WO2019076117A1 - 热区调整方法和装置、客户端 - Google Patents

热区调整方法和装置、客户端 Download PDF

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Publication number
WO2019076117A1
WO2019076117A1 PCT/CN2018/099943 CN2018099943W WO2019076117A1 WO 2019076117 A1 WO2019076117 A1 WO 2019076117A1 CN 2018099943 W CN2018099943 W CN 2018099943W WO 2019076117 A1 WO2019076117 A1 WO 2019076117A1
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WIPO (PCT)
Prior art keywords
control
hot zone
controls
display interface
button control
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PCT/CN2018/099943
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English (en)
French (fr)
Inventor
谭敏仪
柳林东
Original Assignee
阿里巴巴集团控股有限公司
谭敏仪
柳林东
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Application filed by 阿里巴巴集团控股有限公司, 谭敏仪, 柳林东 filed Critical 阿里巴巴集团控股有限公司
Publication of WO2019076117A1 publication Critical patent/WO2019076117A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04803Split screen, i.e. subdividing the display area or the window area into separate subareas

Definitions

  • the embodiments of the present disclosure relate to the field of computer technologies, and in particular, to a hot zone adjustment method and apparatus, and a client.
  • one or more controls can be included in the interface displayed by the client.
  • the client can interact with the user.
  • the control may have a hot zone for receiving triggering instructions.
  • the user can trigger within the hot zone of the control.
  • the triggering operation may include, for example, a click operation, a double click operation, a pressing operation, and the like.
  • a corresponding action or command may be executed to implement the function of the control on the display interface.
  • the hotspot range of the controls in the interface may be relatively small depending on the size of the client screen, or the size of the area in the interface for the layout control.
  • the smaller hot zone range is not convenient for the user to perform the triggering operation, so that the user's operating experience is not high.
  • the purpose of the embodiments of the present specification is to provide a hot zone adjustment method and device, and a client, to dynamically expand the hot zone range of the control, so that the user can conveniently perform the trigger operation and improve the user's operation experience.
  • an embodiment of the present disclosure provides a hot zone adjustment method, which is provided with a display interface; wherein the display interface includes at least two controls; the at least two controls are associated; each control has a Receiving a hot zone of the triggering instruction; the method includes: after the triggering instruction for the control is detected by the display interface, selecting a target control from the at least two controls based on the control for the triggering instruction; The target control is different from the control for the trigger instruction; the hot zone range of the target control is extended.
  • an embodiment of the present disclosure provides a client, including a display component and a processor, wherein the display component is configured to display a display interface, wherein the display interface includes at least two controls; Each of the controls has a hot zone for receiving a triggering instruction; the processor is configured to: after the triggering instruction for the control is detected by the display interface, based on the control for the triggering instruction, Selecting a target control from the at least two controls; wherein the target control is different from the control for the trigger instruction; expanding a hot zone range of the target control.
  • an embodiment of the present disclosure provides a hot zone adjusting apparatus, including: a selecting unit, configured to: after the triggering instruction for the control is detected by the display interface, the control based on the triggering instruction, from the display interface Selecting a target control from among at least two controls; wherein the at least two controls are associated; each control has a hot zone for receiving a trigger instruction; the target control is different from the control for the trigger instruction; A unit for expanding the hot zone range of the target control.
  • the client may be provided with a display interface.
  • the display interface includes at least two controls; the at least two controls are associated; each control can have a hot zone for receiving a triggering instruction.
  • the client may select a target control from the at least two controls based on the control for the triggering instruction; the hot zone range of the target control may be extended .
  • the client can extend the hot zone range of the control that the user may trigger the operation according to the control that the user currently triggers the operation, so that the user can conveniently perform the trigger operation, thereby dynamically adjusting the hot zone range of the control.
  • FIG. 1 is a flow chart of a hot zone adjustment method in an embodiment of the present specification
  • FIG. 2 is a schematic diagram of a display interface in an embodiment of the present specification
  • FIG. 3 is a partially enlarged schematic view of a button control in the display interface shown in FIG. 2 in the embodiment of the present specification;
  • FIG. 4 is a schematic diagram of another display interface in the embodiment of the present specification.
  • FIG. 5a is a schematic diagram showing the expansion of the hot zone range of the button control B in the embodiment of the present specification
  • FIG. 5b is a schematic diagram showing the expansion of the hot zone range of another button control B in the embodiment of the present specification.
  • FIG. 5c is a schematic diagram showing the expansion of the hot zone range of another button control B in the embodiment of the present specification.
  • FIG. 5d is a schematic diagram showing the expansion of the hot zone range of another button control B in the embodiment of the present specification.
  • FIG. 5e is a schematic diagram showing the expansion of the hot zone range of another button control B in the embodiment of the present specification.
  • 6a is a partially enlarged schematic view of a button control in the display interface shown in FIG. 2 in the embodiment of the present specification;
  • 6b is a schematic diagram showing the expansion of the hot zone range of the button control B in the embodiment of the present specification
  • 6c is a schematic diagram showing the expansion of the hot zone range of a button control A in the embodiment of the present specification
  • FIG. 7 is a schematic structural diagram of a function of a client in an embodiment of the present application.
  • FIG. 8 is a schematic diagram showing the functional structure of a hot zone adjusting device according to an embodiment of the present application.
  • the embodiment of the present specification provides a hot zone adjustment method.
  • the hot zone adjustment method takes the client as the execution subject.
  • the clients include, but are not limited to, mobile smartphones, tablet electronic devices, portable computers, personal digital assistants (PDAs), industrial computers, and personal computers (PCs) and the like.
  • the client can load page data to provide a display interface.
  • the client can acquire and load page data in any suitable manner.
  • the client may acquire and load page data when any combination of one or more designated keys is detected, pressed, clicked, double-clicked, or swiped.
  • the designated button can be a virtual button or a physical button.
  • the client may also acquire and load page data when the preset gesture is recognized.
  • the preset gesture may be, for example, sliding to the left or sliding to the right.
  • the client may also have a gyroscope and/or an acceleration sensor; the client may also acquire and load page data when a preset motion state is detected by the gyroscope and/or the acceleration sensor.
  • the motion state can be, for example, a sway.
  • the page data can be local to the client. As such, the client can obtain the page data locally. Of course, the page data can also be located at the server. As such, the client may send a page load request to the server; the page data fed back by the server may be received.
  • the server may be a server or a server cluster including multiple servers.
  • the display interface may be used to display service data, and the service data may be, for example, order data, payment data, commodity data, and the like.
  • the display interface may include at least two controls, including, for example, three, five, six controls, and the like.
  • the controls include, but are not limited to, button controls, image controls, text box controls, input box controls, and the like. The functions implemented by the at least two controls on the display interface are generally different.
  • the at least two controls may have an association relationship.
  • the at least two controls have an association relationship, and it can be understood that the at least two controls belong to the same component.
  • the component is usually a package of data and methods, which can perform a certain function and can provide a data interface for use of the function.
  • Each component can typically include at least one control.
  • a component can include a button control; or, can include a text box control; or, can include two button controls and a text box control.
  • the at least two controls have an association relationship, and can also be understood that the at least two controls belong to different components; the functions implemented by the at least two controls on the display interface are logically associated.
  • the display interface can include an input box control A and a button control B.
  • the input box control A can belong to the component C1, and the button control B can belong to the component C2.
  • the function implemented by the input box control A in the display interface may be the data input by the user; the function implemented by the button control B in the display interface may be the data input by the user in the input box control A.
  • each control may have a hot zone for receiving triggering instructions.
  • the hot zone range of a control is usually greater than or equal to its own size.
  • the user can trigger within the hot zone of the control.
  • the triggering operation may include, for example, a click operation, a double tap operation, a push operation, a stroke operation, a gesture operation, and the like.
  • the client may be deemed to receive a triggering instruction for the control, so that a corresponding action or command may be executed to implement the function of the control on the display interface.
  • the client may have an input device, and the user may perform a trigger operation based on the input device.
  • the input device may include, for example, a touch screen, a touch pad, a mouse, physical buttons (eg, a push button, a rocker button, etc.), a dial, a slider switch, a joystick, and the like.
  • This embodiment may include the following steps.
  • Step S12 After the triggering instruction for the control is detected by the display interface, select a target control from the at least two controls based on the control for the triggering instruction.
  • the triggering instruction may be generated when a triggering operation is detected within a hot zone of the control.
  • the triggering operation may include, for example, a click operation, a double tap operation, a push operation, a stroke operation, a gesture operation, and the like.
  • the user can perform a trigger operation within the hot zone of the control.
  • the client detects a triggering operation within a hot zone of the control, the client may be deemed to receive a triggering instruction for the control; a corresponding action or command may be executed to implement the function of the control on the display interface; and may be based on
  • the control selects a target control from the at least two controls. It should be noted that the target control is generally different from the control for the trigger instruction.
  • the control for the trigger instruction may be a control after the hot zone range is extended, or a control whose hot zone range is not extended. The process of expanding the range of the control hot zone will be described in detail in the subsequent step S14.
  • the display interface can include a sorting component, which can include a button control A and a button control B.
  • the hot zone range of button control A is equal to its own size, and the hot zone range of button control B is also equal to its own size.
  • the button control A can be used to sequentially sort according to the creation time of the application, and the button control B can be used to perform reverse sorting according to the creation time of the application.
  • the user can click within the hot zone of button control A.
  • the client detects a click operation within the hot zone of the button control A, it may be considered that the trigger instruction for the button control A is received; the application in the display interface may be sequentially sorted according to the creation time of the application. And can get the target control based on button control A.
  • each of the at least two controls may correspond to a specified control
  • the specified control may be a control of the at least two controls.
  • the client may select, as the target control, a specified control corresponding to the control for the triggering instruction from the at least two controls.
  • the triggering operation of the user for the at least two controls is generally sequential.
  • the developer can set the specified control corresponding to each of the at least two controls based on the order in which the controls trigger the operations.
  • a developer may use a control that is adjacent to the trigger operation of the control and located after the trigger operation of the control as the control Corresponding specified control.
  • the display interface may be an application list interface for displaying the name of the application and the creation time of the application.
  • the display interface can include a sorting component, which can include a button control A and a button control B.
  • the hot zone range of button control A is equal to its own size, and the hot zone range of button control B is also equal to its own size.
  • the button control A can be used to sequentially sort according to the creation time of the application, and the button control B can be used to perform reverse sorting according to the creation time of the application.
  • the display interface can include a marquee assembly.
  • the marquee assembly can be used to achieve the technical effect of carouseling two or more cards; each card can be used to display text, pictures, video, etc., or a suitable combination thereof.
  • the steer light component may include a button control C, a button control D, a button control E, and a button control F, so that the steerable light component can be used to implement the technical effect of rotating the four cards.
  • the button control C can be specifically used to display the first card;
  • the button control D can be specifically used to display the second card;
  • the button control E can be specifically used to display the third card;
  • the button control F Specifically, it can be used to display the fourth card.
  • the hot zone ranges of the button control C, the button control D, the button control E, and the button control F are respectively equal to their own sizes.
  • the developer can set the specified control corresponding to the button control C as the button control D; the specified control corresponding to the button control D can be set as the button control E; the specified control corresponding to the button control E can be set as the button control F; The specified control corresponding to the button control F is the button control C.
  • the developer may further set a specified control corresponding to each of the at least two controls based on a positional relationship of the control in the display interface. Specifically, for each of the at least two controls, the developer may also use a control of the at least two controls that is closest to the position of the control as the designated control corresponding to the control.
  • the controls in the at least two controls may have a degree of association between them.
  • the degree of association between controls can be used to indicate how closely the control implements functionality.
  • the degree of association between controls can be positively correlated with how closely they are represented.
  • the client may select, from the at least two controls, a control having the greatest degree of association with the control for the triggering instruction as the target control.
  • the display interface can include a steed light assembly.
  • the marquee assembly can be used to achieve the technical effect of carouseling two or more cards; each card can be used to display text, pictures, video, etc., or a suitable combination thereof.
  • the steer light component may include a button control C, a button control D, a button control E, and a button control F, so that the steerable light component can be used to implement the technical effect of rotating the four cards.
  • the button control C can be specifically used to display the first card; the button control D can be specifically used to display the second card; the button control E can be specifically used to display the third card; the button control F Specifically, it can be used to display the fourth card.
  • the hot zone ranges of the button control C, the button control D, the button control E, and the button control F are respectively equal to their own sizes.
  • the degree of association between the controls in the steer light component can be as shown in Table 1 above.
  • the degree of association between the button control C and the button control D, the button control E, and the button control F is 3, 2, 1 respectively; between the button control D and the button control C, the button control E, and the button control F
  • the degree of association is 1, 3, 2; the degree of association between the button control E and the button control C, the button control D, and the button control F are 2, 1, 3; the button control F and the button control C, the button control D
  • the degree of association between the button controls E is 3, 2, and 1, respectively.
  • the user can click within the hot zone of button control C.
  • the client detects a click operation within the hot zone of the button control C, it can be considered that a trigger instruction for the button control C is received; the first card can be displayed; and the button control can be obtained from the ticker component D, as the target control.
  • the triggering operation of the user for the at least two controls is generally sequential.
  • the developer can set the degree of association between the controls in the at least two controls based on the order in which the controls trigger the operations.
  • the developer can set the size of the association between the control other than the control and the control according to the distance from the control triggering operation sequence.
  • the degree of association may be set small; when the operation sequence is relatively long, the degree of association may be set to be large.
  • the developer may also set the degree of association between the controls in the at least two controls based on the positional relationship of the controls in the display interface. Specifically, for each of the at least two controls, the developer can set the size of the association between the control other than the control and the control according to the position of the control. When the position is relatively close, the degree of association may be set smaller; when the position is far, the degree of association may be set larger.
  • Step S14 Expand the hot zone range of the target control.
  • the client can extend the hot zone range of the target control by using a gap between the target control and its neighboring controls, so that the user can conveniently perform a triggering operation on the target control to improve the user experience.
  • the extending direction of the target control hot zone range may be any suitable direction, for example, upper, lower, left, right, etc., or a suitable combination thereof.
  • the extended hot zone range of the target control may be any suitable shape, such as a polygon (eg, a rectangle, a diamond, etc.), a circle, an ellipse, and the like.
  • the client in order to expand the hot zone range of the target control to a large extent, the client may further reduce the hot zone range of the trigger instruction for the control; and then the target may be expanded.
  • the hot zone range of the control It should be noted that, in view of the fact that the hot zone range of the control is usually greater than or equal to its own size, the range of the hot zone after the control for the triggering instruction is reduced is usually greater than or equal to the size of the control itself for the triggering instruction.
  • the display interface may include at least three controls.
  • the client may narrow the hot zone range of the at least three controls except the other controls of the target control; and then the target may be expanded The hot zone range of the control.
  • the client may be provided with a display interface.
  • the display interface includes at least two controls; the at least two controls are associated; each control can have a hot zone for receiving a triggering instruction.
  • the client may select a target control from the at least two controls based on the control for the triggering instruction; the hot zone range of the target control may be extended .
  • the client can extend the hot zone range of the control that the user may trigger the operation according to the control that the user currently triggers the operation, so that the user can conveniently perform the trigger operation, thereby dynamically adjusting the hot zone of the control. Scope, the technical effect of improving the user experience.
  • the client may provide a display interface.
  • the display interface may be an application list interface for displaying the name of the application and the creation time of the application.
  • the display interface can include a sorting component, which can include a button control A and a button control B.
  • the button control A can be used to sequentially sort according to the creation time of the application, and the button control B can be used to perform reverse sorting according to the creation time of the application.
  • the specified control corresponding to the button control A may be the button control B; the designated control corresponding to the button control B may be the button control A.
  • the hot zone range of button control A is equal to its own size
  • the hot zone range of button control B is also equal to its own size.
  • the shape of the button control A hot zone range may be a rectangle having a side length of 15PX (Pixel) and 10PX
  • the shape of the button control B hot zone range may be a rectangle having a side length of 15PX and 10PX.
  • the distance between the lower boundary of the button control A hot zone range and the upper boundary of the button control B hot zone range is 4PX.
  • the user can click within the hot zone of button control A.
  • the client detects a click operation within the hot zone of the button control A, it may be considered that the trigger instruction for the button control A is received; the application in the display interface may be sequentially sorted according to the creation time of the application. And can obtain the button control B as the target control based on the button control A; the hot zone range of the button control B can be expanded. Specifically, the client can move the upper boundary of the hot zone range of the button control B up by 4PX.
  • the user can also click within the hot zone of button control B.
  • the client detects a click operation within the hot zone of the button control B, it can be considered that the trigger instruction for the button control B is received; the application in the display interface can be sorted in reverse order according to the creation time of the application. And can obtain the button control A as the target control based on the button control B; the hot zone range of the button control B can be reduced; then the hot zone range of the button control A can be expanded.
  • the client may move the upper boundary of the hot zone range of the button control B downward by 4PX; then the lower boundary of the hot zone range of the button control A may be moved down by 4PX.
  • the client may utilize a common area between the button control A and the button control B to dynamically adjust the range of the hot zone of the button control A and/or the button control B according to the law of the user clicking operation.
  • the button control for the user-triggered operation is more easily clicked, thereby improving the user's operating experience.
  • the embodiment of the present specification further provides a client.
  • the client can include a display component and a processor.
  • the display component includes, but is not limited to, a liquid crystal display (LCD) display, a cathode ray tube (CRT) display, and a light emitting diode (LED) display.
  • LCD liquid crystal display
  • CRT cathode ray tube
  • LED light emitting diode
  • the display component can be used to display a display interface.
  • the display interface includes at least two controls.
  • the at least two controls are associated.
  • Each control has a hot zone for receiving trigger commands.
  • the processor can be implemented in any suitable manner.
  • a processor can employ, for example, a microprocessor or processor and a computer readable medium, logic gate, switch, or application-specific integrated circuit (such as software or firmware) that can be executed by the (micro)processor.
  • ASIC Application Specific Integrated Circuit
  • programmable logic controller programmable logic controller and embedded microcontroller form, etc.
  • the processor may be coupled to the display component; and may be configured to select a target control from the at least two controls based on a control for the trigger instruction after the display interface detects a trigger instruction for the control ; can expand the hot zone range of the target control.
  • the target control is different from the control for the trigger instruction;
  • the embodiment of the present specification also provides a hot zone adjusting device.
  • the hot zone adjustment device includes a selection unit 22 and an expansion unit 24.
  • the selecting unit 22 may be configured to: after the triggering instruction for the control is detected by the display interface, select a target from at least two controls included in the display interface based on the control for the triggering instruction. a control; wherein the at least two controls are associated; each control has a hot zone for receiving a trigger instruction; the target control is different from a control for the trigger instruction;
  • the expansion unit 24 can be used to expand the hot zone range of the target control.
  • PLD Programmable Logic Device
  • FPGA Field Programmable Gate Array
  • HDL Hardware Description Language
  • the system, device, module or unit illustrated in the above embodiments may be implemented by a computer chip or an entity, or by a product having a certain function.
  • the system, device, module or unit illustrated in the above embodiments may be implemented by a computer chip or an entity, or by a product having a certain function.
  • a typical implementation device is a computer.
  • the computer can be, for example, a personal computer, a laptop computer, a cellular phone, a camera phone, a smart phone, a personal digital assistant, a media player, a navigation device, an email device, a game console, a tablet computer, a wearable device, or A combination of any of these devices.
  • the present specification can be implemented by means of software plus a necessary general hardware platform. Based on such understanding, the technical solution of the present specification may be embodied in the form of a software product in essence or in the form of a software product, which may be stored in a storage medium such as a ROM/RAM or a disk. , an optical disk, etc., includes instructions for causing a computer device (which may be a personal computer, server, or network device, etc.) to perform the methods described in various embodiments of the present specification or portions of the embodiments.
  • a computer device which may be a personal computer, server, or network device, etc.
  • This description can be used in a variety of general purpose or special purpose computer system environments or configurations.
  • program modules include routines, programs, objects, components, data structures, and the like that perform particular tasks or implement particular abstract data types.
  • the present specification can also be practiced in distributed computing environments where tasks are performed by remote processing devices that are connected through a communication network.
  • program modules can be located in both local and remote computer storage media including storage devices.

Abstract

本说明书实施例提供一种热区调整方法和装置、客户端。所述方法包括:在显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述显示界面包括的至少两个控件中选取目标控件;其中,所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;所述目标控件与所述触发指令针对的控件不同;扩展所述目标控件的热区范围。

Description

热区调整方法和装置、客户端 技术领域
本说明书实施例涉及计算机技术领域,特别涉及一种热区调整方法和装置、客户端。
背景技术
通常地,客户端显示的界面中可以包括有一个或多个控件。基于所述一个或多个控件,所述客户端可以与用户进行交互。具体地,所述控件可以具有用于接收触发指令的热区。用户可以在控件的热区范围内进行触发操作。所述触发操作例如可以包括单击操作、双击操作、按压操作等等。所述客户端在该控件的热区范围内检测到触发操作时,可以执行对应的动作或命令以实现该控件在所述显示界面的功能。
在一些情况下,受限于所述客户端屏幕的尺寸,或者,所述界面中用于布局控件的区域的尺寸,所述界面中控件的热区范围有可能比较小。较小的热区范围不便于用户进行触发操作,从而使得用户操作体验不高。
发明内容
本说明书实施例的目的是提供一种热区调整方法和装置、客户端,以动态扩展控件的热区范围,便于用户能够方便地进行触发操作,提高用户的操作体验。
为实现上述目的,本说明书实施例提供一种热区调整方法,提供有显示界面;其中,所述显示界面包括有至少两个控件;所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;所述方法包括:在所述显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件;其中,所述目标控件与所述触发指令针对的控件不同;扩展所述目标控件的热区范围。
为实现上述目的,本说明书实施例提供一种客户端,包括显示组件和处理器;所述显示组件,用于显示显示界面;其中,所述显示界面包括有至少两个控件;所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;所述处理器,用于在所述显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件;其中,所述目标控件与所述触发指令针对的控件不同;扩展所述目标控件的热区范围。
为实现上述目的,本说明书实施例提供一种热区调整装置,包括:选取单元,用于在显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述显示界面包括的至少两个控件中选取目标控件;其中,所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;所述目标控件与所述触发指令针对的控件不同;扩展单元,用于扩展所述目标控件的热区范围。
由以上本说明书实施例提供的技术方案可见,本说明书实施例中,客户端可以提供有显示界面。所述显示界面包括有至少两个控件;所述至少两个控件相关联;每个控件可以具有用于接收触发指令的热区。在所述显示界面检测到针对控件的触发指令以后,所述客户端可以基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件;可以扩展所述目标控件的热区范围。这样,所述客户端可以根据用户当前触发操作针对的控件,扩展用户后续有可能进行触发操作的控件的热区范围,以便于用户能够方便地进行触发操作,从而实现动态调整控件的热区范围,提高用户体验的技术效果。
附图说明
为了更清楚地说明本说明书实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本说明书中记载的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本说明书实施例中一种热区调整方法的流程图;
图2为本说明书实施例中一种显示界面的示意图;
图3为本说明书实施例中图2所示显示界面中按钮控件的局部放大示意图;
图4为本说明书实施例中另一种显示界面的示意图;
图5a为本说明书实施例中一种按钮控件B的热区范围扩展示意图;
图5b为本说明书实施例中另一种按钮控件B的热区范围扩展示意图;
图5c为本说明书实施例中另一种按钮控件B的热区范围扩展示意图;
图5d为本说明书实施例中另一种按钮控件B的热区范围扩展示意图;
图5e为本说明书实施例中另一种按钮控件B的热区范围扩展示意图;
图6a为本说明书实施例中图2所示显示界面中按钮控件的局部放大示意图;
图6b为本说明书实施例中一种按钮控件B的热区范围扩展示意图;
图6c为本说明书实施例中一种按钮控件A的热区范围扩展示意图;
图7为本申请实施例中一种客户端的功能结构示意图;
图8为本申请实施例中一种热区调整装置的功能结构示意图。
具体实施方式
下面将结合本说明书实施例中的附图,对本说明书实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本说明书一部分实施例,而不是全部的实施例。基于本说明书中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都应当属于本说明书保护的范围。
请参阅图1。本说明书实施例提供一种热区调整方法。所述热区调整方法以客户端为执行主体。所述客户端包括但不限于移动智能手机、平板电子设备、便携式计算机、个人数字助理(PDA)、工控机、和个人计算机(PC机)等。
在本实施例中,所述客户端可以加载页面数据以提供显示界面。
所述客户端可以采用任意适当的方式来获取并加载页面数据。例如,所述客户端可以是在检测到一个或多个指定按键的任意组合,被按下、点击、双击、或划过时,来获取并加载页面数据。所述指定按键可以为虚拟按键或物理按键。又如,所述客户端还可以是在识别到预置手势时,来获取并加载页面数据。所述预置手势例如可以为向左滑动或向右滑动。又如,所述客户端还可以具有陀螺仪和/或加速度传感器;所述客户端还可以是在通过陀螺仪和/或加速传感器检测到预置运动状态时,来获取并加载页面数据。所述运动状态例如可以为甩动。
所述页面数据可以位于所述客户端本地。如此,所述客户端可以从本地获取所述页面数据。当然,所述页面数据还可以位于服务器。如此,所述客户端可以向所述服务器发送页面加载请求;可以接收所述服务器反馈的页面数据。所述服务器可以为一个服务器,还可以为包括多个服务器的服务器集群。
在本实施例中,所述显示界面可以用于显示业务数据,所述业务数据例如可以为订单数据、支付数据、商品数据等等。所述显示界面可以包括至少两个控件,例如包括3个、5个、6个控件等等。所述控件包括但不限于按钮控件、图像控件、文本框控件、输入框控件等等。所述至少两个控件在所述显示界面实现的功能通常是不相同的。
所述至少两个控件可以具有关联关系。这里,所述至少两个控件具有关联关系,可以理解为:所述至少两个控件隶属于相同的组件(Component)。其中,所述组件通常是对数据和方法的封装,其能够完成某种功能并可以对外提供数据接口以供使用该功能。每个组件通常可以包括至少一个控件。例如,某一组件可以包括一个按钮控件;或者,可以包括一个文本框控件;又或者,可以包括两个按钮控件和一个文本框控件。当然,所述至少两个控件具有关联关系,还可以理解为:所述至少两个控件隶属于不同的组件;所述至少两个控件在所述显示界面实现的功能在逻辑上相关联。例如,所述显示界面可以包括输入框控件A和按钮控件B。所述输入框控件A可以隶属于组件C1,所述按钮控件B可以隶属于组件C2。所述输入框控件A在所述显示界面实现的功能可以为接收用户输入的数据;所述按钮控件B在所述显示界面实现的功能可以为上传用户在所述输入框控件A输入的数据。
在本实施例中,每个控件可以具有用于接收触发指令的热区。控件的热区范围通常大于或等于其自身的大小。用户可以在控件的热区范围内进行触发操作。所述触发操作例如可以包括单击操作、双击操作、按压操作、划过操作、手势操作等等。所述客户端在控件的热区范围内检测到触发操作时,可以认为接收到针对该控件的触发指令,从而可以执行对应的动作或命令以实现该控件在所述显示界面的功能。具体地,所述客户端可以具有输入设备,用户可以基于所述输入设备进行触发操作。所述输入设备例如可以包括触摸屏、触摸板、鼠标、物理按钮(例如按压按钮,摇杆按钮等等)、拨号盘、滑块开关、操纵杆等等。
本实施例可以包括以下步骤。
步骤S12:在所述显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件。
在本实施例中,所述触发指令可以是在控件的热区范围内检测到触发操作时产生。所述触发操作例如可以包括单击操作、双击操作、按压操作、划过操作、手势操作等等。具体地,用户可以在控件的热区范围内进行触发操作。所述客户端在控件的热区范围内检测到触发操作时,可以认为接收到针对该控件的触发指令;可以执行对应的动作或命令以实现该控件在所述显示界面的功能;并可以基于该控件从所述至少两个控件中选取目标控件。需要说明的是,所述目标控件与所述触发指令针对的控件通常不同。所述触发指令针对的控件可以为热区范围扩展后的控件,也可以为热区范围没有经过扩展的控件。控件热区范围扩展的过程在后续步骤S14会有详细介绍。
请一并参阅图2和图3。例如,所述显示界面可以包括排序组件,所述排序组件可以包括按钮控件A和按钮控件B。按钮控件A的热区范围等于其自身的大小,按钮控件B的热区范围也等于其自身的大小。所述按钮控件A可以用于根据应用的创建时间进行顺序排序,所述按钮控件B可以用于根据应用的创建时间进行倒序排序。
用户可以在按钮控件A的热区范围内进行单击操作。所述客户端在按钮控件A的热区范围内检测到单击操作时,可以认为接收到针对按钮控件A的触发指令;可以根据应用的创建时间,对所述显示界面中的应用进行顺序排序;并可以基于按钮控件A获取目标控件。
在本实施例中,所述至少两个控件中的每个控件可以对应有指定控件,所述指定控件可以为所述至少两个控件中的控件。如此,在所述显示界面检测到针对控件的触发指令以后,所述客户端可以从所述至少两个控件中,选取所述触发指令针对的控件对应的指定控件,作为目标控件。
在本实施例的一个实施方式中,用户针对所述至少两个控件的触发操作通常是具有先后顺序的。如此,开发人员可以基于控件触发操作的先后顺序,设定所述至少两个控件中每个控件对应的指定控件。具体地,针对所述至少两个控件中的每个控件,开发人员可以将所述至少两个控件中与该控件的触发操作相邻、并且位于该控件的触发操作以后的控件,作为该控件对应的指定控件。
请参阅图2。例如,所述显示界面可以为应用列表界面,用于显示应用的名称以及应用的创建时间。所述显示界面可以包括排序组件,所述排序组件可以包括按钮控件A和按钮控件B。按钮控件A的热区范围等于其自身的大小,按钮控件B的热区范围也等于其自身的大小。所述按钮控件A可以用于根据应用的创建时间进行顺序排序,所述按钮控件B可以用于根据应用的创建时间进行倒序排序。
用户在按钮控件A的热区范围内进行触发操作以对所述显示界面中的应用进行顺序排序以后,有较大的可能性会在按钮控件B的热区范围内进行触发操作以对所述显示界面中的应用进行倒序排序。相对应地,用户在按钮控件B的热区范围内进行触发操作以对所述显示界面中的应用进行倒序排序以后,有较大的可能性会在按钮控件A的热区范围内进行触发操作以对所述显示界面中的应用进行顺序排序。如此,开发人员可以设定按钮控件A对应的指定控件为按钮控件B;可以设定按钮控件B对应的指定控件为按钮控件A。
请参阅图4。又如,所述显示界面可以包括走马灯组件。所述走马灯组件可以用于实现将两个或两个以上数量的卡片进行轮播显示的技术效果;每个卡片可以用于显示文字、图片、视频等,或其适当组合。具体地,所述走马灯组件可以包括按钮控件C、按钮控件D、按钮控件E、按钮控件F,从而,所述走马灯组件可以用于实现将四个卡片进行轮播显示的技术效果。所述按钮控件C具体可以用于显示第一张卡片;所述按钮控件D具体可以用于显示第二张卡片;所述按钮控件E具体可以用于显示第三张卡片;所述按钮控件F具体可以用于显示第四张卡片。所述按钮控件C、按钮控件D、按钮控件E、按钮控件F的热区范围分别等于其自身的大小。
用户在按钮控件C的热区范围内进行触发操作以显示第一张卡片以后,有较大的可能性会在按钮控件D的热区范围内进行触发操作以显示第二张卡片。相类似地,用户在按钮控件D的热区范围内进行触发操作以显示第二张卡片以后,有较大的可能性会在按钮控件E的热区范围内进行触发操作以显示第三张卡片;用户在按钮控件E的热区范围内进行触发操作以显示第三张卡片以后,有较大的可能性会在按钮控件F的热区范围内进行触发操作以显示第四张卡片;用户在按钮控件F的热区范围内进行触发操作以显示第四张卡片以后,有较大的可能性会在按钮控件C的热区范围内进行触发操作以显示第一张卡片。如此,开发人员可以设定按钮控件C对应的指定控件为按钮控件D;可以设定按钮控件D对应的指定控件为按钮控件E;可以设定按钮控件E对应的指定控件为按钮控件F;可以设定按钮控件F对应的指定控件为按钮控件C。
在本实施例的另一个实施方式中,开发人员还可以基于控件在所述显示界面中的位置关系,设定所述至少两个控件中每个控件对应的指定控件。具体地,针对所述至少两个控件中的每个控件,开发人员还可以将所述至少两个控件中与该控件的位置最为接近的控件,作为该控件对应的指定控件。
以上列举出了开发人员设定所述至少两个控件中每个控件对应的指定控件的过程。本领域技术人员应当能够理解,在实际中开发人员还可以采用其它的方式,设定所述至少两个控件中每个控件对应的指定控件,本实施例对此并不做具体限定。
或者,在本实施例中,所述至少两个控件中的控件之间可以具有关联度。控件之间的关联度可以用于表示控件实现功能之间的密切程度。控件之间的关联度与其表示的密切程度可以正相关。如此,在所述显示界面检测到针对控件的触发指令以后,所述客户端可以从所述至少两个控件中,选取与所述触发指令针对的控件具有最大关联度的控件,作为目标控件。
例如,请参阅图4。所述显示界面可以包括走马灯组件。所述走马灯组件可以用于实现将两个或两个以上数量的卡片进行轮播显示的技术效果;每个卡片可以用于显示文字、图片、视频等,或其适当组合。具体地,所述走马灯组件可以包括按钮控件C、按钮控件D、按钮控件E、按钮控件F,从而,所述走马灯组件可以用于实现将四个卡片进行轮播显示的技术效果。所述按钮控件C具体可以用于显示第一张卡片;所述按钮控件D具体可以用于显示第二张卡片;所述按钮控件E具体可以用于显示第三张卡片;所述按钮控件F具体可以用于显示第四张卡片。所述按钮控件C、按钮控件D、按钮控件E、按钮控件F的热区范围分别等于其自身的大小。
表1
Figure PCTCN2018099943-appb-000001
所述走马灯组件中控件之间的关联度可以如上述表1所示。上述表1中,按钮控件C与按钮控件D、按钮控件E、按钮控件F之间的关联度分别为3、2、1;按钮控件D与按钮控件C、按钮控件E、按钮控件F之间的关联度分别为1、3、2;按钮控件E与按钮控件C、按钮控件D、按钮控件F之间的关联度分别为2、1、3;按钮控件F与按钮控件C、按钮控件D、按钮控件E之间的关联度分别为3、2、1。
用户可以在按钮控件C的热区范围内进行单击操作。所述客户端在按钮控件C的热区范围内检测到单击操作时,可以认为接收到针对按钮控件C的触发指令;可以显示第一张卡片;并可以从所述走马灯组件中获取按钮控件D,作为目标控件。
在本实施例的一个实施方式中,用户针对所述至少两个控件的触发操作通常是具有先后顺序的。如此,开发人员可以基于控件触发操作的顺序,设定所述至少两个控件中控件之间的关联度。具体地,针对所述至少两个控件中的每个控件,开发人员可以按照与该控件触发操作顺序的远近,设定除去该控件以外其它的控件与该控件之间关联度的大小。在操作顺序较近时,可以将所述关联度设定的较小;在操作顺序较远时,可以将所述关联度设定的较大。
在本实施例的另一个实施方式中,开发人员还可以基于控件在所述显示界面中的位 置关系,设定所述至少两个控件中控件之间的关联度。具体地,针对所述至少两个控件中的每个控件,开发人员可以按照与该控件位置的远近,设定除去该控件以外其它的控件与该控件之间关联度的大小。在位置较近时,可以将所述关联度设定的较小;在位置较远时,可以将所述关联度设定的较大。
以上列举出了开发人员设定所述至少两个控件中控件之间关联度的过程。本领域技术人员应当能够理解,在实际中开发人员还可以采用其它的方式,设定所述至少两个控件中控件之间的关联度。
步骤S14:扩展所述目标控件的热区范围。
请一并参阅图2、图3、图5a、图5b、图5c、图5d和图5e。在本实施例中,所述目标控件与其相邻控件之间通常具有间隙。如此,所述客户端可以使用所述目标控件与其相邻控件之间的间隙,扩展所述目标控件的热区范围,以便于用户能够方便地针对所述目标控件进行触发操作,提高用户体验。所述目标控件热区范围的扩展方向可以为任意适当的方向,例如,上方、下方、左侧、右侧等,或其适当组合。所述目标控件扩展后的热区范围可以为任意适当的形状,例如多边形(例如矩形、菱形等等)、圆形、椭圆形等等。
在本实施例的一个实施方式中,为了能够较大限度的扩展所述目标控件的热区范围,所述客户端还可以缩小所述触发指令针对控件的热区范围;继而可以扩展所述目标控件的热区范围。需要说明的是,鉴于控件的热区范围通常大于或等于其自身的大小,所述触发指令针对的控件缩小后的热区范围,通常大于或等于所述触发指令针对的控件自身的大小。
在本实施例的一个实施方式中,所述显示界面可以包括有至少三个控件。如此,为了能够较大限度的扩展所述目标控件的热区范围,所述客户端可以缩小所述至少三个控件中除去所述目标控件以外其它控件的热区范围;继而可以扩展所述目标控件的热区范围。
在本实施例中,所述客户端可以提供有显示界面。所述显示界面包括有至少两个控件;所述至少两个控件相关联;每个控件可以具有用于接收触发指令的热区。在所述显示界面检测到针对控件的触发指令以后,所述客户端可以基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件;可以扩展所述目标控件的热区范围。这样,所述客户端可以根据用户当前触发操作针对的控件,扩展用户后续有可能进行触发操作 的控件的热区范围,以便于用户后续能够方便地进行触发操作,从而实现动态调整控件的热区范围,提高用户体验的技术效果。
请一并参阅图2、图6a、图6b和图6c。在本实施例的一个场景示例中,所述客户端可以提供显示界面。所述显示界面可以为应用列表界面,用于显示应用的名称以及应用的创建时间。所述显示界面可以包括排序组件,所述排序组件可以包括按钮控件A和按钮控件B。所述按钮控件A可以用于根据应用的创建时间进行顺序排序,所述按钮控件B可以用于根据应用的创建时间进行倒序排序。按钮控件A对应的指定控件可以为按钮控件B;按钮控件B对应的指定控件可以为按钮控件A。
在本场景示例中,按钮控件A的热区范围等于其自身的大小,按钮控件B的热区范围也等于其自身的大小。具体地,按钮控件A热区范围的形状可以为边长为15PX(Pixel,像素)和10PX的矩形;按钮控件B热区范围的形状可以为边长为15PX和10PX的矩形。按钮控件A热区范围的下边界与按钮控件B热区范围的上边界之间的距离为4PX。
在本场景示例中,用户可以在按钮控件A的热区范围内进行单击操作。所述客户端在按钮控件A的热区范围内检测到单击操作时,可以认为接收到针对按钮控件A的触发指令;可以根据应用的创建时间,对所述显示界面中的应用进行顺序排序;并可以基于按钮控件A获取按钮控件B作为目标控件;可以扩展按钮控件B的热区范围。具体地,所述客户端可以将按钮控件B的热区范围的上边界向上移动4PX。
在本场景示例中,用户还可以在按钮控件B的热区范围内进行单击操作。所述客户端在按钮控件B的热区范围内检测到单击操作时,可以认为接收到针对按钮控件B的触发指令;可以根据应用的创建时间,对所述显示界面中的应用进行倒序排序;并可以基于按钮控件B获取按钮控件A作为目标控件;可以缩小按钮控件B的热区范围;继而可以扩展按钮控件A的热区范围。具体地,所述客户端可以将按钮控件B的热区范围的上边界向下移动4PX;继而可以将按钮控件A的热区范围的下边界向下移动4PX。
在本场景示例中,所述客户端可以利用按钮控件A和按钮控件B之间的公共区域,根据用户点击操作的规律,动态调整按钮控件A和/或按钮控件B的热区的范围,使得用户触发操作针对的按钮控件更容易被点击,从而提高了用户的操作体验。
请参阅图7。本说明书实施例还提供一种客户端。所述客户端可以包括显示组件和处理器。
在本实施例中,所述显示组件包括但不限于液晶(Liquid Crystal Display,LCD)显 示器、阴极射线管(Cathode Ray Tube,CRT)显示器、和发光二极管(Light Emitting Diode,LED)显示器等。
所述显示组件可以用于显示显示界面。所述显示界面包括有至少两个控件。所述至少两个控件相关联。每个控件具有用于接收触发指令的热区。
在本实施例中,所述处理器可以按任何适当的方式实现。例如,处理器可以采取例如微处理器或处理器以及存储可由该(微)处理器执行的计算机可读程序代码(例如软件或固件)的计算机可读介质、逻辑门、开关、专用集成电路(Application Specific Integrated Circuit,ASIC)、可编程逻辑控制器和嵌入微控制器的形式等等。
所述处理器,可以耦合到所述显示组件;可以用于在所述显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件;可以扩展所述目标控件的热区范围。所述目标控件与所述触发指令针对的控件不同;
上述实施例公开的客户端,其显示组件和处理器实现的具体功能,可以与本说明书中的前述实施例对照进行解释。
请参阅图8。本说明书实施例还提供一种热区调整装置。所述热区调整装置包括选取单元22和扩展单元24。
在本实施例中,所述选取单元22,可以用于在显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述显示界面包括的至少两个控件中选取目标控件;其中,所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;所述目标控件与所述触发指令针对的控件不同;
在本实施例中,所述扩展单元24,可以用于扩展所述目标控件的热区范围。
需要说明的是,本说明书中的各个实施例均采用递进的方式描述,各个实施例之间相同相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。尤其,对于客户端实施例和热区调整装置实施例而言,由于其基本相似于热区调整方法实施例,所以描述的比较简单,相关之处参见热区调整方法实施例的部分说明即可。
另外,可以理解的是,所属领域技术人员在阅读本说明书文件之后,可以无需创造性劳动想到本说明书文件中列举的部分或全部实施例之间可以组合,这些组合也在本说明书公开和保护的范围内。
在20世纪90年代,对于一个技术的改进可以很明显地区分是硬件上的改进(例如, 对二极管、晶体管、开关等电路结构的改进)还是软件上的改进(对于方法流程的改进)。然而,随着技术的发展,当今的很多方法流程的改进已经可以视为硬件电路结构的直接改进。设计人员几乎都通过将改进的方法流程编程到硬件电路中来得到相应的硬件电路结构。因此,不能说一个方法流程的改进就不能用硬件实体模块来实现。例如,可编程逻辑器件(Programmable Logic Device,PLD)(例如现场可编程门阵列(Field Programmable Gate Array,FPGA))就是这样一种集成电路,其逻辑功能由用户对器件编程来确定。由设计人员自行编程来把一个数字系统“集成”在一片PLD上,而不需要请芯片制造厂商来设计和制作专用的集成电路芯片2。而且,如今,取代手工地制作集成电路芯片,这种编程也多半改用“逻辑编译器(logic compiler)”软件来实现,它与程序开发撰写时所用的软件编译器相类似,而要编译之前的原始代码也得用特定的编程语言来撰写,此称之为硬件描述语言(Hardware Description Language,HDL),而HDL也并非仅有一种,而是有许多种,如ABEL(Advanced Boolean Expression Language)、AHDL(Altera Hardware Description Language)、Confluence、CUPL(Cornell University Programming Language)、HDCal、JHDL(Java Hardware Description Language)、Lava、Lola、MyHDL、PALASM、RHDL(Ruby Hardware Description Language)等,目前最普遍使用的是VHDL(Very-High-Speed Integrated Circuit Hardware Description Language)与Verilog2。本领域技术人员也应该清楚,只需要将方法流程用上述几种硬件描述语言稍作逻辑编程并编程到集成电路中,就可以很容易得到实现该逻辑方法流程的硬件电路。
上述实施例阐明的系统、装置、模块或单元,具体可以由计算机芯片或实体实现,或者由具有某种功能的产品来实现。
上述实施例阐明的系统、装置、模块或单元,具体可以由计算机芯片或实体实现,或者由具有某种功能的产品来实现。一种典型的实现设备为计算机。具体的,计算机例如可以为个人计算机、膝上型计算机、蜂窝电话、相机电话、智能电话、个人数字助理、媒体播放器、导航设备、电子邮件设备、游戏控制台、平板计算机、可穿戴设备或者这些设备中的任何设备的组合。
通过以上的实施方式的描述可知,本领域的技术人员可以清楚地了解到本说明书可借助软件加必需的通用硬件平台的方式来实现。基于这样的理解,本说明书的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得 一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本说明书各个实施例或者实施例的某些部分所述的方法。
本说明书可用于众多通用或专用的计算机系统环境或配置中。例如:个人计算机、服务器计算机、手持设备或便携式设备、平板型设备、多处理器系统、基于微处理器的系统、置顶盒、可编程的消费电子设备、网络PC、小型计算机、大型计算机、包括以上任何系统或设备的分布式计算环境等等。
本说明书可以在由计算机执行的计算机可执行指令的一般上下文中描述,例如程序模块。一般地,程序模块包括执行特定任务或实现特定抽象数据类型的例程、程序、对象、组件、数据结构等等。也可以在分布式计算环境中实践本说明书,在这些分布式计算环境中,由通过通信网络而被连接的远程处理设备来执行任务。在分布式计算环境中,程序模块可以位于包括存储设备在内的本地和远程计算机存储介质中。
虽然通过实施例描绘了本说明书,本领域普通技术人员知道,本说明书有许多变形和变化而不脱离本说明书的精神,希望所附的权利要求包括这些变形和变化而不脱离本说明书的精神。

Claims (10)

  1. 一种热区调整方法,提供有显示界面;其中,所述显示界面包括有至少两个控件;所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;所述方法包括:
    在所述显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件;其中,所述目标控件与所述触发指令针对的控件不同;
    扩展所述目标控件的热区范围。
  2. 如权利要求1所述的方法,所述至少两个控件隶属于相同的组件。
  3. 如权利要求1所述的方法,所述触发指令是在控件的热区范围内检测到触发操作时产生。
  4. 如权利要求1所述的方法,所述至少两个控件中的每个控件对应有指定控件;相应地,所述从所述至少两个控件中选取目标控件,包括:
    从所述至少两个控件中,选取所述触发指令针对控件对应的指定控件,作为目标控件。
  5. 如权利要求1所述的方法,所述至少两个控件中的控件之间具有关联度;相应地,所述从所述至少两个控件中选取目标控件,包括:
    从所述至少两个控件中,选取与所述触发指令针对控件具有最大关联度的控件,作为目标控件。
  6. 如权利要求1所述的方法,在扩展所述目标控件的热区范围之前,所述方法还包括:缩小所述触发指令针对控件的热区范围。
  7. 如权利要求1所述的方法,所述显示界面包括有至少三个控件;相应地,在扩展所述目标控件的热区范围之前,所述方法还包括;缩小所述至少三个控件中除去所述目标控件以外其它控件的热区范围。
  8. 如权利要求1所述的方法,所述扩展所述目标控件的热区范围,包括:
    使用所述目标控件与其相邻控件之间的间隙,扩展所述目标控件的热区范围。
  9. 一种客户端,包括显示组件和处理器;
    所述显示组件,用于显示显示界面;其中,所述显示界面包括有至少两个控件;所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;
    所述处理器,用于在所述显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述至少两个控件中选取目标控件;其中,所述目标控件与所述触发指令针对的控件不同;扩展所述目标控件的热区范围。
  10. 一种热区调整装置,包括:
    选取单元,用于在显示界面检测到针对控件的触发指令以后,基于所述触发指令针对的控件,从所述显示界面包括的至少两个控件中选取目标控件;其中,所述至少两个控件相关联;每个控件具有用于接收触发指令的热区;所述目标控件与所述触发指令针对的控件不同;
    扩展单元,用于扩展所述目标控件的热区范围。
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