Abstract:
A method of a decryptor including receiving, from an encryptor of an electronic device, a core dump that has been encrypted with a symmetric key generated by the encryptor, and core dump metadata, extracting crash metadata from the core dump metadata, transmitting the crash metadata to a remote key server for regenerating the symmetric key, obtaining, from the remote key server, a regenerated symmetric key based the crash metadata, and decrypting the core dump based on the regenerated symmetric key and the crash metadata.
Abstract:
A method for optimizing access to files in Universal Integrated Circuit Card (UICC) for use in User Equipment (UE) is provided. The method includes transmitting, by UE, to UICC, SELECT command to select master file (MF); receiving, by UE, from UICC, file control parameter (FCP) values of MF; transmitting, by UE, to UICC, SELECT command to select elementary file directory (EF-DIR) based on FCP values of MF; receiving, by UE, from UICC, FCP values of EF-DIR; determining, by UE, application available in UICC listed in EF-DIR based on FCP values of EF-DIR; transmitting, by UE, to UICC, SELECT command to select application directory file (ADF); receiving, by UE, from UICC, FCP values of ADF; reading, by UE, an elementary file control parameter (EF_FCP) file by using a short file identifier (SFI) value included in the FCP values of the ADF; and obtaining, by the UE, contents of the EF_FCP file.
Abstract:
A method of generating a core dump in a User Equipment (UE) may include detecting, using at least one processor, a trigger, the trigger including an instruction to generate a core dump of the UE. The method may further include classifying, using the at least one processor, data stored in memory of the UE as Read-Write (RW) data or Read Only (RO) data. The method may further include generating, using the at least one processor, a partial core dump based on the RW data of the memory.
Abstract:
A method and a User Equipment (UE) are provided for optimizing access to Universal Integrated Circuit Card (UICC) files in the UE. The method includes storing, by the UE, at least one File Control Parameter (FCP) file corresponding to a plurality of Elementary Files (EFs); and sending, by the UE, a command directly to the UICC, based on the at least one FCP file. The command includes one of a READ command and an UPDATE command.
Abstract:
A wireless communication method supporting a Rich Communication Suite (RCS) service, the method including performing an RCS provision operation corresponding to an Original Equipment Manufacturer (OEM) application in response to an RCS service request of the OEM application, transmitting an RCS function connection request to a Session Initiation Protocol (SIP) transport layer after the RCS provision operation is completed, controlling a session for an RCS function based on the RCS function connection request to obtain a dedicated bearer, and exchanging RCS media data with a network through the dedicated bearer.
Abstract:
A method and a wireless network system are provided for paging reception optimization in a first terminal. The method includes establishing, by the first terminal, a Device-to-Device (D2D) communication with a second terminal; receiving, by the first terminal, paging information from the second terminal; receiving, by the first terminal, a paging message from a network; and sending a paging notification to the second terminal upon receiving a paging message for the second terminal.
Abstract:
A system that uses a method for indicating a multicast session to a user equipment (UE) in an idle mode by a base station is provided. The method includes detecting availability of an enhanced multimedia broadcast multicast service (eMBMS) session and indicating the eMBMS session to the UE in a paging message.