WO2015078320A1 - 网络业务处理方法与装置 - Google Patents

网络业务处理方法与装置 Download PDF

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Publication number
WO2015078320A1
WO2015078320A1 PCT/CN2014/091333 CN2014091333W WO2015078320A1 WO 2015078320 A1 WO2015078320 A1 WO 2015078320A1 CN 2014091333 W CN2014091333 W CN 2014091333W WO 2015078320 A1 WO2015078320 A1 WO 2015078320A1
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Prior art keywords
service
service processing
processed
packet
processing resource
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PCT/CN2014/091333
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English (en)
French (fr)
Inventor
胡新宇
赵宇萍
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to JP2016534163A priority Critical patent/JP2017507374A/ja
Priority to EP14866110.1A priority patent/EP3062480B1/en
Publication of WO2015078320A1 publication Critical patent/WO2015078320A1/zh
Priority to US15/166,072 priority patent/US10050875B2/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/58Association of routers
    • H04L45/586Association of routers of virtual routers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/46Multiprogramming arrangements
    • G06F9/50Allocation of resources, e.g. of the central processing unit [CPU]
    • G06F9/5005Allocation of resources, e.g. of the central processing unit [CPU] to service a request
    • G06F9/5027Allocation of resources, e.g. of the central processing unit [CPU] to service a request the resource being a machine, e.g. CPUs, Servers, Terminals
    • G06F9/5055Allocation of resources, e.g. of the central processing unit [CPU] to service a request the resource being a machine, e.g. CPUs, Servers, Terminals considering software capabilities, i.e. software resources associated or available to the machine
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/46Multiprogramming arrangements
    • G06F9/50Allocation of resources, e.g. of the central processing unit [CPU]
    • G06F9/5061Partitioning or combining of resources
    • G06F9/5077Logical partitioning of resources; Management or configuration of virtualized resources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/0813Configuration setting characterised by the conditions triggering a change of settings
    • H04L41/0816Configuration setting characterised by the conditions triggering a change of settings the condition being an adaptation, e.g. in response to network events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L49/00Packet switching elements
    • H04L49/70Virtual switches
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/10Protocols in which an application is distributed across nodes in the network
    • H04L67/1001Protocols in which an application is distributed across nodes in the network for accessing one among a plurality of replicated servers
    • H04L67/1004Server selection for load balancing
    • H04L67/1006Server selection for load balancing with static server selection, e.g. the same server being selected for a specific client
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/60Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L69/00Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
    • H04L69/12Protocol engines

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a network service processing method and apparatus.
  • network virtualization technology As the main direction of the development of next-generation communication networks, has gradually realized various network service functions by using three types of general-purpose devices: servers, switches, and storage. By implementing the network service function in the above manner, the service can be deployed flexibly and conveniently, and the development cost can be reduced.
  • virtualization technology is generally loaded on the server.
  • a virtual machine manager hypervisor software
  • hypervisor software hypervisor software
  • the solution for implementing network service processing in the prior art also exposes the following defects: after the server adopts the hypervisor software, after receiving the message, the network card of the server needs to transmit the message to the virtual switch (vswi tch) through the hypervisor software.
  • the network card of the server needs to transmit the message to the virtual switch (vswi tch) through the hypervisor software.
  • Processor pair in the server vswi tch The packets are identified and distributed by vswi tch to be correctly delivered to different virtual machines (Virtual Machines, VMs for short).
  • the VM After receiving the packets, the VM processes the packets, but when the packets are processed, When the number is large, the processor needs to identify each received message, and then the vswi tch can deliver the message to the correct VM, which greatly increases the workload of the processor and reduces the distribution of the processor processing the message. Efficiency, at the same time, also shows that the processing efficiency of the message processing of the server is greatly reduced compared with that when the server is not virtualized.
  • the embodiment of the invention provides a network service processing method and device, which solves the problem that the server processes the message with low efficiency in the prior art.
  • an embodiment of the present invention provides a network service processing method, where the method includes:
  • the using the forwarding rule to perform the classification and redirection of the to-be-processed service packet, and determining the service processing path of the to-be-processed service packet specifically includes:
  • the service packet to be processed is distributed to the determined one of the service processing resources;
  • the service processing resource When it is determined that the plurality of the service processing resources perform the service processing on the service packet to be processed, determining that the service processing resource processes the processing sequence of the to-be-processed service packet, and according to the determined processing In an order, the service message to be processed is distributed to the first service processing resource in the processing sequence.
  • the method further includes:
  • the FPGA or the NP statistics is used for performing service performance parameter monitoring on the service processing resource;
  • the FPGA or the NP sends the service performance parameter to the network server, where the service performance parameter is used as a basis for the network server to adjust the service load of the service processing resource.
  • the method further includes: when the service processing resource needs to have different service functions, receiving the delivered second configuration instruction, where the second configuration instruction includes the second service configuration executable file;
  • an embodiment of the present invention provides a network service processing apparatus, where the apparatus includes: a processor, an FPGA, or an NP;
  • the processor is configured to divide, by the FPGA or the NP, a plurality of service processing resources that are isolated from each other;
  • the processor is further configured to receive a first configuration instruction, where the first configuration instruction includes a first service configuration execution file, and perform service configuration on the service processing resource according to the first service configuration execution file, so that The service processing resource performs service processing on the service packet to be processed;
  • the FPGA or the NP is configured to receive a forwarding rule when performing service forwarding on the service packet to be processed
  • the FPGA or the NP is further configured to receive the to-be-processed service packet sent by the user terminal, and use the forwarding rule to distribute the to-be-processed service packet to the Suo Suhua service processing resource, so that The service processing resource performs service processing on the service packet to be processed.
  • the processor is further configured to: when the service processing resource needs to have different service functions, receive a second configuration instruction that is sent by the network server, where the second configuration is The instruction includes a second service configuration execution file;
  • the processor includes: a service adaptation module; the FPGA or the NP includes: a receiving classification module The business processing resource;
  • the service adaptation module is configured to: perform service configuration on the service processing resource according to the first service configuration execution file, and perform service reconfiguration on the service processing resource according to the second service configuration execution file;
  • the receiving classification module is specifically configured to: configure the forwarding rule in the receiving classification module itself;
  • the service processing resource is specifically configured to configure the forwarding rule in the service processing resource itself.
  • the receiving classification module is configured to determine, according to the forwarding rule, the service to the service packet to be processed.
  • the service packet to be processed is distributed to the determined one of the service processing resources;
  • the service processing resource When it is determined that the plurality of the service processing resources perform the service processing on the service packet to be processed, determining that the service processing resource processes the processing sequence of the to-be-processed service packet, and according to the determined processing In an order, the service message to be processed is distributed to the first service processing resource in the processing sequence.
  • the service processing resource is further used
  • the apparatus further includes: a statistics module;
  • the statistic module is configured to: when the service processing resource performs service processing on the service packet to be processed, collect service performance parameters for performing performance monitoring on the service processing resource, and apply the service performance parameter to the service
  • the distribution module sends the service performance parameter
  • the service adaptation module is further configured to send the service performance parameter to the network server, where the service performance parameter is used as a basis for the network server to adjust a service load to the service processing resource.
  • the device further includes:
  • a sending transmission module configured to receive a service packet processed by the service processing resource, and output the service packet
  • the forwarding module is configured to forward the service packet between the receiving classification module and the service processing resource, and is further configured to forward the service packet between the multiple service processing resources.
  • the service configuration resources of the plurality of isolated service processing resources allocated by the FPGA or the NP are configured according to the configuration instruction, so that the service processing resource is to be processed.
  • It enables fast and flexible distribution of business messages.
  • the processor needs to identify and distribute each received message, reduce the problem of the processing efficiency of the processor processing the message, and improve the processing efficiency of the server.
  • the service processing resources can have different service functions according to different configurations, so that the functions of the service processing resources can be modified and reconfigured at any time, and the processing efficiency of the service packets by each service processing resource is improved.
  • FIG. 1 is a flowchart of a network service processing method according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a network service processing apparatus according to an embodiment of the present invention.
  • FIG. 3 is a signaling diagram of a network service processing process for completing a single service processing resource according to an embodiment of the present invention
  • FIG. 4 is a signaling diagram of a network service processing process for completing a multi-service processing resource according to an embodiment of the present invention
  • FIG. 5 is a signaling diagram of another multi-service processing resource completion network service processing procedure according to an embodiment of the present invention.
  • FIG. 1 is a flowchart of a network service processing method according to an embodiment of the present invention.
  • an implementation subject of the following steps is A network service processing device that performs a network service processing method. As shown in FIG. 1, the embodiment specifically includes the following steps:
  • Step 110 Divide a plurality of isolated service processing resources from the field programmable gate array FPGA or the network processor NP;
  • the network service processing device involved in the embodiment of the present invention includes a processor and an on-site A Field-Programmable Gate Array (FPGA); or a network service processing device includes a processor and a Network Processor (abbreviation: NP).
  • FPGA Field-Programmable Gate Array
  • NP Network Processor
  • the processor divides the FPGA or NP into a plurality of service processing resources that are isolated from each other.
  • the method for isolating specifically includes: if the device includes an FPGA, adopting PR/PRR partitioning technology in the FPGA to divide an FPGA into a plurality of mutually isolated wiring partitions;
  • the device includes the NP, and the processor core grouping method is adopted in the NP, and different numbers of processor cores are divided into different groups, thereby dividing a plurality of service processing resources.
  • Step 120 Receive a first configuration instruction, where the first configuration instruction includes a first service configuration execution file.
  • the network service processing apparatus receives the first configuration instruction sent by the network server, where the first configuration instruction includes a first service configuration execution file.
  • the first service configuration execution file includes a service configuration file and a service execution file; the service configuration file is specifically a programming file related to the service configuration; and the service execution file is specifically a programming file related to the service processing resource to implement the business function.
  • the network service processing device may also receive a first configuration command sent by a device other than the network server.
  • the network service processing device receives the first configuration command sent by the network server as an example for description.
  • the first configuration instruction further includes the identification information of the service processing resource, and the service processing device determines, by the service processing device, the service processing resource for performing service configuration, where the identifier information may be carried in the service configuration file, or The information is carried separately in the first configuration command.
  • the network service processing device performs the configuration of the service function on the service processing resource according to the first service configuration execution file, so that the service processing resource has the function of implementing a certain service processing (for example, network address translation (Network Address). Trans lat ion (NAT) service, Ethernet Point-to-Point Protocol over Ethernet (PPPoE) service, Deep Packet Inspection (DPI) service, etc.
  • a certain service processing for example, network address translation (Network Address).
  • NAT Network Address Translation
  • PPPoE Ethernet Point-to-Point Protocol over Ethernet
  • DPI Deep Packet Inspection
  • Step 130 Perform service configuration on the service processing resource according to the first service configuration execution file, so that the service processing resource performs service processing on the service packet to be processed.
  • the network service processing device performs service configuration on the service processing resource according to the first service configuration execution file, so that the service processing resource performs service processing according to the service message to be processed according to the configured service.
  • Step 140 Receive a forwarding rule when performing service forwarding on the service packet to be processed.
  • the network service processing device receives a forwarding rule when the service packet to be processed configured by the network server performs service forwarding. Further, the web server configures the forwarding rules in the FPGA or NP.
  • the network service processing device may also receive forwarding rules of other device configurations than the network server.
  • the network service processing device receives the forwarding rule configured by the network server as an example for description.
  • the forwarding rule stores, in the forwarding rule, a rule feature of each service packet that needs to perform service processing, a service feature resource corresponding to the rule feature, and an address information of the service processing resource, that is, The service packet that meets the characteristics of the rule can be forwarded to the matching service processing resource through the address information of the service processing resource, and the service processing resource performs the service processing. Otherwise, the service packet is discarded.
  • the rule is specifically the IP address information, the port number information, the VLAN ID identifier, and the like of the message to be processed, and the IP address may be a source IP address or a destination IP address, but is not limited. With this.
  • the rule included in the forwarding rule is a plurality of IP address ranges of service packets to be processed, a service processing resource identifier information matching the IP address range, and address information of the service processing resource.
  • the forwarding rule can be presented in the form of a table, for example, the service packet having the first IP address range matches the identifier of the first service processing resource, in other words, the service to be processed received by the network service processing device.
  • the IP address of the packet falls on the first IP address.
  • the network service processing device transmits the to-be-processed service message to the first service processing resource that matches the first IP address range according to the address information of the service processing resource.
  • step 120, step 130, and step 140 may not limit the timing relationship.
  • Step 150 Receive the to-be-processed service packet sent by the user terminal, and use the forwarding rule to distribute the to-be-processed service packet to the service processing resource, so that the service processing resource is to the service
  • the processed service packet is processed by the service.
  • the network service processing apparatus After performing the foregoing steps 110-140, the network service processing apparatus performs a plurality of configurations, and receives the service message to be processed sent by the user terminal.
  • the network service processing device uses the forwarding rule to distribute the service message to be processed, and transmits the service message to be processed to the corresponding service processing resource, and the service processing resource performs corresponding service processing on the received service message. Improve the processing efficiency of business messages.
  • the distributing, by the forwarding rule, the to-be-processed service packet to the service processing resource specifically includes:
  • the network service processing device determines the number of service processing resources for performing service processing on the service packet to be processed according to the forwarding rule.
  • the number of the service resources for determining the service packet to be processed is determined by determining that the service packet to be processed is a single service processing resource, and the corresponding service processing is completed, or multiple services are required.
  • the processing resources jointly complete the corresponding business processing.
  • the distributing the service packet to be processed to the service processing resource specifically includes:
  • the network service processing device determines the service processing of the service packet to be processed by the service processing resource
  • the network service processing device obtains the address information of the service processing resource from the forwarding rule, and the service report to be processed according to the address information of the service processing resource.
  • the document is directly distributed to the determined service processing resource; when the network service processing device determines the service processing of the service packet to be processed by the plurality of service processing resources, the service processing resource determines the processing sequence of the service packet to be processed, and Obtaining, according to the determined processing sequence, the address information of the plurality of service processing resources in the processing order from the forwarding rule, and distributing the service packet to be processed to the first service processing resource according to the address information of the first service processing resource in the processing sequence .
  • a plurality of isolated service processing resources allocated by the FPGA or the NP are configured according to the configuration instruction, so that the service processing resource performs the service for the service packet to be processed.
  • the processing of the service packet is forwarded to the service processing resource according to the forwarding rule, and the service processing resource is processed by the service processing resource.
  • It enables fast and flexible distribution of business messages.
  • the processor needs to identify and distribute each received message, reduce the problem of the processing efficiency of the processor processing the message, and improve the processing efficiency of the server.
  • the service processing resources can have different service functions according to different configurations, so that the functions of the service processing resources can be modified and reconfigured at any time, and the processing efficiency of the service packets by each service processing resource is improved.
  • the method when the service processing of the service packet to be processed by the service processing resource is performed, the method further includes the step of collecting the service performance parameter, where the service performance parameter is used to perform the service processing resource.
  • Performance monitoring By performing performance monitoring on the service processing resources, the network operator to which the network server belongs can perform real-time monitoring on the performance of each service processing resource, and can also perform function adjustment on each service processing resource and allocate network resources reasonably. Specific steps are as follows:
  • the FPGA or the NP statistics is used for performing service performance parameter monitoring on the service processing resource;
  • the FPGA or the NP sends the service performance parameter to the network server, where the service performance parameter is used as a basis for the network server to adjust the service load of the service processing resource.
  • the FPGA or the NP collects services for performing performance monitoring on each service processing resource according to service configuration of each service processing resource when the service processing of the service processing resource to be processed is performed by the service processing resource.
  • Performance parameters specifically includes the service traffic of the service processing resource and the service performance state.
  • the service performance status refers specifically to the ability of each service processing resource to process a service packet after processing a certain service packet.
  • the FPGA or The NP counts service performance parameters corresponding to each service processing resource. For example, according to the service configured by the service processing resource, the density of the service packet received by each service processing resource, the size of the service packet, or the access density of accessing the on-chip/external memory, or the amount of the accessed data, and the like are counted. .
  • the FPGA or the NP After determining the service performance parameter of each service processing resource, the FPGA or the NP sends a service performance parameter to the network server, where the service performance parameter is used as a basis for the network server to adjust the service load to the service processing resource.
  • the network server determines whether the service processing resource needs to be changed according to the service performance parameter.
  • the network server expands the service processing resource according to the service performance parameter, or performs service reconfiguration on the service processing resource. deal with.
  • the network operator to which the network server belongs can perform real-time monitoring on the performance of each service processing resource, and can also perform function adjustment on each service processing resource and allocate network resources reasonably.
  • the network server may further reconfigure the service processing resource, so that the function of the service processing resource may be modified at any time, and the reconfiguration is performed to improve the service packet of each service processing resource. Processing efficiency. Specific steps are as follows:
  • the network server may perform function adjustment on each service processing resource according to the service performance parameter, so as to achieve the purpose of reasonably allocating network resources.
  • the network service processing device receives the second configuration instruction that is sent by the network server, where the second configuration instruction includes the second service configuration execution file, and the network service processing device is configured according to the second service
  • the execution file performs service reconfiguration on the service processing resources that have the service function, so as to implement the function modification of the service processing resources, and improve the processing efficiency of the service packets by each service processing resource.
  • the network service processing device may also receive a second configuration command sent by a device other than the network server.
  • the network service processing device receives the second configuration sent by the network server.
  • the instruction is described as an example.
  • the second service configuration execution file included in the second configuration instruction is different from the service function implemented by the first service configuration execution file included in the first configuration instruction, so that the service processing resource has different service functions.
  • the second service configuration execution file included in the second configuration instruction includes a service configuration file and a service execution file; the service configuration file is specifically a programming file related to service configuration; and the service execution file is specifically a service processing resource to implement a service function related programming file. Wait.
  • the second configuration instruction further includes the identification information of the service processing resource, where the service processing device determines the service processing resource for performing the service reconfiguration, and the identifier information may be carried in the service configuration file, or the identifier information is separately carried in the In the second configuration instruction.
  • the plurality of service processing resources that are separated from each other are specifically blank service processing resources that do not have a service processing function, or blank service processing resources that have a service processing function.
  • the service processing resource when the divided service processing resource is a blank service processing resource, the service is configured for the blank service processing resource according to the step 120-step 130, and the service processing resource may be reconfigured according to the step.
  • the service is reconfigured according to the step 120-step 130, and the service may be processed again according to the step. Resources for business reconfiguration.
  • the embodiment of the present invention further provides a network service processing apparatus, and the implementation structure thereof is as shown in FIG. 2, which is used to implement the network service processing method in the foregoing first embodiment of the present invention.
  • the device comprises a processor 10, an FPGA 20 or an NP 20;
  • the processor 10 is configured to divide, by the FPGA or the NP, a plurality of service processing resources that are isolated from each other;
  • the processor 10 is further configured to receive a first configuration instruction, where the first configuration instruction includes a first industry Configuring an execution file, and performing service configuration on the service processing resource according to the first service configuration execution file, so that the service processing resource performs service processing on the service packet to be processed;
  • the FPGA 20 or the NP 20 is configured to receive a forwarding rule when performing service forwarding on the service packet to be processed;
  • the FPGA 20 or the NP 20 is further configured to receive the to-be-processed service packet sent by the user terminal, and use the forwarding rule to distribute the to-be-processed service packet to the service processing resource, so that the The service processing resource performs service processing on the service packet to be processed.
  • the processor 10 is further configured to: when the service processing resource needs to have different service functions, receive a second configuration instruction, where the second configuration instruction includes a second service configuration execution file;
  • the processor 10 includes: a service adaptation module; the FPGA 20 or the NP 20 includes: a receiving classification module, and the service processing resource;
  • the service adaptation module 101 is specifically configured to: perform service configuration on the service processing resource according to the first service configuration execution file, and perform service reconfiguration on the service processing resource according to the second service configuration execution file;
  • the receiving classification module 201 is specifically configured to: configure the forwarding rule in the receiving classification module itself;
  • the service processing resource 202 is specifically configured to configure the forwarding rule in the service processing resource itself.
  • the receiving classification module 201 is specifically configured to determine, according to the forwarding rule, the number of the service processing resources for performing service processing on the service packet to be processed;
  • the service packet to be processed is distributed to the determined one of the service processing resources;
  • the service processing resource 202 is further configured to receive the to-be-processed service packet that is sent by the receiving classification module;
  • the FPGA 20 or NP20 further includes: a statistics module 203;
  • the statistic module 203 is configured to: when the service processing resource performs service processing on the service packet to be processed, collect service performance parameters for performing performance monitoring on the service processing resource, and send the service performance parameter to the service
  • the adaptation module sends the service performance parameter
  • the service adaptation module 101 is further configured to send the service performance parameter to a network server, where the service performance parameter is used as a basis for the network server to adjust a service load to the service processing resource.
  • the FPGA 20 or the NP 20 further includes: a transmission transmission module 204, configured to receive a service packet processed by the service processing resource, and output the service packet;
  • the forwarding module 205 is configured to forward the service packet between the receiving classification module and the service processing resource, and is further configured to forward the service packet between the multiple service processing resources .
  • the processor 10 further includes a driving module 102, configured to provide a unified interface for the service adaptation module.
  • the service adaptation module 101 may also be disposed in another entity instead of being disposed in the processor.
  • the FPGA 20 or the NP 20 further includes an off-chip memory controller 206 for managing a plurality of off-chip memories and providing a standard unified access interface;
  • the packet sending and receiving interface 207 is configured to receive a service packet sent by an external device, or send the packet to an external device. Send a service message;
  • the instruction transmission interface 208 is configured to receive an instruction sent by the network server, or receive an instruction that is transmitted by the driver module and the service adaptation module in the processor.
  • each service processing resource 202 included in the FPGA 20 or the NP 20 has a one-to-one correspondence with each service adaptation module 101 included in the processor 10, that is, one service adaptation module 101 is one to one.
  • the service processing resource 202 is configured and processed. Of course, in actual applications, multiple service processing resources 202 may be associated with one service adaptation module 101.
  • the network service processing device includes at least one service processing resource 202
  • the network server delivers at least one first configuration instruction to the at least one service adaptation module 101, where each first configuration instruction includes a first service configuration execution file.
  • Each service adaptation module 101 performs service configuration for the corresponding service processing resource 202.
  • the service adaptation module 202 When the service adaptation module 202 performs the service configuration, only one service is configured for the service processing resource 202, so that each service processing resource 202 performs one service only for the service packet to be processed when receiving the service packet. Processing, at the same time, the configuration of the service processing resource 202 may be changed according to different configuration instructions sent by the network server, such as the second configuration instruction sent by the network server involved in the foregoing embodiment, where the second configuration instruction includes the second service configuration execution.
  • the file enables the service function of the service processing resource 202 to be modified and reconfigured at any time, improving the processing efficiency of each service processing resource 202 and preventing the function from being solidified.
  • the network service processing apparatus performs service configuration on a plurality of isolated service processing resources allocated by the FPGA or the NP according to the configuration instruction, so that the service processing resource performs service on the service packet to be processed.
  • the processing of the service packet is forwarded to the service processing resource according to the forwarding rule, and the service processing resource is processed by the service processing resource.
  • It enables fast and flexible distribution of business messages.
  • the processor needs to identify and distribute each received message, reduce the problem of the processing efficiency of the processor processing the message, and improve the processing efficiency of the server.
  • the service processing resources can also have different business functions according to different configurations, so that the functions of the service processing resources can be modified and reconfigured at any time. The processing efficiency of each service processing resource for service packets is increased.
  • FIG. 3 is a signaling diagram of a process for completing a network service processing of a single service processing resource according to an embodiment of the present invention.
  • a service processing resource is used to perform service processing on a service packet as an example.
  • the service processing resource and the receiving classification module are configured correspondingly.
  • the receiving classification module receives the first service report sent by the user terminal. And identifying the characteristic attribute of the first service packet (for example, the IP address information, the port number information, and the VLAN ID identifier of the service packet, where the IP address information includes but is not limited to the source IP address information and the destination IP address information.
  • the forwarding rule determines, according to the forwarding rule, the service processing resource (for example, the NAT service processing resource) that performs the service processing on the first service packet, that is, the first service packet is distributed, that is, the first service packet is determined to be only required.
  • the service processing resource for example, the NAT service processing resource
  • the address information of the NAT service processing resource is obtained from the forwarding rule.
  • the receiving classification module encapsulates the first service packet (the encapsulation processing is specifically: encapsulating the identifier information of the NAT service processing resource and the address information of the NAT service processing resource in the header of the first service packet) to obtain the second
  • the service packet includes the identifier information of the NAT service processing resource and the address information of the NAT service processing resource, and the receiving classification module sends the second service packet to the forwarding module, and the forwarding module is configured according to the identifier information and the address information.
  • the second service packet is sent to the NAT service processing resource, and the NAT service processing resource receives the second service packet, and performs the corresponding NAT service processing on the second service packet, and outputs the processed second service packet.
  • the service module performs the service processing on the second service packet while the NAT service processing resource performs the service performance parameter statistics on the NAT service processing resource, and sends the service performance parameter to the service adaptation module, and the service adaptation module
  • the network server sends the service performance parameter, and the service performance parameter is used as a basis for the network server to adjust the service load of the NAT service processing resource.
  • the network server expands the NAT service processing resource according to the service performance parameter. Processing, or performing service reconfiguration processing on the NAT service processing resource.
  • FIG. 4 is a signaling diagram of a process for processing a network service of a multi-service processing resource according to an embodiment of the present invention.
  • the service processing of the service packet by two service processing resources is taken as an example for description.
  • the service processing resource and the receiving classification module are configured correspondingly.
  • the receiving classification module receives the first service report sent by the user terminal. And identifying the characteristic attribute of the first service packet (for example, the IP address information, the port number information, and the VLAN ID identifier of the service packet, where the IP address information includes but is not limited to the source IP address information and the destination IP address information.
  • the receiving classification module determines, according to the forwarding rule, the service processing resource (for example, the PPPoE service processing resource and the DPI service processing resource) for performing the service processing on the first service packet, that is, the first service packet is distributed and processed. That is, the first service packet is determined to require multiple service processing resources to complete the corresponding service processing.
  • the service processing resource for example, the PPPoE service processing resource and the DPI service processing resource
  • the processing sequence of the PPPoE service processing resource and the DPI service processing resource is also determined, and the processing of the PPPoE service processing resource and the DPI service processing resource is determined according to the determined PPPoE service processing resource.
  • the processing of the PPPoE service processing resource and the DPI service processing resource is determined according to the determined PPPoE service processing resource.
  • the receiving classification module performs encapsulation processing on the first service packet.
  • the encapsulation processing is specifically: the PPPoE service processing resource and the identification information of the DPI service processing resource, the address information of each service processing resource, and the sequence information of each service processing resource processing service.
  • the second service packet is included in the header of the first service packet, and the second service packet includes a PPPoE service processing resource, address information of each service processing resource, and identifier information of the DPI service processing resource and each service.
  • the receiving classification module sends the second service packet to the forwarding module, and the forwarding module indicates the first service processing resource indicated by the sequence information according to the identifier information, the address information, and the sequence information (for example, the PPPoE service processing resource.
  • the second service packet is sent, the PPPoE service processing resource receives the second service packet, and the second service packet is processed by the corresponding PPPoE service, and the PPPoE service processing resource needs to determine the second service report according to the sequence information.
  • the document continues to process DPI services, and the PPPoE service processing resources
  • the second service packet is encapsulated.
  • the encapsulation process is specifically: encapsulating the identifier information of the DPI service processing resource, the address information of the DPI service processing resource, and the sequence information in the header of the second service packet to obtain the third service.
  • the third service packet includes the identifier information of the DPI service processing resource, the address information of the DPI service processing resource, and the sequence information
  • the PPPoE service processing resource sends the third service packet to the forwarding module, and the forwarding module is configured according to the identifier information.
  • the address information is sent to the DPI service processing resource indicated by the identifier information to send a third service packet, and the DPI service processing resource receives the third service packet, and performs corresponding DPI service processing on the third service packet, and the third processed packet is processed.
  • Service message output is sent to the DPI service processing resource indicated by the identifier information to send a third service packet, and the DPI service processing resource receives the third service packet, and performs corresponding DPI service processing on the third service packet, and the third processed packet is processed.
  • the statistics module separately performs the service performance parameter statistics on the PPPoE/DPI service processing resource, and performs each service performance.
  • the parameters are respectively sent to the corresponding service adaptation module, and each service adaptation module separately sends a service performance parameter to the network server, where the service performance parameter serves as a basis for the network server to adjust the service load of the PPPoE/DPI service processing resource, when needed
  • the network server performs capacity expansion processing on the PPPoE/DPI service processing resources according to the service performance parameters, or performs service reconfiguration processing on the PPPoE/DPI service processing resources.
  • sequence information in the second service packet includes only two service processing resources.
  • the order of the source, and the second service packet has been processed by a service. Therefore, the DPI directly outputs the processed third service packet.
  • the service packet needs to be processed by more than two services. Resource processing, the processing is similar, and will not be repeated here.
  • FIG. 5 is a signaling diagram of another multi-service processing resource completion network service processing procedure according to an embodiment of the present invention.
  • the receiving classification module encapsulates the identification information of the plurality of service processing resources and the processing sequence information of the plurality of service processing resources in the header of the first service packet when the first service packet is encapsulated.
  • the second service packet is obtained, so that the header of the second service packet is too large, which is not conducive to the transmission of the packet.
  • the header of the first service packet is simplified to facilitate the transmission of the packet.
  • the service processing of service packets by two service processing resources is taken as an example for description.
  • the service processing resource and the receiving classification module are configured correspondingly.
  • the receiving classification module receives the first service report sent by the user terminal. And identifying the characteristic attribute of the first service packet (for example, the IP address information, the port number information, and the VLAN ID identifier of the service packet, where the IP address information includes but is not limited to the source IP address information and the destination IP address information.
  • the receiving classification module determines, according to the forwarding rule, the service processing resource (for example, the PPPoE service processing resource and the DPI service processing resource) for performing the service processing on the first service packet, that is, the first service packet is distributed and processed. That is, the first service packet is determined to require multiple service processing resources to complete the corresponding service processing.
  • the service processing resource for example, the PPPoE service processing resource and the DPI service processing resource
  • the processing sequence of the PPPoE service processing resource and the DPI service processing resource, and the address information of the PPPoE service processing resource and the DPI service processing resource are obtained from the forwarding rule according to the determined processing order of the PPPoE service processing resource and the DPI service processing resource.
  • the receiving classification module encapsulates the first service packet.
  • the encapsulation processing is specifically: encapsulating the identification information and the address information of the first service processing resource in the service processing sequence according to the service processing sequence of the two service processing resources.
  • the header of the service packet obtains the second service packet, and the second service packet includes the identifier information and the address information of the PPPoE service processing resource, and the receiving classification module
  • the second service packet is sent to the forwarding module, and the forwarding module forwards the second service packet to the PPPoE service processing resource, and the PPPoE service processing resource performs the corresponding PPPoE service processing on the second service packet, and identifies the second service packet.
  • the PPPoE service processing resource determines a service processing resource that needs to perform service processing on the second service packet.
  • DPI obtains identification information of DPI service processing resources from forwarding rules. And address information; if not, the second service message is output.
  • the PPPoE service processing resource encapsulates the second service packet, and the encapsulation process is specifically: encapsulating the identifier information of the DPI service processing resource and the address information in the header of the second service packet to obtain a third service packet.
  • the third service packet includes the identifier information and the address information of the DPI service processing resource, and the PPPoE service processing resource sends the third service packet to the forwarding module, and the forwarding module processes the DPI service indicated by the identifier information according to the identifier information and the address information.
  • the resource sends a third service packet, and the DPI service processing resource receives the third service packet, and the DPI service processing resource performs the corresponding DPI service processing on the third service packet, and identifies whether the characteristic attribute of the third service packet is forwarded by the service.
  • the service features of the services in the rule table are matched. If the DPI service processing resources are determined, the DPI service processing resources determine the service processing resources that need to be processed for the third service packet. If not, the processed third service is processed. Message output.
  • the statistics module separately performs the service performance parameter statistics on the PPPoE/DPI service processing resource, and performs each service performance. Parameters are sent to the corresponding service adaptation module, each service The adaptation module sends a service performance parameter to the network server, where the service performance parameter is used as a basis for the network server to adjust the service load of the PPPoE/DPI service processing resource.
  • the network server according to the service performance The parameter is used to expand the PPPoE/DPI service processing resources, or to perform service reconfiguration processing on the PPPoE/DPI service processing resources.
  • each service processing resource itself determines the service processing resources for subsequent processing of the service packet, and reduces the bytes of the service packet header, which is convenient and flexible.
  • the transmission of service packets is improved, and the processing efficiency of each service processing resource is improved.
  • the steps of a method or algorithm described in connection with the embodiments disclosed herein can be implemented in hardware, a software module executed by a processor, or a combination of both.
  • the software module can be placed in random access memory (RAM), memory, read only memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, registers, hard disk, removable disk, CD-ROM, or technical field. Any other form of storage medium known.

Abstract

提供一种网络业务处理方法与装置。所述方法包括:对现场可编程门阵列(FPGA)或者网络处理器(NP)划分出多个彼此隔离的业务处理资源(110);接收第一配置指令,第一配置指令包括第一业务配置执行文件(120);根据第一业务配置执行文件对业务处理资源进行业务配置,以使得业务处理资源对待处理的业务报文进行业务处理(130);接收对待处理的业务报文进行业务转发时的转发规则(140);接收用户终端发送的待处理的业务报文,利用转发规则将待处理的业务报文分发到业务处理资源,以使得业务处理资源对待处理的业务报文进行业务处理(150)。

Description

网络业务处理方法与装置
本申请要求于2013年11月26日提交中国专利局、申请号为201310613801.0、发明名称为“网络业务处理方法与装置”的中国专利申请和2014年5月4日提交中国专利局、申请号为201410185366.0、发明名称为“网络业务处理方法与装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及通讯技术领域,尤其涉及一种网络业务处理方法与装置。
背景技术
随着通信系统中各服务器计算能力的快速增长,越来越多的网络业务(如防火墙业务等)急需从传统专用设备平台向服务器上迁移。目前,网络虚拟化技术作为下一代通信网络发展的主要方向,已开始逐步通过使用服务器、交换机、存储这三类通用设备,实现各种网络业务功能。通过上述方式实现网络业务功能,可实现灵活便捷地部署业务、降低开发成本。
为了满足业务部署的便捷和灵活,一般在服务器上加载虚拟化技术,目前,在服务器中运行虚拟机管理器(hypervisor软件)来将一台物理服务器虚拟成多台服务器,以方便在同一台服务器上部署多个不同的处理网络业务的软件,而不互相影响。
但是,现有技术中实现网络业务处理的方案也暴露出以下缺陷:服务器采用hypervisor软件之后,服务器的网卡在接收到报文后,需将报文通过hypervisor软件传输至虚拟交换机(vswi tch),服务器中的处理器对vswi tch 中的报文进行识别,并由vswi tch进行分发,以正确交付给不同的虚拟机(Virtual Machine,简称:VM),VM在接收到报文后对报文进行业务处理,但是,当报文数量较多时,处理器需对每个接收到的报文进行识别后,vswi tch才可将报文交付给正确的VM,导致处理器的工作量大幅度增加,降低处理器处理报文的分发效率,同时,也表现出服务器对报文的处理效率与不虚拟化时相比,报文的处理效率大大降低。
发明内容
本发明实施例提供了一种网络业务处理方法与装置,以解决现有技术中服务器处理报文效率低的问题。
在第一方面,本发明实施例提供了一种网络业务处理方法,所述方法包括:
对现场可编程门阵列FPGA或者网络处理器NP划分出多个彼此隔离的业务处理资源;
接收第一配置指令,所述第一配置指令包括第一业务配置执行文件;
根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,以使得所述业务处理资源对待处理的业务报文进行业务处理;
接收对所述待处理的业务报文进行业务转发时的转发规则;
接收用户终端发送的所述待处理的业务报文,利用所述转发规则将所述待处理的业务报文分发到所述业务处理资源,以使得所述业务处理资源对所述待处理的业务报文进行业务处理。
在第一种可能的实现方式中,所述利用所述转发规则对所述待处理的业务报文进行分类重定向,并确定所述待处理的业务报文的业务处理路径具体包括:
利用所述转发规则,确定对所述待处理的业务报文进行业务处理的所述业务处理资源的个数;
当确定1个所述业务处理资源对所述待处理的业务报文进行业务处理时,则将所述待处理的业务报文分发到确定的1个所述业务处理资源;
当确定多个所述业务处理资源对所述待处理的业务报文进行业务处理时,则确定所述业务处理资源处理所述待处理的业务报文的处理顺序,并根据确定的所述处理顺序,将所述待处理的业务报文分发到所述处理顺序中首个所述业务处理资源。
结合第一方面或第一方面的第一种可能的实现方式,在第二种可能的实现方式中,所述方法还包括:
当所述业务处理资源对所述待处理的业务报文进行业务处理时,所述FPGA或者所述NP统计用于对所述业务处理资源进行性能监控的业务性能参数;
所述FPGA或者所述NP向网络服务器发送所述业务性能参数,所述业务性能参数作为所述网络服务器对所述业务处理资源调整业务负荷的依据。
在第三种可能的实现方式中,所述方法还包括:当所述业务处理资源需要具有不同的业务功能时,接收下发的第二配置指令,所述第二配置指令包括第二业务配置执行文件;
根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置。
在第二方面,本发明实施例提供了一种网络业务处理装置,所述装置包括:处理器、FPGA或者NP;
所述处理器用于,对所述FPGA或者所述NP划分出多个彼此隔离的业务处理资源;
所述处理器还用于,接收第一配置指令,所述第一配置指令包括第一业务配置执行文件,并根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,以使得所述业务处理资源对待处理的业务报文进行业务处理;
所述FPGA或者所述NP用于,接收对所述待处理的业务报文进行业务转发时的转发规则;
所述FPGA或者所述NP还用于,接收用户终端发送的所述待处理的业务报文,利用所述转发规则将所述待处理的业务报文分发到索素华业务处理资源,以使得所述业务处理资源对所述待处理的业务报文进行业务处理。
在第一种可能的实现方式中,所述处理器还用于,当所述业务处理资源需要具有不同的业务功能时,接收所述网络服务器下发的第二配置指令,所述第二配置指令包括第二业务配置执行文件;
根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置。
结合第二方面或第二方面的第一种可能的实现方式,在第二种可能的实现方式中,所述处理器包括:业务适配模块;所述FPGA或者所述NP包括:接收分类模块、所述业务处理资源;
所述业务适配模块具体用于,根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置;
所述接收分类模块具体用于,将所述转发规则配置在所述接收分类模块自身;
所述业务处理资源具体用于,将所述转发规则配置在所述业务处理资源自身。
结合第二方面的第二种可能的实现方式,在第三种可能的实现方式中,所述接收分类模块具体用于,根据所述转发规则,确定对所述待处理的业务报文进行业务处理的所述业务处理资源的个数;
当确定1个所述业务处理资源对所述待处理的业务报文进行业务处理时,则将所述待处理的业务报文分发到确定的1个所述业务处理资源;
当确定多个所述业务处理资源对所述待处理的业务报文进行业务处理时,则确定所述业务处理资源处理所述待处理的业务报文的处理顺序,并根据确定的所述处理顺序,将所述待处理的业务报文分发到所述处理顺序中首个所述业务处理资源。
结合第二方面的第三种可能的实现方式,在第四种可能的实现方式中,所述业务处理资源还用于,
接收所述接收分类模块传输的所述待处理的业务报文;
对所述待处理的业务报文进行对应的业务处理;
根据所述转发规则,确定对所述待处理的业务报文进行业务处理的下级业务处理资源;
将业务处理后的所述待处理的业务报文传输至所述下级业务处理资源。
结合第二方面或第二方面的第三种、第四种可能的实现方式,在第五种可能的实现方式中,所述装置还包括:统计模块;
所述统计模块用于,当所述业务处理资源对所述待处理的业务报文进行业务处理时,统计用于对所述业务处理资源进行性能监控的业务性能参数,并向所述业务适配模块发送所述业务性能参数;
所述业务适配模块还用于,向网络服务器发送所述业务性能参数,所述业务性能参数作为所述网络服务器对所述业务处理资源调整业务负荷的依据。
在第六种可能的实现方式中,所述装置还包括:
发送传输模块,用于接收经所述业务处理资源处理后的业务报文,并将所述业务报文输出;
转发模块,用于将所述业务报文在所述接收分类模块和所述业务处理资源之间进行转发;还用于将所述业务报文在所述多个业务处理资源之间进行转发。
因此,通过应用本发明实施例提供的网络业务处理方法与装置,根据配置指令对FPGA或者NP划分出的多个彼此隔离的业务处理资源进行业务配置,以使得业务处理资源对待处理的业务报文进行业务处理;接收对待处理业务报文进行业务转发时的转发规则,以使得根据转发规则将待处理的业务报文分发到业务处理资源,由业务处理资源对待处理的业务报文进行业务处理。实现了快速、灵活地对业务报文进行分发。避免了现有技术中当报文数量较多时,处理器需对每个接收到的报文进行识别、分发,降低处理器处理报文的分发效率的问题,提高了服务器对报文的处理效率;同时,业务处理资源还可根据不同的配置而具有不同的业务功能,使得业务处理资源的功能可随时修改,进行重配置,提高了每个业务处理资源对业务报文的处理效率。
附图说明
图1为本发明实施例提供的网络业务处理方法流程图;
图2为本发明实施例提供的网络业务处理装置结构示意图;
图3为本发明实施例提供的单业务处理资源完成网络业务处理过程信令图;
图4为本发明实施例提供的一种多业务处理资源完成网络业务处理过程信令图;
图5为本发明实施例提供的另一种多业务处理资源完成网络业务处理过程信令图。
具体实施方式
为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
为便于对本发明实时的理解,下面将结合附图以具体实施例做进一步的解释说明,实施例并不构成对本发明实施例的限定。
实施例一
下面以图1为例详细说明本发明实施例提供的网络业务处理方法,图1为本发明实施例提供的网络业务处理方法流程图,在本发明实施例中,执行下述步骤的实施主体为执行网络业务处理方法的网络业务处理装置。如图1所示,该实施例具体包括以下步骤:
步骤110、对现场可编程门阵列FPGA或者网络处理器NP划分出多个彼此隔离的业务处理资源;
具体地,本发明实施例中涉及的网络业务处理装置包括处理器以及现场可 编程门阵列(Field-Programmable Gate Array,简称:FPGA);或者网络业务处理装置包括处理器以及网络处理器(Network Processor,简称:NP)。
处理器将FPGA或者NP中划分出多个彼此隔离的业务处理资源。
其中,作为示例而非限定,所述隔离的方法具体包括:如果所述装置包括FPGA,则在FPGA中采用PR/PRR分区技术,将一个FPGA划分成多个互相隔离的布线分区;如果所述装置包括NP,则在NP中采用处理器核分组的方法,将不同数量的处理器核划分到不同的分组内,进而划分出多个业务处理资源。
步骤120、接收第一配置指令,所述第一配置指令包括第一业务配置执行文件。
具体地,在一个例子中,网络业务处理装置接收网络服务器发送的第一配置指令,所述第一配置指令包括第一业务配置执行文件。所述第一业务配置执行文件包括业务配置文件以及业务执行文件;业务配置文件具体为与业务配置相关的编程文件等;业务执行文件具体为业务处理资源实现业务功能相关的编程文件等。
网络业务处理装置还可接收除网络服务器之外的其他设备发送的第一配置指令。在本发明实施例中,以网络业务处理装置接收网络服务器发送的第一配置指令为例进行说明。
进一步地,所述第一配置指令中还包括业务处理资源的标识信息,通过该标识信息,使得业务处理装置确定进行业务配置的业务处理资源,标识信息可携带在业务配置文件中,或者,标识信息单独携带在第一配置指令中。
其中,作为示例而非限定,网络业务处理装置根据第一业务配置执行文件对业务处理资源进行业务功能的配置,使得业务处理资源具有实现某一业务处理的功能(比如:网络地址转换(Network Address Trans lat ion,简称:NAT)业务、基于以太网的点对点协议(Point to Point Protocol over Ethernet,简称:PPPoE)业务、深度包检测(Deep Packet Inspect ion,简称:DPI)业务等),进而对待处理的业务报文进行业务处理。
步骤130、根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,以使得所述业务处理资源对待处理的业务报文进行业务处理。
具体地,网络业务处理装置根据第一业务配置执行文件对所述业务处理资源进行业务配置,以使得业务处理资源根据已配置的业务对待处理的业务报文进行业务处理。
可以理解的是,在对业务处理资源进行业务配置时,也可对多个业务处理资源配置为同一业务。
步骤140、接收对所述待处理的业务报文进行业务转发时的转发规则。
具体地,在一个例子中,网络业务处理装置接收网络服务器配置的对待处理的业务报文进行业务转发时的转发规则。进一步地,网络服务器将转发规则配置在FPGA或者NP中。
网络业务处理装置还可接收除网络服务器之外的其他设备配置的转发规则。在本发明实施例中,以网络业务处理装置接收网络服务器配置的转发规则为例进行说明。
进一步地,所述转发规则中存储了每个需执行业务处理的业务报文进行业务转发时的规则特征、与规则特征对应匹配的业务处理资源的标识信息以及业务处理资源的地址信息,也即是,符合该规则特征的业务报文才可通过业务处理资源的地址信息被转发至匹配的业务处理资源处,并由业务处理资源进行业务处理,否则,将业务报文进行丢弃处理,其中,作为示例而非限定,所述规则具体为需执行业务处理的报文的IP地址信息、端口号信息、VLANID标识等等,所述IP地址可以为源IP地址或者目的IP地址,但并不限制与此。
在一个例子中,转发规则中包括的规则特征为需执行业务处理的业务报文的多个IP地址范围、与每个IP地址范围匹配的业务处理资源的标识信息以及业务处理资源的地址信息,可以理解的是,转发规则可通过表格的形式呈现,比如,具有第一IP地址范围的业务报文与第一业务处理资源的标识匹配,换言之,当网络业务处理装置接收到的待处理的业务报文的IP地址落在了第一IP 地址范围内时,则网络业务处理装置根据业务处理资源的地址信息将该待处理的业务报文传输至与第一IP地址范围匹配的第一业务处理资源处。
本发明实施例中,步骤120、步骤130以及步骤140可不限制时序关系。
步骤150、接收用户终端发送的所述待处理的业务报文,利用所述转发规则将所述待处理的业务报文分发到所述业务处理资源,以使得所述业务处理资源对所述待处理的业务报文进行业务处理。
具体地,在执行上述步骤110-步骤140之后,网络业务处理装置进行多项配置后,接收用户终端发送的待处理的业务报文。
网络业务处理装置利用转发规则对待处理的业务报文进行分发,并将待处理的业务报文传输至对应的业务处理资源,业务处理资源对接收到的待处理的业务报文进行对应的业务处理,提高业务报文的处理效率。
进一步地,所述利用所述转发规则将所述待处理的业务报文分发到所述业务处理资源具体包括:
网络业务处理装置根据转发规则,确定对待处理的业务报文进行业务处理的业务处理资源的个数。
其中,所述确定对待处理的业务报文进行业务处理的业务资源的个数具体为确定待处理的业务报文为仅需单业务处理资源即可完成对应的业务处理,或者为需多个业务处理资源共同完成对应的业务处理。
所述将所述待处理的业务报文分发到所述业务处理资源具体包括:
当网络业务处理装置确定1个业务处理资源对待处理的业务报文进行业务处理时,则从转发规则中获取该业务处理资源的地址信息,根据业务处理资源的地址信息,将待处理的业务报文直接分发到确定的该业务处理资源;当网络业务处理装置确定多个业务处理资源对待处理的业务报文进行业务处理时,则确定业务处理资源处理待处理的业务报文的处理顺序,并根据确定的处理顺序,从转发规则中获取处理顺序中多个业务处理资源的地址信息,根据处理顺序中首个业务处理资源的地址信息,将待处理的业务报文分发到首个业务处理资源。
因此,通过应用本发明实施例提供的网络业务处理方法,根据配置指令对FPGA或者NP划分出的多个彼此隔离的业务处理资源进行业务配置,以使得业务处理资源对待处理的业务报文进行业务处理;接收对待处理的业务报文进行业务转发时的转发规则,以使得根据转发规则将待处理的业务报文分发到业务处理资源,由业务处理资源对待处理的业务报文进行业务处理。实现了快速、灵活地对业务报文进行分发。避免了现有技术中当报文数量较多时,处理器需对每个接收到的报文进行识别、分发,降低处理器处理报文的分发效率的问题,提高了服务器对报文的处理效率;同时,业务处理资源还可根据不同的配置而具有不同的业务功能,使得业务处理资源的功能可随时修改,进行重配置,提高了每个业务处理资源对业务报文的处理效率。
可选地,在本发明实施例中,在业务处理资源对待处理的业务报文进行相应的业务处理的同时,还包括统计业务性能参数的步骤,所述业务性能参数用于对业务处理资源进行性能监控。通过对业务处理资源进行性能监控,可使网络服务器所属的网络运营商对每个业务处理资源的性能进行实时监控,同时,还可对每个业务处理资源进行功能调整,合理分配网络资源。具体步骤如下:
当所述业务处理资源对所述待处理的业务报文进行业务处理时,所述FPGA或者所述NP统计用于对所述业务处理资源进行性能监控的业务性能参数;
所述FPGA或者所述NP向网络服务器发送所述业务性能参数,所述业务性能参数作为所述网络服务器对所述业务处理资源调整业务负荷的依据。
具体地,在各个业务处理资源对待处理的业务报文进行相应的业务处理时,所述FPGA或者所述NP根据各个业务处理资源的业务配置,统计用于对各个业务处理资源进行性能监控的业务性能参数。其中,作为示例而非限定,所述业务性能参数具体包括业务处理资源的业务流量以及业务性能状态。所述业务性能状态具体是指各个业务处理资源在处理一定的业务报文后,还剩余的处理业务报文的能力。
在本发明实施例中,由于各个业务处理资源配置的业务不同,所述FPGA或 者所述NP统计各个业务处理资源对应的业务性能参数。例如,根据业务处理资源配置的业务,统计每个业务处理资源接收到的业务报文的密度、业务报文的大小、或者访问片内/外存储器的访问密度、或者访问数据量的大小等等。
所述FPGA或者所述NP在确定出各个业务处理资源的业务性能参数后,向网络服务器发送业务性能参数,其中,所述业务性能参数作为所述网络服务器对业务处理资源调整业务负荷的依据。
进一步地,网络服务器根据业务性能参数确定业务处理资源是否需要改变,当需要对业务处理资源进行改变时,网络服务器根据业务性能参数对业务处理资源进行扩容处理,或者对业务处理资源进行业务重配置处理。可使网络服务器所属的网络运营商对每个业务处理资源的性能进行实时监控,同时,还可对每个业务处理资源进行功能调整,合理分配网络资源。
可选地,本发明实施例中,网络服务器还可对业务处理资源进行重配置的步骤,使得业务处理资源的功能可随时修改,进行重配置,提高了每个业务处理资源对业务报文的处理效率。具体步骤如下:
当所述业务处理资源需要具有不同的业务功能时,接收第二配置指令,所述第二配置指令包括第二业务配置执行文件;
根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置。
具体地,在一个例子中,网络服务器可根据业务性能参数对每个业务处理资源进行功能调整,以达到合理分配网络资源的目的。
当业务处理资源需要具有不同的业务功能时,网络业务处理装置接收网络服务器下发的第二配置指令,所述第二配置指令包括第二业务配置执行文件,网络业务处理装置根据第二业务配置执行文件对已具有业务功能的业务处理资源进行业务重配置,以实现对业务处理资源的功能修改,提高每个业务处理资源对业务报文的处理效率。
网络业务处理装置还可接收除网络服务器之外的其他设备发送的第二配置指令。在本发明实施例中,以网络业务处理装置接收网络服务器发送的第二配 置指令为例进行说明。
可以理解的是,第二配置指令包括的第二业务配置执行文件与第一配置指令包括的第一业务配置执行文件实现的业务功能不同,以使得业务处理资源具有不同的业务功能。
第二配置指令包括的第二业务配置执行文件包括业务配置文件以及业务执行文件;业务配置文件具体为与业务配置相关的编程文件等;业务执行文件具体为业务处理资源实现业务功能相关的编程文件等。
第二配置指令中还包括业务处理资源的标识信息,通过该标识信息,使得业务处理装置确定进行业务重配置的业务处理资源,标识信息可携带在业务配置文件中,或者,标识信息单独携带在第二配置指令中。
在本发明实施例步骤110中,划分出的多个彼此隔离的业务处理资源具体为不具有业务处理功能的空白业务处理资源,或者为具有业务处理功能的空白业务处理资源。
在一种实现方式中,划分出的业务处理资源为空白业务处理资源时,则根据步骤120-步骤130对空白业务处理资源进行业务配置,并可根据本步骤对业务处理资源进行业务重配置。
在另一种实现方式中,划分出的业务处理资源为具有非空白业务处理资源时,则根据步骤120-步骤130对非空白业务处理资源进行业务重配置,并可根据本步骤再次对业务处理资源进行业务重配置。
实施例二
相应地,本发明实施例还提供了一种网络业务处理装置,其实现结构如图2所示,用以实现本发明前述实施例一中的网络业务处理方法。所述装置包括处理器10、FPGA20或者NP20;
所述处理器10用于,对所述FPGA或者所述NP划分出多个彼此隔离的业务处理资源;
所述处理器10还用于,接收第一配置指令,所述第一配置指令包括第一业 务配置执行文件,并根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,以使得所述业务处理资源对待处理的业务报文进行业务处理;
所述FPGA20或者所述NP20用于,接收对所述待处理的业务报文进行业务转发时的转发规则;
所述FPGA20或者所述NP20还用于,接收用户终端发送的所述待处理的业务报文,利用所述转发规则将所述待处理的业务报文分发到所述业务处理资源,以使得所述业务处理资源对所述待处理的业务报文进行业务处理。
所述处理器10还用于,当所述业务处理资源需要具有不同的业务功能时,接收第二配置指令,所述第二配置指令包括第二业务配置执行文件;
根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置。
所述处理器10包括:业务适配模块;所述FPGA20或者所述NP20包括:接收分类模块、所述业务处理资源;
所述业务适配模块101具体用于,根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置;
所述接收分类模块201具体用于,将所述转发规则配置在所述接收分类模块自身;
所述业务处理资源202具体用于,将所述转发规则配置在所述业务处理资源自身。
所述接收分类模块201具体用于,根据所述转发规则,确定对所述待处理的业务报文进行业务处理的所述业务处理资源的个数;
当确定1个所述业务处理资源对所述待处理的业务报文进行业务处理时,则将所述待处理的业务报文分发到确定的1个所述业务处理资源;
当确定多个所述业务处理资源对所述待处理的业务报文进行业务处理时,则确定所述业务处理资源处理所述待处理的业务报文的处理顺序,并根据确定的所述处理顺序,将所述待处理的业务报文分发到所述处理顺序中首个所述业 务处理资源。
所述业务处理资源202还用于,接收所述接收分类模块传输的所述待处理的业务报文;
对所述待处理的业务报文进行对应的业务处理;
根据所述转发规则,确定对所述待处理的业务报文进行业务处理的下级业务处理资源;
将业务处理后的所述待处理的业务报文传输至所述下级业务处理资源。
所述FPGA20或者NP20还包括:统计模块203;
所述统计模块203用于,当所述业务处理资源对所述待处理的业务报文进行业务处理时,统计用于对所述业务处理资源进行性能监控的业务性能参数,并向所述业务适配模块发送所述业务性能参数;
所述业务适配模块101还用于,向网络服务器发送所述业务性能参数,所述业务性能参数作为所述网络服务器对所述业务处理资源调整业务负荷的依据。
所述FPGA20或者NP20还包括:发送传输模块204,用于接收经所述业务处理资源处理后的业务报文,并将所述业务报文输出;
转发模块205,用于将所述业务报文在所述接收分类模块和所述业务处理资源之间进行转发;还用于将所述业务报文在所述多个业务处理资源之间进行转发。
所述处理器10还包括:驱动模块102,用于为所述业务适配模块提供统一接口。
在本发明实施例中,所述业务适配模块101还可设置在另一个实体中,而不设置于处理器中。
所述FPGA20或者NP20还包括:片外存储控制器206,用于管理多个片外存储器,并提供标准统一的访问接口;
报文收发接口207,用于接收外部设备发送的业务报文,或者向外部设备发 送业务报文;
指令传输接口208,用于接收网络服务器发送的指令,或者接收处于处理器中驱动模块、业务适配模块传输的指令。
需要说明的是,在FPGA20或者NP20中包括的每个业务处理资源202与处理器10中包括的每个业务适配模块101一一对应,也即是,1个业务适配模块101对1个业务处理资源202进行配置、处理;当然,在实际应用中,也可以将多个业务处理资源202与1个业务适配模块101对应。当网络业务处理装置中包括至少1个业务处理资源202时,网络服务器向至少1个业务适配模块101下发至少1个第一配置指令,每个第一配置指令包括第一业务配置执行文件。每个业务适配模块101为对应的业务处理资源202进行业务配置。在业务适配模块202进行业务配置时,为业务处理资源202仅配置1项业务,使得每个业务处理资源202在接收到业务报文时,仅为待处理的业务报文进行1项的业务处理,同时,业务处理资源202的配置可根据网络服务器发送的不同配置指令进行改变,如前述实施例中涉及的网络服务器发送的第二配置指令,所述第二配置指令包括第二业务配置执行文件,使得业务处理资源202的业务功能可随时修改,进行重配置,提高了每个业务处理资源202的处理效率,也防止了功能固化。
因此,通过应用本发明实施例提供的网络业务处理装置,根据配置指令对FPGA或者NP划分出的多个彼此隔离的业务处理资源进行业务配置,以使得业务处理资源对待处理的业务报文进行业务处理;接收对待处理的业务报文进行业务转发时的转发规则,以使得根据转发规则将待处理的业务报文分发到业务处理资源,由业务处理资源对待处理的业务报文进行业务处理。实现了快速、灵活地对业务报文进行分发。避免了现有技术中当报文数量较多时,处理器需对每个接收到的报文进行识别、分发,降低处理器处理报文的分发效率的问题,提高了服务器对报文的处理效率;同时,业务处理资源还可根据不同的配置而具有不同的业务功能,使得业务处理资源的功能可随时修改,进行重配置,提 高了每个业务处理资源对业务报文的处理效率。
实施例三
为便于对本发明实时的理解,下面将结合附图以具体实施例做进一步的解释说明,实施例并不构成对本发明实施例的限定。
下面通过图3进行详细说明。图3为本发明实施例提供的单业务处理资源完成网络业务处理过程信令图。
具体地,如图3所示,以1个业务处理资源对业务报文进行业务处理为例进行说明。按照本发明实施例步骤110至步骤140的描述,对业务处理资源、接收分类模块进行相应的配置,完成配置后,当用户终端接入网络时,接收分类模块接收用户终端发送的第一业务报文,识别第一业务报文的特征属性(比如:业务报文的IP地址信息、端口号信息、VLANID标识,此处的IP地址信息具体包括但不限制于源IP地址信息、目的IP地址信息)是否与转发规则中的某一项业务(比如:NAT业务)的业务特征(比如:需执行NAT业务的报文的IP地址信息、端口号信息、VLANID标识)匹配,如果匹配,则接收分类模块根据转发规则确定对第一业务报文进行业务处理的业务处理资源(比如:NAT业务处理资源),也即是对第一业务报文进行分发处理,即确定第一业务报文为仅需单业务处理资源即可完成对应的业务处理。
当确定1个业务处理资源对第一业务报文进行业务处理时,从转发规则中获取NAT业务处理资源的地址信息。接收分类模块对第一业务报文进行封装处理(所述封装处理具体为将NAT业务处理资源的标识信息以及NAT业务处理资源的地址信息封装在第一业务报文的头部),得到第二业务报文,所述第二业务报文包括NAT业务处理资源的标识信息以及NAT业务处理资源的地址信息,接收分类模块向转发模块发送第二业务报文,转发模块根据标识信息以及地址信息,向NAT业务处理资源发送第二业务报文,NAT业务处理资源接收第二业务报文,并对第二业务报文进行相应的NAT业务处理,将处理后的第二业务报文输出。
其中,在NAT业务处理资源对第二业务报文进行业务处理的同时,统计模块对NAT业务处理资源进行业务性能参数的统计,并将业务性能参数发送至业务适配模块,业务适配模块向网络服务器发送业务性能参数,所述业务性能参数作为网络服务器对NAT业务处理资源调整业务负荷的依据,当需要对NAT业务处理资源进行改变时,网络服务器根据业务性能参数对NAT业务处理资源进行扩容处理,或者,对NAT业务处理资源进行业务重配置处理。
实施例四
为便于对本发明实时的理解,下面将结合附图以具体实施例做进一步的解释说明,实施例并不构成对本发明实施例的限定。
下面通过图4进行详细说明。图4为本发明实施例提供的一种多业务处理资源完成网络业务处理过程信令图。
具体地,如图4所示,以两个业务处理资源对业务报文进行业务处理为例进行说明。按照本发明实施例步骤110至步骤140的描述,对业务处理资源、接收分类模块进行相应的配置,完成配置后,当用户终端接入网络时,接收分类模块接收用户终端发送的第一业务报文,识别第一业务报文的特征属性(比如:业务报文的IP地址信息、端口号信息、VLANID标识,此处的IP地址信息具体包括但不限制于源IP地址信息、目的IP地址信息)是否与转发规则中的某几项业务(比如:PPPoE业务和DPI业务)的业务特征(比如:需执行PPPoE业务和DPI业务的报文的IP地址信息、端口号信息、VLANID标识)匹配,如果匹配,则接收分类模块根据转发规则确定对第一业务报文进行业务处理的业务处理资源(比如:PPPoE业务处理资源和DPI业务处理资源),也即是对第一业务报文进行分发处理,即确定第一业务报文为需多业务处理资源才可完成对应的业务处理。
当确定2个业务处理资源对第一业务报文进行两项业务处理时,还确定PPPoE业务处理资源和DPI业务处理资源的处理顺序,并根据确定的PPPoE业务处理资源和DPI业务处理资源的处理顺序,从转发规则中获取PPPoE业务处理 资源和DPI业务处理资源的地址信息。接收分类模块对第一业务报文进行封装处理(所述封装处理具体为将PPPoE业务处理资源以及DPI业务处理资源的标识信息、各个业务处理资源的地址信息以及各个业务处理资源处理业务的顺序信息封装在第一业务报文的头部),得到第二业务报文,所述第二业务报文包括PPPoE业务处理资源、各个业务处理资源的地址信息以及DPI业务处理资源的标识信息以及各个业务处理资源处理业务的顺序信息,接收分类模块向转发模块发送第二业务报文,转发模块根据标识信息、地址信息以及顺序信息,向顺序信息指示的首个业务处理资源(比如:PPPoE业务处理资源)发送第二业务报文,PPPoE业务处理资源接收第二业务报文,并对第二业务报文进行相应的PPPoE业务处理,同时,PPPoE业务处理资源根据顺序信息确定还需对第二业务报文继续进行DPI业务处理,则PPPoE业务处理资源对第二业务报文进行封装处理(所述封装处理具体为将DPI业务处理资源的标识信息、DPI业务处理资源的地址信息以及顺序信息封装在第二业务报文的头部),得到第三业务报文,所述第三业务报文包括DPI业务处理资源的标识信息、DPI业务处理资源的地址信息以及顺序信息,PPPoE业务处理资源向转发模块发送第三业务报文,转发模块根据标识信息以及地址信息,向标识信息指示的DPI业务处理资源发送第三业务报文,DPI业务处理资源接收第三业务报文,并对第三业务报文进行相应的DPI业务处理,将处理后的第三业务报文输出。
其中,在PPPoE业务处理资源、DPI业务处理资源对第二/第三业务报文进行业务处理的同时,统计模块对PPPoE/DPI业务处理资源分别进行业务性能参数的统计,并将每个业务性能参数分别发送至对应的业务适配模块,每个业务适配模块分别向网络服务器发送业务性能参数,所述业务性能参数作为网络服务器对PPPoE/DPI业务处理资源调整业务负荷的依据,当需要对PPPoE/DPI业务处理资源进行改变时,网络服务器根据业务性能参数对PPPoE/DPI业务处理资源进行扩容处理,或者,对PPPoE/DPI业务处理资源进行业务重配置处理。
可以理解的是,由于在第二业务报文中的顺序信息仅包括两个业务处理资 源的顺序,且第二业务报文已经进行了一个业务的处理,因此,DPI将处理后的第三业务报文直接输出,在实际应用中,如果业务报文需被两个以上的业务处理资源处理,处理过程类似,在此不再复述。
实施例五
为便于对本发明实时的理解,下面将结合附图以具体实施例做进一步的解释说明,实施例并不构成对本发明实施例的限定。
下面通过图5进行详细说明。图5为本发明实施例提供的另一种多业务处理资源完成网络业务处理过程信令图。
在实施例四中,接收分类模块在对第一业务报文进行封装处理时,将多个业务处理资源的标识信息以及多个业务处理资源的处理顺序信息封装在第一业务报文的头部,得到第二业务报文,使得第二业务报文的头部过大,不利于报文的传输。
在本发明实施例中,将对第一业务报文的头部进行简化,便于报文的传输。
具体地,如图5所示,以两个业务处理资源对业务报文进行业务处理为例进行说明。按照本发明实施例步骤110至步骤140的描述,对业务处理资源、接收分类模块进行相应的配置,完成配置后,当用户终端接入网络时,接收分类模块接收用户终端发送的第一业务报文,识别第一业务报文的特征属性(比如:业务报文的IP地址信息、端口号信息、VLANID标识,此处的IP地址信息具体包括但不限制于源IP地址信息、目的IP地址信息)是否与转发规则中的某几项业务(比如:PPPoE业务和DPI业务)的业务特征(比如:需执行PPPoE业务和DPI业务的报文的IP地址信息、端口号信息、VLANID标识)匹配,如果匹配,则接收分类模块根据转发规则确定对第一业务报文进行业务处理的业务处理资源(比如:PPPoE业务处理资源和DPI业务处理资源),也即是对第一业务报文进行分发处理,即确定第一业务报文为需多业务处理资源才可完成对应的业务处理。
当确定2个业务处理资源对第一业务报文进行两项业务处理时,还确定 PPPoE业务处理资源和DPI业务处理资源的处理顺序,并根据确定的PPPoE业务处理资源和DPI业务处理资源的处理顺序,从转发规则中获取PPPoE业务处理资源和DPI业务处理资源的地址信息。接收分类模块对第一业务报文进行封装处理(所述封装处理具体为根据2个业务处理资源的业务处理顺序,将业务处理顺序中首个业务处理资源的标识信息以及地址信息封装在第一业务报文的头部,比如:PPPoE业务处理资源的标识信息以及地址信息),得到第二业务报文,所述第二业务报文包括PPPoE业务处理资源的标识信息以及地址信息,接收分类模块向转发模块发送第二业务报文,转发模块将第二业务报文转发至PPPoE业务处理资源内,PPPoE业务处理资源对第二业务报文进行相应的PPPoE业务处理,并识别第二业务报文的特征属性是否与业务转发规则表中的某几项业务(比如:DPI业务)的业务特征匹配,如果匹配,则PPPoE业务处理资源确定对第二业务报文还需进行业务处理的业务处理资源(比如:DPI业务处理资源),DPI从转发规则中获取DPI业务处理资源的标识信息和地址信息;如果不匹配,则将第二业务报文输出。PPPoE业务处理资源对第二业务报文进行封装处理(所述封装处理具体为将DPI业务处理资源的标识信息以及地址信息封装在第二业务报文的头部),得到第三业务报文,所述第三业务报文包括DPI业务处理资源的标识信息以及地址信息,PPPoE业务处理资源向转发模块发送第三业务报文,转发模块根据标识信息以及地址信息,向标识信息指示的DPI业务处理资源发送第三业务报文,DPI业务处理资源接收第三业务报文,DPI业务处理资源对第三业务报文进行相应的DPI业务处理,并识别第三业务报文的特征属性是否与业务转发规则表中的某几项业务的业务特征匹配,如果匹配,则DPI业务处理资源确定对第三业务报文还需进行业务处理的业务处理资源;如果不匹配,则将处理后的第三业务报文输出。
其中,在PPPoE业务处理资源、DPI业务处理资源对第二/第三业务报文进行业务处理的同时,统计模块对PPPoE/DPI业务处理资源分别进行业务性能参数的统计,并将每个业务性能参数分别发送至对应的业务适配模块,每个业务 适配模块向网络服务器发送业务性能参数,所述业务性能参数作为网络服务器对PPPoE/DPI业务处理资源调整业务负荷的依据,当需要对PPPoE/DPI业务处理资源进行改变时,网络服务器根据业务性能参数对PPPoE/DPI业务处理资源进行扩容处理,或者,对PPPoE/DPI业务处理资源进行业务重配置处理。
可以理解的是,由于将转发规则分别配置在每个业务处理资源中,让每个业务处理资源自身确定后续对业务报文处理的业务处理资源,减少业务报文头部的字节,方便灵活地对业务报文进行传输,提高了每个业务处理资源的处理效率。
在实际应用中,如果业务报文需被两个以上的业务处理资源处理,处理过程类似,在此不再复述。
本领域技术人员应该还可以进一步意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、计算机软件或者二者的结合来实现,为了清楚地说明硬件和软件的可互换性,在上述说明中已经按照功能一般性地描述了各示例的组成及步骤。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。本领域技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本发明的范围。
结合本文中所公开的实施例描述的方法或算法的步骤可以用硬件、处理器执行的软件模块,或者二者的结合来实施。软件模块可以置于随机存储器(RAM)、内存、只读存储器(ROM)、电可编程ROM、电可擦除可编程ROM、寄存器、硬盘、可移动磁盘、CD-ROM、或技术领域内所公知的任意其它形式的存储介质中。
以上所述的具体实施方式,对本发明的目的、技术方案和有益效果进行了进一步详细说明,所应理解的是,以上所述仅为本发明的具体实施方式而已,并不用于限定本发明的保护范围,凡在本发明的精神和原则之内,所做的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (11)

  1. 一种网络业务处理方法,其特征在于,所述方法包括:
    对现场可编程门阵列FPGA或者网络处理器NP划分出多个彼此隔离的业务处理资源;
    接收第一配置指令,所述第一配置指令包括第一业务配置执行文件;
    根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,以使得所述业务处理资源对待处理的业务报文进行业务处理;
    接收对所述待处理的业务报文进行业务转发时的转发规则;
    接收用户终端发送的所述待处理的业务报文,利用所述转发规则将所述待处理的业务报文分发到所述业务处理资源,以使得所述业务处理资源对所述待处理的业务报文进行业务处理。
  2. 根据权利要求1所述的网络业务处理方法,其特征在于,所述利用所述转发规则将所述待处理的业务报文分发到所述业务处理资源具体包括:
    利用所述转发规则,确定对所述待处理的业务报文进行业务处理的所述业务处理资源的个数;
    当确定1个所述业务处理资源对所述待处理的业务报文进行业务处理时,则将所述待处理的业务报文分发到确定的1个所述业务处理资源;
    当确定多个所述业务处理资源对所述待处理的业务报文进行业务处理时,则确定所述业务处理资源处理所述待处理的业务报文的处理顺序,并根据确定的所述处理顺序,将所述待处理的业务报文分发到所述处理顺序中首个所述业务处理资源。
  3. 根据权利要求1或2所述的网络业务处理方法,其特征在于,所述方法还包括:
    当所述业务处理资源对所述待处理的业务报文进行业务处理时,所述FPGA或者所述NP统计用于对所述业务处理资源进行性能监控的业务性能参数;
    所述FPGA或者所述NP向网络服务器发送所述业务性能参数,所述业务性能参数作为所述网络服务器对所述业务处理资源调整业务负荷的依据。
  4. 根据权利要求1所述的网络业务处理方法,其特征在于,所述方法还包括:
    当所述业务处理资源需要具有不同的业务功能时,接收第二配置指令,所述第二配置指令包括第二业务配置执行文件;
    根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置。
  5. 一种网络业务处理装置,其特征在于,所述装置包括:处理器、FPGA或者NP;
    所述处理器用于,对所述FPGA或者所述NP划分出多个彼此隔离的业务处理资源;
    所述处理器还用于,接收第一配置指令,所述第一配置指令包括第一业务配置执行文件,并根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,以使得所述业务处理资源对待处理的业务报文进行业务处理;
    所述FPGA或者所述NP用于,接收对所述待处理的业务报文进行业务转发时的转发规则;
    所述FPGA或者所述NP还用于,接收用户终端发送的所述待处理的业务报文,利用所述转发规则将所述待处理的业务报文分发到所述业务处理资源,以使得所述业务处理资源对所述待处理的业务报文进行业务处理。
  6. 根据权利要求5所述的网络业务处理装置,其特征在于,所述处理器还用于,当所述业务处理资源需要具有不同的业务功能时,接收第二配置指令,所述第二配置指令包括第二业务配置执行文件;
    根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置。
  7. 根据权利要求5或6所述的网络业务处理装置,其特征在于,所述处理器包括:业务适配模块;所述FPGA或者所述NP包括:接收分类模块、所述业务处理资源;
    所述业务适配模块具体用于,根据所述第一业务配置执行文件对所述业务处理资源进行业务配置,根据所述第二业务配置执行文件对所述业务处理资源进行业务重配置;
    所述接收分类模块具体用于,将所述转发规则配置在所述接收分类模块自身;
    所述业务处理资源具体用于,将所述转发规则配置在所述业务处理资源自身。
  8. 根据权利要求5所述的网络业务处理装置,其特征在于,所述接收分类模块具体用于,根据所述转发规则,确定对所述待处理的业务报文进行业务处理的所述业务处理资源的个数;
    当确定1个所述业务处理资源对所述待处理的业务报文进行业务处理时,则将所述待处理的业务报文分发到确定的1个所述业务处理资源;
    当确定多个所述业务处理资源对所述待处理的业务报文进行业务处理时,则确定所述业务处理资源处理所述待处理的业务报文的处理顺序,并根据确定的所述处理顺序,将所述待处理的业务报文分发到所述处理顺序中首个所述业务处理资源。
  9. 根据权利要求8所述的网络业务处理装置,其特征在于,所述业务处理资源还用于,
    接收所述接收分类模块传输的所述待处理的业务报文;
    对所述待处理的业务报文进行对应的业务处理;
    根据所述转发规则,确定对所述待处理的业务报文进行业务处理的下级业务处理资源;
    将业务处理后的所述待处理的业务报文传输至所述下级业务处理资源。
  10. 根据权利要求5或8或9所述的网络业务处理装置,其特征在于,所述FPGA或者NP还包括:统计模块;
    所述统计模块用于,当所述业务处理资源对所述待处理的业务报文进行业 务处理时,统计用于对所述业务处理资源进行性能监控的业务性能参数,并向所述业务适配模块发送所述业务性能参数;
    所述业务适配模块还用于,向网络服务器发送所述业务性能参数,所述业务性能参数作为所述网络服务器对所述业务处理资源调整业务负荷的依据。
  11. 根据权利要求5所述的网络业务处理装置,其特征在于,所述FPGA或者NP还包括:
    发送传输模块,用于接收经所述业务处理资源处理后的业务报文,并将所述业务报文输出;
    转发模块,用于将所述业务报文在所述接收分类模块和所述业务处理资源之间进行转发;还用于将所述业务报文在所述多个业务处理资源之间进行转发。
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