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CN112995401A - Control display method, device, equipment and medium - Google Patents

Control display method, device, equipment and medium
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Publication number
CN112995401A
CN112995401ACN202110212925.2ACN202110212925ACN112995401ACN 112995401 ACN112995401 ACN 112995401ACN 202110212925 ACN202110212925 ACN 202110212925ACN 112995401 ACN112995401 ACN 112995401A
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China
Prior art keywords
target
control
operation area
handed
display
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CN202110212925.2A
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Chinese (zh)
Inventor
田野
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Beijing ByteDance Network Technology Co Ltd
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Beijing ByteDance Network Technology Co Ltd
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Priority to CN202110212925.2ApriorityCriticalpatent/CN112995401A/en
Publication of CN112995401ApublicationCriticalpatent/CN112995401A/en
Priority to PCT/CN2022/076308prioritypatent/WO2022179409A1/en
Pendinglegal-statusCriticalCurrent

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Abstract

The disclosure relates to a control display method, device, equipment and medium. The control display method comprises the following steps: displaying a first control in a first operation area of the target interface; when a target trigger operation for triggering a target single-hand mode is detected, displaying a preset control in a target single-hand operation area of a target interface, wherein the preset control is used for controlling a first control to be displayed or hidden in the target single-hand operation area, the target single-hand operation area is a single-hand operation area corresponding to the target single-hand mode, and the target single-hand operation area is different from the first operation area. According to the embodiment of the disclosure, the operation convenience of a user can be improved.

Description

Control display method, device, equipment and medium
Technical Field
The present disclosure relates to the field of electronic devices, and in particular, to a method, an apparatus, a device, and a medium for displaying a control.
Background
At present, electronic equipment has become an indispensable tool in people's life and brings great convenience to various aspects of people's daily life. To bring a better visual experience, the screen of an electronic device (e.g., a smartphone) is also getting larger and larger.
However, the large screen brings a wider viewing angle to us, and at the same time, reduces the convenience of user operation. For example, in the case of a user using an electronic device with one hand, it is difficult to touch all controls within the touch display screen.
Disclosure of Invention
In order to solve the technical problem or at least partially solve the technical problem, the present disclosure provides a control display method, apparatus, device and medium.
In a first aspect, the present disclosure provides a control display method, including:
displaying a first control in a first operation area of the target interface;
when a target trigger operation for triggering a target single-hand mode is detected, displaying a preset control in a target single-hand operation area of a target interface, wherein the preset control is used for controlling a first control to be displayed or hidden in the target single-hand operation area, the target single-hand operation area is a single-hand operation area corresponding to the target single-hand mode, and the target single-hand operation area is different from the first operation area.
In a second aspect, the present disclosure provides a control display apparatus, including:
the first display unit is configured to display a first control in a first operation area of the target interface;
the second display unit is configured to display a preset control in a target one-hand operation area of the target interface when a target trigger operation for triggering the target one-hand mode is detected, the preset control is used for controlling the first control to be displayed or hidden in the target one-hand operation area, the target one-hand operation area is a one-hand operation area corresponding to the target one-hand mode, and the target one-hand operation area is different from the first operation area.
In a third aspect, the present disclosure provides an electronic device, comprising:
a processor;
a memory for storing executable instructions;
the processor is configured to read the executable instructions from the memory and execute the executable instructions to implement the control display method according to the first aspect.
In a fourth aspect, the present disclosure provides a computer-readable storage medium storing a computer program, which, when executed by an electronic device, causes the electronic device to implement the control display method of the first aspect.
Compared with the prior art, the technical scheme provided by the embodiment of the disclosure has the following advantages:
the control display method, device, equipment and medium of the embodiments of the disclosure can display a preset control for controlling a first control to be displayed or hidden in a target one-handed operation area corresponding to a target one-handed mode in a target interface when a target trigger operation for triggering the target one-handed mode is detected, because the first control is displayed in the first operation area of the target interface, the first control in the first operation area can be stored in the preset control in the target one-handed operation area, so that a user can conveniently browse the target interface and simultaneously display the first control in the target one-handed operation area through the preset control when using an electronic device with one hand, and further can easily touch all the first controls without changing the display size of the target interface, the operation convenience of the user is improved, and the visual experience of the target interface is guaranteed, so that the experience of the user is improved.
Drawings
The above and other features, advantages and aspects of various embodiments of the present disclosure will become more apparent by referring to the following detailed description when taken in conjunction with the accompanying drawings. Throughout the drawings, the same or similar reference numbers refer to the same or similar elements. It should be understood that the drawings are schematic and that elements and features are not necessarily drawn to scale.
Fig. 1 is a scene diagram of an electronic device operated by one hand according to an embodiment of the present disclosure;
fig. 2 is a schematic flowchart of a control display method according to an embodiment of the present disclosure;
FIG. 3 is a schematic diagram of a target interface provided by an embodiment of the present disclosure;
FIG. 4 is a schematic illustration of the embodiment of FIG. 3 in a left-hand mode;
fig. 5 is a schematic diagram of a dragging operation provided by the embodiment of the present disclosure;
FIG. 6 is a diagram illustrating a dragging result of the dragging operation shown in FIG. 5;
FIG. 7 is a schematic illustration of another target interface provided by embodiments of the present disclosure;
FIG. 8 is a schematic illustration of the embodiment of FIG. 7 in a left-hand mode;
fig. 9 is a schematic diagram of another dragging operation provided by the embodiments of the present disclosure;
FIG. 10 is a diagram illustrating a dragging result of the dragging operation shown in FIG. 9;
FIG. 11 is a schematic diagram illustrating yet another exemplary drag operation provided by an embodiment of the present disclosure;
FIG. 12 is a diagram illustrating a dragging result of the dragging operation shown in FIG. 11;
FIG. 13 is a schematic diagram of yet another exemplary dragging operation provided by the embodiments of the present disclosure;
FIG. 14 is a diagram illustrating a dragging result of the dragging operation shown in FIG. 13;
FIG. 15 is a schematic illustration of yet another target interface provided by an embodiment of the present disclosure;
FIG. 16 is a schematic illustration of the embodiment of FIG. 15 in a left-hand mode;
fig. 17 is a schematic diagram of a live broadcast room interface provided in an embodiment of the present disclosure;
FIG. 18 is a schematic illustration of the embodiment of FIG. 17 in a left-hand mode;
FIG. 19 is a schematic illustration of the embodiment of FIG. 17 in a right-hand mode;
fig. 20 is a schematic structural diagram of a control display device according to an embodiment of the present disclosure;
fig. 21 is a schematic structural diagram of an electronic device according to an embodiment of the present disclosure.
Detailed Description
Embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While certain embodiments of the present disclosure are shown in the drawings, it is to be understood that the present disclosure may be embodied in various forms and should not be construed as limited to the embodiments set forth herein, but rather are provided for a more thorough and complete understanding of the present disclosure. It should be understood that the drawings and embodiments of the disclosure are for illustration purposes only and are not intended to limit the scope of the disclosure.
It should be understood that the various steps recited in the method embodiments of the present disclosure may be performed in a different order, and/or performed in parallel. Moreover, method embodiments may include additional steps and/or omit performing the illustrated steps. The scope of the present disclosure is not limited in this respect.
The term "include" and variations thereof as used herein are open-ended, i.e., "including but not limited to". The term "based on" is "based, at least in part, on". The term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments". Relevant definitions for other terms will be given in the following description.
It should be noted that the terms "first", "second", and the like in the present disclosure are only used for distinguishing different devices, modules or units, and are not used for limiting the order or interdependence relationship of the functions performed by the devices, modules or units.
It is noted that references to "a", "an", and "the" modifications in this disclosure are intended to be illustrative rather than limiting, and that those skilled in the art will recognize that "one or more" may be used unless the context clearly dictates otherwise.
The names of messages or information exchanged between devices in the embodiments of the present disclosure are for illustrative purposes only, and are not intended to limit the scope of the messages or information.
The control display method provided by the present disclosure may be applied to the scene shown in fig. 1, and is specifically described in detail with reference to fig. 1. Fig. 1 shows a scene diagram of a one-handed operation electronic device according to an embodiment of the present disclosure.
As shown in fig. 1, the scene diagram may show a scene in which the user holds theelectronic apparatus 101 with one hand. Theelectronic device 101 may be a device with a communication function, such as a mobile phone, a tablet computer, a notebook computer, a vehicle-mounted terminal, a wearable device, and an intelligent home device.
In the scenario shown in fig. 1, in order to avoid that the user cannot touch all the controls displayed in the touch display screen of the electronic device 101, in the process that the electronic device 101 may display the first control in the first operation region of the target interface, when a target trigger operation for triggering the target one-handed mode is detected, a preset control for controlling the first control to be displayed or hidden in the target one-handed operation region of the target interface is displayed in the target one-handed operation region corresponding to the target one-handed mode, where the target one-handed operation region may be different from the first operation region, and thus, the first control in the first operation region may be accommodated in the preset control located in the target one-handed operation region, so that the user may browse the target interface while controlling the first control to be displayed in the target one-handed operation region through the preset control under the condition that the user uses the electronic device 101 with one hand, and then under the condition of not changing the display size of the target interface, a user can easily touch all the first controls, so that the operation convenience of the user is improved, the visual experience of the target interface is also ensured, and the experience of the user is improved.
Taking the target interface as a live broadcast interface as an example, the electronic device may display a live broadcast interface, a live broadcast picture may be displayed in the live broadcast interface, and a first control may be displayed in a superimposed manner on the live broadcast picture in a first operation area of the live broadcast interface. When theelectronic device 101 detects a target trigger operation for triggering a target one-handed mode, a preset control for controlling the first control to be displayed or hidden in the target one-handed operation area may be displayed in a superimposed manner on a live view in a target one-handed operation area of a live view interface corresponding to the target one-handed mode, where the target one-handed operation area may be different from the first operation area. Therefore, under the one-hand operation mode, the display size of the interface of the live broadcast room does not need to be changed, and the live broadcast picture is the main content in the interface of the live broadcast room, so that the visual experience of the live broadcast picture in the interface of the live broadcast room can be ensured, and the live broadcast watching experience of a user is further ensured. Meanwhile, in the single-hand operation mode, the first control in the first operation area can be stored into the preset control in the target single-hand operation area, and after the first control is controlled by the preset control to be displayed in a superposition mode on a live broadcast picture in the target single-hand operation area, a user can easily touch all the first controls, so that the operation convenience of the user is improved.
According to the above scenario, a control display method provided by the embodiment of the present disclosure is described below with reference to fig. 2 to 19. In the embodiment of the disclosure, the control display method can be executed by an electronic device. In some embodiments, the electronic device may be theelectronic device 101 shown in fig. 1 held by a single hand of a user. The electronic equipment can be equipment with a communication function, such as a mobile phone, a tablet computer, a notebook computer, a vehicle-mounted terminal, wearable equipment, intelligent household equipment and the like.
Fig. 2 shows a flowchart of a control display method provided by the embodiment of the present disclosure.
As shown in fig. 2, the control display method may include the following steps.
And S210, displaying a first control in a first operation area of the target interface.
In the disclosed embodiment, the target interface may be a page in the target application for displaying the target content.
The target application may be any application, and is not limited herein.
Alternatively, the target content may be any content, and is not limited herein. For example, the target content may include at least one of text, images, audio pictures, video pictures, and the like.
In the disclosed embodiment, at least one first control may be displayed within the first operating region of the target interface. For example, the number of first controls may be 1, 2, 5, 10, or more.
The first control may be a control having any interactive function, and is not limited herein.
Optionally, the first control may be displayed in an overlying manner on the target content, that is, a floating layer may be disposed on the target content in the target interface, and the first control may be displayed in the floating layer.
Optionally, a distance between a top boundary of the first operational zone and a bottom boundary of the target interface may be less than or equal to a first predetermined threshold.
The first predetermined threshold may be any height value smaller than the height of the target interface, which is not limited herein. For example, the first predetermined threshold may be 1/2, 1/3, or 1/4 for the target interface height.
Optionally, the bottom boundary of the first operational area may coincide with the bottom boundary of the target interface. The bottom boundary of the first operating region may also be non-coincident with the bottom boundary of the target interface, i.e., the bottom boundary of the first operating region may also be higher than the bottom boundary of the target interface. The present disclosure is not so limited.
Alternatively, the width of the first operation region may be less than or equal to the width of the target interface, which is not limited herein.
The following describes a specific example of a target interface displayed when the electronic device is in a non-one-handed operation mode.
Fig. 3 is a schematic diagram illustrating a target interface provided by an embodiment of the present disclosure.
As shown in fig. 3, thetarget interface 301 may be displayed when the electronic device is in the non-one-handed operation mode, thetarget interface 301 has afirst operation area 302, a bottom boundary of thefirst operation area 302 may coincide with a bottom boundary of thetarget interface 301, and a distance between a top boundary of thefirst operation area 302 and the bottom boundary of thetarget interface 301 is 1/4 of the height of thetarget interface 301, i.e. thefirst operation area 302 may be the bottom operation area of thetarget interface 301. Twofirst controls 303 may be displayed in thefirst operation area 302 of thetarget interface 301, and the twofirst controls 303 may be control 1 and control 2, respectively.
Returning to fig. 2, in S220, when a target trigger operation for triggering the target one-handed mode is detected, displaying a preset control in a target one-handed operation region of the target interface, where the preset control is used to control the first control to be displayed or hidden in the target one-handed operation region, the target one-handed operation region is a one-handed operation region corresponding to the target one-handed mode, and the target one-handed operation region is different from the first operation region.
In the embodiment of the disclosure, when a user wants to enter a target one-handed mode of a target interface, a target trigger operation for triggering the target one-handed mode may be input to an electronic device to trigger the electronic device to enter the target one-handed mode corresponding to the target trigger operation of the target interface, and a preset control for controlling the first control to be displayed or hidden in the target one-handed operation area corresponding to the target one-handed mode of the target interface is displayed in the target one-handed operation area.
In the disclosed embodiment, the target one-handed mode may include any one of a left-handed mode and a right-handed mode.
In the embodiment of the present disclosure, the target triggering operation may include any one of a key operation of a target entity key of the electronic device by a user, a key operation of a target virtual key in a target interface by a user, a target gesture operation of a target interface by a user, and a voice control operation of the electronic device by a user.
In the case that the target triggering operation includes a key operation of a target entity key of the electronic device by a user, the target entity key may be a single entity key configured in advance for triggering the target one-handed mode, or may be a combination of entity keys configured in advance for triggering the target one-handed mode.
In this case, the target triggering operation may be a single click, a double click, a long press, or the like of a target physical key of the electronic device by the user.
In the case that the target trigger operation includes a key operation of a target virtual key in the target interface by the user, the target virtual key may be a single virtual key configured in advance for triggering the target one-handed mode, or may be a combination of virtual keys configured in advance for triggering the target one-handed mode.
In this case, the target triggering operation may be a single click, a double click, a long press, or the like of a target virtual key of the electronic device by the user.
In the case that the target trigger operation includes a target gesture operation of the target interface by the user, the target gesture operation may be a gesture operation configured in advance to trigger the target one-handed mode.
In this case, the target triggering operation may include a click, a double click, a long press, and the like of the user on the non-control area of the target interface, and may also include a slap operation of the user on the target interface, which is not limited herein.
In the case where the target triggering operation includes a voice control operation of the electronic device by the user, the target triggering operation may include a voice control instruction issued by the user to the electronic device to trigger the target one-handed mode in the case where the electronic device or the voice assistant of the target application is in the on state.
In the embodiment of the disclosure, the electronic device may preset corresponding relationships between different trigger operations and different single-handed modes, each single-handed mode corresponds to one single-handed operation region, and after the electronic device receives a target trigger operation, a target single-handed mode corresponding to the target trigger operation may be determined based on the corresponding relationships, so as to determine a target single-handed operation region corresponding to the target single-handed mode.
When the target trigger operation includes a key operation of a target entity key of the electronic device by a user, the electronic device may preset a corresponding relationship between different entity keys and different one-handed modes, each one-handed mode corresponds to one-handed operation region, and after the electronic device receives the key operation of the target entity key of the electronic device by the user, the electronic device may determine, based on the corresponding relationship, the target one-handed mode corresponding to the target entity key operated by the user, and further determine the target one-handed operation region corresponding to the target one-handed mode.
When the target trigger operation includes a key operation of a target virtual key in the target interface by a user, the electronic device may preset a corresponding relationship between different virtual keys and different one-handed modes, and after the electronic device receives the key operation of the target virtual key in the target interface by the user, the electronic device may determine, based on the corresponding relationship, a target one-handed mode corresponding to the target virtual key operated by the user, and further determine a target one-handed operation area corresponding to the target one-handed mode.
When the target trigger operation includes a target gesture operation of the user on the target interface, the electronic device may preset different corresponding relationships between the gesture operation and different one-handed modes, and after the electronic device receives the target gesture operation of the user on the target interface, the electronic device may determine, based on the corresponding relationships, a target one-handed mode corresponding to the target gesture operation, and then determine a target one-handed operation region corresponding to the target one-handed mode.
Under the condition that the target triggering operation comprises voice control operation of the electronic equipment by the user, after the electronic equipment receives a voice control instruction sent to the electronic equipment by the user, the electronic equipment can determine a target single-hand mode indicated by the voice control instruction, and further determine a target single-hand operation area corresponding to the target single-hand mode.
Optionally, the target one-handed operation region is different from the first operation region in any one of the following cases:
the target one-hand operation area is completely not overlapped with the first operation area;
the target one-handed operation region is not partially overlapped with the first operation region.
Therefore, the electronic equipment can store the first control in the first operation area which is at least partially not overlapped with the target single-hand operation area in the preset control, and the convenience of single-hand operation is improved.
In the disclosed embodiment, the one-handed operation region may include a left-handed operation region and a right-handed operation region, i.e., the target one-handed operation region may be any one of the left-handed operation region and the right-handed operation region.
The left-hand mode corresponds to the left-hand operation area, and the right-hand mode corresponds to the right-hand operation area.
Taking target triggering operation including slapping operation of a user on a target interface as an example, if the user slaps the target interface with a left hand, the electronic device can enter a left-hand mode, and then a left-hand operation area corresponding to the left-hand mode is determined; if the user slaps the target interface with the right hand, the electronic device may enter the right-hand mode, and further determine a right-hand operation area corresponding to the right-hand mode.
Alternatively, the left hand operation region may be located at a lower left portion of the target interface and the right hand operation region may be located at a lower right portion of the target interface.
Alternatively, the height of the one-handed operation region may be less than or equal to 2/3 of the target interface and the width of the one-handed operation region may be less than or equal to 1/2 of the target interface.
In the embodiment of the disclosure, the preset control may be displayed in a target content of the target interface in an overlapping manner in a target one-handed operation area of the target interface.
Alternatively, the preset control may be any form of control, and is not limited herein.
The preset control can be used for controlling the first control to be displayed or hidden in the target one-handed operation area, for example, a user can trigger the preset control to display or hide the control controlled by the preset control in the target one-handed operation area.
Further, it may be located at any position within the target one-handed operation region. For example, the preset control may be located within a target vertex region of the target one-handed operation region, which may be a region near a bottom vertex of the target interface.
When the target one-hand operation region is a left-hand operation region, the target vertex region may be close to a lower left vertex of the target interface, that is, the target vertex region may be a lower left vertex region of the target one-hand operation region; in the case that the target one-handed operation region is a right-handed operation region, the target vertex region may be close to a lower right vertex of the target interface, that is, the target vertex region may be a lower right vertex region of the target one-handed operation region.
In this embodiment of the present disclosure, optionally after S220, the control display method may further include:
receiving control triggering operation of a user on a preset control;
responding to control triggering operation, and displaying a first control in a target one-hand operation area;
receiving the control triggering operation of the preset control again by the user;
and hiding the first control in the target one-handed operation area in response to the control triggering operation.
The control triggering operation can be operations of clicking, long-time pressing, double-click, voice control and the like of a user on a preset control.
Specifically, after the user clicks the preset control, the electronic device can enable the first control to be displayed in the target one-handed operation area, and in the process of displaying the first control in the target one-handed operation area, after the user clicks the preset control again, the electronic device can enable the first control to be hidden in the target one-handed operation area, so that the storage function of the first control can be achieved through the preset control.
Optionally, the step of using the preset control to control the first control to be displayed or hidden in the target one-handed operation region may specifically include: the preset control is used for displaying or hiding in the target one-hand operation area by controlling the preset control panel so as to control the first control located in the preset control panel to display or hide.
Further, displaying the first control within the target one-handed operation region may include: and displaying a preset control panel in the target one-hand operation area, and displaying a first control through the preset control panel. Hiding the first control within the target one-handed operation region may include: and hiding a preset control panel in the target one-hand operation area.
Specifically, after the user clicks the preset control, the electronic device can enable the preset control panel corresponding to the preset control to pop up in the target one-handed operation area, and display the preset control panel in the target one-handed operation area, and the preset control panel can cover at least part of the target one-handed operation area, and meanwhile, the first control can be displayed in the preset control panel. In the process of displaying the preset control panel by the electronic device, after the user clicks the preset control again, the electronic device can retract the preset control panel.
The preset control panel can be superposed and displayed on the target content in a target one-hand operation area of the target interface.
Alternatively, the preset control panel may be in any shape and have any transparency, as long as the preset control panel can be used for accommodating the first control, and the preset control panel is not limited herein.
In some embodiments, the electronic device may display the first control within the preset control panel according to the initial display position of the first control. The initial display position of the first control can be a display position of the first control in the first operation area when the target interface is in the non-one-handed operation mode.
Specifically, the electronic device may determine a distance between an initial display position of each first control and a vertex of the target interface close to the target one-handed operation area, and then arrange the first controls from a position close to the vertex to a position far from the vertex in the preset control panel according to a sequence from near to far of the distance.
Taking the preset control panel as a rectangular interface which is expanded upwards by the preset controls as an example, the electronic device may determine a linear distance between an initial display position of each first control and a vertex of the target interface which is close to the target one-handed operation area, and then, in a vertical direction in the preset control panel, the first controls are uniformly arranged from a position close to the vertex to a position far from the vertex in sequence from near to far according to the linear distance.
Continuing to take the example that the preset control panel is a rectangular interface which is expanded upwards by the preset controls, the electronic device may further determine an abscissa distance and an ordinate distance between the initial display position of each first control and a vertex of the target interface which is close to the target one-handed operation area, and then, in order from near to far of the ordinate distances, uniformly arrange the first controls in order from the position close to the vertex to the position far from the vertex in a vertical direction in the preset control panel, and if there are at least two first controls which have the same ordinate distance from the vertex, uniformly arrange the first controls in order from the position close to the vertex to the position far from the vertex in the vertical direction according to the order from near to far of the abscissa distances.
Continuing to take the example that the preset control panel is a rectangular interface which is expanded upwards by the preset controls, the electronic device may further determine an abscissa distance and an ordinate distance between the initial display position of each first control and a vertex of the target interface which is close to the target one-handed operation area, and then, in order from near to far of the ordinate distances, uniformly arrange the first controls in order from the position close to the vertex to the position far from the vertex in a vertical direction in the preset control panel, and if there are at least two first controls which have the same ordinate distance from the vertex, uniformly arrange the first controls in order from the position close to the vertex to the position far from the vertex in a horizontal direction according to the order from near to far of the abscissa distances.
The target interface in the single-handed operation mode in these embodiments is described below as a specific example.
With continued reference to fig. 3, after the user inputs a trigger operation for triggering the left-hand mode in thetarget interface 301 shown in fig. 3, thetarget interface 301 may enter the left-hand mode shown in fig. 4.
Fig. 4 shows a schematic view of the embodiment of fig. 3 in a left-hand mode.
As shown in fig. 4, the electronic device may display atarget interface 401, thetarget interface 401 having a lefthand operation region 402, the lefthand operation region 402 having a height of 2/3 of thetarget interface 401 and a width of 1/2 of thetarget interface 401. Apreset control 404 is displayed in a lowerleft vertex region 403 of the lefthand manipulation region 402 of thetarget interface 401.
The user can click on thepreset control 404, and thepreset control 404 pops up thepreset control panel 405. In a case where thepreset control 404 pops up thepreset control panel 405, afirst control 406 may be displayed in thepreset control panel 405. Thefirst control 406 may include a control 1 and a control 2, and because the distance between the initial display position (initial display position referred to in fig. 3) of the control 1 and the lower left vertex of thetarget interface 401 is greater than the distance between the initial display position (initial display position referred to in fig. 3) of the control 2 and the lower left vertex of thetarget interface 401, it may be considered that the operation requirement of the user on the control 2 is higher than that of the control 1, therefore, in thepreset control panel 405, the control 1 may be located above the control 2, so that the control 2 is closer to the lower left vertex of thetarget interface 401, and further, the control 2 is more convenient for the user to operate. Under the condition that thepreset control 404 bounces up thepreset control panel 405, the user may further click thepreset control 404 again, so that thepreset control 404 retracts back to thepreset control panel 405 downwards.
In the embodiment of the disclosure, when a target trigger operation for triggering the target one-handed mode is detected, a preset control for controlling the first control to be displayed or hidden in the target one-handed operation area is displayed in the target one-handed operation area of the target interface corresponding to the target one-handed mode, because the first control is the control displayed in the first operation area of the target interface, the first control in the first operation area can be accommodated in the preset control in the target one-handed operation area, so that a user can conveniently browse the target interface and simultaneously control to display the first control in the target one-handed operation area through the preset control when using the electronic device with one hand, and further, the user can easily touch all the first controls without changing the display size of the target interface, thereby not only improving the operation convenience of the user, visual experience of the target interface is also guaranteed, and therefore experience of the user is improved.
Returning to fig. 2, in some embodiments of the present disclosure, after detecting a target trigger operation for triggering a target one-handed mode, the control display method may further include: and stopping displaying the first control in the first operation area.
Specifically, after the electronic device detects the target triggering operation for triggering the target one-handed mode, the preset control is displayed, and meanwhile the display of the first control in the first operation area can be stopped, so that the overlapping and the repetition of the first control can be avoided, the target interface is concise and attractive, and the visual experience of the target interface is improved.
In other embodiments of the present disclosure, the target one-handed operation region may also be used to fix the display control when the target interface is in the target one-handed mode.
In a case that the preset control is used for displaying or hiding in the target one-handed operation region by controlling the preset control panel to control the first control located in the preset control panel to display or hide, after S220, the control displaying method may further include:
receiving a first adjustment operation on a first target control, wherein the first target control is a control located in a preset control panel;
and responding to the first adjustment operation, and moving the first target control to a first target position in the target one-hand operation area for display through a preset control panel.
Specifically, under the condition that the electronic device displays the preset control panel, the electronic device may receive a first adjustment operation of a user on a first target control in the preset control panel, at this time, the electronic device may determine that the user wishes to place the first target control at a first target position in a target one-handed operation area for fixed display, and then, in response to the first adjustment operation, stop displaying the first target control in the preset control panel, and display the first target control at the first target position in the target one-handed operation area selected by the first adjustment operation, so as to move the first target control from the preset control panel to the first target position for display.
Optionally, the first target control may be any control displayed in the preset control interface, which is not limited herein.
In some embodiments, the first adjustment operation may include a first trigger operation for triggering adjustment of the display position of the first target control and a first selection operation for selecting a position to be adjusted of the first target control. The first trigger operation may be double-click, long-press, voice control, and the like on the first target control, and the first selection operation may be click, double-click, long-press, voice control, and the like on the position to be adjusted of the first target control.
The position to be adjusted selected by the first selection operation is the first target position in the target one-hand operation area selected by the first adjustment operation.
In other embodiments, the first adjustment operation may also include dragging the first target control into the target one-handed operation region.
At this time, the electronic apparatus may set the end position of the first adjustment operation, i.e., the drag end position, as the first target position selected by the first adjustment operation.
The procedure of the first adjustment operation in these embodiments is explained below with a specific example.
With continued reference to fig. 4, when the user wants to adjust the display position of control 1 in thetarget interface 401 shown in fig. 4, the user may perform the dragging operation shown in fig. 5, and then obtain the dragging result shown in fig. 6.
Fig. 5 is a schematic diagram illustrating a drag operation provided by an embodiment of the present disclosure. Fig. 6 illustrates a drawing result diagram of the drawing operation shown in fig. 5.
As shown in fig. 5, the electronic device may display atarget interface 501, where thetarget interface 501 has a left-hand operation region 502, and apreset control 504 is displayed in a lowerleft vertex region 503 of the left-hand operation region 502.
Under the condition that thepreset control panel 505 is bounced upwards by thepreset control 504, the control 1 and the control 2 may be displayed in thepreset control panel 505, and the user may drag thefirst target control 506 displayed in thepreset control panel 505, such as the control 1, to an area other than thepreset control panel 505 in the left-hand operation area 502, and drag thefirst target control 506 to thefirst target position 507.
As shown in fig. 6, after the user completes dragging thefirst target control 506, the electronic device no longer displays thefirst target control 506 through thepreset control panel 505, but displays thefirst target control 506 at the first target position selected by the user through the dragging operation in the left-hand operation area 502.
Therefore, the user can adjust the display position of the first target control displayed in the preset control panel, the first target control can be fixedly displayed in the single-hand operation area after adjustment, and then the user can conveniently touch the first target control without controlling the preset control panel to pop up, so that the personalized requirements of the user can be met, and the convenience of user operation can be further improved.
Continuing to return to fig. 2, in further embodiments of the present disclosure, after S220, the control display method may further include:
receiving region adjustment operation on a target one-handed operation region;
and responding to the area adjustment operation, and displaying the target one-hand operation area according to the target display parameters selected by the area adjustment operation.
Alternatively, the display parameter may include at least one of a display size and a display position of the target one-handed operation region.
Further, the region adjustment operation may include a drag operation on at least one of the target one-handed operation region and a region boundary of the target one-handed operation region. The target display parameter may include at least one of a target display size and a target display position selected by the region adjustment operation.
In a case where the region adjustment operation includes a drag operation on the target one-handed operation region, the region adjustment operation may be used to adjust a display position in the display parameters of the target one-handed operation region, and the electronic device may, in response to the region adjustment operation, take a display position at which the target one-handed operation region is located when the region adjustment operation ends, that is, when the drag on the target one-handed operation region ends, as a target display position in the target display parameters of the target one-handed operation region, and then display the target one-handed operation region at the target display position.
In a case where the region adjustment operation includes a drag operation on a region boundary of the target one-handed operation region, the region adjustment operation may be used to adjust a display size in the display parameter of the target one-handed operation region, and the electronic device may, in response to the region adjustment operation, display the target one-handed operation region according to a target display size in the target display parameter of the target one-handed operation region, which is a display size of the target one-handed operation region when the region adjustment operation is ended, that is, when the drag on an arbitrary region boundary of the target one-handed operation region is ended, and further, display the target one-handed operation region according to the target display size.
Therefore, in the embodiment of the disclosure, the user can flexibly adjust the display parameters of the target one-handed operation area, so as to meet the personalized requirements of the user.
In another embodiment of the present disclosure, the target interface may further include a second control.
In this embodiment of the present disclosure, before detecting a target trigger operation for triggering a target one-handed mode, the control display method may further include:
and displaying a second control in a second operation area of the target interface, wherein the second operation area is not overlapped with the first operation area.
Optionally, the target interface may include at least one second control. For example, the number of second controls may be 1, 2, 5, 10, or more.
In some embodiments, the second control may have different interactive functionality than the first control.
In other embodiments, the second control is also a control that may have any interactive functionality.
Optionally, the second control may be displayed in an overlying manner on the target content in the target interface, that is, a floating layer may be disposed on the target content in the target interface, and the second control may be displayed in the floating layer.
Optionally, the floating layer where the second control is located may be the same as the floating layer where the first control is located, or may be different from the floating layer where the first control is located, which is not limited herein.
Further, the second operating region does not overlap the first operating region.
Optionally, a distance between a bottom boundary of the second operational area and a bottom boundary of the target interface may be greater than or equal to a second predetermined threshold.
The second predetermined threshold may be any height value smaller than the height of the target interface, which is not limited herein. For example, the second predetermined threshold may be 1/2, 1/3, or 1/4 for the target interface height.
Optionally, the top boundary of the second operational area may coincide with the top boundary of the target interface. The top boundary of the second operation region may also not coincide with the top boundary of the target interface, i.e. the top boundary of the second operation region may also be lower than the bottom boundary of the target interface. The present disclosure is not so limited.
Optionally, the sum of the second predetermined threshold and the first predetermined threshold may be equal to or smaller than the target interface height, that is, the top boundary of the first operation area and the bottom boundary of the second operation area may or may not coincide with each other, which is not limited herein.
Alternatively, the width of the second operation region may be less than or equal to the width of the target interface, which is not limited herein.
The following describes the target interface in the non-one-handed operation mode in these embodiments with a specific example.
FIG. 7 is a schematic diagram illustrating another target interface provided by embodiments of the present disclosure.
As shown in fig. 7, the electronic device may display atarget interface 301, thetarget interface 301 having afirst operating region 302 and asecond operating region 304, a bottom boundary of thefirst operating region 302 may coincide with a bottom boundary of thetarget interface 301, and a distance between a top boundary of thefirst operating region 302 and the bottom boundary of thetarget interface 301 is 1/4 of the height of thetarget interface 301, i.e., thefirst operating region 302 may be the bottom operating region of thetarget interface 301. The top boundary of the secondoperational area 304 may coincide with the top boundary of thetarget interface 301, and the distance between the bottom boundary of the secondoperational area 304 and the top boundary of thetarget interface 301 is 1/3 of the height of thetarget interface 301, i.e. the secondoperational area 304 may be the top operational area of thetarget interface 301.
Twofirst controls 303 may be displayed in thefirst operation area 302 of thetarget interface 301, and the twofirst controls 303 may be control 1 and control 2, respectively. Threesecond controls 305 may be displayed in thesecond operation area 304 of thetarget interface 301, and the threesecond controls 305 may be control 3, control 4, and control 5, respectively.
Further, the second operating region is different from the first operating region.
Optionally, the target one-handed operation region is different from the first operation region in any one of the following cases:
the target one-hand operation area is completely not overlapped with the first operation area;
the target one-handed operation region is not partially overlapped with the first operation region.
Therefore, the electronic equipment can display the second control in the second operation area which is at least partially not overlapped with the target one-hand operation area in the target one-hand operation area, and the convenience of one-hand operation is improved.
In some embodiments of the present disclosure, continuing to return to fig. 2, after detecting a target trigger operation for triggering a target one-handed mode, the control display method may further include:
and displaying the second control in the target one-hand operation area according to a target layout mode, wherein the target layout mode is determined according to the display position of the second control in the second operation area.
In the embodiment of the disclosure, after receiving the target trigger operation, the electronic device may enter a target one-handed mode corresponding to the target trigger operation in response to the target trigger operation, further determine a target one-handed operation area, a first control, and a second control corresponding to the target one-handed mode, and display the second control in the target one-handed operation area of the target interface according to the target layout manner.
Optionally, the second control may be displayed in an overlay on the target content within the target one-handed operation region of the target interface.
The second control and the preset control may be located on the same floating layer or on different floating layers, which is not limited herein.
Further, the floating layer where the preset control panel corresponding to the preset control is located may be located on the floating layer where the second control is located, that is, after the preset control panel is popped up by the electronic device, the preset control panel may cover the second control for display.
In this disclosure, the electronic device may determine the target layout manner of the second control according to the initial display position of the second control. The initial display position of the second control can be a display position of the second control in the second operation area when the target interface is in the non-one-handed operation mode.
Specifically, the electronic device may determine a distance between an initial display position of each second control and a vertex of the target interface close to the target one-handed operation area, and then arrange the second controls in a sequence from a position close to the vertex to a position far from the vertex according to the distance from near to far, so as to obtain the target layout mode.
It should be noted that the method for determining the target layout manner is similar to the method for arranging the first control in the preset control panel, and is not described herein again.
The target interface in the single-handed operation mode in these embodiments is described below as a specific example.
With continued reference to fig. 7, after the user inputs a trigger operation for triggering the left-hand mode in thetarget interface 301 shown in fig. 7, the target interface 701 may enter the left-hand mode shown in fig. 8.
Fig. 8 shows a schematic view of the embodiment of fig. 7 in a left-hand mode.
As shown in fig. 8, the electronic device may display atarget interface 401, thetarget interface 401 having a lefthand operation region 402, the lefthand operation region 402 having a height of 2/3 of thetarget interface 401 and a width of 1/2 of thetarget interface 401.
Apreset control 404 is displayed in a lowerleft vertex region 403 of the lefthand manipulation region 402 of thetarget interface 401. Threesecond controls 408 may be displayed in the region of the lefthand operation region 402 other than the lower leftvertex region 403, and the threesecond controls 408 may be control 3, control 4, and control 5, respectively. The threesecond controls 408 may be arranged vertically above thepreset control 404, and since the ordinate distance between the initial display position of the control 3 (initial display position refers to fig. 7) and the lower left vertex of the target interface is the largest, the control 3 is arranged at the farthest position from thepreset control 404. Since the ordinate distance between the initial display positions (initial display positions refer to fig. 7) of the control 4 and the control 5 and the lower left vertex of thetarget interface 401 is the same, but the abscissa distance between the initial display position of the control 4 and the lower left vertex of thetarget interface 401 is larger than the abscissa distance between the initial display position of the control 5 and the lower left vertex of thetarget interface 401, the control 4 and the control 5 may be arranged in order in the lower direction of the control 3.
From this, the electronic device can determine that the operation demands of the user on the control 3, the control 4 and the control 5 are sequentially increased based on the initial display positions of the control 3, the control 4 and the control 5, and therefore the control 3, the control 4 and the control 5 are sequentially arranged near the lower left vertex of thetarget interface 401, and the convenience of user operation is further improved.
In still other embodiments of the present disclosure, after detecting a target trigger operation for triggering a target one-handed mode, the control display method may further include: and stopping displaying the second control in the second operation area.
Specifically, after the electronic device detects the target trigger operation for triggering the target one-handed mode, the display of the second control in the second operation area can be stopped while the second control is displayed in the target one-handed operation area, so that the second control can be prevented from being overlapped and repeated, the target interface is concise and attractive, and the visual experience of the target interface is improved.
In still other embodiments of the present disclosure, after the electronic device displays the second control in the target one-handed operation region according to the target layout manner, the control display method may further include:
receiving a second adjustment operation on a second target control, wherein the second target control is a control located in the target one-handed operation area;
and responding to the second adjustment operation, and moving the second target control to a second target position in the target one-handed operation area for displaying.
Specifically, the electronic device may receive a second adjustment operation of the user on a second target control fixedly displayed in the target one-handed operation area, at this time, the electronic device may determine that the user wishes to place the second target control at a second target position in the target one-handed operation area for fixed display, and then, in response to the second adjustment operation, move the second target control to the second target position in the target one-handed operation area selected by the second adjustment operation for display.
Optionally, the second target control may be any control fixedly displayed in the target one-handed operation area, which is not limited herein.
In some embodiments, the second adjustment operation may include a second trigger operation for triggering adjustment of the display position of the second target control and a second selection operation for selecting a position to be adjusted of the second target control. The second trigger operation may be double-click, long-press, voice control, and the like on the second target control, and the second selection operation may be click, double-click, long-press, voice control, and the like on the position to be adjusted of the second target control.
And the position to be adjusted selected by the second adjustment operation is the second target position in the target one-hand operation area selected by the second adjustment operation.
In other embodiments, the second adjustment operation may also include a drag operation on the second target control within the target one-handed operation region.
At this time, the electronic apparatus may set the end position of the second adjustment operation, i.e., the drag end position, as the second target position selected by the second adjustment operation.
The procedure of the second adjustment operation in these embodiments is explained below with a specific example.
With continued reference to fig. 8, when the user wants to adjust the display position of the control 5 in thetarget interface 401 shown in fig. 8, the user may perform the dragging operation shown in fig. 9, and then obtain the dragging result shown in fig. 10.
Fig. 9 is a schematic diagram illustrating another dragging operation provided by the embodiment of the present disclosure. Fig. 10 illustrates a drawing result diagram of the drawing operation shown in fig. 9.
As shown in fig. 9, the electronic device may display atarget interface 901, thetarget interface 901 having a lefthand manipulation region 902, apreset control 904 displayed within a lowerleft vertex region 903 of the lefthand manipulation region 902. Control 3, control 4, and control 5 may be displayed in aregion 905 of the lefthand operation region 902 other than the lower leftvertex region 903.
The user may drag asecond target control 906, such as control 5, displayed within aregion 905 in the left-handed operation region 902 to other displayed locations within theregion 905 and drag thesecond target control 906 to asecond target location 907.
As shown in fig. 10, after the user completes the drag of thesecond target control 906, the electronic device may display thesecond target control 906 at a second target location withinregion 905 in the left-handed operation region 902 that the user selected by the drag operation.
Therefore, the user can adjust the display position of the second target control displayed in the one-hand operation area, so that the second target control can be fixedly displayed in the one-hand operation area after adjustment, and further the personalized requirements of the user can be met.
In still other embodiments of the present disclosure, in a case that the preset control is used to control the preset control panel to display or hide in the target one-handed operation area so as to control the first control located in the preset control panel to display or hide, after the electronic device displays the second control in the target one-handed operation area according to the target layout manner, the control display method may further include:
receiving a third adjustment operation on a third target control, wherein the third target control is a control located in the target one-handed operation area;
and in response to the third adjustment operation, stopping displaying the third target control in the target one-handed operation area.
Correspondingly, the preset control panel is further used for displaying a third target control at a third target position.
Specifically, the electronic device may receive a third adjustment operation of a user on a third target control fixedly displayed in the target one-handed operation area, and then, in response to the third adjustment operation, stop displaying the third target control in the target one-handed operation area, and enable the preset control panel to be further used for displaying the third target control, even if the electronic device pops up the preset control panel, and displays the third target control through the preset control panel under the condition that the preset control panel is displayed.
Optionally, the third target control may be any control displayed in the target one-handed operation area, which is not limited herein.
In some embodiments, the third adjustment operation may include a third trigger operation for triggering display position adjustment of the third target control and a third selection operation for selecting the preset control. The third trigger operation may be double-click, long-press, voice control, and the like on the third target control, and the third selection operation may be click, double-click, long-press, voice control, and the like on the preset control.
In other embodiments, the third adjustment operation may also include an operation of dragging the third target control toward the preset control.
In the above embodiment, the electronic device may determine that the user wishes to receive the third target control in the preset control panel corresponding to the preset control.
Further, the electronic device may preset a first display position or a last display position in the control panel as a third target position, which is not limited herein.
The procedure of the third adjustment operation in these embodiments is explained below with a specific example.
With continued reference to fig. 8, when the user wants to adjust the display position of the control 5 in thetarget interface 401 shown in fig. 8, the user may perform the dragging operation shown in fig. 11, and then obtain the dragging result shown in fig. 12.
Fig. 11 is a schematic diagram illustrating still another dragging operation provided by the embodiment of the present disclosure. Fig. 12 is a diagram illustrating a drag result of the drag operation illustrated in fig. 11.
As shown in fig. 11, the electronic device may display atarget interface 1101, thetarget interface 1101 having a lefthand operation region 1102, apreset control 1104 displayed within a lowerleft vertex region 1103 of the lefthand operation region 1102. Control 3, control 4, and control 5 may be displayed in anarea 1105 of the lefthand operation area 1102 other than the lower leftvertex area 1103.
The user may drag athird target control 1106, such as control 5, displayed withinarea 1105 in left handoperational area 1102 to presetcontrol 1104.
As shown in fig. 12, after the user completes dragging thethird target control 1106, the electronic device may cease displaying thethird target control 1106 within theregion 905 in the left-handed operation region 902.
The user may click on thepreset control 1104 to cause thepreset control 1104 to pop up thepreset control panel 1107. In the case that thepreset control 1104 pops up thepreset control panel 1107, thepreset control panel 1107 may cover the control 4 for display, and the control 1, the control 2, and thethird target control 1106 may be displayed in thepreset control panel 1107. Because the user packs thethird target control 1106 into thepreset control panel 1107, the electronic device may consider that the operation demand of the user on thethird target control 1106 is low, and therefore, the electronic device may set thethird target control 1106 above the control 1 in thepreset control panel 1107, thereby avoiding affecting the operation convenience of the control 1 and the control 2.
Therefore, the user can adjust the display position of the third target control displayed in the single-hand operation area, so that the third target control can be accommodated in the preset control panel corresponding to the preset control after adjustment, the shielding of the control on target content can be reduced, and the personalized requirements of the user can be met.
In still other embodiments of the present disclosure, after the electronic device displays the second control in the target one-handed operation region according to the target layout manner, the control display method may further include:
receiving a fourth adjustment operation on a fourth target control, wherein the fourth target control is a control located in a preset control panel, the fourth adjustment operation is used for replacing the display positions of the fourth target control and a fifth target control, and the fifth target control is a control located in a target one-hand operation area;
and responding to the fourth adjustment operation, and replacing the display positions of the fourth target control and the fifth target control.
Specifically, under the condition that the electronic device displays the preset control panel, the electronic device may receive a fourth adjustment operation of a fourth target control displayed in the preset control panel by the user, and then, in response to the fourth adjustment operation, replace the fourth target control with a display position of a fifth target control selected by the fourth adjustment operation.
Optionally, the fourth target control may be any control displayed in a preset control panel, and the fifth target control may be any control displayed in a target one-handed operation area, which is not limited herein.
In some embodiments, the fourth adjustment operation may include an operation to drag the fourth target control to the fifth target control.
At this point, the electronic device may determine that the user wishes to replace the display positions of the fourth target control with the fifth target control.
The procedure of the fourth adjustment operation in these embodiments is explained below with a specific example.
Fig. 13 is a schematic diagram illustrating still another dragging operation provided by the embodiment of the present disclosure. Fig. 14 is a diagram illustrating a drag result of the drag operation illustrated in fig. 13.
As shown in fig. 13, the electronic device may display atarget interface 1301, thetarget interface 1301 having a left-handed operation region 1302, apreset control 1304 displayed within a lowerleft vertex region 1303 of the left-handed operation region 1302.
The user may click on thepreset control 1304 to pop up thepreset control panel 1305, and a control 1 and a control 2 may be displayed in thepreset control panel 1305.
In the process of displaying thepreset control panel 1305 by the electronic device, a control 3 and a control 4 may be displayed in aregion 1307 of the left-hand operation region 1302 of thetarget interface 1301, except for the lower leftvertex region 1303.
The user may drag thefourth target control 1306 displayed in thepreset control panel 1305, such as control 1, to theregion 1307 and drag thefourth target control 1306 to thefifth target control 1308, such as control 4.
As shown in fig. 14, after the user completes the dragging of thefourth target control 1306, the electronic device may display afifth target control 1308 at the display position of the originalfourth target control 1306 within thepreset control panel 1305, and display thefourth target control 1306 at the display position of the originalfifth target control 1308 within thearea 1307.
Therefore, the user can replace the position of the control displayed in the single-hand operation area and the control displayed in the preset control panel corresponding to the preset control, so that the individual requirements of the user are met.
In yet another embodiment of the present disclosure, the target interface may further include a third control.
Optionally, the target interface may include at least one third control. For example, the number of third controls may be 1, 2, 5, 10, or more.
Optionally, the third control element may be displayed in a manner of being superimposed on the target content within the target interface, that is, a floating layer may be disposed on the target content within the target interface, and the third control element may be displayed in the floating layer.
In some embodiments, the third control may be a control without interactive functionality, such as a presentation control for displaying icons, images, videos, text, etc., or the third control may be a control with interactive functionality different from the first and second controls, or the third control may be a control with interactive type different from the first and second controls.
In these cases, the third control may optionally be located anywhere within the target interface. Moreover, the floating layer where the third control is located may be the same as the floating layer where the first control and/or the second control is located, or may be different from the floating layer where the first control and/or the second control is located, which is not limited herein.
The following describes the target interface in the non-one-handed operation mode in these embodiments with a specific example.
FIG. 15 is a schematic diagram illustrating yet another target interface provided by embodiments of the present disclosure.
As shown in fig. 15, the electronic device may display atarget interface 301, thetarget interface 301 having afirst operating region 302 and asecond operating region 304, thefirst operating region 302 may be a bottom operating region of thetarget interface 301, and thesecond operating region 304 may be a top operating region of thetarget interface 301.
Twofirst controls 303 may be displayed in thefirst operation area 302 of thetarget interface 301, and the twofirst controls 303 may be control 1 and control 2, respectively. Threesecond controls 305 may be displayed in thesecond operation area 304 of thetarget interface 301, and the threesecond controls 305 may be control 3, control 4, and control 5, respectively.
Athird control 306 may also be displayed in thesecond operation region 304 of thetarget interface 301, and thethird control 306 may be a button 1. Thethird control 306 may be a control of a button function, and both thefirst control 303 and thesecond control 305 are controls of a non-button function.
In some embodiments of the present disclosure, continuing to return to fig. 2, after detecting a target trigger operation for triggering a target one-handed mode, the control display method may further include:
the third control is held in an initial display position of the third control.
In the embodiment of the disclosure, after the electronic device receives the target trigger operation, the electronic device may enter a target single-handed mode corresponding to the target trigger operation in response to the target trigger operation, further determine a target single-handed operation area, a first control, a second control, and a third control corresponding to the target single-handed mode, and keep the third control at an initial display position of the third control.
The electronic device may determine a control without an interactive function, or a control with an interactive function different from that of the first control and the second control, or a control with an interactive type different from that of the first control and the second control, as a third control, which is not described herein again.
The target interface in the single-handed operation mode in these embodiments is described below as a specific example.
Fig. 16 shows a schematic view of the embodiment of fig. 15 in a left-hand mode.
As shown in fig. 16, the electronic device may display atarget interface 401, thetarget interface 401 having a lefthand operation region 402. Apreset control 404 is displayed in a lowerleft vertex region 403 of the lefthand manipulation region 402 of thetarget interface 401. Threesecond controls 408 may be displayed in the region of the lefthand operation region 402 other than the lower leftvertex region 403, and the threesecond controls 408 may be control 3, control 4, and control 5, respectively. Athird control 409 may be further displayed in thetarget interface 401, thethird control 409 may be a button 1, and thethird control 409 may be displayed at an initial display position when thetarget interface 401 is in the non-one-handed operation mode (the initial display position may refer to fig. 15).
Therefore, in the embodiment of the disclosure, after the target interface is switched from the non-one-handed operation mode to the one-handed operation mode, the positions of part of the controls are kept unchanged, so that the controls are prevented from being accumulated in a large amount in the one-handed operation area, and the shielding of the controls on the target content is reduced.
In yet another embodiment of the present disclosure, the target interface may include a live room interface and the target content may include a live view.
Therefore, in a live broadcast service scene, the display size of the live broadcast interface does not need to be changed when the live broadcast interface is in a one-hand operation mode, and the live broadcast picture is the main content in the live broadcast interface, so that the live broadcast viewing experience of a user can be ensured. Meanwhile, in the single-hand operation mode, the first control can be stored in the preset control, and the second control is moved to the target single-hand operation area, so that a user can easily touch the first control and the second control, and the operation convenience of the user is improved.
In some embodiments of the present disclosure, the live room interface may further include a comment area, which may be used to display comment information.
The following describes a target interface when the live interface is in a non-one-handed operation mode by using a specific example.
Fig. 17 shows a schematic diagram of a live room interface provided by an embodiment of the present disclosure.
As shown in fig. 17, the electronic device may display alive room interface 1701, and a live view may be displayed within thelive room interface 1701.
Thelive room interface 1701 has atop operation area 1702, a bottom operation area 1703, and acomment area 1704. Thetop operating area 1702 may display two first controls, which may be ared envelope control 1705 and a watchuser preview control 1706, respectively. Two second controls, which may be a commentinformation editing control 1707 and agift control 1708, may be displayed in the bottom operation area 1703. The topoperational area 1702 may also be provided with a third control, which may be afocus button 1709.
Thecomment area 1704 may be located to the left of thelive room interface 1701 and above the bottom operation area 1703. A plurality ofcomment information 1710 may be displayed within thecomment area 1704.
In some embodiments of the present disclosure, continuing to return to fig. 2, after detecting a target trigger operation for triggering a target one-handed mode, the control display method may further include:
under the condition that the target one-hand operation area is overlapped with the comment area, the comment area is moved to a non-operation area of a live broadcast interface to be displayed;
and under the condition that the target one-hand operation area and the comment area do not overlap, maintaining the display position of the comment area.
In the embodiment of the disclosure, after the electronic device detects the target trigger operation, the electronic device may enter a target one-handed mode corresponding to the target trigger operation in response to the target trigger operation, further determine a target one-handed operation area corresponding to the target one-handed mode, and determine whether the target one-handed operation area overlaps with the comment area, if the target one-handed operation area and the comment area have an overlapping portion, the comment area may be moved to a non-operation area, which is not displayed with any control, outside the target one-handed operation area of the live broadcast room interface for display, and otherwise, a display position of the comment area is maintained.
And under the condition that the live broadcast interface comprises the third control, the non-operation area further refers to an area which does not contain the third control.
Therefore, in the embodiment of the disclosure, the comment information can be prevented from being shielded by the control displayed in the target one-hand operation area, so that the user experience is further improved.
The following describes the live broadcast interface in the single-handed operation mode in these embodiments with a specific example.
With continued reference to fig. 17, after the user inputs a one-handed mode trigger operation for triggering the left-handed mode in thelive view interface 1701 illustrated in fig. 17, thelive view interface 1701 may enter the left-handed mode illustrated in fig. 18; after the user enters a one-handed trigger operation for triggering the right-handed mode in thelive room interface 1701 shown in fig. 17, thelive room interface 1701 may enter the right-handed mode shown in fig. 19.
Fig. 18 shows a schematic view of the embodiment of fig. 17 in a left-hand mode.
As shown in fig. 18, the electronic device may display alive room interface 1801, thelive room interface 1801 having a left-handed operation area 1802 and acomment area 1803. Since the initial display position of thecomment area 1803 when thelive view interface 1801 is in the non-one-handed operation mode has an overlapping portion with the left-handed operation area 1802, thecomment area 1803 is moved to the right of the left-handed operation area 1802.Comment information 1807 may be displayed in thecomment area 1803.
Further, a watchuser preview control 1804, ared envelope control 1805, and apreset control 1806 may be displayed within the lefthand operation area 1802. The user may click on thepreset control 1806 to pop up a preset control panel corresponding to thepreset control 1806, and display the commentinformation editing control 1707 and the gift control 1708 (not shown in fig. 18) shown in fig. 17 in the preset control panel.
Further, apreset control 1806 may be located in the lower left corner of the lefthand operation area 1802, and the watchuser preview control 1804 and thered envelope control 1805 may be located above thepreset control 1806. Since the ordinate distance between the initial display position of the viewinguser preview control 1804 when thelive broadcast interface 1801 is in the non-one-handed operation mode (the initial display position may refer to fig. 17) and the lower left vertex of thelive broadcast interface 1801 is greater than the initial display position of thered envelope control 1805 when thelive broadcast interface 1801 is in the non-one-handed operation mode (the initial display position may refer to fig. 17), the viewinguser preview control 1804 may be located above thered envelope control 1805.
Further, afocus button 1808 may also be displayed in the upper left corner of thelive room interface 1801. Thefocus button 1808 may be displayed at its initial display position when thelive view interface 1801 is in the non-one-handed operation mode (the initial display position may refer to fig. 17).
Fig. 19 shows a schematic view of another embodiment of fig. 17 in a right-hand mode.
As shown in fig. 19, the electronic device may display alive view interface 1901, thelive view interface 1901 having a right-handed operation area 1902 and acomment area 1903. Since the display position of thecomment area 1903 does not have an overlapping portion with the right-hand operation area 1902, thecomment area 1903 remains displayed on the left side of the right-hand operation area 1902.Comment information 1907 may be displayed within thecomment area 1903.
Further, a watchuser preview control 1904, ared pack control 1905, and apreset control 1906 may be displayed within the righthand operation area 1902. The user may click on thepreset control 1906 to pop up a preset control panel corresponding to thepreset control 1906, and display the commentinformation editing control 1707 and thegift control 1708 shown in fig. 17 in the preset control panel (not shown in fig. 19).
Further, apreset control 1906 may be located in the lower right corner of the righthand operation area 1902, and a watchuser preview control 1904 and ared envelope control 1905 may be located above thepreset control 1906. Since the ordinate distance between the initial display position of the watchinguser preview control 1904 when thelive broadcast interface 1901 is in the non-one-handed operation mode (the initial display position may refer to fig. 17) and the lower right vertex of thelive broadcast interface 1901 is greater than the initial display position of the red-envelope control 1905 when thelive broadcast interface 1901 is in the non-one-handed operation mode (the initial display position may refer to fig. 17), the watchinguser preview control 1904 may be located above the red-envelope control 1905.
Further, afocus button 1908 may also be displayed in the upper left corner of thelive view interface 1901. Thefocus button 1908 can be displayed at its initial display position when thelive view interface 1901 is in the non-one-handed operation mode (the initial display position can refer to fig. 17).
Therefore, in the embodiment of the disclosure, the live broadcast room interface can be divided into different areas according to functional characteristics, and a user can trigger operation through a single-hand mode to enable the live broadcast room interface to enter a corresponding single-hand operation mode, so that in a live broadcast service scene, the live broadcast watching experience of the user is ensured, and the operation convenience of the user is improved.
Further, under the condition that the live broadcast interface is in the one-hand operation mode, after a user adjusts the display parameters of the target one-hand operation area in the live broadcast interface, if the adjusted one-hand operation area of the wooden template and the comment area for displaying the comment information have an overlapped part, the comment area can be moved to the adjusted non-operation area for displaying, and otherwise, the display position of the comment area does not need to be adjusted.
Therefore, in the embodiment of the disclosure, the comment information can be further prevented from being blocked by the control displayed in the one-hand operation area, so that the user experience is further improved.
An embodiment of the present disclosure further provides a control display device, which is described below with reference to fig. 20. In the embodiment of the present disclosure, the control display device 2000 may be an electronic device. In some embodiments, the electronic device may be theelectronic device 101 shown in fig. 1 held by a single hand of a user. The electronic equipment can be equipment with a communication function, such as a mobile phone, a tablet computer, a notebook computer, a vehicle-mounted terminal, wearable equipment, intelligent household equipment and the like.
Fig. 20 shows a schematic structural diagram of a control display device according to an embodiment of the present disclosure.
As shown in fig. 20, the control display apparatus 2000 may include a first display unit 2010 and a second display unit 2020.
The first display unit 2010 may be configured to display a first control within a first operating region of a target interface.
The second display unit 2020 may be configured to display a preset control in a target one-handed operation region of the target interface when a target trigger operation for triggering the target one-handed mode is detected, where the preset control is used to control the first control to display in the target one-handed operation region or hide the target one-handed operation region as a one-handed operation region corresponding to the target one-handed mode, and the target one-handed operation region is different from the first operation region.
In the embodiment of the disclosure, when a target trigger operation for triggering the target one-handed mode is detected, a preset control for controlling the first control to be displayed or hidden in the target one-handed operation area is displayed in the target one-handed operation area of the target interface corresponding to the target one-handed mode, because the first control is the control displayed in the first operation area of the target interface, the first control in the first operation area can be accommodated in the preset control in the target one-handed operation area, so that a user can conveniently browse the target interface and simultaneously control to display the first control in the target one-handed operation area through the preset control when using the electronic device with one hand, and further, the user can easily touch all the first controls without changing the display size of the target interface, thereby not only improving the operation convenience of the user, visual experience of the target interface is also guaranteed, and therefore experience of the user is improved.
In some embodiments of the present disclosure, the control display apparatus 2000 may further include a third display unit, and the third display unit may be configured to stop displaying the first control in the first operation region after detecting a target trigger operation for triggering the target one-handed mode.
In some embodiments of the present disclosure, the preset control for controlling the first control to be displayed or hidden in the target one-handed operation region may include:
the preset control is used for displaying or hiding in the target one-hand operation area by controlling the preset control panel so as to control the first control located in the preset control panel to display or hide.
In some embodiments of the present disclosure, the control display apparatus 2000 may further include a first receiving unit and a fourth display unit.
The first receiving unit may be configured to receive a first adjustment operation on a first target control after a preset control is displayed in a target one-handed operation region of a target interface, where the first target control is a control located in a preset control panel.
The fourth display unit may be configured to move the first target control to a first target position within the target one-handed operation area for display by the preset control panel in response to the first adjustment operation.
In some embodiments of the present disclosure, the control display apparatus 2000 may further include a fifth display unit and a sixth display unit.
The fifth display unit may be configured to display a second control in a second operation region of the target interface before detecting a target trigger operation for triggering the target one-handed mode, the second operation region not overlapping with the first operation region.
The sixth display unit may be configured to display the second control in the target one-handed operation region according to a target layout manner after detecting a target trigger operation for triggering the target one-handed mode, where the target layout manner is determined according to a display position of the second control in the second operation region.
In some embodiments of the present disclosure, the control display apparatus 2000 may further include a seventh display unit, and the seventh display unit may be configured to stop displaying the second control in the second operation region after detecting the target trigger operation for triggering the target one-handed mode.
In some embodiments of the present disclosure, the control display apparatus 2000 may further include a second receiving unit and an eighth display unit.
The second receiving unit may be configured to receive a second adjustment operation on a second target control after displaying the second control in the target one-handed operation area according to the target layout manner, where the second target control is a control located in the target one-handed operation area.
The eighth display unit may be configured to move the second target control to the second target position within the target one-handed operation region for display in response to the second adjustment operation.
In some embodiments of the present disclosure, the preset control for controlling the first control to be displayed or hidden in the target one-handed operation region may include: the preset control is used for displaying or hiding in the target one-hand operation area by controlling the preset control panel so as to control the first control located in the preset control panel to display or hide.
Accordingly, the control display apparatus 2000 may further include a third receiving unit and a ninth display unit.
The third receiving unit may be configured to receive a third adjustment operation on a third target control after displaying the second control in the target one-handed operation area according to the target layout manner, where the third target control is a control located in the target one-handed operation area.
The ninth display unit may be configured to stop displaying the third target control within the target one-handed operation region in response to the third adjustment operation.
The preset control panel can also be used for displaying a third target control at a third target position.
In some embodiments of the present disclosure, the control display apparatus 2000 may further include a fourth receiving unit and a tenth display unit.
The fourth receiving unit may be configured to receive a region adjustment operation for the target one-handed operation region after detecting a target trigger operation for triggering the target one-handed mode.
The tenth display unit may be configured to display the target one-handed operation region in accordance with the target display parameter selected by the region adjustment operation in response to the region adjustment operation.
In some embodiments of the present disclosure, the target interface may include a live view interface, and the live view interface may further include a comment area, and the comment area may be used to display comment information.
Accordingly, the control display apparatus 2000 may further include an eleventh display unit, and the eleventh display unit may be configured to, after detecting the target trigger operation for triggering the target one-handed mode, move the comment area into the non-operation area of the live broadcast interface for display in a case where the target one-handed operation area overlaps with the comment area.
It should be noted that the control display device 2000 shown in fig. 20 may execute each step in the method embodiments shown in fig. 2 to fig. 19, and implement each process and effect in the method embodiments shown in fig. 2 to fig. 19, which are not described herein again.
Embodiments of the present disclosure also provide an electronic device that may include a processor and a memory, which may be used to store executable instructions. The processor may be configured to read the executable instructions from the memory and execute the executable instructions to implement the control display method in the foregoing embodiments.
Fig. 21 shows a schematic structural diagram of an electronic device provided in an embodiment of the present disclosure. Referring now specifically to fig. 21, a schematic diagram of anelectronic device 2100 suitable for use in implementing embodiments of the present disclosure is shown.
In the disclosed embodiment, theelectronic device 2100 may include, but is not limited to, a mobile terminal such as a mobile phone, a notebook computer, a digital broadcast receiver, a PDA (personal digital assistant), a PAD (tablet), a PMP (portable multimedia player), a vehicle terminal (e.g., a car navigation terminal), a wearable device, and the like, and a stationary terminal such as a digital TV, a smart home device, and the like.
It should be noted that theelectronic device 2100 shown in fig. 21 is only an example, and should not bring any limitation to the functions and the scope of the embodiments of the present disclosure.
As shown in fig. 21, theelectronic device 2100 may include a processing device (e.g., central processing unit, graphics processor, etc.) 2101, which may perform various appropriate actions and processes in accordance with a program stored in a Read Only Memory (ROM)2102 or a program loaded from astorage device 2108 into a Random Access Memory (RAM) 2103. In theRAM 2103, various programs and data necessary for the operation of theelectronic apparatus 2100 are also stored. Theprocessing device 2101, theROM 2102, and theRAM 2103 are connected to each other via abus 2104. An input/output (I/O)interface 2105 is also connected tobus 2104.
Generally, the following devices may be connected to the I/O interface 2105:input devices 2106 including, for example, a touch screen, a touch pad, a keyboard, a mouse, a camera, a microphone, an accelerometer, a gyroscope, etc.;output devices 2107 including, for example, a Liquid Crystal Display (LCD), speakers, vibrators, and the like;storage devices 2108 including, for example, magnetic tape, hard disk, and the like; and acommunication device 2109. Thecommunications 2109 may allow theelectronic device 2100 to communicate wirelessly or by wire with other devices to exchange data. While fig. 21 illustrates anelectronic device 2100 with various means, it is to be understood that not all illustrated means are required to be implemented or provided. More or fewer devices may alternatively be implemented or provided.
The embodiment of the present disclosure also provides a computer-readable storage medium, where a computer program is stored, and when the computer program is executed by an electronic device, the electronic device is enabled to implement the control display method in the foregoing embodiment.
In particular, according to an embodiment of the present disclosure, the processes described above with reference to the flowcharts may be implemented as computer software programs. For example, embodiments of the present disclosure include a computer program product comprising a computer program carried on a non-transitory computer readable medium, the computer program containing program code for performing the method illustrated by the flow chart. In such an embodiment, the computer program may be downloaded and installed from a network through thecommunication device 2109, or installed from thestorage device 2108, or installed from theROM 2102. The above-described functions defined in the control display method of the embodiment of the present disclosure are executed when the computer program is executed by theprocessing apparatus 2101.
It should be noted that the computer readable medium in the present disclosure can be a computer readable signal medium or a computer readable storage medium or any combination of the two. A computer readable storage medium may be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the foregoing. More specific examples of the computer readable storage medium may include, but are not limited to: an electrical connection having one or more wires, a portable computer diskette, a hard disk, a Random Access Memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing. In the present disclosure, a computer readable storage medium may be any tangible medium that can contain, or store a program for use by or in connection with an instruction execution system, apparatus, or device. In contrast, in the present disclosure, a computer readable signal medium may comprise a propagated data signal with computer readable program code embodied therein, either in baseband or as part of a carrier wave. Such a propagated data signal may take many forms, including, but not limited to, electro-magnetic, optical, or any suitable combination thereof. A computer readable signal medium may also be any computer readable medium that is not a computer readable storage medium and that can communicate, propagate, or transport a program for use by or in connection with an instruction execution system, apparatus, or device. Program code embodied on a computer readable medium may be transmitted using any appropriate medium, including but not limited to: electrical wires, optical cables, RF (radio frequency), etc., or any suitable combination of the foregoing.
In some embodiments, the clients, servers may communicate using any currently known or future developed network protocol, such as HTTP, and may be interconnected with any form or medium of digital data communication (e.g., a communication network). Examples of communication networks include a local area network ("LAN"), a wide area network ("WAN"), the Internet (e.g., the Internet), and peer-to-peer networks (e.g., ad hoc peer-to-peer networks), as well as any currently known or future developed network.
The computer readable medium may be embodied in the electronic device; or may exist separately without being assembled into the electronic device.
The computer readable medium carries one or more programs which, when executed by the electronic device, cause the electronic device to perform:
displaying a first control in a first operation area of the target interface; when a target trigger operation for triggering a target single-hand mode is detected, displaying a preset control in a target single-hand operation area of a target interface, wherein the preset control is used for controlling a first control to be displayed or hidden in the target single-hand operation area, the target single-hand operation area is a single-hand operation area corresponding to the target single-hand mode, and the target single-hand operation area is different from the first operation area.
In embodiments of the present disclosure, computer program code for carrying out operations of the present disclosure may be written in any combination of one or more programming languages, including but not limited to an object oriented programming language such as Java, Smalltalk, C + +, and conventional procedural programming languages, such as the "C" programming language or similar programming languages. The program code may execute entirely on the user's computer, partly on the user's computer, as a stand-alone software package, partly on the user's computer and partly on a remote computer or entirely on the remote computer or server. In the case of a remote computer, the remote computer may be connected to the user's computer through any type of network, including a Local Area Network (LAN) or a Wide Area Network (WAN), or the connection may be made to an external computer (for example, through the Internet using an Internet service provider).
The flowchart and block diagrams in the figures illustrate the architecture, functionality, and operation of possible implementations of systems, methods and computer program products according to various embodiments of the present disclosure. In this regard, each block in the flowchart or block diagrams may represent a module, segment, or portion of code, which comprises one or more executable instructions for implementing the specified logical function(s). It should also be noted that, in some alternative implementations, the functions noted in the block may occur out of the order noted in the figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently, or the blocks may sometimes be executed in the reverse order, depending upon the functionality involved. It will also be noted that each block of the block diagrams and/or flowchart illustration, and combinations of blocks in the block diagrams and/or flowchart illustration, can be implemented by special purpose hardware-based systems which perform the specified functions or acts, or combinations of special purpose hardware and computer instructions.
The units described in the embodiments of the present disclosure may be implemented by software or hardware. Where the name of an element does not in some cases constitute a limitation on the element itself.
The functions described herein above may be performed, at least in part, by one or more hardware logic components. For example, without limitation, exemplary types of hardware logic components that may be used include: field Programmable Gate Arrays (FPGAs), Application Specific Integrated Circuits (ASICs), Application Specific Standard Products (ASSPs), systems on a chip (SOCs), Complex Programmable Logic Devices (CPLDs), and the like.
In the context of this disclosure, a machine-readable medium may be a tangible medium that can contain, or store a program for use by or in connection with an instruction execution system, apparatus, or device. The machine-readable medium may be a machine-readable signal medium or a machine-readable storage medium. A machine-readable medium may include, but is not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any suitable combination of the foregoing. More specific examples of a machine-readable storage medium would include an electrical connection based on one or more wires, a portable computer diskette, a hard disk, a Random Access Memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing.
The foregoing description is only exemplary of the preferred embodiments of the disclosure and is illustrative of the principles of the technology employed. It will be appreciated by those skilled in the art that the scope of the disclosure herein is not limited to the particular combination of features described above, but also encompasses other embodiments in which any combination of the features described above or their equivalents does not depart from the spirit of the disclosure. For example, the above features and (but not limited to) the features disclosed in this disclosure having similar functions are replaced with each other to form the technical solution.
Further, while operations are depicted in a particular order, this should not be understood as requiring that such operations be performed in the particular order shown or in sequential order. Under certain circumstances, multitasking and parallel processing may be advantageous. Likewise, while several specific implementation details are included in the above discussion, these should not be construed as limitations on the scope of the disclosure. Certain features that are described in the context of separate embodiments can also be implemented in combination in a single embodiment. Conversely, various features that are described in the context of a single embodiment can also be implemented in multiple embodiments separately or in any suitable subcombination.
Although the subject matter has been described in language specific to structural features and/or methodological acts, it is to be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or acts described above. Rather, the specific features and acts described above are disclosed as example forms of implementing the claims.

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