Abstract:
Embodiments of mechanisms for dynamic media content type streaming management for mobile devices are generally described herein. In some embodiments, the mobile device may receive selection input pertaining to generating output from a media file containing at least two of audio data, video data, and closed-captioning data, the selection input selecting at least one of audio, video, and closed-captioning to be output during play of the media content. In some embodiments, the mobile device may generate an audio output as a signal in response to the selection input including audio. In some embodiments, the mobile device may generate a video output as a signal in response to the selection input including video. In some embodiments, the mobile device may generate a closed-captioning output as a signal in response to selection input including closed-captioning.
Abstract:
An example system that allows a camera enabled application, such as an augmented reality application, to run in a protected area may include a first device including a camera, the camera including a secure mode of operation and a display, an image processing module configured to convert image data from the camera to encoded data when the camera is in the secure mode and protect image data stored in the system, an encryption module configured to encrypt encoded data from the image processing module, and a protected audiovisual path mechanism configured to securely send augmented encoded data to the display.
Abstract:
A method, system, and device for analyzing images captured by a vehicle-based camera includes establishing a communication connection between a mobile communication device and an in-vehicle computing system. Scanning data may be retrieved from a scanning data server by the mobile communication device and, in some embodiments, forwarded to the in-vehicle computing system. A vehicle-base camera may be used to capture one or more images. An image analysis module of the in-vehicle computing system or mobile communication device may be used to analyze the captured image(s) for a match between the image(s) and the scanning data. In response to identifying a match, the mobile communication device may notify the scanning data server of the identified match.
Abstract:
A method, device, and system for secure end-to-end audio recognition is disclosed. A client device launches an application that connects with a server. The client device and server exchange cryptographic keys and establish a secure connection and a shared cryptographic key. The server transmits an encrypted audio prompt to the client device. The client device decrypts the encrypted audio prompt and stores the decrypted audio prompt in secure memory inaccessible to the operating system using an audio engine of the client device. The audio engine then retrieves the audio and renders it for the user through the speakers of the client device. The client device captures the user's audio response with a microphone and stores the audio response in the secure memory. The stored audio response is encrypted and transmitted to the server.
Abstract:
A method, apparatus, system, and computer program product for an automated modular and secure boot firmware update. An updated boot firmware code module is received in a secure partition of a system, the updated boot firmware code module to replace one original boot firmware code module for the system. Only the one original boot firmware code module is automatically replaced with the updated boot firmware code module. The updated boot firmware code module is automatically executed with the plurality of boot firmware code modules for the system and without user intervention when the system is next booted. The updated boot firmware code module may be written to an update partition of a firmware volume, wherein the update partition of the firmware volume is read along with another partition of the firmware volume containing the plurality of boot firmware code modules when the system is booted.
Abstract:
Mobile device, client device and server associated with client-server authentication are described. In embodiments, the mobile device may comprise a camera and a token extractor. The token extractor may be coupled to the camera and configured to analyze an image, captured by the camera. The captured image may contain a barcode and may be displayed on a client device in response to a request of a server for access to a resource. The barcode may contain a token, which may be extracted by the token extractor to be used to gain access to a resource requested from a server. Other embodiments may be described and/or claimed.
Abstract:
A method, system, and device for analyzing images captured by a vehicle-based camera includes establishing a communication connection between a mobile communication device and an in-vehicle computing system. Scanning data may be retrieved from a scanning data server by the mobile communication device and, in some embodiments, forwarded to the in-vehicle computing system. A vehicle-base camera may be used to capture one or more images. An image analysis module of the in-vehicle computing system or mobile communication device may be used to analyze the captured image(s) for a match between the image(s) and the scanning data. In response to identifying a match, the mobile communication device may notify the scanning data server of the identified match.
Abstract:
An example system that allows a camera enabled application, such as an augmented reality application, to run in a protected area may include a first device including a camera, the camera including a secure mode of operation and a display, an image processing module configured to convert image data from the camera to encoded data when the camera is in the secure mode and protect image data stored in the system, an encryption module configured to encrypt encoded data from the image processing module, and a protected audiovisual path mechanism configured to securely send augmented encoded data to the display.
Abstract:
A method of operating an electronic device comprises detecting access to private information stored in memory of the electronic device. The detecting is performed by a privacy management module downloadable to the electronic device as object code for execution on the electronic device and the access is performed by a client application program. The method further comprises tracking, using the privacy management module, the private information being accessed by the client application program, and reconfiguring the electronic device, using the privacy management module, to change the access to the private information by the client application program according to at least one privacy access policy stored in the electronic device.
Abstract:
A device, system, and machine-readable medium for headless sensor measurements are disclosed. In one embodiment, the device is exclusive of a display. The device includes a sensor head to retrieve an amount of measurement data from an environment. The device also includes an I/O interface, a memory, a non-volatile storage, processing logic, and sensor data access protocol (SDAP) manageability code. The SDAP manageability code may cause the processing logic to provide a sensor type and a measurement data payload type to a mobile communication device. The SDAP manageability code additionally may cause the sensor head to take a measurement, receive measurement data from the sensor head, packetize the measurement data, and transfer the measurement data payload to the mobile communication device.