Abstract:
Systems, apparatuses, and methods for enabling sensor discovery in autonomous devices herein. An example system for enabling dynamic sensor discovery including a client that includes an autonomous device. The autonomous device is capable of navigating from a current location to a destination location using sensor data. The client provides a request for sensor information for sensors along a planned route and receives respective sensor information for each of a set of selected sensors selected by a data server based on the request. The client subscribes to a data feed of a sensor of the set of selected sensors along the planned route based on sensor information corresponding to the sensor and client analyzes the data feed to determine whether to proceed with the planned route.
Abstract:
A method, computer readable medium, and system are disclosed. In one embodiment, the method comprises setting a quality of service (QoS) priority level value for one or more computer system platform resources, other than a central processor core, relating to a task running on the computer system, and determining whether the one or more computer system platform resources will be allocated to the task based on the QoS priority level setting.
Abstract:
A method, apparatus, and signal-bearing medium for improving the performance of a cache when request streams with different spatial and/or temporal properties access the cache. A set in the cache is partitioned into subsets with different request streams using different subsets within the cache. In this way, interference between the different request streams is reduced.
Abstract:
Methods and apparatus to process cache allocation requests are disclosed. In an example method, a priority level is assigned to a cache allocation request. Based on the priority level, an allocation probability associated with the cache allocation request is identified. Based on the allocation probability, the cache allocation request is identified with either an allocate condition and a bypass condition.
Abstract:
Embodiments of the present invention relate to a network of peer-to-peer communication devices controlled by a central controller. Using respective peer-to-peer communication devices, users can submit customized program schedules to the central controller, for media broadcasts that the users wish to record and view at a later time. The central controller maintains a global schedule of individual user-entered program schedules, and directs the peer-to-peer communication devices to record and re-play the content as requested in the schedules. The requested content may be recorded locally by any peer-to-peer communication device and transmitted upon request to a different peer-to-peer communication device of the network.
Abstract:
Systems and techniques for an objective driven orchestration are described herein. In an example, system is adapted to receive a request for a service workload, including a set of performance objectives for the service workload. The set of performance objectives may indicate Quality of Service (QoS) for the performance of the service workload. The system may be further adapted to determine a plan for the service workload. The plan may orchestrate a set of actions to fulfill the set of performance objectives. The system may be further adapted to initiate execution of the service workload in accordance with the set of actions of the plan. They system may be further adapted to monitor execution of the service workload for an effect associated with each action of the set of actions and compliance with the set of performance objectives.
Abstract:
In one embodiment, the present invention includes a method of analyzing an extensible markup language (XML) file, generating structural information for the XML file, and incorporating the structural information into the XML file. The structural information may correspond to a hierarchy of the file and may further include size information corresponding to elements of the file. In such manner, the structural information may be transmitted with the XML file and used to aid a receiver of the file in parsing. Other embodiments are described and claimed.
Abstract:
Various systems and methods for implementing computational storage are described herein. An orchestrator system is configured to: receive, at the orchestrator system, a registration package, the registration package including function code, a logical location of input data for the function code, and an event trigger for the function code, the event trigger set to trigger in response to when the input data is modified; interface with a storage service, the storage service to monitor the logical location of the input data and notify a location service when the input data is modified; interface with the location service to obtain a physical location of the input data, the location service to resolve the physical location from the logical location of the input data; and configure the function code to execute near the input data
Abstract:
A method, computer readable medium, and system are disclosed. In one embodiment, the method comprises setting a quality of service (QoS) priority level value for one or more computer system platform resources, other than a central processor core, relating to a task running on the computer system, and determining whether the one or more computer system platform resources will be allocated to the task based on the QoS priority level setting.