Abstract:
Some embodiments relate to a method implemented by a first terminal for setting up a session with a second terminal. An identifier of a session server is obtained at least from a subscriber device in the first terminal which comprises a subscriber identifier and an operator identifier. A session request and an identifier of the second terminal are sent to the server. At least one instruction is received from the server and a message comprising a first set, relative to the first terminal, of at least one characteristic parameter of the requested session is generated in accordance with at least one instruction received and sent to the server. A message is received from the server comprising a second set of at least one characteristic parameter of the requested session, the second set relating to the second terminal and having a non-zero overlap with the first set.
Abstract:
Some embodiments relate to a method implemented by a first terminal for setting up a session with a second terminal. An identifier of a session server is obtained at least from a subscriber device in the first terminal which comprises a subscriber identifier and an operator identifier. A session request and an identifier of the second terminal are sent to the server. At least one instruction is received from the server and a message comprising a first set, relative to the first terminal, of at least one characteristic parameter of the requested session is generated in accordance with at least one instruction received and sent to the server. A message is received from the server comprising a second set of at least one characteristic parameter of the requested session, the second set relating to the second terminal and having a non-zero overlap with the first set.
Abstract:
A method and device for processing a network service instantiation request received by an orchestration entity using a virtualized network function service. A descriptor of the network service includes at least one reference to an object to be deployed in order to instantiate the network service. When the descriptor of the object is not available at the orchestration entity, the orchestration entity obtains information from the network service descriptor that can be used to identify at least one target entity configured to instantiate the object on instruction from the orchestration entity or to transmit the descriptor of the object to the orchestration entity, and transmits, to one of the at least one target entities, a request to instantiate the object or a request to recover a file comprising the descriptor of the object.
Abstract:
A method of controlling a packet stream generated by an application installed in a mobile terminal, the stream being intended to be sent by the terminal over a communications network managed by an operator. The method includes the following acts implemented in the terminal, for at least one packet generated by the application: obtaining a first packet having a first header and payload data; transmitting a request message to a security module installed in the terminal, the message including a parameter of the first header; receiving a response from the security module, which includes an instruction relating to transmission of a second packet, the response being based on the parameter and established according to a processing rule; preparing the second packet by modifying the first header into a second header, based on the instruction, the second packet including the second header and the payload data; and transmitting the second packet.
Abstract:
A method for selecting a set of functions of a communications infrastructure, referred to as a network slice, for routing data relating to an application installed in a user terminal connected to the infrastructure. The method is implemented by the terminal and includes: transmitting, to a rule management entity, an identifier of at least one application in the terminal; receiving, from the rule management entity, at least one rule relating to the network slice associated with the identifier of the at least one application received; and determining a network slice based on the at least one rule obtained.
Abstract:
Method of acquisition in a communication network, of at least one coding/decoding module, for encoding/decoding at least one data stream relating to a session between a first and a second entity, an application dialogue being associated with said session, said method being implemented by the first entity and comprising the following steps: opening of said application dialogue associated with said session; reception from said second entity of a proposed list of coding/decoding modules for said session; selection from the received list of coding/decoding modules of at least one coding/decoding module to be acquired; acquisition of said at least one module from a supplier entity, the application dialogue being kept open; encoding/decoding of said at least one data stream relating to said session by means of said at least one module acquired.
Abstract:
A technique is provided for communication between a client entity and a packet mode data network by way of a communication network implementing control and metering mechanisms. A method implemented by an entity for controlling rules includes the following acts: receiving from a rules application entity a request to open a control session relating to a communication session between a client entity and the data network; ordering this application entity to associate for the session with at least one application level message received from the client entity at least one information item relating to a resources control function, intended to be used by an application entity situated in the data network to implement a command of resources for this session.
Abstract:
Some embodiments relate to a method implemented by a first terminal for setting up a session with a second terminal. An identifier of a session server is obtained at least from a subscriber device in the first terminal which comprises a subscriber identifier and an operator identifier. A session request and an identifier of the second terminal are sent to the server. At least one instruction is received from the server and a message comprising a first set, relative to the first terminal, of at least one characteristic parameter of the requested session is generated in accordance with at least one instruction received and sent to the server. A message is received from the server comprising a second set of at least one characteristic parameter of the requested session, the second set relating to the second terminal and having a non-zero overlap with the first set.
Abstract:
Some embodiments relate to a method implemented by a first terminal for setting up a session with a second terminal. An identifier of a session server is obtained at least from a subscriber device in the first terminal which comprises a subscriber identifier and an operator identifier. A session request and an identifier of the second terminal are sent to the server. At least one instruction is received from the server and a message comprising a first set, relative to the first terminal, of at least one characteristic parameter of the requested session is generated in accordance with at least one instruction received and sent to the server. A message is received from the server comprising a second set of at least one characteristic parameter of the requested session, the second set relating to the second terminal and having a non-zero overlap with the first set.
Abstract:
A method for managing a rule for classifying a packet of a control message relating to a communications service designed to be used by a terminal of a user. The rule relates to routing of the packet in a communications infrastructure providing the service. The method is implemented in a control entity of the infrastructure. Also provided is a method implemented in a routing device for routing the control message packet in the communications infrastructure.