Abstract:
Systems and methods are provided to facilitate communication between a first device and a second device on a network. A first wireless communication session is established between the first device and a remote control or other intermediating device. A network address used by the first device to communicate on the network is received from the first device via the first wireless communication session. A second wireless communication session is established between the intermediating device and a second device, and the first address is provided to the second device via the second wireless communication session.
Abstract:
Systems and methods are provided to facilitate communication between a first device and a second device on a network. A first wireless communication session is established between the first device and a remote control or other intermediating device. A network address used by the first device to communicate on the network is received from the first device via the first wireless communication session. A second wireless communication session is established between the intermediating device and a second device, and the first address is provided to the second device via the second wireless communication session.
Abstract:
Systems and methods facilitate communication between clients, servers or other nodes located on separate local area networks (LANs) or sub-networks within a home, office, campus or other environment using one or more mediation servers located within the local network environment. The server establishes a persistent connection to each available mediation service. The client requests a connection to the server by providing addresses or other connection information associated with the client to one or more of the mediation servers in communication with the server. The mediation server(s) send network information associated with the client to the server via the persistent connections. The server responds to the mediation server(s) by providing network information that can be relayed to the client. When the client and server have exchanged network information, communications between the client and server can be established using conventional or proprietary network address translation (NAT) or other techniques.
Abstract:
Systems and methods facilitate communication between clients, servers or other nodes located on separate local area networks (LANs) or sub-networks within a home, office, campus or other environment using one or more mediation servers located within the local network environment. The server establishes a persistent connection to each available mediation service. The client requests a connection to the server by providing addresses or other connection information associated with the client to one or more of the mediation servers in communication with the server. The mediation server(s) send network information associated with the client to the server via the persistent connections. The server responds to the mediation server(s) by providing network information that can be relayed to the client. When the client and server have exchanged network information, communications between the client and server can be established using conventional or proprietary network address translation (NAT) or other techniques.
Abstract:
A digital media player device includes, without limitation, a processor and a communication module coupled to the processor and configured to support data communication with a digital media place-shifting device. The processor and the communication module cooperate to attempt to establish data communication with the digital media place-shifting device in accordance with a connection mode sequence that identifies a plurality of different data communication modes supported by the digital media player device, until one of the plurality of different data communication modes can be used to initiate a data communication session between the digital media player device and the digital media place-shifting device. The processor and the communication module also cooperate to perform data communication with the digital media place-shifting device, using the one of the plurality of different data communication modes.
Abstract:
A digital media player device includes, without limitation, a processor and a communication module coupled to the processor and configured to support data communication with a digital media place-shifting device. The processor and the communication module cooperate to attempt to establish data communication with the digital media place-shifting device in accordance with a connection mode sequence that identifies a plurality of different data communication modes supported by the digital media player device, until one of the plurality of different data communication modes can be used to initiate a data communication session between the digital media player device and the digital media place-shifting device. The processor and the communication module also cooperate to perform data communication with the digital media place-shifting device, using the one of the plurality of different data communication modes.
Abstract:
A method of establishing a connection traversing at least one network address translation (NAT) gateway is presented. In the method, a bind request is sent from a source device to a mediation element via a NAT gateway. A bind response associated with the bind request is received. A connection request is sent to the mediation element. The mediation element causes the connection request to be sent to a destination device. A connection response associated with the connection request is received. A hello message is sent to a predicted destination address. The predicted destination address is based on an address received in the connection response. A data connection is established between the source device and the destination device using the predicted destination address.
Abstract:
A method of establishing a connection traversing at least one network address translation (NAT) gateway is presented. In the method, a bind request is sent from a source device to a mediation element via a NAT gateway. A bind response associated with the bind request is received. A connection request is sent to the mediation element. The mediation element causes the connection request to be sent to a destination device. A connection response associated with the connection request is received. A hello message is sent to a predicted destination address. The predicted destination address is based on an address received in the connection response. A data connection is established between the source device and the destination device using the predicted destination address.
Abstract:
Described herein are techniques for managing content stored on a distributed network. Content is initially placed onto the network and populated across one or more nodes. The content is distributed in association with decay parameters that define a lifetime for the population of the content on the network. Various communication nodes of the distributed network are configured to process the content decay parameters to determine whether to delete the content during subsequent time periods.
Abstract:
A system and method for transmitting content on a peer-to-peer network. A content item a content provider and divided into a plurality of content segments. Each of the content segments is encrypted and dividing into at least one content segment stripe. Each of the content segment stripes are transmitted one of a plurality of nodes on the peer-to-peer network, wherein substantially all of the content segment stripes are transmitted to different nodes on the peer-to-peer network for retransmission substantially in parallel to a second node on the peer-to-peer network.