Method and device for detecting distributed denial of service
A technology for distributed rejection and detection equipment, applied in electrical components, transmission systems, etc., can solve problems such as poor scalability, high development costs, and long development cycles, and achieve the effects of reducing development costs, shortening development cycles, and improving processing performance.
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Embodiment 1
[0044] figure 1 The flow chart of the method for detecting DDoS provided by Embodiment 1 of the present invention, such as figure 1 As shown, the method may include the following steps:
[0045] Step 101: pre-set N processing processes and N cores to be bound one by one, and the N processing processes perform DDoS feature analysis on data packets entering the detection device in a shared manner, and N is an integer greater than 2.
[0046] Under the many-core hardware platform, multiple processing processes are used to analyze DDoS characteristics in a shared manner. In the embodiment of the present invention, the data packets entering the detection device can mirror the traffic from the Internet service provider (ISP) to the detection device through the optical splitting and mirroring platform, and the data packets entering the detection device are unified in the packet receiving queue. The above N Each processing process can use round-robin scheduling (round-robin) to shar...
Embodiment 2
[0067] Image 6 The device structure diagram provided for the second embodiment of the present invention, such as Image 6 As shown, the device may include:
[0068] The initialization unit 600 is configured to preset binding of N processing processes and N cores one by one, where N is an integer greater than 2. The initialization module 600 is responsible for creating, configuring, and initializing processes, completing configuration of policy information in the device, and completing dynamic loading and dynamic modification of all policies by receiving external information.
[0069] N processing processes 610 are configured to perform DDoS feature analysis on data packets entering the detection device in a shared manner. In addition to being responsible for receiving packets, that is, obtaining data packets from the packet receiving queue, the processing process also calls the callback callback function in the statistical process 620 and the detection unit 630 to complete ...
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