Abstract:
Systems and methods of restricting access to mobile platform location information may involve receiving, via a link, location information for a mobile platform at a processor of the mobile platform, and preventing unauthorized access to the location information by an operating system associated with the mobile platform.
Abstract:
A device, system, and method for location-based payment authorization includes receiving a payment request for an order submitted from a mobile computing device via an e-commerce vendor website. A location of the mobile computing device is determined based on location data. In one embodiment, the payment request is authorized or denied based on whether the e-commerce vendor website has been authorized for the determined location of the mobile computing device.
Abstract:
An embodiment may include a storage processor that may be comprised, at least in part, in a host. The host may include at least one host central processing unit (CPU) to execute at least one host operating system (OS). The storage processor may execute at least one operation in isolation from interference from and control by the at least one host CPU and the at least one host OS. The at least one operation may facilitate, at least in part: (1) prevention, at least in part, of unauthorized access to storage, (2) prevention, at least in part, of execution by the at least one host CPU of at least one unauthorized instruction, (3) detection, at least in part, of the at least one unauthorized instruction, and/or (4) remediation, at least in part, of at least one condition associated, at least in part, with the at least unauthorized instruction.
Abstract:
An anti-malware approach uses a storage drive with the capability to lock selected memory areas. Platform assets such as OS objects are stored in the locked areas and thus, unauthorized changes to them may not be made by an anti-malware entity.
Abstract:
Disclosed is a system and method for extending anti-malware protection to systems having multiple storage devices, such as RAID. In embodiments, a trusted connection may be established between a host and a controller of the multiple storage devices. The trusted connection may use various information encryption techniques to undermine attempts by malware to preserve malware-infected locations on the storage devices by redirecting anti-malware protection related operations by the host. Through an encrypted and trusted connection between the host and a controller of the multiple storage devices, anti-virus and/or anti-malware software (hereinafter, AVS) may transmit encrypted anti-malware protection related operations to the controller of the multiple storage devices, overcoming detection and/or diversion by the malware. Other embodiments may be described and claimed.