Abstract:
A first node is associated with a client by a first TCP connection and associated with a second node by a second TCP connection. When downloading HTTP transferred data the first node receives from the client a request, requesting the HTTP transferred data from the second node, and initiates an interaction between the first node and the client by sending to the client a first response. The first node forwards the request to the second node, and forwards to the client a subsequent response received from the second node, and forwards to the client the HTTP transferred data at an available bit-rate, after being received from the second node. The first response is sent to the client before the subsequent response is forwarded to the client, and the available bit-rate for the requested HTTP transferred data is determined from the interaction between the client and the first node.
Abstract:
The present invention relates to a solution for including CS media information to be able to also offer CS media in addition to PS media by using SIP and hence being able to utilize the advantages of SIP for CS. The solution is achieved by a method and arrangements for handling at least a first c line (140) in a SDP (170) and for inserting a CS address (150) into the first c line and means for indicating in said first c line that the address is associated with a CS connection (160).
Abstract:
Accordingly, there is provided an IMS node, comprising a transmission module and a processor. The transmission module is arranged to send SIP messages to a plurality of other IMS nodes. The processor arranged to detect an error in a particular other IMS node, the error indicating that the particular other IMS node is not available to receive traffic. In response to detection of such an error, the processor causes the particular other IMS node not to be used for a period of time. The transmission module is further arranged to send at least one test message to the particular other IMS node when the period of time expires. The processor is further arranged to determine if the at least one test message is successfully processed by the particular other IMS node, and in response to a positive determination then returning the particular other IMS node to use.
Abstract:
A first node is associated with a client by a first TCP connection and associated with a second node by a second TCP connection. When downloading HTTP transferred data the first node receives from the client a request, requesting the HTTP transferred data from the second node, and initiates an interaction between the first node and the client by sending to the client a first response. The first node forwards the request to the second node, and forwards to the client a subsequent response received from the second node, and forwards to the client the HTTP transferred data at an available bit-rate, after being received from the second node. The first response is sent to the client before the subsequent response is forwarded to the client, and the available bit-rate for the requested HTTP transferred data is determined from the interaction between the client and the first node.
Abstract:
Accordingly, there is provided an IMS node, comprising a transmission module and a processor. The transmission module is arranged to send SIP messages to a plurality of other IMS nodes. The processor arranged to detect an error in a particular other IMS node, the error indicating that the particular other IMS node is not available to receive traffic. In response to detection of such an error, the processor causes the particular other IMS node not to be used for a period of time. The transmission module is further arranged to send at least one test message to the particular other IMS node when the period of time expires. The processor is further arranged to determine if the at least one test message is successfully processed by the particular other IMS node, and in response to a positive determination then returning the particular other IMS node to use.
Abstract:
A border gateway (2) and a SIP Application Server (8) in an IMS network (3), which both are configured to connect a private branch exchange (1) to the IMS network using the SIP Connect. The connecting comprises the border gateway detecting, based on an address contained in a received SIP register message, that the SIP register message is received from a private branch exchange. Then, the border gateway forwards the received message to the SIP Application Server as a SIP connect-message from a private branch exchange, and the SIP Application server stores a binding server between an IP address of the private branch exchange and the received address associated with the private branch exchange, e.g. by dynamically updating an eDNS (6).
Abstract:
The present relates to a method and server for collecting call information associated with an incoming call to a user terminal attached to said telecommunication network. The server comprises determining means for determining a set of answering options to be provided to the user terminal based at least on said call information, and transmitting means for transmitting information indicating the determined set of answering options to the user terminal.
Abstract:
A border gateway (2) and a SIP Application Server (8) in an IMS network (3), which both are configured to connect a private branch exchange (1) to the IMS network using the SIP Connect. The connecting comprises the border gateway detecting, based on an address contained in a received SIP register message, that the SIP register message is received from a private branch exchange. Then, the border gateway forwards the received message to the SIP Application Server as a SIP connect-message from a private branch exchange, and the SIP Application server stores a binding server between an IP address of the private branch exchange and the received address associated with the private branch exchange, e.g. by dynamically updating an eDNS (6).
Abstract:
The present invention relates to a solution for including CS media information to be able to also offer CS media in addition to PS media by using SIP and hence being able to utilize the advantages of SIP for CS. The solution is achieved by a method and arrangements for handling at least a first c line (140) in a SDP (170) and for inserting a CS address (150) into the first c line and means for indicating in said first c line that the address is associated with a CS connection (160).
Abstract:
A method and system for managing presence information for a presentity (100) includes or comprises means for: sending (130) a presence document (120) from a client (114) to a presence server (112), the document (120) comprising a first time interval (τ1) indicating a first presence state associated with the presentity (100) and comprising a second time interval (τ2) indicating a second presence state associated with the presentity (100), sending (132) the presence document (120) from the presence server (112) to a watching client (116), and updating (134), at the watching client (116), the representation of the first presence state and the representation of the second presence state.