TWI802443B - Intelligent test configuration and download synchronization system and method thereof - Google Patents

Intelligent test configuration and download synchronization system and method thereof Download PDF

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TWI802443B
TWI802443B TW111122502A TW111122502A TWI802443B TW I802443 B TWI802443 B TW I802443B TW 111122502 A TW111122502 A TW 111122502A TW 111122502 A TW111122502 A TW 111122502A TW I802443 B TWI802443 B TW I802443B
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TW202402019A (en
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宋寶棟
趙志廣
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英業達股份有限公司
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An intelligent test configuration and download synchronization system is disclosed in the present invention. The intelligent test configuration and download synchronization system includes a receiving module, a pairing module, a determination module, and a controlling module. The receiving module is utilized to receive a plurality of identification codes of a plurality of unit under test servers. The pairing module is utilized to pair the plurality of unit under test servers with a pairing rule. The determination module is utilized to determinate the plurality of unit under test servers are in a standby state of being network bandwidth testing assignment. At last, the controlling module is utilized to control the plurality of unit under test servers to execute a network bandwidth testing assignment synchronously. An intelligent test configuration and download synchronization method is also disclosed in the present invention.

Description

智能自動化配對同步測試系統及其方法Intelligent automatic pairing synchronization test system and method thereof

本發明係有關於一種系統及方法,尤其是指一種智能自動化配對同步測試系統及其方法。The present invention relates to a system and a method, in particular to an intelligent automatic pairing synchronization test system and a method thereof.

智能自動化測試系統(Intelligent Test Configuration and Download;ITCnD)係用以對待測伺服器進行性能測試作業。一般來說,性能測試作業通常包含內存測試作業、硬碟測試作業、中央處理單元(Central Processing Unit;CPU)測試作業、網路壓力測試作業、散熱組合測試作業、基板管理控制器(Board Management Controller;BMC)測試作業等。其中,各性能測試作業有其對應的性能測試工具,舉例來說,網路壓力測試作業通常是利用網路性能測試工具進行測試,常見的網路性能測試工具為Iperf。The intelligent automated test system (Intelligent Test Configuration and Download; ITCnD) is used for performance testing of the server under test. Generally speaking, the performance test operation usually includes memory test operation, hard disk test operation, central processing unit (Central Processing Unit; CPU) test operation, network stress test operation, thermal combination test operation, baseboard management controller (Board Management Controller) test operation, etc. ; BMC) test assignments, etc. Each performance testing job has its corresponding performance testing tool. For example, the network stress testing job usually uses a network performance testing tool for testing, and a common network performance testing tool is Iperf.

然而,在先前技術中,智能自動化測試系統測試複數個待測伺服器且進行性能測試作業中的網路壓力測試作業時,智能自動化測試系統針對單機網路壓力測試作業無法實現待測伺服器之間配對邏輯功能,並且需要等到複數個待測伺服器同步進行網路壓力測試作業的網路性能測試工具,才能使下一個待測伺服器進行網路壓力測試作業。因此,先前技術存在改善的空間。However, in the prior art, when the intelligent automated test system tests a plurality of servers to be tested and performs the network stress test operation in the performance test operation, the intelligent automated test system cannot realize the connection between the servers to be tested for the single-machine network stress test operation. It is a network performance testing tool that has indirect logical functions and needs to wait until multiple servers to be tested perform network stress testing operations synchronously before the next server to be tested can perform network stress testing operations. Therefore, there is room for improvement in the prior art.

有鑒於在先前技術中,智能自動化測試系統測試複數個待測伺服器且進行性能測試作業中的網路壓力測試作業時,一次僅能對一個待測伺服器進行網路壓力測試作業,並且需要等到該待測伺服器結束該網路壓力測試作業後,才能對下一個待測伺服器進行網路壓力測試作業及其衍生出的種種問題。本發明之一主要目的係提供一種智能自動化配對同步測試系統及其方法,用以解決先前技術中的至少一個問題。In view of the prior art, when the intelligent automated test system tests a plurality of servers to be tested and performs the network stress test operation in the performance test operation, only one server to be tested can be subjected to the network stress test operation at a time, and it needs After the server to be tested finishes the network stress test operation, the network stress test operation and various problems derived therefrom can be performed on the next server to be tested. One of the main objectives of the present invention is to provide an intelligent automatic pairing synchronization testing system and its method to solve at least one problem in the prior art.

本發明為解決先前技術之問題,所採用之必要技術手段為提供一種智能自動化配對同步測試系統,係用以對複數個待測伺服器進行複數個性能測試作業,且性能測試作業中至少包含一網路壓力測試作業,智能自動化配對同步測試系統係包含一接收模組、一配對模組、一狀態判定模組與一控制模組。接收模組用以接收待測伺服器之複數個伺服器識別碼。配對模組電性連接接收模組,用以接收伺服器識別碼,並利用一配對規則,將每一待測伺服器進行配對,且在偵測到每一待測伺服器及其配對之待測伺服器時,產生一配對成功信號。狀態判定模組電性連接接收模組,用以接收伺服器識別碼,並在判定每一待測伺服器及其配對之待測伺服器都位於待命進行網路壓力測試作業時,產生一待命成功信號。控制模組電性連接配對模組與狀態判定模組,用以在接收到配對成功信號與待命成功信號時,控制待測伺服器以及其配對之待測伺服器同時進行網路壓力測試作業,並同時完成網路壓力測試作業。In order to solve the problems of the prior art, the necessary technical means adopted by the present invention is to provide an intelligent automatic matching synchronous test system, which is used to perform multiple performance test operations on a plurality of servers to be tested, and the performance test operations include at least one For network pressure testing operations, the intelligent automatic pairing and synchronous testing system includes a receiving module, a pairing module, a status determination module and a control module. The receiving module is used for receiving multiple server identification codes of the server to be tested. The pairing module is electrically connected to the receiving module to receive the server identification code, and use a pairing rule to pair each server to be tested, and after detecting each server to be tested and its paired When testing the server, a pairing success signal is generated. The status judging module is electrically connected to the receiving module to receive the server identification code, and when it is judged that each server to be tested and its paired server to be tested are on standby for network stress testing operations, a standby success signal. The control module is electrically connected to the pairing module and the state determination module, and is used to control the server under test and its paired server under test to perform network stress testing operations at the same time when receiving the pairing success signal and the standby success signal. And at the same time complete the network stress test assignment.

在上述必要技術手段的基礎下,本發明所衍生之一附屬技術手段為使智能自動化配對同步測試系統中之接收模組,更包含一接收單元,接收單元用以被動地接收伺服器識別碼。On the basis of the above-mentioned necessary technical means, an auxiliary technical means derived from the present invention is to make the receiving module in the intelligent automatic pairing synchronization test system further include a receiving unit, which is used to passively receive the server identification code.

在上述必要技術手段的基礎下,本發明所衍生之一附屬技術手段為使智能自動化配對同步測試系統中之接收模組,更包含一詢問單元,詢問單元係用以主動地詢問待測伺服器,藉以接收伺服器識別碼。On the basis of the above-mentioned necessary technical means, an auxiliary technical means derived from the present invention is to make the receiving module in the intelligent automatic pairing synchronization test system further include an inquiry unit, which is used to actively inquire about the server to be tested to receive the server identifier.

在上述必要技術手段的基礎下,本發明所衍生之一附屬技術手段為使智能自動化配對同步測試系統中之配對模組,更包含一第一時間單元,第一時間單元用以計算一第一時間,並在計算完第一時間且並未偵測到每一待測伺服器及其配對之待測伺服器時,使配對模組產生一配對失敗信號。On the basis of the above-mentioned necessary technical means, an auxiliary technical means derived from the present invention is to make the pairing module in the intelligent automatic pairing synchronization test system further include a first time unit, which is used to calculate a first time unit. time, and when the first time is calculated and every server under test and its paired server under test are not detected, the pairing module generates a pairing failure signal.

在上述必要技術手段的基礎下,本發明所衍生之一附屬技術手段為使智能自動化配對同步測試系統中之狀態判定模組,更包含一第二時間單元,第二時間單元用以計算一第二時間,並在計算完第二時間且判定每一待測伺服器及其配對之待測伺服器並非都位於待命進行網路壓力測試作業時,產生一待命失敗信號。On the basis of the above-mentioned necessary technical means, an auxiliary technical means derived from the present invention is to make the state judgment module in the intelligent automatic pairing synchronization test system further include a second time unit, which is used to calculate a first time unit. Second time, and when the calculation of the second time is completed and it is determined that each server to be tested and its paired server to be tested are not all on standby for network stress testing operations, a standby failure signal is generated.

在上述必要技術手段的基礎下,本發明所衍生之一附屬技術手段為使智能自動化配對同步測試系統,更包含一警示模組,該警示模組係電性連接該控制模組,用以在該控制模組並未偵測到每一待測伺服器及其配對之待測伺服器時,或者在該控制模組判定每一待測伺服器及其配對之待測伺服器並非都位於待命進行該網路壓力測試作業時,產生一警示信號。On the basis of the above-mentioned necessary technical means, an auxiliary technical means derived from the present invention is to make the intelligent automatic pairing and synchronous testing system, which further includes a warning module, which is electrically connected to the control module for When the control module does not detect each server under test and its paired server under test, or when the control module determines that each server under test and its paired server under test are not all on standby When performing the network stress test operation, a warning signal is generated.

本發明為解決先前技術之問題,所採用之必要技術手段為另外提供一種智能自動化配對同步測試方法,係利用如上述之智能自動化配對同步測試系統加以實施,並包含以下步驟:利用接收模組接收伺服器識別碼;利用配對模組在偵測到每一待測伺服器及其配對之待測伺服器時,產生配對成功信號;利用狀態判定模組,在判定每一待測伺服器及其配對之待測伺服器都位於待命進行網路壓力測試作業時,產生待命成功信號;以及,利用控制模組,在接收到配對成功信號與待命成功信號時,控制待測伺服器以及其配對之待測伺服器同時進行網路壓力測試作業,並同時完成網路壓力測試作業。In order to solve the problems of the prior art, the necessary technical means adopted by the present invention is to provide an additional intelligent automatic pairing synchronization test method, which is implemented by using the above-mentioned intelligent automatic pairing synchronization test system, and includes the following steps: using the receiving module to receive Server identification code; Utilize pairing module to generate pairing success signal when detecting each server to be tested and its paired server to be tested; Utilize status judgment module to determine each server to be tested and its pairing When the paired servers to be tested are on standby for network stress testing operations, a standby success signal is generated; and, when receiving the pairing success signal and the standby success signal, the control module controls the server to be tested and its The server to be tested carries out the network stress test operation at the same time, and completes the network stress test operation at the same time.

承上所述,本發明所提供之智能自動化配對同步測試系統及其方法,利用接收模組、配對模組、狀態判定模組與控制模組,對複數個待測伺服器進行複數個性能測試作業。相較於先前技術,本發明可以達到控制每一待測伺服器及其配對之待測伺服器同時進行該網路壓力測試作業,並且同時完成並結束該網路壓力測試作業的功效。此外,接收模組的接收單元與詢問單元可以達到主動詢問或是被動接收伺服器識別碼的功效。警示模組更可以產生警示信號,達到提醒使用者的功效。較佳者,本發明還可以利用配對模組的第一時間單元與狀態判定模組的第二時間單元搭配警示模組。Based on the above, the intelligent automatic pairing synchronization test system and method provided by the present invention use the receiving module, pairing module, status determination module and control module to perform multiple performance tests on multiple servers to be tested Operation. Compared with the prior art, the present invention can achieve the effect of controlling each server to be tested and its paired server to perform the network stress test operation at the same time, and complete and end the network stress test operation at the same time. In addition, the receiving unit and the inquiry unit of the receiving module can achieve the function of actively inquiring or passively receiving the server identification code. The warning module can also generate warning signals to remind users. Preferably, the present invention can also use the first time unit of the pairing module and the second time unit of the state determination module to cooperate with the warning module.

下面將結合示意圖對本發明的具體實施方式進行更詳細的描述。根據下列描述和申請專利範圍,本發明的優點和特徵將更清楚。需說明的是,圖式均採用非常簡化的形式且均使用非精準的比例,僅用以方便、明晰地輔助說明本發明實施例的目的。The specific implementation manner of the present invention will be described in more detail below with reference to schematic diagrams. The advantages and features of the present invention will be more clear from the following description and claims. It should be noted that all the drawings are in very simplified form and use imprecise scales, which are only used to facilitate and clearly assist the purpose of illustrating the embodiments of the present invention.

請參閱第一圖與第二圖,其中,第一圖係顯示本發明較佳實施例所提供之智能自動化配對同步測試系統之方塊圖;以及,第二圖係顯示本發明較佳實施例所提供之智能自動化配對同步測試方法之流程圖。如圖所示,一種智能自動化配對同步測試系統1用以對複數個待測伺服器S1、S2、S3(圖式繪製三個示意)進行複數個性能測試作業,並包含一接收模組11、一配對模組12、一狀態判定模組13與一控制模組14。其中,性能測試作業至少包含一網路壓力測試作業。Please refer to the first figure and the second figure, wherein, the first figure shows the block diagram of the intelligent automatic pairing synchronization test system provided by the preferred embodiment of the present invention; and, the second figure shows the preferred embodiment of the present invention. The flow chart of the intelligent automatic pairing synchronization testing method provided. As shown in the figure, an intelligent automatic pairing and synchronous testing system 1 is used to perform multiple performance testing operations on multiple servers to be tested S1, S2, and S3 (three diagrams are drawn), and includes a receiving module 11, A pairing module 12 , a status determination module 13 and a control module 14 . Wherein, the performance test job includes at least one network stress test job.

一般來說,性能測試作業通常包含內存測試作業、硬碟測試作業、中央處理單元(Central Processing Unit;CPU)測試作業、網路壓力測試作業、散熱組合測試作業、基板管理控制器(Board Management Controller;BMC)測試作業等。其中,各性能測試作業有其對應的性能測試工具,舉例來說,網路壓力測試作業通常是利用網路性能測試工具進行測試,常見的網路性能測試工具為Iperf。Generally speaking, the performance test operation usually includes memory test operation, hard disk test operation, central processing unit (Central Processing Unit; CPU) test operation, network stress test operation, thermal combination test operation, baseboard management controller (Board Management Controller) test operation, etc. ; BMC) test assignments, etc. Each performance testing job has its corresponding performance testing tool. For example, the network stress testing job usually uses a network performance testing tool for testing, and a common network performance testing tool is Iperf.

一種智能自動化配對同步測試方法係利用智能自動化配對同步測試系統1加以實施,並包含以下步驟S101至步驟S104。An intelligent automatic pairing synchronization test method is implemented by using the intelligent automatic pairing synchronization test system 1, and includes the following steps S101 to S104.

步驟S101:利用接收模組接收待測伺服器之伺服器識別碼。Step S101: Use the receiving module to receive the server identification code of the server to be tested.

接收模組11電性連接待測伺服器S1、S2、S3,用以接收每一待測伺服器S1、S2、S3的每一個伺服器識別碼SC1、SC2、SC3,藉以接收到複數個上述的伺服器識別碼SC1、SC2、SC3。每個待測伺服器S1、S2、S3會有其對應的伺服器識別碼SC1、SC2、SC3,藉以對應其身分。伺服器識別碼SC1、SC2、SC3可以是數字、英文或是其組合,藉以對應其所代表的待測伺服器S1、S2、S3。The receiving module 11 is electrically connected to the servers to be tested S1, S2, and S3 to receive each server identification code SC1, SC2, and SC3 of each of the servers to be tested S1, S2, and S3, thereby receiving a plurality of the above-mentioned The server identification code SC1, SC2, SC3. Each server S1, S2, S3 to be tested has its corresponding server identification code SC1, SC2, SC3, so as to correspond to its identity. The server identification codes SC1 , SC2 , SC3 can be numbers, English or a combination thereof, so as to correspond to the servers S1 , S2 , S3 they represent to be tested.

在本實施例中,接收模組11更包含一接收單元111。接收單元111用以被動地接收待測伺服器S1、S2、S3的伺服器識別碼SC1、SC2、SC3。In this embodiment, the receiving module 11 further includes a receiving unit 111 . The receiving unit 111 is used for passively receiving server identification codes SC1 , SC2 , SC3 of the servers S1 , S2 , S3 to be tested.

在本實施例中,接收模組11更包含一詢問單元112。詢問單元112用以主動地詢問待測伺服器S1、S2、S3,藉以接收伺服器識別碼SC1、SC2、SC3。In this embodiment, the receiving module 11 further includes an inquiry unit 112 . The inquiry unit 112 is used for actively inquiring the servers S1, S2, S3 to be tested, so as to receive the server identification codes SC1, SC2, SC3.

雖然本實施例中,接收模組11同時包含接收單元111與詢問單元112,但不以此為限。接收模組11可以僅包含接收單元111與詢問單元112中的一者。Although in this embodiment, the receiving module 11 includes the receiving unit 111 and the inquiry unit 112 at the same time, it is not limited thereto. The receiving module 11 may only include one of the receiving unit 111 and the inquiry unit 112 .

步驟S102:利用配對模組判斷是否配對。Step S102: Use the pairing module to determine whether to pair.

配對模組12電性連接接收模組11,用以接收待測伺服器S1、S2、S3的伺服器識別碼SC1、SC2、SC3,並利用一配對規則,將每一待測伺服器S1、S2、S3進行配對,且在偵測到每一待測伺服器S1、S2、S3及其配對之待測伺服器時,產生一配對成功信號。The pairing module 12 is electrically connected to the receiving module 11 for receiving the server identification codes SC1, SC2, and SC3 of the servers S1, S2, and S3 to be tested, and uses a pairing rule to connect each server S1, S2, and S3 to be tested. S2 and S3 perform pairing, and generate a pairing success signal when detecting each server under test S1 , S2 , S3 and its paired server under test.

舉例說明,如果待測伺服器的數量如圖所繪製的大於1的奇數個,即待測伺服器S1、待測伺服器S2與待測伺服器S3。配對模組12的配對規則即為待測伺服器S1與待測伺服器S2配對,待測伺服器S2與待測伺服器S3配對,待測伺服器S3與待測伺服器S1配對。因此,配對模組12在偵測到待測伺服器S1、待測伺服器S2與待測伺服器S3後,才會產生配對成功信號。For example, if the number of servers to be tested is an odd number greater than 1 as shown in the figure, that is, the server to be tested S1 , the server to be tested S2 , and the server to be tested S3 . The pairing rule of the pairing module 12 is that the server S1 to be tested is paired with the server S2 to be tested, the server S2 to be tested is paired with the server S3 to be tested, and the server S3 to be tested is paired with the server S1 to be tested. Therefore, the pairing module 12 will generate a pairing success signal only after detecting the server under test S1 , the server under test S2 , and the server under test S3 .

也就是說,若配對模組12沒有偵測到待測伺服器S1、待測伺服器S2或待測伺服器S3的任一個,便不會產生配對成功信號。舉例來說,若配對模組12沒有偵測到待測伺服器S2,表示只有待測伺服器S3與待測伺服器S1配對,待測伺服器S1與待測伺服器S2並沒有配對,待測伺服器S2也沒有與待測伺服器S3配對,故配對模組12不會產生配對成功信號。That is to say, if the pairing module 12 does not detect any one of the server under test S1 , the server under test S2 , or the server under test S3 , it will not generate a pairing success signal. For example, if the pairing module 12 does not detect the server S2 to be tested, it means that only the server S3 to be tested is paired with the server S1 to be tested, and the server S1 to be tested is not paired with the server S2 to be tested. The server under test S2 is not paired with the server under test S3 either, so the pairing module 12 will not generate a pairing success signal.

另外,以圖式的待測伺服器S1與待測伺服器S2舉例說明,待測伺服器的數量為偶數個,即待測伺服器S1與待測伺服器S2。配對模組12的配對規則即為待測伺服器S1與待測伺服器S2配對。因此,配對模組12在偵測到待測伺服器S1與待測伺服器S2後,才會產生配對成功信號。也就是說,若配對模組12沒有偵測到待測伺服器S1或待測伺服器S2的任一個,便不會產生配對成功信號。In addition, taking the server S1 to be tested and the server S2 to be tested as an example for illustration, the number of servers to be tested is an even number, that is, the server S1 to be tested and the server S2 to be tested. The pairing rule of the pairing module 12 is that the server S1 to be tested is paired with the server S2 to be tested. Therefore, the pairing module 12 generates a pairing success signal only after detecting the server S1 under test and the server S2 under test. That is to say, if the pairing module 12 does not detect any one of the server under test S1 or the server under test S2 , it will not generate a pairing success signal.

進一步說明,待測伺服器的數量若為十個,則配對模組12的配對規則便會將十個待測伺服器分為五組,每組的兩個待測伺服器互相配對;待測伺服器的數量若為十一個,則配對模組12的配對規則便會將十一個待測伺服器分為五組,前面四組中每組的待測伺服器的數量為兩個且互相配對,第五組的待測伺服器的數量為三個且彼此互相配對。To further illustrate, if the number of servers to be tested is ten, the pairing rules of the matching module 12 will divide the ten servers to be tested into five groups, and the two servers to be tested in each group will be paired with each other; If the number of servers is eleven, the pairing rules of the matching module 12 will divide the eleven servers to be tested into five groups, and the number of servers to be tested in each group in the first four groups is two and paired with each other, the number of the servers to be tested in the fifth group is three and they are paired with each other.

步驟S103:利用狀態判定模組判斷是否待命進行網路壓力測試作業。Step S103: Use the state determination module to determine whether to be on standby for network stress testing.

狀態判定模組13電性連接接收模組11,用以接收待測伺服器S1、S2、S3的伺服器識別碼SC1、SC2、SC3,並在判定每一待測伺服器S1、S2、S3及其配對之待測伺服器都位於待命進行網路壓力測試作業時,產生一待命成功信號。舉例來說,狀態判定模組13在判定待測伺服器S1、待測伺服器S2與待測伺服器S3都位於待命進行網路壓力測試作業時,並會產生待命成功信號。因為待測伺服器S1位於待命進行網路壓力測試作業,待測伺服器S1所配對的待測伺服器S2也位於待命進行網路壓力測試作業,且待測伺服器S2所配對的待測伺服器S3也位於待命進行網路壓力測試作業,故狀態判定模組13會產生待命成功信號。The status judging module 13 is electrically connected to the receiving module 11 to receive the server identification codes SC1, SC2, and SC3 of the servers under test S1, S2, and S3, and determine the status of each server under test S1, S2, and S3. When the server and its paired server to be tested are all on standby for network stress test operations, a standby success signal is generated. For example, when the state judging module 13 determines that the server S1 under test, the server S2 under test and the server S3 under test are all on standby for the network stress test operation, it will generate a standby success signal. Because the server under test S1 is on standby for the network stress test operation, the server under test S2 paired with the server under test S1 is also on standby for the network stress test operation, and the server under test paired with the server under test S2 The device S3 is also on standby to perform the network stress test operation, so the state determination module 13 will generate a standby success signal.

同理,如上所述,若待測伺服器的數量為偶數個,即待測伺服器S1與待測伺服器S2,則狀態判定模組13在判定待測伺服器S1與待測伺服器S2都位於待命進行網路壓力測試作業時,並會產生待命成功信號。Similarly, as mentioned above, if the number of servers to be tested is an even number, that is, the server to be tested S1 and the server to be tested S2, then the state determination module 13 is determining whether the server to be tested S1 and the server to be tested S2 They are all on standby for network stress testing, and will generate a standby success signal.

步驟S104:利用控制模組控制待測伺服器以及其配對之待測伺服器同時進行網路壓力測試作業,並同時完成網路壓力測試作業。Step S104: Use the control module to control the server under test and its paired server under test to simultaneously perform network stress testing operations, and complete the network stress testing operations at the same time.

控制模組14電性連接配對模組12與狀態判定模組13,用以在接收到配對成功信號與待命成功信號時,控制待測伺服器S1、S2、S3同時進行網路壓力測試作業,並同時完成該網路壓力測試作業。The control module 14 is electrically connected to the pairing module 12 and the state determination module 13, and is used to control the servers S1, S2, and S3 to be tested to perform network stress testing operations at the same time when receiving the pairing success signal and the standby success signal. And at the same time complete the network stress test operation.

控制模組14接收到配對成功信號與待命成功信號,表示配對模組12已經偵測到每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1),而且,狀態判定模組13已經判定每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1)都位於待命進行該網路壓力測試作業。因此,控制模組14可以控制每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1)同時進行該網路壓力測試作業,並且同時完成並結束該網路壓力測試作業。The control module 14 receives the pairing success signal and the standby success signal, indicating that the pairing module 12 has detected each server to be tested (such as servers to be tested S1, S2, S3) and its paired servers to be tested ( Such as the paired servers to be tested S2, S3, S1), and the state determination module 13 has determined each server to be tested (such as the servers to be tested S1, S2, S3) and its paired servers to be tested ( For example, the paired servers to be tested ( S2 , S3 , and S1 ) are all on standby to perform the network stress test operation. Therefore, the control module 14 can control each server under test (such as the server under test S1, S2, S3) and its paired server under test (such as the paired server under test S2, S3, S1) to simultaneously perform The network stress test operation, and at the same time complete and end the network stress test operation.

因此,相較於先前技術一次僅能對一個待測伺服器進行網路壓力測試作業,本發明所提供之智能自動化配對同步測試系統及其方法可以達到控制每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1)同時進行該網路壓力測試作業,並且同時完成並結束該網路壓力測試作業的功效。Therefore, compared with the prior art that can only perform network stress testing on one server to be tested at a time, the intelligent automatic pairing synchronization test system and method provided by the present invention can achieve control of each server to be tested (such as Servers S1, S2, S3) and their paired servers to be tested (such as paired servers to be tested S2, S3, S1) perform the network stress test operation at the same time, and complete and end the network stress test operation at the same time effect.

在本實施例中,智能自動化配對同步測試系統1更包含一警示模組15。智能自動化配對同步測試方法更包含以下步驟S105。In this embodiment, the intelligent automatic pairing synchronization testing system 1 further includes a warning module 15 . The intelligent automatic pairing synchronization testing method further includes the following step S105.

步驟S105:利用控制模組控制警示模組產生警示信號。Step S105: Utilize the control module to control the warning module to generate a warning signal.

警示模組15電性連接控制模組14,用以在控制模組14並未偵測到每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1)時,或者在控制模組14判定每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1)並非都位於待命進行該網路壓力測試作業時,產生一警示信號。因此,警示模組15可以藉由警示信號達到警示使用者的功效。The warning module 15 is electrically connected to the control module 14, so that each server under test (such as the servers under test S1, S2, S3) and its paired servers under test are not detected by the control module 14 (such as paired servers to be tested S2, S3, S1), or when the control module 14 determines each server to be tested (such as servers to be tested S1, S2, S3) and its paired servers to be tested ( If the paired servers to be tested ( S2 , S3 , S1 ) are not all on standby for the network stress test operation, a warning signal is generated. Therefore, the warning module 15 can achieve the function of warning the user through the warning signal.

較佳者,在本實施例中,配對模組12更包含一第一時間單元121。第一時間單元121用以計算一第一時間,並在計算完第一時間且並未偵測到每一待測伺服器及其配對之待測伺服器時,使配對模組12產生一配對失敗信號。在控制模組14接收到配對失敗信號之後,便會控制警示模組15產生警示信號。也就是說,在步驟S102判斷為否時,也可以進入步驟S105。實務上,第一時間通常為5秒、10秒不等。Preferably, in this embodiment, the pairing module 12 further includes a first time unit 121 . The first time unit 121 is used to calculate a first time, and when the first time is calculated and each server to be tested and its paired server to be tested are not detected, the pairing module 12 is made to generate a pairing failure signal. After the control module 14 receives the pairing failure signal, it controls the warning module 15 to generate a warning signal. That is to say, when the determination in step S102 is negative, the process may also proceed to step S105. In practice, the first time usually ranges from 5 seconds to 10 seconds.

較佳者,在本實施例中,狀態判定模組13更包含一第二時間單元131。第二時間單元131用以計算一第二時間,並在計算完第二時間且判定每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1)並非都位於待命進行該網路壓力測試作業時,產生一待命失敗信號。在控制模組14接收到待命失敗信號之後,便會控制警示模組15產生警示信號。也就是說,在步驟S103判斷為否時,也可以進入步驟S105。實務上,第二時間通常為5秒、10秒不等。Preferably, in this embodiment, the status determination module 13 further includes a second time unit 131 . The second time unit 131 is used to calculate a second time, and after calculating the second time, determine each server to be tested (such as servers to be tested S1, S2, S3) and its paired server to be tested (such as When the paired servers under test ( S2 , S3 , S1 ) are not all on standby to perform the network stress test operation, a standby failure signal is generated. After the control module 14 receives the standby failure signal, it controls the warning module 15 to generate a warning signal. That is to say, when the determination in step S103 is negative, the process may also proceed to step S105. In practice, the second time is usually ranging from 5 seconds to 10 seconds.

因此,相較於先前技術一次僅能對一個待測伺服器進行網路壓力測試作業,本發明所提供之智能自動化配對同步測試系統及其方法不僅可以達到控制每一待測伺服器(如待測伺服器S1、S2、S3)及其配對之待測伺服器(如配對的待測伺服器S2、S3、S1)同時進行該網路壓力測試作業,並且同時完成並結束該網路壓力測試作業的功效外,還可以在配對失敗或是待命失敗時,產生警示信號,以達到提醒使用者的功效。Therefore, compared with the prior art that can only perform network stress testing on one server to be tested at a time, the intelligent automatic pairing synchronization test system and method thereof provided by the present invention can not only achieve control of each server to be tested (such as The test server S1, S2, S3) and its paired server to be tested (such as the paired server to be tested S2, S3, S1) perform the network stress test operation at the same time, and complete and end the network stress test at the same time In addition to the function of the operation, it can also generate a warning signal when the pairing fails or the standby fails, so as to achieve the effect of reminding the user.

綜上所述,本發明所提供之智能自動化配對同步測試系統及其方法,利用接收模組、配對模組、狀態判定模組與控制模組,對複數個待測伺服器進行複數個性能測試作業。相較於先前技術,本發明可以達到控制每一待測伺服器及其配對之待測伺服器同時進行該網路壓力測試作業,並且同時完成並結束該網路壓力測試作業的功效。此外,接收模組的接收單元與詢問單元可以達到主動詢問或是被動接收伺服器識別碼的功效。警示模組更可以產生警示信號,達到提醒使用者的功效。較佳者,本發明還可以利用配對模組的第一時間單元與狀態判定模組的第二時間單元搭配警示模組。To sum up, the intelligent automatic pairing synchronization test system and method provided by the present invention use the receiving module, the pairing module, the state judgment module and the control module to perform multiple performance tests on multiple servers to be tested Operation. Compared with the prior art, the present invention can achieve the effect of controlling each server to be tested and its paired server to perform the network stress test operation at the same time, and complete and end the network stress test operation at the same time. In addition, the receiving unit and the inquiry unit of the receiving module can achieve the function of actively inquiring or passively receiving the server identification code. The warning module can also generate warning signals to remind users. Preferably, the present invention can also use the first time unit of the pairing module and the second time unit of the state determination module to cooperate with the warning module.

藉由以上較佳具體實施例之詳述,係希望能更加清楚描述本發明之特徵與精神,而並非以上述所揭露的較佳具體實施例來對本發明之範疇加以限制。相反地,其目的是希望能涵蓋各種改變及具相等性的安排於本發明所欲申請之專利範圍的範疇內。Through the above detailed description of the preferred embodiments, it is hoped that the characteristics and spirit of the present invention can be described more clearly, and the scope of the present invention is not limited by the preferred embodiments disclosed above. On the contrary, the intention is to cover various changes and equivalent arrangements within the scope of the claimed patent scope of the present invention.

1:智能自動化配對同步測試系統 11:接收模組 111:接收單元 112:詢問單元 12:配對模組 121:第一時間單元 13:狀態判定模組 131:第二時間單元 14:控制模組 15:警示模組 S1,S2,S3:待測伺服器 S101~S105:步驟 SC1,SC2,SC3:伺服器識別碼1: Intelligent automatic pairing synchronization test system 11: Receiver module 111: Receiving unit 112: inquiry unit 12: Pairing modules 121: The first time unit 13: Status Judgment Module 131: Second time unit 14: Control module 15:Warning module S1, S2, S3: servers to be tested S101~S105: steps SC1, SC2, SC3: server identification code

第一圖係顯示本發明較佳實施例所提供之智能自動化配對同步測試系統之方塊圖;以及 第二圖係顯示本發明較佳實施例所提供之智能自動化配對同步測試方法之流程圖。 The first figure shows the block diagram of the intelligent automatic pairing synchronization test system provided by the preferred embodiment of the present invention; and The second figure is a flow chart showing the intelligent automatic pairing synchronization testing method provided by the preferred embodiment of the present invention.

1:智能自動化配對同步測試系統 1: Intelligent automatic pairing synchronization test system

11:接收模組 11: Receiver module

111:接收單元 111: Receiving unit

112:詢問單元 112: inquiry unit

12:配對模組 12: Pairing modules

121:第一時間單元 121: The first time unit

13:狀態判定模組 13: Status Judgment Module

131:第二時間單元 131: Second time unit

14:控制模組 14: Control module

15:警示模組 15:Warning module

S1,S2,S3:待測伺服器 S1, S2, S3: servers to be tested

SC1,SC2,SC3:伺服器識別碼 SC1, SC2, SC3: server identification code

Claims (7)

一種智能自動化配對同步測試系統,係用以對複數個待測伺服器進行複數個性能測試作業,且該些性能測試作業中至少包含一網路壓力測試作業,該智能自動化配對同步測試系統係包含: 一接收模組,係用以接收該些待測伺服器之複數個伺服器識別碼; 一配對模組,係電性連接該接收模組,用以接收該些伺服器識別碼,並利用一配對規則,將每一待測伺服器進行配對,且在偵測到每一待測伺服器及其配對之待測伺服器時,產生一配對成功信號; 一狀態判定模組,係電性連接該接收模組,用以接收該些伺服器識別碼,並在判定每一待測伺服器及其配對之待測伺服器都位於待命進行該網路壓力測試作業時,產生一待命成功信號;以及 一控制模組,係電性連接該配對模組與該狀態判定模組,用以在接收到該配對成功信號與該待命成功信號時,控制該待測伺服器以及其配對之待測伺服器同時進行該網路壓力測試作業,並同時完成該網路壓力測試作業。 An intelligent automatic pairing synchronization test system is used to perform multiple performance test operations on a plurality of servers to be tested, and at least one network stress test operation is included in the performance test operations, the intelligent automatic pairing synchronization test system includes : A receiving module, used to receive multiple server identification codes of the servers to be tested; A pairing module, which is electrically connected to the receiving module, is used to receive the server identification codes, and use a pairing rule to pair each server to be tested, and when each server to be tested is detected When the device and its paired server to be tested, a pairing success signal is generated; A state determination module, which is electrically connected to the receiving module, is used to receive the server identification codes, and determines that each server to be tested and its paired server to be tested are on standby to carry out the network pressure During the test operation, a standby success signal is generated; and A control module, which is electrically connected to the pairing module and the state determination module, is used to control the server under test and its paired server under test when receiving the pairing success signal and the standby success signal Carrying out the network stress test operation at the same time, and completing the network stress test operation at the same time. 如請求項1所述之智能自動化配對同步測試系統,其中,該接收模組更包含一接收單元,該接收單元係用以被動地接收該些伺服器識別碼。The intelligent automatic pairing synchronization test system as described in Claim 1, wherein, the receiving module further includes a receiving unit, and the receiving unit is used to passively receive the server identification codes. 如請求項1所述之智能自動化配對同步測試系統,其中,該接收模組更包含一詢問單元,該詢問單元係用以主動地詢問該些待測伺服器,藉以接收該些伺服器識別碼。The intelligent automatic pairing synchronization test system as described in Claim 1, wherein the receiving module further includes an inquiry unit, and the inquiry unit is used to actively inquire about the servers to be tested, so as to receive the server identification codes . 如請求項1所述之智能自動化配對同步測試系統,其中,該配對模組更包含一第一時間單元,該第一時間單元係用以計算一第一時間,並在計算完該第一時間且並未偵測到每一待測伺服器及其配對之待測伺服器時,使該配對模組產生一配對失敗信號。The intelligent automatic pairing synchronization test system as described in claim 1, wherein, the pairing module further includes a first time unit, the first time unit is used to calculate a first time, and after the calculation of the first time And when each server to be tested and its matching server to be tested are not detected, the pairing module is made to generate a pairing failure signal. 如請求項1所述之智能自動化配對同步測試系統,其中,該狀態判定模組更包含一第二時間單元,該第二時間單元係用以計算一第二時間,並在計算完該第二時間且判定每一待測伺服器及其配對之待測伺服器並非都位於待命進行該網路壓力測試作業時,產生一待命失敗信號。The intelligent automatic pairing synchronization test system as described in claim 1, wherein, the state determination module further includes a second time unit, the second time unit is used to calculate a second time, and after the calculation of the second When it is determined that each server to be tested and its paired server to be tested are not all on standby for the network stress test operation, a standby failure signal is generated. 如請求項1所述之智能自動化配對同步測試系統,更包含一警示模組,該警示模組係電性連接該控制模組,用以在該控制模組並未偵測到每一待測伺服器及其配對之待測伺服器時,或者在該控制模組判定每一待測伺服器及其配對之待測伺服器並非都位於待命進行該網路壓力測試作業時,產生一警示信號。The intelligent automatic pairing and synchronous testing system as described in claim 1 further includes a warning module, which is electrically connected to the control module, so that when the control module does not detect each to-be-tested When the server and its paired server to be tested, or when the control module determines that each server to be tested and its paired server to be tested are not all on standby for the network stress test operation, a warning signal is generated . 一種智能自動化配對同步測試方法,係利用如請求項1所述之智能自動化配對同步測試系統加以實施,並包含以下步驟: (a) 利用該接收模組接收該些伺服器識別碼; (b) 利用該配對模組在偵測到每一待測伺服器及其配對之待測伺服器時,產生該配對成功信號; (c) 利用該狀態判定模組,在判定每一待測伺服器及其配對之待測伺服器都位於待命進行該網路壓力測試作業時,產生該待命成功信號;以及 (d) 利用該控制模組,在接收到該配對成功信號與該待命成功信號時,控制該待測伺服器以及其配對之待測伺服器同時進行該網路壓力測試作業,並同時完成該網路壓力測試作業。 An intelligent automatic pairing synchronization testing method is implemented by using the intelligent automatic matching synchronization testing system described in claim 1, and includes the following steps: (a) use the receiving module to receive the server identification codes; (b) use the pairing module to generate the pairing success signal when each server to be tested and its paired server to be tested are detected; (c) using the status determination module to generate the standby success signal when it is determined that each server to be tested and its paired server to be tested are on standby for the network stress test operation; and (d) Using the control module, when receiving the pairing success signal and the standby success signal, control the server to be tested and its paired server to be tested to perform the network stress test operation at the same time, and complete the Network stress testing assignments.
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