Method and apparatus for synthesizing virtual equipment, and device, storage medium and program product
By displaying equipment selection controls in the virtual equipment synthesis interface and randomly synthesizing target virtual equipment, the problem of insufficient equipment attribute improvement and randomness in the existing technology is solved, and players' interest and depth in equipment synthesis are enhanced.
Patent Information
- Application Number
- PCT/CN2024/136720
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-05
- Filing Date
- 2024-12-04
- Publication Date
- 2025-07-10
AI Technical Summary
The equipment system in the prior art has fixed equipment attributes and is less random in virtual games, resulting in players' pursuit of equipment being reduced.
The equipment selection control is displayed in the virtual equipment synthesis interface, allowing players to select the target main virtual equipment and the target secondary virtual equipment, and display the randomly synthesized target virtual equipment in response to the equipment synthesis command, enhancing the randomness of equipment attributes.
It improves the randomness of virtual equipment synthesis and the upper limit possibility of equipment attributes, and increases players' pursuit of top-quality equipment and the utilization rate of equipment synthesis.
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Figure CN2024136720_10072025_PF_FP_ABST
Abstract
Description
Virtual equipment synthesis method, device, equipment, storage medium and program product
[0001] CROSS-REFERENCE TO RELATED APPLICATIONS
[0002] The embodiments of this application are based on and claim the priority of Chinese patent application with application number 202410029209.4 and application date January 5, 2024. The entire contents of the Chinese patent application are hereby introduced into the embodiments of this application as a reference. Technical Field
[0003] The present application relates to human-computer interaction technology, and in particular to a method, device, equipment, storage medium and program product for synthesizing virtual equipment. Background Art
[0004] In massively multiplayer online role-playing games (MMORPGs), the equipment system is the most noticeable aspect of the game, and players invest significant effort in the pursuit of superior equipment attributes. However, existing equipment systems generally only allow players to craft and enhance equipment. Both of these improvements are relatively fixed and have little randomness, resulting in lower ultimate equipment attributes. This undoubtedly significantly reduces players' desire for equipment. Summary of the Invention
[0005] Embodiments of the present application provide a method, apparatus, electronic device, computer-readable storage medium, and computer program product for synthesizing virtual equipment, which can improve the randomness of the synthesis of virtual equipment.
[0006] The technical solution of the embodiment of the present application is implemented as follows:
[0007] The present invention provides a method for synthesizing virtual equipment, including:
[0008] Display equipment selection controls in the crafting interface of virtual equipment;
[0009] In response to an equipment selection instruction triggered based on the equipment selection control, displaying a target primary virtual equipment and a target secondary virtual equipment selected by the equipment selection instruction, wherein the target secondary virtual equipment is compatible with the target primary virtual equipment;
[0010] In response to an equipment synthesis instruction, a synthesized target virtual equipment is displayed, where the target virtual equipment is randomly synthesized based on equipment attributes of the target primary virtual equipment and the target secondary virtual equipment.
[0011] The embodiment of the present application provides a device for synthesizing virtual equipment, including:
[0012] a first display module configured to display equipment selection controls in a synthesis interface of virtual equipment;
[0013] a second display module configured to, in response to an equipment selection instruction triggered based on the equipment selection control, display a target primary virtual equipment and a target secondary virtual equipment selected by the equipment selection instruction, wherein the target secondary virtual equipment is compatible with the target primary virtual equipment;
[0014] The third display module is configured to display the synthesized target virtual equipment in response to the equipment synthesis instruction, where the target virtual equipment is randomly synthesized based on equipment attributes of the target primary virtual equipment and the target secondary virtual equipment.
[0015] An embodiment of the present application provides an electronic device, including:
[0016] a memory for storing computer-executable instructions or computer programs;
[0017] The processor is used to execute the computer executable instructions stored in the memory to implement the virtual equipment synthesis method provided in the embodiment of the present application.
[0018] An embodiment of the present application provides a computer-readable storage medium storing computer-executable instructions for implementing a method for synthesizing virtual equipment provided in an embodiment of the present application when executed by a processor.
[0019] The present invention provides a computer program product including a computer program or computer executable instructions. When the computer program or computer executable instructions are executed by a processor, the method for synthesizing virtual equipment provided in the present invention is implemented.
[0020] The embodiments of the present application have the following beneficial effects:
[0021] By applying the embodiment of the present application, an equipment selection control is displayed in the synthesis interface of virtual equipment. If the user triggers the equipment selection control to issue an equipment selection instruction, the target main virtual equipment selected by the equipment indication instruction and the target secondary virtual equipment compatible with the target main virtual equipment are displayed in the synthesis interface. At this time, if the equipment synthesis instruction issued by the user is received, the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment is displayed in the synthesis interface; since the synthesized target virtual equipment is randomly synthesized based on the equipment attributes of the target main virtual equipment and the target secondary virtual equipment, this can improve the randomness of the virtual equipment synthesis and, to a certain extent, can increase the possibility that the equipment attributes of the synthesized target virtual equipment reach the upper limit. This allows players who pursue top-quality equipment to always have a continuous goal pursuit, which is conducive to expanding the equipment depth and increasing the synthesis utilization rate of virtual equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] FIG1 is a schematic diagram of the architecture of a virtual equipment synthesis system 100 provided in an embodiment of the present application;
[0023] FIG2 is a schematic structural diagram of an electronic device 500 provided in an embodiment of the present application;
[0024] FIG3 is a schematic diagram of a flow chart of a method for synthesizing virtual equipment according to an embodiment of the present application;
[0025] FIG4 is a schematic diagram of a synthetic interface of virtual equipment provided by the present application;
[0026] FIG5 is a schematic diagram showing a synthetic interface display of virtual equipment provided in an embodiment of the present application;
[0027] FIG6 is a schematic diagram showing a synthetic interface display of virtual equipment provided in an embodiment of the present application;
[0028] FIG7 is a schematic diagram showing a synthetic interface display of virtual equipment provided in an embodiment of the present application;
[0029] FIG8 is a schematic diagram showing a display of a synthetic preview interface of virtual equipment provided in an embodiment of the present application;
[0030] FIG9 is a schematic diagram showing an equipment illustration provided in an embodiment of the present application;
[0031] FIG10 is a schematic diagram of the synthesis result of virtual equipment provided in an embodiment of the present application;
[0032] FIG11 is a schematic diagram of the synthesis result of virtual equipment provided in an embodiment of the present application;
[0033] FIG12 is a schematic diagram of a flow chart of a method for synthesizing virtual equipment according to an embodiment of the present application;
[0034] FIG13 is a flow chart of a method for synthesizing virtual equipment provided in an embodiment of the present application. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical solutions and advantages of this application clearer, the application will be further described in detail below with reference to the accompanying drawings. The described embodiments should not be regarded as limiting this application. All other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application.
[0036] It is understandable that in the embodiments of the present application, when data related to user information (such as user trigger operations, virtual equipment attributes or historical selection rates of virtual equipment, etc.) is applied to specific products or technologies, user permission or consent is required, and the collection, use and processing of relevant data must comply with relevant laws, regulations and standards of relevant countries and regions.
[0037] In the following description, reference is made to “some embodiments”, which describes a subset of all possible embodiments, but it will be understood that “some embodiments” may be the same subset or different subsets of all possible embodiments and may be combined with each other without conflict.
[0038] In the following description, the terms "first\second..." are merely used to distinguish similar objects and do not represent a specific ordering of the objects. It is understandable that "first\second..." can be interchanged with a specific order or sequence where permitted, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.
[0039] In the embodiments of the present application, the term "module" or "unit" refers to a computer program or a part of a computer program that has a predetermined function and works together with other related parts to achieve a predetermined goal, and can be implemented in whole or in part by using software, hardware (such as processing circuits or memories) or a combination thereof. Similarly, a processor (or multiple processors or memories) can be used to implement one or more modules or units. In addition, each module or unit can be part of an overall module or unit that includes the function of the module or unit.
[0040] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this application pertains. The terms used herein are for the purpose of describing the embodiments of this application only and are not intended to limit this application.
[0041] Before further describing the embodiments of the present application in detail, the nouns and terms involved in the embodiments of the present application are explained. The nouns and terms involved in the embodiments of the present application are subject to the following interpretations.
[0042] 1) Client: An application running in a terminal to provide various services, such as a video player client, a game client, etc.
[0043] 2) In response, it is used to indicate the conditions or states on which the executed operations depend. When the dependent conditions or states are met, one or more operations executed can be real-time or have a set delay. Unless otherwise specified, there is no restriction on the order in which the multiple operations executed are executed.
[0044] 3) A virtual scene is a virtual scene displayed (or provided) when an application is running on a terminal. The virtual scene can be a simulation of the real world, a semi-simulation and semi-fictitious virtual environment, or a purely fictitious virtual environment. The virtual scene can be any of a two-dimensional virtual scene, a 2.5-dimensional virtual scene, or a three-dimensional virtual scene. The embodiments of the present application do not limit the dimensions of the virtual scene. For example, the virtual scene may include the sky, land, ocean, etc. The land may include environmental elements such as deserts and cities, and users can control virtual objects to move in the virtual scene.
[0045] 4) Virtual characters: These are the images of various people and objects that can interact in a virtual scene, or movable objects within the virtual scene. These movable objects can be virtual people, virtual animals, cartoon characters, etc., such as people and animals displayed within the virtual scene. A virtual character can be a virtual image that represents the user within the virtual scene. A virtual scene can include multiple virtual characters, each with its own unique shape and size, occupying a portion of the virtual scene space. A virtual character can also be a game character controlled by the user (or player).
[0046] 5) Virtual equipment refers to virtual items worn or held by the virtual character controlled by the target account (or player). A virtual character can wear or hold multiple pieces of virtual equipment. Each piece of virtual equipment has equipment quality and equipment attributes. Equipment attributes are divided into basic attributes and special effect attributes. Equipment quality controls the maximum value of the basic attributes of virtual equipment and the maximum number of special effect attributes. The higher the equipment quality of virtual equipment, the larger the corresponding maximum value of the basic attributes and the maximum number of special effect attributes. When the same piece of virtual equipment has multiple special effect attributes with the same name, and the number of special effect attributes reaches the threshold, the parameters of the special effect attributes will be multiplied (that is, the special effect set is triggered).
[0047] 6) Equipment synthesis function, which combines the target main virtual equipment selected by the target account (or player) from all virtual equipment (including virtual equipment worn and held by virtual characters) and the target secondary virtual equipment selected from the held virtual equipment into one. When the synthesis is completed, the target main virtual equipment and the target secondary virtual equipment will be eliminated, and the synthesized target virtual equipment will be obtained. The equipment quality of the target virtual equipment is the same as the equipment quality of the target main virtual equipment, and the basic attributes and special effect attributes of the target virtual equipment are obtained based on the basic attributes and special effect attributes of the target main virtual equipment and the target secondary virtual equipment.
[0048] The embodiments of the present application provide a method, device, electronic device, computer-readable storage medium and computer program product for synthesizing virtual equipment, which can improve the randomness of the synthesis of virtual equipment. The following describes exemplary applications of the electronic devices provided in the embodiments of the present application. The electronic devices provided in the embodiments of the present application can be implemented as various types of user terminals such as laptops, tablet computers, desktop computers, set-top boxes, mobile devices (for example, mobile phones, portable music players, personal digital assistants, dedicated messaging devices, portable gaming devices), smart phones, smart speakers, smart watches, smart TVs, and vehicle-mounted terminals, and can also be implemented as servers. Below, an exemplary application when the device is implemented as a terminal will be described.
[0049] Refer to Figure 1, which is a schematic diagram of the architecture of the virtual equipment synthesis system 100 provided in an embodiment of the present application. In order to support an exemplary application, the terminal (terminal 400-1 and terminal 400-2 are shown as an example) is connected to the server 200 through the network 300. The network 300 can be a wide area network or a local area network, or a combination of the two.
[0050] In some embodiments, the terminal can be a smart phone, a tablet computer, a laptop computer, a desktop computer, a smart speaker, a smart watch, a car terminal, etc., but is not limited to this. The terminal is provided with a client with a live broadcast function, such as a video playback client, an instant messaging client, a game client, a live broadcast client, etc. The server 200 is a background server corresponding to the client, which can be an independent physical server, or a server cluster or distributed system composed of multiple physical servers, or a cloud server that provides cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, security services, content delivery networks (CDN), and big data and artificial intelligence platforms and other basic cloud computing services. The terminal and the server can be directly or indirectly connected by wired or wireless communication, which is not limited in the embodiments of the present application.
[0051] In actual application, the terminal displays the synthesis interface of virtual equipment and displays the equipment selection control in the synthesis interface, and sends the equipment selection instruction to the server 200 in response to the equipment selection instruction triggered by the equipment selection control; the server 200 obtains the target main virtual equipment and target secondary virtual equipment selected by the equipment selection instruction based on the equipment selection instruction, and returns the target main virtual equipment and target secondary virtual equipment to the terminal; the terminal displays the target main virtual equipment and target secondary virtual equipment in the synthesis interface; in response to the equipment synthesis instruction issued by the target account, the terminal displays the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment in the synthesis interface.
[0052] Referring to Figure 2, Figure 2 is a schematic diagram of the structure of an electronic device 500 provided in an embodiment of the present application. Taking the electronic device 500 as the terminal in Figure 1 as an example, the electronic device 500 shown in Figure 2 includes: at least one processor 510, a memory 550, at least one network interface 520 and a user interface 530. The various components in the electronic device 500 are coupled together via a bus system 540. It can be understood that the bus system 540 is used to achieve connection and communication between these components. In addition to including a data bus, the bus system 540 also includes a power bus, a control bus and a status signal bus. However, for the sake of clarity, various buses are labeled as bus system 540 in Figure 2.
[0053] The processor 510 can be an integrated circuit chip with signal processing capabilities, such as a general-purpose processor, a digital signal processor (DSP), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc., where the general-purpose processor can be a microprocessor or any conventional processor, etc.
[0054] The memory 550 includes a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memories. The non-volatile memory may be a read-only memory (ROM), and the volatile memory may be a random access memory (RAM). The memory 550 described in the embodiments of the present application is intended to include any suitable type of memory. The memory 550 may optionally include one or more storage devices physically remote from the processor 510.
[0055] In some embodiments, the memory 550 can store data to support various operations, examples of which include programs, modules, and data structures, or a subset or superset thereof, as exemplified below.
[0056] The operating system 551 includes system programs for processing various basic system services and performing hardware-related tasks, such as a framework layer, a core library layer, a driver layer, etc., which are used to implement various basic businesses and process hardware-based tasks; the network communication module 552 is used to reach other electronic devices via one or more (wired or wireless) network interfaces 520. Exemplary network interfaces 520 include: Bluetooth, Wireless Compatibility Certification (WiFi), and Universal Serial Bus (USB), etc.
[0057] In some embodiments, the virtual equipment synthesis device provided in the embodiments of the present application can be implemented in software. The virtual equipment synthesis device provided in the embodiments of the present application can be provided as various software embodiments, including various forms including applications, software, software modules, scripts, or codes. Figure 2 shows a virtual equipment synthesis device 555 stored in the memory 550. It can be software in the form of programs and plug-ins, and includes a series of modules, including a first display module 5551, a second display module 5552, and a third display module 5553. These modules are logical and can be arbitrarily combined or further split according to the functions implemented. The functions of each module will be described below.
[0058] In other embodiments, the apparatus provided in the embodiments of the present application may be implemented in hardware. As an example, the apparatus provided in the embodiments of the present application may be a processor in the form of a hardware decoding processor, which is programmed to execute the method for synthesizing virtual equipment provided in the embodiments of the present application. For example, the processor in the form of a hardware decoding processor may be one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), programmable logic devices (PLDs), complex programmable logic devices (CPLDs), field-programmable gate arrays (FPGAs), or other electronic components.
[0059] In some embodiments, the terminal or server can implement the synthesis method of the virtual equipment provided by the embodiment of the present application by running various computer executable instructions or computer programs. For example, computer executable instructions can be commands, machine instructions or software instructions at the microprogram level. The computer program can be a native program or software module in the operating system; it can be a local (Native) application (APPlication, APP), that is, a program that needs to be installed in the operating system to run, such as instant messaging APP, live broadcast APP; it can also be a small program that can be embedded in any APP, that is, a program that can be run only by downloading it to a browser environment. In short, the above-mentioned computer executable instructions can be instructions in any form, and the above-mentioned computer program can be an application, module or plug-in in any form.
[0060] As previously mentioned, the virtual equipment synthesis method provided in the embodiments of the present application can be implemented by various types of electronic devices. For example, it can be executed independently by either the terminal or the server 200 in FIG. 1 , or it can be executed collaboratively by the terminal and the server 200 in FIG. Next, the method for synthesizing virtual equipment provided in the embodiments of the present application, performed independently by the terminal in FIG. 1 , will be described as an example. Referring to FIG. 3 , FIG. 3 is a schematic flow chart of the method for synthesizing virtual equipment provided in the embodiments of the present application, which will be described in conjunction with the steps shown in FIG. 3 .
[0061] Step 101: The terminal displays an equipment selection control in the synthesis interface of the virtual equipment.
[0062] In actual applications, a client that supports virtual scenes is installed on the terminal (for example, when the virtual scene is a game, the corresponding client can be a massively multiplayer online role-playing game APP). When the user opens the client on the terminal and the terminal runs the client, the terminal can display the virtual scene interface and display an equipment synthesis entrance for invoking the equipment synthesis function in the virtual scene interface. When the user triggers the equipment synthesis entrance, the terminal responds to the trigger operation, displays the synthesis interface of the virtual equipment, and displays the equipment selection control in the synthesis interface of the virtual equipment, wherein the synthesis interface is used to synthesize virtual equipment, and the equipment selection control is used for selecting the main virtual equipment and secondary virtual equipment required for synthesizing the virtual equipment. In addition to the equipment selection control, the synthesis interface can also include a prompt acquisition control and an interface closing control.
[0063] For example, referring to Figure 4, Figure 4 is a schematic diagram of the synthesis interface of virtual equipment provided by the present application, in which an equipment selection control 402 for selecting sub-virtual equipment required for synthesizing virtual equipment is displayed in the synthesis interface 401 of the virtual scene, wherein the sub-virtual equipment is a component element required for synthesizing the target virtual equipment, including main virtual equipment and secondary virtual equipment; in addition, a prompt acquisition control 403 and an interface closing control 404 can also be displayed, wherein the prompt acquisition control 403 is used to obtain relevant information of the synthesis rules of the virtual equipment. For example, when the user triggers the prompt acquisition control 403, the terminal can display the synthesis prompt interface in response to the trigger operation, and display relevant information for the user to understand the synthesis rules of the virtual equipment on the synthesis prompt interface. In addition, the user closes the synthesis interface of the virtual equipment by triggering the interface closing control 403 to return to the interactive screen of the virtual scene to continue playing.
[0064] Step 102: In response to the equipment selection instruction triggered by the equipment selection control, display the target primary virtual equipment and target secondary virtual equipment selected by the equipment selection instruction, and the target secondary virtual equipment is compatible with the target primary virtual equipment.
[0065] In actual application, when the terminal receives an equipment selection instruction triggered by an equipment selection control, it responds to the equipment selection instruction, obtains the data information (such as equipment quality, equipment attributes, etc.) of the target main virtual equipment and target secondary virtual equipment selected by the equipment selection instruction, and displays the target main virtual equipment and target secondary virtual equipment in the synthesis interface.
[0066] Here, the target main virtual equipment is a template unit for equipment synthesis, and the target secondary virtual equipment is a virtual equipment that is compatible with the target main virtual equipment, which is equivalent to the raw material for equipment synthesis. The synthesis of virtual equipment can be achieved by adding the equipment attributes of the target secondary virtual equipment to the target main virtual equipment (that is, the equipment attributes of the synthesized target virtual equipment are higher than the equipment attributes of the original target main virtual equipment). The so-called adaptation can mean that the equipment positions corresponding to the target secondary virtual equipment and the target main virtual equipment are the same, such as the target main virtual equipment is a battle suit equipped on the virtual character, and the target secondary virtual equipment can be a button equipped on the battle suit. Adaptation can also mean that the target secondary virtual equipment and the target main virtual equipment complement each other to form an organic whole virtual equipment, that is, the target secondary virtual equipment and the target main virtual equipment can respectively be sub-components in an organic whole virtual equipment. For example, the target main virtual equipment is the gun body in the virtual gun, and the target secondary virtual equipment is the bullet equipped to the gun body. Of course, the target secondary virtual equipment and the target main virtual equipment can also be other adaptive forms, which are not limited in this application.
[0067] It is understandable that when synthesizing virtual equipment, players generally follow the following principles when selecting the primary and secondary virtual equipment required for the synthesis: First, the primary virtual equipment is usually the virtual equipment whose main attributes and characteristics are desired to be retained after synthesis. It is the core virtual equipment in the synthesis process, and other secondary virtual equipment will be synthesized around the primary virtual equipment. The primary virtual equipment often needs to meet certain quality and level requirements so that it can be synthesized with other secondary virtual equipment to produce higher-quality virtual equipment. The quality and level of the primary and secondary virtual equipment selected by the player should match; in addition, the primary virtual equipment should have the attributes or basic attributes that the player values most, such as attack power, defense power, health points, etc. Secondary virtual equipment provides additional attributes, skills, or slots, etc., which are used to supplement the deficiencies of the primary virtual equipment and improve the overall strength of the synthesized virtual equipment. The number of secondary virtual equipment is usually 3-4, and the specific number depends on different games and synthesis rules. When choosing secondary virtual equipment, you should choose those that can complement the main virtual equipment. For example, secondary virtual equipment with additional slots can increase the number of slots of the main virtual equipment, and secondary virtual equipment with specific attributes can give the main virtual equipment new abilities.
[0068] When selecting primary and secondary virtual equipment, the selection must be based on the player's needs and equipment synthesis rules. That is, the player needs to select appropriate virtual equipment as the target primary and secondary virtual equipment for equipment synthesis based on the desired attributes and functions of the target virtual equipment. For example, if the player wants the synthesized target virtual equipment to have specific attributes, then the target primary virtual equipment selected by the player should have basic attributes, and the target secondary virtual equipment should provide the missing attributes or enhance the basic attributes. For another example, if the player's synthesis goal is to increase the number of slots in the virtual equipment, then the player should select a target primary virtual equipment with fewer slots and a target secondary virtual equipment with more slots.
[0069] In some embodiments, when the equipment selection control includes a main equipment selection control and a secondary equipment selection control, the terminal may respond to the equipment selection instruction triggered based on the equipment selection control and display the target main virtual equipment and target secondary virtual equipment selected by the equipment selection instruction in the following manner: in response to the triggering operation on the main equipment selection control, display the main equipment selection interface, and display at least one candidate main virtual equipment in the main equipment selection interface; in response to the equipment selection instruction for the target main virtual equipment among the at least one candidate main virtual equipment, display the target main virtual equipment; in response to the triggering operation on the secondary equipment selection control, display the secondary equipment selection interface, and display at least one candidate secondary virtual equipment in the secondary equipment selection interface, and the candidate secondary virtual equipment is adapted to the target main virtual equipment; in response to the equipment selection instruction for the target secondary virtual equipment among the at least one candidate secondary virtual equipment, display the target secondary virtual equipment.
[0070] In actual implementation, the equipment selection controls displayed in the synthesis interface can be divided into main equipment selection controls and sub-equipment selection controls, wherein the main equipment selection controls are used to select the main virtual equipment participating in the equipment synthesis, and the sub-equipment selection controls are used to select the sub-virtual equipment participating in the equipment synthesis. Referring to Figure 5, Figure 5 is a schematic diagram of the synthesis interface display of virtual equipment provided by an embodiment of the present application. The terminal displays the main equipment selection control 501 and the sub-equipment selection control 502 in the synthesis interface 501. When the user triggers the main equipment selection control 502, the terminal displays the main equipment selection interface 503, and displays multiple candidate main virtual equipment 504 in the main equipment selection interface 503. When the user triggers a candidate main virtual equipment, the equipment details interface 505 of the candidate main virtual equipment can be displayed, and the equipment details information corresponding to the candidate main virtual equipment can be displayed in the equipment details interface 504, such as equipment Quality, equipment attributes (including basic attributes and special effect attributes), etc., so that the user can determine whether to select the candidate main virtual equipment for equipment synthesis by viewing the equipment details information of the candidate main virtual equipment; when the user selects the target main virtual equipment from multiple candidate main virtual equipment (such as selecting a candidate main virtual equipment and triggering the selection control 506, the selected candidate main virtual equipment is the target main virtual equipment), the terminal responds to the selection operation and displays the selected target main virtual equipment 507, as well as the equipment parameters corresponding to the target main virtual equipment 507, such as basic attribute parameters and special effect attribute parameters.
[0071] Refer to Figure 6, which is a schematic diagram of the synthesis interface display of virtual equipment provided by an embodiment of the present application. After determining the selected target main virtual equipment 601, when the user triggers the sub-equipment selection control 602, the terminal responds to the trigger operation, displays the sub-equipment selection interface 603, and displays at least one candidate sub-virtual equipment that is compatible with the target main virtual equipment in the sub-equipment selection interface 603. When the user selects the target sub-virtual equipment from multiple candidate sub-virtual equipment (such as selecting a candidate sub-virtual equipment and triggering the selection control, the selected candidate sub-virtual equipment is the target sub-virtual equipment), the terminal responds to the selection operation, displays the selected target sub-virtual equipment 603, and the equipment parameters corresponding to the target sub-virtual equipment, such as basic attribute parameters and special effect attribute parameters.
[0072] Through the above method, the player can select the target main virtual equipment required for equipment synthesis through the main equipment selection control, and when the sub-equipment selection control is triggered after the target main virtual equipment is determined, only the candidate sub-virtual equipment that is compatible with the target main virtual equipment is displayed. This reduces the difficulty of selecting the sub-virtual equipment that is compatible with the target main virtual equipment compared to displaying all the candidate sub-virtual equipment, and improves the efficiency and accuracy of equipment selection.
[0073] In some embodiments, the terminal may display at least one candidate secondary virtual equipment in the secondary equipment selection interface in the following manner: when the number of candidate secondary virtual equipment is at least two, obtaining an influencing parameter for influencing the selection priority of each candidate secondary virtual equipment, the influencing parameter including at least one of the following: the compatibility of the candidate secondary virtual equipment with the target main virtual equipment, the equipment attribute characteristics of the candidate secondary virtual equipment, and the historical selection rate corresponding to the candidate secondary virtual equipment; based on the influencing parameter, calling a neural network model for priority prediction to obtain the selection priority of each candidate secondary virtual equipment; and displaying each candidate secondary virtual equipment in the secondary equipment selection interface using a display style corresponding to each selection priority.
[0074] Here, when the number of candidate sub-virtual equipment is at least two, the selection priorities corresponding to different candidate sub-virtual equipment may be different. Each candidate sub-virtual equipment may be displayed in a corresponding display style according to the selection priority corresponding to the candidate sub-virtual equipment. That is, for candidate sub-virtual equipment with different selection priorities, each candidate sub-virtual equipment may be displayed in a different display style (such as different display order, different display color, different display brightness, different display font, etc.), or the candidate sub-virtual equipment with a higher selection priority may be highlighted. For example, there are two candidate sub-virtual equipment to choose from, namely candidate sub-virtual equipment 1 and candidate sub-virtual equipment 2, and the selection priorities corresponding to these two candidate sub-virtual equipment decrease in sequence. Candidate sub-virtual equipment 1 may be displayed in a red outline style, and candidate sub-virtual equipment 2 may be displayed in a gray outline style, so that the user can select the required candidate sub-virtual equipment as the target sub-virtual equipment, which is conducive to improving the pertinence and efficiency of the selection of the target sub-virtual equipment.
[0075] In actual implementation, when determining the selection priority of candidate secondary virtual equipment, when the influencing parameters include the compatibility between the candidate secondary virtual equipment and the target main virtual equipment (wherein, the compatibility can be determined by calculating the similarity between the characteristics of the candidate secondary virtual equipment and the characteristics of the target main virtual equipment, and the characteristics include but are not limited to: attributes, skills, quality, and level), under normal circumstances, when the compatibility between the candidate secondary virtual equipment and the target main virtual equipment exceeds the compatibility threshold (which can be set according to actual needs, such as 80%), the candidate secondary virtual equipment is considered to be compatible with the target main virtual equipment. When the candidate secondary virtual equipment is compatible with the target main virtual equipment, the compatibility is positively correlated with the selection priority of the candidate secondary virtual equipment. For example, the greater the compatibility between the two, the higher the selection priority of the corresponding candidate secondary virtual equipment. When the influencing parameters include the equipment attribute characteristics of the candidate secondary virtual equipment, the equipment attribute characteristics include basic attribute characteristics and special effect attribute characteristics. The equipment attribute capabilities of the candidate secondary virtual equipment can be determined based on the equipment attribute characteristics. Generally, the selection priority of the candidate secondary virtual equipment is positively correlated with the equipment attribute capabilities of the candidate secondary virtual equipment. For example, the stronger the equipment attribute capabilities of the candidate secondary virtual equipment, the higher its corresponding selection priority. When the influencing parameters include the historical selection rate corresponding to the candidate secondary virtual equipment, the historical selection rate can be the probability that the current account or other accounts different from the current account select the candidate secondary virtual equipment after selecting the target main virtual equipment. Generally, the selection priority of the candidate secondary virtual equipment is positively correlated with the historical selection rate of the candidate secondary virtual equipment. For example, the greater the historical selection rate corresponding to the candidate secondary virtual equipment, the higher its corresponding selection priority. After obtaining the influencing parameters for influencing the selection priority of the candidate secondary virtual equipment, the neural network model trained with the influencing parameters is used for prediction processing to obtain the selection priority of the candidate secondary virtual equipment, which can make the prediction more accurate.
[0076] Before applying the neural network model, it is necessary to train the initial neural network model, and then put the trained neural network model into application to realize the combination of influencing parameters and predict the selection priority of candidate sub-virtual equipment through artificial intelligence technology. Among them, the neural network model is trained through sub-virtual equipment samples, the influencing parameters corresponding to the sub-virtual equipment samples, and the selection priority annotated by the sub-virtual equipment samples. For example, based on the sub-virtual equipment samples, the historical selection rate associated with the sub-virtual equipment samples, and the selection priority annotated by the sub-virtual equipment samples, the initial neural network model is called for prediction processing to obtain the predicted selection priority. After determining the value of the loss function of the neural network model through the predicted selection priority and the annotated selection priority, it can be determined whether the value of the loss function exceeds the preset threshold. When the value of the loss function exceeds the preset threshold, the error signal of the neural network model is determined based on the loss function, the error signal is back-propagated in the neural network model, and the model parameters of each layer are updated during the propagation process.
[0077] Among them, the embodiments of the present application do not limit the model structure of the neural network model. For example, the neural network model can be a convolutional neural network, a deep neural network, etc.; nor are they limited to the form of the loss function. For example, it can be a cross entropy loss function, an L2 loss function, etc.
[0078] Here, back propagation is explained. The training sample data is input into the input layer of the neural network model, passes through the hidden layer, and finally reaches the output layer and outputs the result. This is the forward propagation process of the neural network model. Since there is an error between the output result of the neural network model and the actual result, the error between the output result and the actual value is calculated, and the error is backpropagated from the output layer to the hidden layer until it propagates to the input layer. In the back propagation process, the value of the model parameter is adjusted according to the error, that is, the loss function is constructed according to the error between the output result and the actual value, and the partial derivative of the loss function with respect to the model parameters is calculated layer by layer to generate the gradient of the loss function with respect to the model parameters of each layer. Since the direction of the gradient indicates the direction of error expansion, the gradient of the model parameter is inverted and summed with the original parameters of the model of each layer. The summed result is used as the updated model parameters of each layer, thereby reducing the error caused by the model parameters. The above process is continuously iterated until convergence.
[0079] In some embodiments, the terminal can update the candidate main virtual equipment or the candidate secondary virtual equipment in the following manner: display an equipment update entrance in the main equipment selection interface or the secondary equipment selection interface, wherein the equipment update entrance is used to update at least one candidate main virtual equipment in the main equipment selection interface, or to update at least one candidate secondary virtual equipment in the secondary equipment selection interface.
[0080] In actual applications, given that the display area of the main equipment selection interface or the sub-equipment selection interface is limited, when there are a large number of candidate main virtual equipment or candidate sub-virtual equipment, resulting in the inability to display all candidate main virtual equipment in the main equipment selection interface or the inability to display all candidate sub-virtual equipment in the sub-equipment selection interface, some candidate main virtual equipment can be displayed in the main equipment selection interface or some candidate sub-virtual equipment can be displayed in the sub-equipment selection interface. In this case, an equipment update entrance can be displayed in the main equipment selection interface or the sub-equipment selection interface, and the content currently displayed on the main equipment selection interface or the sub-equipment selection interface can be updated through the equipment update entrance. That is, when multiple candidate main virtual equipment are displayed in the main equipment selection interface, the main equipment selection interface or the sub-equipment selection interface can be updated through the equipment update entrance. The multiple candidate main virtual equipment currently displayed on the equipment selection interface can be replaced. When multiple candidate secondary virtual equipment are displayed in the secondary equipment selection interface, the multiple candidate secondary virtual equipment currently displayed on the secondary equipment selection interface can be replaced through the equipment update entrance, wherein the equipment update entrance is expressed in the form of: update button (such as update control), update prompt information (such as "change a batch"), and page turning symbol; for example, in Figure 5, the main equipment selection interface can be slid based on the page turning symbol, and a similar "page turning" operation can be performed on the displayed multiple candidate main virtual equipment to realize the updated display of the candidate main virtual equipment; in this way, the user can select the corresponding candidate main virtual equipment or candidate secondary virtual equipment for equipment synthesis according to actual needs, which can improve the flexibility and applicability of equipment synthesis.
[0081] In some embodiments, the terminal can respond to the equipment selection instruction triggered based on the equipment selection control and display the target main virtual equipment and target secondary virtual equipment selected by the equipment selection instruction in the following manner: in response to the triggering operation on the equipment selection control, display the equipment selection interface, the equipment selection interface includes a main equipment selection area and a secondary equipment selection area, the main equipment selection area includes at least one candidate main virtual equipment; in response to the equipment selection instruction for the target main virtual equipment among the at least one candidate main virtual equipment, display the target main virtual equipment; based on the target main virtual equipment, in response to the equipment selection instruction triggered in the secondary equipment selection area, display the target secondary virtual equipment selected by the equipment selection instruction.
[0082] In actual application, when there is only one equipment selection control displayed in the synthesis interface of virtual equipment, the terminal responds to the trigger operation of the equipment selection control, displays the equipment selection interface, and displays the main equipment selection area (for selecting the main virtual equipment) and the secondary equipment selection area (for selecting the secondary virtual equipment) in the equipment selection interface, wherein at least one candidate main virtual equipment is displayed in the main equipment selection area. When the user selects the target main virtual equipment from it, the terminal responds to the selection operation, displays the selected target main virtual equipment, and then triggers the corresponding equipment selection instruction in the secondary equipment selection area based on the selected target main virtual equipment, so as to display the target secondary virtual equipment selected by the equipment selection instruction in the secondary equipment selection area.
[0083] In some embodiments, the terminal can respond to the equipment selection instruction triggered in the secondary equipment selection area and display the target secondary virtual equipment selected by the equipment selection instruction in the following manner: display at least one candidate secondary virtual equipment in the secondary equipment selection area, and the candidate secondary virtual equipment is compatible with the target primary virtual equipment; in response to the equipment selection instruction for the target secondary virtual equipment in the at least one candidate secondary virtual equipment, display the target secondary virtual equipment.
[0084] In actual application, after the user selects and determines the target main virtual equipment in the main equipment selection area, that is, after the terminal responds to the equipment selection instruction of the target main virtual equipment among at least one candidate main virtual equipment and displays the target main virtual equipment, at least one candidate secondary virtual equipment that is compatible with the target main virtual equipment can be directly displayed in the secondary equipment selection area for the user to select and determine the target secondary virtual equipment.
[0085] 7 , which is a schematic diagram of a synthesis interface display of virtual equipment provided by an embodiment of the present application. When only one equipment selection control is displayed in the synthesis interface of the virtual equipment, the terminal displays the equipment selection interface in response to a trigger operation on the equipment selection control 701, and displays a primary equipment selection area 702 and a secondary equipment selection area 703 in the equipment selection interface. The primary equipment selection area 702 displays at least one candidate primary virtual equipment. Before a user selects a target primary virtual equipment from the primary equipment selection area 702 , the secondary equipment selection area 703 may not display the candidate secondary virtual equipment. After the user selects the target primary virtual equipment, the terminal displays the selected target primary virtual equipment 705 in the primary equipment selection area 702 and displays at least one candidate secondary virtual equipment 706 that matches the target primary virtual equipment in the secondary equipment selection area 704 in response to the selection operation. When the user selects the target secondary virtual equipment (the selection operation can trigger an equipment selection instruction), the terminal displays the selected target secondary virtual equipment in response to the selection operation (i.e., the equipment selection instruction).
[0086] Through the above method, after the player selects and determines the target main virtual equipment, only the candidate secondary virtual equipment that is compatible with the target main virtual equipment is displayed in the secondary equipment selection area. This reduces the difficulty of selecting secondary virtual equipment that is compatible with the target main virtual equipment compared to displaying all candidate secondary virtual equipment, and improves the efficiency and accuracy of equipment selection.
[0087] It should be noted that, in actual applications, before the player selects the target primary virtual equipment from the primary equipment selection area, the secondary equipment selection area may also display at least one candidate secondary virtual equipment. However, in order to avoid the player directly selecting the target secondary virtual equipment in the secondary equipment selection area without determining the target primary virtual equipment, a rejection prompt message may be displayed upon receiving an equipment selection instruction for the candidate secondary virtual equipment, to prompt the player to reject the selection of the secondary virtual equipment in the secondary equipment selection area before determining the target primary virtual equipment. In this way, the selection of secondary virtual equipment that is not compatible with the target primary virtual equipment can be avoided, thereby improving the targetedness of the equipment selection.
[0088] In addition, before the player selects the target main virtual equipment from the main equipment selection area, multiple candidate sub-virtual equipment owned by the player can be displayed in the sub-equipment selection area. After the player selects and determines the target main virtual equipment, sub-virtual equipment that is compatible with the target main virtual equipment is screened out from the multiple candidate sub-virtual equipment owned by the player, and the candidate sub-virtual equipment displayed in the sub-equipment selection area is updated, such as updating from displaying all sub-virtual equipment owned by the player to displaying only some sub-virtual equipment that is compatible with the target main virtual equipment. In this way, compared with displaying all candidate sub-virtual equipment, the difficulty of selecting sub-virtual equipment that is compatible with the target main virtual equipment is reduced, and the efficiency and accuracy of equipment selection are improved.
[0089] In some embodiments, before displaying the target main virtual equipment, the terminal may display the candidate secondary virtual equipment in the following manner: in the secondary equipment selection area, at least two candidate secondary virtual equipment are displayed in a first display style. At this time, the target secondary virtual equipment selected by the equipment selection instruction can be displayed in response to the equipment selection instruction triggered in the secondary equipment selection area in the following manner: in the secondary equipment selection area, a first part of the candidate secondary virtual equipment among the at least two candidate secondary virtual equipment is displayed in a second display style, and a second part of the candidate secondary virtual equipment among the at least two candidate secondary virtual equipment is displayed in a third display style; wherein the second display style is used to indicate that the first part of the candidate secondary virtual equipment is compatible with the target main virtual equipment, and the third display style is used to indicate that the second part of the candidate secondary virtual equipment is not compatible with the target main virtual equipment; in response to the equipment selection instruction for the target secondary virtual equipment in the first part of the candidate secondary virtual equipment, the target secondary virtual equipment is displayed.
[0090] In actual applications, before the user selects the target main virtual equipment from the main equipment selection area, that is, before the terminal displays the target main virtual equipment selected by the user, the secondary equipment selection area can also directly use the first display style to display multiple (two or more) candidate secondary virtual equipment. After the user selects the target main virtual equipment from the main equipment selection area, that is, after the terminal displays the target main virtual equipment selected by the user, the target main virtual equipment is matched with multiple candidate secondary virtual equipment in the secondary equipment selection area, such as extracting features of the target main virtual equipment and each candidate secondary virtual equipment in the secondary equipment selection area to obtain corresponding main equipment features and secondary equipment features, and calculating the similarity (such as cosine similarity) between the main equipment features and each secondary equipment feature, and using the calculated similarity value as the matching result, and based on the matching result, screen out a first part of candidate secondary virtual equipment that is compatible with the target main virtual equipment, and a second part of candidate secondary virtual equipment that is not compatible with the target main virtual equipment, and display them separately, such as in the secondary equipment selection area, using the second display style to display the first part of candidate secondary virtual equipment, and using the third display style to display the second part of candidate secondary virtual equipment.
[0091] Among them, the first display style and the second display style may be the same or different, or the first display style and the third display style may be the same or different, but the second display style and the third display style are always different. For example, when the second display style is the same as the first display style, both can be highlighted display styles. For example, before the terminal displays the target main virtual equipment selected by the user, it uses a highlighted display style (i.e., the first display style) to display multiple candidate secondary virtual equipment in the secondary equipment selection area. After displaying the target main virtual equipment selected by the user, the terminal uses a highlighted display style (i.e., the second display style) to display the first part of candidate secondary virtual equipment that is compatible with the target main virtual equipment. At this time, the third display style is different from the first display style, such as using a grayscale display style (i.e., the third display style) to display the second part of candidate secondary virtual equipment that is not compatible with the target main virtual equipment. virtual equipment; when the second display style is different from the first display style, such as before the terminal displays the target main virtual equipment selected by the user, it uses a normal brightness style (i.e., the first display style) to display multiple candidate sub-virtual equipment in the sub-equipment selection area, and after the terminal displays the target main virtual equipment selected by the user, it uses a highlighted display style (i.e., the second display style, the display brightness indicated by the second display style is higher than the display brightness indicated by the first display style) to display the first part of candidate sub-virtual equipment that is compatible with the target main virtual equipment. The third display style can be the same as the first reality style, that is, the second part of candidate sub-virtual equipment that is not compatible with the target main virtual equipment is displayed in a normal brightness style. The third display style can also be different from the first display style, such as using a grayscale display style to display the second part of candidate sub-virtual equipment that is not compatible with the target main virtual equipment.
[0092] Through the above method, different display styles are used to display candidate secondary virtual equipment that is compatible or incompatible with the target main virtual equipment, which makes it convenient for users to quickly select candidate secondary virtual equipment that is compatible with the target main virtual equipment for equipment synthesis, which is conducive to improving the efficiency of equipment selection and thus improving the efficiency of equipment synthesis.
[0093] In some embodiments, the terminal may display selection prompt information in response to a selection operation on a candidate secondary virtual equipment in the second part of candidate secondary virtual equipment, wherein the selection prompt information is used to prompt the rejection of the selection of a candidate secondary virtual equipment that is not compatible with the target main equipment, or to prompt the reselection of a candidate secondary virtual equipment that is compatible with the target main virtual equipment.
[0094] In actual applications, in order to ensure that the user correctly selects the candidate secondary virtual equipment that is compatible with the target main virtual equipment, when the user selects the candidate secondary virtual equipment that is not compatible with the target main virtual equipment, the terminal displays selection prompt information for prompting the user to refuse to select the candidate secondary virtual equipment that is not compatible with the target main virtual equipment, or displays selection prompt information for prompting the user to reselect the candidate secondary virtual equipment that is compatible with the target main virtual equipment. In this way, the pertinence and accuracy of the selection of secondary virtual equipment can be improved.
[0095] It is understandable that, in order to avoid players from making erroneous selections, the second display style may also indicate that the first part of candidate secondary virtual equipment is in a selectable state, and the third display style may also indicate that the second part of candidate secondary virtual equipment is in an unselectable state. Players can only select target secondary virtual equipment from the first part of candidate secondary virtual equipment in a selectable state. When the player selects secondary virtual equipment from the second part of candidate secondary virtual equipment in an unselectable state, the terminal does not respond, or a selection prompt message pops up to prompt the user to refuse to select the candidate secondary virtual equipment that is not compatible with the target main virtual equipment, or to prompt the user to reselect the candidate secondary virtual equipment that is compatible with the target main virtual equipment. This can improve the pertinence and accuracy of the selection of secondary virtual equipment.
[0096] Step 103: In response to the equipment synthesis instruction, the synthesized target virtual equipment is displayed, wherein the target virtual equipment is randomly synthesized based on equipment attributes of the target primary virtual equipment and the target secondary virtual equipment.
[0097] In actual application, when the terminal receives an equipment synthesis instruction, it responds to the equipment synthesis instruction, randomly synthesizes the target virtual equipment according to the equipment attributes of the target primary virtual equipment and the target secondary virtual equipment, and displays the synthesized target virtual equipment.
[0098] In some embodiments, before the terminal displays the synthesized target virtual equipment in response to the equipment synthesis instruction, it can preview the synthesis result of the virtual equipment in the following ways: displaying a synthesis preview control; displaying a synthesis preview interface in response to a trigger operation on the synthesis preview control, and displaying the equipment attribute range of the preview virtual equipment synthesized based on the target main virtual equipment and the target secondary virtual equipment in the synthesis preview interface; wherein the equipment attribute range includes at least one of the following: a basic attribute range, a special effect attribute range, which is used for reference whether to trigger the equipment synthesis instruction.
[0099] In actual applications, the synthesis preview control may be displayed after the user determines the target primary virtual equipment and the target secondary virtual equipment, or may be displayed before the user determines the target primary virtual equipment and the target secondary virtual equipment.
[0100] Refer to Figure 8, which is a display schematic diagram of the synthesis preview interface of the virtual equipment provided by an embodiment of the present application. Taking the display of the synthesis preview control after determining the target main virtual equipment and the target secondary virtual equipment as an example, the terminal responds to the trigger operation of the synthesis preview control 801, displays the synthesis preview interface 802, and displays the equipment attribute range of the preview virtual equipment synthesized based on the target main virtual equipment and the target secondary virtual equipment in the synthesis preview interface 802, such as the basic attribute range and the special effect attribute range, wherein the basic attribute range of the preview virtual equipment is obtained by a random combination of the basic attributes of the target main virtual equipment and the target secondary virtual equipment, and the special effect attribute range of the preview virtual equipment is obtained by a random combination of the special effect attributes of the target main virtual equipment and the target secondary virtual equipment.
[0101] It is understood that the maximum basic attribute value (upper limit) of the basic attribute range of the preview virtual equipment is higher than the basic attribute value of either the target primary virtual equipment or the target secondary virtual equipment, and the minimum basic attribute value (lower limit) of the basic attribute range of the preview virtual equipment is not lower than the basic attribute value of either the target primary virtual equipment or the target secondary virtual equipment. For example, if the basic attribute value of the target primary virtual equipment is A and the basic attribute value of the target secondary virtual equipment is B, then the maximum basic attribute value of the basic attribute range of the synthesized target virtual equipment can be (1+c%)*A, or (1+c%)*B, where c% is the increment, which can be set according to actual needs, such as 5%. Similarly, the maximum special effect attribute value (upper limit) of the special effect attribute range of the preview virtual equipment is higher than the special effect attribute value of either the target primary virtual equipment or the target secondary virtual equipment, and the minimum special effect attribute value (lower limit) of the special effect attribute range of the preview virtual equipment is higher than the special effect attribute value of either the target primary virtual equipment or the target secondary virtual equipment.
[0102] Through the above method, the user can predict the basic attribute range and special effect attribute range of the target virtual equipment to be synthesized by viewing the basic attribute range and special effect attribute range of the previewed virtual equipment, and then decide whether to continue synthesizing the target virtual equipment. When the user decides to continue synthesizing the target virtual equipment, the corresponding equipment synthesis instruction can be triggered. When the user is not satisfied with the currently synthesized preview virtual equipment, the user can reselect the target main virtual equipment and target secondary virtual equipment for equipment synthesis. In this way, the pertinence and accuracy of equipment synthesis can be improved.
[0103] In some embodiments, the terminal may also display an equipment illustration entry for previewing virtual equipment in the synthetic preview interface; in response to a trigger operation on the equipment illustration entry, display an equipment illustration display interface, and display the equipment illustration of the previewed virtual equipment in the equipment illustration display interface.
[0104] Among them, the equipment atlas entrance is used to display and preview the equipment atlas of virtual equipment. The equipment atlas is a function in the virtual scene that allows users to see the virtual equipment they already own, as well as the source and equipment attributes of the virtual equipment they do not yet own. It can help users understand which virtual equipment they still need to collect or synthesize, and how to collect or synthesize virtual equipment. The equipment atlas can be classified according to different equipment qualities and equipment levels. Generally speaking, the higher the equipment quality, the better the equipment attributes, and the higher the equipment level, the higher the level of the adapted virtual character.
[0105] Refer to Figure 9, which is a display schematic diagram of the equipment atlas provided in an embodiment of the present application. The terminal displays an equipment atlas entrance 902 for previewing virtual equipment in the synthetic preview interface 901, and in response to a trigger operation on the equipment atlas entrance 902, displays an equipment atlas interface 903, and displays the equipment atlas of the previewed virtual equipment in the equipment atlas interface 903. The equipment atlas can be folded through the equipment atlas folding control 904, wherein the equipment atlas may include ultimate basic attributes and ultimate special effect attributes. The so-called ultimate basic attributes are the maximum value of the basic attribute range of the previewed virtual equipment (i.e., the maximum basic attribute value), and the ultimate special effect attributes are the maximum value of the special effect attribute range of the previewed virtual equipment (i.e., the maximum special effect attribute value).
[0106] Through the above method, the user can preview the maximum basic attribute value and maximum special effect attribute value of the target virtual equipment to be synthesized by viewing the equipment illustrations of the preview virtual equipment, and then decide whether to continue synthesizing the target virtual equipment. When the user decides to continue synthesizing the target virtual equipment, the corresponding equipment synthesis instruction can be triggered. When the user is not satisfied with the currently synthesized preview virtual equipment, the user can reselect the target main virtual equipment and target secondary virtual equipment for equipment synthesis. In this way, the pertinence and accuracy of equipment synthesis can be improved.
[0107] In some embodiments, the synthesized target virtual equipment can be displayed in response to the equipment synthesis instruction in the following manner: displaying the equipment synthesis control; displaying the synthesis result interface in response to the equipment synthesis instruction triggered based on the equipment synthesis control, and displaying the target virtual equipment and the equipment parameters of the target virtual equipment in the synthesis result interface.
[0108] Here, the equipment synthesis control may be displayed after the user determines the target primary virtual equipment and the target secondary virtual equipment, or may be displayed in the synthesis interface from the beginning.
[0109] Refer to Figure 10, which is a schematic diagram of the synthesis results of virtual equipment provided by an embodiment of the present application. Taking the display of the equipment synthesis control after determining the target main virtual equipment and the target secondary virtual equipment as an example, after the selected target main virtual equipment 1002 and the target secondary virtual equipment 1003 are displayed in the equipment synthesis interface, the equipment synthesis control 1001 is also displayed. In response to the equipment synthesis instruction triggered by the equipment synthesis control 1001, the synthesis result page 1004 is displayed, and the synthesized target virtual equipment, as well as the basic attribute parameters and special effect attribute parameters of the target virtual equipment are displayed in the synthesis result page 1004.
[0110] Among them, the equipment parameters of the target virtual equipment include basic attribute parameters and special effect attribute parameters. The equipment parameters of the target virtual equipment are obtained by randomly combining the equipment parameters of the target main virtual equipment and the equipment parameters of the target secondary virtual equipment. For example, the basic attribute values of the basic equipment parameters of the target main virtual equipment and the basic attribute values of the basic equipment parameters of the target secondary virtual equipment are synthesized to obtain the basic attribute values of the basic attribute parameters of the target virtual equipment.
[0111] For example, the terminal can determine the basic attribute value of the target virtual equipment in the following manner: in response to the equipment synthesis instruction, respectively obtain the basic attribute value of the target main virtual equipment and the basic attribute value of the target secondary virtual equipment, use the basic attribute value with the lower value as the first basic attribute value, and the basic attribute value with the higher value as the second basic attribute value, and randomly select a value within the range of the first basic attribute and the second basic attribute as the basic attribute value of the target virtual equipment. Alternatively, when obtaining the first basic attribute value and the second basic attribute value, the obtained first basic attribute value and the second basic attribute value can be further improved, such as multiplying the higher basic attribute value by the increase amplitude (greater than 1) to obtain the attribute value as the basic attribute value of the target virtual equipment, so that the basic attribute of the target virtual equipment can be improved with a greater probability after synthesis, thereby increasing the user's enthusiasm for synthesizing virtual equipment.
[0112] Similarly, the terminal can synthesize the special effect attribute parameters of the target main virtual equipment and the special effect attribute parameters of the target secondary virtual equipment to obtain the special effect attribute parameters of the target virtual equipment. For example, the terminal can obtain the special effect attributes of the target virtual equipment in the following way: in response to the equipment synthesis instruction, obtain all the special effect attributes of the target main virtual equipment and all the special effect attributes of the target secondary virtual equipment in turn, and sort all the special effect attributes of the obtained target main virtual equipment and all the special effect attributes of the target secondary virtual equipment, such as sorting all the special effect attributes of the target main virtual equipment and all the special effect attributes of the target secondary virtual equipment in descending order according to the attribute strength (special effect attribute value) of each special effect attribute. All special effect attributes are sorted to obtain a special effect attribute sequence, and the special effect attribute sequence is traversed to randomly screen out a certain number of special effect attributes, and the screened special effect attributes are retained in the synthesized target virtual equipment, wherein each special effect attribute has the same probability (which can be set according to actual needs, such as 40%) of being retained. When the number of special effect attributes determined to be retained reaches the maximum number of special effects corresponding to the equipment quality of the target virtual equipment, the process is stopped. It should be noted that the equipment quality of the target virtual equipment retains the equipment quality of the target main virtual equipment, and the equipment quality affects the number of special effect attributes. For example, the higher the equipment quality, the greater the number of corresponding special effect attributes.
[0113] In addition, a certain number of special effect attributes can be randomly selected from the special effect attributes of the target main virtual equipment and the special effect attributes of the target secondary virtual equipment to synthesize the target virtual equipment. For example, the target main virtual equipment has N (a positive integer, which can be set according to actual needs, such as N is 3) special effect attributes, and the target secondary virtual equipment has M (a positive integer, which can be set according to actual needs, such as M is 2) special effect attributes, then n (a positive integer not exceeding N) special effect attributes can be randomly selected from the N special effect attributes, and N (a positive integer not exceeding N) special effect attributes can be randomly selected from the M special effect attributes. m (a positive integer not exceeding M) special effect attributes are randomly selected and randomly combined, and the target virtual equipment obtained has (n+m) special effect attributes; moreover, for each of the (n+m) special effect attributes of the target virtual equipment, the special effect attribute value of each special effect attribute can be retained or the special effect attribute value of each special effect attribute can be subjected to a certain degree of positive gain processing (such as multiplying by a gain parameter greater than 1) or negative gain processing (such as multiplying by a gain parameter less than 1), thereby increasing the randomness of the synthesized virtual equipment.
[0114] In some embodiments, the target virtual equipment and the equipment parameters of the target virtual equipment can be displayed in the synthesis result interface in the following manner: an erasable coating is displayed in the associated area of the equipment parameters in the synthesis result interface, and in response to an erasing operation on the erasable coating, the equipment parameters in the associated area obscured by the erasable coating are gradually revealed; or, a one-key disclosure control is displayed in the synthesis result interface, and in response to a triggering operation on the one-key disclosure control, the equipment parameters in the associated area obscured by the erasable coating are revealed with one click; in response to the equipment parameters obscured by the erasable coating in the associated area being revealed, a confirmed synthesis control is displayed; in response to a triggering operation on the confirmed synthesis control, the synthesized target virtual equipment and the equipment parameters of the target virtual equipment are displayed.
[0115] The erasable coating may be displayed in an associated area of the equipment parameters, such as an associated area of at least one of the basic attribute parameters and the special effect attribute parameters.
[0116] Refer to Figure 11, which is a schematic diagram of the synthesis result of the virtual equipment provided by an embodiment of the present application. The terminal responds to the equipment synthesis instruction, displays the synthesis result interface 1101, and displays an erasable coating in the associated area 1102 of the basic attribute parameters in the synthesis result interface 1101, and displays an erasable layer in the associated area 11003 of the special effect attribute parameters, and displays a one-key disclosure control 1104. When the user triggers the erasable coating, the terminal responds to the trigger operation for the erasable coating, takes the trigger area as the target area, and eliminates the erasable coating in the target area to gradually reveal the relevant equipment parameters in the corresponding associated area that are blocked by the erasable coating; when the user triggers the one-key disclosure control 1104, the terminal responds to the trigger operation for the one-key disclosure control 1104 and eliminates all the erasable coatings displayed in the synthesis result interface. The layer is immediately eliminated, and the relevant equipment parameters (such as basic equipment parameters and special effect equipment parameters) blocked by the erasable coating in the associated area (including the associated area 1102 and the associated area 1103) are revealed with one click; when the equipment parameters blocked by the erasable coating in the synthesis result page 1101 are all revealed, the confirmation synthesis control 1105 is displayed in the synthesis result page 1101. When the user triggers the confirmation synthesis control 1105, it is deemed that the user is satisfied with the current synthesis result. At this time, the target main virtual equipment and the target secondary virtual equipment are cleared from the virtual equipment warehouse of the current account, and the target virtual equipment synthesized according to the target main virtual equipment and the target secondary virtual equipment is added to the virtual warehouse of the current account, and the synthesized target virtual equipment and the equipment parameters of the target virtual equipment are displayed in the synthesis result page 1101.
[0117] Through the above method, the relevant equipment parameters are obscured by the erasable coating, which increases the sense of mystery during the equipment synthesis process; by removing the erasable coating to reveal the relevant equipment parameters that were previously obscured, the interactivity and fun of the equipment synthesis process are improved, which is conducive to increasing users' enthusiasm for participating in equipment synthesis.
[0118] In some embodiments, the terminal can abandon the equipment synthesis in the following manner: in the process of displaying the synthesis control, displaying the abandonment synthesis control; in response to the triggering operation for abandoning the synthesis control, displaying the abandonment prompt information; wherein, the abandonment synthesis prompt information is used to prompt the abandonment of the synthesis of the target virtual equipment based on the target main virtual equipment and the target secondary virtual equipment, and the equipment attributes of the target main virtual equipment are retained, and the equipment attributes of the target secondary virtual equipment are decomposed to obtain virtual resources.
[0119] In actual application, when the user is not satisfied with the target virtual equipment obtained by this synthesis, the synthesis of this equipment can be canceled by triggering the abandon synthesis control (such as abandon synthesis) 1106 shown in Figure 11. In addition, in order to avoid the equipment synthesis being canceled due to user's accidental touch, when the user triggers the abandon synthesis control 1106, a second confirmation prompt message can also be displayed to remind the user that after this synthesis is abandoned, the equipment attributes of the target main virtual equipment will be retained, but in order to reduce the user's loss, the target secondary virtual equipment will be decomposed and the corresponding virtual resources will be obtained.
[0120] In actual implementation, in order to prevent the user from canceling the synthesis by forcibly stopping the application process, the synthesis result data can be recorded to the cloud while the synthesis result page is displayed on the terminal. If the user forcibly stops the application process, the synthesis result page of this synthesis will be restored the next time the user controls the terminal to display the synthesis interface.
[0121] It should be noted that the erasable coating can be displayed in the associated area of the equipment parameters in the synthesis result interface only when the number of special effect attributes of the target virtual equipment is greater than the number of special effect attributes of the target main virtual equipment and the number of special effect attributes of the target secondary virtual equipment. This can satisfy the diversity of the display of synthesis results while avoiding the situation where the user erases the floating layer with great expectations but gets an unsatisfactory synthesis result, thereby improving the user experience.
[0122] In some embodiments, the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment can be displayed in response to the equipment synthesis instruction in the following manner: in response to the equipment synthesis instruction, when the equipment quality of the target main virtual equipment is higher than the equipment quality of the target secondary virtual equipment, the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment is displayed; wherein, the target virtual equipment retains the equipment quality of the target main virtual equipment.
[0123] Equipment quality refers to the level and attributes of virtual equipment, and is usually distinguished by different colors or labels. Setting equipment quality allows players to more easily identify and select appropriate virtual equipment to enhance their character's combat effectiveness. Taking the virtual scene as an example, the common equipment quality classifications are as follows: white quality (virtual equipment with white quality is usually represented as ordinary or basic quality virtual equipment. This type of virtual equipment is simply called white equipment. Its attribute bonus is low and it is suitable for players in the early stages of the game or who do not have high requirements for virtual equipment), blue quality (virtual equipment with blue quality usually represents intermediate quality equipment. This type of virtual equipment is simply called blue equipment. Compared with white equipment, it provides higher attribute bonuses and is suitable for players to use in the middle of the game), gold quality (virtual equipment with gold quality usually represents high-quality virtual equipment. This type of virtual equipment is simply called gold equipment. Its attribute bonus is significantly higher than that of white equipment and blue equipment, and may contain special effects or abilities. It is suitable for advanced stages of the game), dark gold quality (virtual equipment with dark gold quality is usually represented as dark gold equipment. This type of virtual equipment is often one of the rarest qualities in the game. They not only have excellent attribute bonuses, but may also have unique skills or combination effects, which are of great help in improving the strength of the character). In addition to the basic categories described above, different games may have additional quality levels, such as green quality (in some games, green-quality virtual equipment may represent slightly better quality than white-quality virtual equipment, or in some games, virtual equipment with special effects), purple quality (the attribute bonuses of purple-quality virtual equipment may be between those of blue and gold equipment, providing moderate attribute bonuses and possible special effects), orange quality (in some games, orange-quality virtual equipment may represent legendary or mythical-level equipment with extremely high attributes and unique abilities), and red quality (red-quality virtual equipment may represent top-level or divine-level equipment, among the most powerful equipment in the game). In short, different games may have their own unique equipment quality systems and naming methods, but the basic concept is similar: using equipment quality to distinguish the rarity and usefulness of virtual equipment. Players usually need to obtain higher-quality virtual equipment through in-game activities, quests, dungeons, or trades.
[0124] In actual applications, since the maximum number of special effect attributes of the synthesized target virtual equipment is limited by the equipment quality of the target virtual equipment (generally, virtual equipment with higher equipment quality can have more special effect attributes), and the equipment quality of the target virtual equipment finally synthesized is the same as the equipment quality of the target main virtual equipment, in order to avoid the loss of the number of special effect attributes of the synthesized target virtual equipment, the equipment quality of the target main virtual equipment should be higher than the equipment quality of the target secondary virtual equipment. Therefore, the terminal responds to the equipment synthesis instruction and can first compare the equipment quality of the target main virtual equipment with the equipment quality of the target secondary virtual equipment. When the equipment quality of the target main virtual equipment is higher than the equipment quality of the target secondary virtual equipment, equipment synthesis is performed based on the target main virtual equipment and the target secondary virtual equipment to obtain and display the synthesized target virtual equipment. The equipment quality of the target virtual equipment obtained in this way retains the equipment quality of the target main virtual equipment.
[0125] Here, in actual implementation, when the user selects the target secondary virtual equipment based on the equipment selection instruction triggered by the equipment synthesis control, the equipment quality of the target main virtual equipment can be compared with the equipment quality of the target secondary virtual equipment to improve the human-computer interaction efficiency when the user determines the target secondary virtual equipment.
[0126] In some embodiments, the terminal may display synthesis prompt information in the following manner: when the equipment quality of the target main virtual equipment is lower than the equipment quality of the target secondary virtual equipment, the synthesis prompt information is displayed; wherein, the synthesis prompt information is used to prompt that the equipment attributes of the target secondary virtual equipment are inherited to at least two other secondary virtual equipment, and equipment synthesis is performed based on the inherited target secondary virtual equipment and the target main virtual equipment, or, equipment synthesis is performed based on the inherited other secondary virtual equipment and the target main virtual equipment; wherein, the equipment quality of the inherited target secondary virtual equipment or the equipment quality of the inherited other secondary virtual equipment is lower than the equipment quality of the target main virtual equipment, and the inherited other secondary virtual equipment is adapted to the target main virtual equipment.
[0127] Among them, the inheritance of equipment quality usually refers to the process of transferring or inheriting the quality of a virtual equipment to another virtual equipment in the game. This method allows players to optimize their equipment combination without having to collect or create new equipment from scratch. For example, a player can transfer part or all of the attributes (such as attack power, defense power, durability, etc.) of a high-quality virtual equipment (source equipment) to another virtual equipment (target equipment), so that the attributes of the target equipment are improved; or, a player can inherit the special effects (such as additional magic damage, providing special skills, etc.) of a high-quality virtual equipment (source equipment) to another virtual equipment (target equipment); or, a player can inherit the level or experience value of a high-quality virtual equipment (source equipment) to another virtual equipment (target equipment), so that the target equipment has the same level or experience value as the source virtual equipment after inheriting the level.
[0128] The ways to inherit equipment quality include but are not limited to the following: merging two or more virtual equipment through synthesis or fusion operations so that the merged target equipment acquires the quality or attributes of the source equipment; permanently assigning the characteristics of the source equipment to the target equipment through a special engraving or imprinting process; using specific props or functions provided in the game to directly transfer the attributes of the source equipment to the target equipment. For example, players can transfer the quality, additional and gem sockets of the source equipment to the target equipment through the equipment inheritance system, but these attributes of the source equipment will disappear after the inheritance; for example, players can transfer the effects of strengthening, amplification, forging, and other post-production crafting from the source equipment to another target equipment with the same part; for example, players can transfer the refining and infusion attributes of the source equipment to the target equipment.
[0129] It's important to note that inheriting equipment quality often comes with certain conditions and restrictions, such as requiring the source and target equipment to be of the same type or in the same part, or requiring the consumption of specific resources (such as gold, materials, or special items). Furthermore, inheriting equipment may reduce the quality or attributes of the source equipment, or affect the existing attributes of the target equipment.
[0130] In actual application, when the equipment quality of the target secondary virtual equipment is higher than the equipment quality of the target main virtual equipment, the terminal displays a synthesis prompt message in the synthesis interface to remind the user that if the equipment is continued to be synthesized based on the target secondary virtual equipment and the target main virtual equipment, the equipment quality of the target secondary virtual equipment will be lost, and the user is prompted to inherit (i.e. transfer) the equipment attributes of the target secondary virtual equipment to at least two other secondary virtual equipment, and perform equipment synthesis based on the inherited target secondary virtual equipment and the target main virtual equipment, or perform equipment synthesis based on the other inherited secondary virtual equipment and the target main virtual equipment.
[0131] Taking the example that the number of equipment attributes corresponding to the equipment quality of the target secondary virtual equipment is 8 and the maximum number of equipment attributes corresponding to the equipment quality of the target main virtual equipment is 4, since the equipment quality of the target secondary virtual equipment is higher than the equipment quality of the target main virtual equipment, in order to avoid the loss of equipment quality of the target secondary virtual equipment due to direct equipment synthesis based on the target main virtual equipment and the target secondary virtual equipment, all the equipment attributes of the target secondary virtual equipment can be inherited to at least two other secondary virtual equipment (still compatible with the target main virtual equipment). Suppose 3 equipment attributes of the target secondary virtual equipment are inherited to other secondary virtual equipment A, 3 equipment attributes of the target secondary virtual equipment are inherited to other secondary virtual equipment B, and 2 equipment attributes of the target secondary virtual equipment are inherited to Other sub-virtual equipment C, in this way, the equipment attributes of the other sub-virtual equipment A after inheritance are 5 (before inheritance, it has 2 equipment attributes), the equipment attributes of the other sub-virtual equipment B after inheritance are 4 (assuming that before inheritance, it has 1 equipment attribute), the equipment attributes of the other sub-virtual equipment A after inheritance are 5 (assuming that before inheritance, it has 2 equipment attributes), and the equipment attributes of the other sub-virtual equipment C after inheritance are 3 (assuming that before inheritance, it has 1 equipment attribute). Since the number of equipment attributes of the other sub-virtual equipment C after inheritance is lower than the maximum number of equipment attributes corresponding to the equipment quality of the target main virtual equipment, the user can be prompted to perform equipment synthesis based on the other sub-virtual equipment C after inheritance and the target main virtual equipment.
[0132] In addition, when the equipment quality of the target secondary virtual equipment is higher than that of the target main virtual equipment, in order to avoid the loss of equipment quality of the target secondary virtual equipment due to direct equipment synthesis based on the target main virtual equipment and the target secondary virtual equipment, the equipment attributes of the target secondary virtual equipment can also be partially inherited to other secondary virtual equipment, and when the number of equipment attributes of the target secondary virtual equipment after inheritance is lower than the maximum number of equipment attributes corresponding to the equipment quality of the target main virtual equipment (that is, the equipment quality of the target secondary virtual equipment after inheritance is lower than the equipment quality of the target main virtual equipment), the inheritance is stopped. Continuing with the above example, 3 equipment attributes of the target secondary virtual equipment can be inherited to other secondary virtual equipment A, and 2 equipment attributes of the target secondary virtual equipment can be inherited to other secondary virtual equipment B, and then the inheritance is stopped. In this way, the remaining equipment attributes of the target secondary virtual equipment are 3, which are lower than the maximum number of equipment attributes corresponding to the equipment quality of the target main virtual equipment, that is, the equipment quality of the target secondary virtual equipment after inheritance is lower than the equipment quality of the target main virtual equipment, so it can be prompted to perform equipment synthesis based on the target secondary virtual equipment and the target main virtual equipment after inheritance.
[0133] Through the above method, in the equipment synthesis process, the equipment quality of the target main virtual equipment and the target secondary virtual equipment is fully considered, and when the equipment quality of the target secondary virtual equipment is higher than the equipment quality of the target main virtual equipment, the equipment quality of the target secondary virtual equipment is inherited or transferred, and equipment synthesis is performed based on the inherited or transferred secondary virtual equipment. This not only achieves the purpose of synthesizing target virtual equipment of specific equipment quality, but also avoids the loss of equipment quality, thereby protecting the vital interests of the players.
[0134] In some embodiments, the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment can be displayed in response to the equipment synthesis instruction in the following manner: in response to the equipment synthesis instruction, the equipment synthesis special effect is displayed; in response to the special effect display stop condition being met, the equipment synthesis special effect is stopped from being displayed, and the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment is displayed; wherein the special effect display stop condition includes at least one of the following: the display duration of the equipment synthesis special effect reaches the target duration, the number of displays of the equipment synthesis special effect reaches the target number of times, and a closing operation for the equipment synthesis special effect is received.
[0135] In actual applications, the terminal responds to the equipment synthesis instruction and can first display the equipment synthesis special effects (such as equipment synthesis animation, or equipment synthesis easter eggs, etc.), and when the special effect display stop conditions are met, stop displaying the equipment synthesis special effects, and then display the synthesized target virtual equipment. This not only increases the fun and attractiveness of equipment synthesis, but also improves the screen utilization of the terminal.
[0136] Among them, the special effect display stop condition is used to indicate the time to stop displaying the equipment synthesis special effect. In actual application, the special effect display stop condition can be set according to actual needs. For example, the special effect display stop condition can be set to be related to the display duration or number of displays of the equipment synthesis special effect. For example, when the display duration of the equipment synthesis special effect reaches the target duration (which can be set according to actual needs, such as 5 seconds), or the display duration of the equipment synthesis special effect reaches the target number of times (which can be set according to actual needs, such as 2 times), it can be determined that the time to stop displaying the equipment synthesis special effect has arrived, that is, the special effect display stop condition has been met. For example, the special effect display stop condition can be set to be related to the user's triggering operation. For example, when the user triggers a closing operation for the equipment synthesis special effect (such as by triggering a skip control or a close control associated with the equipment synthesis special effect), it can be determined that the time to stop displaying the equipment synthesis special effect has arrived, that is, the special effect display stop condition has been met. For example, when a prompt message for revealing the synthesis result is displayed, when a confirmation operation is performed on the prompt message for revealing the synthesis result, it can be determined that the time to stop displaying the equipment synthesis special effect has arrived, that is, the special effect display stop condition has been met.
[0137] Through the above method, an equipment selection control is displayed in the synthesis interface of virtual equipment. If the user triggers the equipment selection control to issue an equipment selection instruction, the target main virtual equipment selected by the equipment indication instruction and the target secondary virtual equipment compatible with the target main virtual equipment are displayed in the synthesis interface. At this time, if the equipment synthesis instruction issued by the user is received, the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment is displayed in the synthesis interface; since the synthesized target virtual equipment is randomly synthesized based on the equipment attributes of the target main virtual equipment and the target secondary virtual equipment, this can improve the randomness of the virtual equipment synthesis, and to a certain extent can increase the possibility that the equipment attributes of the synthesized target virtual equipment reach the upper limit, which allows players who pursue top-quality equipment to always have a continuous goal pursuit, which is conducive to expanding the equipment depth and increasing the synthesis utilization rate of virtual equipment.
[0138] Below, we will describe an exemplary application of the embodiment of the present application in a practical application scenario. Taking the virtual scene as a game and the virtual equipment as equipment within the game as an example, we will continue to describe the method for synthesizing virtual equipment provided by the embodiment of the present application. Referring to Figure 12, Figure 12 is a flow chart of the method for synthesizing virtual equipment provided by the embodiment of the present application, which includes:
[0139] Step 201: In response to an equipment selection instruction triggered by an equipment selection control, the terminal displays a target primary virtual equipment and a target secondary virtual equipment selected by the equipment selection instruction.
[0140] In actual implementation, the terminal displays a main equipment selection control and a sub-equipment selection control in the synthesis interface of the virtual equipment. In response to a trigger operation on the main equipment selection control, the main equipment selection interface is displayed, and at least one candidate main virtual equipment, such as candidate main virtual equipment 1, candidate main virtual equipment 2, and candidate main virtual equipment 3, is displayed in the main equipment selection interface. In response to a selection operation on a candidate main virtual equipment (such as candidate main virtual equipment 2), the equipment information interface of the candidate main virtual equipment is displayed, so that the user can view the equipment information of the candidate main virtual equipment to determine whether to select the candidate main virtual equipment for synthesis. At this time, the user can determine the currently selected candidate main virtual equipment as the target main virtual equipment by triggering the equipment determination control, and cancel the display of the main equipment selection interface. interface, displays the target primary virtual equipment in the synthesis interface. At this time, when the user triggers the secondary equipment selection control, the terminal displays the secondary equipment selection interface and displays at least one candidate secondary virtual equipment in the secondary equipment selection interface, such as candidate secondary virtual equipment 1 and candidate secondary virtual equipment 2. In response to the selection operation for the candidate secondary virtual equipment (such as candidate secondary virtual equipment 2), the equipment information interface of the candidate secondary virtual equipment is displayed, so that the user can view the equipment information of the candidate secondary virtual equipment to determine whether to select the candidate secondary virtual equipment for synthesis. At this time, the user can determine the currently selected candidate secondary virtual equipment as the target secondary virtual equipment by triggering the equipment determination control, cancel the display of the secondary equipment selection interface, and display the target primary virtual equipment and the target secondary virtual equipment in the synthesis interface.
[0141] Here, when at least one candidate secondary virtual equipment is displayed in the secondary equipment selection interface, the displayed candidate secondary virtual equipment are all virtual equipment that are worn at the same location as the target primary virtual equipment and are not worn by the virtual character.
[0142] Step 202: In response to a triggering operation of the composition preview control, a composition preview interface is displayed.
[0143] In actual implementation, the terminal displays a synthesis preview control in the synthesis interface only after the user determines the target primary virtual equipment and target secondary virtual equipment to be synthesized. In response to the triggering operation of the preview control, the terminal displays a synthesis preview interface in the synthesis interface. Here, the synthesis preview interface is used to display the equipment quality, basic attribute range, and special effect attribute range of the preview virtual equipment synthesized based on the target primary virtual equipment and target secondary virtual equipment, so that the user can refer to whether to continue equipment synthesis with the current target primary virtual equipment and target secondary virtual equipment to be synthesized. The equipment quality of the preview virtual equipment is the same as the equipment quality of the target primary virtual equipment, the basic attribute range of the preview virtual equipment is obtained from the basic attributes of the target primary virtual equipment and target secondary virtual equipment, and the special effect attribute range of the preview virtual equipment includes all special effect attributes of the target primary virtual equipment and target secondary virtual equipment.
[0144] Step 203: In response to the triggering operation on the equipment illustration entry, the equipment illustration display interface is displayed.
[0145] In actual implementation, the terminal displays the equipment illustrations entrance in the synthesis preview interface. In response to the trigger operation on the equipment illustrations entrance, the terminal displays the equipment illustrations display interface next to the synthesis preview interface. Here, the equipment illustrations display interface is used to display the equipment illustrations of the previewed virtual equipment. The user can understand the ultimate equipment quality, ultimate basic attributes and ultimate special effect attributes of the previewed virtual equipment by viewing the equipment illustrations corresponding to the previewed virtual equipment.
[0146] Step 204: In response to the equipment synthesis instruction triggered by the equipment synthesis control, determine whether the equipment quality of the target secondary virtual equipment is greater than the equipment quality of the target primary virtual equipment.
[0147] Here, when the equipment quality of the target secondary virtual equipment is greater than the equipment quality of the target primary virtual equipment, step 205 is executed; otherwise, step 206 is executed.
[0148] Step 205: Display synthesis prompt information.
[0149] In actual application, since the maximum number of special effect attributes of virtual equipment is limited by the equipment quality of the virtual equipment (that is, virtual equipment with higher equipment quality can have more special effect attributes), and the equipment quality of the target virtual equipment finally synthesized is the same as the equipment quality of the target main virtual equipment, in order to avoid the loss of the number of special effect attributes of the synthesized target virtual equipment, during equipment synthesis, the equipment quality of the target main virtual equipment should be higher than the equipment quality of the target sub-virtual equipment. Therefore, when the equipment quality of the target sub-virtual equipment is higher than the equipment quality of the target main virtual equipment, step 205 is entered, and the terminal displays a prompt in the synthesis interface to pass on the equipment attributes of the target sub-virtual equipment to at least two other sub-virtual equipment, and perform equipment synthesis based on the inherited target sub-virtual equipment and the target main virtual equipment, or perform equipment synthesis based on the other inherited sub-virtual equipment and the target main virtual equipment.
[0150] Step 206: Determine whether the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target primary virtual equipment and the number of special effects of the target secondary virtual equipment.
[0151] Here, when the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target primary virtual equipment, and the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target secondary virtual equipment, step 207 is executed; otherwise, step 209 is executed.
[0152] Step 207: Displaying a synthesis result interface in which the associated area of the equipment parameter is covered by an erasable coating.
[0153] In actual application, when the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target main virtual equipment and the number of special effects of the target secondary virtual equipment, in order to make the display of the synthesis result more exciting, the synthesis result interface is displayed in which the associated area of the equipment parameters is covered by an erasable coating. In response to the user's triggering operation through the erasable layer at the target position, the erasable layer at the target position is cancelled to gradually reveal the equipment parameters in the associated area obscured by the erasable coating.
[0154] When the number of special effect attributes of the target virtual equipment in step 206 is less than at least one of the number of special effects of the target main virtual equipment and the number of special effects of the target secondary virtual equipment, or when the erasable coating is completely eliminated in step 207, step 208 is entered.
[0155] Step 208: Display the pre-synthesized target virtual equipment on the synthesis result interface.
[0156] During actual implementation, the terminal displays the target virtual equipment pre-synthesized by the target main virtual equipment and the target sub-virtual equipment and the equipment parameters of the target virtual equipment in the complete synthesis result interface, and displays the confirmation synthesis control and the abandonment synthesis control, wherein the equipment quality of the target equipment is the same as the equipment quality of the target main virtual equipment, the basic attribute parameters of the target equipment are randomly obtained from the interval with the basic attributes of the target main virtual equipment and the basic attributes of the target sub-virtual equipment as endpoints, and the special attributes of the target equipment.
[0157] Step 209: Determine whether to determine the target virtual equipment to be synthesized.
[0158] Here, when the user determines to synthesize the target virtual equipment (such as the user triggers to determine the synthesis control), step 210 can be executed; otherwise, when the user cancels the synthesis of the target virtual equipment (such as triggering to abandon the synthesis control), step 211 is executed.
[0159] Step 210: Display the final synthesized target virtual equipment.
[0160] In actual implementation, when the user triggers the confirmation synthesis control, it is deemed that the user is satisfied with the current synthesis result. At this time, the target main virtual equipment and the target secondary virtual equipment are cleared from the virtual equipment warehouse of the current account, and the target virtual equipment is added to the virtual warehouse of the current account. The final synthesized target virtual equipment and the equipment parameters of the target virtual equipment are displayed on the synthesis result page.
[0161] Step 211: Display a quit prompt message.
[0162] In actual implementation, the user may not be satisfied with the synthesized virtual equipment, so a abandon synthesis control is provided for the user to cancel the synthesis. In order to avoid the equipment synthesis being canceled due to accidental touch by the user, when the user triggers the abandon synthesis control, a second confirmation prompt message can be displayed to remind the user that the synthesis will be abandoned and the target secondary virtual equipment will be decomposed and the corresponding virtual resources will be obtained. In this way, through further prompts, synthesis errors can be avoided and the player's operation cost is reduced.
[0163] Next, the synthesis method of virtual equipment provided by the embodiment of the present application will be described. Referring to FIG13 , FIG13 is a flow chart of the synthesis method of virtual equipment provided by the embodiment of the present application, the method comprising:
[0164] Step 301: In response to an equipment selection instruction triggered by an equipment selection control, the terminal displays a target primary virtual equipment and a target secondary virtual equipment selected by the equipment selection instruction.
[0165] In actual application, when there is only one equipment selection control displayed in the synthesis interface of virtual equipment, the terminal responds to the trigger operation of the equipment selection control, displays the equipment selection interface, and displays the main equipment selection area and the sub-equipment selection area in the equipment selection interface, wherein at least one candidate main virtual equipment is displayed in the main equipment selection area. When the user selects the target main virtual equipment from it, the terminal responds to the selection operation, displays the selected target main virtual equipment, and then triggers the corresponding equipment selection instruction in the sub-equipment selection area based on the selected target main virtual equipment, so as to display the target sub-virtual equipment selected by the equipment selection instruction in the sub-equipment selection area.
[0166] Here, when at least one candidate secondary virtual equipment is displayed in the secondary equipment selection interface, the displayed candidate secondary virtual equipment are all virtual equipment that are worn at the same location as the target primary virtual equipment and are not worn by the virtual character.
[0167] Step 302: Determine whether the equipment quality of the target secondary virtual equipment is greater than the equipment quality of the target primary virtual equipment.
[0168] In actual implementation, after the terminal displays the target main virtual equipment and the target secondary virtual equipment in the synthesis interface, it automatically determines whether the equipment quality of the target secondary virtual equipment is greater than the equipment quality of the target main virtual equipment. After the user determines the target main virtual equipment, when selecting the target secondary virtual equipment based on the equipment selection instruction triggered by the equipment selection control, the equipment quality of the target main virtual equipment is compared with the equipment quality of the target secondary virtual equipment to improve the user's targeted determination of the target secondary virtual equipment.
[0169] Here, when the equipment quality of the target secondary virtual equipment is greater than the equipment quality of the target primary virtual equipment, step 303 is executed; otherwise, step 304 is executed.
[0170] Step 303: Display synthesis prompt information.
[0171] In actual application, since the maximum number of special effect attributes of virtual equipment is limited by the equipment quality of the virtual equipment (that is, virtual equipment with higher equipment quality can have more special effect attributes), and the equipment quality of the target virtual equipment finally synthesized is the same as the equipment quality of the target main virtual equipment, in order to avoid the loss of the number of special effect attributes of the synthesized target virtual equipment, during equipment synthesis, the equipment quality of the target main virtual equipment should be higher than the equipment quality of the target secondary virtual equipment. Therefore, when the equipment quality of the target secondary virtual equipment is higher than the equipment quality of the target main virtual equipment, step 303 is entered, and the terminal displays a prompt in the synthesis interface to remind the user that if the equipment synthesis is continued based on the target secondary virtual equipment and the target main virtual equipment, the equipment quality of the target secondary virtual equipment will be lost, and the user may be prompted to reselect the target secondary virtual equipment, or to inherit the equipment attributes of the selected target secondary virtual equipment to at least two other secondary virtual equipment, and perform equipment synthesis based on the inherited target secondary virtual equipment and the target main virtual equipment, or to perform equipment synthesis based on the other inherited secondary virtual equipment and the target main virtual equipment.
[0172] Step 304: In response to the triggering operation of the composition preview control, display the composition preview interface.
[0173] In actual implementation, the terminal displays a synthesis preview control in the synthesis interface only after the user determines the target primary virtual equipment and target secondary virtual equipment to be synthesized. In response to the triggering operation of the preview control, the terminal displays a synthesis preview interface in the synthesis interface. Here, the synthesis preview interface is used to display the equipment quality, basic attribute range, and special effect attribute range of the preview virtual equipment synthesized based on the target primary virtual equipment and target secondary virtual equipment, so that the user can refer to whether to continue equipment synthesis with the current target primary virtual equipment and target secondary virtual equipment to be synthesized. The equipment quality of the preview virtual equipment is the same as the equipment quality of the target primary virtual equipment, the basic attribute range of the preview virtual equipment is obtained from the basic attributes of the target primary virtual equipment and target secondary virtual equipment, and the special effect attribute range of the preview virtual equipment includes all special effect attributes of the target primary virtual equipment and target secondary virtual equipment.
[0174] Step 305: In response to the triggering operation on the equipment illustration entry, the equipment illustration display interface is displayed.
[0175] In actual implementation, the terminal displays the equipment illustrations entrance in the synthesis preview interface. In response to the trigger operation on the equipment illustrations entrance, the terminal displays the equipment illustrations display interface next to the synthesis preview interface. Here, the equipment illustrations display interface is used to display the equipment illustrations of the previewed virtual equipment. The user can understand the ultimate equipment quality, ultimate basic attributes and ultimate special effect attributes of the previewed virtual equipment by viewing the equipment illustrations corresponding to the previewed virtual equipment.
[0176] Step 306: In response to the equipment synthesis instruction triggered by the equipment synthesis control, determine whether the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target primary virtual equipment and the number of special effects of the target secondary virtual equipment.
[0177] Here, when the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target primary virtual equipment, and the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target secondary virtual equipment, step 307 is executed; otherwise, step 309 is executed.
[0178] Step 307: Displaying a synthesis result interface in which the associated area of the equipment parameter is covered by an erasable coating.
[0179] In actual application, when the number of special effect attributes of the target virtual equipment is greater than the number of special effects of the target main virtual equipment and the number of special effects of the target secondary virtual equipment, in order to make the display of the synthesis result more exciting, the synthesis result interface is displayed in which the associated area of the equipment parameters is covered by an erasable coating. In response to the user's triggering operation through the erasable layer at the target position, the erasable layer at the target position is cancelled to gradually reveal the equipment parameters in the associated area obscured by the erasable coating.
[0180] When the number of special effect attributes of the target virtual equipment in step 306 is less than at least one of the number of special effects of the target main virtual equipment and the number of special effects of the target secondary virtual equipment, or when the erasable coating is completely eliminated in step 307, step 308 is entered.
[0181] Step 308: Display the pre-synthesized target virtual equipment on the synthesis result interface.
[0182] During actual implementation, the terminal displays the target virtual equipment synthesized by the target main virtual equipment and the target sub-virtual equipment and the equipment parameters of the target virtual equipment in the complete synthesis result interface, and displays the confirmation synthesis control and the abandonment synthesis control, among which the equipment quality of the target equipment is the same as the equipment quality of the target main virtual equipment, the basic attribute parameters of the target equipment are randomly obtained from the interval with the basic attributes of the target main virtual equipment and the basic attributes of the target sub-virtual equipment as endpoints, and the special attributes of the target equipment.
[0183] Step 309: Determine whether to determine the target virtual equipment to be synthesized.
[0184] Here, when the user determines to synthesize the target virtual equipment (such as the user triggers the determination synthesis control), step 310 can be executed; otherwise, when the user cancels the synthesis of the target virtual equipment (such as triggering the abandonment of the synthesis control), step 311 is executed.
[0185] Step 310: Display the final synthesized target virtual equipment.
[0186] In actual implementation, when the user triggers the synthesis control, it is deemed that the user is satisfied with the current synthesis result. At this time, the target main virtual equipment and the target secondary virtual equipment are cleared from the virtual equipment warehouse of the current account, and the target virtual equipment is added to the virtual warehouse of the current account. The final synthesized target virtual equipment and the equipment parameters of the target virtual equipment are displayed on the synthesis result page.
[0187] Step 311: Display a quit prompt message.
[0188] In actual implementation, the user may not be satisfied with the synthesized virtual equipment, so a abandon synthesis control is provided for the user to cancel the synthesis. In order to avoid the equipment synthesis being canceled due to accidental touch by the user, when the user triggers the abandon synthesis control, a second confirmation prompt message can be displayed to remind the user that the synthesis will be abandoned and the target secondary virtual equipment will be decomposed and the corresponding virtual resources will be obtained. In this way, through further prompts, synthesis errors can be avoided and the player's operation cost is reduced.
[0189] Through the design of the above-mentioned equipment synthesis function, the corresponding target virtual equipment can be synthesized through the random combination of the target main virtual equipment and the target secondary virtual equipment. Since the synthesized target virtual equipment is obtained by random synthesis based on the equipment attributes of the target main virtual equipment and the target secondary virtual equipment, this can improve the randomness of virtual equipment synthesis and, to a certain extent, greatly improve the pursuit upper limit of virtual equipment, allowing players who pursue top-quality equipment to have a continuous pursuit of equipment synthesis, greatly expanding the synthesis depth of equipment and increasing the player experience. In addition, the equipment synthesis function provided by the embodiment of the present application has a low implementation cost and is a very cost-effective solution.
[0190] So far, the method for synthesizing virtual equipment provided by the embodiment of the present application has been described in combination with the exemplary application and implementation of the electronic device provided by the embodiment of the present application. The following will continue to describe the various modules in the virtual equipment synthesis device 555 provided by the embodiment of the present application that cooperate to implement the synthesis scheme of virtual equipment.
[0191] The first display module 5551 is configured to display an equipment selection control in the synthesis interface of the virtual equipment; the second display module 5552 is configured to respond to an equipment selection instruction triggered based on the equipment selection control, and display the target main virtual equipment and target secondary virtual equipment selected by the equipment selection instruction, and the target secondary virtual equipment is adapted to the target main virtual equipment; the third display module 5553 is configured to respond to the equipment synthesis instruction, and display the synthesized target virtual equipment, and the target virtual equipment is randomly synthesized based on the equipment attributes of the target main virtual equipment and the target secondary virtual equipment.
[0192] In some embodiments, the equipment selection control includes a main equipment selection control and a secondary equipment selection control, and the second display module is further configured to display a main equipment selection interface in response to a trigger operation on the main equipment selection control, and display at least one candidate main virtual equipment in the main equipment selection interface; display the target main virtual equipment in response to an equipment selection instruction for a target main virtual equipment among the at least one candidate main virtual equipment; display a secondary equipment selection interface in response to a trigger operation on the secondary equipment selection control, and display at least one candidate secondary virtual equipment in the secondary equipment selection interface, wherein the candidate secondary virtual equipment is compatible with the target main virtual equipment; and display the target secondary virtual equipment in response to an equipment selection instruction for a target secondary virtual equipment among the at least one candidate secondary virtual equipment.
[0193] In some embodiments, the second display module is further configured to obtain an influencing parameter for influencing the selection priority of each candidate secondary virtual equipment when the number of the candidate secondary virtual equipment is at least two, the influencing parameter including at least one of the following: the compatibility of the candidate secondary virtual equipment with the target main virtual equipment, the equipment attribute characteristics of the candidate secondary virtual equipment, and the historical selection rate corresponding to the candidate secondary virtual equipment; based on the influencing parameter, call a neural network model to perform priority prediction to obtain the selection priority of each candidate secondary virtual equipment; wherein the neural network model is trained through secondary virtual equipment samples, the influencing parameters corresponding to the secondary virtual equipment samples, and the selection priority annotated by the secondary virtual equipment samples; and display each candidate secondary virtual equipment in the secondary equipment selection interface using a display style corresponding to each selection priority.
[0194] In some embodiments, the device also includes: an equipment update module, configured to display an equipment update entrance in the main equipment selection interface or the secondary equipment selection interface; wherein, the equipment update entrance is used to update the at least one candidate main virtual equipment in the main equipment selection interface, or to update the at least one candidate secondary virtual equipment in the secondary equipment selection interface.
[0195] In some embodiments, the second display module is further configured to display an equipment selection interface in response to a trigger operation on the equipment selection control, the equipment selection interface including a main equipment selection area and a secondary equipment selection area, the main equipment selection area including at least one candidate main virtual equipment; in response to an equipment selection instruction for a target main virtual equipment among the at least one candidate main virtual equipment, display the target main virtual equipment; based on the target main virtual equipment, in response to the equipment selection instruction triggered in the secondary equipment selection area, display the target secondary virtual equipment indicated by the equipment selection instruction.
[0196] In some embodiments, the second display module is further configured to display at least one candidate secondary virtual equipment in the secondary equipment selection area, where the candidate secondary virtual equipment is compatible with the target primary virtual equipment; and display the target secondary virtual equipment in response to an equipment selection instruction for a target secondary virtual equipment in the at least one candidate secondary virtual equipment.
[0197] In some embodiments, before displaying the target main virtual equipment, the second display module is further configured to display at least two candidate secondary virtual equipment in the secondary equipment selection area using a first display style. Correspondingly, after displaying the target main virtual equipment, the second display module is further configured to display a first part of the candidate secondary virtual equipment among the at least two candidate secondary virtual equipment in the secondary equipment selection area using a second display style, and to display a second part of the candidate secondary virtual equipment among the at least two candidate secondary virtual equipment using a third display style; wherein the second display style is used to indicate that the first part of the candidate secondary virtual equipment is compatible with the target main virtual equipment, and the third display style is used to indicate that the second part of the candidate secondary virtual equipment is not compatible with the target main virtual equipment; in response to an equipment selection instruction for the target secondary virtual equipment in the first part of the candidate secondary virtual equipment, the target secondary virtual equipment is displayed.
[0198] In some embodiments, the device also includes a first prompt module, configured to display selection prompt information in response to a selection operation on a candidate secondary virtual equipment in the second part of candidate secondary virtual equipment; wherein, the selection prompt information is configured to prompt the rejection of the selection of the candidate secondary virtual equipment that is not compatible with the target main equipment, or to prompt the reselection of a candidate secondary virtual equipment that is compatible with the target main virtual equipment.
[0199] In some embodiments, before displaying the target virtual equipment synthesized by the target primary virtual equipment and the target secondary virtual equipment in response to the equipment synthesis instruction, the device also includes a synthesis preview module configured to display a synthesis preview control; in response to a trigger operation on the synthesis preview control, a synthesis preview interface is displayed, and in the synthesis preview interface, an equipment attribute range of the preview virtual equipment synthesized based on the target primary virtual equipment and the target secondary virtual equipment is displayed; wherein, the equipment attribute range includes at least one of the following: a basic attribute range, a special effect attribute range, for reference to whether to trigger the equipment synthesis instruction.
[0200] In some embodiments, the synthesis preview module is further configured to display an equipment illustration entry for the previewed virtual equipment in the synthesis preview interface; display an equipment illustration display interface in response to a trigger operation on the equipment illustration entry, and display the equipment illustration of the previewed virtual equipment in the equipment illustration display interface.
[0201] In some embodiments, the third display module is further configured to display an equipment synthesis control; in response to an equipment synthesis instruction triggered based on the equipment synthesis control, a synthesis result interface is displayed, and the target virtual equipment and the equipment parameters of the target virtual equipment are displayed in the synthesis result interface; wherein, the equipment parameters of the target virtual equipment include basic attribute parameters and special effect attribute parameters, which are randomly synthesized by the equipment parameters of the target main virtual equipment and the equipment parameters of the target secondary virtual equipment.
[0202] In some embodiments, the third display module is further configured to display an erasable coating in the associated area of the equipment parameters in the synthesis result interface, and gradually reveal the equipment parameters blocked by the erasable coating in the associated area in response to an erasing operation on the erasable coating; or, display a one-key reveal control in the synthesis result interface, and reveal the equipment parameters blocked by the erasable coating in the associated area in response to a triggering operation on the one-key reveal control; in response to the equipment parameters blocked by the erasable coating in the associated area being revealed, display a determined synthesis control; in response to the triggering operation on the determined synthesis control, display the synthesized target virtual equipment and the equipment parameters of the target virtual equipment.
[0203] In some embodiments, the device also includes: a second prompt module, configured to display an abandon synthesis control during the process of displaying the determined synthesis control; and display an abandon prompt message in response to a trigger operation for the abandon synthesis control; wherein, the abandon synthesis prompt message is used to prompt the abandonment of synthesizing the target virtual equipment based on the target main virtual equipment and the target secondary virtual equipment, and the equipment attributes of the target main virtual equipment are retained, and the equipment attributes of the target secondary virtual equipment are decomposed to obtain virtual resources.
[0204] In some embodiments, the third display module is further configured to respond to an equipment synthesis instruction and, when the equipment quality of the target primary virtual equipment is higher than the equipment quality of the target secondary virtual equipment, display the target virtual equipment synthesized by the target primary virtual equipment and the target secondary virtual equipment; wherein, the target virtual equipment retains the equipment quality of the target primary virtual equipment.
[0205] In some embodiments, the device also includes a third prompt module, configured to display synthesis prompt information when the equipment quality of the target primary virtual equipment is lower than the equipment quality of the target secondary virtual equipment; wherein, the synthesis prompt information is used to prompt that the equipment attributes of the target secondary virtual equipment are inherited to at least two other secondary virtual equipment, and equipment synthesis is performed based on the inherited target secondary virtual equipment and the target primary virtual equipment, or, equipment synthesis is performed based on the inherited other secondary virtual equipment and the target primary virtual equipment; wherein, the equipment quality of the inherited target secondary virtual equipment or the equipment quality of the inherited other secondary virtual equipment is lower than the equipment quality of the target primary virtual equipment, and the inherited other secondary virtual equipment is compatible with the target primary virtual equipment.
[0206] In some embodiments, the third display module is further configured to display equipment synthesis special effects in response to an equipment synthesis instruction; stop displaying the equipment synthesis special effects in response to the special effect display stop condition being met, and display the target virtual equipment synthesized by the target main virtual equipment and the target secondary virtual equipment; wherein, the special effect display stop condition includes at least one of the following: the display duration of the equipment synthesis special effect reaches the target duration, the number of displays of the equipment synthesis special effect reaches the target number of times, and a close operation for the equipment synthesis special effect is received.
[0207] An embodiment of the present application provides a computer program product, comprising a computer program or computer-executable instructions stored in a computer-readable storage medium. A processor of an electronic device reads the computer-executable instructions from the computer-readable storage medium and executes the computer-executable instructions, causing the electronic device to perform the virtual equipment synthesis method described in the embodiment of the present application.
[0208] An embodiment of the present application provides a computer-readable storage medium storing computer-executable instructions, wherein computer-executable instructions or computer programs are stored. When the computer-executable instructions or computer programs are executed by a processor, the processor will execute the virtual equipment synthesis method provided by an embodiment of the present application, for example, the virtual equipment synthesis method shown in Figure 3.
[0209] In some embodiments, the computer-readable storage medium may be a memory such as FRAM, ROM, PROM, EPROM, EEPROM, flash memory, magnetic surface storage, optical disk, or CD-ROM; or various devices including one or any combination of the above memories.
[0210] In some embodiments, computer-executable instructions may be in the form of a program, software, software module, script, or code, written in any form of programming language (including compiled or interpreted languages, or declarative or procedural languages), and may be deployed in any form, including as a stand-alone program or as a module, component, subroutine, or other unit suitable for use in a computing environment.
[0211] As an example, computer-executable instructions may, but need not, correspond to a file in a file system, may be stored as part of a file that stores other programs or data, such as in one or more scripts in a HyperText Markup Language (HTML) document, in a single file dedicated to the program in question, or in multiple coordinating files (e.g., files storing one or more modules, subroutines, or code portions).
[0212] By way of example, computer-executable instructions may be deployed to be executed on one electronic device, or on multiple electronic devices located at one site, or on multiple electronic devices distributed across multiple sites and interconnected by a communication network.
[0213] The above description is merely an embodiment of the present application and is not intended to limit the scope of protection of the present application. Any modifications, equivalent replacements, and improvements made within the spirit and scope of the present application are included in the scope of protection of the present application.
Claims
1. A method for synthesizing virtual equipment, which is executed by an electronic device, and the method includes: Displaying equipment selection controls in the synthesis interface of the virtual equipment; In response to an equipment selection instruction triggered based on the equipment selection controls, displaying a target main virtual equipment and a target secondary virtual equipment indicated by the equipment selection instruction, where the target secondary virtual equipment is adapted to the target main virtual equipment; In response to an equipment synthesis instruction, displaying the synthesized target virtual equipment, where the target virtual equipment is randomly synthesized based on the equipment attributes of the target main virtual equipment and the target secondary virtual equipment.
2. The method according to claim 1, wherein The equipment selection controls include a main equipment selection control and a secondary equipment selection control. The step of, in response to an equipment selection instruction triggered based on the equipment selection controls, displaying a target main virtual equipment and a target secondary virtual equipment indicated by the equipment selection instruction includes: In response to a triggering operation on the main equipment selection control, displaying a main equipment selection interface and displaying at least one candidate main virtual equipment in the main equipment selection interface; In response to an equipment selection instruction for a target main virtual equipment among the at least one candidate main virtual equipment, displaying the target main virtual equipment; In response to a triggering operation on the secondary equipment selection control, displaying a secondary equipment selection interface and displaying at least one candidate secondary virtual equipment in the secondary equipment selection interface, where the candidate secondary virtual equipment is adapted to the target main virtual equipment; In response to an equipment selection instruction for a target secondary virtual equipment among the at least one candidate secondary virtual equipment, displaying the target secondary virtual equipment.
3. The method according to any one of claims 1 to 2, wherein The step of displaying at least one candidate secondary virtual equipment in the secondary equipment selection interface includes: When the number of candidate secondary virtual equipment is at least two, obtaining influence parameters for affecting the selection priorities of the candidate secondary virtual equipment, where the influence parameters include at least one of the following: the degree of adaptation between the candidate secondary virtual equipment and the target main virtual equipment, the equipment attribute characteristics of the candidate secondary virtual equipment, and the historical selection rate corresponding to the candidate secondary virtual equipment; Based on the influence parameters, calling a neural network model to perform priority prediction to obtain the selection priorities of the candidate secondary virtual equipment; where the neural network model is trained by secondary virtual equipment samples, the influence parameters corresponding to the secondary virtual equipment samples, and the selection priorities labeled for the secondary virtual equipment samples; Using display styles corresponding to the selection priorities to display the candidate secondary virtual equipment in the secondary equipment selection interface.
4. The method according to any one of claims 1 to 3, wherein, The method further includes: Displaying an equipment update entry in the main equipment selection interface or the secondary equipment selection interface; where the equipment update entry is used to update the at least one candidate main virtual equipment in the main equipment selection interface or to update the at least one candidate secondary virtual equipment in the secondary equipment selection interface.
5. The method according to any one of claims 1 to 4, wherein The step of, in response to an equipment selection instruction triggered based on the equipment selection controls, displaying a target main virtual equipment and a target secondary virtual equipment indicated by the equipment selection instruction includes: In response to a trigger operation on the equipment selection control, an equipment selection interface is displayed. The equipment selection interface includes a main equipment selection area and a secondary equipment selection area. The main equipment selection area includes at least one candidate main virtual equipment. In response to an equipment selection instruction for a target main virtual equipment among the at least one candidate main virtual equipment, the target main virtual equipment is displayed. Based on the target main virtual equipment, in response to an equipment selection instruction triggered in the secondary equipment selection area, the target secondary virtual equipment indicated by the equipment selection instruction is displayed.
6. The method according to any one of claims 1 to 5, wherein, The step of "in response to an equipment selection instruction triggered in the secondary equipment selection area, displaying the target secondary virtual equipment indicated by the equipment selection instruction" includes: Displaying at least one candidate secondary virtual equipment in the secondary equipment selection area, where the candidate secondary virtual equipment is adapted to the target main virtual equipment. In response to an equipment selection instruction for a target secondary virtual equipment among the at least one candidate secondary virtual equipment, the target secondary virtual equipment is displayed.
7. The method according to any one of claims 1 to 6, wherein, Before displaying the target main virtual equipment, the method further includes: In the secondary equipment selection area, displaying at least two candidate secondary virtual equipment in a first display style. The step of "in response to an equipment selection instruction triggered in the secondary equipment selection area, displaying the target secondary virtual equipment indicated by the equipment selection instruction" includes: In the secondary equipment selection area, displaying a first part of the at least two candidate secondary virtual equipment in a second display style and displaying a second part of the at least two candidate secondary virtual equipment in a third display style. Wherein, the second display style is used to indicate that the first part of the candidate secondary virtual equipment is adapted to the target main virtual equipment, and the third display style is used to indicate that the second part of the candidate secondary virtual equipment is not adapted to the target main virtual equipment. In response to an equipment selection instruction for a target secondary virtual equipment among the first part of the candidate secondary virtual equipment, the target secondary virtual equipment is displayed.
8. The method according to any one of claims 1 to 7, wherein, The method further includes: In response to a selection operation on a candidate secondary virtual equipment among the second part of the candidate secondary virtual equipment, displaying a selection prompt message. Wherein, the selection prompt message is used to prompt to reject the selection of the candidate secondary virtual equipment that is not adapted to the target main equipment, or to prompt to re-select a candidate secondary virtual equipment that is adapted to the target main virtual equipment.
9. The method according to any one of claims 1 to 8, wherein Before displaying the synthesized target virtual equipment in response to an equipment synthesis instruction, the method further includes: Displaying a synthesis preview control. In response to a trigger operation on the synthesis preview control, displaying a synthesis preview interface, and in the synthesis preview interface, displaying the equipment attribute range of the preview virtual equipment synthesized based on the target main virtual equipment and the target secondary virtual equipment. Wherein, the equipment attribute range includes at least one of the following: basic attribute range, special effect attribute range, which is used for reference to determine whether to trigger the equipment synthesis instruction.
10. The method according to any one of claims 1 to 9, wherein, The method further includes: In the synthesis preview interface, displaying an equipment illustration entry for the preview virtual equipment. In response to a trigger operation on the equipment illustration entry, display an equipment illustration display interface, and in the equipment illustration display interface, display the equipment illustration of the preview virtual equipment.
11. The method according to any one of claims 1 to 10, wherein, The displaying of the target virtual equipment synthesized in response to an equipment synthesis instruction includes: Display an equipment synthesis control; In response to an equipment synthesis instruction triggered based on the equipment synthesis control, display a synthesis result interface, and in the synthesis result interface, display the target virtual equipment and the equipment parameters of the target virtual equipment; Among them, the equipment parameters of the target virtual equipment include basic attribute parameters and special effect attribute parameters, which are randomly synthesized from the equipment parameters of the target main virtual equipment and the equipment parameters of the target secondary virtual equipment.
12. The method according to any one of claims 1 to 11, wherein, The displaying of the target virtual equipment and the equipment parameters of the target virtual equipment in the synthesis result interface includes: Display an erasable coating in the associated area of the equipment parameters in the synthesis result interface. In response to an erasing operation on the erasable coating, gradually reveal the equipment parameters in the associated area that are blocked by the erasable coating; or, Display a one-key reveal control in the synthesis result interface. In response to a trigger operation on the one-key reveal control, one-key reveal the equipment parameters in the associated area that are blocked by the erasable coating; In response to the completion of the revelation of the equipment parameters in the associated area that are blocked by the erasable coating, display a confirm synthesis control; In response to a trigger operation on the confirm synthesis control, display the synthesized target virtual equipment and the equipment parameters of the target virtual equipment.
13. The method according to any one of claims 1 to 12, wherein, The method further includes: During the process of displaying the confirm synthesis control, display a give up synthesis control; In response to a trigger operation on the give up synthesis control, display a give up prompt message; Among them, the give up synthesis prompt message is used to prompt that after giving up synthesizing the target virtual equipment based on the target main virtual equipment and the target secondary virtual equipment, the equipment attributes of the target main virtual equipment are retained, and the equipment attributes of the target secondary virtual equipment are decomposed to obtain virtual resources.
14. The method according to any one of claims 1 to 13, wherein The displaying of the target virtual equipment synthesized in response to an equipment synthesis instruction includes: In response to an equipment synthesis instruction, when the equipment quality of the target main virtual equipment is higher than the equipment quality of the target secondary virtual equipment, display the target virtual equipment synthesized from the target main virtual equipment and the target secondary virtual equipment; Among them, the target virtual equipment retains the equipment quality of the target main virtual equipment.
15. The method according to any one of claims 1 to 14, wherein, The method further includes: When the equipment quality of the target main virtual equipment is lower than the equipment quality of the target secondary virtual equipment, display a synthesis prompt message; Among them, the synthesis prompt message is used to prompt inheriting the equipment attributes of the target secondary virtual equipment to at least two other secondary virtual equipment, and performing equipment synthesis based on the inherited target secondary virtual equipment and the target main virtual equipment, or performing equipment synthesis based on the other inherited secondary virtual equipment and the target main virtual equipment; Among them, the equipment quality of the target secondary virtual equipment after inheritance or the equipment quality of the other secondary virtual equipment after inheritance is lower than the equipment quality of the target primary virtual equipment, and the other secondary virtual equipment after inheritance is adapted to the target primary virtual equipment.
16. The method according to any one of claims 1 to 15, wherein The displaying of the synthesized target virtual equipment in response to an equipment synthesis instruction includes: In response to an equipment synthesis instruction, display an equipment synthesis special effect; In response to the satisfaction of the special effect display stop condition, stop displaying the equipment synthesis special effect and display the synthesized target virtual equipment; wherein, the special effect display stop condition includes at least one of the following: the display duration of the equipment synthesis special effect reaches a target duration, the number of times the equipment synthesis special effect is displayed reaches a target number, and an operation to close the equipment synthesis special effect is received.
17. A synthesis device for virtual equipment, the device includes: A first display module configured to display equipment selection controls in a virtual equipment synthesis interface; A second display module configured to, in response to an equipment selection instruction triggered based on the equipment selection controls, display a target primary virtual equipment and a target secondary virtual equipment indicated by the equipment selection instruction, the target secondary virtual equipment being adapted to the target primary virtual equipment; A third display module configured to, in response to an equipment synthesis instruction, display a synthesized target virtual equipment, the target virtual equipment being randomly synthesized based on the equipment attributes of the target primary virtual equipment and the target secondary virtual equipment.
18. An electronic device, the electronic device includes: A memory for storing computer-executable instructions; A processor for, when executing the computer-executable instructions stored in the memory, implementing the synthesis method for virtual equipment according to any one of claims 1 to 16.
19. A computer-readable storage medium storing computer-executable instructions, the computer-executable instructions, when executed by a processor, implementing the synthesis method for virtual equipment according to any one of claims 1 to 16.
20. A computer program product including a computer program or computer-executable instructions, the computer program or computer-executable instructions, when executed by a processor, implementing the synthesis method for virtual equipment according to any one of claims 1 to 16.
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