Abstract:
An operation accelerator, a processing method, and a related device, the operation accelerator including a first memory configured to store an input dataset, a matrix converter configured to perform reading M row vectors from the input dataset, generating a first instruction, and sending the M row vectors and the first instruction to a second memory configured to perform, according to the first instruction, preprocessing on the M row vectors to obtain n row vectors, and storing the n row vectors, where the n row vectors include the M row vectors and (n-M) padding row vectors, the n row vectors are N row vectors in a target matrix, and a storage sequence of the n row vectors in the second memory is consistent with a sequence of the N row vectors in the target matrix.
Abstract:
A terminal supporting dual-receive single-transmit dual-card dual-standby single-pass includes a first subscriber identity module (SIM) card interface and a second SIM card interface. The first SIM card interface is configured to communicate with a first SIM card, and the second SIM card interface is configured to communicate with a second SIM card. When the terminal is in a first communications connection, the terminal receives a paging request for setting up a second communications connection. When the terminal receives the paging request for the second communications connection, if the terminal has a to-be-sent voice packet of the first communications connection, the terminal delays responding to the paging request for setting up the second communications connection, or if the terminal has no to-be-sent voice packet of the first communications connection, the terminal responds to the paging request for setting up the second communications connection.
Abstract:
A terminal supporting dual receive single transmit-dual subscriber identity module (SIM) dual standby (DR-DSDS) includes a first SIM card interface and a second SIM card interface, and the first SIM card interface is configured to communicate with a first SIM card, and the second SIM card interface is configured to communicate with a second SIM card. The terminal is configured to, when the terminal is in a first communication connection, receive a paging request for establishing a second communication connection, and when the paging request carries a first identifier indicating a second service, respond to the paging request to establish the second communication connection.
Abstract:
A remote resource access method and a switching device are provided. According to the remote resource access method, when a computer system access the remote physical resource device, after obtaining a first access message, including a virtual address of a virtual resource device, from a computing node in the computer system, the switching device converts the first access message into a second access message based on a physical address of a physical resource device corresponding to the virtual address of the virtual resource device. Then, the switching device sends the second access message to the remote physical resource device corresponding to the physical address using a network, thereby implementing the data transmission between the local computer system and the remote physical resource device.
Abstract:
The present invention provide a method for forwarding a multicast program includes: receiving a multicast join request message requesting an on-demand program from a user; obtaining forwarding decision information according to the multicast join request message; determining a decision result corresponding to the forwarding decision information according to the forwarding decision information and forwarding relation data, where the decision result is forwarding according to PON replication or forwarding according to user replication, the forwarding relation data includes data elements indicating correspondence between various types of forwarding decision information and various types of forwarding modes, and the various types of forwarding modes include the forwarding according to PON replication and the forwarding according to user replication; and forwarding the on-demand program to the user according to the decision result.
Abstract:
A network access card switching method is performed by an electronic device on which a first network access card and a second network access card are installed. The first network access card is a default network access card of the electronic device. The network access card switching method includes determining that a user enables an intelligent network access card switching function, activating, by the electronic device, the first network access card, transmitting the data service using the first network access card, monitoring a network state of the first network access card in real time, and when determining that the network state of the first network access card meets a first preset condition, disconnecting the data service transmitted using the first network access card, activating the second network access card, and transmitting the data service by using the second network access card.
Abstract:
A data distribution method and a splitter is provided. The data distribution method executed by the splitter includes: parsing a received data packet to determine a transport layer communications protocol to which the data packet belongs; acquiring from the data packet, identification information of a data stream to which the received data packet belongs; acquiring from a memory according to a correspondence between a transport layer communications protocol and an distribution table, an distribution table corresponding to the transport layer communications protocol to which the data packet belongs; determining according to a correspondence between identification information of a data stream and a thread in the acquired distribution table, a thread corresponding to the data stream to which the data packet belongs; and sending the data packet to a cache queue of the determined thread, so that the determined thread acquires the data packet from the cache queue.
Abstract:
In a method for controlling data stored in a Solid State Disk (SSD) of a data storage system, a storage controller obtains stability information of a data segment. The stability information includes a reference count of the data segment and a length of a period of time the data segment is stored in the SSD. The storage controller identifies a stability level of the data segment according to the stability information, and sends the stability level of the data segment to the SSD. The SSD moves the data segment to a storage block that corresponds to the stability level. Thereby, the SSD can store data segments having a same stability level together.
Abstract:
An electrical connector connected with a cable connector connected to cables. The cable connector comprises a plurality of ground terminals, a plurality of signal terminals, and an electromagnetic shielding member. The electrical connector comprises a circuit board, a plurality of ground conductive pads, a plurality of signal conductive pads, and a shielding ground conductive pad. The circuit board comprises two electrical connecting areas that are parallel to each other along first direction. The plurality of ground conductive pads are disposed on a surface of the circuit board at intervals. At least one signal conductive pad is disposed between two adjacent ground conductive pads along second direction that is perpendicular to the first direction. Each of the signal conductive pads being directly connected with the corresponding signal terminal and not directly connected to the cables. The shielding ground conductive pad is disposed on the surface of the circuit board.
Abstract:
Embodiments of this application provide example methods for accessing a core network by using a fixed access device. One example method includes: receiving, a network registration request sent by customer-premises equipment; sending a network registration request message for the CPE to a mobile core network based on the network registration request; receiving an authentication request message; performing physical location authentication for the CPE based on a physical location identifier; in response to determining that the physical location authentication succeeds, sending an authentication response to the mobile core network; receiving a registration success message sent by the mobile core network; notifying, based on the registration success message, the CPE that network registration succeeds; and sending a service parameter to the CPE.