CN113786607B - Interface display method, device, terminal and storage medium - Google Patents

Interface display method, device, terminal and storage medium Download PDF

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Publication number
CN113786607B
CN113786607B CN202111154029.1A CN202111154029A CN113786607B CN 113786607 B CN113786607 B CN 113786607B CN 202111154029 A CN202111154029 A CN 202111154029A CN 113786607 B CN113786607 B CN 113786607B
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Prior art keywords
control
adjustment
triggering
target
size
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CN113786607A (en
Inventor
刘智洪
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Tencent Technology Shenzhen Co Ltd
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Tencent Technology Shenzhen Co Ltd
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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/40Processing input control signals of video game devices, e.g. signals generated by the player or derived from the environment
    • A63F13/42Processing input control signals of video game devices, e.g. signals generated by the player or derived from the environment by mapping the input signals into game commands, e.g. mapping the displacement of a stylus on a touch screen to the steering angle of a virtual vehicle
    • A63F13/426Processing input control signals of video game devices, e.g. signals generated by the player or derived from the environment by mapping the input signals into game commands, e.g. mapping the displacement of a stylus on a touch screen to the steering angle of a virtual vehicle involving on-screen location information, e.g. screen coordinates of an area at which the player is aiming with a light gun
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/50Controlling the output signals based on the game progress
    • A63F13/52Controlling the output signals based on the game progress involving aspects of the displayed game scene
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/55Controlling game characters or game objects based on the game progress
    • A63F13/57Simulating properties, behaviour or motion of objects in the game world, e.g. computing tyre load in a car race game
    • A63F13/577Simulating properties, behaviour or motion of objects in the game world, e.g. computing tyre load in a car race game using determination of contact between game characters or objects, e.g. to avoid collision between virtual racing cars
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/80Special adaptations for executing a specific game genre or game mode
    • A63F13/837Shooting of targets
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F2300/00Features of games using an electronically generated display having two or more dimensions, e.g. on a television screen, showing representations related to the game
    • A63F2300/30Features of games using an electronically generated display having two or more dimensions, e.g. on a television screen, showing representations related to the game characterized by output arrangements for receiving control signals generated by the game device
    • A63F2300/308Details of the user interface
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F2300/00Features of games using an electronically generated display having two or more dimensions, e.g. on a television screen, showing representations related to the game
    • A63F2300/80Features of games using an electronically generated display having two or more dimensions, e.g. on a television screen, showing representations related to the game specially adapted for executing a specific type of game
    • A63F2300/8076Shooting

Abstract

The application discloses an interface display method, an interface display device, a terminal and a storage medium, and relates to the technical field of computers and Internet. The method comprises the following steps: displaying a user interface in which at least one control is displayed; acquiring a first adjustment operation aiming at a trigger area of a target control in at least one control; the triggering area of the target control is used for triggering the function of the target control, and the display size of the target control is a first size; according to the first adjustment operation, the adjusted size of the trigger area of the target control is determined; changing the trigger area of the target control from the original size to the adjusted size, and continuing to display the target control at the first size. According to the technical scheme provided by the embodiment of the application, the triggering area (such as the size) of the target control can be independently adjusted, the adjustment of the triggering area of the target control is not required to be realized by adjusting the target control, and the flexibility and convenience of the adjustment of the triggering area are improved.

Description

Interface display method, device, terminal and storage medium
Technical Field
The embodiment of the application relates to the technical fields of computers and the Internet, in particular to an interface display method, an interface display device, a terminal and a storage medium.
Background
Currently, in game-type applications, players are typically required to implement a series of game operations, such as directional control, skill placement, etc., by triggering a function corresponding to a control (e.g., button) in a user interface.
Taking shooting game application program as an example, related technology sets a triggering area (such as a collision box area) of a control to coincide with the control, that is, the size of the triggering area of the control is the same as that of the control, and the center points of the triggering area and the control coincide with each other. And responding to the operation of the player on the triggering area of the control, and triggering the function corresponding to the control.
However, in the related art, when the player has a need to adjust the size of the trigger area, the player can only adjust the size of the trigger area of the control, which is not convenient.
Disclosure of Invention
The embodiment of the application provides an interface display method, an interface display device, a terminal and a storage medium, which can improve the flexibility and convenience of adjustment of a trigger area. The technical scheme is as follows:
according to an aspect of an embodiment of the present application, there is provided an interface display method, including:
displaying a user interface, wherein at least one control is displayed in the user interface;
Acquiring a first adjustment operation aiming at a trigger area of a target control in the at least one control; the triggering area of the target control is used for triggering the function of the target control, and the display size of the target control is a first size;
according to the first adjustment operation, the adjusted size of the trigger area of the target control is determined;
and changing the triggering area of the target control from the original size to the adjusted size, and continuing to display the target control in the first size.
According to an aspect of an embodiment of the present application, there is provided an interface display apparatus including:
the interface display module is used for displaying a user interface, and at least one control is displayed in the user interface;
the operation acquisition module is used for acquiring a first adjustment operation aiming at a trigger area of a target control in the at least one control; the triggering area of the target control is used for triggering the function of the target control, and the display size of the target control is a first size;
the size adjustment module is used for determining the adjusted size of the trigger area of the target control according to the first adjustment operation;
The interface display module is further configured to change the trigger area of the target control from an original size to the adjusted size, and continue to display the target control in the first size.
According to an aspect of an embodiment of the present application, there is provided a terminal including a processor and a memory, where the memory stores at least one instruction, at least one program, a code set, or an instruction set, and the at least one instruction, the at least one program, the code set, or the instruction set is loaded and executed by the processor to implement the above interface display method.
According to an aspect of an embodiment of the present application, there is provided a computer-readable storage medium having stored therein at least one instruction, at least one program, a code set, or an instruction set, which is loaded and executed by a processor to implement the above interface display method.
According to an aspect of embodiments of the present application, there is provided a computer program product or computer program comprising computer instructions stored in a computer readable storage medium. The processor of the terminal reads the computer instructions from the computer-readable storage medium, and the processor executes the computer instructions so that the terminal performs the interface display method described above.
The technical scheme provided by the embodiment of the application can have the following beneficial effects:
the size adjustment of the trigger area of the control can be realized by independently adjusting the trigger area of the control without changing the size of the control, and the size adjustment of the trigger area of the control can be realized only by adjusting the size of the control, so that the flexibility of the adjustment of the trigger area is improved. Meanwhile, the size of the trigger area can be directly adjusted without indirectly adjusting the size of the trigger area through a control, so that the convenience of adjusting the trigger area is improved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for the description of the embodiments will be briefly described below, and it is apparent that the drawings in the following description are only some embodiments of the present application, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic illustration of an implementation environment for an embodiment of the present application;
FIG. 2 is a flow chart of an interface display method according to an embodiment of the present application;
FIGS. 3 and 4 are schematic diagrams illustrating controls and trigger areas for the controls;
FIG. 5 is a schematic illustration of a setup interface provided by one embodiment of the application;
FIG. 6 is a schematic illustration of a setup interface provided by another embodiment of the present application;
FIG. 7 illustrates a schematic diagram of determining whether a trigger position falls within a trigger zone;
FIG. 8 illustrates a schematic diagram of a control overlay setting;
FIG. 9 is a flow chart of a control for determining a desired trigger based on priority provided by one embodiment of the application;
FIG. 10 is a schematic view of a setup interface provided by another embodiment of the present application;
FIG. 11 is a flowchart of an interface display method according to another embodiment of the present application;
FIG. 12 is a block diagram of an interface display device provided in one embodiment of the application;
FIG. 13 is a block diagram of an interface display device provided by another embodiment of the present application;
fig. 14 is a block diagram of a terminal provided in one embodiment of the present application.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the present application more apparent, the embodiments of the present application will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, a schematic diagram of an implementation environment of an embodiment of the present application is shown. The implementation environment may include: a terminal 10 and a server 20.
The terminal 10 may be an electronic device such as a cell phone, tablet computer, game console, multimedia player device, PC (Personal Computer ) or the like. A client of a target application program may be installed in the terminal 10. For example, the target application may be a game-type application, a simulated learning-type application, and any application that requires triggering of a function corresponding to a control by a trigger area.
The server 20 is used to provide background services for clients of applications (e.g., game-like applications) in the terminal 10. For example, the server 20 may be a background server of the application (e.g., game-like application) described above. The server 20 may be a server, a server cluster comprising a plurality of servers, or a cloud computing service center.
The terminal 10 and the server 20 can communicate with each other via a network 30. The network 30 may be a wired network or a wireless network.
By taking a client side applying a game application program as an example, a player can start a setting interface by triggering the setting control in the user interface, and in the setting interface, the player can adjust the size of the triggering area of the control under the condition of not changing the size of the control by adjusting the adjusting control for adjusting the triggering area of the control, so that the layout of the triggering area required by the player is obtained under the condition of not influencing the layout of the control in the user interface.
Referring to fig. 2, a flowchart of an interface display method according to an embodiment of the present application is shown, where the main execution subject of each step of the method may be the terminal 10 in the implementation environment of the solution shown in fig. 1, and the method may include the following steps (steps 201 to 204):
step 201, a user interface is displayed, in which at least one control is displayed.
The user interface refers to a display interface of an application program, such as the display interface of the target application program described above. For example, in a shooting game type application, the user interface may be a display interface of a game play for presenting a virtual environment of the game play to a user. In a simulated learning class application, the user interface may be a display interface of a learning scenario for presenting a simulated environment in the learning scenario to a user. Optionally, the user interface includes a display layer and a control layer. The display level of the control layer is higher than that of the display layer. The display layer is used for displaying screen information (such as a virtual environment screen), and the control layer is used for displaying UI (User Interface) controls (such as operation controls, setting controls and the like).
Optionally, for the target control in the at least one control, by triggering the target control, a target function corresponding to the target control can be achieved, that is, different controls can correspond to different functions. Illustratively, in the shooting game application, the at least one control may include a control (such as an operation control) for controlling a direction, a control (such as a skill control) for applying skills, a control (such as a setting control) for setting a user interface, and the like, and the embodiment of the present application does not limit the type of the control in the user interface. The control can be displayed in the form of buttons, sliders, icons, rockers, and the like. The control can also display prompt information, which can be in the form of words, pictures, symbols and the like, and can be used for providing the player with the corresponding function of the control. For example, for an operational control, the prompt for the control may be a symbol for indicating the direction of movement.
Step 202, acquiring a first adjustment operation for a trigger area of a target control in at least one control; the triggering area of the target control is used for triggering the function of the target control, and the display size of the target control is a first size.
The target control may refer to any of the at least one control described above. In some embodiments (e.g., shooting game type applications), the target control may refer to any control other than a certain type of control (e.g., a setup control) without affecting user operation. The trigger area is a trigger channel of the function of the control, and based on the trigger area, a trigger event of the user for the function of the control can be acquired. For example, referring to fig. 3, a trigger area of target control 301 may refer to a collision box area 302 overlaid on top of target control 301, and by associating collision box area 302 with target control 301, a function (e.g., squat shooting function in fig. 3) corresponding to target control 301 may be triggered in response to a triggering operation (e.g., clicking, sliding, pressing, etc.) by a user on collision box area 302.
The size of the trigger area of the target control may be smaller than the size of the target control, the size of the trigger area of the target control may be equal to the size of the target control, and the size of the trigger area of the target control may also be smaller than the size of the target control. Illustratively, referring to FIG. 4, the size of the target control 401 is the same as the size of the trigger area 402 of the target control 401, and the center position of the target control 401 coincides with the center position of the trigger area 402 of the target control 401. Alternatively, the default size of the target control (e.g., the initial display size, as described below) and the default size of the trigger area of the target control (e.g., the initial set size, as described below) may be the same under the default settings. The first size refers to the current display size of the target control, and the first size may be the default size or a size adjusted by the user.
Optionally, the first adjustment operation refers to an operation for adjusting the size of the trigger area of the target control. The first adjustment operation may be a click operation. For example, for the trigger area of the target control, a size increase button and a size decrease button are configured, and in response to a click operation for the size increase button, the size of the trigger area of the target control is increased. The first adjustment operation may also be a sliding operation. For example, for the trigger area of the target control, a size adjustment slider is configured, and in response to the sliding operation for the size adjustment slider, the size of the trigger area of the target control is adjusted.
In one example, the acquisition procedure of the first adjustment operation may be as follows: responsive to an operation for a setting control in the user interface, displaying a setting interface; the first adjustment control for adjusting the triggering area of the target control is displayed in the setting interface; and responding to the operation for the first adjustment control, and acquiring a first adjustment operation. The setting control is a control for opening a setting interface. The setting interface is an interface for providing a user to set and adjust interface elements in the user interface, where the interface elements may include elements such as display effects (such as transparency, color ratio, etc.), sound effects, controls, and the like of the user interface. Alternatively, the first adjustment control may refer to the above-described resizing slider, resizing button, and the like.
Illustratively, taking a shooting game type application as an example, referring to fig. 5, in response to a triggering operation of a user on a setting control in a user interface (which corresponds to the setting control 501 in fig. 5), a setting interface 500 (which may be displayed in the form of a window or may be displayed in the form of an interface) is displayed, the setting interface 500 is displayed based on an interface element in the user interface, in response to a selection operation of the user on a triggering area 504 of a target control 505, an adjustment interface 502 is displayed, a first adjustment control 503 (or a first adjustment control 506) corresponding to the triggering area 504 is displayed in the adjustment interface 502, in response to a sliding operation on the first adjustment control 503, a first adjustment operation on the triggering area 504 is acquired (or, in response to a clicking operation on the first adjustment control 506, a first adjustment operation on the triggering area 504 is acquired).
Optionally, the setting interface may further display a first adjustment control corresponding to the trigger area of each control in a longitudinal arrangement manner, and the user may find the first adjustment control corresponding to the trigger area of the target control from the arrangement, so that the size of the trigger area of the target control is adjusted by adjusting the first adjustment control.
According to the embodiment of the application, the control is separated from the trigger area of the control, the UI is responsible for displaying the control, the trigger area of the control is realized independently, and the independent first adjustment control is arranged for the trigger area of the control, so that a user can independently adjust the size of the trigger area of the control, and the adjustment of the size of the trigger area of the control is realized without adjusting the control, thereby improving the flexibility and convenience of adjustment of the trigger area.
In another example, the acquisition procedure of the first adjustment operation may also be as follows: responding to the operation of setting the control in the user interface, and switching the triggering area of the target control into an adjustable state and a visible state; and responding to the operation of the trigger area of the target control, and acquiring a first adjustment operation.
The adjustable state of the trigger area refers to a state that the trigger area is adjustable by a user, and in this state, the function of the target control is not triggered by the operation of the trigger area of the target control. The visual state of the trigger area means that the trigger area is in a state that can be observed by a user. For example, the transparency of the trigger area is adjusted to a threshold value so that the user can observe the trigger area.
Illustratively, referring to FIG. 6, in response to a triggering operation for a setup control 603 in the user interface 600, the triggering area of each control in the user interface 600 is switched to an adjustable state and a visual state (i.e., the user interface is switched to a setup interface mode). For example, for target control 601, trigger area 602 of target control 601 is an adjustable state and a visual state. In response to the adjustment operation for the trigger area 602, a first adjustment operation corresponding to the trigger area 602 is acquired. For example, the acquisition user performs an outward stretching operation 604 on the trigger area 602.
Step 203, determining the adjusted size of the trigger area of the target control according to the first adjustment operation.
Optionally, the adjusted size refers to the final size obtained by the user in the current adjustment operation.
In one example, the resized acquisition process may be as follows: according to the first adjustment operation, determining adjustment parameters corresponding to the trigger area of the target control; and determining the adjusted size of the trigger area of the target control according to the adjustment parameters.
Alternatively, the adjustment parameter may refer to an adjusted size of the trigger area, or may refer to a variable parameter of the size of the trigger area, such as an amplification factor of the size of the trigger area, a reduction factor of the size of the trigger area, or the like, where the adjustment parameter may be in positive correlation with the adjusted size, and the larger the adjustment parameter, the larger the adjusted size. The upper limit value and the lower limit value of the adjustment parameter can be set by a developer according to actual use requirements. Illustratively, referring to FIG. 5, the adjustment parameters are obtained in response to a user operation of the first adjustment control 503. For example, the magnification (i.e., adjustment parameter) is adjusted down in response to the user sliding first adjustment control 503 to the left, and the magnification is adjusted up in response to the user sliding first adjustment control 503 to the right.
Optionally, the adjusted size of the trigger area of the target control may be determined according to the adjustment parameter and the initial set size of the trigger area of the target control. The initial set size may refer to a default size of the trigger area, which is set by a developer in a design phase. For example, the product between the adjustment parameter and the initial set size of the trigger area of the target control may be determined as the adjusted size of the trigger area of the target control. For example, based on the above embodiment, assuming that the magnification is 143%, the initially set size may be enlarged by 1.43 times, resulting in an adjusted size.
And the adjusted size of the trigger area of the target control can be determined according to the adjustment parameters and the initial display size of the target control. The initial display size refers to a default display size of the target control, which is also set by the developer in the design phase. For example, the product between the adjustment parameter and the initial display size of the target control may be determined as the adjusted size of the trigger area of the target control.
And determining the adjusted size of the trigger area of the target control according to the adjustment parameter and the first size. For example, the product between the adjustment parameter and the first size may be determined as the adjusted size of the trigger area of the target control.
Optionally, in the scene that the adjustment parameter is set to the magnification, the size of the trigger area of the target control can be adjusted by adjusting the target control, and the size of the trigger area of the target control can be directly adjusted, so that the flexibility of adjusting the trigger area is improved.
In another example, the resized acquisition process may also be as follows: and determining the adjusted size of the trigger area of the target control according to the moving distance of the first adjustment operation. The moving distance of the first adjustment operation may refer to a position from a current position corresponding to the trigger area to which the first adjustment operation moves. For example, referring to FIG. 6, a user can first select a trigger area 602 of a target control 601, and pull the trigger area 602 outward through a pull operation 604 to increase the size of the trigger area 602 (the adjusted trigger area 602 can be represented as a dashed circle area outside the trigger area 602). Optionally, the moving distance of the first adjustment operation and the adjusted size of the trigger area of the target control are in positive correlation, and the larger the moving distance of the first adjustment operation is, the larger the adjusted size is. For example, in the case where the trigger area is a circular area, the moving distance of the first adjustment operation is the increased size of the radius of the circular area.
Step 204, changing the trigger area of the target control from the original size to the adjusted size, and continuing to display the target control in the first size.
Optionally, the original size is a current display size of a trigger area of the target control. Since in step 203, the adjustment is performed only for the trigger area of the target control, the trigger area of the target control is only required to be changed from the original size to the adjusted size, and the size of the target control is not required to be adjusted, that is, the target control is only required to be continuously displayed in the first size.
In one example, in response to a user triggering operation for a user interface, a triggering position of the triggering operation is obtained, and if the triggering position falls within a triggering area of the target control, a function of the target control is triggered. Illustratively, the trigger area is a circular area. And responding to the triggering operation of the user aiming at the user interface, acquiring the triggering position of the triggering operation and the central position of the triggering area of each control, calculating to obtain the distance between the triggering position and each central position, and triggering the function of the target control if the distance between the triggering position and the central position of the triggering area of the target control in each control is smaller than the radius of the triggering area of the target control. For example, referring to fig. 7, the trigger area of the target control 701 is a circular area 702 with R as a radius, the center position O of the circular area 702 coincides with the center position of the target control 701, and if trigger positions a, b, and c are acquired, and the distance between the trigger position a and the center position O is greater than R, the function of the target control 701 cannot be triggered by the trigger operation corresponding to the trigger position a, and the trigger operation corresponding to the trigger position a cannot trigger the function of any control if the trigger position a does not fall within the trigger areas of other controls in the user interface. Since the distance between the trigger positions b and c and the center position O is smaller than R, the trigger operations corresponding to the trigger positions b and c respectively can trigger the function of the target control 701.
The distance formula between the trigger position and the center position can be as follows:
is set through the trigger position (x 1 ,y 1 ) And a center position (x) 2 ,y 2 ) The equation of line 1 of (1) is y=kx+m, then the distance between the trigger position and the center position is:or->If α is the inclination angle of the line 1, the distance between the trigger position and the center position may be: i x 1 -x 2 I sec alpha or->
Optionally, under the condition that the triggering position of the triggering operation is located in the triggering areas of the plurality of controls, acquiring priorities corresponding to the plurality of controls respectively; triggering the function of the control with the highest priority in the plurality of controls. The priority refers to the priority of function triggering of the control. The higher the priority of the control, the more preferentially the function of the control is triggered.
For example, taking a shooting game type application as an example, referring to fig. 8, a user has an overlapping setting on a control 801 and a control 803, that is, there is an overlapping area between a trigger area 802 of the control 801 and a trigger area 804 of the control 803. In response to a triggering operation of a user on an overlapping area, priorities corresponding to the control 801 and the control 802 are obtained, if the priority of the control 801 is higher than that of the control 802, the function of the control 801 is triggered, and if the priority of the control 802 is higher than that of the control 801, the function of the control 802 is triggered.
Alternatively, in the case that the user triggers multiple controls simultaneously through multi-finger operation, the function may be that only the control with the highest priority among the multiple controls is triggered.
In one exemplary embodiment, referring to FIG. 9, a flow chart of a control for determining a desired trigger based on priority is provided in one embodiment of the present application. Acquiring triggering operation of a user on a user interface and a triggering position corresponding to the triggering operation, detecting whether the triggering position falls in a triggering area, wherein the triggering area can be one or more triggering areas, and acquiring the function of a control corresponding to the triggering area if the triggering position is detected to fall in the triggering area. Otherwise, continuing to detect the triggering operation of the user. And then detecting whether the trigger position falls in a plurality of trigger areas, namely detecting whether the trigger position falls in an overlapping area of the plurality of trigger areas, if the trigger position is detected to fall in the overlapping area, acquiring priorities corresponding to the controls corresponding to the plurality of trigger areas respectively, and triggering the function of the control with the highest priority. Otherwise, triggering the function of the control corresponding to the triggering area where the triggering position is located. Optionally, if the user modifies the priority of the control, when a new trigger operation is acquired and the trigger operation falls in the overlapping area, the function of the control with the highest priority is triggered according to the modified priority. Otherwise, triggering the function of the control with the highest priority according to the existing priority.
Optionally, after the priorities corresponding to the plurality of controls are obtained, a direct insertion ordering algorithm may be adopted to order the plurality of controls according to the priorities, so as to obtain a control sequence; and determining the control with the highest priority from the control sequence. The controls may be ordered in the order from the higher priority to the lower priority, or may be ordered in the order from the lower priority to the higher priority.
Illustratively, the controls are ordered in a priority order from small to large. Assuming that priorities respectively corresponding to 5 controls are obtained, the 5 controls are respectively marked as a 1 、a 2 、a 3 、a 4 And a 5 . Assume that the priorities of the 5 controls are 5, 2, 3, 1, and 6 in order. a, a 1 No control is available before, and no comparison can be made. a, a 2 With a before 1 Then a is needed 2 And a 1 Comparing, since 2 is smaller than 5, the control sequence can be updated to a 2 、a 1 、a 3 、a 4 And a 5 (2, 5, 3, 1 and 6). a, a 3 With a before 2 And a 1 Then a is needed 2 Sequentially with a 1 And a 2 Comparing, and updating the control sequence to a as 3 is smaller than 5 2 、a 3 、a 1 、a 4 And a 5 (2, 3, 5, 1, and 6), since 3 is greater than 2, the control sequence may not be updated. a, a 4 With a before 2 、a 3 And a 1 Then a is needed 4 Sequentially with a 1 、a 3 And a 2 The comparison is carried out, because of a 4 Less than a 2 、a 3 And a 1 The control sequence may be updated to a 4 、a 2 、a 3 、a 1 And a 5 (1, 2, 3, 5 and 6). a, a 5 With a before 4 、a 2 、a 3 And a 1 Then a is needed 5 Sequentially with a 4 、a 1 、a 3 And a 2 The comparison is carried out, because of a 5 Less than a 4 、a 2 、a 3 And a 1 The control sequence can be not updated, and after all priorities are ordered by adopting a direct insertion ordering algorithm, a final control sequence can be obtained: a, a 4 、a 2 、a 3 、a 1 And a 5 Wherein a is 5 Is the control with the highest priority.
In one example, the priority setting process of the control may be as follows: responsive to an operation for a setting control in the user interface, displaying a setting interface; the second adjustment control for adjusting the priority of the target control is displayed in the setting interface; responding to the operation of the second adjustment control, and acquiring setting parameters; and determining the priority of the target control according to the setting parameters. Wherein the setting parameter may refer to a value of the priority.
Illustratively, referring to fig. 10, in response to a user selection operation for a control 1001 in the setup interface 1000, an adjustment interface 1002 corresponding to the control 1001 is displayed, in response to a user adjustment operation for a second adjustment control 1003 in the adjustment interface 1002, a priority value (e.g., 10 in fig. 10) is obtained, optionally, in response to a user adjusting the second adjustment control 1003 to the left, the priority value is decreased, in response to a user adjusting the second adjustment control 1003 to the right, the priority value is increased.
In summary, according to the technical scheme provided by the embodiment of the application, the size adjustment of the trigger area of the control can be realized by independently adjusting the trigger area of the control without changing the size of the control, and the size adjustment of the trigger area of the control can be realized only by adjusting the size of the control, so that the flexibility of the adjustment of the trigger area is improved. Meanwhile, the size of the trigger area can be directly adjusted without indirectly adjusting the size of the trigger area through a control, so that the convenience of adjusting the trigger area is improved.
In addition, under the condition that the triggering operation falls into the triggering areas of the plurality of controls, only the function of the control with the highest priority in the plurality of controls is triggered, so that the problem that the client does not know which control is triggered under the condition that the triggering areas are overlapped is solved, and the operation diversity is improved.
In addition, the trigger area of the control is adjusted to an adjustable state, so that the trigger area can be directly adjusted without additional adjustment control, and the adjustment efficiency of the trigger area is higher. Meanwhile, a user can intuitively adjust the trigger area on the basis of a user interface, so that the adjustment effect of the trigger area is improved, and further the user experience is improved.
Referring to fig. 11, a flowchart of an interface display method according to another embodiment of the present application is shown, where the main execution subject of each step of the method may be the terminal 10 in the implementation environment of the solution shown in fig. 1, and the method may include the following steps (steps 1101 to 1104):
step 1101, displaying a user interface having a plurality of controls displayed therein.
Optionally, the user interface refers to a display interface of an application program, which is the same as that described in the foregoing embodiment, and will not be described herein. The plurality of controls may include an operations control, a skills control, a settings control, and the like, which is not limited by embodiments of the present application. For example, in a shooting game type application, the plurality of controls may include a plurality of operational controls and a plurality of skill controls.
Step 1102, obtaining a second adjustment operation for a trigger area of a plurality of target controls in a user interface.
The target control may refer to any of the plurality of controls described above. The second adjustment operation is used for adjusting trigger areas corresponding to the target controls simultaneously.
In one example, the acquisition procedure of the second adjustment operation may be as follows: responsive to an operation for a setting control in the user interface, displaying a setting interface; the interface is provided with a plurality of control groups and third adjustment controls respectively corresponding to the plurality of control groups, wherein the third adjustment controls are used for adjusting the triggering areas of the controls in the control groups; and responding to the operation of a third adjustment control corresponding to the target control group, and acquiring a second adjustment operation.
Wherein the target control group is a control group including a plurality of target controls. The control grouping refers to grouping obtained by dividing controls according to own requirements. The third adjustment control may be in the form of a slider, button, icon, or the like. The second adjustment operation refers to an operation for simultaneously adjusting the sizes of the trigger areas of the plurality of target controls.
Illustratively, assuming that control 1, control 2, control 3, control 4, and control 5 are displayed in the user interface, there are multiple unset groupings of custom controls in the setup interface that a player can set before or during play. For example, the user may divide control 1 and control 2 into control group 1, control group 1 corresponds to third adjustment control 1, control 3, control 4, and control 5 into control group 2, and control group 2 corresponds to third adjustment control 2. And responding to the operation of the user on the third adjustment control 1, acquiring a second adjustment operation corresponding to the control group 1, namely acquiring a second adjustment operation for the trigger area of the control 1 and the trigger area of the control 2.
In another example, the acquisition procedure of the second adjustment operation may also be as follows: responsive to an operation for a setting control in the user interface, displaying a setting interface; wherein, a plurality of controls in unselected states are displayed in the setting interface; responsive to a selection operation for a plurality of target controls in the plurality of unselected controls, switching the plurality of target controls from the unselected state to the selected state; and responding to the operation for the fourth adjustment control, and acquiring a second adjustment operation.
The fourth adjustment control is used for adjusting the trigger area of the control in the selected state. The embodiment of the application does not limit the number of the trigger areas which can be acted by the fourth adjustment control. For example, in response to a selection operation of the user on all the controls in the unselected state, all the controls are switched from the unselected state to the selected state, and then by operating the fourth adjustment operation, a second adjustment operation on the trigger area with the controls can be acquired.
For example, assuming that control 1, control 2, control 3, control 4 and control 5 are displayed in the user interface, the user selects control 1, control 2 and control 3 one by one in the setting interface, and then, in response to the operation of the user on the fourth adjustment control, a second adjustment operation on the trigger area of control 1, the trigger area of control 2 and the trigger area of control 3 is acquired.
Step 1103, determining the adjusted sizes of the trigger areas of the plurality of target controls according to the second adjustment operation.
Optionally, according to the second adjustment operation, an adjustment parameter may be acquired, and based on the adjustment parameter, the adjusted sizes of the trigger areas of the plurality of target controls respectively corresponding to the trigger areas are determined. The adjustment parameter may refer to a magnification factor, and the adjustment parameter may refer to an adjusted size. In an exemplary embodiment, when the adjustment parameter is a magnification factor, the sizes of the trigger areas of the plurality of target controls are respectively multiplied, so as to obtain adjusted sizes of the trigger areas of the plurality of target controls respectively. The enlarged basic size may be an initial set size corresponding to the trigger areas of the plurality of target controls, an initial display size corresponding to the plurality of target controls, or a current display size corresponding to the plurality of target controls (i.e., the first size).
Step 1104, for a first target control of the plurality of target controls, changing a trigger area of the first target control from an original size to an adjusted size, and continuing to display the first target control at the first size.
Alternatively, the first target control may refer to any one of a plurality of target controls. And changing the triggering areas of other target controls in the plurality of target controls from the original size to the adjusted sizes respectively corresponding to the other target controls by adopting the same method as the first target control, and continuously displaying the other target controls with the first sizes respectively corresponding to the other target controls.
In summary, according to the technical scheme provided by the embodiment of the application, the size adjustment of the trigger area of the control can be realized by independently adjusting the trigger area of the control without changing the size of the control, and the size adjustment of the trigger area of the control can be realized only by adjusting the size of the control, so that the flexibility of the adjustment of the trigger area is improved. Meanwhile, the size of the trigger area can be directly adjusted without indirectly adjusting the size of the trigger area through a control, so that the convenience of adjusting the trigger area is improved.
In addition, the trigger areas of the plurality of controls can be adjusted at the same time, so that the adjustment efficiency of the trigger areas is improved.
The following are examples of the apparatus of the present application that may be used to perform the method embodiments of the present application. For details not disclosed in the embodiments of the apparatus of the present application, please refer to the embodiments of the method of the present application.
Referring to fig. 12, a block diagram of an interface display device according to an embodiment of the application is shown. The device has the function of realizing the method example, and the function can be realized by hardware or can be realized by executing corresponding software by hardware. The device may be the terminal described above or may be provided in the terminal. As shown in fig. 12, the apparatus 1200 includes: an interface display module 1201, an operation acquisition module 1202, and a resizing module 1203.
The interface display module 1201 is configured to display a user interface, where at least one control is displayed.
An operation obtaining module 1202, configured to obtain a first adjustment operation for a trigger area of a target control in the at least one control; the triggering area of the target control is used for triggering the function of the target control, and the display size of the target control is a first size.
The size adjustment module 1203 is configured to determine, according to the first adjustment operation, an adjusted size of the trigger area of the target control.
The interface display module 1201 is further configured to change the trigger area of the target control from the original size to the adjusted size, and continue to display the target control in the first size.
In an exemplary embodiment, the operation obtaining module 1202 is configured to:
responsive to an operation for a setting control in the user interface, displaying a setting interface; a first adjustment control for adjusting the trigger area of the target control is displayed in the setting interface;
and responding to the operation of the first adjustment control, and acquiring the first adjustment operation.
In an exemplary embodiment, the resizing module 1203 is configured to:
according to the first adjustment operation, determining adjustment parameters corresponding to the trigger area of the target control;
and determining the adjusted size of the trigger area of the target control according to the adjustment parameters.
In an exemplary embodiment, the resizing module 1203 is further configured to:
determining the adjusted size of the trigger area of the target control according to the adjustment parameters and the initial set size of the trigger area of the target control;
Or determining the adjusted size of the trigger area of the target control according to the adjustment parameters and the initial display size of the target control;
or determining the adjusted size of the trigger area of the target control according to the adjustment parameter and the first size.
In an exemplary embodiment, the operation obtaining module 1202 is configured to:
responding to the operation of the setting control in the user interface, and switching the triggering area of the target control into an adjustable state and a visible state;
responding to the operation of the triggering area of the target control, and acquiring the first adjustment operation;
the determining, according to the first adjustment operation, an adjusted size of the trigger area of the target control includes:
and determining the adjusted size of the trigger area of the target control according to the moving distance of the first adjustment operation.
In an exemplary embodiment, as shown in fig. 13, the apparatus 1200 further includes: a trigger location acquisition module 1204, a priority acquisition module 1205, and a control function trigger module 1206.
And the trigger position acquisition module 1204 is used for responding to the trigger operation aiming at the user interface and acquiring the trigger position of the trigger operation.
The priority obtaining module 1205 is configured to obtain priorities corresponding to the plurality of controls, where the trigger position of the trigger operation is located in the trigger areas of the plurality of controls.
And the control function triggering module 1206 is used for triggering the function of the control with the highest priority in the plurality of controls.
In an exemplary embodiment, the control function triggering module 1206 is further configured to:
a direct insertion ordering algorithm is adopted, and a plurality of controls are ordered according to the priority, so that a control sequence is obtained;
and determining the control with the highest priority from the control sequence.
In an exemplary embodiment, as shown in fig. 13, the apparatus 1200 further includes: a setting interface display module 1207, a setting parameter acquisition module 1208, and a priority determination module 1209.
A setting interface display module 1207 for displaying a setting interface in response to an operation for a setting control in the user interface; and a second adjustment control for adjusting the priority of the target control is displayed in the setting interface.
A setting parameter obtaining module 1208, configured to obtain a setting parameter in response to an operation for the second adjustment control.
And a priority determining module 1209, configured to determine the priority of the target control according to the setting parameter.
In an exemplary embodiment, the operation obtaining module 1202 is further configured to obtain a second adjustment operation for a trigger area of a plurality of target controls in the user interface.
The size adjustment module 1203 is further configured to determine adjusted sizes of the trigger areas of the plurality of target controls according to the second adjustment operation.
In an exemplary embodiment, the operation acquisition module 1202 is further configured to:
responsive to an operation for a setting control in the user interface, displaying a setting interface; a plurality of control groups and third adjustment controls respectively corresponding to the plurality of control groups are displayed in the setting interface, and the third adjustment controls are used for adjusting the triggering areas of the controls in the control groups;
responding to the operation of the third adjustment control corresponding to the target control group, and acquiring the second adjustment operation; wherein the target control group is a control group including the plurality of target controls.
In an exemplary embodiment, the operation acquisition module 1202 is further configured to:
Responsive to an operation for a setting control in the user interface, displaying a setting interface; wherein, a plurality of controls in an unselected state are displayed in the setting interface;
responsive to a selection operation for the plurality of target controls in the plurality of unselected controls, switching the plurality of target controls from the unselected state to a selected state;
acquiring the second adjustment operation in response to the operation for the fourth adjustment control; the fourth adjustment control is used for adjusting a trigger area of the control in the selected state.
In summary, according to the technical scheme provided by the embodiment of the application, the size adjustment of the trigger area of the control can be realized by independently adjusting the trigger area of the control without changing the size of the control, and the size adjustment of the trigger area of the control can be realized only by adjusting the size of the control, so that the flexibility of the adjustment of the trigger area is improved. Meanwhile, the size of the trigger area can be directly adjusted without indirectly adjusting the size of the trigger area through a control, so that the convenience of adjusting the trigger area is improved.
It should be noted that, in the apparatus provided in the foregoing embodiment, when implementing the functions thereof, only the division of the foregoing functional modules is used as an example, in practical application, the foregoing functional allocation may be implemented by different functional modules, that is, the internal structure of the device is divided into different functional modules, so as to implement all or part of the functions described above. In addition, the apparatus and the method embodiments provided in the foregoing embodiments belong to the same concept, and specific implementation processes of the apparatus and the method embodiments are detailed in the method embodiments and are not repeated herein.
Referring to fig. 14, a block diagram of a terminal 1400 according to an embodiment of the present application is shown. The terminal is used for implementing the interface display method provided in the above embodiment. The terminal may be the terminal 10 in the implementation environment shown in fig. 1. Specifically, the present application relates to a method for manufacturing a semiconductor device.
In general, terminal 1400 includes: a processor 1401 and a memory 1402.
Processor 1401 may include one or more processing cores, such as a 4-core processor, an 8-core processor, and the like. The processor 1401 may be implemented in at least one hardware form of DSP (Digital Signal Processing ), FPGA (Field Programmable Gate Array, field programmable gate array), PLA (Programmable Logic Array ). The processor 1401 may also include a main processor, which is a processor for processing data in an awake state, also called a CPU (Central Processing Unit ), and a coprocessor; a coprocessor is a low-power processor for processing data in a standby state. In some embodiments, the processor 1401 may be integrated with a GPU (Graphics Processing Unit, image processor) for rendering and rendering of content required to be displayed by the display screen. In some embodiments, the processor 1401 may also include an AI (Artificial Intelligence ) processor for processing computing operations related to machine learning.
Memory 1402 may include one or more computer-readable storage media, which may be non-transitory. Memory 1402 may also include high-speed random access memory, as well as non-volatile memory, such as one or more magnetic disk storage devices, flash memory storage devices. In some embodiments, a non-transitory computer readable storage medium in memory 1402 is used to store at least one instruction, at least one program, set of codes, or set of instructions configured to be executed by one or more processors to implement the above-described interface display method.
In some embodiments, terminal 1400 may optionally further include: a peripheral interface 1403 and at least one peripheral. The processor 1401, memory 1402, and peripheral interface 1403 may be connected by a bus or signal lines. The individual peripheral devices may be connected to the peripheral device interface 1403 via buses, signal lines or a circuit board. Specifically, the peripheral device includes: at least one of radio frequency circuitry 1404, a display screen 1405, a camera assembly 1406, an audio circuit 1407, a positioning assembly 1408, and a power source 1409.
Those skilled in the art will appreciate that the structure shown in fig. 14 is not limiting and that terminal 1400 may include more or less components than those illustrated, or may combine certain components, or employ a different arrangement of components.
In one exemplary embodiment, a computer readable storage medium having stored therein at least one instruction, at least one program, a set of codes, or a set of instructions that when executed by a processor, implement an upper interface display method is also provided.
Alternatively, the computer-readable storage medium may include: ROM (Read-Only Memory), RAM (Random-Access Memory), SSD (Solid State Drives, solid State disk), optical disk, or the like. The random access memory may include ReRAM (Resistance Random Access Memory, resistive random access memory) and DRAM (Dynamic Random Access Memory ), among others.
In one exemplary embodiment, a computer program product or computer program is also provided, the computer program product or computer program comprising computer instructions stored in a computer readable storage medium. The processor of the terminal reads the computer instructions from the computer-readable storage medium, and the processor executes the computer instructions, so that the terminal executes the interface display method.
It should be understood that references herein to "a plurality" are to two or more. "and/or", describes an association relationship of an association object, and indicates that there may be three relationships, for example, a and/or B, and may indicate: a exists alone, A and B exist together, and B exists alone. The character "/" generally indicates that the context-dependent object is an "or" relationship. In addition, the step numbers described herein are merely exemplary of one possible execution sequence among steps, and in some other embodiments, the steps may be executed out of the order of numbers, such as two differently numbered steps being executed simultaneously, or two differently numbered steps being executed in an order opposite to that shown, which is not limiting.
The foregoing description of the exemplary embodiments of the application is not intended to limit the application to the particular embodiments disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the application.

Claims (9)

1. An interface display method, characterized in that the method comprises:
displaying a user interface, wherein at least one control is displayed in the user interface;
Under the condition of acquiring a first adjustment operation aiming at a trigger area of a target control in the at least one control, determining an adjusted size of the trigger area of the target control according to a moving distance of the first adjustment operation; the method comprises the steps that a triggering area of a target control is used for triggering a function of the target control, the display size of the target control is a first size, the moving distance of a first adjustment operation is in positive correlation with the adjusted size, and the first adjustment operation refers to the operation of the triggering area of the target control;
under the condition of acquiring second adjustment operations for the triggering areas of a plurality of target controls in the user interface, acquiring adjustment parameters according to the second adjustment operations, and determining adjusted sizes respectively corresponding to the triggering areas of the plurality of target controls based on the adjustment parameters and current display sizes respectively corresponding to the plurality of target controls;
changing the trigger area of the target control from an original size to the adjusted size, and continuing to display the target control at the first size;
responding to a triggering operation aiming at the user interface, and acquiring a triggering position of the triggering operation;
Acquiring priorities corresponding to the plurality of controls respectively under the condition that the triggering positions of the triggering operation are located in the triggering areas of the plurality of controls;
a direct insertion ordering algorithm is adopted, and a plurality of controls are ordered according to the priority, so that a control sequence is obtained;
determining the control with the highest priority from the control sequence;
and triggering the function of the control with the highest priority.
2. The method according to claim 1, wherein the method further comprises:
responsive to an operation for a setting control in the user interface, displaying a setting interface; a first adjustment control for adjusting the trigger area of the target control is displayed in the setting interface;
and responding to the operation of the first adjustment control, and acquiring the first adjustment operation.
3. The method according to claim 1, wherein the method further comprises:
responding to the operation of the setting control in the user interface, and switching the triggering area of the target control into an adjustable state and a visible state;
and responding to the operation of the trigger area of the target control, and acquiring the first adjustment operation.
4. The method according to claim 1, wherein the method further comprises:
responsive to an operation for a setting control in the user interface, displaying a setting interface; a second adjustment control for adjusting the priority of the target control is displayed in the setting interface;
acquiring setting parameters in response to the operation of the second adjustment control;
and determining the priority of the target control according to the setting parameters.
5. The method according to claim 1, wherein the method further comprises:
responsive to an operation for a setting control in the user interface, displaying a setting interface; a plurality of control groups and third adjustment controls respectively corresponding to the plurality of control groups are displayed in the setting interface, and the third adjustment controls are used for adjusting the triggering areas of the controls in the control groups;
responding to the operation of the third adjustment control corresponding to the target control group, and acquiring the second adjustment operation; wherein the target control group is a control group including the plurality of target controls.
6. The method according to claim 1, wherein the method further comprises:
Responsive to an operation for a setting control in the user interface, displaying a setting interface; wherein, a plurality of controls in an unselected state are displayed in the setting interface;
responsive to a selection operation for the plurality of target controls in the plurality of unselected controls, switching the plurality of target controls from the unselected state to a selected state;
acquiring the second adjustment operation in response to the operation for the fourth adjustment control; the fourth adjustment control is used for adjusting a trigger area of the control in the selected state.
7. An interface display device, the device comprising:
the interface display module is used for displaying a user interface, and at least one control is displayed in the user interface;
the size adjustment module is used for determining the adjusted size of the trigger area of the target control according to the moving distance of the first adjustment operation under the condition that the first adjustment operation of the trigger area of the target control in the at least one control is acquired; the method comprises the steps that a triggering area of a target control is used for triggering a function of the target control, the display size of the target control is a first size, the moving distance of a first adjustment operation is in positive correlation with the adjusted size, and the first adjustment operation refers to the operation of the triggering area of the target control;
The size adjustment module is further configured to, when acquiring a second adjustment operation for the trigger areas of the plurality of target controls in the user interface, acquire an adjustment parameter according to the second adjustment operation, and determine adjusted sizes corresponding to the trigger areas of the plurality of target controls respectively based on the adjustment parameter and current display sizes corresponding to the plurality of target controls respectively;
the interface display module is further configured to change a trigger area of the target control from an original size to the adjusted size, and continue to display the target control in the first size;
the trigger position acquisition module is used for responding to the trigger operation aiming at the user interface and acquiring the trigger position of the trigger operation;
the priority acquisition module is used for acquiring priorities corresponding to the plurality of controls respectively under the condition that the triggering positions of the triggering operation are located in the triggering areas of the plurality of controls;
the control function triggering module is used for sequencing a plurality of controls according to the priority by adopting a direct insertion sequencing algorithm to obtain a control sequence; determining the control with the highest priority from the control sequence; and triggering the function of the control with the highest priority.
8. A terminal comprising a processor and a memory, wherein the memory stores at least one program, and wherein the at least one program is loaded and executed by the processor to implement the interface display method according to any one of claims 1 to 6.
9. A computer readable storage medium, characterized in that at least one program is stored in the computer readable storage medium, the at least one program being loaded and executed by a processor to implement the interface display method according to any one of the preceding claims 1 to 6.
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