit that measures a polling value related to polling of the flag of the control register based on the detection signal and a comparison result obtained by the expected value comparison circuit.

    System and method for performing automated API tests

    公开(公告)号:US12130732B2

    公开(公告)日:2024-10-29

    申请号:US18321689

    申请日:2023-05-22

    IPC分类号: G06F11/36 G06F9/54 G06F16/955

    摘要: A framework and a method for ad-hoc batch testing of APIs are provided, where batches of API calls are dynamically generated directly through the framework according inputs identifying the required tests and the sources of the test data, rather than through execution of prewritten test scripts that explicitly write out the test API calls in preset sequences. When performing the validation for an API test, a test payload is generated for the test, an endpoint is called using the test payload to obtain the response used for validation, where generating the test payload includes determining an API reference corresponding to the test, obtaining relevant data from the test data according to a reference key in the test, generating input assignment operations for one or more input parameters in the API reference according to the relevant data, and generating an API call based on the API reference.

    Defect recreation
    7.
    发明授权

    公开(公告)号:US12130729B2

    公开(公告)日:2024-10-29

    申请号:US17862023

    申请日:2022-07-11

    发明人: Shubhi Tiwari

    IPC分类号: G06F9/44 G06F9/445 G06F11/36

    CPC分类号: G06F11/3664

    摘要: An information handling system may include at least one processor and a non-transitory, computer-readable medium having instructions thereon that are executable by the at least one processor for: receiving information regarding a software defect, wherein the information regarding the software defect includes a description of one or more steps usable to reproduce the defect; determining a plurality of keywords based on the description of the one or more steps; and accessing a database to determine one or more executable commands corresponding to each of the one or more steps.

    TESTING AND DEPLOYMENT OF COMPONENTS AND APPLICATIONS IN CLOUD COMPUTING ENVIRONMENTS

    公开(公告)号:US20240354239A1

    公开(公告)日:2024-10-24

    申请号:US18305140

    申请日:2023-04-21

    申请人: Tricentis GmbH

    发明人: Paul BRUCE

    IPC分类号: G06F11/36 G06F8/65 G06F8/71

    CPC分类号: G06F11/3688 G06F8/65 G06F8/71

    摘要: A cloud computing system may be configured to test a cloud-native application to improve cloud-native application suitability. The system may include a processor and a computer readable medium operably coupled thereto, the computer readable medium including a plurality of instructions stored in association therewith that are accessible to, and executable by, the processor, to perform cloud-based testing operations which may include adjusting one or more of: a network path of an interaction among the plurality of interconnected subcomponents, the automated testing routine, or an infrastructure component affecting the cloud-native application. The cloud-based testing operations may further include observing one or more of cloud-native application testing results and cloud-native application system telemetry, determining a cloud-native application flaw based on the observed one or more of cloud-native application testing results and cloud-native system telemetry, and outputting one or more configuration adjustments based on the determined cloud-native application flaw.