Abstract:
A memory refresh method is applied to a computer system including a processor, a memory controller, and a dynamic random access memory (DRAM). The memory controller receives a first plurality of access requests from the processor. The memory controller refreshes a first rank in a plurality of ranks at shortened interval set to T/N when a quantity of target ranks to be accessed by the first plurality of access requests is less than a first threshold and a proportion of read requests in the first plurality of access requests or a proportion of write requests in the first plurality of access requests is greater than a second threshold. T is a standard average refresh interval, and N is greater than 1. The memory refresh technology provided in this application can improve performance of the computer system in a memory refresh process.
Abstract:
A memory refresh method is applied to a computer system including a memory controller and a dynamic random access memory (DRAM). The memory controller receives access requests including access requests for accessing a first rank of multiple ranks in the DRAM. When a quantity of the access requests for accessing the first rank is greater than 0 and less than a second threshold, the memory controller refreshes the first rank. The first rank may be refreshed in time even if the first rank cannot be in an idle state.
Abstract:
A traffic control method and device are provided. The method includes receiving traffic monitoring information of a first service flow reported by a reaction point RP; when a congestion state of a first service flow of a congestion point CP satisfies a congestion condition, determining a reaction point RP needing traffic adjustment from a designated reaction point RP according to the received traffic monitoring information, and calculating, according to the traffic monitoring information, a new traffic value of a first service flow of each of the reaction point RP needing traffic adjustment; sending each calculated new traffic value of a first service flows to a corresponding reaction point RP needing traffic adjustment, so that the reaction point RP performs traffic control on the first service flow of the reaction point RP according to the new traffic value.
Abstract:
The present invention discloses an apparatus and a method for transporting an ODU service. The transport apparatus includes a first ODU service processing unit, a timeslot allocation unit, a switching output port allocation unit, an Ethernet switching unit, and a second ODU service processing unit, where a table of a mapping between output ports of the first ODU service processing unit and timeslots is determined according to a rate of an ODUflex frame carried in an obtained ODU service and the number of the output ports of the first ODU service processing unit, and the ODU service is forwarded, which resolves a problem in the prior art that an ODUflex frame cannot be transported by using the Ethernet switching unit, thereby ensuring that service congestion does not occur on a forwarding port of a sending apparatus, and improving transmission quality of a communications network.
Abstract:
Embodiments of the present disclosure provide a data transmission method, which can meet a requirement for an Ethernet network with diversified rate levels. The method includes: grouping media access control (MAC) layer data into a plurality of MAC layer data groups; allocating, according to a bandwidth required by a target MAC layer data group and a reference bandwidth of a logical channel, at least one target logical channel to the target MAC layer data group; encoding the target MAC layer data group to generate target physical layer data, where the target logical channel corresponds to the target MAC layer data group and the target physical layer data; and sending the target physical layer data and first indication information, where the first indication information is used to indicate a relationship between the target physical layer data and the target logical channel.
Abstract:
A memory extensible chip (200) is provided. The chip (200) includes a substrate (240), and a processor (230), a first memory module set (210), and a second memory module set (220) that are integrated on the substrate (240). The processor (230) communicates with at least one memory module in the first memory module set (210) using a first communications interface (250), and the processor (230) communicates with at least one memory module in the second memory module set (220) using a second communications interface (260). A memory module in the first memory module set (210) communicates with a memory module in the second memory module set (220) using a substrate network, where the substrate network is a communications network located inside the substrate (240). In this way, the processor (230) can access a memory module in the first memory module set (210) by using the second memory module set (220).
Abstract:
Embodiments of the present invention provide a method and an apparatus for increasing and decreasing variable optical channel bandwidth. The method for increasing includes: sending a higher order optical channel data unit (HO ODU) frame to which a timeslot increase indication is added to a second NE; starting from a next HO ODU frame, mapping, by an NE, a bit stream formed by a flexible optical transport data unit (ODUflex) bit stream at a first rate and an idle data bit stream to Y timeslots of the HO ODU frame; sending an ODUflex frame to which a rate increase indication is added to the second NE; and starting from a next ODUflex frame, mapping an ODUflex bit stream at a second rate to the Y timeslots of the HO ODU frame.
Abstract:
A data transmission method and apparatus, where the method comprises checking full-bandwidth transmission paths of a bus, and When a fault occurs in the full-bandwidth transmission paths and a quantity of faulty full-bandwidth transmission paths is less than or equal to M, selecting N full-bandwidth transmission paths from full-bandwidth transmission paths that are not faulty to transmit a data unit, and when a fault occurs in the full-bandwidth transmission paths and a quantity of faulty full-bandwidth transmission paths is greater than M, reconfiguring a size of a data unit according to a quantity of full-bandwidth transmission paths that are not faulty and a target burst quantity.
Abstract:
A traffic control method and device are provided. The method includes receiving traffic monitoring information of a first service flow reported by a reaction point RP; when a congestion state of a first service flow of a congestion point CP satisfies a congestion condition, determining a reaction point RP needing traffic adjustment from a designated reaction point RP according to the received traffic monitoring information, and calculating, according to the traffic monitoring information, a new traffic value of a first service flow of each of the reaction point RP needing traffic adjustment; sending each calculated new traffic value of a first service flows to a corresponding reaction point RP needing traffic adjustment, so that the reaction point RP performs traffic control on the first service flow of the reaction point RP according to the new traffic value.