CN211554926U - Server test terminal - Google Patents

Server test terminal Download PDF

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Publication number
CN211554926U
CN211554926U CN202020013168.7U CN202020013168U CN211554926U CN 211554926 U CN211554926 U CN 211554926U CN 202020013168 U CN202020013168 U CN 202020013168U CN 211554926 U CN211554926 U CN 211554926U
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server
test
mainboard
test terminal
detection
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CN202020013168.7U
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Inventor
邓涛
王宇航
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Suzhou Inspur Intelligent Technology Co Ltd
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Suzhou Inspur Intelligent Technology Co Ltd
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Abstract

The utility model provides a server test terminal, include: the mainboard is used for executing baseline detection, PCIE bandwidth test and log detection; the preset interface is arranged on the mainboard and used for being connected with the opposite-end server; and the indicating unit is connected with the mainboard and used for indicating the test result. According to the server testing method and the server testing device, the server testing terminal is connected into the server through the preset interface, so that the server can be tested by automatically utilizing the detection programs related to baseline detection, PCIE bandwidth testing and log detection on the mainboard, the testing result is determined according to the indicating unit on the server testing terminal, the testing result does not need to depend on a computer and related peripherals, the limitation of testing conditions is reduced, and testers can flexibly test the damage of the server.

Description

Server test terminal
Technical Field
The utility model relates to a server field, in particular to server test terminal.
Background
With the development of novel technologies such as cloud computing and big data, the demand for servers is increased rapidly, the number of servers delivered to a machine room by a manufacturer of a whole machine is increased rapidly, the traditional server delivery can be delivered to the machine room only through circulation of all links, and the traditional server delivery comprises links such as loading, logistics replacement, unloading of a data center, putting on a shelf and the like when the server leaves a factory, in the links, the risk that the qualified machine leaves the factory is damaged is caused due to uneven quality of operating personnel, the current data center operator takes the damage as the most important assessment index, and the delivery quality of the manufacturer of the whole machine is assessed. Therefore, before the server is delivered to the machine room, the server needs to be tested and checked before delivery, machines passing through various links such as logistics, transportation and racking can be delivered to the machine room under the condition that no fault is confirmed, and the DOA delivered to the server in the machine room is reduced to the failure rate. At present, the server is tested one by using a computer (comprising a display and a keyboard and mouse), a test program is run on the computer, and a test result is monitored. However, it is required that a computer and corresponding peripherals are prepared for each test, which brings great inconvenience to the testing work of the tester.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a server test terminal can independently accomplish the loss test of server independent of computer test.
In order to solve the technical problem, the utility model provides a server test terminal, include:
the mainboard is used for executing baseline detection, PCIE bandwidth test and log detection;
the preset interface is arranged on the mainboard and used for being connected with the opposite-end server;
and the indicating unit is connected with the mainboard and used for indicating the test result.
Wherein, still include:
and the energy storage unit is used for supplying power to the main board and the indicating unit.
Wherein, the energy storage unit is a rechargeable battery or an electrolytic capacitor.
And the preset interface is a USB interface.
The indicating unit comprises three LED lamps which are respectively used for indicating a baseline detection result, a PCIE bandwidth test result and a log detection result.
Wherein, the server test terminal further comprises:
and the independent storage unit is arranged on the mainboard and used for storing the fault log generated by the test result.
Wherein, the server test terminal further comprises:
and the communication module is arranged on the mainboard and used for transmitting the test result or the fault log.
Wherein, the communication module is a Bluetooth module or a Zigbee module.
The utility model provides a server test terminal, include: the mainboard is used for executing baseline detection, PCIE bandwidth test and log detection; the preset interface is arranged on the mainboard and used for being connected with the opposite-end server; and the indicating unit is connected with the mainboard and used for indicating the test result.
According to the server testing method and the server testing device, the server testing terminal is connected into the server through the preset interface, so that the server can be tested by automatically utilizing the detection programs related to baseline detection, PCIE bandwidth testing and log detection on the mainboard, the testing result is determined according to the indicating unit on the server testing terminal, the testing result does not need to depend on a computer and related peripherals, the limitation of testing conditions is reduced, and testers can flexibly test the damage of the server.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts.
Fig. 1 is the utility model provides a pair of server test terminal's schematic structure.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Please refer to fig. 1, fig. 1 is a schematic structural diagram of a server test terminal according to the present invention, where the terminal includes:
the mainboard is used for executing baseline detection, PCIE bandwidth test and log detection;
the preset interface is arranged on the mainboard and used for being connected with the opposite-end server;
and the indicating unit is connected with the mainboard and used for indicating the test result.
The mainboard is used for executing baseline detection, PCIE bandwidth test and log detection, and the default mainboard comprises a processor and a memory, wherein the processor can execute a computer program stored in the memory so as to execute the baseline detection, the PCIE bandwidth test and the log detection on the server.
The baseline detection needs to compare the baseline file actually captured by the test script with the script in the script database, and determine whether the test machine conforms to the baseline file. PCIE bandwidth testing requires validation of the Width and Speed of the tested machine. Comparing the log keywords requires confirming that no error is reported in the log, and the log comprises messages log detection, dmesg log detection, sel log detection, mcelog detection and the like.
The preset interface in the terminal is not limited, and the most common USB interface, including USB2.0 or USB3.0 interface, may be selected.
According to the embodiment of the application, the server testing terminal is accessed into the server through the preset interface, so that the server can be tested by automatically utilizing the detection programs related to baseline detection, PCIE bandwidth testing and log detection on the mainboard, the testing result is determined according to the indicating unit on the server testing terminal, the testing result does not need to depend on a computer and related peripherals, the limitation of testing conditions is reduced, and testers can flexibly test the damage of the server.
Preferably, the indicating unit may include three LED lamps, which are respectively used for indicating the baseline detection result, the PCIE bandwidth test result, and the log detection result.
It should be noted that, if the indication unit can indicate each test separately, the test sequence of each test is not limited in detail.
Certainly, the indicating unit may also include only one LED lamp, and at this time, the test sequence may be defined, for example, comparing the baseline file first, detecting the speed and number of the PCIE devices, and finally detecting whether the system log reports an error, and the flashing frequency or the lamp color of the LED lamp is used as a prompt between the test items.
More preferably, the server test terminal may directly call the ID lamp of the server without providing an LED lamp. At the moment, the test result can be comprehensively determined according to the lamp lighting time length and the flicker frequency of the ID lamp.
The following introduces a test method for a server test terminal provided by the present application, and is applied to a test scenario in which the server test terminal includes an LED lamp or an ID lamp of a server that the server test terminal calls, and the following description takes the server ID lamp as an example, and a specific test process is as follows:
the server test terminal is accessed to the server, the ID lamp is turned on for 1 second to indicate that the access is successful, and then the ID is turned off;
starting various test programs or scripts on a server test terminal mainboard, entering baseline detection, and normally lighting an ID lamp; if the test is successful, the lamp is turned off; if the test fails, the ID lamp quickly flickers until the lamp is turned off, and the test failure is indicated;
entering a PCIE bandwidth test, and if the test is successful, turning off a lamp; if the test fails, the ID lamp quickly flickers until the lamp is turned off, and the test failure is indicated;
entering log detection, if the test is successful, slowly flashing the ID lamps at intervals until the lamps are turned off, and indicating that the test is finished and the test is successful; if the test fails, the ID lamp quickly flickers until the lamp is turned off, and the test fails.
The detection sequence of the baseline detection, the PCIE bandwidth test, and the log detection described above is only one preferred detection sequence provided in the present application, and is not limited to the detection sequence of each detection in the present application.
Based on the foregoing embodiment, as a preferred embodiment, the server test terminal may further include:
and the energy storage unit is used for supplying power to the main board and the indicating unit and is a rechargeable battery or an electrolytic capacitor.
The server test terminal may include an independent energy storage unit, that is, the server test terminal includes an energy storage unit for supplying power to the main board and the indication unit.
However, it should be noted that the server test terminal may not use any energy storage unit, and when the terminal accesses the server, the server supplies power to the test terminal through the interface, so as to meet the test requirement and the power supply requirement of the indication unit.
Based on the foregoing embodiment, as a preferred embodiment, the server test terminal may further include:
and the independent storage unit is arranged on the mainboard and used for storing the fault log generated by the test result.
The embodiment of the application comprises an independent storage unit, which is used for storing the fault log corresponding to the test result, wherein the fault log can comprise server information, detection time, fault reasons and the like, so that a person skilled in the art can determine which server has a fault, fault detection time and the like according to the fault log, determine the location of the fault and conveniently maintain the server.
Based on the foregoing embodiment, as a preferred embodiment, the server test terminal may further include:
and the communication module is arranged on the mainboard and used for transmitting the test result or the fault log.
In this embodiment, the server test terminal may further include a communication module, configured to transmit the test result or the fault log to an external device. In the actual detection process, batch detection is usually required, and when a certain server is detected to be out of order, only manual marking can be relied on. On the basis of the above embodiments, the embodiment of the present application may transmit the test result or the fault log to other devices, so that a person skilled in the art can directly determine where the fault server is located.
In addition, the communication module can also be used for transmitting the test script, namely the server test terminal can also contain other server test scripts or programs, and the related test programs or scripts are transmitted to the server test terminal through the communication module, so that the server test terminal can be used for performing damage detection on the server conveniently.
Furthermore, the communication module can also be used for debugging or self-checking of the server test terminal. Before the server test is performed, it is usually necessary to ensure that the server test terminal is normal, and at this time, the communication module may be used to perform self-test or debugging of the server test terminal.
The communication module is not particularly limited, and preferably, the communication module is a bluetooth module or a Zigbee module.
The principles and embodiments of the present invention have been explained herein using specific examples, and the above descriptions of the embodiments are only used to help understand the method and its core ideas of the present invention. It should be noted that, for those skilled in the art, without departing from the principle of the present invention, the present invention can be further modified and modified, and such modifications and modifications also fall within the protection scope of the appended claims.

Claims (8)

1. A server test terminal, comprising:
the mainboard is used for executing baseline detection, PCIE bandwidth test and log detection;
the preset interface is arranged on the mainboard and used for being connected with the opposite-end server;
and the indicating unit is connected with the mainboard and used for indicating the test result.
2. The server test terminal of claim 1, further comprising:
and the energy storage unit is used for supplying power to the main board and the indicating unit.
3. The server test terminal according to claim 2, wherein the energy storage unit is a rechargeable battery or an electrolytic capacitor.
4. The server test terminal according to claim 1, wherein the predetermined interface is a USB interface.
5. The server test terminal according to claim 1 or 2, wherein the indication unit includes three LED lights respectively used for indicating the baseline detection result, the PCIE bandwidth test result, and the log detection result.
6. The server test terminal of claim 1, further comprising:
and the independent storage unit is arranged on the mainboard and used for storing the fault log generated by the test result.
7. The server test terminal according to claim 1 or 6, wherein the server test terminal further comprises:
and the communication module is arranged on the mainboard and used for transmitting the test result or the fault log.
8. The server test terminal according to claim 7, wherein the communication module is a bluetooth module or a Zigbee module.
CN202020013168.7U 2020-01-03 2020-01-03 Server test terminal Active CN211554926U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020013168.7U CN211554926U (en) 2020-01-03 2020-01-03 Server test terminal

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020013168.7U CN211554926U (en) 2020-01-03 2020-01-03 Server test terminal

Publications (1)

Publication Number Publication Date
CN211554926U true CN211554926U (en) 2020-09-22

Family

ID=72489965

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020013168.7U Active CN211554926U (en) 2020-01-03 2020-01-03 Server test terminal

Country Status (1)

Country Link
CN (1) CN211554926U (en)

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