Abstract:
Techniques are disclosed for enabling tenant hierarchy information to be migrated directly between different multi-tenant system (e.g., from a shared IDM system to a Nimbula system, or vice versa). A corresponding new tenant is created in a Nimbula system based on a combination of the tenant information and the service information from the shared IDM system. The Nimbula system extracts the tenant name and the service name from a request and asks the shared IDM system to verify that the user actually is a member of the tenant identified by the extracted tenant name. Upon successful authentication of the user, the Nimbula system requests the IDM system for roles that are associated with both the user and the extracted service name. The Nimbula system enable access to the service upon determining whether the requested operation can be performed relative to the specified service based on the roles.
Abstract:
A method and system for managing access to information stored in a data storage system of an organization is provided. In an embodiment, the data storage system may be configured to receive a request from a requester on a client device to access information stored in the data storage system. In some aspects, upon receiving the request, the first system may determine that an access token identifying the requester is stored in a cache in the data storage system. In some aspects, the data storage system may then retrieve one or more roles from the cache. In some examples, the roles may be associated with the access token. In certain embodiments, the data storage system may then be configured to determine that the requester is authorized to access the information based on the roles and provide the information to the requester on the client device.
Abstract:
A system and method for patching cloud services for use with a cloud computing environment. In accordance with an embodiment, a cloud environment includes a cloud services infrastructure, which allows a suite of software applications, middleware, and database offerings to be delivered to customers in a self-service, elastically scalable manner. Over time, it may become necessary to update one or more of the deployed services. In accordance with an embodiment, services can be patched using a two phase approach. During an offline phase, patches are used to update shared components, such as middleware volumes, without disrupting any currently running services. Subsequently, during an online phase, patched components are enabled on all service hosts, and any necessary domain update/upgrade operations are invoked.
Abstract:
A system and method for providing Java cloud services for use with a cloud computing environment. In accordance with an embodiment, a cloud environment, such as Oracle Public Cloud (OPC), can include a Java cloud services (JCS) infrastructure, which allows a suite of software applications, middleware, and database offerings to be delivered to customers in a self-service, elastically scalable manner. In accordance with an embodiment, the JCS infrastructure can orchestrate, in combination with other cloud environment components, the creating and/or updating of a platform instance of a Java cloud service, including provisioning and deployment of the platform instance and/or deployment of software applications, and one or more personality injection or application deployment processing. Additional resources and/or services, such as a database service, can be wired to or otherwise associated with the Java cloud service, for use by customer applications that are deployed to the cloud.
Abstract:
A system and method for enabling a cloud computing environment. In accordance with an embodiment, the system can include a variety of hardware and/or software components and features, which can be used in delivering an infrastructure, platform, and/or applications to support public and private clouds.
Abstract:
A system and method for providing JAVA cloud services for use with a cloud computing environment. In accordance with an embodiment, a cloud environment, such as ORACLE Public Cloud (OPC), can include a JAVA cloud services (JCS) infrastructure, which allows a suite of software applications, middleware, and database offerings to be delivered to customers in a self-service, elastically scalable manner. In accordance with an embodiment, the JCS infrastructure can orchestrate, in combination with other cloud environment components, the creating and/or updating of a platform instance of a JAVA cloud service, including provisioning and deployment of the platform instance and/or deployment of software applications, and one or more personality injection or application deployment processing. Additional resources and/or services, such as a database service, can be wired to or otherwise associated with the JAVA cloud service, for use by customer applications that are deployed to the cloud.
Abstract:
A system and method for providing Java cloud services for use with a cloud computing environment. In accordance with an embodiment, a cloud environment, such as Oracle Public Cloud (OPC), can include a Java cloud services (JCS) infrastructure, which allows a suite of software applications, middleware, and database offerings to be delivered to customers in a self-service, elastically scalable manner. In accordance with an embodiment, the JCS infrastructure can orchestrate, in combination with other cloud environment components, the creating and/or updating of a platform instance of a Java cloud service, including provisioning and deployment of the platform instance and/or deployment of software applications, and one or more personality injection or application deployment processing. Additional resources and/or services, such as a database service, can be wired to or otherwise associated with the Java cloud service, for use by customer applications that are deployed to the cloud.
Abstract:
Techniques are disclosed for enabling tenant hierarchy information to be migrated directly between different multi-tenant system (e.g., from a shared IDM system to a Nimbula system, or vice versa). A corresponding new tenant is created in a Nimbula system based on a combination of the tenant information and the service information from the shared IDM system. The Nimbula system extracts the tenant name and the service name from a request and asks the shared IDM system to verify that the user actually is a member of the tenant identified by the extracted tenant name. Upon successful authentication of the user, the Nimbula system requests the IDM system for roles that are associated with both the user and the extracted service name. The Nimbula system enable access to the service upon determining whether the requested operation can be performed relative to the specified service based on the roles.
Abstract:
In some embodiments, a method of automatically configuring nodes in a storage service can include receiving, from an administrative computer, a configuration script at an installation framework executing in a cloud-based storage service. The configuration script can define a plurality of nodes to be deployed in the cloud-based storage service. The method can further include parsing the configuration script to identify configuration data for the plurality of nodes, and automatically installing each node in the plurality of nodes based on the configuration data, and, in response to a deployment instruction, deploying the plurality of nodes in the cloud-based storage service.
Abstract:
A system and method for enabling a cloud computing environment. In accordance with an embodiment, the system can include a variety of hardware and/or software components and features, which can be used in delivering an infrastructure, platform, and/or applications to support public and private clouds.