Patent classifications
G06F8/61
IMPORT OF DEPLOYABLE CONTAINERS AND SOURCE CODE IN CLOUD DEVELOPMENT ENVIRONMENT
Various systems and methods are described for testing and deployment of containers on cloud and edge computing hardware. An example development platform may include capabilities for identifying, from a remote location, data to import a container software package. The development platform may store a container image, based on the data to import the container software package.
The development platform may perform a security evaluation of the container image, before execution of the container image. The development platform may store results of the security evaluation of the container image in a database accessible to the development platform. The development platform may add the container image into a registry of containers available for execution at the development platform, with execution of the container image being based on verification of the results of the security evaluation and use of the registry of containers.
FIRMWARE MASSIVE UPDATE METHOD USING FLASH MEMORY AND COMPUTER PROGRAM STORED IN RECORDING MEDIA FOR EXECUTING THE SAME
A firmware massive update method using a flash memory includes: a firmware data registration step of receiving, from a manufacturer server, at least one of information of a user device that is a firmware update target, and firmware information and registering the received information as firmware data; a firmware data management step of receiving a request from a firmware update server in which the registered firmware data is stored, and storing and managing the registered firmware data in a specific area of a flash memory included in the user device via a network; and a firmware update execution step of executing a firmware update on the firmware data managed in the specific area of the flash memory included in the user device through the firmware update server.
Intelligent framework updater to incorporate framework changes into data analysis models
A computer system adapts a model analyzing data. Information sources are analyzed to determine one or more changes for a computerized model employed for analyzing data. One or more current projects each using an implementation of the computerized model with at least one of the determined changes are identified. The implementations are compared to the employed computerized model to determine differences. One or more adaptations for the employed computerized model are determined in response to the determined differences satisfying a threshold, wherein the one or more adaptations for the employed computerized model are based on the determined changes in the corresponding implementation of the computerized model. At least one adaption is installed into a platform hosting the employed model for modification of the employed model. Embodiments of the present invention further include a method and program product for adapting a model analyzing data in substantially the same manner described above.
Intelligent framework updater to incorporate framework changes into data analysis models
A computer system adapts a model analyzing data. Information sources are analyzed to determine one or more changes for a computerized model employed for analyzing data. One or more current projects each using an implementation of the computerized model with at least one of the determined changes are identified. The implementations are compared to the employed computerized model to determine differences. One or more adaptations for the employed computerized model are determined in response to the determined differences satisfying a threshold, wherein the one or more adaptations for the employed computerized model are based on the determined changes in the corresponding implementation of the computerized model. At least one adaption is installed into a platform hosting the employed model for modification of the employed model. Embodiments of the present invention further include a method and program product for adapting a model analyzing data in substantially the same manner described above.
Systems and methods for gradually updating a software object on a plurality of computer nodes
Disclosed herein are systems and method for gradually updating software object instances on a plurality of computer nodes. In an exemplary aspect, in response to receiving a notification from a software object instance, a system may register the software object instance at an update server. The system may store and deploy a plurality of links, wherein each deployed link uniquely corresponds to a registered software object instance. The system may then associate two or more subsets of the plurality of links with two or more update locations, in accordance with an update policy. The system may place an update to the software object instance at the two or more update locations in accordance with an update policy. In response to receiving an update request via a link from a computing node, the system may further redirect the update request to an update location associated with the link.
Systems and methods for gradually updating a software object on a plurality of computer nodes
Disclosed herein are systems and method for gradually updating software object instances on a plurality of computer nodes. In an exemplary aspect, in response to receiving a notification from a software object instance, a system may register the software object instance at an update server. The system may store and deploy a plurality of links, wherein each deployed link uniquely corresponds to a registered software object instance. The system may then associate two or more subsets of the plurality of links with two or more update locations, in accordance with an update policy. The system may place an update to the software object instance at the two or more update locations in accordance with an update policy. In response to receiving an update request via a link from a computing node, the system may further redirect the update request to an update location associated with the link.
Application function library for cloud systems
A method, a system, and computer program product for application function library installation for cloud-based systems. An application function in a plurality of application functions is executed. The application function is executed using a server instance running in a container. A determination is made that execution of the application function requires an application function library. The application function library for executing of the application function is obtained. The obtained application function library is loaded during runtime of the application function.
Application function library for cloud systems
A method, a system, and computer program product for application function library installation for cloud-based systems. An application function in a plurality of application functions is executed. The application function is executed using a server instance running in a container. A determination is made that execution of the application function requires an application function library. The application function library for executing of the application function is obtained. The obtained application function library is loaded during runtime of the application function.
SMART ENVIRONMENT ASSESSMENT OF PREREQUISITES TO PRIVATE CLOUD PROVISIONING
Systems and methods for performing a complete assessment of a disconnected environment to determine if any prerequisite components (dependencies) necessary for the installation of cloud infrastructure are missing from the disconnected environment and generating a report based on the assessment are provided. An offline bundle having an assessment playbook may be imported into the disconnected environment. The assessment playbook may determine whether the disconnected environment includes each of a set of prerequisite components of the cloud infrastructure and generate a report indicating one or more of the set of prerequisite components that are missing from the disconnected environment. An automation playbook may be generated based on the report, wherein the automation playbook installs each of the one or more of the set of prerequisite components that are missing from the disconnected environment.
SMART ENVIRONMENT ASSESSMENT OF PREREQUISITES TO PRIVATE CLOUD PROVISIONING
Systems and methods for performing a complete assessment of a disconnected environment to determine if any prerequisite components (dependencies) necessary for the installation of cloud infrastructure are missing from the disconnected environment and generating a report based on the assessment are provided. An offline bundle having an assessment playbook may be imported into the disconnected environment. The assessment playbook may determine whether the disconnected environment includes each of a set of prerequisite components of the cloud infrastructure and generate a report indicating one or more of the set of prerequisite components that are missing from the disconnected environment. An automation playbook may be generated based on the report, wherein the automation playbook installs each of the one or more of the set of prerequisite components that are missing from the disconnected environment.