Information processing method and device, electronic device, and storage medium

By automatically displaying the rearview mirror image by inserting the sliding operation on the edge of the graphical user interface of the racing type game, the problem of misoperation and cumbersome operation in the existing technology is solved, which improves the convenience and fault tolerance of user operations and improves the game interactive experience.

CN114768253BActive Publication Date: 2025-08-08NETEASE (HANGZHOU) NETWORK CO LTD
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Patent Information

Application Number
CN202210295544.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-24
Publication Date
2025-08-08
Estimated Expiration
2042-03-24

AI Technical Summary

Technical Problem

In existing racing games, players need to accurately click buttons when viewing rearview mirror images, which is easy to operate incorrectly, has low fault tolerance, and displaying rearview mirror images will interrupt the judgment of road conditions ahead, which is cumbersome.

Method used

By placing a sliding operation on the edge of the graphical user interface, the target rearview mirror image is automatically displayed, reducing the use of interactive controls and improving operational convenience.

Benefits of technology

It improves the fault tolerance and convenience of user operations, reduces the use of interactive controls, and improves the game interactive experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application provides an information processing method and device, an electronic device, and a storage medium, wherein the method includes: in response to a sliding operation from the edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface, so as to facilitate the user to view the rearview mirror image; compared with the related art of viewing the rearview mirror image by clicking a button, the information processing method for displaying the rearview mirror image provided by the embodiment of the present application can reduce the use of interactive controls, has a higher fault tolerance rate, and is more convenient for user operation, thereby improving the user's gaming interaction experience.
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Description

Technical Field

[0001] The present application relates to the field of computer technology, and in particular to information processing methods and devices, electronic devices, and storage media. Background Art

[0002] With the development of network technology, more and more games are being used on mobile terminals. Generally speaking, games can be divided into: racing games, shooting games, strategy games, action games, role-playing games, music games, etc.

[0003] The most popular racing games are various types of racing games. In racing games, players must not only observe the road conditions and race situation in front of their field of vision, but also the race situation behind their field of vision in order to make different response strategies.

[0004] In related racing games, a fixed button is displayed on the game interface during game play. When the player needs to view the rearview mirror image, they need to click this button to display the rearview mirror image in full screen on the game interface. During this process, the player must accurately click the button used to display the rearview mirror image when they want to view the rearview mirror image, which is prone to misoperation or failure to trigger, and has a low error tolerance rate. In addition, the related technology interrupts the current content displayed on the game interface when displaying the rearview mirror image, affecting the player's judgment of the road conditions and race situation in front of the field of view. When the road conditions in front of the field of view need to be restored, the player needs to click the relevant button again (in this case, the button to cancel the display of the rearview mirror image), which is a cumbersome operation.

[0005] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of the present disclosure, and therefore may include information that does not constitute prior art known to ordinary technicians in the field. Summary of the Invention

[0006] In view of the above problems, the present application is proposed to provide an information processing method and apparatus, an electronic device, and a storage medium that overcome the above problems or at least partially solve the above problems, including:

[0007] An information processing method, comprising: executing an application on a processor of a terminal device and rendering a graphical user interface on a touch screen display of the terminal device, wherein the graphical user interface at least presents a picture in front of a target virtual object's field of view; the method comprising:

[0008] In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror image of a target rearview mirror corresponding to the sliding operation is displayed in the graphical user interface.

[0009] Optionally, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes:

[0010] In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined according to a target edge when the sliding operation enters the graphical user interface.

[0011] Optionally, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes:

[0012] In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined according to a target sliding direction of the sliding operation.

[0013] Optionally, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes:

[0014] In response to a sliding operation from the edge of the graphical user interface into the graphical user interface, when a target sliding direction of the sliding operation matches a preset sliding direction corresponding to a target edge when the sliding operation enters the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined based on the target edge.

[0015] Optionally, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes:

[0016] A target display area corresponding to the target rearview mirror is determined, and the target rearview mirror image is displayed in the target display area.

[0017] Optionally, the method further includes:

[0018] In response to the target rearview mirror image being continuously displayed on the graphical user interface for a duration reaching a preset duration, the target rearview mirror image is terminated from being displayed.

[0019] Optionally, the method further includes:

[0020] When the target rearview mirror is the first rearview mirror, and in the process of displaying the first rearview mirror image of the first rearview mirror, in response to a sliding operation corresponding to the second rearview mirror, the second rearview mirror image of the second rearview mirror is displayed in the graphical user interface, and at the same time, the display of the first rearview mirror image is ended.

[0021] An information processing device executes an application on a processor of a terminal device and renders a graphical user interface on a touch screen display of the terminal device, wherein the graphical user interface at least presents a picture in front of a target virtual object's field of view; the device comprises:

[0022] The target rearview mirror image display module is used to respond to a sliding operation from an edge of the graphical user interface into the graphical user interface and display a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface.

[0023] Optionally, the target rearview mirror image display module includes:

[0024] The first target rearview mirror determination module is used to respond to a sliding operation from the edge of the graphical user interface into the graphical user interface, and determine the target rearview mirror corresponding to the sliding operation according to the target edge when the sliding operation enters the graphical user interface.

[0025] Optionally, the target rearview mirror image display module includes:

[0026] The target rearview mirror second determination module is configured to respond to a sliding operation from an edge of the graphical user interface into the graphical user interface and determine a target rearview mirror corresponding to the sliding operation according to a target sliding direction of the sliding operation.

[0027] Optionally, the target rearview mirror image display module includes:

[0028] The third determination module of the target rearview mirror is used to respond to a sliding operation from the edge of the graphical user interface into the graphical user interface, when the target sliding direction of the sliding operation matches the preset sliding direction corresponding to the target edge when the sliding operation enters the graphical user interface, and determine the target rearview mirror corresponding to the sliding operation according to the target edge.

[0029] Optionally, the target rearview mirror image display module is used to determine a target display area corresponding to the target rearview mirror and display the target rearview mirror image in the target display area.

[0030] Optionally, the device further comprises:

[0031] The display ending module is configured to end the display of the target rearview mirror image in response to the target rearview mirror image being continuously displayed for a preset time period on the graphical user interface.

[0032] Optionally, the device further comprises:

[0033] The second display module is used to, when the target rearview mirror is the first rearview mirror and during the process of displaying the first rearview mirror image of the first rearview mirror, respond to a sliding operation corresponding to the second rearview mirror, display the second rearview mirror image of the second rearview mirror in the graphical user interface, and at the same time, end the display of the first rearview mirror image.

[0034] An electronic device comprises a processor, a memory and a computer program stored in the memory and capable of running on the processor, wherein the computer program implements the steps of the above-mentioned information processing method when executed by the processor.

[0035] A computer-readable storage medium stores a computer program, which implements the steps of the above-mentioned information processing method when executed by a processor.

[0036] This application has the following advantages:

[0037] In an embodiment of the present application, in response to a sliding operation from the edge of the graphical user interface into the graphical user interface, a target rearview mirror image of the target rearview mirror corresponding to the sliding operation is displayed in the graphical user interface, so as to facilitate the user to view the rearview mirror image; compared with the related art of viewing the rearview mirror image by clicking a button, the information processing method for displaying the rearview mirror image provided by the embodiment of the present application can reduce the use of interactive controls, has a higher fault tolerance rate, and is more convenient for user operation, thereby improving the user's gaming interaction experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] In order to more clearly illustrate the technical solution of the present application, the following is a brief introduction to the drawings required for the description of the present application. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0039] Figure 1 A flowchart of the steps of an information processing method according to an embodiment of the present application;

[0040] Figure 2 A schematic diagram of a sliding operation in an information processing method according to an embodiment of the present application;

[0041] Figure 3A schematic diagram of sliding directions in an information processing method according to an embodiment of the present application;

[0042] Figure 4 A schematic diagram of displaying a left rearview mirror image in an information processing method according to an embodiment of the present application;

[0043] Figure 5 A schematic diagram of displaying a right rearview mirror image in an information processing method according to an embodiment of the present application;

[0044] Figure 6 A schematic diagram of the relationship between a rearview mirror display area and a graphical user interface in an information processing method according to an embodiment of the present application;

[0045] Figure 7 This is a structural block diagram of an information processing device according to an embodiment of the present application. DETAILED DESCRIPTION

[0046] To make the above-mentioned purposes, features, and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and specific embodiments. It is apparent that the embodiments described are only a portion of the embodiments of this application, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments in this application without inventive effort are also within the scope of protection of this application.

[0047] In related racing games, a fixed button is displayed on the game interface during gameplay. When players need to view the rearview mirror image, they must click this button to display the rearview mirror image full screen. During this process, players must precisely trigger the button to display the rearview mirror image, which can easily lead to misoperation or failure to trigger, resulting in a low error tolerance. Furthermore, the related technology interrupts the current content displayed on the game interface when displaying the rearview mirror image, affecting the player's understanding of the road and race conditions ahead. To restore the road display, the player must trigger the button to cancel the rearview mirror image display, making the operation relatively cumbersome.

[0048] In view of this, an embodiment of the present application provides an information processing method, which determines the corresponding target rearview mirror and displays the target rearview mirror image by sliding from the edge of the graphical user interface into the graphical user interface, thereby reducing the use of interactive controls and facilitating user operation.

[0049] The information processing method provided in the embodiments of the present application can be applied to electronic devices to facilitate user game operations. The electronic device can be hardware or software. When the electronic device is hardware, it can be implemented as a cluster consisting of multiple servers or terminal devices, or as a single server or a single terminal device. When the electronic device is software, it can be installed in the hardware devices listed above.

[0050] Reference Figure 1 , shows a step flow chart of an information processing method provided by an embodiment of the present application, by executing an application on the processor of the terminal device and rendering a graphical user interface on the touch display screen of the terminal device, wherein the graphical user interface at least presents a picture in front of the field of view of the target virtual object.

[0051] In the embodiments of the present application, the application executed on the processor of the terminal device can be an application that needs to be downloaded and installed, or an application that can be used immediately after clicking, which is not limited in the embodiments of the present application. The terminal device can be an electronic device such as a smartphone, tablet computer, game console, e-book reader, multimedia player, wearable device, etc.

[0052] In an embodiment of the present application, the above-mentioned application can be any application that can provide a virtual environment for users to substitute and operate virtual objects to carry out activities in the virtual environment. Typically, the application is a game application, such as a multiplayer online racing game. Of course, in addition to game applications, other types of applications can also display virtual objects to users and provide corresponding functions to virtual objects. For example, virtual reality (VR) applications, augmented reality (AR) applications, three-dimensional map applications, military simulation applications, social applications, etc., which are not limited in the embodiment of the present application. In addition, for different applications, the form of the virtual objects provided will also be different, and the corresponding functions will also be different. This can be pre-configured according to actual needs, which is not limited in the embodiment of the present application. Optionally, a client of the above-mentioned application is running in the terminal device.

[0053] Among them, the above-mentioned virtual environment is the scene provided by the client of the application (such as a game application) when it is running on the terminal device. The virtual environment refers to the scene created for virtual objects to carry out activities (such as game competitions), such as virtual tracks, virtual houses, virtual islands, virtual maps and virtual buildings. The virtual environment can be a simulation of the real world, a semi-simulated and semi-fictitious environment, or a purely fictitious environment. The virtual environment can be a two-dimensional virtual environment, a 2.5-dimensional virtual environment, or a three-dimensional virtual environment, which is not limited in the embodiments of the present application.

[0054] The aforementioned target virtual object can be a virtual object controlled by a user account within an application. In embodiments of the present application, the target virtual object can be a virtual vehicle, a virtual ship, a virtual person, or the like. A rearview mirror is a tool used to display external information, such as what is directly behind or to the sides of a virtual object. For example, if the target virtual object is a virtual vehicle, the virtual vehicle can have an interior rearview mirror to display information about the rear of the virtual vehicle, and / or left and right rearview mirrors, each used to display information about the left and right rears of the virtual vehicle.

[0055] The display image of the virtual environment refers to the image corresponding to the virtual environment presented to the user in the graphical user interface. The display image of the virtual environment can be an image captured by a virtual camera within the virtual environment. In one embodiment, the virtual camera can capture the display image of the virtual environment from a third-person perspective of a target virtual object controlled by the user. Optionally, the virtual camera is positioned diagonally above the target virtual object, and the application uses the virtual camera to observe the virtual environment with the target virtual object as the center, capturing a display image of the virtual environment centered on the target virtual object. For example, when the target virtual object is a virtual vehicle, the display image of the virtual environment captured from the third-person perspective of the target virtual object includes the entire body of the virtual vehicle and the image in front of the virtual vehicle's field of view. When the target virtual object is the driver in the virtual vehicle, the display image of the virtual environment captured from the third-person perspective of the target virtual object includes the portion of the virtual vehicle's interior including the driver and the image in front of the virtual vehicle's windshield. In another embodiment, the virtual camera captures the display image of the virtual environment from the first-person perspective of the target virtual object. Optionally, a virtual camera is set in front of the target virtual object, and the application observes the virtual environment from the perspective of the target virtual object through the virtual camera, and obtains a display screen of the virtual environment with the target virtual object as the first perspective. For example, when the target virtual object is a virtual vehicle, the display screen of the virtual environment obtained with the target virtual object as the first perspective includes the picture in front of the virtual vehicle's field of view; when the target virtual object is the driver in the virtual vehicle, the display screen of the virtual environment obtained with the target virtual object as the first perspective includes a partial picture in front of the driver in the virtual vehicle and a picture in front of the driver's field of view. Of course, in other possible implementations, the placement position of the virtual camera can be adjusted in real time. For example, the placement position of the virtual camera can be adjusted by responding to the user's operation of switching the placement position of the virtual camera.

[0056] In an embodiment of the present application, the display screen of the virtual environment is a display screen for displaying a virtual environment provided by a racing game, including a screen in front of the target virtual object's field of view. As in the above example, when the target virtual object is a virtual vehicle, the display screen of the virtual environment obtained from the third perspective of the target virtual object includes the entire body of the virtual vehicle and the screen in front of the virtual vehicle's field of view; when the target virtual object is a driver in the virtual vehicle, the display screen of the virtual environment obtained from the third perspective of the target virtual object includes a portion of the virtual vehicle's interior including the driver and a screen in front of the virtual vehicle's windshield; when the target virtual object is a virtual vehicle, the display screen of the virtual environment obtained from the first perspective of the target virtual object includes a screen in front of the virtual vehicle's field of view; when the target virtual object is a driver in the virtual vehicle, the display screen of the virtual environment obtained from the first perspective of the target virtual object includes a portion of the virtual vehicle's interior in front of the driver and a screen in front of the driver's field of view. That is, in an embodiment of the present application, the screen in front of the target virtual object's field of view can refer to any one of the screen in front of the virtual vehicle's field of view, the screen in front of the windshield, and the screen in front of the driver's field of view. Those skilled in the art can set the presentation method and display screen of the virtual environment in front of the target virtual object's field of view according to specific needs, and this application is not limited to this.

[0057] The method may include the following steps:

[0058] Step 101 : In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface.

[0059] Because the graphical user interface primarily displays the front view of the target virtual object, in racing games, users need to monitor not only the front view but also the rear view. For example, in a car racing game, the user controlling the target virtual object needs to monitor the distance to the vehicle behind them to determine whether it is overtaking them and to respond promptly.

[0060] In this embodiment, when a sliding operation is detected from the edge of the graphical user interface into the graphical user interface, the function of displaying the target rearview mirror image is triggered. Specifically, when there is only one rearview mirror, that rearview mirror is the target rearview mirror. When there are more than one rearview mirror, the target rearview mirror corresponding to the sliding operation can be further determined based on the preset association between the sliding operation type and the rearview mirror, and the target rearview mirror image can be displayed in the graphical user interface.

[0061] After the target rearview mirror is determined, the target rearview mirror image can be displayed in an area of the graphical user interface. The area used to display the target rearview mirror image can be fixed, that is, independent of the type of the target rearview mirror; or it can be changed according to the type of the target rearview mirror, that is, different rearview mirrors are associated with different display areas. After the target rearview mirror is determined, the target rearview mirror image can be displayed in the display area associated with the target rearview mirror.

[0062] The embodiment of the present application responds to a sliding operation from the edge of the graphical user interface to the graphical user interface, and displays the target rearview mirror image of the target rearview mirror corresponding to the sliding operation in the graphical user interface, so that the user can view the rearview mirror image conveniently; compared with the related art of viewing the rearview mirror image by clicking a button, the interactive method for displaying the rearview mirror image provided by the embodiment of the present application can reduce the use of interactive controls, has a higher fault tolerance rate, and is more convenient for user operation, thereby improving the user's interactive experience.

[0063] Next, the information processing method in this exemplary embodiment will be further described.

[0064] In step 101 , in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror image of a target rearview mirror corresponding to the sliding operation is displayed in the graphical user interface.

[0065] For the terminal device, the sliding track of the sliding operation in the graphical user interface can be obtained. When the starting point of the sliding track is at the edge of the graphical user interface, it can be determined that the sliding operation is from the edge of the graphical user interface into the graphical user interface, and then the target rearview mirror corresponding to the sliding operation can be determined. Figure 2 The sliding operations shown are all from the edge of the graphical user interface into the graphical user interface, that is, when the graphical user interface does not cover the entire touch screen, the sliding starting point of the sliding operation can be at the edge of the graphical user interface, between the graphical user interface and the edge of the touch screen, or at the edge of the touch screen.

[0066] When the graphical user interface fills the touch screen of the terminal device, the edge of the graphical user interface is the edge of the touch screen. Therefore, when the graphical user interface fills the touch screen of the terminal device, it is also possible to obtain the sliding trajectory of the sliding operation on the touch screen. When the starting point of the sliding trajectory is at the edge of the touch screen, it can be determined that the sliding operation entered the graphical user interface from the edge of the graphical user interface, and then determine the target rearview mirror corresponding to the sliding operation.

[0067] In an optional embodiment of the present application, there may be only one rearview mirror. Taking the target virtual object as a virtual vehicle or a driver in a virtual vehicle as an example, the virtual vehicle may have only one rearview mirror for presenting information behind the virtual vehicle; illustratively, the rearview mirror may be an interior rearview mirror.

[0068] When a user needs to view the rear view of the virtual vehicle while controlling a target virtual object, they can perform a swipe operation from the edge of the graphical user interface into the graphical user interface to trigger the graphical user interface to display the target rearview mirror image of the target rearview mirror. Since there is only one rearview mirror in this embodiment, when a swipe operation from the edge of the graphical user interface into the graphical user interface is detected, the rearview mirror can be directly determined as the target rearview mirror corresponding to the swipe operation, and the image presented by the target rearview mirror, i.e., the target rearview mirror image, can be displayed in the graphical user interface.

[0069] In another optional embodiment of the present application, there are at least two rearview mirrors. Again, assuming the target virtual object is a virtual vehicle or a driver inside a virtual vehicle, the virtual vehicle may have left and right rearview mirrors, respectively for displaying information about the left and right rear of the virtual vehicle. Alternatively, in some gaming applications, the virtual vehicle may also have an interior rearview mirror for displaying information directly behind the virtual vehicle.

[0070] When a user needs to view the rear view of the virtual vehicle while controlling a target virtual object, they can perform a swipe operation from the edge of the graphical user interface into the graphical user interface to trigger the graphical user interface to display the target rearview mirror image of the target rearview mirror. Since multiple rearview mirrors are provided in this embodiment, upon detecting a swipe operation from the edge of the graphical user interface into the graphical user interface, the target rearview mirror must be identified from the multiple rearview mirrors in order to display the target rearview mirror image in the graphical user interface.

[0071] When there are multiple rearview mirrors, the type of sliding operation corresponding to each rearview mirror can be pre-set, so that when a sliding operation is detected from the edge of the graphical user interface, the type of sliding operation can be judged, and then combined with the pre-set types of sliding operations corresponding to each rearview mirror, the target rearview mirror to be displayed can be determined, that is, the target rearview mirror corresponding to the sliding operation.

[0072] After the target rearview mirror is determined, the target rearview mirror image can be displayed in an area of the graphical user interface. The area used to display the target rearview mirror image can be fixed, that is, independent of the type of the target rearview mirror; or it can be changed according to the type of the target rearview mirror, that is, different rearview mirrors are associated with different display areas. After the target rearview mirror is determined, the target rearview mirror image can be displayed in the display area associated with the target rearview mirror.

[0073] In an optional embodiment of the present application, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of the target rearview mirror corresponding to the sliding operation in the graphical user interface may include:

[0074] In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined according to a target edge when the sliding operation enters the graphical user interface.

[0075] In this embodiment, the rearview mirror is associated with the edge where the sliding operation is performed, and different rearview mirrors are associated with different edges. The target rearview mirror where the rearview mirror image needs to be displayed is determined based on the target edge where the sliding operation is actually detected; the user can perform a sliding operation into the graphical user interface at any position on different edges to trigger the display of the corresponding rearview mirror image, which can improve the convenience and flexibility of operation.

[0076] In one example, the virtual vehicle may have a first rearview mirror and a second rearview mirror, the first rearview mirror being associated with a first edge and the second rearview mirror being associated with a second edge.

[0077] For example, the first rearview mirror may be a left rearview mirror, and the second rearview mirror may be a right rearview mirror; the first edge may be a left edge, and the second edge may be a right edge.

[0078] When a sliding operation is detected from any position of the left edge of the graphical user interface into the graphical user interface, the left rearview mirror is determined to be the target rearview mirror; when a sliding operation is detected from any position of the right edge of the graphical user interface into the graphical user interface, the right rearview mirror is determined to be the target rearview mirror; when a sliding operation is detected from the upper / lower edge of the graphical user interface into the graphical user interface, since there is no rearview mirror associated with the upper / lower edge, there is no target rearview mirror corresponding to this sliding operation, and it can be considered that this sliding operation cannot trigger the display of the rearview mirror image.

[0079] In another example, the virtual vehicle may also have three rearview mirrors, each rearview mirror being associated with a different edge, for example, a first rearview mirror being associated with a first edge, a second rearview mirror being associated with a second edge, and a third rearview mirror being associated with a third edge.

[0080] For example, the first rearview mirror may be a left rearview mirror, the second rearview mirror may be a right rearview mirror, and the third rearview mirror may be an inner rearview mirror; the first edge may be a left edge, the second edge may be a right edge, and the third edge may be an upper and / or lower edge.

[0081] When a sliding operation is detected from any position on the left edge of the graphical user interface into the graphical user interface, the left rearview mirror is determined to be the target rearview mirror; when a sliding operation is detected from any position on the right edge of the graphical user interface into the graphical user interface, the right rearview mirror is determined to be the target rearview mirror; when a sliding operation is detected from any position on the upper / lower edge of the graphical user interface into the graphical user interface, the interior rearview mirror is determined to be the target rearview mirror.

[0082] In another optional embodiment of the present application, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes:

[0083] In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined according to a target sliding direction of the sliding operation.

[0084] In this embodiment, there are two rearview mirrors. By associating a rearview mirror with the sliding direction of a sliding operation, the target rearview mirror for displaying the rearview mirror image is determined based on the actual detected target sliding direction of the sliding operation. The sliding directions include a first sliding direction and a second sliding direction. The relationship between the longitudinal or lateral offset between the end point and the starting point of the sliding operation and 0 can be used to determine whether the sliding direction is the first sliding direction or the second sliding direction. In this embodiment, the user can trigger the display of different rearview mirror images by performing sliding operations in different directions on the same side edge or different side edges, thereby improving operational convenience and flexibility. Exemplarily, when the first sliding direction is that the longitudinal offset between the end point and the starting point of the sliding operation is greater than 0, and the second sliding direction is that the longitudinal offset between the end point and the starting point of the sliding operation is less than 0, the user can perform sliding operations in different directions on the same side edge. For example, the user can perform an upward sliding operation on the left edge, that is, perform a sliding operation in the first sliding direction, or perform a downward sliding operation on the left edge, that is, perform a sliding operation in the second sliding direction; the user can perform sliding operations in different directions on different side edges. For example, the user can perform an upward sliding operation on the lower edge, that is, perform a sliding operation in the first sliding direction, and perform a downward sliding operation on the upper edge, that is, perform a sliding operation in the second sliding direction; or, the user can perform an upward sliding operation on the left edge, that is, perform a sliding operation in the first sliding direction, and perform a downward sliding operation on the right edge, that is, perform a sliding operation in the second direction.

[0085] Exemplarily, the process of determining the target sliding direction of the sliding operation may include:

[0086] determining, according to a sliding track of the sliding operation on the graphical user interface, a longitudinal offset between an end point and a starting point of the sliding track;

[0087] When the longitudinal offset is greater than 0, determining that the target sliding direction of the sliding operation is a first sliding direction;

[0088] When the longitudinal offset is less than 0, the target sliding direction of the sliding operation is determined to be a second sliding direction.

[0089] like Figure 3 As shown, a plane rectangular coordinate system parallel to the graphical user interface can be established. According to the sliding trajectory of the sliding operation in the graphical user interface, the starting point coordinates (0, y0) and the end point coordinates (x1, y1) of the sliding trajectory can be obtained, and the longitudinal offset △y = y1-y0 between the end point coordinates and the starting point coordinates can be calculated. When the longitudinal offset is greater than 0, the target sliding direction is determined to be the first sliding direction. When the longitudinal offset is less than 0, the target sliding direction is determined to be the second sliding direction.

[0090] In one example, the virtual vehicle may have a first rearview mirror and a second rearview mirror, the first rearview mirror being associated with a first sliding direction and the second rearview mirror being associated with a second sliding direction.

[0091] For example, the first rearview mirror may be a left rearview mirror, and the second rearview mirror may be a right rearview mirror; the first sliding direction may be a longitudinal offset greater than 0, and the second sliding direction may be a longitudinal offset less than 0.

[0092] When a sliding operation is detected from an edge of a side of the graphical user interface (such as the left edge) upward into the graphical user interface, that is, the longitudinal offset is greater than 0, and the target sliding direction is the first sliding direction, based on the relationship between the first rearview mirror and the first sliding direction, the first rearview mirror can be determined to be the target rearview mirror. In this example, the first rearview mirror is the left rearview mirror, and therefore, the left rearview mirror is determined to be the target rearview mirror; when a sliding operation is detected from an edge of a side of the graphical user interface (such as the left edge) downward into the graphical user interface, that is, the longitudinal offset is less than 0, and the target sliding direction is the second sliding direction. Based on the relationship between the second rearview mirror and the second sliding direction, the second rearview mirror can be determined to be the target rearview mirror. In this example, the second rearview mirror is the right rearview mirror, and therefore, the right rearview mirror is determined to be the target rearview mirror.

[0093] Of course, in other embodiments, the target sliding direction may also be determined by the lateral offset between the end point and the starting point of the sliding trajectory. For example, when the lateral offset is greater than 0, the target sliding direction is determined to be the first sliding direction, and when the lateral offset is less than 0, the target sliding direction is determined to be the second sliding direction. The specific implementation process is similar to the above-mentioned determination of the target sliding direction by the longitudinal offset and will not be repeated here.

[0094] In another optional embodiment of the present application, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes:

[0095] In response to a sliding operation from an edge of the graphical user interface into the graphical user interface,

[0096] When the target sliding direction of the sliding operation matches the preset sliding direction corresponding to the target edge when the sliding operation enters the graphical user interface, the target rearview mirror corresponding to the sliding operation is determined according to the target edge.

[0097] This embodiment associates the rearview mirror with the edge into which a swipe operation is performed, and also associates the edge with the swiping direction. This triggers the display of the rearview mirror image only when a swipe operation is performed from the edge in the swiping direction associated with the edge, effectively preventing accidental operation. The process of determining the swiping direction can be found in the previous description and will not be repeated here.

[0098] In one example, the virtual vehicle may have a first rearview mirror and a second rearview mirror, the first rearview mirror being associated with a first edge and the second rearview mirror being associated with a second edge; the first edge being associated with a first sliding direction and the second edge being associated with a second sliding direction.

[0099] For example, the first rearview mirror may be a left rearview mirror, and the second rearview mirror may be a right rearview mirror; the first edge may be a left edge of a graphical user interface, and the second edge may be a right edge of a graphical user interface; the first sliding direction may be a direction in which the longitudinal offset between the end point and the starting point of the sliding track is greater than 0, and the second sliding direction may be a direction in which the longitudinal offset between the end point and the starting point of the sliding track is less than 0.

[0100] When a sliding operation of swiping upward from the first edge (left edge) of the graphical user interface (i.e., the longitudinal offset is greater than 0) is detected, the target sliding direction is the first sliding direction. Based on the association between the first edge and the first sliding direction, it is determined that the target sliding direction is consistent with the preset sliding direction corresponding to the first edge. Then, based on the association between the first rearview mirror and the first edge, the first rearview mirror is determined to be the target rearview mirror. In this example, the first rearview mirror is the left rearview mirror, so the left rearview mirror is determined to be the target rearview mirror. When a sliding operation of swiping downward from the second edge (right edge) of the graphical user interface (i.e., the longitudinal offset is less than 0) is detected, the target sliding direction is the second sliding direction. Based on the association between the second edge and the second sliding direction, it is determined that the target sliding direction is consistent with the preset sliding direction corresponding to the second edge. Then, based on the association between the second rearview mirror and the second edge, the second rearview mirror is determined to be the target rearview mirror. In this example, the second rearview mirror is the right rearview mirror, so the right rearview mirror is determined to be the target rearview mirror. When a swipe operation is detected from the first edge (left edge) of the GUI downward into the GUI, i.e., the longitudinal offset is less than 0 and the target swipe direction is the second swipe direction, and based on the association between the first edge and the first swipe direction, it is determined that the target swipe direction does not match the preset swipe direction corresponding to the first edge, and it is determined that this swipe operation cannot trigger the display of the rearview mirror image. When a swipe operation is detected from the upper / lower edge of the GUI into the GUI, since there is no rearview mirror associated with the upper / lower edge, there is no target rearview mirror corresponding to this swipe operation, and it is determined that this swipe operation cannot trigger the display of the rearview mirror image.

[0101] After the target rearview mirror is determined, the target rearview mirror image can be displayed in an area of the graphical user interface. The area used to display the target rearview mirror image can be fixed, that is, independent of the type of the target rearview mirror; or it can be changed according to the type of the target rearview mirror, that is, different rearview mirrors are associated with different display areas. After the target rearview mirror is determined, the target rearview mirror image is displayed in the display area associated with the target rearview mirror.

[0102] In one example, when there are two rearview mirrors, namely a first rearview mirror and a second rearview mirror, the first rearview mirror can be associated with the first display area, and the second rearview mirror can be associated with the second display area.

[0103] For example, the first rearview mirror may be a left rearview mirror, and the second rearview mirror may be a right rearview mirror; the first display area may be a left display area to the left of the center line of the graphical user interface, and the second display area may be a right display area to the right of the center line of the graphical user interface.

[0104] like Figure 4As shown in , when the target rearview mirror is the left rearview mirror, the left rearview mirror image is displayed in the left display area, which is located in the upper left corner of the graphical user interface. Figure 5 As shown, when the target rearview mirror is the right rearview mirror, the right rearview mirror image is displayed in the right display area, and the right display area is located in the upper right corner of the graphical user interface.

[0105] In another example, when there are three rearview mirrors, namely a first rearview mirror, a second rearview mirror, and a third rearview mirror, a different display area can be associated with each rearview mirror.

[0106] For example, the first rearview mirror may be a left rearview mirror, the second rearview mirror may be a right rearview mirror, and the third rearview mirror may be an interior rearview mirror; Figure 6 As shown, the graphical user interface is divided into a first sub-interface, a second sub-interface and a third sub-interface, the first display area can be in the first sub-interface, the second display area can be in the second sub-interface, and the third display area can be in the third sub-interface.

[0107] When the target rearview mirror is the left rearview mirror, the left rearview mirror image is displayed in the first display area. When the target rearview mirror is the right rearview mirror cover, the right rearview mirror image is displayed in the second display area. When the target rearview mirror is the interior rearview mirror, the interior rearview mirror image is displayed in the third display area.

[0108] By associating different rearview mirrors with different display areas, users can more accurately judge the situation behind them. In particular, by combining the position relationship of the rearview mirrors to set the corresponding display area and the corresponding sliding operation type, it is more in line with the user's usage habits. For example, refer to Figure 4 and Figure 5 In response to a sliding operation from the left edge of the graphical user interface into the graphical user interface, the left rearview mirror image is displayed in the left display area of the graphical user interface; in response to a sliding operation from the right edge of the graphical user interface into the graphical user interface, the right rearview mirror image is displayed in the right display area of the graphical user interface.

[0109] Furthermore, in an optional embodiment of the present application, the method further includes:

[0110] In response to the target rearview mirror image being continuously displayed on the graphical user interface for a duration reaching a preset duration, the target rearview mirror image is terminated from being displayed.

[0111] This embodiment can set a preset time length for the continuous display of the target rearview mirror image in the graphical user interface. When the continuous display time of the target rearview mirror reaches the preset time length, the display will automatically end. On the basis of satisfying the user's need to view the target rearview mirror image, it can also automatically avoid the target rearview mirror image from blocking the front field of view for a long time and causing interference to the user.

[0112] Among them, the preset time length can be set by the user to suit the usage habits of different users; when the user does not set it, the default preset time length can be used. For example, the default preset time length can be 2 seconds.

[0113] Optionally, the time to end display of the target rearview mirror image can be automatically adjusted based on whether other virtual objects exist in the target rearview mirror image. For example, if no other virtual objects exist within a period of time during which the target rearview mirror image has been continuously displayed for a period of time equal to a determination period, the target rearview mirror image will be terminated, where the determination period is less than a preset period. If no other virtual objects exist within a period of time during which the target rearview mirror image has been continuously displayed for a period of time equal to the determination period, the target rearview mirror image will be terminated when the continuous display period reaches the preset period. For example, if the preset period is 2 seconds and the determination period is 1 second, and no other virtual objects exist within the left rearview mirror image within 1 second of display, the left rearview mirror image may be terminated after 1 second of display. If other virtual objects exist, the left rearview mirror image may be terminated after 2 seconds of display.

[0114] Furthermore, in an optional embodiment of the present application, the above method may further include:

[0115] When the target rearview mirror is the first rearview mirror, and in the process of displaying the first rearview mirror image of the first rearview mirror, in response to a sliding operation corresponding to the second rearview mirror, the second rearview mirror image of the second rearview mirror is displayed in the graphical user interface, and at the same time, the display of the first rearview mirror image is ended.

[0116] In this embodiment, when a sliding operation is detected during the display of one rearview mirror image that triggers the display of another rearview mirror image, the alternate rearview mirror image is displayed in the graphical user interface, immediately meeting the user's needs. If the area used to display the target rearview mirror image is unrelated to the target rearview mirror type, the display of the currently displayed rearview mirror image is automatically terminated while the alternate rearview mirror image is displayed. When different rearview mirrors are associated with different display areas, terminating the currently displayed rearview mirror image while the alternate rearview mirror image is displayed prevents multiple rearview mirror images from being displayed simultaneously in the interface, occupying too much of the forward field of view and causing distraction to the user.

[0117] For example, when displaying the left rearview mirror image, if a sliding operation that triggers the display of the right rearview mirror image is detected, the right rearview mirror image will be displayed in the display area corresponding to the right rearview mirror. Even if the left rearview mirror image does not reach the preset time length, the display will end due to the sliding operation that triggers the display of the right rearview mirror image.

[0118] In other optional embodiments, when there are multiple rearview mirrors and different rearview mirrors are associated with different display areas, the above method may further include:

[0119] When the target rearview mirror is the first rearview mirror, and in the process of displaying the first rearview mirror image of the first rearview mirror, in response to the sliding operation corresponding to the second rearview mirror, the second rearview mirror image of the second rearview mirror is simultaneously displayed in the graphical user interface.

[0120] In this embodiment, when a sliding operation that triggers the display of another rearview mirror image is detected during the display of one rearview mirror image, the other rearview mirror image is simultaneously displayed in the graphical user interface to meet the user's need to view different rearview mirror images at the same time.

[0121] For example, when a sliding operation is detected to trigger the display of the right rearview mirror image during the display of the left rearview mirror image, the right rearview mirror image is displayed in the display area corresponding to the right rearview mirror, and the display of the left rearview mirror image is not affected.

[0122] Furthermore, in an optional embodiment of the present application, the above method may further include:

[0123] During the process of displaying the target rearview mirror image, in response to detecting a sliding operation corresponding to the target rearview mirror, the continuous display time length of the target rearview mirror is re-determined.

[0124] In this embodiment, when a sliding operation that triggers the currently displayed rearview mirror image is detected during the display of a rearview mirror image, the timer that records the continuous display time of the target rearview mirror is reset to re-determine the continuous display time of the target rearview mirror.

[0125] For example, when a sliding operation that triggers the display of the left rearview mirror image is detected during the display of the left rearview mirror image, the timer is reset, that is, the timer starts counting again from the last time the sliding operation that triggered the display of the rearview mirror image was detected.

[0126] Of course, in other embodiments, when a sliding operation corresponding to the currently displayed target rearview mirror image is detected during the process of displaying the target rearview mirror image, the sliding operation may also be ignored.

[0127] In response to a sliding operation from the edge of a graphical user interface into the graphical user interface, the embodiment of the present application displays a target rearview mirror image of the target rearview mirror corresponding to the sliding operation within the target display area. In response to the target rearview mirror image being continuously displayed in the graphical user interface for a preset duration, the display of the target rearview mirror image is automatically terminated, thereby facilitating the user's viewing of the rearview mirror image. The automatic termination of the display automatically prevents the target rearview mirror image from obstructing the user's field of view for a long period of time. Compared to the related art of viewing rearview mirror images by clicking a button, the information processing method for displaying rearview mirror images provided by the embodiment of the present application can reduce the use of interactive controls, has a higher fault tolerance rate, and is more convenient for user operation, thereby improving the user's interactive experience.

[0128] It should be noted that for the method embodiments, for the sake of simplicity, they are all expressed as a series of action combinations, but those skilled in the art should be aware that the embodiments of the present application are not limited by the order of the actions described, because according to the embodiments of the present application, certain steps can be performed in other orders or simultaneously. Secondly, those skilled in the art should also be aware that the embodiments described in the specification are all preferred embodiments, and the actions involved are not necessarily required by the embodiments of the present application.

[0129] Reference Figure 7 , shows a structural block diagram of an embodiment of an information processing device of the present application. Corresponding to the above-mentioned information processing method embodiment, an application is executed on a processor of a terminal device and a graphical user interface is rendered on a touch screen display of the terminal device. The graphical user interface at least presents a picture in front of the field of view of a target virtual object. The information processing device provided in this embodiment of the present application may include the following modules:

[0130] The target rearview mirror image display module 701 is used to respond to a sliding operation from the edge of the graphical user interface into the graphical user interface, and display a target rearview mirror image of the target rearview mirror corresponding to the sliding operation in the graphical user interface.

[0131] Optionally, the target rearview mirror image display module 701 includes:

[0132] The first target rearview mirror determination module is used to respond to a sliding operation from the edge of the graphical user interface into the graphical user interface, and determine the target rearview mirror corresponding to the sliding operation according to the target edge when the sliding operation enters the graphical user interface.

[0133] Optionally, the target rearview mirror image display module 701 includes:

[0134] The target rearview mirror second determination module is configured to respond to a sliding operation from an edge of the graphical user interface into the graphical user interface and determine a target rearview mirror corresponding to the sliding operation according to a target sliding direction of the sliding operation.

[0135] Optionally, the target rearview mirror image display module 701 includes:

[0136] The third determination module of the target rearview mirror is used to respond to a sliding operation from the edge of the graphical user interface into the graphical user interface, when the target sliding direction of the sliding operation matches the preset sliding direction corresponding to the target edge when the sliding operation enters the graphical user interface, and determine the target rearview mirror corresponding to the sliding operation according to the target edge.

[0137] Optionally, the target rearview mirror image display module 701 is used to determine a target display area corresponding to the target rearview mirror, and display the target rearview mirror image in the target display area.

[0138] Optionally, the device further comprises:

[0139] The display ending module is configured to end the display of the target rearview mirror image in response to the target rearview mirror image being continuously displayed for a preset time period on the graphical user interface.

[0140] Optionally, the device further comprises:

[0141] The second display module is used to, when the target rearview mirror is the first rearview mirror and during the process of displaying the first rearview mirror image of the first rearview mirror, respond to a sliding operation corresponding to the second rearview mirror, display the second rearview mirror image of the second rearview mirror in the graphical user interface, and at the same time, end the display of the first rearview mirror image.

[0142] As for the device embodiment, since it is basically similar to the method embodiment, the description is relatively simple, and the relevant parts can be referred to the partial description of the method embodiment.

[0143] An embodiment of the present application also discloses an electronic device, including a processor, a memory, and a computer program stored in the memory and capable of running on the processor, wherein the computer program implements the steps of the information processing method described above when executed by the processor.

[0144] The embodiment of the present application further discloses a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the steps of the information processing method described above are implemented.

[0145] The various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.

[0146] Those skilled in the art will appreciate that the embodiments of the present application can be provided as methods, devices, or computer program products. Therefore, the present application can adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, the present application can adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0147] The embodiments of the present application are described with reference to the flowcharts and / or block diagrams of the methods, terminal devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing terminal device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing terminal device generate instructions for implementing the steps in the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0148] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing terminal device to operate in a specific manner, so that the instructions stored in the computer readable memory produce a manufactured product including an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0149] These computer program instructions can also be loaded onto a computer or other programmable data processing terminal device so that a series of operating steps are executed on the computer or other programmable terminal device to produce a computer-implemented process, thereby providing instructions for executing on the computer or other programmable terminal device to implement the process. Figure 1 a process or multiple processes and / or boxes Figure 1 The steps for the function specified in one or more boxes.

[0150] Although preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they become aware of the basic inventive concepts. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the embodiments of the present invention.

[0151] Finally, it should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or terminal device that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or terminal device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of additional identical elements in the process, method, article, or terminal device that includes the element.

[0152] The above is a detailed introduction to the information processing method and device, electronic device and storage medium provided by the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method and core idea of the present application. At the same time, for those skilled in the art, according to the idea of the present application, there may be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as a limitation on the present application.

Claims

1. An information processing method, characterized in that: The method includes executing an application on a processor of a terminal device and rendering a graphical user interface on a touch screen display of the terminal device, wherein the graphical user interface at least presents a picture in front of a field of view of a target virtual object. In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface; The step of displaying, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface comprises: In response to a sliding operation from the edge of the graphical user interface into the graphical user interface, when a target sliding direction of the sliding operation matches a preset sliding direction corresponding to the target edge when the sliding operation enters the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined based on the target edge, and a target rearview mirror image of the target rearview mirror is displayed in an area of the graphical user interface.

2. The method according to claim 1, characterized in that In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes: In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined according to a target edge when the sliding operation enters the graphical user interface.

3. The method according to claim 1, characterized in that In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, displaying a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface includes: In response to a sliding operation from an edge of the graphical user interface into the graphical user interface, a target rearview mirror corresponding to the sliding operation is determined according to a target sliding direction of the sliding operation.

4. The method according to any one of claims 1 to 3, characterized in that The step of displaying a target rearview mirror image of the target rearview mirror corresponding to the sliding operation in the graphical user interface includes: A target display area corresponding to the target rearview mirror is determined, and the target rearview mirror image is displayed in the target display area.

5. The method according to claim 1, wherein The method further comprises: In response to the target rearview mirror image being continuously displayed on the graphical user interface for a duration reaching a preset duration, the target rearview mirror image is terminated from being displayed.

6. The method according to claim 4, characterized in that The method further comprises: When the target rearview mirror is the first rearview mirror, and in the process of displaying the first rearview mirror image of the first rearview mirror, in response to a sliding operation corresponding to the second rearview mirror, the second rearview mirror image of the second rearview mirror is displayed in the graphical user interface, and at the same time, the display of the first rearview mirror image is ended.

7. An information processing device, characterized in that By executing an application on a processor of a terminal device and rendering a graphical user interface on a touch screen display of the terminal device, the graphical user interface at least presents a picture in front of a field of view of a target virtual object; The device comprises: a target rearview mirror image display module, configured to, in response to a sliding operation from an edge of the graphical user interface into the graphical user interface, display a target rearview mirror image of a target rearview mirror corresponding to the sliding operation in the graphical user interface; Wherein, the target rearview mirror image display module includes: The third determination module of the target rearview mirror is used to respond to a sliding operation from the edge of the graphical user interface into the graphical user interface. When the target sliding direction of the sliding operation matches the preset sliding direction corresponding to the target edge when the sliding operation enters the graphical user interface, the target rearview mirror corresponding to the sliding operation is determined according to the target edge, and the target rearview mirror image of the target rearview mirror is displayed in an area of the graphical user interface.

8. An electronic device, characterized in that: The method comprises a processor, a memory, and a computer program stored in the memory and capable of running on the processor, wherein when the computer program is executed by the processor, the steps of the information processing method according to any one of claims 1 to 6 are implemented.

9. A computer-readable storage medium, characterized in that The computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps of the information processing method according to any one of claims 1 to 6 are implemented.

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