Method for intelligently distributing static management addresses of switches in local area network
An intelligent distribution and switch technology, applied in the Ethernet field, can solve problems such as time-consuming and labor-intensive, inconvenient network management, address conflicts, etc., to improve accuracy and accuracy, improve stability and reliability, and achieve a high degree of intelligence. Effect
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no. 1 example
[0041] Such as figure 1 As shown, the present invention describes a method for intelligently assigning a static management address of a switch in a local area network, wherein the method includes the following steps:
[0042] S1. Obtain a list of designed switches, including importing data that meets design expectations into the system; its function is to import data such as network addresses that meet design expectations into the system;
[0043] Obtain a list of unique temporary network addresses, including importing unique temporary network addresses into the system; its function is to import unique temporary network addresses into the system, so as to eliminate the need to use unique when the design network address is occupied by other switches The temporary network address for .
[0044] Obtain the actual switch list and related data, specifically including obtaining the management MAC address and actual management network address of the switch adjacent to the host by ca...
no. 2 example
[0061] The second embodiment is characterized by first setting the network addresses of all actual switches in the local area network to non-repeated network addresses, and then setting the corresponding switches to static network addresses that meet design expectations according to the designed network addresses of the switches.
[0062] When setting the switch as the design network address, first set the actual network address and the design network address to be the same as the configuration is successful, and then select the switch that has not been configured successfully and the design network address of the switch is not occupied by other actual switches, and set the switch to Set it to meet the expected network address of the design until no switch meeting the condition is found in the actual switch list; then check whether all the actual switches in the actual switch list are configured to meet the expected network address of the design; To configure the switches that ...
no. 3 example
[0092] The difference between this third embodiment and the second embodiment is:
[0093] (1) Step S9 is referred to between step S4 and step S6, that is, if step S4 does not have a repeated actual network address in the whole network, the second implementation example is to proceed to step S6, and the third embodiment is to proceed to Step S9;
[0094] (2) The second implementation example does not find that the actual network address is consistent with the designed network address in step S7 and proceeds to step S9, and the third embodiment directly proceeds to step S10 in this case;
[0095] (3) After step S9 of the second implementation example, directly proceed to step S10, and step S9 of the third implementation example directly proceeds to step S6;
[0096] Such as image 3 As shown, the third embodiment includes the following steps:
[0097] S1. Obtain a list of designed switches, which is used to design data of switches required by the present invention, including...
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