Resource object configuration method and device, electronic equipment, storage medium and product

By integrating the linked display of task options and option attribute values ​​into the resource object configuration method, the problems of lengthy parameter configuration paths and cumbersome steps are solved, achieving efficient and accurate parameter configuration.

CN121858008APending Publication Date: 2026-04-14BEIJING YOUZHUJU NETWORK TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-02-09
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The existing resource object parameter configuration operation path is lengthy and cumbersome, resulting in high operation complexity, low configuration efficiency, and difficulty in meeting the needs of high-efficiency configuration scenarios.

Method used

By integrating the linked display of task options and option attribute values ​​in the same display component, the switching between controls is reduced, and the seamless connection of task options and the synchronous presentation of option attribute values ​​are achieved. All core configuration operations are completed in the unified display component.

Benefits of technology

It significantly shortens the parameter configuration operation path, reduces complexity, improves configuration efficiency and accuracy, and adapts to the needs of high-efficiency configuration scenarios.

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Abstract

The invention provides a resource object configuration method and device, electronic equipment, a storage medium and a product. The method comprises the steps that at least one first task option is displayed, the first task option is used for configuring a first type parameter of a resource object, and the at least one first task option is displayed through a first display area in a first display component; in response to a second task option selected from the at least one first task option, the second task option is displayed in a linkage mode, and the second task option is presented through a second display area in the first display component; and in response to a configuration operation on the second task option, displaying an option attribute value of the second task option, the option attribute value of the second task option being presented through a second display area in the first display component. According to the method, the problems that the parameter configuration operation path of the resource object is lengthy and the configuration steps are repeated and complex are solved.
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Description

Technical Field

[0001] This article relates to the field of computer processing technology, and in particular to a resource object configuration method, apparatus, electronic device, storage medium, and product. Background Technology

[0002] In the process of displaying resource objects, the execution of parameter configuration tasks is an indispensable core step. Each parameter configuration task requires the configuration of multiple task options, and each task option must have a corresponding attribute value set. In related configuration schemes, a selection box for task options is added to load the task options. After selecting a task option, an attribute value input box for the task option is loaded, and then the corresponding attribute value is entered. If more task options need to be added, the above complete operation process must be repeated. However, the above configuration method suffers from lengthy operation paths and repetitive and cumbersome steps. It not only increases the operational complexity of parameter configuration tasks and the operational burden on operators, but also seriously reduces the overall configuration efficiency of resource objects, making it difficult to adapt to the actual needs of scenarios for efficient configuration. Summary of the Invention

[0003] This paper provides a resource object configuration method, device, electronic device, storage medium, and product that solves the problems of lengthy parameter configuration operation paths and repetitive and complex configuration steps for resource objects, reduces the operational complexity of parameter configuration tasks, and improves the configuration efficiency of resource objects.

[0004] In one scenario, this paper provides a resource object configuration method, the method comprising: Display at least one first task option, the first task option being used to configure a first type parameter of a resource object, the at least one first task option being presented through a first display area in a first display component; In response to a second task option selected from the at least one first task option, the second task option is displayed in conjunction with the first task option, and the second task option is presented through a second display area in the first display component; In response to the configuration operation of the second task option, the option attribute value of the second task option is displayed, and the option attribute value of the second task option is presented through the second display area in the first display component.

[0005] In one instance, this document also provides a resource object configuration apparatus, the apparatus comprising: A first processing module is configured to display at least one first task option, wherein the first task option is used to configure a first type parameter of a resource object, and the at least one first task option is presented through a first display area in a first display component; The second processing module is configured to respond to the selection of a second task option from the at least one first task option, and to display the second task option in a linked manner, wherein the second task option is presented through a second display area in the first display component; The third processing module is used to respond to the configuration operation of the second task option by displaying the option attribute value of the second task option, which is presented through the second display area in the first display component.

[0006] In one instance, this document also provides an electronic device comprising: One or more processors; Storage device for storing one or more programs. When the one or more programs are executed by the one or more processors, the one or more processors implement the resource object configuration method as described herein.

[0007] In one instance, this document also provides a storage medium containing computer-executable instructions that, when executed by a computer processor, are used to perform resource object configuration methods as described herein.

[0008] In another scenario, this document also provides a computer program product, including a computer program that, when executed by a processor, implements the resource object configuration method as described herein.

[0009] In the above method, at least one first task option is presented in a first display area of ​​a first display component. The first task option is used to configure a first type parameter of a resource object. Based on this, in response to a second task option selected from the at least one first task option, a second task option is presented in a second display area of ​​the first display component. This solution integrates the first and second task options into different display areas of the same first display component. Selecting the second task option will trigger the presentation of the second display area within the same first display component, eliminating the need to repeatedly load selection boxes and input boxes to add task options. This effectively shortens the operation path for configuring parameters of resource objects, avoids cross-control switching for task option configuration, and improves the efficiency of task option configuration. Furthermore, when the second task option is selected... After the task options are displayed in a linked manner, the option attribute values ​​of the second task option can be displayed synchronously after the configuration operation is performed on the second task option. This significantly reduces the complexity of the parameter configuration operation for the second task option. All core configuration operations are completed in a unified first display component, which significantly improves the overall configuration efficiency of resource objects. Furthermore, the linked display after the second task option is selected and the synchronous display of option attribute values ​​after the configuration operation is performed on the second task option achieves a seamless connection of the entire parameter configuration chain. This not only ensures the intuitiveness of the task options and their corresponding option attribute values, but also improves the accuracy of parameter configuration because the task options and option attribute values ​​are clearly associated in the first display component. It can fully adapt to the needs of efficient configuration scenarios and improve the parameter configuration efficiency of resource objects. Attached Figure Description

[0010] The above and other features, advantages, and aspects of the embodiments described herein will become more apparent when taken in conjunction with the accompanying drawings and the following detailed description. Throughout the drawings, the same or similar reference numerals denote the same or similar elements. It should be understood that the drawings are schematic, and the originals and elements are not necessarily drawn to scale.

[0011] Figure 1 A schematic diagram of the structure of a resource object configuration system for a given scenario; Figure 2 A flowchart illustrating the resource object configuration method for one scenario; Figure 3 This is a configuration diagram illustrating how to configure task options; Figure 4 This is a diagram illustrating the display of task options; Figure 5 This is another illustration showing the task options; Figure 6 This is a configuration diagram illustrating another way to configure task options; Figure 7 This is yet another illustration of how task options are displayed; Figure 8 This is an illustration of displaying task options in a selection box; Figure 9 This is a diagram illustrating how to display error messages for the configuration results of task options. Figure 10 A schematic diagram of a resource object configuration device under one scenario; Figure 11 This is a schematic diagram of the structure of an electronic device used to implement a resource object configuration method in one scenario. Detailed Implementation

[0012] The embodiments will now be described in more detail with reference to the accompanying drawings. While some embodiments are shown in the drawings, it should be understood that the technical solution can be implemented in various forms and should not be construed as limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the present technical solution. It should be understood that the illustrated drawings and embodiments are for illustrative purposes only and are not intended to limit the scope of protection of the technical solution.

[0013] It should be understood that the steps described in the method implementation may be performed in different orders and / or in parallel. Furthermore, the method implementation may include additional steps and / or omit the steps shown. The scope of this document is not limited in this respect.

[0014] The term "comprising" and its variations as used herein are open-ended inclusions, meaning "including but not limited to". The term "based on" means "at least partially based on". The term "one situation" means "at least one situation"; the term "another situation" means "at least one additional situation"; the term "some situations" means "at least some situations". Definitions of other terms will be given in the following description.

[0015] It should be noted that the concepts of "first" and "second" mentioned in this article are only used to distinguish different devices, modules or units, and are not used to limit the order of the functions performed by these devices, modules or units or their interdependencies.

[0016] It should be noted that the terms "one" and "more" used in this document are illustrative rather than restrictive, and those skilled in the art should understand that, unless otherwise expressly indicated in the context, they should be understood as "one or more".

[0017] The names of messages or information exchanged between multiple devices in this document are for illustrative purposes only and are not intended to limit the scope of these messages or information.

[0018] It is understood that before using the technical solutions disclosed in the various embodiments of this document, users should be informed of the types, scope of use, and usage scenarios of the personal information involved in this document in an appropriate manner in accordance with relevant laws and regulations, and user authorization should be obtained.

[0019] For example, upon receiving a user's active request, a prompt message is sent to the user to explicitly inform them that the requested operation will require the acquisition and use of the user's personal information. This allows the user to independently choose whether to provide personal information to the software or hardware, such as electronic devices, applications, servers, or storage media, that perform the operations described herein, based on the prompt message.

[0020] As an optional but non-limiting implementation, in response to a user's active request, sending a prompt message to the user can be done via a pop-up window, where the prompt message can be presented in text format. Furthermore, the pop-up window can also include a selection control allowing the user to choose whether to "agree" or "disagree" to provide personal information to the electronic device.

[0021] It is understood that the above notification and user authorization process is merely illustrative and does not limit the implementation method described in this article. Other methods that comply with relevant laws and regulations may also be applied to the implementation method described in this article.

[0022] It is understood that the data involved in this technical solution (including but not limited to the data itself, the acquisition or use of the data) shall comply with the requirements of relevant laws, regulations and related provisions.

[0023] The technical solution in this article can be applied to... Figure 1 The resource object configuration system shown is illustrated. In practical applications, this resource object configuration system may include a client 101 and a server 102. The client 101 may include, but is not limited to, browsers, applications (Apps), Hyper Text Markup Language (HTML) applications, lightweight applications (also known as mini-programs), or cloud applications. The client 101 may be deployed on an electronic device, relying on the operation of that device or certain applications within the device to implement its functions. The electronic device may be, for example, a device with a display screen that supports information browsing, such as a smartphone, tablet, personal computer, or other client terminal. For ease of understanding, Figure 1The client is primarily represented by a device. Other applications, such as resource object configuration applications, can also be configured on the electronic device. Server 102 can be one or more servers providing various services. That is, it can be implemented as a distributed server cluster composed of multiple servers, or as a single server; furthermore, it can be a server for a distributed system, a server integrating blockchain technology, a cloud server, or an intelligent cloud computing server or intelligent cloud host deployed with machine learning models, etc.

[0024] It should be noted that in this technical solution, the resource object configuration method can be executed by client 101, or by client 101 and server 102, with different functional parts of the corresponding resource object configuration device deployed on client 101 and server 102 respectively; wherein, the first processing module, second processing module, and third processing module of the device are deployed on client 101. It should be understood that... Figure 1 The number of clients and servers shown is for illustrative purposes only. Any number of clients and servers can be configured to meet specific implementation requirements.

[0025] Figure 2 A flowchart illustrating a resource object configuration method is provided. This method is applicable to scenarios where various type parameters of a resource object are configured to display the resource object. The method can be executed by a resource object configuration device, which can be implemented in software and / or hardware, optionally through an electronic device such as a mobile terminal, PC, or server. Figure 2 As shown, the resource object configuration method in this article may specifically include the following process: S210. Display at least one first task option, which is used to configure a first type parameter of a resource object, and the at least one first task option is presented through a first display area in a first display component.

[0026] See Figure 3 The first display component 330 includes a first display area 331, which presents at least one first task option 341. The first task option 341 may be a task option provided for configuring a first type of parameter of a resource object during the execution of a parameter configuration task for that resource object. The resource object may be a task object that needs to perform a parameter configuration task; for example, the resource object may be a material, component, or product, and the resource object is the carrier of the parameter configuration task. For example, see [link to example]. Figure 4 Taking the first type of parameter as the material parameter as an example, the first task option is the material type option provided when configuring the material parameters of a resource object; see also Figure 5Taking the first type parameter as the color parameter as an example, the first task option is the color type option provided when configuring the color parameter of the resource object.

[0027] See Figure 3 The first display component 330 can be a visualization component provided for configuring the first type of parameters of a resource object, serving as a platform for the entire process of parameter configuration interaction and information presentation for the resource object. The first display component includes a first display area 331, which presents at least one first task option 341 provided for configuring the first type of parameters of the resource object. This allows all the task options required for configuring the first type of parameters of the resource object to be centrally displayed within the first display area of ​​the same first display component. This provides a unified display area where all available task options can be intuitively accessed without switching between components, simplifying the operation path for selecting and configuring task options and reducing the complexity of task option operations.

[0028] S220, in response to a second task option selected from at least one first task option, the second task option is displayed in conjunction with the second task option, the second task option being presented through a second display area in the first display component.

[0029] See Figure 3 The second task option 342 can be a task option selected from at least one first task option 341 in the first display area 331 of the first display component, used to configure the first type parameter of the resource object. The first display component also includes a second display area 332, which can be a display partition coexisting with the first display area 341 within the first display component. The second display area 332 is used to display the second task option selected from the first task options and to carry the option attribute value configured by the configuration operation of the second task option.

[0030] See Figure 3 The task options presented in the second display area 332 can depend on the task option selected from the first display area 331, with the selection of the second task option 342 from at least one first task option 341 as the trigger condition. This eliminates the need to repeatedly load selection boxes and input boxes, automatically linking and displaying the second task option within the second display area 332 of the same first display component. This method overcomes the need to load new controls after selecting a task option. By relying on the partitioning design of the first and second display areas within the same first display component, it achieves a seamless transition from selecting a task option to presenting it. This clearly defines the correspondence between the selected task option and the display area, while avoiding the cumbersome operation of switching between components.

[0031] In some cases, it can be combined with the various alternatives in one or more of the above situations. When at least one first task option includes multiple first task options, in response to a second task option selected from at least one first task option, a second task option is displayed in a coordinated manner, including the following steps: In response to the selection of multiple second task options from at least one first task option, multiple second task options are displayed in a second display area within a first display component.

[0032] See Figure 3 The first display area 331 of the first display component can display multiple first task options 341, supporting parallel selection of multiple first task options 341. It is suitable for scenarios of batch configuration of multiple task options. Relying on the first display area 331 of the same first display component, multiple first task options 341 can be displayed at the same time without adding any external controls. Thus, multiple second task options 342 can be selected from multiple first task options 341 for one-time linkage presentation. There is no need to select task options one by one or load task options one by one for configuration. This saves the repetitive operation of selecting and presenting a single option, avoids the time loss caused by multiple linkages, shortens the operation path of configuring multiple options, and improves the configuration efficiency of task options.

[0033] See Figure 3 For the multiple second task options 342 selected from multiple first task options 341, all are uniformly presented in the second display area 332 of the first display component. This allows for a clear and intuitive display of all selected task options within the same second display area 332, thus visually showing the configuration range of the selected task options. This avoids omissions and incorrect selections caused by the scattered presentation of multiple task options, improving the accuracy of the selection process. The second display area supports the presentation of multiple task options, allowing for unified configuration of option attribute values ​​within the second display area, significantly reducing the complexity of configuring option attribute values ​​for multiple task options.

[0034] The above method supports simultaneous selection and unified display of multiple task options, so that the option attribute values ​​of multiple subsequent task options can be configured and displayed synchronously. This makes the parameter configuration process of batch task options smoother, greatly shortens the parameter configuration time of multiple task options, and improves the configuration efficiency of task options.

[0035] S230. In response to the configuration operation of the second task option, the option attribute value of the second task option is displayed, and the option attribute value of the second task option is presented through the second display area in the first display component.

[0036] See Figure 3The option attribute values ​​for the second task option can be specific parameter results generated after performing configuration operations on the second task option. Each option attribute value corresponds one-to-one with a specific second task option. Configuration operations for the second task option can involve setting the option attribute values ​​for the second task option presented in the second display area. These operations can include entering numerical values, selecting from dropdown menus, checking status boxes, and filling in attribute values ​​for the second task option's attribute values.

[0037] For example, see Figure 4 Taking the first type of parameter as the material parameter as an example, the first task option is the material type option provided when configuring the material parameters of a resource object. The second task option can be a selected material type, and the corresponding option attribute value of the second task option can be the material content for the selected material type; see also Figure 5 Taking the first type parameter as the color parameter as an example, the first task option is the color type option provided when configuring the color parameter of the resource object, and the second task option can be a selected color type. At this time, the option attribute value corresponding to the second task option can be the color depth of the selected color type.

[0038] See Figure 3 In response to the configuration operation performed on the second task option, the option attribute value corresponding to the second task option is displayed synchronously. The option attribute value corresponding to the second task option 342 is presented together with the second task option 342 in the second display area 332 of the first display component. The option attribute value of the task option in the second display area 332 is displayed in association with the corresponding task option and displayed in the same area. The correspondence between the task option and the option attribute value in the second display area 332 is displayed intuitively and clearly. This can avoid the misalignment and confusion of option attribute values ​​in the configuration scenario of multiple task options, eliminate the need to search for the corresponding task option across areas, reduce the probability of configuration errors, and ensure the accuracy and data integrity of the parameter configuration of resource objects.

[0039] In the above method, at least one first task option is presented in a first display area of ​​a first display component. The first task option is used to configure a first type parameter of a resource object. Based on this, in response to a second task option selected from the at least one first task option, a second task option is presented in a second display area of ​​the first display component. This solution integrates the first and second task options into different display areas of the same first display component. Selecting the second task option will trigger the presentation of the second display area within the same first display component, eliminating the need to repeatedly load selection boxes and input boxes to add task options. This effectively shortens the operation path for configuring parameters of resource objects, avoids cross-control switching for task option configuration, and improves the efficiency of task option configuration. Furthermore, when the second task option is selected... After the task options are displayed in a linked manner, the option attribute values ​​of the second task option can be displayed synchronously after the configuration operation is performed on the second task option. This significantly reduces the complexity of the parameter configuration operation for the second task option. All core configuration operations are completed in a unified first display component, which significantly improves the overall configuration efficiency of resource objects. Furthermore, the linked display after the second task option is selected and the synchronous display of option attribute values ​​after the configuration operation is performed on the second task option achieves a seamless connection of the entire parameter configuration chain. This not only ensures the intuitiveness of the task options and their corresponding option attribute values, but also improves the accuracy of parameter configuration because the task options and option attribute values ​​are clearly associated in the first display component. It can fully adapt to the needs of efficient configuration scenarios and improve the parameter configuration efficiency of resource objects.

[0040] In some cases, the options can be combined with those in one or more of the above-mentioned scenarios to display at least one first task option, which may include the following steps: In response to a triggering operation on a first selection component, a first display component is displayed. The first selection component is associated with the first display component. A first display area in the first display component displays first information, which includes multiple first task options that are displayed by default in the first display component. And / or, in response to receiving a search keyword in the first display component, second information is displayed. The second information is presented after replacing the already presented first information in the first display area of ​​the first display component. The second information includes at least one first task option obtained by searching based on the search keyword.

[0041] See Figure 3The first selection component 320 can be an interactive component used to trigger and present the first display component 330 to perform the first task. The first task can be a task to configure the first type parameter of the resource object. The first selection component 320 can be a button, drop-down list, selection box, or icon. The first selection component 320 and the first display component 330 have a preset association relationship. The first selection component 320 is the start entry point for configuring the first type parameter of the resource object.

[0042] See Figure 3 The first information can be multiple first task options 341 that are displayed by default in the first display component 330. No additional search is required; after the first display component 330 is started, it can directly display the multiple associated first task options 341 in its first display area 331. The second information can be at least one first task option 341 obtained by searching and filtering based on search keywords entered in the first display component after it is displayed. This second information replaces the multiple first task options displayed by default in the first display component, achieving precise filtering of the first task options for presentation. The search keywords can be keywords entered within the first display component 330 for filtering the first task options; for example, they can be text or abbreviations.

[0043] See Figure 3 Instead of adding the second information to the side of the first information presented in the first display area 331, at least one first task option 341 related to the search keyword is retrieved as the second information. Then, within the same first display area 331, the second information directly replaces the already presented first information, and the first information in the first display area 331 is hidden, retaining only the second information that matches the search conditions. This achieves the goal of replacing the already presented first information in the first display area with the second information, so that the first display area retains only at least one first task option among the second information that matches the search conditions, avoiding cluttered display of task options and focusing on the searched task options.

[0044] The above method is the initiation and filtering stage of the parameter configuration process. By triggering the first selection component, displaying the task options by default in the first display component, and displaying the targeted search in the first display component, the operation path for locating task options is greatly shortened. All operations are completed within the first display component, with clear logic and unified interaction. There is no need to adapt to the interaction logic of multiple carriers and multiple controls. This not only reduces the operation path when configuring task options, but also improves the convenience of operation and optimizes the overall efficiency of task option configuration by accurately filtering task options.

[0045] In some cases, the first selection component may optionally be displayed as a selection box, or the first display component may optionally be displayed as a drop-down panel. Alternatively, the first selection component may be displayed as a button, a drop-down control, a card-triggered control, a floating-triggered control, or an icon, or the first display component may optionally be displayed as a pop-up panel, a sidebar, a card panel, a fixed panel, a tab, or a collapsible panel.

[0046] In some cases, it can be combined with one or more of the alternative solutions mentioned above. The resource object configuration method in this paper may also include the following steps: In response to clearing the search keywords entered in the first display component, the first display area in the first display component resumes displaying the first information, while keeping the task options presented in the second display area of ​​the first display component unchanged.

[0047] See Figure 3 Clearing the search keywords entered in the first display component 330 can be done by performing a clearing action on the search keywords already entered in the first display component 330. For example, clearing the search keywords entered in the first display component 330 can be done by clicking the clear button on the side of the search box of the first display component 330, manually deleting all the entered content in the search box of the first display component 330, or clearing the shortcut key associated with the search box of the first display component 330.

[0048] Optionally, see Figure 3 The first information is restored to the first display area in the first display component, and the task options presented in the second display area of ​​the first display component remain unchanged. This includes: reloading and presenting the first information that was replaced and hidden in the first display area; and maintaining the task options already presented in the second display area without any modification, deletion or hiding as the information in the first display area changes, and keeping the task options already presented in the second display area displayed. The task options already presented in the second display area include the selected second task option and the third task option.

[0049] The above method immediately restores the first information displayed in the first display area after clearing the search keywords. It quickly returns to the default, complete set of selectable first task options without needing to close and restart the first display component, improving the efficiency of task option configuration and adjustment. The restoration of the first information is completed within the same first display area, requiring no additional control loading or area switching; clearing keywords synchronously restores the information, eliminating waiting time and redundant steps, further improving the efficiency of task option configuration and adjustment. Furthermore, the restored first information maintains consistency with the initial default display content and layout, eliminating the need to readjust the information arrangement logic and reducing display costs. Simultaneously, the selected task options in the second display area continue to be displayed, ensuring that the selection of task options is not interrupted by the task option filtering reset. Configuration operations can continue for the selected task options, or new task options can be added within the restored complete selectable range without operational interruption, guaranteeing the continuity of the entire task option configuration process.

[0050] In some cases, it can be combined with one or more of the alternative solutions mentioned above. The resource object configuration method in this paper may also include the following steps: In response to the selection of a third task option from at least one first task option, the third task option is displayed in conjunction with the selection of the second task option. The third task option is selected after the second task option is selected, and the third task option and the second task option are simultaneously presented in the second display area of ​​the first display component.

[0051] See Figure 6 The third task option 343 can be a task option selected again from at least one first task option after selecting the second task option from at least one first task option. The third task option 343 and the second task option 342 belong to different task options within the at least one first task option, and are supplementary or subdivided options for the task options required by the first type parameter of the resource object. Using the selection of the third task option 343 from at least one first task option as the trigger condition, without the need for additional control loading, adding a new display carrier, or switching areas, the selected third task option 343 is automatically presented in the second display area. The third task option 343 and the second task option 342 coexist in the second display area 332 of the first display component. The third task option 343 and the second task option 342 do not replace or obscure each other, and are presented synchronously. The display logic of the third task option 343 and the second task option 342 remains consistent, achieving seamless integration.

[0052] The above method presents the third task option and the second task option simultaneously in the same display area, eliminating the need to search across display areas. This avoids omissions and misalignments caused by multiple task options being scattered, improves the intuitiveness of configuration, and facilitates verification of the overall configuration range of task options. Moreover, by relying on multiple task options presented in the same second display area, there is no need to add new controls or switch carriers, maintaining a unified interaction logic and reducing the operational complexity of multiple task options.

[0053] In some cases, optionally, see Figure 3 and Figure 6 The second display area presents multiple task options and their attribute values ​​in form. These task options include a second task option and / or a third task option. The form is integrated into the second display area of ​​the first display component, acting as a container for these options and binding the display and interaction of each option. The task options in the second display area can adapt their layout to the number and type of the presented options. Each task option corresponds to a form item within the form, and the multiple task options in the second display area correspond to multiple parallel form items within the form.

[0054] Once the multiple task options presented in the second display area are presented in form format, they can all be arranged and presented in a uniform format, regardless of the number of task options. This avoids the layout chaos caused by scattered display of multiple task options in the second display area, which would prevent the intuitive explanation of all selected task options. Each task option in the second display area corresponds to a form item within the form. Especially when multiple task options are presented in conjunction with each other, this avoids option confusion and improves the efficiency of task option recognition. In addition, the form can support configuration interactions (such as including at least one interaction such as input, selection, and checkboxes). After the multiple task options in the second display area are presented based on the form, configuration operations can be completed directly within the form without the need to load additional independent controls such as input boxes and selection boxes, resulting in a shorter operation path.

[0055] In some cases, optionally, the multiple task options and their attribute values ​​presented in the second display area are displayed in the form of labels. The multiple task options presented in the second display area include second task options and / or third task options. Each task option in the second display area corresponds to a label, and the multiple task options are presented side-by-side or on separate lines in the second display area as a label group. Labels can carry selection status and delete buttons, and labels support both selecting and deselecting task options. Using labels allows for a lightweight display of multiple task options in the second display area, resulting in a visually clean appearance, small footprint, no redundancy when multiple task options are presented, convenient cancellation operations, and improved interaction and configuration efficiency of task options.

[0056] In some cases, optionally, the multiple task options and their attribute values ​​presented in the second display area are displayed in card format. The multiple task options presented in the second display area include second task options and / or third task options. Each task option in the second display area corresponds to a card, which contains a task option identifier. Multiple cards are arranged horizontally or vertically within the second display area, supporting direct configuration of task options within the cards. Displaying task options in card format ensures clear visual hierarchy, good grouping effect, and improved task option recognition. Simultaneously, the independent layout of the cards avoids mutual interference when configuring task options.

[0057] In some cases, optionally, the multiple task options and their attribute values ​​presented in the second display area are displayed in list format. The multiple task options presented in the second display area include a second task option and / or a third task option. These multiple task options are arranged vertically as list items, with each list item corresponding to one task option in the second display area. The task option identifier is displayed on the left side of each list item, and a configuration entry or attribute value is reserved on the right side. Using a list format ensures efficient browsing of the multiple task options presented in the second display area, supports quick scrolling to view all task options, provides a unified configuration entry, and adapts to batch operations with multiple options.

[0058] In some cases, optionally, at least one first task option is presented in the first display area in the form of parallel multi-select or cascading multi-select. See also... Figure 7 The peer-level multi-select feature allows for the display of all first-task options in the first display area in a hierarchical and independent manner, supporting the simultaneous selection of multiple task options. All presented first-task options in the first display area are independent at the same level, without hierarchy or subordination. Each task option corresponds to a configuration dimension of the first type parameter of the resource object. See also... Figure 6Cascading multi-selection can be defined as follows: the first task option has a clear hierarchical division, the task options are related to each other, and selection should be made in a hierarchical manner. It supports selecting multiple related task options across levels. The first task option has a clear hierarchical relationship, the upper-level task option is the major category, the lower-level task option is the sub-item under the upper-level major category, and the lower-level task option depends on the existence of the upper-level task option.

[0059] In some cases, the options can be combined with those in one or more of the above-mentioned scenarios, and after displaying at least one first task option, the following steps may also be included: In response to a scrolling operation on at least one first task option in the first display area, at least one first task option is displayed by scrolling up and down.

[0060] In some cases, this can be combined with one or more of the alternative options described above. Responding to a configuration operation on the second task option, displaying the option attribute value of the second task option may include the following steps: In response to performing a configuration operation on the configuration component of the second task option, the option attribute value of the second task option is displayed. The configuration component of the second task option is used to configure the option attribute value of the second task option. The option attribute value of the second task option is presented in the first area associated with the configuration component of the second task option. The first area is used to display the option attribute value or input the option attribute value. The second display area includes the configuration component of the second task option and the first area associated with the configuration component of the second task option.

[0061] See Figure 3 and Figure 6 The configuration component for the second task option can be an interactive control used to perform configuration actions on the option attribute values ​​of the second task option. For example, the configuration component can be an input box, a dropdown selector, or a checkbox. The configuration operation can be a parameter setting action performed on the configuration component, such as entering a value, selecting a dropdown option, or checking a checkbox. The first area can be an information display area pre-bound to the configuration component, used to display the configured option attribute values. There is a one-to-one correspondence between the configuration component and the first area; one configuration component corresponds to one first area, and option attribute values ​​can only be displayed in the bound first area, avoiding misalignment between multiple components and multiple areas.

[0062] In some cases, optionally, see Figure 5 and Figure 7The configuration component may include an input component and / or a second selection component. The input component is used to input the option attribute value of the task option presented in the second display area, and the second selection component is used to select the option attribute value of the task option presented in the second display area. The input component is an interactive control that allows configuration of option attribute values ​​through input, with no preset range of selectable values ​​or support for a custom range. The second selection component may be an interactive control that provides preset selectable values ​​for configuration, with the option attribute value selected from the preset range.

[0063] In some cases, it can be combined with the various alternatives in one or more of the above cases, see [reference]. Figure 8 The resource object configuration method described in this article may further include the following steps: In response to the completion of the configuration of the second task option, the second task option and its option attribute value are displayed in the second area. The second area is the input area associated with the first selection component, which is associated with the first display component. The second task option and its option attribute value are displayed in the form of labels.

[0064] In some cases, it can be combined with the various alternatives in one or more of the above cases, see [reference]. Figure 3 The resource object configuration method in this article may further include the following steps: In response to a second task option selected from at least one first task option, the second task option is displayed in a second area, which is an input area associated with the first selection component, and the second task option is displayed in the form of a label; In response to the configuration operation of the second task option, the second task option that will be displayed in the second area as a label will be updated to display the second task option as a label and the option attribute value of the second task option.

[0065] In some cases, it can be combined with one or more of the alternative solutions mentioned above. The resource object configuration method in this paper may also include the following steps: In response to the first type parameter of the configured resource object, it checks whether the option attribute values ​​of multiple fourth task options meet the preset value conditions. The multiple fourth task options include multiple task options presented in the second display area of ​​the first display component. In response to the multiple fourth task options not meeting the preset value conditions, it displays the error information of the first type parameter. The error information of the first type parameter is presented in the third area associated with the first selection component. The third area is configured in at least one side of the first selection component, and the distance between the third area and the first selection component is less than a preset distance.

[0066] The fourth task option can include multiple task options presented in the second display area of ​​the first display component. This fourth task option can be a task option whose attribute values ​​need to be validated. The preset numerical conditions can be pre-defined validation standards for the option attribute values ​​(such as thresholds, ranges, summation rules, etc.). The error message for the first type of parameter can be a prompt indicating a failure to validate the option attribute values ​​of the multiple task options configured for the first type of parameter, and can include the reason for the calibration failure / correction direction for the option attribute values. The third area can be a prompt area associated with the first selection component, located on at least one side of the first selection component, and with a spacing less than a preset value.

[0067] See Figure 3 , Figure 6 and Figure 9 Once the first type of parameter of the resource object is configured, the system automatically checks whether the option attribute values ​​of the multiple fourth task options presented in the second display area meet the preset value conditions. If the preset value conditions are not met, the system triggers the error message of the first type of parameter and displays the error message of the first type of parameter in the third area associated with the first selection component to prompt that at least some of the option attribute values ​​of the fourth task options be modified.

[0068] The above method automatically triggers option attribute value validation after configuration, preventing the loading and use of option attribute values ​​that do not conform to the numerical rules. Relying on the first selection component to associate with the third area, error messages are displayed in the third area next to the first selection component. The two are close together, eliminating the need to search for errors across areas, quickly associating configuration entry points and problem prompts, and shortening the modification path.

[0069] Figure 10 A schematic diagram of a resource object configuration device is provided. This resource object configuration method is applicable to scenarios where various type parameters of a resource object are configured to display the resource object. The resource object configuration device can be implemented in software and / or hardware, and optionally, it can be implemented through an electronic device, such as a mobile terminal, a PC, or a server.

[0070] like Figure 10 As shown, the resource object configuration device in this document may specifically include the following: a first processing module 1010, a second processing module 1020, and a third processing module 1030.

[0071] A first processing module 1010 is configured to display at least one first task option, which is used to configure a first type parameter of a resource object, and the at least one first task option is presented through a first display area in a first display component; a second processing module 1020 is configured to display a second task option in response to a second task option selected from the at least one first task option, and the second task option is presented through a second display area in the first display component; a third processing module 1030 is configured to display the option attribute value of the second task option in response to a configuration operation on the second task option, and the option attribute value of the second task option is presented through a second display area in the first display component.

[0072] In one scenario, it can be combined with one or more of the alternative options described above to display at least one first task option, including: In response to a trigger operation on the first selection component, a first display component is displayed. The first selection component is associated with the first display component. A first display area in the first display component displays first information, which includes multiple first task options that the first display component displays by default; and / or, In response to receiving a search keyword in the first display component, second information is displayed. The second information is presented after replacing the already presented first information in the first display area of ​​the first display component. The second information includes at least one first task option obtained by searching based on the search keyword.

[0073] In one scenario, it can be combined with one or more of the above-mentioned alternatives, where the first selection component is displayed as a selection box and the first display component is displayed as a drop-down panel.

[0074] In one scenario, the device may be combined with one or more of the alternative solutions described above, and further includes: In response to the selection of a third task option from the at least one first task option, the third task option is displayed in conjunction with the selection of the second task option. The third task option is selected after the second task option is selected, and the third task option and the second task option are presented simultaneously in the second display area of ​​the first display component.

[0075] In one scenario, the device may be combined with one or more of the alternative solutions described above, and further includes: In response to clearing the search keywords entered in the first display component, the first information is restored to be displayed in the first display area of ​​the first display component, while the task options presented in the second display area of ​​the first display component remain unchanged.

[0076] In one scenario, the second task options can be combined with one or more of the above-mentioned alternatives, and the second task options are presented in a list format in the second display area of ​​the first display component.

[0077] In one scenario, it can be combined with the alternatives in one or more of the above scenarios, and after displaying at least one first task option, it also includes: In response to a scrolling operation on at least one first task option in the first display area, the at least one first task option is displayed by scrolling up and down.

[0078] In one scenario, it can be combined with various alternatives in one or more of the above scenarios. When the at least one first task option includes multiple first task options, in response to a second task option selected from the at least one first task option, the second task option is displayed in a coordinated manner, including: In response to the selection of a plurality of second task options from the at least one first task option, the plurality of second task options are displayed in a second display area in the first display component.

[0079] In one scenario, this can be combined with one or more of the alternative options described above, and in response to a configuration operation on the second task option, the option attribute values ​​of the second task option are displayed, including: In response to performing a configuration operation on the configuration component of the second task option, the option attribute value of the second task option is displayed. The configuration component of the second task option is used to configure the option attribute value of the second task option. The option attribute value of the second task option is presented in a first area associated with the configuration component of the second task option. The first area is used to display the option attribute value or input the option attribute value. The second display area includes the configuration component of the second task option and the first area associated with the configuration component of the second task option.

[0080] In one scenario, the configuration component can be combined with one or more of the above-mentioned alternatives, including an input component and / or a second selection component. The input component is used to input the option attribute value of the task option presented in the second display area, and the second selection component is used to select the option attribute value of the task option presented in the second display area.

[0081] In one scenario, the device may be combined with one or more of the alternative solutions described above, and further includes: In response to the completion of the configuration of the second task option, the second task option and its option attribute value are displayed in the second area. The second area is an input area associated with the first selection component, which is associated with the first display component. The second task option and its option attribute value are displayed in the form of labels.

[0082] In one scenario, the device may be combined with one or more of the alternative solutions described above, and further includes: In response to the configuration of the first type parameter of the resource object, it is detected whether the option attribute values ​​of multiple fourth task options meet the preset value conditions. The multiple fourth task options include multiple task options presented in the second display area of ​​the first display component. In response to the fact that the option attribute values ​​of multiple fourth task options do not meet the preset numerical conditions, error information of the first type parameter is displayed. The error information of the first type parameter is presented in a third area associated with the first selection component. The third area is configured in at least one side of the first selection component, and the distance between the third area and the first selection component is less than a preset distance.

[0083] In one scenario, the at least one first task option can be combined with one or more of the above-mentioned alternatives, and the first task option is presented in the first display area in the form of parallel multi-select or cascading multi-select.

[0084] In one scenario, it can be combined with various alternatives from one or more of the above scenarios, and the multiple task options presented in the second display area and the option attribute values ​​of the task options are displayed in form.

[0085] In the above method, at least one first task option is presented in a first display area of ​​a first display component. The first task option is used to configure a first type parameter of a resource object. Based on this, in response to a second task option selected from the at least one first task option, a second task option is presented in a second display area of ​​the first display component. This solution integrates the first and second task options into different display areas of the same first display component. Selecting the second task option will trigger the presentation of the second display area within the same first display component, eliminating the need to repeatedly load selection boxes and input boxes to add task options. This effectively shortens the operation path for configuring parameters of resource objects, avoids cross-control switching for task option configuration, and improves the efficiency of task option configuration. Furthermore, when the second task option is selected... After the task options are displayed in a linked manner, the option attribute values ​​of the second task option can be displayed synchronously after the configuration operation is performed on the second task option. This significantly reduces the complexity of the parameter configuration operation for the second task option. All core configuration operations are completed in a unified first display component, which significantly improves the overall configuration efficiency of resource objects. Furthermore, the linked display after the second task option is selected and the synchronous display of option attribute values ​​after the configuration operation is performed on the second task option achieves a seamless connection of the entire parameter configuration chain. This not only ensures the intuitiveness of the task options and their corresponding option attribute values, but also improves the accuracy of parameter configuration because the task options and option attribute values ​​are clearly associated in the first display component. It can fully adapt to the needs of efficient configuration scenarios and improve the parameter configuration efficiency of resource objects.

[0086] The above-described resource object configuration device can execute the resource object configuration method provided in any embodiment of this document, and has the corresponding functional modules and beneficial effects for executing the resource object configuration method.

[0087] It is worth noting that the various units and modules included in the above-mentioned interactive device are only divided according to functional logic, but are not limited to the above division, as long as the corresponding functions can be realized; in addition, the specific names of each functional unit are only for easy differentiation and are not used to limit the protection scope of the embodiments in this article.

[0088] The following is for reference. Figure 11 This document illustrates a schematic diagram of an electronic device (e.g., a terminal device or server) 700 suitable for implementing the resource object configuration method described above. The terminal device in this document may include, but is not limited to, mobile terminals such as mobile phones, laptops, digital radio receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), in-vehicle terminals (e.g., in-vehicle navigation terminals), and fixed terminals such as digital TVs and desktop computers. Figure 11The electronic device shown is merely an example and should not be construed as limiting the functionality and scope of the embodiments described herein.

[0089] like Figure 11 As shown, the electronic device 700 may include a processing unit (e.g., a central processing unit, a graphics processor, etc.) 701, which can perform various appropriate actions and processes according to a program stored in a read-only memory (ROM) 702 or a program loaded from a storage device 708 into a random access memory (RAM) 703. The RAM 703 also stores various programs and data required for the operation of the electronic device 700. The processing unit 701, ROM 702, and RAM 703 are interconnected via a bus 704. An input / output (I / O) interface 705 is also connected to the bus 704.

[0090] Typically, the following devices can be connected to I / O interface 605: input devices 606 including, for example, touchscreens, touchpads, keyboards, mice, cameras, microphones, accelerometers, gyroscopes, etc.; output devices 707 including, for example, liquid crystal displays (LCDs), speakers, vibrators, etc.; storage devices 708 including, for example, magnetic tapes, hard disks, etc.; and communication devices 709. Communication device 709 allows electronic device 700 to communicate wirelessly or wiredly with other devices to exchange data. Although Figure 11 An electronic device 700 with various devices is shown; however, it should be understood that it is not required to implement or possess all of the devices shown. More or fewer devices may be implemented or possessed alternatively.

[0091] In particular, according to embodiments of this document, the processes described in the above-referenced flowcharts can be implemented as computer software programs. For example, the technical solutions of this document include a computer program product comprising a computer program carried on a non-transitory computer-readable medium, the computer program containing program code for performing the resource object configuration method shown in the flowcharts. In such an embodiment, the computer program can be downloaded and installed from a network via a communication device 709, or installed from a storage device 708, or installed from a ROM 702. When the computer program is executed by a processing device 701, it performs the functions defined in the resource object configuration method of the embodiments of this document.

[0092] The names of messages or information exchanged between multiple devices in this document are for illustrative purposes only and are not intended to limit the scope of these messages or information.

[0093] The electronic device provided in this embodiment and the resource object configuration method provided in the above technical solutions belong to the same inventive concept. Technical details not described in detail in this document can be found in the above embodiments, and this embodiment has the same beneficial effects as the above embodiments.

[0094] This article provides a computer storage medium on which a computer program is stored, which, when executed by a processor, implements the resource object configuration method provided in the above embodiments.

[0095] It should be noted that the computer-readable medium described above can be a computer-readable signal medium, a computer-readable storage medium, or any combination thereof. A computer-readable storage medium can be, for example,—but not limited to—an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination thereof. More specific examples of a computer-readable storage medium may include, but are not limited to: an electrical connection having one or more wires, a portable computer disk, a hard disk, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact disk read-only memory (CD-ROM), optical storage device, magnetic storage device, or any suitable combination thereof. In this document, a computer-readable storage medium can be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, apparatus, or device. In this document, a computer-readable signal medium can include a data signal propagated in baseband or as part of a carrier wave, carrying computer-readable program code. Such propagated data signals can take various forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination thereof. A computer-readable signal medium can be any computer-readable medium other than a computer-readable storage medium, which can send, propagate, or transmit a program for use by or in connection with an instruction execution system, apparatus, or device. The program code contained on the computer-readable medium can be transmitted using any suitable medium, including but not limited to: wires, optical fibers, RF (radio frequency), etc., or any suitable combination thereof.

[0096] In some implementations, clients and servers can communicate using any currently known or future-developed network protocol such as HTTP (Hypertext Transfer Protocol) and can interconnect with digital data communication (e.g., communication networks) of any form or medium. Examples of communication networks include local area networks (“LANs”), wide area networks (“WANs”), the Internet (e.g., the Internet of Things), and peer-to-peer networks (e.g., ad hoc peer-to-peer networks), as well as any currently known or future-developed networks.

[0097] The aforementioned computer-readable medium may be included in the aforementioned electronic device; or it may exist independently and not assembled into the electronic device.

[0098] The aforementioned computer-readable medium carries one or more programs that, when executed by the electronic device, cause the electronic device to: display at least one first task option, the first task option being used to configure a first type parameter of a resource object, the at least one first task option being presented through a first display area in a first display component; in response to a second task option selected from the at least one first task option, display the second task option, the second task option being presented through a second display area in the first display component; and in response to a configuration operation on the second task option, display the option attribute value of the second task option, the option attribute value of the second task option being presented through a second display area in the first display component.

[0099] Computer program code for performing the operations described herein may be written in one or more programming languages ​​or a combination thereof, including but not limited to object-oriented programming languages ​​such as Java, Smalltalk, and C++, as well as conventional procedural programming languages ​​such as the "C" language or similar programming languages. The program code may execute entirely on the user's computer, partially on the user's computer, as a standalone software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In cases involving remote computers, the remote computer may be connected to the user's computer via any type of network—including a local area network (LAN) or a wide area network (WAN)—or may be connected to an external computer (e.g., via the Internet using an Internet service provider).

[0100] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of this document. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, may be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions.

[0101] The modules or units described herein can be implemented in software or hardware. The names of modules or units do not necessarily constitute a limitation on the module or unit itself.

[0102] The functions described above in this document can be performed at least in part by one or more hardware logic components. For example, exemplary types of hardware logic components that can be used, without limitation, include: field-programmable gate arrays (FPGAs), application-specific integrated circuits (ASICs), application-specific standard products (ASSPs), system-on-a-chip (SoCs), complex programmable logic devices (CPLDs), and so on.

[0103] In the context of this document, a machine-readable medium can be a tangible medium that may contain or store a program for use by or in conjunction with an instruction execution system, apparatus, or device. A machine-readable medium can be a machine-readable signal medium or a machine-readable storage medium. A machine-readable medium can be, but is not limited to, electronic, magnetic, optical, electromagnetic, infrared, or semiconductor systems, apparatus, or devices, or any suitable combination of the foregoing. More specific examples of machine-readable storage media include electrical connections based on one or more wires, portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination of the foregoing.

[0104] The above description is merely a preferred embodiment and an explanation of the technical principles employed. Those skilled in the art should understand that the scope of disclosure herein is not limited to technical solutions formed by specific combinations of the above-described technical features, but should also cover other technical solutions formed by arbitrary combinations of the above-described technical features or their equivalents without departing from the above-described concept. For example, technical solutions formed by substituting the above features with (but not limited to) technical features disclosed herein that have similar functions.

[0105] Furthermore, while the operations are described in a specific order, this should not be construed as requiring these operations to be performed in the specific order shown or in a sequential order. In certain circumstances, multitasking and parallel processing may be advantageous. Similarly, while several specific implementation details are included in the above discussion, these should not be interpreted as limiting the scope of this document. Certain features described in the context of individual implementations may also be implemented in combination in a single implementation. Conversely, various features described in the context of a single implementation may also be implemented individually or in any suitable sub-combination in multiple implementations.

[0106] Although the subject matter has been described using language specific to structural features and / or methodological logic, it should be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or actions described above. Rather, the specific features and actions described above are merely illustrative examples of implementing the claims.

Claims

1. A method for configuring resource objects, the method comprising: Display at least one first task option, the first task option being used to configure a first type parameter of a resource object, the at least one first task option being presented through a first display area in a first display component; In response to a second task option selected from the at least one first task option, the second task option is displayed in conjunction with the first task option, and the second task option is presented through a second display area in the first display component; In response to the configuration operation of the second task option, the option attribute value of the second task option is displayed, and the option attribute value of the second task option is presented through the second display area in the first display component.

2. The method of claim 1, wherein displaying at least one first task option includes: In response to a trigger operation on the first selection component, a first display component is displayed. The first selection component is associated with the first display component. The first display component displays first information in a first display area. The first information includes multiple first task options that the first display component displays by default. And / or, In response to receiving a search keyword in the first display component, second information is displayed. The second information is presented after replacing the already presented first information in the first display area of ​​the first display component. The second information includes at least one first task option obtained by searching based on the search keyword.

3. The method according to claim 1, further comprising: In response to the selection of a third task option from the at least one first task option, the third task option is displayed in conjunction with the selection of the second task option. The third task option is selected after the second task option is selected, and the third task option and the second task option are presented simultaneously in the second display area of ​​the first display component.

4. The method according to claim 2, further comprising: In response to clearing the search keywords entered in the first display component, the first information is restored to be displayed in the first display area of ​​the first display component, while the task options presented in the second display area of ​​the first display component remain unchanged.

5. The method according to claim 1, wherein when the at least one first task option includes a plurality of first task options, in response to a second task option selected from the at least one first task option, the second task option is displayed in a coordinated manner, comprising: In response to the selection of a plurality of second task options from the at least one first task option, the plurality of second task options are displayed in a second display area in the first display component.

6. The method according to claim 1, wherein in response to a configuration operation on the second task option, displaying the option attribute value of the second task option includes: In response to performing a configuration operation on the configuration component of the second task option, the option attribute value of the second task option is displayed. The configuration component of the second task option is used to configure the option attribute value of the second task option. The option attribute value of the second task option is presented in a first area associated with the configuration component of the second task option. The first area is used to display the option attribute value or input the option attribute value. The second display area includes the configuration component of the second task option and the first area associated with the configuration component of the second task option.

7. The method according to claim 6, wherein the configuration component includes an input component and / or a second selection component, the input component being used to input the option attribute value of the task option presented in the second display area, and the second selection component being used to select the option attribute value of the task option presented in the second display area.

8. The method according to claim 1, further comprising: In response to the completion of the configuration of the second task option, the second task option and its option attribute value are displayed in the second area. The second area is an input area associated with the first selection component, which is associated with the first display component. The second task option and its option attribute value are displayed in the form of labels.

9. The method according to claim 1 or 3, further comprising: In response to the configuration of the first type parameter of the resource object, it is detected whether the option attribute values ​​of multiple fourth task options meet the preset value conditions. The multiple fourth task options include multiple task options presented in the second display area of ​​the first display component. In response to the fact that the option attribute values ​​of multiple fourth task options do not meet the preset numerical conditions, error information of the first type parameter is displayed. The error information of the first type parameter is presented in a third area associated with the first selection component. The third area is configured in at least one side of the first selection component, and the distance between the third area and the first selection component is less than a preset distance.

10. The method according to claim 1, wherein the at least one first task option is presented in the first display area in the form of parallel multi-select or cascading multi-select.

11. The method according to claim 1 or 3, wherein the multiple task options presented in the second display area and the option attribute values ​​of the task options are displayed in form.

12. A resource object configuration apparatus, the apparatus comprising: A first processing module is configured to display at least one first task option, wherein the first task option is used to configure a first type parameter of a resource object, and the at least one first task option is presented through a first display area in a first display component; The second processing module is configured to respond to the selection of a second task option from the at least one first task option, and to display the second task option in a linked manner, wherein the second task option is presented through a second display area in the first display component; The third processing module is used to respond to the configuration operation of the second task option by displaying the option attribute value of the second task option, which is presented through the second display area in the first display component.

13. An electronic device, the electronic device comprising: At least one processor; and a memory communicatively connected to the at least one processor; wherein, The memory stores a computer program that can be executed by the at least one processor, the computer program being executed by the at least one processor to enable the at least one processor to perform the resource object configuration method according to any one of claims 1-11.

14. A computer-readable storage medium storing computer instructions that, when executed by a processor, implement the resource object configuration method according to any one of claims 1-11.

15. A computer program product comprising a computer program that, when executed by a processor, implements the resource object configuration method as described in any one of claims 1-11.