摘要:
A virtual image is created by receiving a selection of at least one composable software bundle. The at least one composable software bundle includes a first set of metadata and a first set of artifacts comprising a first set of executable instructions associated with a first set of operations. A virtual image asset is selected and received. The virtual image asset includes one or more virtual image disks, a second set of metadata, and a second set of artifacts including a second set of executable instructions associated with a second set of operations. A new virtual image asset is created based on the at least one composable software bundle and the virtual image asset. The new virtual image asset includes a third set of metadata that is based on the first set of metadata and the second set of metadata.
摘要:
Lifecycles of virtual image assets are managed as follows. A set of assets including a set virtual image assets and a set of software bundle assets are analyzed. At least a portion of relationship data between one or more of the virtual image assets and one or more of the software bundle assets is determined. The at least a portion of relationship data is stored in a memory. At least one of one or more virtual image assets and one or more software bundle assets are determined to be associated with a set of changes. At least one virtual image asset that is related to the one or more virtual image assets and/or one or more software bundle assets associated with the set of changes is identified. The at least one virtual image asset that has been identified is updated based on the set of changes.
摘要:
Deployment pattern matching is implemented by accessing a target computing environment model that captures environment modeling parameters relating to resources and resource-resource relationships of a corresponding computing environment and expressing the target computing environment model as a model graph defined by target resource elements and resource-to-resource relationship links. Deployment pattern matching is further implemented by accessing a realization pattern that captures deployment parameters relating to resources and resource-resource relationships of a deployment of interest and expressing the realization pattern as a pattern graph defined by conceptual resource elements and constraints arranged by resource-to-resource relationship links and constraint links. The realization pattern is then evaluated against the target computing environment model by executing at least one pattern matching algorithm that attempts to match the pattern graph to the model graph and information corresponding to results of the evaluation are conveyed.
摘要:
A deployment modeling platform enables a user to model application characteristics of target software and to associate application modeling parameters to the modeled application characteristics. A user may also model environment characteristics of a target deployment environment and to associate environment modeling parameters to the modeled deployment environment characteristics. Still further, a user may create a deployment model that associates and maps selected parameters of the modeled application characteristics of the target software to associated parameters of the modeled environment characteristics of the deployment environment, and to verify that each parameter that relates to a requirement is mapped to and is fulfilled by an associated parameter that relates to a corresponding capability to determine whether validation problems exist in order to deploy the target software in the associated deployment environment.
摘要:
A system and method for automated design deployment for distributed applications includes providing a node with at least one requirement attribute in an application description. A repository for infrastructure elements is searched for candidate infrastructure elements for that satisfy the at least one requirement attribute. A candidate infrastructure element that best satisfies the at least one requirement attribute in the application description is substituted in place of the node with the at least one requirement attribute.
摘要:
Various embodiments disclose a method and system for creating a virtual part used for composing a virtual solution. In one embodiment, a user's selection of at least one virtual image is received. A set of configurability points is associated with the virtual image. A set of parameters of a virtual part is set as configurable during virtual solution composition. A set of virtual ports is generated. Each virtual port within the set of virtual ports indicates at least one of a set of virtual parts required by a virtual part including the set of virtual ports and a set of virtual parts that is compatible with the virtual part. A set of configuration operations is received. A virtual part including at least the virtual image, the set of configurability points, the set of virtual ports, and the configuration operations is generated.
摘要:
A method and system for model-driven transformation are provided. The method and system in one aspect allows selecting of one or more model elements in a model. Transformation definitions are evaluated to identify one or more transformations that may be applicable to the selected one or more model elements. In one aspect, transformations may be identified that are applicable in an entire model, those that take the selected one or more model elements as input parameters, those that affect one or more model element, or any combination thereof. In one aspect, a list of applicable transformations is presented. In another aspect, the method and system automatically apply the one or more applicable transformations to the model.
摘要:
A method and system for model-driven transformation are provided. The method and system in one aspect allows selecting of one or more model elements in a model. Transformation definitions are evaluated to identify one or more transformations that may be applicable to the selected one or more model elements. In one aspect, transformations may be identified that are applicable in an entire model, those that take the selected one or more model elements as input parameters, those that affect one or more model element, or any combination thereof. In one aspect, a list of applicable transformations is presented. In another aspect, the method and system automatically apply the one or more applicable transformations to the model.
摘要:
Deployment pattern matching is implemented by accessing a target computing environment model that captures environment modeling parameters relating to resources and resource-resource relationships of a corresponding computing environment and expressing the target computing environment model as a model graph defined by target resource elements and resource-to-resource relationship links. Deployment pattern matching is further implemented by accessing a realization pattern that captures deployment parameters relating to resources and resource-resource relationships of a deployment of interest and expressing the realization pattern as a pattern graph defined by conceptual resource elements and constraints arranged by resource-to-resource relationship links and constraint links. The realization pattern is then evaluated against the target computing environment model by executing at least one pattern matching algorithm that attempts to match the pattern graph to the model graph and information corresponding to results of the evaluation are conveyed.
摘要:
A method and system for model-driven transformation are provided. The method and system in one aspect allows selecting of one or more model elements in a model. Transformation definitions are evaluated to identify one or more transformations that may be applicable to the selected one or more model elements. In one aspect, transformations may be identified that are applicable in an entire model, those that take the selected one or more model elements as input parameters, those that affect one or more model element, or any combination thereof. In one aspect, a list of applicable transformations is presented. In another aspect, the method and system automatically apply the one or more applicable transformations to the model.