Microprogram configuration method and system

By receiving user requests, authentication and generating configuration solutions, the problem of microprogram configuration relying on manual intervention is solved, efficient and flexible microprogram configuration is achieved, and configuration efficiency and accuracy are improved.

CN120066607AActive Publication Date: 2025-05-30BEIJING LIANXUN XINGYE TECH CO LTD
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Patent Information

Application Number
CN202510035526.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-09
Publication Date
2025-05-30
Estimated Expiration
2045-01-09

AI Technical Summary

Technical Problem

In the prior art, microprogram configuration relies on manual intervention, resulting in low configuration efficiency, accuracy and insufficient flexibility.

Method used

By receiving user's micro program requests, authenticating and authenticating, generating a micro program configuration plan, and configuring matching micro programs in combination with the micro program controller.

Benefits of technology

It greatly reduces manual intervention, reduces the probability of errors, realizes efficient and flexible micro-program configuration, and improves configuration efficiency and accuracy.

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Abstract

The invention provides a microprogram configuration method and system, and relates to the technical field of microprogram design, and the method comprises the steps: receiving a microprogram request of a first user, carrying out authentication according to the first user, obtaining a first user authentication result, when the first user authentication result is successful, activating a matched microprogram, and according to the microprogram request, carrying out the microprogram configuration according to the matched microprogram. And generating a microprogram configuration scheme, and configuring the matched microprogram by combining a microprogram controller according to the microprogram configuration scheme. The technical effects that manual intervention is greatly reduced, the error probability is reduced, the microprogram is efficiently and flexibly configured, and the configuration efficiency and accuracy are improved are achieved. The technical problems that in the prior art, microprogram configuration depends on manual intervention, configuration efficiency and accuracy are not high, and flexibility is insufficient are solved. The technical effects that manual intervention is greatly reduced, the error probability is reduced, the microprogram is efficiently and flexibly configured, and the configuration efficiency and accuracy are improved are achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of microprogramming, and particularly to a microprogram configuration method and system. Background Art

[0002] In today's highly digital world, microprograms, as the core components supporting complex systems and applications, are of great importance. With the rapid development of technologies such as cloud computing, big data, and artificial intelligence, as well as the continuous diversification and complexity of enterprise business requirements, the application scope of microprograms is expanding day by day, and it plays a crucial role in system performance and user experience. However, despite the many conveniences and advantages brought by microprograms, their configuration management faces a series of challenges and problems. Traditional microprogram configuration methods often rely on manual intervention, which is not only inefficient but also error-prone. In addition, with the expansion of system scale and the increase in complexity, manual configuration can no longer meet the requirements of rapid response and flexible adjustment.

[0003] There are technical problems in the prior art that microprogram configuration depends on manual intervention, resulting in low configuration efficiency, low accuracy, and insufficient flexibility. Summary of the Invention

[0004] The present application provides a microprogram configuration method and system for solving the technical problems in the prior art that microprogram configuration depends on manual intervention, resulting in low configuration efficiency, low accuracy, and insufficient flexibility.

[0005] In view of the above problems, the present application provides a microprogram configuration method and system.

[0006] In a first aspect of the present application, a microprogram configuration method is provided. The method includes: receiving a microprogram request from a first user; performing authentication based on the first user to obtain a first user authentication result; when the first user authentication result is passed, activating a matching microprogram; generating a microprogram configuration plan according to the microprogram request; and configuring the matching microprogram in combination with a microprogram controller according to the microprogram configuration plan.

[0007] In a possible implementation, the following processing is performed: performing identity authentication based on the first user to obtain a first user identity authentication result; performing request permission authentication based on the first user to obtain a first user permission authentication result; activating a user authentication model; and inputting the first user permission authentication result into the user authentication model to output the first user authentication result.

[0008] In a possible implementation, the following processing is performed: when the first user authentication result is not passed, generating a first user warning signal.

[0009] In a possible implementation, the following processing is performed: when the first user authentication result is passed, a matching microprogram tag is generated according to the microprogram request; the microprogram processor is activated; the matching microprogram tag is input into the microprogram processor to activate the matching microprogram.

[0010] In a possible implementation, the following processing is performed: task feature recognition is performed according to the microprogram request to obtain microprogram request task information; configuration constraint parameters of the matching microprogram are collected to obtain microprogram configuration constraint information; a microprogram configuration parsing model is constructed; the microprogram request task information and the microprogram configuration constraint information are input into the microprogram configuration parsing model to obtain the microprogram configuration scheme.

[0011] In a possible implementation, the following processing is performed: a microprogram configuration record set is loaded; data cleaning is performed according to the microprogram configuration record set to obtain a microprogram configuration record database; training and testing are performed according to the microprogram configuration record database to generate the microprogram configuration parsing model.

[0012] In a possible implementation, the following processing is performed: configuration monitoring information of the matching microprogram is obtained; the configuration monitoring information is compared with the microprogram configuration scheme to obtain microprogram configuration deviation comparison information; a microprogram configuration deviation coefficient is generated according to the microprogram configuration deviation comparison information; it is determined whether the microprogram configuration deviation coefficient is greater than a microprogram configuration deviation threshold; if the microprogram configuration deviation coefficient is greater than the microprogram configuration deviation threshold, a microprogram configuration deviation warning signal is generated.

[0013] In a second aspect of the present application, a microprogram configuration system is provided. The system includes: a request receiving module for receiving a microprogram request of a first user; an authentication result obtaining module for performing authentication on the first user to obtain a first user authentication result; an authentication result judging module for judging to activate a matching microprogram when the first user authentication result is passed; a configuration scheme generating module for generating a microprogram configuration scheme according to the microprogram request; and a microprogram configuration module for configuring the matching microprogram in combination with a microprogram controller according to the microprogram configuration scheme.

[0014] One or more technical solutions provided in the present application have at least the following technical effects or advantages:

[0015] The method provided by the embodiment of the present application receives a microprogram request from a first user; authenticates the first user to obtain a first user authentication result; when the first user authentication result is passed, activates the matching microprogram; generates a microprogram configuration scheme according to the microprogram request; and configures the matching microprogram in combination with a microprogram controller according to the microprogram configuration scheme. It achieves the technical effects of greatly reducing manual intervention, reducing the error probability, realizing efficient and flexible configuration of the microprogram, and improving the configuration efficiency and accuracy.

[0016] The above description is only an overview of the technical solution of the present application. In order to be able to understand the technical means of the present application more clearly, it can be implemented in accordance with the content of the specification. And in order to make the above and other purposes, features and advantages of the present application more obvious and understandable, the specific embodiments of the present application are specifically given below. It should be understood that the content described in this part is not intended to identify the key or important features of the embodiments of the present application, nor is it used to limit the scope of the present application. Other features of the present application will become easily understood through the following description. Brief Description of the Drawings

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 It is a schematic flowchart of a microprogram configuration method provided by the present application.

[0019] Figure 2 It is a schematic structural diagram of a microprogram configuration system provided by the present application.

[0020] Description of the reference numerals: Request receiving module 11, Authentication result obtaining module 12, Authentication result judging module 13, Configuration scheme generating module 14, Microprogram configuration module 15. Detailed Description of the Embodiments

[0021] The present application provides a microprogram configuration method and system, which are used to solve the technical problems in the prior art that the microprogram configuration depends on manual intervention, resulting in low configuration efficiency, low accuracy, and insufficient flexibility. It achieves the technical effects of greatly reducing manual intervention, reducing the error probability, realizing efficient and flexible configuration of the microprogram, and improving the configuration efficiency and accuracy.

[0022] Below, the technical solutions in the present invention will be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments of the present invention. It should be understood that the present invention is not limited to the example embodiments described herein. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. It should also be noted that, for the convenience of description, only the parts related to the present invention are shown in the accompanying drawings, rather than all of them.

[0023] Embodiment 1

[0024] like Figure 1 As shown, the present application provides a microprogram configuration method, the method comprising:

[0025] A micro-program request from a first user is received.

[0026] Specifically, to implement microprogram configuration, first receive a microprogram request from the first user. The first user refers to the first user who initiates the request or a user with a specific identifier. Microprogram refers to a method of implementing an instruction set at the computer hardware level, specifically decomposing a complex machine instruction into a series of simpler microprograms. Each microprogram contains several microinstructions, and each microinstruction corresponds to one or more microoperations. The microprogram request is used to obtain data, including the request type, request content, etc. Receiving the microprogram request from the first user provides a basis for the subsequent judgment of whether to start the configuration and meet the needs of personalized customization, ensuring the smooth progress of the microprogram configuration work and the accuracy and efficiency of the configuration results.

[0027] Perform authentication and verification on the first user to obtain an authentication and verification result of the first user.

[0028] Specifically, before operating the microprogram, the first task is to strictly authenticate the first user. The authentication process is divided into two core links: identity verification and permission check. Identity verification is intended to confirm the authenticity of the user's identity, while permission check is to verify whether the user is authorized to perform specific operations. During the identity verification stage, users are required to provide valid credentials, which can be a traditional username and password combination, a more secure digital certificate, or a modern authorization token. The credentials provided by the user are then accurately compared with the authorization data pre-stored in the security database, and the user's permission level and operation scope are verified. By comparing the verification results, the authentication result of the first user is generated. The result indicates whether the user has passed the verification, which can ensure that only legitimate and authorized users can access and operate the microprogram.

[0029] When the first user authentication result is passed, the matching microprogram is activated.

[0030] Specifically, if the authentication result of the first user shows as passed, it means that all the user's checks have passed smoothly and the authentication is successful. Subsequently, the microprogram that matches the user's request is activated, and the corresponding microprogram sequence is started to prepare for executing the operations required by the user. The activation process includes loading necessary microinstructions into the control memory and setting relevant hardware states.

[0031] Generate a microprogram configuration scheme according to the microprogram request.

[0032] Specifically, after the matching microprogram is activated, a specific microprogram configuration scheme is generated according to the user's specific microprogram request. The microprogram configuration scheme includes determining the execution order of microinstructions, the selection of data paths, the allocation of registers, etc., which can ensure that the microprogram executes the user's instructions in the expected manner, thus meeting the user's requirements.

[0033] Configure the matching microprogram according to the microprogram configuration scheme in combination with the microprogram controller.

[0034] Specifically, according to the generated configuration scheme, the microprogram controller is used to actually configure the activated microprogram. The microprogram controller is a hardware component responsible for executing microinstructions. It adjusts its control logic according to the configuration scheme to flexibly configure and execute various operations according to different instruction requirements, ensuring that the microprogram is executed according to the established plan. It can achieve efficient and flexible configuration of the microprogram, improving the configuration efficiency and accuracy.

[0035] Furthermore, the authenticating the first user to obtain the first user authentication result includes: authenticating the identity of the first user to obtain the first user identity authentication result; authenticating the requested permissions of the first user to obtain the first user permission authentication result; activating the user authentication model; inputting the first user permission authentication result into the user authentication model and outputting the first user authentication result.

[0036] Furthermore, when the first user authentication result is not passed, a first user warning signal is generated.

[0037] Specifically, first, obtain the first user identity information and conduct authentication. The identity authentication includes verifying the user's personal information, such as username, password, biometric information, and biometric information such as fingerprints, facial recognition, etc. Then, compare the information provided by the user with the pre-stored identity verification data to obtain the first user identity authentication result. After determining that the identity authentication is passed according to the identity authentication result, verify whether the user has the permission to execute a specific request according to the access control policy. The permission authentication includes checking information such as the user's role, group, or access control list, etc., to obtain the permission authentication result, that is, the first user permission authentication result, and activate the user authentication model. The user authentication model is a neural network model constructed based on machine learning and has been trained, and is used to automatically evaluate the user authentication result. Pass the permission authentication result of the first user as input data to the user authentication model. The user authentication model calculates according to the input data and outputs a data information representing the user authentication result, that is, the first user authentication result. If the user passes the authentication, it means that the user's microprogram request can be continued; otherwise, reject the user request and generate a first user warning signal. The first user warning information includes user identification, authentication failure type, security warning, etc., and the warning information is recorded in the log for subsequent auditing and tracing. Through this process, the user's identity and permissions can be comprehensively and accurately evaluated to ensure that only legitimate users with access rights to resources can perform corresponding operations, improving data security.

[0038] Further, when the first user authentication result is passed, activating the matching microprogram includes: when the first user authentication result is passed, generating a matching microprogram label according to the microprogram request; activating the microprogram processor; inputting the matching microprogram label into the microprogram processor to activate the matching microprogram.

[0039] Specifically, when the authentication result of the first user is passed, the microprogram request of the user will be further processed. First, according to the specific content and attributes of the microprogram request, a matching microprogram tag is generated, and the microprogram tag is used to identify and process specific microprogram tasks. Next, the microprogram processor is started, and the microprogram processor is a component for processing and executing microprograms. Subsequently, the generated matching microprogram tag is input into the microprogram processor to provide clear task instructions for the processor. Finally, by inputting a specific microprogram tag, the microprogram processor will activate and execute the microprogram matching the tag, thereby completing the operation or service requested by the user. The whole process ensures that only authenticated users can trigger and execute the corresponding microprograms, greatly improving the security of the system and the accuracy of operations. Moreover, through the matching of microprogram tags, the microprogram corresponding to the user request can be accurately identified and executed, avoiding misoperations or resource waste and improving the accuracy of execution.

[0040] Further, generating a microprogram configuration scheme according to the microprogram request includes: identifying task characteristics according to the microprogram request to obtain microprogram request task information; collecting configuration constraint parameters of the matching microprogram to obtain microprogram configuration constraint information; constructing a microprogram configuration parsing model; and inputting the microprogram request task information and the microprogram configuration constraint information into the microprogram configuration parsing model to obtain the microprogram configuration scheme.

[0041] Specifically, when processing the microprogram request, first, task characteristics are identified according to the specific content of the microprogram request to elaborate and understand the specific task requirements of the microprogram request. The task characteristic identification includes key information such as the type, scale, and priority of the task, so as to obtain complete microprogram request task information. Then, configuration constraint parameters related to the matching microprogram are collected. The configuration constraint parameters are used to ensure the correct execution of the microprogram and the stable operation of the system, including environmental requirements, performance indicators, resource limitations, security policies, etc. required for microprogram execution. According to the collected configuration constraint parameters and integration, microprogram configuration constraint information is obtained.

[0042] Next, a microprogram configuration parsing model is constructed. This model is based on machine learning algorithms or heuristic rules and is constructed using the microprogram configuration constraint information and the specific content of the microprogram request task. Based on predefined rules, algorithms, and strategies, it analyzes and processes the microprogram request task information and configuration constraint information to generate a microprogram configuration scheme that meets the requirements. Finally, the microprogram request task information and the microprogram configuration constraint information are input into the microprogram configuration parsing model. Through calculation and analysis, the model generates a microprogram configuration scheme that not only meets the requirements of the microprogram request task but also conforms to the configuration constraints. This scheme includes the execution order of microinstructions, the resource allocation strategy, the concurrency control mechanism, etc., providing clear guidance for the correct execution of the microprogram and improving the efficiency and reliability of the entire system.

[0043] Specifically, the construction of the microprogram configuration parsing model includes: loading the microprogram configuration record set; performing data cleaning on the basis of the microprogram configuration record set to obtain the microprogram configuration record database; and training and testing based on the microprogram configuration record database to generate the microprogram configuration parsing model.

[0044] Specifically, first, the microprogram configuration record set is retrieved and extracted from data sources such as databases and file systems. The microprogram configuration record set contains the configuration information of historical microprograms, including various configuration parameters such as environment settings, resource allocation, and execution parameters. Then, data cleaning is performed on the data in the microprogram configuration record set, including removing duplicate records, correcting error values, filling in missing data, converting data formats, standardizing units, etc., to improve data quality. The data after cleaning forms the microprogram configuration record database. Next, the data in the microprogram configuration record database is randomly divided into a training set and a test set. A suitable machine learning algorithm, such as decision tree, random forest, neural network, etc., is selected to train the model using the training set and test the trained model using the test set to evaluate its performance. When the model training is completed and passes the test verification, it is used as the final microprogram configuration parsing model to ensure that the model can accurately generate the configuration scheme. By constructing the microprogram configuration parsing model, a suitable configuration scheme can be generated quickly and accurately, improving the efficiency and accuracy of the configuration scheme, and thus improving the microprogram configuration efficiency and accuracy.

[0045] Furthermore, the method further includes: obtaining the configuration monitoring information of the matching microprogram; comparing the configuration monitoring information with the microprogram configuration scheme to obtain the microprogram configuration deviation comparison information; generating a microprogram configuration deviation coefficient according to the microprogram configuration deviation comparison information; determining whether the microprogram configuration deviation coefficient is greater than the microprogram configuration deviation threshold; and if the microprogram configuration deviation coefficient is greater than the microprogram configuration deviation threshold, generating a microprogram configuration deviation warning signal.

[0046] Specifically, during the execution of the microprogram, its configuration information is continuously monitored and recorded. The configuration monitoring information includes, but is not limited to, resource usage, environment variable settings, network configuration, security settings, etc. Then, the collected configuration monitoring information is compared and analyzed with the parameters in the microprogram configuration scheme output by the model to find the differences between the actual configuration and the ideal configuration. All the differences are combined to form the microprogram configuration deviation comparison information. For all configuration parameters, a weight is assigned according to their importance. Based on the microprogram configuration deviation comparison information and its weight, a quantified microprogram configuration deviation coefficient is calculated. This coefficient represents the degree to which the overall configuration deviates from the ideal state. According to historical data and expert experience, a microprogram configuration deviation threshold is set. The microprogram configuration deviation threshold represents the maximum degree of allowable microprogram configuration deviation. The calculated configuration deviation coefficient is compared with the microprogram configuration deviation threshold to determine whether the coefficient is greater than the threshold. When the configuration deviation coefficient exceeds the set threshold, a microprogram configuration deviation warning signal is immediately generated. The fact that the configuration deviation coefficient exceeds the set threshold indicates that there are significant differences between the actual operating configuration of the microprogram and the ideal configuration. Such differences may have a negative impact on the performance, stability, or security of the system. The warning signal can be triggered in various ways, such as sending emails, pushing notifications, triggering alarms, etc., so that relevant personnel can be informed and handle the configuration deviation problem in a timely manner. Through comparison and analysis, configuration deviations during the execution of the microprogram can be discovered in a timely manner, and relevant personnel can be reminded to handle them through warning signals, ensuring the stable operation of the microprogram and reducing potential risks caused by configuration errors.

[0047] Embodiment 2

[0048] Based on the same inventive concept as a microprogram configuration method in the foregoing embodiment, as Figure 2 shown, the present application provides a microprogram configuration system, wherein the system includes:

[0049] A request receiving module 11, which is used to receive a microprogram request from a first user;

[0050] An authentication result obtaining module 12, which is used to perform authentication based on the first user and obtain a first user authentication result;

[0051] An authentication result judging module 13, which is used to judge that when the first user authentication result is passed, the matching microprogram is activated;

[0052] A configuration scheme generating module 14, which is used to generate a microprogram configuration scheme according to the microprogram request;

[0053] The microprogram configuration module 15 is used to configure the matching microprogram according to the microprogram configuration scheme in combination with the microprogram controller.

[0054] Further, the authentication result obtaining module 12 is used to perform the following steps:

[0055] Authenticate the identity of the first user to obtain the first user identity authentication result;

[0056] Authenticate the requested permissions of the first user to obtain the first user permission authentication result;

[0057] Activate the user authentication model;

[0058] Input the first user permission authentication result into the user authentication model and output the first user authentication result.

[0059] Further, the authentication result obtaining module 12 is also used to perform the following steps:

[0060] When the first user authentication result is not passed, generate a first user warning signal.

[0061] Further, the authentication result judging module 13 is also used to perform the following steps:

[0062] When the first user authentication result is passed, generate a matching microprogram label according to the microprogram request;

[0063] Activate the microprogram processor;

[0064] Input the matching microprogram label into the microprogram processor to activate the matching microprogram.

[0065] Further, the configuration scheme generating module 14 is also used to perform the following steps:

[0066] Identify the task characteristics according to the microprogram request to obtain the microprogram request task information;

[0067] Collect the configuration constraint parameters of the matching microprogram to obtain the microprogram configuration constraint information;

[0068] Build a microprogram configuration parsing model;

[0069] Input the microprogram request task information and the microprogram configuration constraint information into the microprogram configuration parsing model to obtain the microprogram configuration scheme.

[0070] Further, the configuration scheme generating module 14 is also used to perform the following steps:

[0071] Load the microprogram configuration record set;

[0072] Perform data cleaning according to the microprogram configuration record set to obtain a microprogram configuration record database;

[0073] Train and test according to the microprogram configuration record database to generate the microprogram configuration parsing model.

[0074] Further, the microprogram configuration module 15 is further configured to perform the following steps: obtain the configuration monitoring information of the matched microprogram;

[0075] Compare the configuration monitoring information with the microprogram configuration scheme to obtain microprogram configuration deviation comparison information;

[0076] Generate a microprogram configuration deviation coefficient according to the microprogram configuration deviation comparison information;

[0077] Determine whether the microprogram configuration deviation coefficient is greater than the microprogram configuration deviation threshold;

[0078] If the microprogram configuration deviation coefficient is greater than the microprogram configuration deviation threshold, generate a microprogram configuration deviation warning signal.

[0079] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

[0080] This specification and the drawings are only exemplary descriptions of the present application and are considered to cover any and all modifications, variations, combinations, or equivalents within the scope of the present application. Obviously, those skilled in the art can make various changes and modifications to the present application without departing from the scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the present application and its equivalent technologies, the present application is intended to include these changes and modifications.

Claims

1. A microprogram configuration method, characterized in that: The method comprises: Receiving a micro-program request from a first user; Performing authentication according to the first user to obtain an authentication result of the first user; When the first user authentication result is passed, activating the matching microprogram; generating a microprogram configuration scheme according to the microprogram request; According to the microprogram configuration scheme, the matching microprogram is configured in conjunction with a microprogram controller.

2. The method according to claim 1, characterized in that Performing authentication according to the first user to obtain an authentication result of the first user includes: Perform identity authentication according to the first user to obtain an identity authentication result of the first user; Performing permission authentication according to the first user to obtain a first user permission authentication result; Activate the user authentication model; The first user authority authentication result is input into the user authentication model, and the first user authentication result is output.

3. The method according to claim 1, characterized in that When the first user authentication result is failed, a first user warning signal is generated.

4. The method according to claim 1, characterized in that When the first user authentication result is passed, activating the matching microprogram includes: When the first user authentication result is passed, generating a matching micro-program tag according to the micro-program request; Activate the microprogrammed processor; The matching microprogram tag is input into the microprogram processor to activate the matching microprogram.

5. The method according to claim 1, characterized in that Generating a microprogram configuration scheme according to the microprogram request, including: Perform task feature recognition according to the micro-program request to obtain micro-program request task information; Collecting configuration constraint parameters of the matching microprogram to obtain microprogram configuration constraint information; Construct a microprogram configuration parsing model; The microprogram request task information and the microprogram configuration constraint information are input into the microprogram configuration parsing model to obtain the microprogram configuration solution.

6. The method according to claim 5, characterized in that Build a microprogram configuration parsing model, including: Load the microprogram configuration record set; Perform data cleaning according to the microprogram configuration record set to obtain a microprogram configuration record database; Training and testing are performed according to the microprogram configuration record database to generate the microprogram configuration parsing model.

7. The method according to claim 1, characterized in that The method comprises: Obtaining configuration monitoring information of the matching microprogram; Comparing the configuration monitoring information with the microprogram configuration scheme to obtain microprogram configuration deviation comparison information; Generate a microprogram configuration deviation coefficient according to the microprogram configuration deviation comparison information; Determining whether the microprogram configuration deviation coefficient is greater than a microprogram configuration deviation threshold; If the microprogram configuration deviation coefficient is greater than the microprogram configuration deviation threshold, a microprogram configuration deviation warning signal is generated.

8. A microprogram configuration system, characterized in that: The steps for implementing a microprogram configuration method as described in any one of claims 1 to 7 include: A request receiving module, the request receiving module is used to receive a micro-program request from a first user; An authentication result obtaining module, wherein the authentication result obtaining module is used to perform authentication according to the first user and obtain an authentication result of the first user; An authentication result judgment module, the authentication result judgment module is used to determine that when the first user authentication result is passed, activate the matching micro program; A configuration scheme generating module, the configuration scheme generating module is used to generate a microprogram configuration scheme according to the microprogram request; A microprogram configuration module is used to configure the matching microprogram in combination with a microprogram controller according to the microprogram configuration scheme.

Citation Information

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