WO2019185007A1 - 一种窗口控制栏的布局方法、装置及设备 - Google Patents

一种窗口控制栏的布局方法、装置及设备 Download PDF

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Publication number
WO2019185007A1
WO2019185007A1 PCT/CN2019/080368 CN2019080368W WO2019185007A1 WO 2019185007 A1 WO2019185007 A1 WO 2019185007A1 CN 2019080368 W CN2019080368 W CN 2019080368W WO 2019185007 A1 WO2019185007 A1 WO 2019185007A1
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WIPO (PCT)
Prior art keywords
window
information
layout
control bar
detection information
Prior art date
Application number
PCT/CN2019/080368
Other languages
English (en)
French (fr)
Inventor
罗永浩
魏巍
汪杨袤
Original Assignee
北京字节跳动网络技术有限公司
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Publication date
Application filed by 北京字节跳动网络技术有限公司 filed Critical 北京字节跳动网络技术有限公司
Priority to SG11202009614QA priority Critical patent/SG11202009614QA/en
Priority to US16/979,381 priority patent/US11455071B2/en
Publication of WO2019185007A1 publication Critical patent/WO2019185007A1/zh

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Classifications

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    • H04N21/443OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
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Definitions

  • the present application relates to the field of the Internet, and in particular, to a method, device, and device for laying out a window control bar.
  • Human-Computer Interaction Technology refers to the technology of realizing human-computer dialogue in an effective way through computer input and output devices.
  • AI Artificial Intelligence
  • AI big-screen Internet has been regarded as the development of the Internet. The next whistle, it can bring more new business opportunities to the Internet industry.
  • the interaction between large screen and human beings is a kind of human-computer interaction, which has gradually been introduced by various industries, ranging from education and national defense to small office and exhibitions.
  • the application fields are very extensive.
  • the size of large screen display screens has become larger and larger, and in turn, the size of display screens in human-computer interaction has become larger and larger.
  • the size of the large-screen display screen is too large, it may bring clicks or other operational difficulties, for example, it is difficult for a window displayed on a large-screen display to perform a click operation outside the range of physical conditions. That is to say, the prior art cannot adjust the layout of the window control bar displayed on the screen according to various information of the large-screen display screen, and it is inconvenient for the user to perform various operations on the screen, resulting in a bad user experience.
  • the present application provides a method, a device and a device for laying out a window control bar.
  • the specific technical solutions are as follows:
  • the present application provides a method for laying out a window control bar, the method being applied to a smart terminal, the smart terminal being connected to a large screen display, and the large screen display displaying at least one window, the method include:
  • the smart terminal receives detection information from the large screen display, and the detection information includes screen operation information or screen placement information;
  • the smart terminal determines, in a preset window layout table, a window layout position corresponding to the detection information; the window layout table stores a correspondence between various detection information and a window layout position;
  • the smart terminal invokes a preset window control bar layout interface, and lays out a window control bar on the window displayed on the large screen display according to the window layout position.
  • the detection information includes screen operation information, where the screen operation information includes touch screen operation information and mouse operation information;
  • the smart terminal receives detection information from the large screen display, including:
  • the smart terminal receives the touch screen operation information sent by the large screen display when detecting a touch screen operation;
  • the smart terminal receives the mouse operation information that is sent when the large screen display detects a mouse operation.
  • the window layout table stores a correspondence between the touch screen operation information and a preset position below the window, and a correspondence between the mouse operation information and a preset position above the window.
  • the detection information includes screen placement information; and the screen placement information includes placement angle information of the large screen display;
  • the smart terminal receives detection information from the large screen display, including:
  • the smart terminal receives the placement angle information of the large screen display detected by the gravity sensor of the large screen display.
  • the window layout table stores a correspondence between the horizontal placement of the large-screen display and a preset position below the window, and the vertical display of the large-screen display and the preset position above the window Correspondence.
  • the method further includes:
  • the present application provides a layout device for a window control bar, the device is applied to a smart terminal, and the smart terminal is connected with a large screen display, and the large screen display displays at least one window, the device include:
  • a receiving unit configured to receive detection information from the large screen display, where the detection information includes screen operation information or screen placement information;
  • a determining unit configured to determine, in a preset window layout table, a window layout position corresponding to the detection information; the window layout table stores a correspondence between various detection information and a window layout position; and a layout unit is configured to: The preset window control bar layout interface is called, and the window control bar on the window displayed on the large screen display is laid out according to the window layout position.
  • the detection information includes screen operation information, where the screen operation information includes touch screen operation information and mouse operation information;
  • the receiving unit includes:
  • a first receiving subunit configured to receive the touch screen operation information sent by the large screen display when detecting a touch screen operation
  • a second receiving subunit configured to receive the mouse operation information sent by the large screen display when detecting a mouse operation.
  • the window layout table stores a correspondence between the touch screen operation information and a preset position below the window, and a correspondence between the mouse operation information and a preset position above the window.
  • the detection information includes screen placement information; and the screen placement information includes placement angle information of the large screen display;
  • the receiving unit includes:
  • a third receiving subunit configured to receive the placement angle information of the large screen display detected by the gravity sensor of the large screen display.
  • the window layout table stores a correspondence between the horizontal placement of the large-screen display and a preset position below the window, and the vertical display of the large-screen display and the preset position above the window Correspondence.
  • the device further includes:
  • an updating unit configured to update a correspondence between various detection information stored in the window layout table and a window layout position.
  • the present application provides a layout device for a window control bar, the device including a memory and a processor.
  • the memory is configured to store program code and transmit the program code to the processor; the processor is configured to execute the window according to any one of the foregoing first aspects according to the instruction in the program code The layout method of the control bar.
  • the present application provides a method for laying out a window control bar, the method being applied to an intelligent terminal, the smart terminal includes or connected with a display device, and the display device displays at least one window, the method include:
  • the smart terminal receives detection information, where the detection information includes screen operation information and/or screen placement information;
  • the smart terminal layouts a window control bar on a window displayed on the display device according to the window layout manner corresponding to the detection information.
  • the detection information further includes preset instruction information, where the preset instruction information includes voice instruction information and/or motion track information and/or tap operation information.
  • the motion track information includes a motion direction
  • the corresponding relationship between the preset detection information and the window layout manner includes: the motion direction corresponding window control bar is opposite to the window body portion.
  • the direction of motion comprises a sliding direction of the contact or a direction of movement of the signal of the external input device on the display device.
  • the corresponding relationship between the preset detection information and the window layout manner includes: a detection information corresponding to a window control column setting position relative to the window body portion, and/or a detection information corresponding to the zoom window control The size of the bar.
  • the screen operation information includes touch screen operation information and/or external input device operation information.
  • the correspondence between the preset detection information and the window layout manner includes at least one of the following correspondences:
  • the touch screen operation information corresponding window control bar is set below the window main body portion, and/or corresponding to the enlargement window control column;
  • the external input device operation information corresponding to the window control bar is set relative to the upper portion of the window body portion, and/or corresponding to the reduced window control column;
  • the corresponding window control bar is disposed below the window body portion, and/or corresponds to the magnification window control column.
  • the screen placement information includes a placement angle of the display device.
  • the correspondence between the preset detection information and the window layout manner includes at least one of the following correspondences:
  • the corresponding window control bar is disposed below the window body portion, and the a is between 0 degrees and 90 degrees;
  • the window layout manner corresponding to the detection information is a window layout manner corresponding to the touch screen operation information; when the detection information is not When the touch screen operation information is included but the screen placement information is included, the window layout manner corresponding to the detection information is a window layout manner corresponding to the screen placement information;
  • the method further includes:
  • the present application provides a layout device for a window control bar, the device being applied to a smart terminal, the smart terminal includes or connected with a display device, and the display device displays at least one window, the device include:
  • a receiving unit configured to receive detection information, where the detection information includes screen operation information and/or screen placement information;
  • a determining unit configured to determine a window layout manner corresponding to the detection information according to the detection information and a corresponding relationship between the detection information and the window layout manner
  • a layout unit configured to layout a window control bar on the window displayed on the display device according to the window layout manner corresponding to the detection information.
  • the detection information further includes preset instruction information, where the preset instruction information includes voice instruction information and/or motion track information and/or tap operation information.
  • the motion track information includes a motion direction
  • the corresponding relationship between the preset detection information and the window layout manner includes: the motion direction corresponding window control bar is opposite to the window body portion.
  • the direction of motion comprises a sliding direction of the contact or a direction of movement of the signal of the external input device on the display device.
  • the corresponding relationship between the preset detection information and the window layout manner includes: a detection information corresponding to a window control column setting position relative to the window body portion, and/or a detection information corresponding to the zoom window control The size of the bar.
  • the screen operation information includes touch screen operation information and external input device operation information
  • the receiving unit includes:
  • a first receiving subunit configured to receive the touch screen operation information generated by a touch screen operation
  • a second receiving subunit configured to receive the external input device operation information sent when the external input device operates.
  • the correspondence between the preset detection information and the window layout manner includes at least one of the following correspondences:
  • the touch screen operation information corresponding window control bar is set below the window main body portion, and/or corresponding to the enlargement window control column;
  • the external input device operation information corresponds to a preset position above the window control bar, and/or corresponds to a reduced window control bar.
  • the corresponding window control bar is disposed below the window body portion, and/or corresponds to the magnification window control column.
  • the screen placement information includes placement angle information of the display device
  • the receiving unit includes:
  • a third receiving subunit configured to receive a placement angle of the display device.
  • the correspondence between the preset detection information and the window layout manner includes at least one of the following correspondences:
  • the corresponding window control bar is disposed below the window body portion, and the a is between 0 degrees and 90 degrees;
  • the window layout manner corresponding to the detection information is a window layout manner corresponding to the touch screen operation information; when the detection information is not The touch screen operation information is included but includes screen placement information, and the window layout manner corresponding to the detection information is a window layout manner corresponding to the screen placement information.
  • the device further includes:
  • an updating unit configured to update a correspondence between the preset detection information and a window layout manner.
  • the present application provides a layout device for a window control bar, where the device includes a memory and a processor.
  • the memory is configured to store program code and transmit the program code to the processor; the processor is configured to execute the window according to any one of the foregoing fourth aspects according to the instruction in the program code The layout method of the control bar.
  • the smart terminal is connected with a large screen display, and at least one window is displayed on the large screen display.
  • the smart terminal first receives the detection information from the large screen display, wherein the detection information includes screen operation information or screen placement information; then, the smart terminal determines the window layout position corresponding to the detection information in the preset window layout table, wherein The window layout table stores a correspondence between various detection information and a window layout position; then, the smart terminal calls a preset window control bar layout interface, and controls the window on the window displayed on the large screen display according to the window layout position.
  • the bar is laid out. Thereby, the layout adjustment of the window control bar displayed on the screen according to various information adaptability of the large-screen display is realized, thereby improving the user experience.
  • FIG. 1 is a schematic diagram of a scenario of a window control bar layout method in an actual application according to an embodiment of the present application
  • FIG. 2 is a flowchart of a method for laying out a window control bar according to an embodiment of the present application
  • FIG. 3 is a schematic diagram of a user operating a screen in a touch manner according to an embodiment of the present disclosure
  • FIG. 4 is a schematic diagram of a user operating a screen in a mouse manner according to an embodiment of the present application
  • FIG. 5 is a schematic diagram of a large-screen display placed obliquely at a certain angle according to an embodiment of the present application
  • FIG. 6 is a schematic diagram of a layout of a window control bar according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic diagram of a layout of a window control bar according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic diagram of a layout of a window control bar according to an embodiment of the present application.
  • FIG. 9 is a schematic diagram of a layout of a window control bar according to an embodiment of the present application.
  • FIG. 10 is a schematic diagram of a layout of a window control bar according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram of a device for laying out a window control bar according to an embodiment of the present application.
  • FIG. 12 is a schematic structural diagram of a layout device of a window control bar according to an embodiment of the present application.
  • FIG. 1 is a schematic diagram of a scenario in a practical application of the present application.
  • the method for laying out a window control bar provided by the present application can be applied to an application scenario including a smart terminal 101 and a large screen display 102;
  • the smart terminal 101 refers to any user equipment, such as a smart phone or a tablet, that can establish a connection with the large-screen display 102 and implement human-computer interaction with the user, and then control the large-screen display 102 according to the detection information of the large-screen display 102.
  • a computer, a laptop personal computer, etc.; a large screen display 102 refers to a large-screen display device capable of communicating with the smart terminal 101 and displaying at least one window for the smart terminal 101, such as a large in an intuitive color TV or a rear projection type projection television.
  • the screen may have a diagonal size of up to 40 inches or more.
  • the large screen display 102 may be a display of the smart terminal 101 itself, and the large screen display 102 may communicate with the information processing system of the smart terminal 101.
  • the smart terminal 101 first connects with the large screen display 102 so that at least one window of the smart terminal can be displayed on the large screen display 102, for example, a word document window, a window of a shopping website, or the like can be displayed.
  • the large-screen display 102 detects the user's operation information on the screen or the placement information of the screen, for example, detecting that the user operates the screen in a touch manner or tilts the large-screen display at a certain angle, the detection information is sent.
  • the smart terminal 101 After receiving the detection message sent by the large-screen display 102, the smart terminal 101 will query the window layout position corresponding to the detection message according to the preset window layout table, and then according to the corresponding window layout position The window control bar on the window displayed on the large-screen display is laid out, thereby realizing the layout adjustment of the window control bar displayed on the screen according to various information adaptability of the large-screen display, thereby improving the user experience.
  • the embodiment of the present application provides a method for layout of a window control bar. The method will be described in detail below with reference to the accompanying drawings.
  • FIG. 2 a flowchart of a method for laying out a window control bar according to an embodiment of the present application is shown.
  • the following mainly describes a manner in which a smart terminal establishes a connection with a large-screen display, but the following should be described below. Any description of a large screen display is applicable to a display in the case where the smart terminal itself has a display.
  • the method includes:
  • Step 201 The smart terminal receives a detection message from a large screen display, and the detection message includes screen operation information or screen placement information.
  • the smart terminal can establish a connection with the large-screen display, so that each application window opened on the smart terminal can be displayed on the large-screen display, that is, at least one window of the smart terminal is displayed on the large-screen display, and further,
  • the user can perform various operations on the window opened by the smart terminal displayed on the large-screen display, for example, the user can touch the screen by means of a touch screen, or can also click the window in the form of a mouse, or the user can also enlarge the window.
  • the screen display is placed horizontally or vertically.
  • a possible implementation manner is that the detection information includes screen operation information, and the screen operation information includes touch screen operation information and mouse operation information;
  • the smart terminal receives the detection information from the large screen display, including:
  • the smart terminal receives the touch screen operation information sent by the large screen display when detecting the touch screen operation;
  • the smart terminal receives the mouse operation information sent by the large screen display when the mouse operation is detected.
  • the large-screen display can display various windows opened by the smart terminal by establishing a connection with the smart terminal, and the user can perform various operations on the window displayed on the large-screen display, such as a touch screen operation, as shown in FIG.
  • FIG. It is a schematic diagram of the user operating the screen in a touch manner provided by the embodiment of the present application, wherein the user operates the touch screen by clicking the large screen display screen in the form of a touch.
  • the user can also operate the large screen display screen by other means, for example, using a mouse to perform a click operation on the screen, as shown in FIG. 4, which shows that the user provided by the embodiment of the present application operates the screen in a mouse manner.
  • the schematic diagram of the mouse is connected to the large-screen display in advance, so that the user can manipulate the mouse to perform mouse operation on the large-screen display screen.
  • the mouse can also be replaced with other external input devices, such as a touchpad, a keyboard or other smart device, etc.
  • the mouse can also be connected to the smart terminal without being connected to the display.
  • the detected information is sent to the smart terminal, so that after the smart terminal receives the detection information, the subsequent operations are performed, wherein the detection information includes a screen operation.
  • the screen operation information includes touch screen operation information and mouse operation information
  • the touch screen operation information refers to information that the user operates on the screen in a touch manner
  • the mouse operation information refers to the operation of the screen by the user in a manner of manipulating the mouse. information.
  • the detection information received by the smart terminal is also different, for example, the touch screen operation information corresponding to the operation of the screen by the user in FIG. 3, and the detection information received by the smart terminal. It is the touch screen operation information sent by the large screen display when detecting the touch screen operation of the user; and the mouse operation information corresponding to the operation of the screen by the user in the manner of manipulating the mouse in FIG. 4, the detection information received by the smart terminal is large
  • the screen display transmits the mouse operation information when the user operates the mouse by operating the mouse.
  • a possible implementation manner is that the detection information includes preset instruction information, and the preset instruction information includes voice instruction information and/or motion track information and/or tap operation information.
  • the voice instruction information may be received by the large-screen display and transmitted to the intelligent terminal, or directly received by the intelligent terminal, and the voice instruction information may be preset and stored in the preset window layout table by the intelligent terminal system to establish and control the window.
  • the correspondence between the column layout modes can be preset by the user according to the operating habits.
  • the voice command information can also be updated by the user or the smart terminal system according to the usage.
  • the motion trajectory information refers to a finger motion trajectory of the user on the large screen display or the sensed user position motion information.
  • Finger movement track refers to the single-contact or multi-contact sliding in a preset direction, that is, single-finger sliding or multi-finger sliding or mouse sliding.
  • the motion trajectory information includes a motion direction
  • the correspondence relationship with the window layout manner includes the motion direction corresponding to a position change direction of the window control bar with respect to the window body portion.
  • the moving direction includes a sliding direction of the contact, or a moving direction of the signal of the external input device on the display device.
  • the window control bar when the moving direction is sliding to the right, the window control bar is set relative to the right side of the window main body portion, if When the direction of motion is swiping to the left, the window control bar is set relative to the left side of the main body of the window.
  • the tap operation information refers to a tap operation performed by the user on a large screen display according to preset information, such as the duration of the tap contact and/or the interval between the two contacts adjacent to the occurrence time.
  • preset information such as the duration of the tap contact and/or the interval between the two contacts adjacent to the occurrence time.
  • Set the conditions that is, long press, or continuous touch or click on the screen and other operational information. For example, long press the corresponding zoom window control bar.
  • the detection information includes screen placement information, where the screen placement information includes placement angle information of the large screen display;
  • the smart terminal receives the detection information from the large screen display, including:
  • the smart terminal receives the placement angle information of the large-screen display detected by the gravity sensor of the large-screen display.
  • the placement angle information refers to an acute angle between the plane of the large screen display and the horizontal plane.
  • the large-screen display can display the various windows opened by the smart terminal by establishing a connection with the smart terminal, and the placement position of the large-screen display screen is different according to the needs of the user, and the large-screen display can also utilize itself.
  • the gravity sensor detects the user's placement information on the screen of the large-screen display, as shown in FIG. 5, which shows a schematic diagram of the large-screen display provided by the embodiment of the present application at an angle, wherein the large-screen display is The tilt angle is variable at an angle to the horizontal plane. The angle between the placement of the large screen display and the horizontal plane is different depending on the user's needs.
  • the large-screen display can use its own gravity sensor to detect the placement angle information that the user places on the tilt, and send the detected screen placement information to the smart terminal, so that the smart terminal can perform subsequent operations after receiving the detection information.
  • the gravity sensor refers to a new type of sensor technology, which uses a flexible sensor to make a cantilever type shifter, and an energy storage spring made of an elastic sensitive element to drive the electrical contact to complete the change from gravity to electricity. Signal conversion, large-screen display through the gravity sensor to measure the acceleration caused by gravity, you can calculate the tilt angle of its own equipment relative to the horizontal plane.
  • the detection information includes screen placement information
  • the screen placement information includes placement angle information of the large screen display
  • the placement angle information is information that the user places the large screen display at an angle to the horizontal plane.
  • the mobile terminal After receiving the detection message from the large screen display, the mobile terminal will continue to perform step 202.
  • Step 202 The smart terminal determines, in a preset window layout table, a window layout position corresponding to the detection information, wherein the window layout table stores a correspondence between the various detection information and the window layout position.
  • the smart terminal may preset a window layout table in the database, where the window layout table stores the correspondence between various detection information and the window layout position, and when the smart terminal receives the large screen display side, After the message is detected, the window layout position corresponding to the detection message can be queried from the preset window layout table, and then step 203 can be continued.
  • the window layout table may also store a correspondence between various detection information and a window control bar layout size.
  • the smart terminal is a smart phone A
  • a window layout table is preset in the system database, and the corresponding relationship between the detection information and the window layout position is stored in the table.
  • the detection message is a touch screen operation
  • the corresponding The layout position of the window control bar is below the window; if the detection message is that the screen is horizontally placed on the horizontal plane, the layout position of the corresponding window control bar is also below the window.
  • the smartphone A can query the window layout position corresponding to the detection message from the window layout table according to the detection message sent by the connected large screen display, and continue to perform the subsequent steps.
  • a possible implementation manner is that the window layout table stores a correspondence between the touch screen operation information and a preset position below the window, and a corresponding relationship between the mouse operation information and a preset position above the window.
  • the window layout table preset by the smart terminal stores the correspondence between the touch screen operation information and the preset position below the window, and the corresponding relationship between the mouse operation information and the preset position above the window. That is, when the smart terminal receives the detection message sent by the large screen display, if the detection message is a touch screen operation message, the smart terminal may determine according to the corresponding relationship between the touch screen operation information in the window layout table and the preset position below the window.
  • the detection message that is, the touch screen operation message
  • the layout position of the corresponding window control bar is the preset position below the window, which is convenient for the user to operate the large screen by touch, by clicking the window control bar pair below the window It performs operations such as closing, which avoids the window control bar being laid on the top of the window in the traditional display mode, and the screen may be too large, which may cause the user to control the window above the window displayed on the large screen display due to insufficient height.
  • the touch operation of the column can improve the user experience; similarly, if the detection information is mouse operation information, the smart terminal can determine the detection message according to the correspondence between the mouse operation information in the window layout table and the preset position above the window, that is, Touch screen operation message, the corresponding window control bar layout position is Above the mouth preset positions, in line with the traditional way, people use the mouse to operate the window of habit, but also improve the user experience.
  • the detection information is mouse operation information
  • the smart terminal can determine the detection message according to the correspondence between the mouse operation information in the window layout table and the preset position above the window, that is, Touch screen operation message, the corresponding window control bar layout position is Above the mouth preset positions, in line with the traditional way, people use the mouse to operate the window of habit, but also improve the user experience.
  • the window layout table preset by the smart terminal may further store a correspondence between the touch screen operation information and the window control bar enlargement, and a corresponding relationship between the external input device operation information and the window control bar reduction.
  • the zoom of the window control bar size may include the manner in which the window control bar is entirely scaled, or the manner in which only the buttons on the window control bar are zoomed.
  • the method of zooming the window control bar as a whole may be two-dimensional scaling, that is, zooming in the up and down direction and/or the left and right direction of the window at the same time, for example, when the window control bar is located in the middle of the window main part, the window control bar can be simultaneously zoomed.
  • the window control bar when the window control bar is located at a certain corner of the main body of the window and the two sides of the window control bar overlap with the two sides of the main body of the window, the heights of the non-coincident sides of the window control bar can be simultaneously scaled.
  • the length of the left and right; of course, the way to zoom the window control bar as a whole can also be a single dimension zoom.
  • the side of the window control bar that coincides with the main body of the window remains unchanged, and only the side perpendicular to the main body of the window is zoomed, for example, when the window When the control bar is located below the body of the window, only the height of the window control bar is scaled and remains the same in the length direction.
  • the zoom window control bar layout size and the window preset position may be associated with each other.
  • the corresponding window control bar layout position is below the window.
  • the layout position of the corresponding window control bar is the preset position above the window and At the same time, the window control bar is reduced.
  • the zoom window control bar layout size and the window preset position may also have no relationship.
  • the layout position of the corresponding window control bar may be The preset position below the window or only corresponding to the window control bar is enlarged; when the smart terminal receives the detection information sent by the large screen display as the operation information of the preset external input device such as a mouse, the layout position of the corresponding window control bar may be only above the window. The preset position or only the corresponding window control bar is reduced.
  • the smart terminal when the smart terminal receives the detection information sent by the large-screen display and does not include the operation information of the preset external input device such as a mouse, the smart terminal preferentially defaults to the touch screen operation, and the smart terminal selects the touch screen operation information and the window layout in the window layout table. The correspondence is laid out on the window.
  • the smart terminal may further store preset instruction information including voice instruction information and/or motion track information and/or click operation information to establish a correspondence relationship with the window control bar layout in the window layout table. For example, according to the motion trajectory or the location where the operation information is clicked on the screen, the window control bar is laid out on the side of the window main body close to the occurrence position. For example, when the window control bar itself is located to the left of the main body position, if a preset swipe gesture instruction or a tap contact instruction is received in the screen area on the right side of the main body portion of the window, the window layout bar can be adjusted to the right of the window main body portion.
  • the preset gesture motion trajectory can be swiped, for example, to the right.
  • the window control bar originally located on the left side of the window body is switched to the right side of the window body. If it is a voice command, the orientation information in the voice command or the zoom command information can be analyzed, and the position and/or size of the window control bar can be adjusted according to the orientation information and/or the zoom command information.
  • the correspondence between the motion track information and/or the tap operation information and the window control bar layout may be preset by the user according to the operation habits, or may be updated by the user or the smart terminal system according to the usage.
  • step 202 another possible implementation manner is that the window layout table stores a correspondence between the horizontal placement of the large-screen display and the preset position below the window, and the corresponding correspondence between the vertical placement of the large-screen display and the preset position above the window. relationship.
  • the window layout table preset by the smart terminal stores the correspondence between the placement angle information of the large-screen display and the preset position of the window, and the placement angle information of the large-screen display is specifically formed by the large-screen display and the horizontal plane. Angle range.
  • the window layout table stores a correspondence between the horizontal placement of the large-screen display and the preset position below the window, and the corresponding relationship between the vertical placement of the large-screen display and the preset position above the window. That is to say, when the smart terminal receives the screen placement information detected by the gravity sensor sent by the large screen display, if the screen placement information is horizontally placed on the large screen display, the smart terminal can be based on the large screen display level in the window layout table.
  • the smart terminal can determine the screen placement information according to the corresponding relationship between the large-screen display in the window layout table and the preset position above the window, that is, the large-screen display is vertically placed, and the corresponding window control bar is The layout position is the preset position above the window.
  • the window layout table preset by the smart terminal further stores a correspondence relationship between the placement angle information of the large-screen display and the zoom of the window control bar, and the placement angle information of the large-screen display is specifically an acute angle formed by the plane of the large-screen display and the horizontal plane.
  • the angle range of the angle, the specific correspondence includes:
  • the corresponding window control bar is disposed below the window main body portion, and the a is between 0 degrees and 90 degrees;
  • the four angle values a, b, c, and d may be the same or different.
  • the smart terminal After determining the window layout position corresponding to the detection message, the smart terminal will continue to perform step 203.
  • Step 203 The smart terminal invokes a preset window control bar layout interface, and lays out a window control bar on the window displayed on the large screen display according to the window layout position.
  • the smart terminal determines the window layout position corresponding to the detection message in the preset window layout table according to the detection message to the large screen display
  • the preset window control bar layout interface is invoked, according to The determined window layout position is laid out for the window control bar on the window displayed on the large screen display, wherein the window control bar layout interface refers to the layout tool of the window control bar display position on the control window.
  • the window layout manner corresponding to the touch screen operation information is preferentially applied, that is, when the detection information includes at least the touch screen operation information, corresponding to the detection information.
  • the window layout mode is a window layout manner corresponding to the touch screen operation information; when the detection information does not include the touch screen operation information but includes the screen placement information, the window layout manner corresponding to the detection information is a window layout manner corresponding to the screen placement information.
  • the detection message of the large screen display received by the smart terminal is the touch screen operation information, as shown in FIG. 3 .
  • the preset relationship between the touch screen operation information and the preset position under the window is stored in the preset window layout table, and the smart terminal determines the detection message, that is, the touch screen operation information, and the corresponding window layout position is a preset position below the window.
  • the window control bar on the window displayed on the large screen display can be laid out according to the window layout position.
  • the smart terminal calls the preset window control bar layout interface for the detection message of the touch screen operation information. According to the determined window layout position, the window control bar on the window displayed on the large-screen display is laid out, and the window control bar including the buttons of “minimize” and “close” is adaptively laid out below the window.
  • the detection message of the large screen display received by the smart terminal is mouse operation information
  • the preset relationship between the mouse operation information and the preset position on the window is stored in the preset window layout table, and the smart terminal determines the detection message, that is, the mouse operation information, and the corresponding window layout position is the preset position above the window.
  • the window control bar on the window displayed on the large screen display can be laid out according to the window layout position.
  • the smart terminal calls the preset window control bar layout interface for the detection message of the mouse operation information. According to the determined window layout position, the window control bar on the window displayed on the large screen display is laid out, and the window control bar including the buttons of “minimize” and “close” is adaptively arranged above the window.
  • the detection message of the large-screen display received by the smart terminal is screen placement information, as shown in FIG. 5.
  • the preset relationship between the screen placement information and the preset position of the window is stored in the preset window layout table, and the smart terminal determines the detection message, that is, the screen placement information, and the corresponding window layout position is the preset position of the window, and further, The window control bar on the window displayed on the large-screen display can be laid out according to the window layout position.
  • the smart terminal displays the detection message vertically placed on the large-screen display in the preset window layout table.
  • the smart terminal determines, according to the detection message placed horizontally on the large-screen display, in the preset window layout table, determining that the corresponding window layout position of the large-screen display is vertically placed as the preset position below the window, Calling the preset window control bar layout interface, and laying out the window control bar on the window displayed on the large-screen display according to the determined window layout position, and the window control bar including the buttons of “minimize” and “close” are Adapt the layout to the bottom of the window.
  • the application further includes: updating the correspondence between the various detection information stored in the window layout table and the window layout position.
  • the large-screen display originally stored in the window layout table is vertically placed corresponding to the preset position above the window.
  • the layout of the window control bar is as shown in Figure 8, but if the user wants to place the large-screen display vertically
  • the control bar of the displayed window is laid on the left side, that is, the user wants to place the large-screen display horizontally corresponding to the preset position on the left side of the window, and the smart terminal can update the window layout table according to the user's needs in time.
  • the vertical display of the large-screen display is associated with the preset position on the left side of the window, so that the subsequent smart terminal can display the screen placement information detected by the gravity sensor of the large-screen display for the large-screen display to be placed vertically.
  • the position of the window layout is determined, and then the window control bar on the window displayed on the large-screen display is laid out, and the The window control bar of the "Minimize”, “Close”, etc. buttons are adaptively laid out on the left side of the window, as shown in Figure 10.
  • the correspondence between the various detection information stored in the window layout table and the window layout may be updated by the user according to the user's needs, or may be automatically updated by the server by analyzing the user's operating habits.
  • the smart terminal is connected with a large screen display, and at least one window is displayed on the large screen display.
  • the smart terminal first receives the detection information from the large screen display, wherein the detection information includes screen operation information or screen placement information; then, the smart terminal determines the window layout position corresponding to the detection information in the preset window layout table, wherein The window layout table stores a correspondence between various detection information and a window layout position; then, the smart terminal calls a preset window control bar layout interface, and controls the window on the window displayed on the large screen display according to the window layout position.
  • the bar is laid out. Thereby, the layout adjustment of the window control bar displayed on the screen according to various information adaptability of the large-screen display is realized, thereby improving the user experience.
  • the present application further provides a layout device for a window control bar, the device is applied to a smart terminal, and the smart terminal is connected with a large screen display, and the large screen display displays at least A window, as shown in Figure 11, the device includes:
  • the receiving unit 1101 is configured to receive detection information from the large screen display, where the detection information includes screen operation information or screen placement information;
  • a determining unit 1102 configured to determine, in a preset window layout table, a window layout position corresponding to the detection information; the window layout table stores a correspondence between various detection information and a window layout position; the window layout The table also stores the correspondence between various detection information and the size of the window layout.
  • the layout unit 1103 is configured to invoke a preset window control bar layout interface, and arrange a window control bar on the window displayed on the large screen display according to the window layout position.
  • the detection information includes preset instruction information including voice instruction information and/or motion track information and/or tap operation information.
  • the preset instruction information may be pre-stored by the intelligent terminal system to establish a correspondence relationship with the window control bar layout manner in the preset window layout table, where the motion track information refers to a contact movement track of the user on the large screen display, or The movement track of the signal of the external device on the large screen display, or the motion information of the user position sensed.
  • the motion trajectory information includes motion direction information
  • the correspondence relationship with the window layout manner includes the motion direction corresponding to the position change direction of the window control column with respect to the window main body portion.
  • the moving direction includes a sliding direction of the contact, or a moving direction of the signal of the external input device on the display device.
  • the window control bar when the moving direction is sliding to the right, the window control bar is set relative to the right side of the window main body portion, if When the direction of motion is swiping to the left, the window control bar is set relative to the left side of the main body of the window.
  • Clicking the operation information refers to the tap operation of the user according to the preset information on the large screen display, such as the duration of the tap contact and/or the interval time of the two contacts adjacent to the occurrence time meets the preset condition , that is, long press, or continuous touch or click on the screen and other operational information, such as long press the corresponding zoom window control bar.
  • the detection information includes screen operation information, where the screen operation information includes touch screen operation information and mouse operation information;
  • the receiving unit 1101 specifically includes:
  • a first receiving subunit configured to receive the touch screen operation information sent by the large screen display when detecting a touch screen operation
  • a second receiving subunit configured to receive the mouse operation information sent by the large screen display when detecting a mouse operation.
  • the window layout table stores a correspondence between the touch screen operation information and a preset position below the window, and a correspondence between the mouse operation information and a preset position above the window.
  • the window layout table further includes a correspondence relationship between the touch screen operation information corresponding to the zoom window control bar, and a correspondence relationship between the external input device operation information of the mouse and the corresponding zoom window control bar, and the detection signal does not include the mouse.
  • the corresponding relationship of the window control bar with respect to the lower part of the window main body and/or the corresponding enlarged window control bar is set.
  • the detection information includes screen placement information; the screen placement information includes placement angle information of the large screen display;
  • the receiving unit 1101 specifically includes:
  • a third receiving subunit configured to receive the placement angle information of the large screen display detected by the gravity sensor of the large screen display.
  • the window layout table stores a correspondence between the horizontal placement of the large-screen display and a preset position below the window, and a corresponding relationship between the vertical display of the large-screen display and a preset position above the window.
  • the window layout table further stores a correspondence relationship between the placement angle information of the large-screen display and the zoom of the window control bar.
  • the placement angle information of the large-screen display is specifically an angular range of the acute angle formed by the plane of the large-screen display and the horizontal plane.
  • the specific correspondence includes:
  • the corresponding window control bar is disposed below the window main body portion, and the a is between 0 degrees and 90 degrees;
  • the four angle values a, b, c, and d may be the same or different.
  • the device further includes:
  • the window layout manner corresponding to the touch screen operation information is preferentially applied, that is, when the detection information includes at least the touch screen operation information, the window layout manner corresponding to the detection information.
  • the window layout mode corresponding to the touch screen operation information; when the detection information does not include the touch screen operation information but includes the screen placement information, the window layout manner corresponding to the detection information is a window layout manner corresponding to the screen placement information.
  • the device further includes:
  • an updating unit configured to update a correspondence between various detection information stored in the window layout table and a window layout position.
  • the corresponding relationship between the various detection information and the window layout stored in the window layout table may be updated by the user according to the user's needs, or may be automatically updated by the server by analyzing the user operation habits.
  • the smart terminal is connected with a large screen display, and at least one window is displayed on the large screen display.
  • the smart terminal first receives the detection information from the large screen display, wherein the detection information includes screen operation information or screen placement information; then, the smart terminal determines the window layout position corresponding to the detection information in the preset window layout table, wherein The window layout table stores a correspondence between various detection information and a window layout position; then, the smart terminal calls a preset window control bar layout interface, and controls the window on the window displayed on the large screen display according to the window layout position.
  • the bar is laid out. Thereby, the layout adjustment of the window control bar displayed on the screen according to various information adaptability of the large-screen display is realized, thereby improving the user experience.
  • the embodiment of the present invention further provides a layout device for the window control bar.
  • the method may include:
  • the number of processors 1201 in the layout device of the window control bar may be one or more, and one processor is taken as an example in FIG.
  • the processor 1201, the memory 1202, the input device 1203, and the output device 1204 may be connected by a bus or other means, wherein the bus connection is taken as an example in FIG.
  • the memory 1202 can be used to store software programs and modules, and the processor 1201 executes various functional applications and data processing of the layout device of the window control bar by running software programs and modules stored in the memory 1202.
  • the memory 1202 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function, and the like.
  • memory 1202 can include high speed random access memory, and can also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device.
  • Input device 1203 can be used to receive input numeric or character information and to generate signal inputs related to user settings and function control of the layout device of the window control bar.
  • the processor 1201 loads the executable file corresponding to the process of one or more application programs into the memory 1202 according to the following instructions, and is executed by the processor 1201 to be stored in the memory 1202.
  • the application thus implements various functions in the layout method of the above window control bar.
  • the device embodiment since it basically corresponds to the method embodiment, reference is made to the partial description of the method embodiment.
  • the device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, ie may be located A place, or it can be distributed to multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the solution of the embodiment. Those of ordinary skill in the art can understand and implement without any creative effort.

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Abstract

一种应用于智能终端的窗口控制栏的布局方法,所述智能终端包含或连接有大屏显示器,所述大屏显示器上显示有至少一个窗口,所述方法包括,所述智能终端接收来自所述大屏显示器的检测信息,所述检测信息包括屏幕操作信息或屏幕放置信息,所述智能终端在预设的窗口布局表中,确定所述检测信息对应的窗口布局位置。根据所述窗口布局位置对显示器上显示的窗口上的窗口控制栏进行布局,从而实现根据显示器的各种信息适应性的对屏幕上显示的窗口控制栏进行布局调整,提升用户体验。

Description

一种窗口控制栏的布局方法、装置及设备 技术领域
本申请涉及互联网领域,具体涉及一种窗口控制栏的布局方法、装置及设备。
背景技术
近年来人机交互领域的技术得到了迅猛发展,其中,人机交互技术(Human-ComputerInteractionTechniques)是指通过计算机输入、输出设备,以有效的方式实现人与计算机对话的技术。随着人工智能(Artificial Intelligence,简称AI)的爆发,作为目前最受瞩目的未来科技,人工智能已被越来越多的运用到人机交互领域,AI大屏互联网已被人们认为是互联网发展的下一个风口,其完全可以为互联网行业带来更多新的商业机会。
目前,大屏与人的交互作为人机交互的一种,逐步被各行各业所引入,大到教育、国防,小到办公、展会等,应用领域非常广泛。但随着AI大屏的发展,大屏显示器屏幕的尺寸越来越大型化,进而,人机交互中的显示器屏幕的尺寸也越来越大。当大屏显示器屏幕的尺寸过于大时,会给人来带来点击或者其他操作上的困难,例如人们很难对大屏显示器上显示的窗口进行身体条件范围之外的点击操作等。也就是说,现有技术无法根据大屏显示器屏幕的各种信息适应性的对屏幕上显示的窗口控制栏进行布局调整,不便于用户对其进行各种操作,导致用户的体验不好等。
发明内容
为解决上述问题,本申请提供了一种窗口控制栏的布局方法、装置及设备,具体技术方案如下:
第一方面,本申请提供了一种窗口控制栏的布局方法,所述方法应用于智能终端,所述智能终端连接有大屏显示器,所述大屏显示器上显示有至少一个窗口,所述方法包括:
所述智能终端接收来自所述大屏显示器的检测信息,所述检测信息包括屏幕操作信息或屏幕放置信息;
所述智能终端在预设的窗口布局表中,确定所述检测信息对应的窗口布局位置;所述窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;
所述智能终端调用预设的窗口控制栏布局接口,根据所述窗口布局位置对所述大屏显示器上显示的窗口上的窗口控制栏进行布局。
在一种可选的实现方式中,所述检测信息包括屏幕操作信息,所述屏幕操作信息包括触摸屏操作信息和鼠标操作信息;
所述智能终端接收来自所述大屏显示器的检测信息,包括:
所述智能终端接收所述大屏显示器在检测到触摸屏操作时发送的所述触摸屏操作信息;
或,
所述智能终端接收所述大屏显示器在检测到鼠标操作时发送的所述鼠标操作信息。
在一种可选的实现方式中,所述窗口布局表中存储有所述触摸屏操作信息与窗口下方预设位置的对应关系,以及所述鼠标操作信息与窗口上方预设位置的对应关系。
在一种可选的实现方式中,所述检测信息包括屏幕放置信息;所述屏幕放置信息包括所述大屏显示器的放置角度信息;
所述智能终端接收来自所述大屏显示器的检测信息,包括:
所述智能终端接收所述大屏显示器的重力感应器检测到的所述大屏显示器的放置角度信息。
在一种可选的实现方式中,所述窗口布局表中存储有所述大屏显示器水平放置与窗口下方预设位置的对应关系,以及所述大屏显示器竖直放置与窗口上方预设位置的对应关系。
在一种可选的实现方式中,所述方法还包括:
更新所述窗口布局表中存储的各种检测信息与窗口布局位置的对应关系。第二方面,本申请提供了一种窗口控制栏的布局装置,所述装置应用于智能终端,所述智能终端连接有大屏显示器,所述大屏显示器上显示有至少一个窗口,所述装置包括:
接收单元,用于接收来自所述大屏显示器的检测信息,所述检测信息包括屏幕操作信息或屏幕放置信息;
确定单元,用于在预设的窗口布局表中,确定所述检测信息对应的窗口布局位置;所述窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;布局单元,用于调用预设的窗口控制栏布局接口,根据所述窗口布局位置对所述大屏显示器上显示的窗口上的窗口控制栏进行布局。
在一种可选的实现方式中,所述检测信息包括屏幕操作信息,所述屏幕操作信息包括触摸屏操作信息和鼠标操作信息;
所述接收单元包括:
第一接收子单元,用于接收所述大屏显示器在检测到触摸屏操作时发送的所述触摸屏操作信息;
或,
第二接收子单元,用于接收所述大屏显示器在检测到鼠标操作时发送的所述鼠标操作信息。
在一种可选的实现方式中,所述窗口布局表中存储有所述触摸屏操作信息与窗口下方预设位置的对应关系,以及所述鼠标操作信息与窗口上方预设位置的对应关系。
在一种可选的实现方式中,所述检测信息包括屏幕放置信息;所述屏幕放置信息包括所述大屏显示器的放置角度信息;
所述接收单元包括:
第三接收子单元,用于接收所述大屏显示器的重力感应器检测到的所述大屏显示器的放置角度信息。
在一种可选的实现方式中,所述窗口布局表中存储有所述大屏显示器水平放置与窗口下方预设位置的对应关系,以及所述大屏显示器竖直放置与窗口上方预设位置的对应关系。
在一种可选的实现方式中,所述装置还包括:
更新单元,用于更新所述窗口布局表中存储的各种检测信息与窗口布局位置的对应关系。
第三方面,本申请提供了一种窗口控制栏的布局设备,所述设备包括存储器和处理器,
所述存储器用于存储程序代码,并将所述程序代码传输给所述处理器;所述处理器用于根据所述程序代码中的指令,执行上述第一方面提供的任一项所述的窗口控制栏的布局方法。
第四方面,本申请提供了一种窗口控制栏的布局方法,所述方法应用于智能终端,所述智能终端包括或连接有显示装置,所述显示装置上显示有至少一个窗口,所述方法包括:
所述智能终端接收检测信息,所述检测信息包括屏幕操作信息和/或屏幕放置信息;
所述智能终端根据所述检测信息和预先设置的检测信息与窗口布局方式的对应关系,确定与所述检测信息对应的窗口布局方式;
所述智能终端根据所述与所述检测信息对应的窗口布局方式对所述显示装置上显示的窗口上的窗口控制栏进行布局。
在一种可选的实现方式中,所述检测信息还包括预设指令信息,所述预设指令信息包括语音指令信息和/或运动轨迹信息和/或点按操作信息。
在一种可选的实现方式中,所述运动轨迹信息包括运动方向,所述预先设置的检测信息与窗口布局方式的对应关系,包括:所述运动方向对应窗口 控制栏相对于窗口主体部的位置变化方向。其中,所述运动方向包括触点的滑动方向、或外部输入设备的信号在所述显示装置上的运动方向。
在一种可选的实现方式中,所述预先设置的检测信息与窗口布局方式的对应关系,包括检测信息对应窗口控制栏相对于窗口主体部的设置位置,和/或检测信息对应缩放窗口控制栏的尺寸。
在一种可选的实现方式中,所述屏幕操作信息包括触摸屏操作信息和/或外部输入设备操作信息。
在一种可选的实现方式中,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
(1)所述触摸屏操作信息对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏;
(2)所述外部输入设备操作信息对应窗口控制栏相对于窗口主体部上方设置,和/或对应缩小窗口控制栏;
(3)所述检测信号不包括外部输入设备操作信息时,对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏。
在一种可选的实现方式中,所述屏幕放置信息包括所述显示装置的放置角度。
在一种可选的实现方式中,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
(1)所述显示装置的放置角度小于a时,对应窗口控制栏相对于窗口主体部下方设置,所述a介于0度到90度之间;
(2)所述显示装置的放置角度大于b时,对应窗口控制栏相对于窗口主体部上方设置,所述b介于0度到90度之间;
(3)所述显示装置的放置角度小于c时,对应放大窗口控制栏,所述c介于0度到90度之间;
(4)所述显示装置的放置角度大于d时,对应缩小窗口控制栏;所述d介于0度到90度之间;
在一种可选的实现方式中,当所述检测信息至少包括触摸屏操作信息时,所述与所述检测信息对应的窗口布局方式为触摸屏操作信息对应的窗口布局方式;当所述检测信息不包括触摸屏操作信息但包括屏幕放置信息时,所述与所述检测信息对应的窗口布局方式为屏幕放置信息对应的窗口布局方式;
在一种可选的实现方式中,所述方法还包括:
更新所述预先设置的检测信息与窗口布局方式的对应关系。
第五方面,本申请提供了一种窗口控制栏的布局装置,所述装置应用于智能终端,所述智能终端包括或连接有显示装置,所述显示装置上显示有至 少一个窗口,所述装置包括:
接收单元,用于接收检测信息,所述检测信息包括屏幕操作信息和/或屏幕放置信息;
确定单元,用于根据所述检测信息和预先设置的检测信息与窗口布局方式的对应关系,确定与所述检测信息对应的窗口布局方式;
布局单元,用于根据所述与所述检测信息对应的窗口布局方式对所述显示装置上显示的窗口上的窗口控制栏进行布局。
在一种可选的实现方式中,所述检测信息还包括预设指令信息,所述预设指令信息包括语音指令信息和/或运动轨迹信息和/或点按操作信息。
在一种可选的实现方式中,所述运动轨迹信息包括运动方向,所述预先设置的检测信息与窗口布局方式的对应关系,包括:所述运动方向对应窗口控制栏相对于窗口主体部的位置变化方向。其中,所述运动方向包括触点的滑动方向、或外部输入设备的信号在所述显示装置上的运动方向。
在一种可选的实现方式中,所述预先设置的检测信息与窗口布局方式的对应关系,包括检测信息对应窗口控制栏相对于窗口主体部的设置位置,和/或检测信息对应缩放窗口控制栏的尺寸。
在一种可选的实现方式中,所述屏幕操作信息包括触摸屏操作信息和外部输入设备操作信息;
所述接收单元包括:
第一接收子单元,用于接收由触屏操作产生的所述触摸屏操作信息;
或,
第二接收子单元,用于接收外部输入设备操作时发送的所述外部输入设备操作信息。
在一种可选的实现方式中,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
(1)所述触摸屏操作信息对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏;
(2)所述外部输入设备操作信息对应窗口控制栏上方预设位置,和/或对应缩小窗口控制栏。
(3)所述检测信号不包括外部输入设备操作信息时,对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏。
在一种可选的实现方式中,所述屏幕放置信息包括所述显示装置的放置角度信息;
所述接收单元包括:
第三接收子单元,用于接收所述显示装置的放置角度。
在一种可选的实现方式中,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
(1)所述显示装置的放置角度小于a时,对应窗口控制栏相对于窗口主体部下方设置,所述a介于0度到90度之间;
(2)所述显示装置的放置角度大于b时,对应窗口控制栏相对于窗口主体部上方设置,所述b介于0度到90度之间;
(3)所述显示装置的放置角度小于c时,对应放大窗口控制栏,所述c介于0度到90度之间;
(4)所述显示装置的放置角度大于d时,对应缩小窗口控制栏;所述d介于0度到90度之间;
在一种可选的实现方式中,当所述检测信息至少包括触摸屏操作信息时,所述与所述检测信息对应的窗口布局方式为触摸屏操作信息对应的窗口布局方式;当所述检测信息不包括触摸屏操作信息但包括屏幕放置信息,所述与所述检测信息对应的窗口布局方式为屏幕放置信息对应的窗口布局方式。
在一种可选的实现方式中,所述装置还包括:
更新单元,用于更新所述预先设置的检测信息与窗口布局方式的对应关系。
第六方面,本申请提供了一种窗口控制栏的布局设备,其特征在于,所述设备包括存储器和处理器,
所述存储器用于存储程序代码,并将所述程序代码传输给所述处理器;所述处理器用于根据所述程序代码中的指令,执行上述第四方面提供的任一项所述的窗口控制栏的布局方法。
本申请提供的窗口控制栏的布局方法中,智能终端连接有大屏显示器,且大屏显示器上显示有至少一个窗口。智能终端首先接收来自大屏显示器的检测信息,其中,该检测信息包括屏幕操作信息或屏幕放置信息;然后,智能终端在预设的窗口布局表中,确定该检测信息对应的窗口布局位置,其中,窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;接着,智能终端调用预设的窗口控制栏布局接口,根据上述窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局。从而实现了根据大屏显示器的各种信息适应性的对屏幕上显示的窗口控制栏进行布局调整,提升了用户体验。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例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申请的一些实施例,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为本申请实施例提供的窗口控制栏的布局方法在实际应用中的场景示例图;
图2为本申请实施例提供的一种窗口控制栏的布局方法的流程图;
图3为本申请实施例提供的用户以触摸的方式对屏幕进行操作的示意图;
图4为本申请实施例提供的用户以鼠标的方式对屏幕进行操作的示意图;
图5为本申请实施例提供的大屏显示器以一定角度倾斜放置的示意图;
图6为本申请实施例提供的一种窗口控制栏的布局的示意图;
图7为本申请实施例提供的一种窗口控制栏的布局的示意图;
图8为本申请实施例提供的一种窗口控制栏的布局的示意图;
图9为本申请实施例提供的一种窗口控制栏的布局的示意图;
图10为本申请实施例提供的一种窗口控制栏的布局的示意图;
图11为本申请实施例提供一种窗口控制栏的布局装置的结构示意图;
图12为本申请实施例提供一种窗口控制栏的布局设备的结构示意图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请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申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
为了便于理解本申请提供的技术方案,下面先对本申请在实际中的应用场景进行介绍。参见图1,为本申请在实际应用中的场景示例图,如图1所示,本申请提供的窗口控制栏的布局方法可以应用于包括智能终端101、大屏显示器102的应用场景中;其中,智能终端101是指能够与大屏显示器102建立连接,并实现与用户进行人机交互,进而根据大屏显示器102的检测信息对大屏显示器102进行控制的任何用户设备,如智能手机、平板电脑、膝上型个人计算机等;大屏显示器102是指能够与智能终端101通信,并为智能终端101显示至少一个窗口的大屏幕显示设备,如直观式彩电或背投式投影电视中的大屏幕,屏幕的对角线尺寸可大达40英寸以上,或者,大屏显示器102也可以是智能终端101自身的显示器,大屏显示器102可以与智能终端101的信息处理系统通信。
参见图1所示,其示出了本申请实施例的一示例性应用场景的示意图。在实际应用中,智能终端101首先与大屏显示器102进行连接,以便大屏显示器102上可以显示智能终端的至少一个窗口,例如可以显示word文档窗口、购物 网站的窗口等。当大屏显示器102检测到用户对屏幕的操作信息或者屏幕的放置信息后,例如检测到用户是以触摸的方式对屏幕进行操作或者将大屏显示器以一定角度倾斜放置等,都会将检测信息发送至智能终端101,而智能终端101在接收到大屏显示器102发送的检测消息后,将根据预设的窗口布局表,查询到该检测消息对应的窗口布局位置,进而根据对应的窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,从而实现了根据大屏显示器的各种信息适应性的对屏幕上显示的窗口控制栏进行布局调整,提升了用户体验。基于以上应用场景,本申请实施例提供了一种窗口控制栏的布局的方法,以下将结合附图对该方法进行详细说明。
参见图2,其示出了本申请实施例提供的一种窗口控制栏的布局方法的流程图,下面主要以智能终端与大屏显示器建立连接的方式进行详细描述,但这里应当说明的是下面任何关于大屏显示器的说明均适用于智能终端自身具有显示器的情况下的显示器。
如图2所示,该方法包括:
步骤201:智能终端接收来自大屏显示器的检测消息,该检测消息包括屏幕操作信息或屏幕放置信息。
在实际应用中,智能终端可以与大屏显示器建立连接,从而可在大屏显示器上显示出智能终端上打开的各个应用窗口,即,大屏显示器上显示有智能终端的至少一个窗口,进而,用户可以对大屏显示器上显示的智能终端打开的窗口进行各种操作,例如,用户可以通过触摸屏幕的方式,或者也可以利用鼠标的形式对窗口进行点击操作,或者,用户也可以将该大屏显示器水平放置或者竖直放置等。而当大屏显示器检测到用户对其进行的操作后,会将检测信息发送至与其连接的智能终端,其中,该检测消息包括了用户对大屏显示器屏幕的操作信息或者屏幕的放置信息等。
在步骤201中,一种可能的实现方式是,检测信息包括屏幕操作信息,该屏幕操作信息包括触摸屏操作信息和鼠标操作信息;
则智能终端接收来自大屏显示器的检测信息,包括:
智能终端接收大屏显示器在检测到触摸屏操作时发送的触摸屏操作信息;或,
智能终端接收大屏显示器在检测到鼠标操作时发送的鼠标操作信息。
在实际应用中,大屏显示器通过与智能终端建立连接,可以对智能终端打开的各个窗口进行显示,用户可以对大屏显示器上显示的窗口进行各种操作,例如触摸屏操作,如图3所示,其示出了本申请实施例提供的用户以触摸的方式对屏幕进行操作的示意图,其中,用户是以触摸的形式,点击大屏显示器屏幕进行触摸屏的操作。
另外,用户也可以通过其他方式对大屏显示器屏幕进行操作,例如利用鼠标对屏幕进行点击操作,如图4所示,其示出了本申请实施例提供的用户以鼠标的方 式对屏幕进行操作的示意图,其中,预先将鼠标与大屏显示器建立连接,以便用户可以通过操控鼠标的形式,进而对大屏显示器屏幕进行鼠标操作。这里,鼠标也可以替换成其他外部输入设备,例如触摸板、键盘或其他智能设备等,当然,鼠标也可以与智能终端连接而不与显示器进行连接。
进一步的,当大屏显示器检测到用户其进行的各种操作后,会将检测到的信息发送至智能终端,以便于智能终端接收到检测信息后,进行后续操作,其中,检测信息包括屏幕操作信息,而屏幕操作信息包括触摸屏操作信息和鼠标操作信息,触摸屏操作信息指的是用户以触摸的方式对屏幕进行操作的信息,鼠标操作信息指的是用户以操控鼠标的方式对屏幕进行操作的信息。
对应于上述两种不同的屏幕操作信息,智能终端接收到的检测信息也是不同的,例如,对应于图3中用户以触摸的方式对屏幕进行操作的触摸屏操作信息,智能终端接收到的检测信息是大屏显示器在检测到用户的触摸屏操作时发送的该触摸屏操作信息;而对应于图4中用户以操控鼠标的方式对屏幕进行操作的鼠标操作信息,智能终端接收到的检测信息则是大屏显示器在检测到用户通过操控鼠标对屏幕进行操作时发送的该鼠标操作信息。
在步骤201中,一种可能的实现方式是,检测信息包括预设指令信息,所述预设指令信息包括语音指令信息和/或运动轨迹信息和/或点按操作信息。
这里,语音指令信息可以由大屏显示器接收后向智能终端进行传输,也可以直接由智能终端进行接收,语音指令信息可以由智能终端系统预先设置存储在预设的窗口布局表中建立与窗口控制栏布局方式的对应关系,可以由用户根据操作习惯进行预先设置。当然,语音指令信息也可以根据使用情况由用户或者智能终端系统进行更新。
这里,运动轨迹信息是指用户在大屏显示器上的手指运动轨迹或者感应到的用户位置运动信息。手指运动轨迹是指单触点或多触点按照预设方向滑动,即单指滑动或多指滑动或鼠标滑动等信息。这里,运动轨迹信息包括运动方向,与窗口布局方式的对应关系包括,运动方向对应窗口控制栏相对于窗口主体部的位置变化方向。其中,运动方向包括触点的滑动方向、或外部输入设备的信号在显示装置上的运动方向,例如,运动方向为向右滑动时,则窗口控制栏相对于窗口主体部的右侧设置,若运动方向为向左滑动时,则窗口控制栏相对于窗口主体部的左侧设置。
这里,点按操作信息是指用户在大屏显示器上进行的按照预设信息的点按操作,比如点按触点的持续时间和/或发生时间相邻的两个触点的间隔时间满足预设条件,即长按、或连续多次触摸或点击屏幕等操作信息。比如长按对应放大窗口控制栏等。在步骤201中,另一种可能的实现方式是,检测信息包括屏幕放置信息,该屏幕放置信息包括大屏显示器的放置角度信息;
则智能终端接收来自大屏显示器的检测信息,包括:
智能终端接收大屏显示器的重力感应器检测到的大屏显示器的放置角度信息。
这里,放置角度信息是指大屏显示器所在平面与水平面之间的锐角夹角。
在实际应用中,大屏显示器通过与智能终端建立连接,可以对智能终端打开的各个窗口进行显示,大屏显示器屏幕的放置位置则根据用户的需求而不同,同时,大屏显示器也可以利用自身的重力感应器检测到用户对大屏显示器屏幕的放置信息,如图5所示,其示出了本申请实施例提供的大屏显示器以一定角度倾斜放置的示意图,其中,大屏显示器是以与水平面成一定角度倾斜放置,该倾斜角度是可变化的,随着用户需求的不同,大屏显示器的放置位置与水平面所成的角度也是不同的。
进而,大屏显示器可以利用自身的重力感应器检测到用户对其倾斜放置的放置角度信息,并将检测到的屏幕放置信息发送至智能终端,以便于智能终端收到检测信息后,进行后续操作。其中,重力感应器指的是一种新型属传感器技术,它采用弹性敏感元件制成悬臂式位移器,与采用弹性敏感元件制成的储能弹簧来驱动电触点,完成从重力变化到电信号的转换,大屏显示器通过重力感应器测量由于重力引起的加速度,可以计算出自身设备相对于水平面的倾斜角度。而检测信息则包括了屏幕放置信息,而屏幕放置信息包括大屏显示器的放置角度信息,该放置角度信息就是用户将大屏显示器与水平面成一定角度放置的信息。
移动终端在接收到来自大屏显示器的检测消息后,将继续执行步骤202。
步骤202:智能终端在预设的窗口布局表中,确定该检测信息对应的窗口布局位置,其中,窗口布局表中存储有各种检测信息与窗口布局位置的对应关系。
在本申请实施例中,智能终端会预先在数据库中设置有一个窗口布局表,该窗口布局表中存储有各种检测信息与窗口布局位置的对应关系,当智能终端接收到大屏显示器方的检测消息后,即可从预先设置的该窗口布局表中查询到检测消息对应的窗口布局位置,进而可继续执行步骤203。该窗口布局表中还可以存储有各种检测信息与窗口控制栏布局尺寸的对应关系。
举例说明:假设智能终端为智能手机A,其预先在系统数据库中设置有一个窗口布局表,该表中存储有检测信息与窗口布局位置的对应关系,如,若检测消息为触摸屏操作,则对应窗口控制栏的布局位置为窗口下方;若检测消息为屏幕被水平放置在水平面上,则对应窗口控制栏的布局位置也为窗口下方等。进而智能手机A可根据其连接的大屏显示器发送的检测消息,从窗口布局表中查询到检测消息对应的窗口布局位置,继续执行后续步骤。
在步骤202中,一种可能的实现方式是,窗口布局表中存储有触摸屏操作信息与窗口下方预设位置的对应关系,以及所述鼠标操作信息与窗口上方预设位置 的对应关系。
在实际应用中,智能终端预先设置的窗口布局表中存储有触摸屏操作信息与窗口下方预设位置的对应关系,以及鼠标操作信息与窗口上方预设位置的对应关系。也就是说,当智能终端接收到大屏显示器发送的检测消息时,若该检测消息为触摸屏操作消息,则智能终端可根据窗口布局表中触摸屏操作信息与窗口下方预设位置的对应关系,确定该检测消息,即触摸屏操作消息,对应的窗口控制栏的布局位置为窗口下方预设位置,这就便于用户在通过触摸的方式对大屏进行操作时,可通过点击窗口下方的窗口控制栏对其进行关闭等操作,避免了在传统显示方式中,窗口控制栏被布局在窗口上方,而由于屏幕过大,可能引起用户因为身高不足,很难对大屏显示器上显示的窗口上方的窗口控制栏进行触摸操作,可提高用户体验;同理,若该检测信息为鼠标操作信息,则智能终端可根据窗口布局表中鼠标操作信息与窗口上方预设位置的对应关系,确定该检测消息,即触摸屏操作消息,对应的窗口控制栏的布局位置为窗口上方预设位置,这符合传统方式中,人们使用鼠标对窗口进行操作的习惯,也提高了用户体验。
在实际应用中,智能终端预先设置的窗口布局表中还可以存储有触摸屏操作信息与窗口控制栏放大的对应关系,以及外部输入设备操作信息与窗口控制栏缩小的对应关系。这里,窗口控制栏尺寸的缩放可以包括整体缩放窗口控制栏的方式,也可以是只缩放窗口控制栏上的按钮的方式。其中,整体缩放窗口控制栏的方式可以是两个维度缩放,即同时在窗口上下方向和/或左右方向进行缩放,比如,当窗口控制栏位于窗口主体部中间位置时,可以同时缩放窗口控制栏的上下高度和左右长度,再比如,当窗口控制栏位于窗口主体部某个角落并且窗口控制栏两边与窗口主体部两边部分重合的位置时,可以同时缩放窗口控制栏的非重合两边的上下高度和左右长度;当然整体缩放窗口控制栏的方式也可以是单一维度缩放,例如,窗口控制栏与窗口主体部相重合的一边保持不变,仅缩放与窗口主体部垂直的一边,比如,当窗口控制栏位于窗口主体部下方位置时,仅缩放窗口控制栏的高度,而在长度方向保持不变。
这里,缩放窗口控制栏布局尺寸和窗口预设位置之间可以有关联关系,比如当智能终端接收到大屏显示器发送的检测信息为触摸屏操作信息时,对应的窗口控制栏的布局位置为窗口下方预设位置并且同时窗口控制栏放大;当智能终端接收到大屏显示器发送的检测信息为鼠标等预设外部输入设备的操作信息时,对应的窗口控制栏的布局位置为窗口上方预设位置并且同时窗口控制栏缩小。当然,缩放窗口控制栏布局尺寸和窗口预设位置之间也可以没有关联关系,比如当智能终端接收到大屏显示器发送的检测信息为触摸屏操作信息时,可以仅对应窗口控制栏的布局位置为窗口下方预设位置或者仅对应窗口控制栏放大;当智能终端接收到大屏显示器发送的检测信息为鼠标等预设外部输入设备的操作信息时,可 以仅对应窗口控制栏的布局位置为窗口上方预设位置或者仅对应窗口控制栏缩小。
这里,当智能终端接收到大屏显示器发送的检测信息不包括鼠标等预设外部输入设备的操作信息时,智能终端优先默认当前为触摸屏操作,智能终端选择窗口布局表中触摸屏操作信息与窗口布局的对应关系对窗口进行布局。
在实际应用中,智能终端还可以存储有预设指令信息包括语音指令信息和/或运动轨迹信息和/或点按操作信息,以在窗口布局表中建立与窗口控制栏布局的对应关系。比如,根据运动轨迹或点按操作信息在屏幕上的发生位置,将窗口控制栏布局在窗口主体部接近于该发生位置的一侧。例如,当窗口控制栏本身位于主体位置左侧时,如果在窗口主体部右侧的屏幕区域中接收到预设滑动手势指令或点按触点指令,可以将窗口布局栏调整到窗口主体部右侧,例如,在实际应用中对应的是,如果当前的大屏显示器是超大电子白板,当演示人员从超大电子白板左侧走到右侧时,可以通过预设的手势运动轨迹例如向右滑动,将原位于窗口主体左侧的窗口控制栏切换窗口主体右侧。如果是语音指令,则可以分析语音指令中的方位信息、或缩放命令信息,根据方位信息和/或缩放命令信息,对窗口控制栏的位置和/或尺寸进行调整。
运动轨迹信息和/或点按操作信息与窗口控制栏布局的对应关系可以由用户根据操作习惯进行预先设置,也可以根据使用情况由用户或者智能终端系统进行更新。
在步骤202中,另一种可能的实现方式是,窗口布局表中存储有大屏显示器水平放置与窗口下方预设位置的对应关系,以及大屏显示器竖直放置与窗口上方预设位置的对应关系。
在实际应用中,智能终端预先设置的窗口布局表中存储有大屏显示器的放置角度信息与窗口预设位置的对应关系,大屏显示器的放置角度信息具体为大屏显示器与水平面所成的各个角度范围。其中,一种优选的方式是,窗口布局表中存储有大屏显示器水平放置与窗口下方预设位置的对应关系,以及大屏显示器竖直放置与窗口上方预设位置的对应关系。也就是说,当智能终端接收到大屏显示器发送的重力感应器检测到的屏幕放置信息时,若该屏幕放置信息为大屏显示器水平放置,则智能终端可根据窗口布局表中大屏显示器水平放置与窗口下方预设位置的对应关系,确定该屏幕放置信息,即大屏显示器水平放置,对应的窗口控制栏的布局位置为窗口下方预设位置;同理,若该屏幕放置信息为大屏显示器竖直放置,则智能终端可根据窗口布局表中大屏显示器竖直放置与窗口上方预设位置的对应关系,确定该屏幕放置信息,即大屏显示器竖直放置,对应的窗口控制栏的布局位置为窗口上方预设位置。
这里,智能终端预先设置的窗口布局表中还存储有大屏显示器的放置角度信息与窗口控制栏缩放的对应关系,大屏显示器的放置角度信息具体为大屏显示器所在平面与水平面所成的锐角夹角各个角度范围,具体对应关系包括:
(1)大屏显示器的放置角度小于a时,对应窗口控制栏相对于窗口主体部下方设置,所述a介于0度到90度之间;
(2)大屏显示器的放置角度大于b时,对应窗口控制栏相对于窗口主体部上方设置,所述b介于0度到90度之间;
(3)大屏显示器的放置角度小于c时,对应放大窗口控制栏,所述c介于0度到90度之间;
(4)大屏显示器的放置角度大于d时,对应缩小窗口控制栏,所述d介于0度到90度之间;
这里,a、b、c、d四个角度值可以相同也可以不同。
智能终端在确定检测消息对应的窗口布局位置后,将继续执行步骤203。
步骤203:智能终端调用预设的窗口控制栏布局接口,根据窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局。
在实际应用中,当智能终端根据到大屏显示器的检测消息,在预设的窗口布局表中,确定出该检测消息对应的窗口布局位置后,将调用预设的窗口控制栏布局接口,根据确定出的窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,其中,窗口控制栏布局接口指的控制窗口上的窗口控制栏显示位置的布局工具。
这里,当触摸屏操作信息与鼠标等外部输入设备的操作信息及屏幕放置信息同时存在时,优先适用触摸屏操作信息对应的窗口布局方式,即当检测信息至少包括触摸屏操作信息时,与检测信息对应的窗口布局方式为触摸屏操作信息对应的窗口布局方式;当检测信息不包括触摸屏操作信息但包括屏幕放置信息时,与检测信息对应的窗口布局方式为屏幕放置信息对应的窗口布局方式。
举例说明:假设当智能终端接收到的大屏显示器的检测消息为触摸屏操作信息,如图3所示。而在预设的窗口布局表中存储有触摸屏操作信息与窗口下方预设位置的对应关系,则智能终端确定出该检测消息,即触摸屏操作信息,对应的窗口布局位置为窗口下方预设位置,进而,可根据该窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,如图6所示,智能终端针对于触摸屏操作信息的检测消息,调用预设的窗口控制栏布局接口,根据确定出的窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,将包含“最小化”、“关闭”等按钮的窗口控制栏自适应布局在窗口的下方。
或者,假设当智能终端接收到的大屏显示器的检测消息为鼠标操作信息,如图4所示。而在预设的窗口布局表中存储有鼠标操作信息与窗口上方预设位置的对应关系,则智能终端确定出该检测消息,即鼠标操作信息,对应的窗口布局位置为窗口上方预设位置,进而,可根据该窗口布局位置对大屏显示器上显示的窗口 上的窗口控制栏进行布局,如图7所示,智能终端针对于鼠标操作信息的检测消息,调用预设的窗口控制栏布局接口,根据确定出的窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,将包含“最小化”、“关闭”等按钮的窗口控制栏自适应布局在窗口的上方。
再举例说明:假设当智能终端接收到的大屏显示器的检测消息为屏幕放置信息,如图5所示。而在预设的窗口布局表中存储有屏幕放置信息与窗口预设位置的对应关系,则智能终端确定出该检测消息,即屏幕放置信息,对应的窗口布局位置为窗口预设位置,进而,可根据该窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,如图8所示,智能终端针对于大屏显示器竖直放置的检测消息,在预设的窗口布局表中,确定大屏显示器竖直放置对应的窗口布局位置为窗口上方预设位置,则调用预设的窗口控制栏布局接口,根据确定出的窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,将包含“最小化”、“关闭”等按钮的窗口控制栏自适应布局在窗口的上方。
或者,如图9所示,智能终端针对于大屏显示器水平放置的检测消息,在预设的窗口布局表中,确定大屏显示器竖直放置对应的窗口布局位置为窗口下方预设位置,则调用预设的窗口控制栏布局接口,根据确定出的窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局,将包含“最小化”、“关闭”等按钮的窗口控制栏自适应布局在窗口的下方。
在本申请一些可能的实现方式中,本申请还包括:更新窗口布局表中存储的各种检测信息与窗口布局位置的对应关系。
在实际应用中,窗口布局表中存储的各种检查消息与窗口布局位置是可以根据用户需求进行实时更新的。
举例说明:假设窗口布局表中原来存储的大屏显示器竖直放置与窗口上方预设位置的对应关系,窗口控制栏的布局如图8所示,但若用户希望当大屏显示器竖直放置时,将其显示的窗口的控制栏布局在左侧,即,用户希望将大屏显示器水平放置与窗口左侧预设位置对应,则智能终端即可根据该用户的需求及时更新窗口布局表,将其中的大屏显示器竖直放置与窗口左侧预设位置建立对应关系,以便于后续智能终端在接收到大屏显示器的重力感应器检测到的屏幕放置信息为大屏显示器竖直放置时,可根据更新的窗口布局表中大屏显示器竖直放置与窗口左侧预设位置的对应关系,确定出的窗口布局位置,进而对大屏显示器上显示的窗口上的窗口控制栏进行布局,将包含“最小化”、“关闭”等按钮的窗口控制栏自适应布局在窗口的左侧,如图10所示。
这里,还可以更改或更新窗口布局表中存储的各种检测信息与窗口布局尺寸的对应关系。
其中,窗口布局表中存储的各种检测信息与窗口布局的对应关系可以根据用 户需求由用户进行更新也可以由服务器通过分析用户操作习惯进行自动更新。
这样,本申请提供的窗口控制栏的布局方法中,智能终端连接有大屏显示器,且大屏显示器上显示有至少一个窗口。智能终端首先接收来自大屏显示器的检测信息,其中,该检测信息包括屏幕操作信息或屏幕放置信息;然后,智能终端在预设的窗口布局表中,确定该检测信息对应的窗口布局位置,其中,窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;接着,智能终端调用预设的窗口控制栏布局接口,根据上述窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局。从而实现了根据大屏显示器的各种信息适应性的对屏幕上显示的窗口控制栏进行布局调整,提升了用户体验。
基于以上窗口控制栏的布局方法,本申请还提供了一种窗口控制栏的布局装置,所述装置应用于智能终端,所述智能终端连接有大屏显示器,所述大屏显示器上显示有至少一个窗口,如图11所示,该装置包括:
接收单元1101,用于接收来自所述大屏显示器的检测信息,所述检测信息包括屏幕操作信息或屏幕放置信息;
确定单元1102,用于在预设的窗口布局表中,确定所述检测信息对应的窗口布局位置;所述窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;所述窗口布局表中还存储有各种检测信息与窗口布局尺寸的对应关系。
布局单元1103,用于调用预设的窗口控制栏布局接口,根据所述窗口布局位置对所述大屏显示器上显示的窗口上的窗口控制栏进行布局。
这里,检测信息包括预设指令信息,预设指令信息包括语音指令信息和/或运动轨迹信息和/或点按操作信息。预设指令信息可以由智能终端系统预先存储,以在预设的窗口布局表中建立与窗口控制栏布局方式的对应关系,运动轨迹信息是指用户在大屏显示器上的触点运动轨迹、或外部设备的信号在大屏显示器上的移动轨迹、或者感应到的用户位置运动信息。运动轨迹信息包括运动方向信息,与窗口布局方式的对应关系包括,运动方向对应窗口控制栏相对于窗口主体部的位置变化方向。其中,运动方向包括触点的滑动方向、或外部输入设备的信号在显示装置上的运动方向,例如,运动方向为向右滑动时,则窗口控制栏相对于窗口主体部的右侧设置,若运动方向为向左滑动时,则窗口控制栏相对于窗口主体部的左侧设置。点按操作信息是指用户在大屏显示器上进行的按照预设信息的点按操作,比如点按触点的持续时间和/或发生时间相邻的两个触点的间隔时间满足预设条件,即长按、或连续多次触摸或点击屏幕等操作信息,比如长按对应放大窗口控制栏等。
可选地,所述检测信息包括屏幕操作信息,所述屏幕操作信息包括触摸屏操作信息和鼠标操作信息;
所述接收单元1101具体包括:
第一接收子单元,用于接收所述大屏显示器在检测到触摸屏操作时发送的所述触摸屏操作信息;
或,
第二接收子单元,用于接收所述大屏显示器在检测到鼠标操作时发送的所述鼠标操作信息。
可选地,所述窗口布局表中存储有所述触摸屏操作信息与窗口下方预设位置的对应关系,以及所述鼠标操作信息与窗口上方预设位置的对应关系。所述窗口布局表中还存储有所述触摸屏操作信息对应放大窗口控制栏的对应关系,以及所述鼠标等外部输入设备操作信息对应缩小窗口控制栏的对应关系,和所述检测信号不包括鼠标操作信息时对应窗口控制栏相对于窗口主体部下方设置和/或对应放大窗口控制栏的对应关系。
可选地,所述检测信息包括屏幕放置信息;所述屏幕放置信息包括所述大屏显示器的放置角度信息;
所述接收单元1101具体包括:
第三接收子单元,用于接收所述大屏显示器的重力感应器检测到的所述大屏显示器的放置角度信息。
可选地,所述窗口布局表中存储有所述大屏显示器水平放置与窗口下方预设位置的对应关系,以及所述大屏显示器竖直放置与窗口上方预设位置的对应关系。所述窗口布局表中还存储有大屏显示器的放置角度信息与窗口控制栏缩放的对应关系,大屏显示器的放置角度信息具体为大屏显示器所在平面与水平面所成的锐角夹角各个角度范围,具体对应关系包括:
(1)大屏显示器的放置角度小于a时,对应窗口控制栏相对于窗口主体部下方设置,所述a介于0度到90度之间;
(2)大屏显示器的放置角度大于b时,对应窗口控制栏相对于窗口主体部上方设置,所述b介于0度到90度之间;
(3)大屏显示器的放置角度小于c时,对应放大窗口控制栏,所述c介于0度到90度之间;
(4)大屏显示器的放置角度大于d时,对应缩小窗口控制栏,所述d介于0度到90度之间;
这里,a、b、c、d四个角度值可以相同也可以不同。
可选地,所述装置还包括:
当触摸屏操作信息与鼠标等外部输入设备操作信息及屏幕放置信息同时存在时,优先适用触摸屏操作信息对应的窗口布局方式,即当检测信息至少包括触摸屏操作信息时,与检测信息对应的窗口布局方式为触摸屏操作信息对应的窗口布局方式;当检测信息不包括触摸屏操作信息但包括屏幕放置信息时,与检 测信息对应的窗口布局方式为屏幕放置信息对应的窗口布局方式。
可选地,所述装置还包括:
更新单元,用于更新所述窗口布局表中存储的各种检测信息与窗口布局位置的对应关系。
这里,还可以更改或更新窗口布局表中存储的各种检测信息与窗口布局尺寸的对应关系。
其中,窗口布局表中存储的各种检测信息与窗口布局的对应关系可以根据用户需求由用户进行更新也可以由服务器通过分析用户操作习惯进行自动更新。
这样,本申请提供的窗口控制栏的布局装置中,智能终端连接有大屏显示器,且大屏显示器上显示有至少一个窗口。智能终端首先接收来自大屏显示器的检测信息,其中,该检测信息包括屏幕操作信息或屏幕放置信息;然后,智能终端在预设的窗口布局表中,确定该检测信息对应的窗口布局位置,其中,窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;接着,智能终端调用预设的窗口控制栏布局接口,根据上述窗口布局位置对大屏显示器上显示的窗口上的窗口控制栏进行布局。从而实现了根据大屏显示器的各种信息适应性的对屏幕上显示的窗口控制栏进行布局调整,提升了用户体验。
相应的,本发明实施例还提供一种窗口控制栏的布局设备,参见图12所示,可以包括:
处理器1201、存储器1202、输入装置1203和输出装置1204。窗口控制栏的布局设备中的处理器1201的数量可以一个或多个,图12中以一个处理器为例。在本发明的一些实施例中,处理器1201、存储器1202、输入装置1203和输出装置1204可通过总线或其它方式连接,其中,图12中以通过总线连接为例。
存储器1202可用于存储软件程序以及模块,处理器1201通过运行存储在存储器1202的软件程序以及模块,从而执行窗口控制栏的布局设备的各种功能应用以及数据处理。存储器1202可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序等。此外,存储器1202可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。输入装置1203可用于接收输入的数字或字符信息,以及产生与窗口控制栏的布局设备的用户设置以及功能控制有关的信号输入。
具体在本实施例中,处理器1201会按照如下的指令,将一个或一个以上的应用程序的进程对应的可执行文件加载到存储器1202中,并由处理器1201来运行存储在存储器1202中的应用程序,从而实现上述窗口控制栏的布局方法中的各种功能。
对于装置实施例而言,由于其基本对应于方法实施例,所以相关之处参 见方法实施例的部分说明即可。以上所描述的装置实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本实施例方案的目的。本领域普通技术人员在不付出创造性劳动的情况下,即可以理解并实施。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
以上对本申请实施例所提供的一种窗口控制栏的布局方法、装置及设备进行了详细介绍,本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (34)

  1. 一种窗口控制栏的布局方法,其特征在于,所述方法应用于智能终端,所述智能终端连接有大屏显示器,所述大屏显示器上显示有至少一个窗口,所述方法包括:
    所述智能终端接收来自所述大屏显示器的检测信息,所述检测信息包括屏幕操作信息或屏幕放置信息;
    所述智能终端在预设的窗口布局表中,确定所述检测信息对应的窗口布局位置;所述窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;
    所述智能终端调用预设的窗口控制栏布局接口,根据所述窗口布局位置对所述大屏显示器上显示的窗口上的窗口控制栏进行布局。
  2. 根据权利要求1所述的窗口控制栏的布局方法,其特征在于,所述检测信息包括屏幕操作信息,所述屏幕操作信息包括触摸屏操作信息和鼠标操作信息;
    所述智能终端接收来自所述大屏显示器的检测信息,包括:
    所述智能终端接收所述大屏显示器在检测到触摸屏操作时发送的所述触摸屏操作信息;
    或,
    所述智能终端接收所述大屏显示器在检测到鼠标操作时发送的所述鼠标操作信息。
  3. 根据权利要求2所述的窗口控制栏的布局方法,其特征在于,所述窗口布局表中存储有所述触摸屏操作信息与窗口下方预设位置的对应关系,以及所述鼠标操作信息与窗口上方预设位置的对应关系。
  4. 根据权利要求1所述的窗口控制栏的布局方法,其特征在于,所述检测信息包括屏幕放置信息;所述屏幕放置信息包括所述大屏显示器的放置角度信息;
    所述智能终端接收来自所述大屏显示器的检测信息,包括:
    所述智能终端接收所述大屏显示器的重力感应器检测到的所述大屏显示器 的放置角度信息。
  5. 根据权利要求4所述的窗口控制栏的布局方法,其特征在于,所述窗口布局表中存储有所述大屏显示器水平放置与窗口下方预设位置的对应关系,以及所述大屏显示器竖直放置与窗口上方预设位置的对应关系。
  6. 根据权利要求1-5中任一项所述的窗口控制栏的布局方法,其特征在于,所述方法还包括:
    更新所述窗口布局表中存储的各种检测信息与窗口布局位置的对应关系。
  7. 一种窗口控制栏的布局装置,其特征在于,所述装置应用于智能终端,所述智能终端连接有大屏显示器,所述大屏显示器上显示有至少一个窗口,所述装置包括:
    接收单元,用于接收来自所述大屏显示器的检测信息,所述检测信息包括屏幕操作信息或屏幕放置信息;
    确定单元,用于在预设的窗口布局表中,确定所述检测信息对应的窗口布局位置;所述窗口布局表中存储有各种检测信息与窗口布局位置的对应关系;
    布局单元,用于调用预设的窗口控制栏布局接口,根据所述窗口布局位置对所述大屏显示器上显示的窗口上的窗口控制栏进行布局。
  8. 根据权利要求7所述的装置,其特征在于,所述检测信息包括屏幕操作信息,所述屏幕操作信息包括触摸屏操作信息和鼠标操作信息;
    所述接收单元包括:
    第一接收子单元,用于接收所述大屏显示器在检测到触摸屏操作时发送的所述触摸屏操作信息;
    或,
    第二接收子单元,用于接收所述大屏显示器在检测到鼠标操作时发送的所述鼠标操作信息。
  9. 根据权利要求8所述的装置,其特征在于,所述窗口布局表中存储有所述触摸屏操作信息与窗口下方预设位置的对应关系,以及所述鼠标操作信息与窗口上方预设位置的对应关系。
  10. 根据权利要求7所述的装置,其特征在于,所述检测信息包括屏幕放置信息;所述屏幕放置信息包括所述大屏显示器的放置角度信息;
    所述接收单元包括:
    第三接收子单元,用于接收所述大屏显示器的重力感应器检测到的所述大屏显示器的放置角度信息。
  11. 根据权利要求10所述的装置,其特征在于,所述窗口布局表中存储有所述大屏显示器水平放置与窗口下方预设位置的对应关系,以及所述大屏显示器竖直放置与窗口上方预设位置的对应关系。
  12. 根据权利要求7-11中任一项所述的装置,其特征在于,所述装置还包括:
    更新单元,用于更新所述窗口布局表中存储的各种检测信息与窗口布局位置的对应关系。
  13. 一种窗口控制栏的布局设备,其特征在于,所述设备包括存储器和处理器,
    所述存储器用于存储程序代码,并将所述程序代码传输给所述处理器;
    所述处理器用于根据所述程序代码中的指令,执行权利要求1-6中任一项所述的窗口控制栏的布局方法。
  14. 一种窗口控制栏的布局方法,其特征在于,所述方法应用于智能终端,所述智能终端包括或连接有显示装置,所述显示装置上显示有至少一个窗口,所述方法包括:
    所述智能终端接收检测信息,所述检测信息包括屏幕操作信息和/或屏幕放置信息;
    所述智能终端根据所述检测信息和预先设置的检测信息与窗口布局方式的对应关系,确定与所述检测信息对应的窗口布局方式;
    所述智能终端根据所述与所述检测信息对应的窗口布局方式,对所述显示装置上显示的窗口上的窗口控制栏进行布局。
  15. 根据权利要求14所述的窗口控制栏的布局方法,其特征在于,所述检测信息还包括预设指令信息,所述预设指令信息包括语音指令信息和/或运动轨 迹信息和/或点按操作信息。
  16. 根据权利要求15所述的窗口控制栏的布局方法,其特征在于,所述运动轨迹信息包括运动方向,所述预先设置的检测信息与窗口布局方式的对应关系,包括:所述运动方向对应窗口控制栏相对于窗口主体部的位置变化方向;
    其中,所述运动方向包括触点的滑动方向、或外部输入设备的信号在所述显示装置上的运动方向。
  17. 根据权利要求14所述的窗口控制栏的布局方法,其特征在于,所述预先设置的检测信息与窗口布局方式的对应关系,包括检测信息对应窗口控制栏相对于窗口主体部的设置位置,和/或检测信息对应缩放窗口控制栏的尺寸。
  18. 根据权利要求17所述的窗口控制栏的布局方法,其特征在于,所述屏幕操作信息包括触摸屏操作信息和/或外部输入设备操作信息。
  19. 根据权利要求18所述的窗口控制栏的布局方法,其特征在于,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
    (1)所述触摸屏操作信息对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏;
    (2)所述外部输入设备操作信息对应窗口控制栏相对于窗口主体部上方设置,和/或对应缩小窗口控制栏;
    (3)所述检测信号不包括外部输入设备操作信息时,对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏。
  20. 根据权利要求17所述的窗口控制栏的布局方法,其特征在于,所述屏幕放置信息包括所述显示装置的放置角度。
  21. 根据权利要求20所述的窗口控制栏的布局方法,其特征在于,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
    (1)所述显示装置的放置角度小于a时,对应窗口控制栏相对于窗口主体部下方设置,所述a介于0度到90度之间;
    (2)所述显示装置的放置角度大于b时,对应窗口控制栏相对于窗口主体部上方设置,所述b介于0度到90度之间;
    (3)所述显示装置的放置角度小于c时,对应放大窗口控制栏,所述c介于0度到90度之间;
    (4)所述显示装置的放置角度大于d时,对应缩小窗口控制栏;所述d介于0度到90度之间;
  22. 根据权利要求18所述的窗口控制栏的布局方法,其特征在于,当所述检测信息至少包括触摸屏操作信息时,所述与所述检测信息对应的窗口布局方式为触摸屏操作信息对应的窗口布局方式;当所述检测信息不包括触摸屏操作信息但包括屏幕放置信息时,所述与所述检测信息对应的窗口布局方式为屏幕放置信息对应的窗口布局方式;
  23. 根据权利要求14-22中任一项所述的窗口控制栏的布局方法,其特征在于,所述方法还包括:
    更新所述预先设置的检测信息与窗口布局方式的对应关系。
  24. 一种窗口控制栏的布局装置,其特征在于,所述装置应用于智能终端,所述智能终端包括或连接有显示装置,所述显示装置上显示有至少一个窗口,所述装置包括:
    接收单元,用于接收检测信息,所述检测信息包括屏幕操作信息和/或屏幕放置信息;
    确定单元,用于根据所述检测信息和预先设置的检测信息与窗口布局方式的对应关系,确定与所述检测信息对应的窗口布局方式;
    布局单元,用于根据所述与所述检测信息对应的窗口布局方式对所述显示装置上显示的窗口上的窗口控制栏进行布局。
  25. 根据权利要求24所述的装置,其特征在于,所述检测信息还包括预设指令信息,所述预设指令信息包括语音指令信息和/或运动轨迹信息和/或点按操作信息。
  26. 根据权利要求25所述的装置,其特征在于,所述运动轨迹信息包括运动方向,所述预先设置的检测信息与窗口布局方式的对应关系,包括:所述运动方向对应窗口控制栏相对于窗口主体部的位置变化方向。
    其中,所述运动方向包括触点的滑动方向、或外部输入设备的信号在所述显示装置上的运动方向。
  27. 根据权利要求24所述的装置,其特征在于,所述预先设置的检测信息与窗口布局方式的对应关系,包括检测信息对应窗口控制栏相对于窗口主体部的设置位置,和/或检测信息对应缩放窗口控制栏的尺寸。
  28. 根据权利要求27所述的装置,其特征在于,所述屏幕操作信息包括触摸屏操作信息和外部输入设备操作信息;
    所述接收单元包括:
    第一接收子单元,用于接收由触屏操作产生的所述触摸屏操作信息;
    或,
    第二接收子单元,用于接收外部输入设备操作时发送的所述外部输入设备操作信息。
  29. 根据权利要求28所述的装置,其特征在于,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
    (1)所述触摸屏操作信息对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏;
    (2)所述外部输入设备操作信息对应窗口控制栏上方预设位置,和/或对应缩小窗口控制栏。
    (3)所述检测信号不包括外部输入设备操作信息时,对应窗口控制栏相对于窗口主体部下方设置,和/或对应放大窗口控制栏。
  30. 根据权利要求27所述的装置,其特征在于,所述屏幕放置信息包括所述显示装置的放置角度信息;
    所述接收单元包括:
    第三接收子单元,用于接收所述显示装置的放置角度。
  31. 根据权利要求30所述的装置,其特征在于,所述预先设置的检测信息与窗口布局方式的对应关系,至少包括下述对应关系中的一种:
    (1)所述显示装置的放置角度小于a时,对应窗口控制栏相对于窗口主体部下方设置,所述a介于0度到90度之间;
    (2)所述显示装置的放置角度大于b时,对应窗口控制栏相对于窗口主体部 上方设置,所述b介于0度到90度之间;
    (3)所述显示装置的放置角度小于c时,对应放大窗口控制栏,所述c介于0度到90度之间;
    (4)所述显示装置的放置角度大于d时,对应缩小窗口控制栏;所述d介于0度到90度之间;
  32. 根据权利要求28所述的装置,其特征在于,当所述检测信息至少包括触摸屏操作信息时,所述与所述检测信息对应的窗口布局方式为触摸屏操作信息对应的窗口布局方式;当所述检测信息不包括触摸屏操作信息但包括屏幕放置信息,所述与所述检测信息对应的窗口布局方式为屏幕放置信息对应的窗口布局方式。
  33. 根据权利要求24-32中任一项所述的装置,其特征在于,所述装置还包括:
    更新单元,用于更新所述预先设置的检测信息与窗口布局方式的对应关系。
  34. 一种窗口控制栏的布局设备,其特征在于,所述设备包括存储器和处理器,
    所述存储器用于存储程序代码,并将所述程序代码传输给所述处理器;所述处理器用于根据所述程序代码中的指令,执行权利要求14-23中任一项所述的窗口控制栏的布局方法。
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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110673782B (zh) 2019-08-29 2022-11-29 荣耀终端有限公司 一种应用于投屏场景的控制方法以及相关设备
CN113190319B (zh) * 2021-05-06 2023-10-17 Oppo广东移动通信有限公司 浮窗控制方法、装置、电子设备及存储介质
CN114860143A (zh) * 2022-05-20 2022-08-05 Oppo广东移动通信有限公司 导航控制方法及装置、终端设备、存储介质

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103324392A (zh) * 2013-06-20 2013-09-25 广东欧珀移动通信有限公司 根据手持位置调整图形控件的方法及触摸式移动终端
CN103440087A (zh) * 2013-08-07 2013-12-11 广东欧珀移动通信有限公司 一种自定义状态栏位置的方法及移动终端
CN103677711A (zh) * 2012-09-10 2014-03-26 三星电子株式会社 连接移动终端和外部显示器的方法和实现该方法的装置
US20140380208A1 (en) * 2013-06-24 2014-12-25 Fih (Hong Kong) Limited Electronic device and method for adjusting user interface of the electronic device
CN105068735A (zh) * 2015-08-21 2015-11-18 广州视睿电子科技有限公司 用户界面布局的调整方法及装置
CN106502530A (zh) * 2016-10-09 2017-03-15 乐视控股(北京)有限公司 一种终端系统控制栏显示方法及装置
CN107454259A (zh) * 2017-07-31 2017-12-08 珠海市魅族科技有限公司 一种控件调节方法、装置及计算机装置、可读存储介质

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7802202B2 (en) * 2005-03-17 2010-09-21 Microsoft Corporation Computer interaction based upon a currently active input device
US20140075377A1 (en) * 2012-09-10 2014-03-13 Samsung Electronics Co. Ltd. Method for connecting mobile terminal and external display and apparatus implementing the same
ES2599374T3 (es) * 2012-10-08 2017-02-01 Huawei Device Co., Ltd. Método de procesamiento de la interfaz de usuario de un dispositivo de pantalla táctil y dispositivo de pantalla táctil
CN107608508B (zh) * 2012-12-19 2021-07-16 联想(北京)有限公司 一种信息处理方法及电子设备
CN103365598B (zh) 2013-07-22 2017-02-15 广东威创视讯科技股份有限公司 大屏幕触摸的方法和装置

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103677711A (zh) * 2012-09-10 2014-03-26 三星电子株式会社 连接移动终端和外部显示器的方法和实现该方法的装置
CN103324392A (zh) * 2013-06-20 2013-09-25 广东欧珀移动通信有限公司 根据手持位置调整图形控件的方法及触摸式移动终端
US20140380208A1 (en) * 2013-06-24 2014-12-25 Fih (Hong Kong) Limited Electronic device and method for adjusting user interface of the electronic device
CN103440087A (zh) * 2013-08-07 2013-12-11 广东欧珀移动通信有限公司 一种自定义状态栏位置的方法及移动终端
CN105068735A (zh) * 2015-08-21 2015-11-18 广州视睿电子科技有限公司 用户界面布局的调整方法及装置
CN106502530A (zh) * 2016-10-09 2017-03-15 乐视控股(北京)有限公司 一种终端系统控制栏显示方法及装置
CN107454259A (zh) * 2017-07-31 2017-12-08 珠海市魅族科技有限公司 一种控件调节方法、装置及计算机装置、可读存储介质

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