Abstract:
In some examples, an application delivery monitor system includes an application programming interface gateway to execute an application programming interface to receive, from a user device, a request for continuous application delivery progress for an application; and an orchestrator to send, in response to the request, respective sub-requests for the request to a plurality of continuous application delivery sub-systems of an application delivery platform, wherein the orchestrator is further configured to receive, in response to the sub-requests, respective indications of continuous application delivery progress from the plurality of continuous application delivery sub-systems, and wherein the orchestrator is further configured to send, to the user device, a consolidated response to the request, wherein the consolidated response includes the respective indications of continuous application delivery progress from the plurality of continuous application delivery sub-systems.
Abstract:
In some examples, a cloud-based services exchange comprises a plurality of interconnection assets configured to connect at least one customer of the cloud-based services exchange to a plurality of cloud service providers; and an orchestration engine configured to modify the plurality of interconnection assets by receiving an indication of a client request for cloud exchange services offered by the cloud-based services exchange; selecting a workflow for providing the cloud exchange services, wherein the workflow specifies a set of tasks to be performed to fulfill the client request for the cloud exchange services; call one or more microservices to perform the tasks of the set of tasks as specified by the selected workflow; consolidate responses received from the microservices after performing the tasks; and send a response to the client request for the cloud exchange services based on the consolidated responses.
Abstract:
In one example, an application development framework system comprises a microservice platform for developing and executing a plurality of microservices, wherein each microservice of the microservices comprises an independently-deployable service configured to execute one or more functions to fulfill an interface contract for an interface for the microservice; and an orchestration platform for developing and executing an orchestrator to orchestrate the microservices to execute an interconnection platform for a cloud-based services exchange configured to interconnect, using one or more virtual circuits, customers of the cloud-based services exchange.
Abstract:
In one example, a cloud-based services exchange comprises a plurality of interconnection assets configured to connect a customer of the cloud-based services exchange to one or more cloud service providers, the plurality of interconnection assets including a virtual circuit by which the customer accesses a cloud service from the one or more cloud service providers; and an orchestration engine configured to modify the plurality of interconnection assets.
Abstract:
In one example, described herein is an interconnection platform for dynamically configuring and managing a cloud-based services exchange, or “cloud exchange,” to facilitate virtual interconnections (“virtual circuits”) for cloud services delivery from cloud service providers to one or more cloud customers. As described herein, the interconnection platform facilitates event-driven notification to push virtual circuit configuration status updates to customer systems of customers of the cloud exchange provider that interface with the interconnection platform.
Abstract:
In one example, a cloud-based services exchange comprises a plurality of interconnection assets configured to connect a customer of the cloud-based services exchange to one or more cloud service providers, the plurality of interconnection assets including a virtual circuit by which the customer accesses a cloud service from the one or more cloud service providers; and an orchestration engine configured to modify the plurality of interconnection assets.
Abstract:
In some examples, a method includes receiving, by a data center infrastructure monitoring system, a registration request that indicates a method of a subscription application programming interface and specifies one or more event subjects of events describing a system operation of a data center; storing, by the data center infrastructure monitoring system to a data-topic map, respective mappings for the one or more event subjects to a topic of a cloud-based publication platform; monitoring, by a data center infrastructure monitoring system, a plurality of physical infrastructure assets that enable system operation within the data center to obtain an event that describes one of the event subjects; and publishing, by the data center infrastructure monitoring system, the event to the topic.
Abstract:
Techniques are described for distributed processing of Internet of Things (IoT) device data by edge systems co-located within a globally-distributed set of co-location facilities deployed and managed by a co-location facility provider. For example, a method includes selecting, by at least one of a plurality of edge computing systems co-located within respective co-location facilities each deployed and managed by a single co-location facility provider, a selected edge computing system of the plurality of edge computing systems to process data associated with events generated by an IoT device. The method also includes provisioning, at the selected edge computing system, an application programming interface (API) endpoint for communication with the IoT device, receiving, by the selected edge computing system at the endpoint, the data associated with the events generated by the IoT device, and processing, by the selected edge computing system, the data associated with the events generated by the IoT device.
Abstract:
A central infrastructure monitoring system includes an asset configurator; and a plurality of data center infrastructure monitoring systems each associated with a respective data center of a plurality of geographically distributed data centers that include one or more physical infrastructure assets of a plurality of physical infrastructure assets for enabling system operation within the respective data center. The data center infrastructure monitoring systems are coupled to the central infrastructure monitoring system. The asset configurator is configured to define templates of standard attributes for the plurality of infrastructure assets based on information about the plurality of infrastructure assets of the plurality of data centers, generate infrastructure asset data that logically represents the plurality of physical infrastructure assets based on the defined templates, and associate, via the infrastructure asset data, the physical infrastructure assets within an infrastructure asset hierarchy indicating connections and interdependencies between the plurality of infrastructure assets.
Abstract:
In one example, a cloud-based services exchange comprises a plurality of interconnection assets configured to connect a customer of the cloud-based services exchange to one or more cloud service providers, the plurality of interconnection assets including a virtual circuit by which the customer accesses a cloud service from the one or more cloud service providers; and an orchestration engine configured to modify the plurality of interconnection assets.