WO2015109530A1 - 批量操作方法和批量操作装置 - Google Patents
批量操作方法和批量操作装置 Download PDFInfo
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- WO2015109530A1 WO2015109530A1 PCT/CN2014/071375 CN2014071375W WO2015109530A1 WO 2015109530 A1 WO2015109530 A1 WO 2015109530A1 CN 2014071375 W CN2014071375 W CN 2014071375W WO 2015109530 A1 WO2015109530 A1 WO 2015109530A1
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- area
- batch
- batch operation
- touch points
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Classifications
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction 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
- G06F3/0488—Interaction 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
- G06F3/04883—Interaction 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 for inputting data by handwriting, e.g. gesture or text
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0481—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
- G06F3/04817—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance using icons
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0481—Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
- G06F3/0482—Interaction with lists of selectable items, e.g. menus
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0484—Interaction 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
- G06F3/04842—Selection of displayed objects or displayed text elements
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0484—Interaction 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
- G06F3/0486—Drag-and-drop
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2203/00—Indexing scheme relating to G06F3/00 - G06F3/048
- G06F2203/041—Indexing scheme relating to G06F3/041 - G06F3/045
- G06F2203/04104—Multi-touch detection in digitiser, i.e. details about the simultaneous detection of a plurality of touching locations, e.g. multiple fingers or pen and finger
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2203/00—Indexing scheme relating to G06F3/00 - G06F3/048
- G06F2203/048—Indexing scheme relating to G06F3/048
- G06F2203/04808—Several contacts: gestures triggering a specific function, e.g. scrolling, zooming, right-click, when the user establishes several contacts with the surface simultaneously; e.g. using several fingers or a combination of fingers and pen
Definitions
- the present invention relates to the field of communications technologies, and in particular, to a batch operation method and a batch processing device. Background technique
- the invention is based on the above technical problems, and proposes a new batch operation technology, which can quickly and conveniently perform batch operations on the operation object by using the gap between the operation objects.
- a batch processing method including: identifying a plurality of touch points that a user simultaneously acts on a screen of a terminal; determining whether at least two touch points of the plurality of touch points The position of the mesh path is within the area of the mesh path, wherein the mesh path is composed of a gap area between the operation objects on the terminal interface; where the location of the mesh path is determined at a position where at least two touch points are determined a batch operation target area is formed on the terminal interface according to a position of the touch point in the area where the mesh path is located; and the batch operation target area is A plurality of operation objects perform a predetermined operation.
- the application interface, document, picture and other data can be displayed on the terminal interface.
- the gap between the data becomes larger.
- the remaining area forms a set of mesh path areas.
- the grid path area is used to detect whether at least two touch points of the user are in the mesh path area. If yes, the batch operation mode proposed by the present invention can be triggered.
- a batch operation object area may be formed on the current operation interface, and the area includes a plurality of operation objects. If the user presets a predetermined operation such as deleting, the batch operation object Multiple operation objects in the area will be deleted. Therefore, there is no need to check one by one, and there is no need to enter the batch operation interface specifically, which improves the operation efficiency, and also makes full use of the gap between the operation objects, and provides a gap for the gap. A quick and convenient application.
- the step of forming a batch operation target area on the terminal interface according to the location of the touch point in the area where the mesh path is located includes: a touch point in the area is used as a vertex in the batch operation target area; starting from the position of the touch point, the area dividing line is radiated along the path direction of the mesh path; and the plurality of touch points are correspondingly The closed area formed by the intersection of the strip dividing lines serves as the batch operation target area.
- a mesh path needs to be considered, and the touch point is a vertex of the batch operation target area, and the touch point is used as a starting point and the area dividing line is radiated along the mesh path direction, and the area dividing line is formed.
- the area is a batch operation object area.
- two touch points are distributed on different grid path areas to form a rectangular area, that is, a batch operation object area.
- the plurality of operation objects are superimposed to form an operation as a whole for the user to operate.
- the plurality of operation objects may be superimposed to form a whole, and the user may move the whole operation, without selecting the plurality of operation objects again.
- At least one item to be operated is displayed; and the operation is integrally moved to the at least one item to be operated.
- a to-be-operated item performs a batch operation corresponding to the one item to be operated on the operation as a whole.
- an item to be operated is displayed in the edge area of the screen, such as deleting, hiding, creating a new folder, encrypting, and the like.
- the user can move the operation to one of the items to be operated and stay for 2 seconds, the terminal will consider that the item to be operated is selected, and then perform the corresponding batch operation on the whole operation, the whole process is convenient and fast, and no need for the user.
- the batch operation is completed.
- at least one item to be operated is prompted; and the batch operation corresponding to one item to be operated selected by the user is performed on the operation as a whole.
- the operation is moved to the designated area as a whole, when the operation is formed as a whole, the item to be operated is displayed, and the user can select a corresponding operation item in the item to be operated. After the user selects an item to be operated, This operation performs bulk operations as a whole.
- the trigger mode of the touch point is consistent with the preset trigger mode; if the preset trigger mode is met, the terminal is entered into the batch operation mode, and the identifier is selected.
- the preset touch method may be long pressing a plurality of touch points, pinching the two touch points in opposite directions or fixing one touch point, and pinching another touch point to the touch point.
- the batch operation object area and the touch point may be identified in a special display manner, for example, floating display the batch operation object area, and the dot represents the touch point. .
- the predetermined operation is performed; if the predetermined time period is detected To the area adjustment operation, a new batch operation target area is formed according to the position after the one or more touch points of the plurality of touch points are adjusted.
- the selected disclosure operation object area may be wrong, thus providing a way for the user to flexibly adjust, and it is possible to detect whether the user has an area within a set predetermined time period, for example, 3 seconds.
- the adjustment operation if yes, indicates that the user needs to adjust the batch operation target area, otherwise the area adjustment is not performed.
- the position of one of the touch points can be adjusted, thereby expanding or reducing the batch operation object area.
- the predetermined operation includes at least one of the following: deleting an application icon, hiding an application icon, uninstalling an application, encrypting an application or an application icon, Back up application data, add app icons to a specified folder, classify app icons, and automatically categorize them into different folders.
- a batch processing apparatus including: an identification unit, configured to identify a plurality of touch points that a user simultaneously acts on a screen of the terminal; and a determining unit, configured to determine the plurality of touch points Whether there are at least two touch points in the area where the mesh path is located, wherein the mesh path is operated by each operation object on the terminal interface a gap forming area; the area forming unit is connected to the determining unit, configured to: when the determining unit determines that the position of the at least two touch points is within the area of the mesh path, according to the grid a location of the touch point in the area where the path is located, forming a batch operation target area on the terminal interface; and an execution unit connected to the area forming unit, configured to perform a predetermined operation on the plurality of operation objects in the batch operation object area operating.
- the application interface, document, picture and other data can be displayed on the terminal interface.
- the gap between the data becomes larger.
- the remaining area forms a set of mesh path areas.
- the grid path area is used to detect whether at least two touch points of the user are in the mesh path area. If yes, the batch operation mode proposed by the present invention can be triggered.
- a batch operation object area may be formed on the current operation interface, and the area includes a plurality of operation objects. If the user presets a predetermined operation such as deleting, the batch operation object Multiple operation objects in the area will be deleted. Therefore, there is no need to check one by one, and there is no need to enter the batch operation interface specifically, which improves the operation efficiency, and also makes full use of the gap between the operation objects, and provides a gap for the gap. A quick and convenient application.
- the area forming unit includes: a touch point positioning unit, where a touch point located in the area where the mesh path is located is used as a vertex in the batch operation target area, and the touch point The position is a starting point, and the area dividing line is radiated along the path direction of the mesh path; the area dividing unit is configured to use the closed area formed by the intersection of the plurality of area dividing lines corresponding to the plurality of touch points as the batch operation The object area.
- a mesh path needs to be considered, and the touch point is a vertex of the batch operation target area, and the touch point is used as a starting point and the area dividing line is radiated along the mesh path direction, and the area dividing line is formed.
- the area is a batch operation object area.
- two touch points are distributed on different grid path areas to form a rectangular area, that is, a batch operation object area.
- the superimposing unit is configured to: after forming the batch operation object area, superimpose the plurality of operation objects to form an operation as a whole for the user to operate.
- the plurality of operation objects may be superimposed to form a whole, and the user may move the whole operation, without selecting the plurality of operation objects again.
- the method further includes: a first prompting unit, when the operation is entirely moved to a designated area of the terminal interface, displaying at least one item to be operated; the operation item selecting unit, The operation is integrally moved to one of the at least one item to be operated, and the batch operation corresponding to the one item to be operated is performed on the operation as a whole.
- the screen edge area is displayed.
- the item to be operated such as delete, hide, create a new folder, encrypt, etc.
- the user can move the operation to one of the items to be operated and stay for 2 seconds, the terminal will consider that the item to be operated is selected, and then perform the corresponding batch operation on the whole operation, the whole process is convenient and fast, and no need for the user. After the operation, the batch operation is completed.
- the method further includes: a second prompting unit, configured to: after forming the operation as a whole, prompt at least one item to be operated; and perform overall operation on the operation corresponding to the user selection A batch operation of an item to be operated.
- a second prompting unit configured to: after forming the operation as a whole, prompt at least one item to be operated; and perform overall operation on the operation corresponding to the user selection A batch operation of an item to be operated.
- the operation is moved to the designated area as a whole, when the operation is formed as a whole, the item to be operated is displayed, and the user can select a corresponding operation item in the item to be operated. After the user selects an item to be operated, This operation performs bulk operations as a whole.
- the determining unit is further configured to determine whether the triggering manner of the touch point meets a preset triggering manner; the terminal further includes: an identifying unit, where the determining unit determines that the matching unit
- the terminal is brought into the batch operation mode, and the selected batch operation target area and the touch are identified, because the operation gesture of the terminal is more, in order to distinguish from the currently operated operation gesture
- the special trigger mode of the touch point needs to be set, so that the terminal can know that the user wants the terminal to enter the batch operation mode.
- the preset touch method may be long pressing a plurality of touch points, and pinching the two touch points in opposite directions.
- the batch operation object area and the touch point may be identified in a special display manner, for example, floating display the batch operation object area, and the dot represents the touch point. .
- the method further includes: after the identifying unit identifies the batch operation target area, determining whether the area adjustment operation is detected within a predetermined time period, if the predetermined When the area adjustment operation is detected in the time period, the execution unit is notified to perform the predetermined operation; and the area adjustment unit is configured to: when the detection unit detects the area adjustment operation within the predetermined time period, A new batch operation target area is formed according to a position after the one or more touch points of the plurality of touch points are adjusted.
- the selected disclosure operation object area may be wrong, thus providing a way for the user to flexibly adjust, and it is possible to detect whether the user has an area within a set predetermined time period, for example, 3 seconds.
- the adjustment operation if yes, indicates that the user needs to adjust the batch operation target area, otherwise the area adjustment is not performed.
- the position of one of the touch points can be adjusted, thereby expanding or reducing the batch operation object area.
- the predetermined operation includes At least one of the following: Delete the app icon, hide the app icon, uninstall the app, encrypt the app or app icon, back up the app data, add the app icon to the specified folder, classify the app icon, and automatically group it into a different folder.
- a program product stored on a non-transitory machine readable medium for batch operation processing, the program product comprising a machine for causing a computer system to perform the following steps Executing the instruction: identifying that the user simultaneously acts on the plurality of touch points on the screen of the terminal; determining whether the position of the at least two touch points of the plurality of touch points is within the area of the mesh path, wherein the grid path And being configured by a gap region between the operation objects on the terminal interface; when determining that the location of the at least two touch points is within the region where the mesh path is located, according to the location of the touch point in the region where the mesh path is located Forming a batch operation object area on the terminal interface; performing a predetermined operation on the plurality of operation objects in the batch operation object area.
- a non-volatile machine readable medium storing a program product for batch operation processing, the program product comprising machine executable instructions for causing a computer system to perform the following steps: Identifying that the user simultaneously acts on the plurality of touch points on the screen of the terminal; determining whether the location of the at least two touch points of the plurality of touch points is within the area where the mesh path is located, wherein the mesh path is configured by the terminal interface a gap region between the upper operation objects; when determining that at least two touch points are located within the area of the mesh path, according to the position of the touch point in the area where the mesh path is located, Forming a batch operation object area on the terminal interface; performing a predetermined operation on the plurality of operation objects in the batch operation object area.
- a storage medium storing a machine readable program, wherein the machine readable program causes the machine to execute the batch processing method according to any one of the technical solutions described above.
- FIG. 1 shows a schematic diagram of a mesh path on a terminal interface in accordance with an embodiment of the present invention
- FIG. 2 shows a flow chart of a batch processing method in accordance with an embodiment of the present invention
- FIG. 3 is a schematic diagram showing determination of a batch operation object area according to a touch point according to an embodiment of the present invention
- FIG. 4 is a schematic view showing a forming operation as a whole according to an embodiment of the present invention
- FIG. 5 is a schematic diagram showing a mobile operation overall selection operation item according to an embodiment of the present invention.
- FIG. 6 shows a schematic diagram of prompting an optional operation item after forming an operation as a whole according to an embodiment of the present invention
- FIG. 7 is a schematic diagram showing area adjustment of a determined batch operation object area according to an embodiment of the present invention
- Figure 8 shows a block diagram of a batch processing apparatus in accordance with an embodiment of the present invention.
- Gap area Displays the gap area between each operation object (such as application icons, documents, folders, etc.) on the interface.
- Grid path consists of a gap area, as shown at 102 in Figure 1;
- Touch point The touch point of the input device such as the user's finger on the display screen.
- FIG. 2 shows a flow chart of a batch processing method in accordance with an embodiment of the present invention.
- the batch processing method may include the following steps: Step 202: Identify that a user simultaneously acts on multiple touch points on a screen of the terminal; Step 204, determine whether at least one of the plurality of touched points is at least The position of the two touch points is within the area of the mesh path, wherein the mesh path is composed of the gap area between the operation objects on the terminal interface; Step 206, determining the position of the at least two touch points in the grid When the path is within the area, the batch operation target area is formed on the terminal interface according to the position of the touch point in the area where the mesh path is located. Step 208: Perform a predetermined operation on the plurality of operation objects in the batch operation object area.
- the application interface, document, picture and other data can be displayed on the terminal interface.
- the gap between the data becomes larger.
- the remaining area forms a set of mesh path areas.
- the grid path area is used to detect whether at least two touch points of the user are in the mesh path area. If yes, the batch operation mode proposed by the present invention can be triggered.
- a batch operation object area may be formed on the current operation interface, and the area includes a plurality of operation objects. If the user presets a predetermined operation such as deleting, the batch operation object Multiple operation objects in the area will be deleted. Therefore, there is no need to check one by one, and there is no need to enter the batch operation interface specifically, which improves the operation efficiency, and also makes full use of the gap between the operation objects, and provides a gap for the gap. A quick and convenient application.
- the location of the touch point in the area where the mesh path is located is The step of forming the batch operation target area on the terminal interface specifically includes: using a touch point located in the area of the mesh path as a vertex in the batch operation target area; taking the position of the touch point as a starting point, along the a path direction radiation area dividing line of the mesh path; a closed area formed by intersecting a plurality of area dividing lines corresponding to the plurality of touch points as the batch operation target area.
- a mesh path needs to be considered, and the touch point is a vertex of the batch operation target area, and the touch point is used as a starting point and the area dividing line is radiated along the mesh path direction, and the area dividing line is formed.
- the area is a batch operation object area.
- two touch points are distributed on different grid path areas to form a rectangular area, that is, a batch operation object area.
- the plurality of operation objects are superimposed to form an operation as a whole for the user to operate.
- the plurality of operation objects may be superimposed to form a whole, and the user may move the whole operation, without selecting the plurality of operation objects again.
- At least one item to be operated is displayed; and the operation is integrally moved to the at least one item to be operated.
- a to-be-operated item performs a batch operation corresponding to the one item to be operated on the operation as a whole.
- an item to be operated is displayed in the edge area of the screen, such as deleting, hiding, creating a new folder, encrypting, and the like.
- the user can move the operation to one of the items to be operated and stay for 2 seconds, the terminal will consider that the item to be operated is selected, and then perform the corresponding batch operation on the whole operation, the whole process is convenient and fast, and no need for the user. After the operation, the batch operation is completed.
- any one of the foregoing technical solutions preferably, after the operation is formed as a whole, at least one item to be operated is prompted; and the batch operation corresponding to one item to be operated selected by the user is performed on the operation as a whole.
- the operation is moved to the designated area as a whole, when the operation is formed as a whole, the item to be operated is displayed, and the user can select a corresponding operation item in the item to be operated. After the user selects an item to be operated, This operation performs bulk operations as a whole.
- the trigger mode of the touch point is consistent with the preset trigger mode; if the preset trigger mode is met, the terminal is entered into the batch operation mode, and the identifier is selected.
- the preset touch method can be Press and hold multiple touch points to pinch the two touch points in the opposite direction or fix one touch point, and the other touch point to pinch at the touch point.
- the batch operation object area and the touch point may be identified in a special display manner, for example, floating display the batch operation object area, and the dot represents the touch point. .
- the predetermined operation is performed; if the predetermined time period is detected To the area adjustment operation, a new batch operation target area is formed according to the position after the one or more touch points of the plurality of touch points are adjusted.
- the selected disclosure operation object area may be wrong, thus providing a way for the user to flexibly adjust, and it is possible to detect whether the user has an area within a set predetermined time period, for example, 3 seconds.
- the adjustment operation if yes, indicates that the user needs to adjust the batch operation target area, otherwise the area adjustment is not performed.
- the position of one of the touch points can be adjusted, thereby expanding or reducing the batch operation object area.
- the predetermined operation includes at least one of the following: deleting an application icon, hiding an application icon, uninstalling an application, encrypting an application or an application icon, Back up the application data, add the app icon to the specified folder, and automatically sort the app icons into different folders.
- each application icon is distributed on the display interface of the mobile terminal, and the application icons are mostly distributed in the form of a grid, and the spacing between the application icons naturally forms another corresponding grid path.
- Detecting the touch point of the user simultaneously acting on the screen of the terminal there are two touch points 302 in FIG. 3, and the two touch points 302 are all within the area occupied by the grid path, so that the batch processing of the present invention can be triggered. mode.
- a special operation mode can be set, for example, long-pressing a touch point, determining that the touch mode is an effective operation mode for entering a batch operation, and when at least two touch points are located in the grid When in the path area, it is determined that the batch operation mode can be entered.
- the batch operation target area is determined according to the positions of the two touch points 302, and the area dividing line is radiated along the mesh path direction with the two touch points 302 as a starting point, and the area dividing line of the two touch points 302 is formed to be closed.
- Area 304 As a batch operation object area. In the example shown in FIG. 3, the closed area 304 contains four application icons, and then the four application icons will be batch-operated.
- the application icons on the batch operation object area are superimposed to form an operation whole 402, which facilitates batch operation of the application icons on the batch operation object area.
- the application understands that it is not possible to superimpose these operational objects into one operation as a whole.
- the user can move the operation overall 402, and after moving the operation overall 402 to the preset position of the terminal screen, the items to be operated 502 are displayed.
- each of the items to be operated 502 is displayed when the operation overall 402 is moved to the screen edge area.
- the user can move the operation overall 402 to one of the items to be operated and stay on it for 2 seconds, then select the item to be operated to be stopped, and then perform the batch operation on the whole operation 402. For example, when the operation overall 402 is moved to the delete operation item, all the application icons on the batch operation object area are immediately deleted.
- a prompt box 602 is popped up, in which the prompt box is displayed.
- 602 contains multiple items to be operated, such as delete operations, hidden operations, resonant operations, and new folder operations. The user does not need to move the operation as a whole, and only needs to select an item to be operated in the prompt box 602 to perform batch operation on the application icons on the batch operation object area.
- the batch operation object area selected by the user may be incorrect, for example, an operation object that does not want to be executed in a batch operation.
- the present invention also proposes an embodiment to facilitate the user to adjust the batch operation object area.
- the bit position of the touch point and the area boundary line may be identified.
- the position of any one of the touch points may be moved, and then Get a new batch operation object area.
- the adjustment operation needs to be performed within a predetermined period of time (for example, 3 seconds) after the batch operation target area is formed. If no adjustment operation is performed, the terminal uses the batch operation target area determined this time by default.
- the batch operation target area can be quickly located based on a plurality of touch points, the user can use the common pinch operation in daily life to realize batch operation, which is easy to learn and easy to control.
- FIG. 8 shows a block diagram of a batch processing apparatus in accordance with an embodiment of the present invention.
- the batch processing device 800 of the embodiment includes: an identification unit 802, configured to identify a plurality of touch points that the user simultaneously acts on the screen of the terminal; and a determining unit 804, configured to determine whether there are at least two touch points among the plurality of touch points The location is within the area of the mesh path, wherein the mesh path is formed by a gap area between the operation objects on the terminal interface; the area forming unit 806 is connected to the determining unit 804, and configured to The determining unit 804 determines that at least two touch points are located within the area where the mesh path is located, and forms a batch operation target area on the terminal interface according to the position of the touch point in the area where the mesh path is located.
- the execution unit 808 is connected to the area forming unit 806 for performing a predetermined operation on the plurality of operation objects in the batch operation object area.
- the application interface, document, picture and other data can be displayed on the terminal interface.
- the gap between the data becomes larger.
- the remaining area forms a set of mesh path areas.
- the grid path area is used to detect whether at least two touch points of the user are in the mesh path area. If yes, the batch operation mode proposed by the present invention can be triggered.
- a batch operation object area may be formed on the current operation interface, and the area includes a plurality of operation objects. If the user presets a predetermined operation such as deleting, the batch operation object Multiple operation objects in the area will be deleted. Therefore, there is no need to check one by one, and there is no need to enter the batch operation interface specifically, which improves the operation efficiency, and also makes full use of the gap between the operation objects, and provides a gap for the gap. A quick and convenient application.
- the area forming unit 806 includes: a touch point positioning unit 8062, and a touch point located in the area where the mesh path is located as a vertex in the batch operation target area, The position of the touched point is a starting point, and the area dividing line is radiated along the path direction of the mesh path; the area dividing unit 8064 is configured to use a closed area formed by intersecting a plurality of area dividing lines corresponding to the plurality of touch points as a The batch operation object area.
- a mesh path needs to be considered, and the touch point is a vertex of the batch operation target area, and the touch point is used as a starting point and the area dividing line is radiated along the mesh path direction, and the area dividing line is formed.
- the area is a batch operation object area.
- two touch points are distributed on different grid path areas to form a rectangular area, that is, a batch operation object area.
- the superimposing unit 810 is configured to superimpose the plurality of operation objects after forming the batch operation object area to form an operation as a whole for the user to operate.
- the plurality of operation objects may be superimposed to form a whole, and the user may move the whole operation, without selecting the plurality of operation objects again.
- the first prompting unit 812 displays at least one item to be operated when the operation is entirely moved to a designated area of the terminal interface; the operation item selecting unit 814 , will be described The operation is integrally moved to one of the at least one item to be operated, and the batch operation corresponding to the one item to be operated is performed on the operation as a whole.
- an item to be operated is displayed in the edge area of the screen, such as deleting, hiding, creating a new folder, encrypting, and the like.
- the user can move the operation to one of the items to be operated and stay for 2 seconds, the terminal will consider that the item to be operated is selected, and then perform the corresponding batch operation on the whole operation, the whole process is convenient and fast, and no need for the user. After the operation, the batch operation is completed.
- the method further includes: a second prompting unit 816, configured to: after forming the operation as a whole, prompt at least one item to be operated, and perform overall operation on the operation corresponding to the user selection A batch operation of an item to be operated.
- a second prompting unit 816 configured to: after forming the operation as a whole, prompt at least one item to be operated, and perform overall operation on the operation corresponding to the user selection A batch operation of an item to be operated.
- the operation is moved to the designated area as a whole, when the operation is formed as a whole, the item to be operated is displayed, and the user can select a corresponding operation item in the item to be operated. After the user selects an item to be operated, This operation performs bulk operations as a whole.
- the determining unit 804 is further configured to determine whether the triggering manner of the touch point meets a preset triggering manner.
- the terminal further includes: an identifying unit 818, where the determining unit is When it is determined that the preset trigger mode is met, the terminal is caused to enter a batch operation mode, and the selected batch operation object area and the touch point are identified. Because the operation gestures of the terminal are many, in order to distinguish from the operation gestures that have been applied at present, a special triggering manner of the touch points needs to be set, so that the terminal can know that the user wants the terminal to enter the batch operation mode.
- the preset touch method may be that a plurality of touch points are long pressed, and the two touch points are kneaded in opposite directions.
- the batch operation object area and the touch point may be identified in a special display manner, for example, floating display the batch operation object area, and the dot represents the touch point. .
- the method further includes: a detecting unit 820, after determining, by the identifier unit, the batch operation target area, determining whether an area adjustment operation is detected within a predetermined time period, if Detecting the area adjustment operation within a predetermined period of time, notifying the execution unit to perform the predetermined operation; the area adjustment unit 822, configured to detect the area adjustment operation within the predetermined time period by the detection unit And forming a new batch operation target area according to the position after the one or more touch points of the plurality of touch points are adjusted.
- the selected disclosure operation object area may be wrong, thus providing a way for the user to flexibly adjust, and it is possible to detect whether the user has an area within a set predetermined time period, for example, 3 seconds.
- the adjustment operation if yes, indicates that the user needs to adjust the batch operation target area, otherwise the area adjustment is not performed.
- the position of one of the touch points can be adjusted, thereby expanding or reducing the batch operation object area.
- the predetermined operation includes at least one of the following: deleting an application icon, hiding an application icon, uninstalling an application, encrypting an application or an application icon, Back up the application data, add the app icon to the specified folder, and automatically sort the app icons into different folders.
- a program product stored on a non-transitory machine readable medium for batch operation processing, the program product comprising a machine for causing a computer system to perform the following steps Executing the instruction: identifying that the user simultaneously acts on the plurality of touch points on the screen of the terminal; determining whether the position of the at least two touch points of the plurality of touch points is within the area of the mesh path, wherein the grid path And being configured by a gap region between the operation objects on the terminal interface; when determining that the location of the at least two touch points is within the region where the mesh path is located, according to the location of the touch point in the region where the mesh path is located Forming a batch operation object area on the terminal interface; performing a predetermined operation on the plurality of operation objects in the batch operation object area.
- a non-volatile machine readable medium storing a program product for batch operation processing, the program product comprising machine executable instructions for causing a computer system to perform the following steps: Identifying that the user simultaneously acts on the plurality of touch points on the screen of the terminal; determining whether the location of the at least two touch points of the plurality of touch points is within the area where the mesh path is located, wherein the mesh path is configured by the terminal interface a gap region between the upper operation objects; when determining that at least two touch points are located within the area of the mesh path, according to the position of the touch point in the area where the mesh path is located, Forming a batch operation object area on the terminal interface; performing a predetermined operation on the plurality of operation objects in the batch operation object area.
- a storage medium storing a machine readable program, wherein the machine readable program causes the machine to execute the batch processing method according to any one of the technical solutions described above.
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Abstract
本发明提供了一种批量处理方法和一种批量处理装置,其中,批量处理方法包括:识别用户同时作用于终端屏幕上的多个触摸点;判断多个触摸点中是否有至少两个触摸点的位置在网格路径所在区域之内,其中,网格路径由终端界面上各应用图标之间的间隙区域构成;在确定至少有两个触摸点的位置在网格路径所在区域之内时,根据网格路径所在区域内的触摸点的位置,在终端界面上形成批量操作对象区域;对批量操作对象区域中的多个操作对象执行预定操作。根据本发明的技术方案,能够充分利用操作对象之间的间隙,并根据用户的操作快速选定批量处理区域,并对批量处理区域上的操作对象进行批量操作,提供了操作效率。
Description
批量操作方法和批量操作装置
技术领域
本发明涉及通信技术领域, 具体而言, 涉及一种批量操作方法和一种批量处理装置。 背景技术
目前, 对应用图标进行批量隐藏、 删除、 卸载等一般通过以下两种方法实现。
其一, 需要通过一定的触发方式 (长按图标) 对应用图标一个个的进行操作, 对每一个 图标的操作都需要选择操作类型和二次确定操作, 在需要操作的图标较多时, 由于批量操作 较为复杂, 因此将会非常耗时。
其二, 需要进入相应界面对应用图标进行逐个勾选, 选择完成后点击确定才能实现批量 操作, 而有时用户想要批量操作的图标可能集中在某一页 (例如想批量卸载运营商的应 用 ) , 但在应用图标勾选界面却很少对应用图标按页进行排序, 想在列表中找到某一页上的 应用图标进行选择也比较麻烦。
如今, 终端屏幕的尺寸越来越大, 因此屏幕上的各应用图标等操作对象之间的间隙也变 大, 目前没有相关方案利用终端界面上的大间隙来达到某种操控终端的目的。
因此, 如何利用操作对象之间的间隙快捷方便地对操作对象进行批量操作成为亟待解决 的技术问题。 发明内容
本发明正是基于上述技术问题, 提出了一种新的批量操作技术, 能够利用操作对象之间 的间隙快捷方便地对操作对象进行批量操作。
有鉴于此, 根据本发明的一个方面, 提供了一种批量处理方法, 包括: 识别用户同时作 用于终端屏幕上的多个触摸点; 判断所述多个触摸点中是否有至少两个触摸点的位置在网格 路径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙区域构成; 在 确定至少有两个触摸点的位置在所述网格路径所在区域之内时, 根据所述网格路径所在区域 内的触摸点的位置, 在所述终端界面上形成批量操作对象区域; 对所述批量操作对象区域中
的多个操作对象执行预定操作。
终端界面上可显示应用图标、 文档、 图片等数据, 当终端屏幕的尺寸变大时, 这些数据 之间的间隙也变大。 除了这些数据所占的区域之外, 剩下的区域形成了一套网格路径区域, 本实施方式即利用该网格路径区域, 检测用户的至少两个触摸点是否在该网格路径区域内, 如果是, 则可触发进入本发明提出的批量操作模式。 根据符合要求的多个触摸点的位置, 可 在当前操作界面上形成一个批量操作对象区域, 该区域上包含了多个操作对象, 如果用户预 先设置了一个预定操作例如删除, 那么该批量操作对象区域上的多个操作对象将被删除, 因 此, 无需一个一个勾选, 也无需专门进入批量操作界面, 提高了操作效率, 同时也充分利用 了操作对象之间的间隙, 给该间隙提供了一种快捷方便的应用。
在上述技术方案中, 优选的, 所述根据所述网格路径所在区域内的触摸点的位置, 在所 述终端界面上形成批量操作对象区域的步骤具体包括: 将位于所述网格路径所在区域内的触 摸点作为所述批量操作对象区域中的顶点; 以所述触摸点的位置为起点, 沿所述网格路径的 路径方向辐射区域划分线; 将多个所述触摸点对应的多条区域划分线所交叉形成的封闭区域 作为所述批量操作对象区域。
在形成批量操作对象区域时, 需要考虑网格路径, 以该触摸点为批量操作对象区域的顶 点, 以该触摸点为起点并沿网格路径方向辐射区域划分线, 将区域划分线交叉所形成的区域 作为批量操作对象区域, 在一种优选的方案中, 两个触摸点分布在不同的网格路径区域上恰 好可以形成一个矩形区域, 该矩形区域即批量操作对象区域。
在上述任一技术方案中, 优选的, 在形成所述批量操作对象区域之后, 将所述多个操作 对象进行叠加, 形成操作整体, 供用户操作。
为了进一步便于用户的操作, 当选定批量操作对象区域之后, 可将这多个操作对象进行 叠加, 形成一个整体, 用户可对该整体进行移动等操作, 无需再次选中该多个操作对象。
在上述任一技术方案中, 优选的, 在所述操作整体被移动至所述终端界面的指定区域 时, 显示至少一个待操作项; 将所述操作整体移动至所述至少一个待操作项中的一个待操作 项, 对所述操作整体执行与所述一个待操作项对应的批量操作。
当用户移动该操作整体并一定到指定区域例如屏幕边缘区域时, 在该屏幕边缘区域显示 待操作项, 该待操作项例如删除、 隐藏、 新建文件夹、 加密等操作。 用户可将该操作整体移 动到其中一个待操作项上并停留 2 秒, 则终端会认为选择了该待操作项, 于是对该操作整体 执行相应的批量操作, 整个处理过程方便快捷, 无需用户多次操作, 便完成了批量操作。
在上述任一技术方案中, 优选的, 在形成所述操作整体后, 提示至少一个待操作项; 对 所述操作整体执行对应于所述用户选择的一个待操作项的批量操作。
除了在将操作整体移动至指定区域的方式, 还可以当形成操作整体时, 就显示待操作 项, 用户可在该待操作项中选择相应的操作项, 当用户选择一个待操作项之后, 对该操作整 体执行批量操作。
在上述任一技术方案中, 优选的, 判断所述触摸点的触发方式是否符合预设触发方式; 若符合所述预设触发方式, 则使所述终端进入批量操作模式, 并标识被选定的所述批量操作 对象区域和所述触摸点。
由于终端的操作手势较多, 为了与目前已经应用的操作手势区分开, 需要设置触摸点的 特殊触发方式, 使得终端能够知道用户希望终端进入批量操作模式。 该预设触摸方式可以是 长按多个触摸点, 将两个触摸点往相对的方向进行捏合或是固定一个触摸点, 将另一个触摸 点向该触摸点捏合。 在进入批量操作模式之后, 为了便于用户意识到所选定的区域, 可以特 别的显示方式来标识该批量操作对象区域和触摸点, 例如浮动显示该批量操作对象区域, 以 圆点代表该触摸点。
在上述任一技术方案中, 优选的, 在标识所述批量操作对象区域之后, 若在预定时间段 内未检测到区域调整操作, 则执行所述预定操作; 若在所述预定时间段内检测到所述区域调 整操作, 则根据所述多个触摸点中的一个或多个触摸点被调整之后的位置, 形成新的批量操 作对象区域。
在选定批量操作对象区域之后, 所选定的披露操作对象区域可能是错误的, 因此提供了 一种方式来供用户灵活调整, 可以在设置的预定时间段内例如 3 秒检测用户是否有区域调整 操作, 如果是, 则说明用户需要调整该批量操作对象区域, 否则不进行区域调整。
在调整时, 假设形成的批量操作对象区域是基于两个触摸点形成的, 则可以调整其中一 个触摸点的位置, 进而扩大或缩小批量操作对象区域。
在上述任一技术方案中, 优选的, 在所述操作对象为应用图标时, 所述预定操作包括以 下至少一种: 删除应用图标、 隐藏应用图标、 卸载应用程序、 加密应用程序或应用图标、 备 份应用程序数据、 将应用图标加入指定文件夹、 将应用图标分类后自动归类入不同文件夹。
根据本发明的另一方面, 还提供了一种批量处理装置, 包括: 识别单元, 用于识别用户 同时作用于终端屏幕上的多个触摸点; 判断单元, 用于判断所述多个触摸点中是否有至少两 个触摸点的位置在网格路径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之
间的间隙区域构成; 区域形成单元, 连接至所述判断单元, 用于在所述判断单元确定至少有 两个触摸点的位置在所述网格路径所在区域之内时, 根据所述网格路径所在区域内的触摸点 的位置, 在所述终端界面上形成批量操作对象区域; 执行单元, 连接至所述区域形成单元, 用于对所述批量操作对象区域中的多个操作对象执行预定操作。
终端界面上可显示应用图标、 文档、 图片等数据, 当终端屏幕的尺寸变大时, 这些数据 之间的间隙也变大。 除了这些数据所占的区域之外, 剩下的区域形成了一套网格路径区域, 本实施方式即利用该网格路径区域, 检测用户的至少两个触摸点是否在该网格路径区域内, 如果是, 则可触发进入本发明提出的批量操作模式。 根据符合要求的多个触摸点的位置, 可 在当前操作界面上形成一个批量操作对象区域, 该区域上包含了多个操作对象, 如果用户预 先设置了一个预定操作例如删除, 那么该批量操作对象区域上的多个操作对象将被删除, 因 此, 无需一个一个勾选, 也无需专门进入批量操作界面, 提高了操作效率, 同时也充分利用 了操作对象之间的间隙, 给该间隙提供了一种快捷方便的应用。
在上述技术方案中, 优选的, 所述区域形成单元包括: 触摸点定位单元, 将位于所述网 格路径所在区域内的触摸点作为所述批量操作对象区域中的顶点, 以所述触摸点的位置为起 点, 沿所述网格路径的路径方向辐射区域划分线; 区域划分单元, 用于将多个所述触摸点对 应的多条区域划分线所交叉形成的封闭区域作为所述批量操作对象区域。
在形成批量操作对象区域时, 需要考虑网格路径, 以该触摸点为批量操作对象区域的顶 点, 以该触摸点为起点并沿网格路径方向辐射区域划分线, 将区域划分线交叉所形成的区域 作为批量操作对象区域, 在一种优选的方案中, 两个触摸点分布在不同的网格路径区域上恰 好可以形成一个矩形区域, 该矩形区域即批量操作对象区域。
在上述任一技术方案中, 优选的, 还可以包括: 叠加单元, 用于在形成所述批量操作对 象区域之后, 将所述多个操作对象进行叠加, 形成操作整体, 供用户操作。
为了进一步便于用户的操作, 当选定批量操作对象区域之后, 可将这多个操作对象进行 叠加, 形成一个整体, 用户可对该整体进行移动等操作, 无需再次选中该多个操作对象。
在上述任一技术方案中, 优选的, 还可以包括: 第一提示单元, 在所述操作整体被移动 至所述终端界面的指定区域时, 显示至少一个待操作项; 操作项选择单元, 将所述操作整体 移动至所述至少一个待操作项中的一个待操作项, 对所述操作整体执行与所述一个待操作项 对应的批量操作。
当用户移动该操作整体并一定到指定区域例如屏幕边缘区域时, 在该屏幕边缘区域显示
待操作项, 该待操作项例如删除、 隐藏、 新建文件夹、 加密等操作。 用户可将该操作整体移 动到其中一个待操作项上并停留 2 秒, 则终端会认为选择了该待操作项, 于是对该操作整体 执行相应的批量操作, 整个处理过程方便快捷, 无需用户多次操作, 便完成了批量操作。
在上述任一技术方案中, 优选的, 还可以包括: 第二提示单元, 用于在形成所述操作整 体后, 提示至少一个待操作项; 对所述操作整体执行对应于所述用户选择的一个待操作项的 批量操作。
除了在将操作整体移动至指定区域的方式, 还可以当形成操作整体时, 就显示待操作 项, 用户可在该待操作项中选择相应的操作项, 当用户选择一个待操作项之后, 对该操作整 体执行批量操作。
在上述任一技术方案中, 优选的, 所述判断单元还用于判断所述触摸点的触发方式是否 符合预设触发方式; 所述终端还包括: 标识单元, 在所述判断单元确定符合所述预设触发方 式时, 使所述终端进入批量操作模式, 并标识被选定的所述批量操作对象区域和所述触摸 由于终端的操作手势较多, 为了与目前已经应用的操作手势区分开, 需要设置触摸点的 特殊触发方式, 使得终端能够知道用户希望终端进入批量操作模式。 该预设触摸方式可以是 长按多个触摸点, 将两个触摸点往相对的方向进行捏合。 在进入批量操作模式之后, 为了便 于用户意识到所选定的区域, 可以特别的显示方式来标识该批量操作对象区域和触摸点, 例 如浮动显示该批量操作对象区域, 以圆点代表该触摸点。
在上述任一技术方案中, 优选的, 还可以包括: 检测单元, 在所述标识单元标识所述批 量操作对象区域之后, 判断是否在预定时间段内检测到区域调整操作, 若在所述预定时间段 内检测到所述区域调整操作, 则通知所述执行单元执行所述预定操作; 区域调整单元, 用于 在所述检测单元在所述预定时间段内检测到所述区域调整操作时, 根据所述多个触摸点中的 一个或多个触摸点被调整之后的位置, 形成新的批量操作对象区域。
在选定批量操作对象区域之后, 所选定的披露操作对象区域可能是错误的, 因此提供了 一种方式来供用户灵活调整, 可以在设置的预定时间段内例如 3 秒检测用户是否有区域调整 操作, 如果是, 则说明用户需要调整该批量操作对象区域, 否则不进行区域调整。
在调整时, 假设形成的批量操作对象区域是基于两个触摸点形成的, 则可以调整其中一 个触摸点的位置, 进而扩大或缩小批量操作对象区域。
在上述任一技术方案中, 优选的, 在所述操作对象为应用图标时, 所述预定操作包括以
下至少一种: 删除应用图标、 隐藏应用图标、 卸载应用程序、 加密应用程序或应用图标、 备 份应用程序数据、 将应用图标加入指定文件夹、 将应用图标分类后自动归入不同文件夹。
根据本发明的又一方面, 还提供了一种存储在非易失性机器可读介质上的程序产品, 用 于批量操作处理, 所述程序产品包括用于使计算机系统执行以下步骤的机器可执行指令: 识 别用户同时作用于终端屏幕上的多个触摸点; 判断所述多个触摸点中是否有至少两个触摸点 的位置在网格路径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙 区域构成; 在确定至少有两个触摸点的位置在所述网格路径所在区域之内时, 根据所述网格 路径所在区域内的触摸点的位置, 在所述终端界面上形成批量操作对象区域; 对所述批量操 作对象区域中的多个操作对象执行预定操作。
根据本发明的又一方面, 还提供了一种非易失机器可读介质, 存储有用于批量操作处理 的程序产品, 所述程序产品包括用于使计算机系统执行以下步骤的机器可执行指令: 识别用 户同时作用于终端屏幕上的多个触摸点; 判断所述多个触摸点中是否有至少两个触摸点的位 置在网格路径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙区域 构成; 在确定至少有两个触摸点的位置在所述网格路径所在区域之内时, 根据所述网格路径 所在区域内的触摸点的位置, 在所述终端界面上形成批量操作对象区域; 对所述批量操作对 象区域中的多个操作对象执行预定操作。
根据本发明的再一方面, 还提供了一种机器可读程序, 所述程序使机器执行如上所述技 术方案中任一所述的批量处理方法。
根据本发明的再一方面, 还提供了一种存储有机器可读程序的存储介质, 其中, 所述机 器可读程序使得机器执行如上所述技术方案中任一所述的批量处理方法。 附图说明
图 1示出了根据本发明的实施例的终端界面上的网格路径示意图;
图 2示出了根据本发明的实施例的批量处理方法的流程图;
图 3示出了根据本发明的实施例的根据触摸点确定批量操作对象区域的示意图; 图 4示出了根据本发明的实施例的形成操作整体的示意图;
图 5示出了根据本发明的实施例的移动操作整体选择操作项的示意图;
图 6示出了根据本发明的实施例的在形成操作整体之后提示可选操作项的示意图; 图 7示出了根据本发明的实施例的对确定的批量操作对象区域进行区域调整的示意图;
图 8示出了根据本发明的实施例的批量处理装置的框图。
具体实施方式
为了能够更清楚地理解本发明的上述目的、 特征和优点, 下面结合附图和具体实施方式 对本发明进行进一步的详细描述。 需要说明的是, 在不冲突的情况下, 本申请的实施例及实 施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明, 但是, 本发明还可以采用 其他不同于在此描述的其他方式来实施, 因此, 本发明的保护范围并不受下面公开的具体实 施例的限制。
首先解释几个概念:
间隙区域: 显示界面上的各操作对象 (例如应用图标、 文档、 文件夹等) 之间的空隙区 域。
网格路径: 由间隙区域构成, 如图 1 中的 102所示;
触摸点: 用户的手指等输入设备在显示屏幕上的触碰点。
图 2示出了根据本发明的实施例的批量处理方法的流程图。
如图 2 所示, 根据本发明的实施例的批量处理方法可以包括以下步骤: 步骤 202, 识别 用户同时作用于终端屏幕上的多个触摸点; 步骤 204, 判断多个触摸点中是否有至少两个触 摸点的位置在网格路径所在区域之内, 其中, 网格路径由终端界面上各操作对象之间的间隙 区域构成; 步骤 206, 在确定至少有两个触摸点的位置在网格路径所在区域之内时, 根据网 格路径所在区域内的触摸点的位置, 在终端界面上形成批量操作对象区域; 步骤 208, 对批 量操作对象区域中的多个操作对象执行预定操作。
终端界面上可显示应用图标、 文档、 图片等数据, 当终端屏幕的尺寸变大时, 这些数据 之间的间隙也变大。 除了这些数据所占的区域之外, 剩下的区域形成了一套网格路径区域, 本实施方式即利用该网格路径区域, 检测用户的至少两个触摸点是否在该网格路径区域内, 如果是, 则可触发进入本发明提出的批量操作模式。 根据符合要求的多个触摸点的位置, 可 在当前操作界面上形成一个批量操作对象区域, 该区域上包含了多个操作对象, 如果用户预 先设置了一个预定操作例如删除, 那么该批量操作对象区域上的多个操作对象将被删除, 因 此, 无需一个一个勾选, 也无需专门进入批量操作界面, 提高了操作效率, 同时也充分利用 了操作对象之间的间隙, 给该间隙提供了一种快捷方便的应用。
在上述技术方案中, 优选的, 所述根据所述网格路径所在区域内的触摸点的位置, 在所
述终端界面上形成批量操作对象区域的步骤具体包括: 将位于所述网格路径所在区域内的触 摸点作为所述批量操作对象区域中的顶点; 以所述触摸点的位置为起点, 沿所述网格路径的 路径方向辐射区域划分线; 将多个所述触摸点对应的多条区域划分线所交叉形成的封闭区域 作为所述批量操作对象区域。
在形成批量操作对象区域时, 需要考虑网格路径, 以该触摸点为批量操作对象区域的顶 点, 以该触摸点为起点并沿网格路径方向辐射区域划分线, 将区域划分线交叉所形成的区域 作为批量操作对象区域, 在一种优选的方案中, 两个触摸点分布在不同的网格路径区域上恰 好可以形成一个矩形区域, 该矩形区域即批量操作对象区域。
在上述任一技术方案中, 优选的, 在形成所述批量操作对象区域之后, 将所述多个操作 对象进行叠加, 形成操作整体, 供用户操作。
为了进一步便于用户的操作, 当选定批量操作对象区域之后, 可将这多个操作对象进行 叠加, 形成一个整体, 用户可对该整体进行移动等操作, 无需再次选中该多个操作对象。
在上述任一技术方案中, 优选的, 在所述操作整体被移动至所述终端界面的指定区域 时, 显示至少一个待操作项; 将所述操作整体移动至所述至少一个待操作项中的一个待操作 项, 对所述操作整体执行与所述一个待操作项对应的批量操作。
当用户移动该操作整体并一定到指定区域例如屏幕边缘区域时, 在该屏幕边缘区域显示 待操作项, 该待操作项例如删除、 隐藏、 新建文件夹、 加密等操作。 用户可将该操作整体移 动到其中一个待操作项上并停留 2 秒, 则终端会认为选择了该待操作项, 于是对该操作整体 执行相应的批量操作, 整个处理过程方便快捷, 无需用户多次操作, 便完成了批量操作。
在上述任一技术方案中, 优选的, 在形成所述操作整体后, 提示至少一个待操作项; 对 所述操作整体执行对应于所述用户选择的一个待操作项的批量操作。
除了在将操作整体移动至指定区域的方式, 还可以当形成操作整体时, 就显示待操作 项, 用户可在该待操作项中选择相应的操作项, 当用户选择一个待操作项之后, 对该操作整 体执行批量操作。
在上述任一技术方案中, 优选的, 判断所述触摸点的触发方式是否符合预设触发方式; 若符合所述预设触发方式, 则使所述终端进入批量操作模式, 并标识被选定的所述批量操作 对象区域和所述触摸点。
由于终端的操作手势较多, 为了与目前已经应用的操作手势区分开, 需要设置触摸点的 特殊触发方式, 使得终端能够知道用户希望终端进入批量操作模式。 该预设触摸方式可以是
长按多个触摸点, 将两个触摸点往相对的方向进行捏合或是固定一个触摸点, 另一个触摸点 向该触摸点处捏合。 在进入批量操作模式之后, 为了便于用户意识到所选定的区域, 可以特 别的显示方式来标识该批量操作对象区域和触摸点, 例如浮动显示该批量操作对象区域, 以 圆点代表该触摸点。
在上述任一技术方案中, 优选的, 在标识所述批量操作对象区域之后, 若在预定时间段 内未检测到区域调整操作, 则执行所述预定操作; 若在所述预定时间段内检测到所述区域调 整操作, 则根据所述多个触摸点中的一个或多个触摸点被调整之后的位置, 形成新的批量操 作对象区域。
在选定批量操作对象区域之后, 所选定的披露操作对象区域可能是错误的, 因此提供了 一种方式来供用户灵活调整, 可以在设置的预定时间段内例如 3 秒检测用户是否有区域调整 操作, 如果是, 则说明用户需要调整该批量操作对象区域, 否则不进行区域调整。
在调整时, 假设形成的批量操作对象区域是基于两个触摸点形成的, 则可以调整其中一 个触摸点的位置, 进而扩大或缩小批量操作对象区域。
在上述任一技术方案中, 优选的, 在所述操作对象为应用图标时, 所述预定操作包括以 下至少一种: 删除应用图标、 隐藏应用图标、 卸载应用程序、 加密应用程序或应用图标、 备 份应用程序数据、 将应用图标加入指定文件夹, 将应用图标分类后自动归入不同文件夹。
下面结合图 3至图 7进一步说明根据本发明的技术方案。
如图 3 所示, 在移动终端的显示界面上分布有各应用图标, 应用图标多以宫格的形式分 布, 而应用图标之间的间距自然就形成了另外一套对应的网格路径。
检测用户同时作用在终端屏幕上的触摸点, 在图 3 中有两个触摸点 302, 并且这两个触 摸点 302 均在网格路径所占区域之内, 故可触发进入本发明的批量处理模式。 为了与目前的 一些手势操作区分开, 可设定一个特殊的操作方式, 例如同时长按触摸点, 判断该触摸方式 是进入批量操作的有效操作方式, 并且当至少有两个触摸点位于网格路径区域上时, 确定可 进入批量操作模式。
需说明的是, 如果同时作用在终端屏幕上的触摸点有三个, 但只有一个触摸点在网格路 径区域上, 则本次操作的触摸点是无效的, 如果有两个触摸点在网格路径上, 那么本次操作 的触摸点是有效的, 没有在网格路径区域上的触摸点不予考虑。
根据这两个触摸点 302 的位置来确定批量操作对象区域, 以这两个触摸点 302为起点且 沿网格路径方向辐射区域分割线, 将两个触摸点 302 的区域分割线交叉形成的封闭区域 304
作为批量操作对象区域。 在图 3所示的示例中, 封闭区域 304 包含了 4个应用图标, 那么接 下来将对这四个应用图标进行批量操作。
但是如果三个触摸点均在网格路径区域上或更多的触摸点均在网格路路径区域上, 则可 形成的多个批量操作对象区域, 并将这多个批量操作对象区域通过不同底色或虚线边框展 示, 最终由用户选择确定其中的一个。
如图 4 所示, 在确定了批量操作对象区域之后, 该批量操作对象区域上的应用图标被叠 加形成一个操作整体 402, 便于对批量操作对象区域上的应用图标进行批量操作。 应用理 解, 其可以不将这些操作对象叠加成一个操作整体。
如图 5 所示, 在形成操作整体 402后, 用户可移动该操作整体 402, 在将操作整体 402 移动至终端屏幕的预设位置之后, 显示出各待操作项 502。 在本实施例中, 在将操作整体 402 移动至屏幕边缘区域时, 显示各待操作项 502。 用户可将该操作整体 402 移动至其中一个待 操作项并在其上停留 2秒, 则选择停留的待操作项, 于是对该操作整体 402进行批量操作。 例如在将操作整体 402 移动至删除操作项时, 立即删除在批量操作对象区域上的所有应用图 标。
除了上述待操作项提示方式之外, 还可以有其他的提示方式, 如图 6 所示, 在确定形成 操作整体 402之后, 或在确定批量操作对象区域之后, 弹出提示框 602, 在该提示框 602 中 包含有多个待操作项, 例如删除操作、 隐藏操作、 谐振操作和新建文件夹操作等等。 用户无 需移动操作整体, 只需在该提示框 602 中选择一个待操作项就可对批量操作对象区域上的应 用图标进行批量操作。
如图 7 所示, 有时用户选择的批量操作对象区域可能是有误的, 例如包含了不想被执行 批量操作的操作对象。 本发明还提出了一种实施方式, 来便于用户调整批量操作对象区域。
在进入批量操作模式之后, 为了便于用户了解所选择的批量操作对象区域, 可标识触摸 点的位位置以及区域边界线, 在需要调整批量操作对象区域, 可移动其中任意一个触摸点的 位置, 然后得到新的批量操作对象区域。 当然, 需在形成批量操作对象区域之后的预定时间 段 (例如 3 秒) 内进行该调整操作, 如果没有进行调整操作, 则终端默认采用本次确定的批 量操作对象区域。
由于基于多个触摸点可快速定位批量操作对象区域, 因此用户可使用日常生活中的常见 捏合操作, 来实现批量操作, 易学习易掌控。
图 8 示出了根据本发明的实施例的批量处理装置的框图。 如图 8 所示, 根据本发明的实
施例的批量处理装置 800 包括: 识别单元 802, 用于识别用户同时作用于终端屏幕上的多个 触摸点; 判断单元 804, 用于判断所述多个触摸点中是否有至少两个触摸点的位置在网格路 径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙区域构成; 区域 形成单元 806, 连接至所述判断单元 804, 用于在所述判断单元 804确定至少有两个触摸点的 位置在所述网格路径所在区域之内时, 根据所述网格路径所在区域内的触摸点的位置, 在所 述终端界面上形成批量操作对象区域; 执行单元 808, 连接至所述区域形成单元 806, 用于对 所述批量操作对象区域中的多个操作对象执行预定操作。
终端界面上可显示应用图标、 文档、 图片等数据, 当终端屏幕的尺寸变大时, 这些数据 之间的间隙也变大。 除了这些数据所占的区域之外, 剩下的区域形成了一套网格路径区域, 本实施方式即利用该网格路径区域, 检测用户的至少两个触摸点是否在该网格路径区域内, 如果是, 则可触发进入本发明提出的批量操作模式。 根据符合要求的多个触摸点的位置, 可 在当前操作界面上形成一个批量操作对象区域, 该区域上包含了多个操作对象, 如果用户预 先设置了一个预定操作例如删除, 那么该批量操作对象区域上的多个操作对象将被删除, 因 此, 无需一个一个勾选, 也无需专门进入批量操作界面, 提高了操作效率, 同时也充分利用 了操作对象之间的间隙, 给该间隙提供了一种快捷方便的应用。
在上述技术方案中, 优选的, 所述区域形成单元 806 包括: 触摸点定位单元 8062, 将位 于所述网格路径所在区域内的触摸点作为所述批量操作对象区域中的顶点, 以所述触摸点的 位置为起点, 沿所述网格路径的路径方向辐射区域划分线; 区域划分单元 8064, 用于将多个 所述触摸点对应的多条区域划分线所交叉形成的封闭区域作为所述批量操作对象区域。
在形成批量操作对象区域时, 需要考虑网格路径, 以该触摸点为批量操作对象区域的顶 点, 以该触摸点为起点并沿网格路径方向辐射区域划分线, 将区域划分线交叉所形成的区域 作为批量操作对象区域, 在一种优选的方案中, 两个触摸点分布在不同的网格路径区域上恰 好可以形成一个矩形区域, 该矩形区域即批量操作对象区域。
在上述任一技术方案中, 优选的, 还可以包括: 叠加单元 810, 用于在形成所述批量操 作对象区域之后, 将所述多个操作对象进行叠加, 形成操作整体, 供用户操作。
为了进一步便于用户的操作, 当选定批量操作对象区域之后, 可将这多个操作对象进行 叠加, 形成一个整体, 用户可对该整体进行移动等操作, 无需再次选中该多个操作对象。
在上述任一技术方案中, 优选的, 还可以包括: 第一提示单元 812, 在所述操作整体被 移动至所述终端界面的指定区域时, 显示至少一个待操作项; 操作项选择单元 814, 将所述
操作整体移动至所述至少一个待操作项中的一个待操作项, 对所述操作整体执行与所述一个 待操作项对应的批量操作。
当用户移动该操作整体并一定到指定区域例如屏幕边缘区域时, 在该屏幕边缘区域显示 待操作项, 该待操作项例如删除、 隐藏、 新建文件夹、 加密等操作。 用户可将该操作整体移 动到其中一个待操作项上并停留 2 秒, 则终端会认为选择了该待操作项, 于是对该操作整体 执行相应的批量操作, 整个处理过程方便快捷, 无需用户多次操作, 便完成了批量操作。
在上述任一技术方案中, 优选的, 还可以包括: 第二提示单元 816, 用于在形成所述操 作整体后, 提示至少一个待操作项, 对所述操作整体执行对应于所述用户选择的一个待操作 项的批量操作。 除了在将操作整体移动至指定区域的方式, 还可以当形成操作整体时, 就显 示待操作项, 用户可在该待操作项中选择相应的操作项, 当用户选择一个待操作项之后, 对 该操作整体执行批量操作。
在上述任一技术方案中, 优选的, 所述判断单 804, 还用于判断所述触摸点的触发方式 是否符合预设触发方式; 所述终端还包括: 标识单元 818, 在所述判断单元确定符合所述预 设触发方式时, 使所述终端进入批量操作模式, 并标识被选定的所述批量操作对象区域和所 述触摸点。 由于终端的操作手势较多, 为了与目前已经应用的操作手势区分开, 需要设置触 摸点的特殊触发方式, 使得终端能够知道用户希望终端进入批量操作模式。 该预设触摸方式 可以是长按多个触摸点, 将两个触摸点往相对的方向进行捏合。 在进入批量操作模式之后, 为了便于用户意识到所选定的区域, 可以特别的显示方式来标识该批量操作对象区域和触摸 点, 例如浮动显示该批量操作对象区域, 以圆点代表该触摸点。
在上述任一技术方案中, 优选的, 还可以包括: 检测单元 820, 在所述标识单元标识所 述批量操作对象区域之后, 判断是否在预定时间段内检测到区域调整操作, 若在所述预定时 间段内检测到所述区域调整操作, 则通知所述执行单元执行所述预定操作; 区域调整单元 822 , 用于在所述检测单元在所述预定时间段内检测到所述区域调整操作时, 根据所述多个触 摸点中的一个或多个触摸点被调整之后的位置, 形成新的批量操作对象区域。
在选定批量操作对象区域之后, 所选定的披露操作对象区域可能是错误的, 因此提供了 一种方式来供用户灵活调整, 可以在设置的预定时间段内例如 3 秒检测用户是否有区域调整 操作, 如果是, 则说明用户需要调整该批量操作对象区域, 否则不进行区域调整。
在调整时, 假设形成的批量操作对象区域是基于两个触摸点形成的, 则可以调整其中一 个触摸点的位置, 进而扩大或缩小批量操作对象区域。
在上述任一技术方案中, 优选的, 在所述操作对象为应用图标时, 所述预定操作包括以 下至少一种: 删除应用图标、 隐藏应用图标、 卸载应用程序、 加密应用程序或应用图标、 备 份应用程序数据、 将应用图标加入指定文件夹, 将应用图标分类后自动归入不同文件夹。
根据本发明的又一方面, 还提供了一种存储在非易失性机器可读介质上的程序产品, 用 于批量操作处理, 所述程序产品包括用于使计算机系统执行以下步骤的机器可执行指令: 识 别用户同时作用于终端屏幕上的多个触摸点; 判断所述多个触摸点中是否有至少两个触摸点 的位置在网格路径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙 区域构成; 在确定至少有两个触摸点的位置在所述网格路径所在区域之内时, 根据所述网格 路径所在区域内的触摸点的位置, 在所述终端界面上形成批量操作对象区域; 对所述批量操 作对象区域中的多个操作对象执行预定操作。
根据本发明的又一方面, 还提供了一种非易失机器可读介质, 存储有用于批量操作处理 的程序产品, 所述程序产品包括用于使计算机系统执行以下步骤的机器可执行指令: 识别用 户同时作用于终端屏幕上的多个触摸点; 判断所述多个触摸点中是否有至少两个触摸点的位 置在网格路径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙区域 构成; 在确定至少有两个触摸点的位置在所述网格路径所在区域之内时, 根据所述网格路径 所在区域内的触摸点的位置, 在所述终端界面上形成批量操作对象区域; 对所述批量操作对 象区域中的多个操作对象执行预定操作。
根据本发明的再一方面, 还提供了一种机器可读程序, 所述程序使机器执行如上所述技 术方案中任一所述的批量处理方法。
根据本发明的再一方面, 还提供了一种存储有机器可读程序的存储介质, 其中, 所述机 器可读程序使得机器执行如上所述技术方案中任一所述的批量处理方法。
以上结合附图详细说明了根据本发明的技术方案, 充分利用应用图标间的间隙区域, 并 通过检测用户手势以及触摸点的位置来快速定位批量处理区域, 无需跳转到专门的批量操作 界面以及繁瑣的勾选操作就能完成批量操作, 方便快捷, 增强了用户体验, 同时也提升了移 动终端的智能性及易操作性。
以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本领域的技术人员 来说, 本发明可以有各种更改和变化。 凡在本发明的精神和原则之内, 所作的任何修改、 等 同替换、 改进等, 均应包含在本发明的保护范围之内。
Claims
1. 一种批量处理方法, 其特征在于, 包括:
识别用户同时作用于终端屏幕上的多个触摸点;
判断所述多个触摸点中是否有至少两个触摸点的位置在网格路径所在区域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙区域构成;
在确定至少有两个触摸点的位置在所述网格路径所在区域之内时, 根据所述网格路径所 在区域内的触摸点的位置, 在所述终端界面上形成批量操作对象区域;
对所述批量操作对象区域中的多个操作对象执行预定操作。
2. 根据权利要求 1所述的批量处理方法, 其特征在于, 所述根据所述网格路径所在区域 内的触摸点的位置, 在所述终端界面上形成批量操作对象区域的步骤具体包括:
将位于所述网格路径所在区域内的触摸点作为所述批量操作对象区域中的顶点; 以所述触摸点的位置为起点, 沿所述网格路径的路径方向辐射区域划分线;
将多个所述触摸点对应的多条区域划分线所交叉形成的封闭区域作为所述批量操作对象 区域。
3. 根据权利要求 1所述的批量处理方法, 其特征在于, 在形成所述批量操作对象区域之 后, 将所述多个操作对象进行叠加, 形成操作整体, 供用户操作。
4. 根据权利要求 3所述的批量处理方法, 其特征在于, 在所述操作整体被移动至所述终 端界面的指定区域时, 显示至少一个待操作项;
将所述操作整体移动至所述至少一个待操作项中的一个待操作项, 对所述操作整体执行 与所述一个待操作项对应的批量操作。
5. 根据权利要求 1至 4中任一项所述的批量处理方法, 其特征在于, 判断所述触摸点的 触发方式是否符合预设触发方式;
若符合所述预设触发方式, 则使所述终端进入批量操作模式, 并标识被选定的所述批量 操作对象区域和所述触摸点。
6. 根据权利要求 5所述的批量处理方法, 其特征在于, 在标识所述批量操作对象区域之 后, 若在预定时间段内未检测到区域调整操作, 则执行所述预定操作;
若在所述预定时间段内检测到所述区域调整操作, 则根据所述多个触摸点中的一个或多 个触摸点被调整之后的位置, 形成新的批量操作对象区域。
7. 一种批量处理装置, 其特征在于, 包括:
识别单元, 用于识别用户同时作用于终端屏幕上的多个触摸点;
判断单元, 用于判断所述多个触摸点中是否有至少两个触摸点的位置在网格路径所在区 域之内, 其中, 所述网格路径由终端界面上各操作对象之间的间隙区域构成;
区域形成单元, 连接至所述判断单元, 用于在所述判断单元确定至少有两个触摸点的位 置在所述网格路径所在区域之内时, 根据所述网格路径所在区域内的触摸点的位置, 在所述 终端界面上形成批量操作对象区域;
执行单元, 连接至所述区域形成单元, 用于对所述批量操作对象区域中的多个操作对象 执行预定操作。
8. 根据权利要求 7所述的批量处理装置, 其特征在于, 所述区域形成单元包括: 触摸点定位单元, 将位于所述网格路径所在区域内的触摸点作为所述批量操作对象区域 中的顶点, 以所述触摸点的位置为起点, 沿所述网格路径的路径方向辐射区域划分线;
区域划分单元, 用于将多个所述触摸点对应的多条区域划分线所交叉形成的封闭区域作 为所述批量操作对象区域。
9. 根据权利要求 7所述的批量处理装置, 其特征在于, 还包括:
叠加单元, 用于在形成所述批量操作对象区域之后, 将所述多个操作对象进行叠加, 形 成操作整体, 供用户操作。
10. 根据权利要求 9所述的批量处理装置, 其特征在于, 还包括:
第一提示单元, 在所述操作整体被移动至所述终端界面的指定区域时, 显示至少一个待 操作项;
操作项选择单元, 将所述操作整体移动至所述至少一个待操作项中的一个待操作项, 对 所述操作整体执行与所述一个待操作项对应的批量操作。
1 1. 根据权利要求 7至 10中任一项所述的批量处理装置, 其特征在于, 所述判断单元还 用于判断所述触摸点的触发方式是否符合预设触发方式;
所述装置还包括: 标识单元, 在所述判断单元确定符合所述预设触发方式时, 使所述终 端进入批量操作模式, 并标识被选定的所述批量操作对象区域和所述触摸点。
12. 根据权利要求 1 1所述的批量处理装置, 其特征在于, 还包括:
检测单元, 在所述标识单元标识所述批量操作对象区域之后, 判断是否在预定时间段内 检测到区域调整操作, 若在所述预定时间段内检测到所述区域调整操作, 则通知所述执行单
元执行所述预定操作;
区域调整单元, 用于在所述检测单元在所述预定时间段内检测到所述区域调整操作时, 根据所述多个触摸点中的一个或多个触摸点被调整之后的位置, 形成新的批量操作对象区 域。
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| CN106201270A (zh) * | 2016-07-15 | 2016-12-07 | 乐视控股(北京)有限公司 | 一种目标对象的处理方法及装置 |
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| CN109739426B (zh) * | 2018-05-14 | 2020-03-27 | 北京字节跳动网络技术有限公司 | 一种对象批处理的方法和装置 |
| CN108762660B (zh) * | 2018-05-29 | 2021-03-23 | 京东方科技集团股份有限公司 | 悬浮显示装置和用于悬浮显示装置的指示触控位置的方法 |
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| KR101113906B1 (ko) * | 2009-09-04 | 2012-02-29 | 노상기 | 전자기기 단말기용 사용자 인터페이스 화면 구성 방법 및 이를 수행하기 위한 전자기기 단말기 |
| CN102778968A (zh) * | 2011-05-11 | 2012-11-14 | 深圳富泰宏精密工业有限公司 | 物件选取方法及系统 |
| CN102262507A (zh) * | 2011-06-28 | 2011-11-30 | 中兴通讯股份有限公司 | 一种利用多点触控实现对象批量选择的方法和装置 |
| CN103207742A (zh) * | 2012-01-13 | 2013-07-17 | 深圳富泰宏精密工业有限公司 | 物件选取方法及系统 |
| CN103064626B (zh) * | 2012-12-31 | 2016-06-15 | 中兴通讯股份有限公司 | 一种触屏终端及其实现复选功能的方法 |
| CN103218161B (zh) * | 2013-03-22 | 2020-03-10 | Oppo广东移动通信有限公司 | 一种基于多点触控的移动终端操作方法及系统 |
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2014
- 2014-01-24 WO PCT/CN2014/071375 patent/WO2015109530A1/zh not_active Ceased
- 2014-01-24 CN CN201480073483.6A patent/CN106068672A/zh active Pending
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2016
- 2016-07-22 US US15/216,714 patent/US20160328146A1/en not_active Abandoned
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| CN102741799A (zh) * | 2012-03-06 | 2012-10-17 | 华为终端有限公司 | 一种触摸屏的操作方法和终端 |
| CN102821193A (zh) * | 2012-07-02 | 2012-12-12 | 中兴通讯股份有限公司 | 一种智能手机的快捷操作文件的方法和智能手机 |
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| WO2016184105A1 (zh) * | 2015-10-21 | 2016-11-24 | 中兴通讯股份有限公司 | 一种元素复选的方法、终端及计算机存储介质 |
| CN106201270A (zh) * | 2016-07-15 | 2016-12-07 | 乐视控股(北京)有限公司 | 一种目标对象的处理方法及装置 |
| WO2018010339A1 (zh) * | 2016-07-15 | 2018-01-18 | 乐视控股(北京)有限公司 | 目标对象的处理方法及装置 |
Also Published As
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|---|---|
| CN106068672A (zh) | 2016-11-02 |
| US20160328146A1 (en) | 2016-11-10 |
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