Electronic device, method, and non-transitory computer-readable storage medium for editing home screen
By using a frame object and machine learning models to generate representations, the electronic device addresses the challenge of efficiently editing home screens and notifying users of application status changes, enhancing user experience.
Patent Information
- Application Number
- PCT/KR2025/008101
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-09-23
- Filing Date
- 2025-06-12
- Publication Date
- 2026-02-26
AI Technical Summary
Existing electronic devices face challenges in efficiently editing home screens, particularly in associating visual objects with application objects, and in intuitively notifying users of application status changes, leading to user inconvenience.
The electronic device employs a frame object to surround application objects, using machine learning models to generate representations based on application category and object information, and dynamically updates visual objects to reflect application status changes.
This approach enhances the editing process by associating visual objects effectively with application objects and intuitively notifying users of status changes, improving user experience on home screens.
Smart Images

Figure KR2025008101_26022026_PF_FP_ABST
Abstract
Description
Electronic device, method, and non-transitory computer-readable storage medium for editing a home screen
[0001] The present disclosure relates to an electronic device, a method, and a non-transitory computer-readable storage medium for editing a home screen.
[0002] An electronic device can display a home screen. The home screen can include application objects. The electronic device can edit the home screen by adding, removing, and / or modifying application objects within the home screen. The electronic device can edit the home screen by adding visual objects within the home screen.
[0003] The above information may be provided as background art to aid in understanding the present disclosure. No claim or determination is made as to whether any of the above is applicable as prior art related to the present disclosure.
[0004] An electronic device is described. The electronic device may include at least one processor, the processor including a memory storing instructions and including one or more storage media, a display, and a processing circuit. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display a screen for editing a home screen through the display. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to receive a user input that causes a frame object to surround one or more application objects included in the home screen within the screen while displaying the screen. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to generate a representation associated with the one or more applications based on first information (515) about a category of the one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the representation positioned on the frame object.
[0005] A method is described. The method can be performed in an electronic device including a display. The method can include an operation of displaying a screen for editing a home screen through the display. The method can include an operation of receiving, while displaying the screen, a user input causing a frame object to surround one or more application objects included in the home screen within the screen. The method can include an operation of generating a representation associated with the one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The method can include an operation of displaying the frame object within the home screen through the display, thereby visually highlighting the one or more application objects relative to one or more other application objects and displaying the representation positioned on the frame object.
[0006] A non-transitory computer-readable storage medium is described. The non-transitory computer-readable storage medium may store one or more programs. The one or more programs may include instructions that, when executed by an electronic device including a display, cause the electronic device to display a screen for editing a home screen through the display. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to receive a user input that causes a frame object to surround one or more application objects included in the home screen within the screen while displaying the screen. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to generate a representation associated with one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the expression positioned on the frame object.
[0007] An electronic device is described. The electronic device may include at least one processor, the processor including a memory storing instructions and including one or more storage media, a display, and a processing circuit. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display a screen for editing a home screen through the display. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to receive a user input that causes a frame object to surround one or more application objects included in the home screen within the screen while displaying the screen. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to generate a representation associated with the one or more applications based on first information (515) about a category of the one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the representation positioned on the frame object. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to identify a change in a state of at least one application of the one or more applications.The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to, based on the identification, display, through the display, a different representation of the one or more applications, at least a portion of which has been changed in response to the change in the state of the at least one application, in place of the representation.
[0008] A method is described. The method may be performed in an electronic device including a display. The method may include an operation of displaying a screen for editing a home screen through the display. The method may include an operation of receiving, while displaying the screen, a user input causing a frame object to surround one or more application objects included in the home screen within the screen. The method may include an operation of generating a representation associated with one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The method may include an operation of displaying the frame object within the home screen through the display, thereby visually highlighting the one or more application objects relative to one or more other application objects and displaying the representation positioned on the frame object. The method may include an operation of identifying a change in the state of at least one of the one or more applications. The method may include, based on the identification, an operation of displaying, through the display, another representation of the one or more applications, in which at least a portion of the representation has been changed according to the change in the state of the at least one application, as a replacement for the representation.
[0009] A non-transitory computer-readable storage medium is described. The non-transitory computer-readable storage medium may store one or more programs. The one or more programs may include instructions that, when executed by an electronic device including a display, cause the electronic device to display a screen for editing a home screen through the display. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to receive a user input that causes a frame object to surround one or more application objects included in the home screen within the screen while displaying the screen. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to generate a representation associated with one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the expression positioned on the frame object. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to identify a change in the state of at least one of the one or more applications.The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to, based on the identification, display, through the display, a different representation of the one or more applications, at least a portion of which has been changed in response to the change in the state of the at least one application, in place of the representation.
[0010] Figure 1 illustrates an example of editing a home screen by adding visual objects to the home screen.
[0011] Figure 2 is a simplified block diagram of an exemplary electronic device.
[0012] FIG. 3 is a flowchart illustrating exemplary operations of an electronic device for displaying representations of one or more applications.
[0013] Figures 4a, 4b, and 4c illustrate examples of inputs for causing a frame object to surround one or more application objects.
[0014] FIG. 5 illustrates an example of obtaining first information about a category of one or more applications and second information about one or more application objects.
[0015] Figure 6 illustrates an example of obtaining a representation of one or more applications.
[0016] Figure 7 illustrates an example of displaying representations of one or more applications.
[0017] FIG. 8 is a flowchart illustrating exemplary operations of an electronic device for displaying different representations of one or more applications depending on changes in the state of the application.
[0018] Figure 9 illustrates an example of obtaining different representations of one or more applications.
[0019] FIG. 10a illustrates another example of a representation of one or more applications for notifying a change in the state of at least one of the applications.
[0020] FIG. 10b illustrates an example of a representation of one or more applications for notifying a change in the state of at least one of the applications.
[0021] FIG. 11 is a block diagram of an electronic device within a network environment according to various embodiments.
[0022] Figure 12 is a schematic diagram of an exemplary AI system.
[0023] Hereinafter, embodiments of the present disclosure will be described in detail with reference to the drawings so that those skilled in the art can easily implement the present disclosure. However, the present disclosure may be implemented in various different forms and is not limited to the embodiments described herein. In connection with the description of the drawings, the same or similar reference numerals may be used for identical or similar components. Furthermore, in the drawings and related descriptions, descriptions of well-known functions and configurations may be omitted for clarity and conciseness.
[0024] Figure 1 illustrates an example of editing a home screen by adding visual objects to the home screen.
[0025] Referring to FIG. 1, the electronic device (100) may be described as a device available for editing a home screen. For example, the electronic device (100) may be one of various forms of mobile devices, such as smartphones (e.g., bar-type smartphones, foldable-type smartphones, or rollable-type smartphones), tablets, wearable devices, cellular phones, laptops, and / or other similar computing devices, having various form factors that include circuits (or circuitry) for providing an operation for editing a home screen.
[0026] State (105) may be described as a state of editing a home screen. For example, the electronic device (100) may include a display (110) (e.g., display (230) of FIG. 2). For example, within state (105), the electronic device (100) may display a screen (115) for editing a home screen through the display (110). For example, the electronic device (100) may display a window (120) on the screen (115) that includes visual objects (125) that can be added to the home screen. For example, the visual objects (125) may be defined as stickers. For example, the electronic device (100) may receive user inputs (130-1, 130-2) for adding visual objects (125) to the home screen. For example, the electronic device (100) can receive a user input (130-1) for a visual object (125-1) and a user input (130-2) for a visual object (125-2).
[0027] The electronic device (100) may transition from state (105) to state (135) based on receiving user inputs (130-1, 130-2). State (135) may be described as a state in which the home screen (140) is edited. For example, within state (135), the electronic device (100) may display visual objects (125-1) and visual objects (125-2) on the home screen (140) based on user inputs (130-1, 130-2). For example, the home screen (140) may be edited to include visual objects (125-1) and visual objects (125-2).
[0028] For example, a visual object (125-2) may be positioned on the home screen (140) to surround application objects (145), and a visual object (125-1) may be positioned on the visual object (125-2) (or on a position adjacent to the visual object (125-2)). For example, the visual object (125-1) may represent applications corresponding to the application objects (145) surrounded by the visual object (125-2) and / or images not associated with the application objects (145). For example, among the visual objects (125) pre-stored in the electronic device (100), there may be no visual object associated with the application objects (145) and / or the applications, or it may take a relatively long time to find the application objects (145) and / or the applications among the visual objects (125). For example, a user may feel inconvenienced if there are no application objects (145) and / or visual objects associated with the applications among the visual objects (125), or if it takes a relatively long time to find application objects (145) and / or visual objects associated with the applications among the visual objects (125).
[0029] To resolve this inconvenience, the electronic device (100) may acquire application objects (145) and / or visual objects associated with the applications, and display the acquired visual objects on the home screen. For example, information on the application objects (145) and / or information on the applications may be used to acquire the application objects (145) and / or visual objects associated with the applications.
[0030] For example, within the state (135), the electronic device (100) can identify a change in the state of applications corresponding to application objects (145). For example, based on a change in the state of the application corresponding to the application object (145-1), the electronic device (100) can display an indicator (150) for the notification of the application on the application object (145-1) upon receiving a notification from the application. For example, if the indicator (150) has a relatively small size and does not display the content of the notification of the application, the user may feel inconvenienced because he or she cannot intuitively view the notification of the application.
[0031] To resolve this inconvenience, the electronic device (100) can notify the user of changes in the status of applications through the visual object (125-1). For example, the electronic device (100) can change the visual object (125-1) according to the change in the status of applications. The electronic device (100) can intuitively notify the user of changes in the status of applications by displaying a different visual object changed from the visual object (125-1) on the home screen (140). For example, information about the status of applications corresponding to the application objects (145) can be used to display a different visual object changed from the visual object (125-1) on the home screen (140).
[0032] The electronic device (100) may perform the operations exemplified in the description of FIGS. 3 to 7 to display visual objects associated with application objects (145) on the home screen (140). The electronic device (100) may perform the operations exemplified in the description of FIGS. 8 to 10b to display different visual objects on the home screen (140) according to changes in the status of applications. The electronic device (100) may include components for performing the above operations. The components may be exemplified in the description of FIG. 2.
[0033] Figure 2 is a simplified block diagram of an exemplary electronic device.
[0034] Referring to FIG. 2, the electronic device (200) may be one of various forms of mobile devices, such as smartphones having various form factors (e.g., bar-type smartphones, foldable-type smartphones, or rollable-type smartphones), tablets, wearable devices, cellular phones, laptops, and / or other similar computing devices. For example, the electronic device (200) may include the electronic device (100) of FIG. 1 or may correspond to the electronic device (100) of FIG. 1. For example, the electronic device (200) may include at least a portion of the electronic device (1101) of FIG. 11 or may correspond to at least a portion of the electronic device (1101) of FIG. 11. For example, the electronic device (200) may include at least one processor (210), a memory (220), and a display (230).
[0035] At least one processor (210) may include processing circuitry. For example, at least one processor (210) may include a central processing unit (CPU) (e.g., including processing circuitry). For example, at least one processor (210) may include a graphics processing unit (GPU) (e.g., including processing circuitry) and / or a neural processing unit (NPU) (e.g., including processing circuitry). For example, at least one processor (210) may be described as an application processor. For example, at least one processor (210) may be configured to control memory (220) and display (230). At least one processor (210) may be configured to individually or collectively execute instructions stored in memory (220) to cause the electronic device (200) to perform at least some of the operations illustrated in the description of FIG. 1. At least one processor (210) may be configured to execute instructions stored in the memory (220) to cause the electronic device (200) to perform at least some of the operations illustrated in the descriptions of FIGS. 3 through 10b.
[0036] The memory (220) may include one or more storage media. For example, the memory (220) may store various data used by at least one component of the electronic device (200) (e.g., at least one processor (210) and / or display (230)). For example, the data may include input data or output data for software and commands related thereto. The memory (220) may include volatile memory or non-volatile memory.
[0037] The display (230) may include a touch sensor configured to detect a touch, or a pressure sensor configured to measure the strength of the force generated by the touch. For example, the display (230) may be configured to display a screen. For example, the display (230) may be configured to display application objects, frame objects, and / or visual objects on the screen. For example, the display (230) may be configured to receive user input.
[0038] The electronic device (200) illustrated in the description of FIG. 2 may execute at least some of the operations illustrated in the description of FIGS. 3 to 10B. For example, the operations illustrated in the description of FIGS. 3 to 10B may be caused by (or within) the electronic device (200) under the control of at least one processor (210).
[0039] FIG. 3 is a flowchart illustrating exemplary operations of an electronic device for displaying representations of one or more applications.
[0040] In operation 300, at least one processor (210) may display a screen for editing a home screen via the display (230). For example, while displaying the home screen via the display (230), the at least one processor (210) may receive a user input for editing the home screen. For example, the user input for editing the home screen may include a long press input having a contact point on an area excluding executable objects (e.g., application objects) on the home screen. For example, based on the user input for editing the home screen, the at least one processor (210) may display a screen for editing the home screen. For example, the operations exemplified below (e.g., operations 310 to 350) may be performed while displaying the screen for editing the home screen.
[0041] In operation 310, at least one processor (210) may receive a user input that causes a frame object to surround one or more application objects included in the home screen within the home screen editing screen while displaying a screen for editing the home screen. For example, the one or more application objects may include icons for one or more applications, widgets for the one or more applications, and / or PIP (picture in a picture) windows for the one or more applications, each corresponding to the one or more application objects. For example, the icons for the one or more applications may include executable objects for executing the one or more applications. For example, the widgets for the one or more applications may be described as executable objects for displaying information elements (e.g., current weather, alarm time, memo) and functional elements (e.g., adding a schedule, setting an alarm) provided by the one or more applications. For example, the PIP windows for the one or more applications may be described as reduced screens provided from the one or more applications running within the electronic device (200).
[0042] User input that causes a frame object to surround one or more application objects contained within a home screen is exemplified within the descriptions of FIGS. 4a, 4b, and 4c.
[0043] Figures 4a, 4b, and 4c illustrate examples of inputs for causing a frame object to surround one or more application objects.
[0044] Referring to FIG. 4A, a state (400) may be described as a state in which a drag input (421) is performed on a frame object (415). Within the state (400), at least one processor (210) may display a screen (405) for editing a home screen including application objects through a display (230). For example, at least one processor (210) may display a window (410) including frame objects (e.g., frame objects (415)) on the screen (405) for editing the home screen. For example, the frame objects may include frame stickers. For example, the window (410) may be displayed based on an input for selecting a frame object category from among a plurality of object (e.g., sticker) categories received while the screen (405) for editing the home screen is displayed. For example, the plurality of object (or sticker) categories may include a frame object category, an emoji object category, a type object category, a clipped image object category, a geometric graphic object category, a bubble initial object category, a deep shadow illustration object category, and / or a three-dimensional (3D) emoji object category. For example, while displaying the window (410), at least one processor (210) may receive a user input for selecting one frame object (415) from among the frame objects within the window (410). For example, the user input for selecting one frame object (415) from among the frame objects may include a touch input having a contact point on the frame object (415). For example, at least one processor (210) may display a preview image of a movable frame object (415) on the screen (405) based on a user input selecting the frame object (415).
[0045] For example, at least one processor (210) may receive a user input for selecting a frame object (415) and may receive a drag input (421) for moving the frame object (415) (or a preview image of the frame object (415)). For example, the drag input (421) may be described as an input for editing the home screen by adding the frame object (415) to the home screen. For example, at least one processor (210) may edit the home screen by overlaying the frame object (415) on a location on the screen (405) where the touch input was released (or a location where the frame object (415) was dropped) in response to the drag input (421).
[0046] For example, within the state (400), a touch input according to a drag input (421) may be released at a position where the frame object (415) surrounds one or more application objects (420) among the application objects. For example, at least one processor (210) may receive a drag input (421) that causes the frame object (415) to surround one or more application objects (420) included in the home screen while displaying the screen (405). For example, at least one processor (210) may group one or more applications corresponding to one or more application objects (420) based on the drag input (421). For example, the drag input (421) may be defined as a user input in operation 310 of FIG. 3.
[0047] Referring to FIG. 4B, a state (425) may be described as a state in which an input (435) is performed to draw a curve (430) surrounding one or more application objects (420). Within the state (425), at least one processor (210) may display a screen (405) for editing a home screen including application objects via the display (230). For example, while displaying the screen (405) for editing the home screen, the at least one processor (210) may receive an input (435) for drawing a curve (430) surrounding (or substantially surrounding) an area on the home screen. For example, the input (435) for drawing a curve (430) may be received via a touch screen (e.g., the display (230)) or may be received using an external input device (e.g., a stylus pen and / or a mouse). For example, the curve (430) may be composed of at least one stroke. For example, one or more application objects (420) may be included within an area on the wallpaper screen that the curve (430) surrounds. For example, an input (435) that draws a curve (430) may be described as a touch input that has a contact point at a first point on the home screen and is released from a second point on the home screen. For example, at least one processor (210) may display a curve (or closed curve) (430) that appears along a path of a touch input that moves from the first point on the home screen where the touch input is received to the second point on the home screen where the touch input is released.
[0048] For example, at least one processor (210) may display a window (410) including frame objects (e.g., frame objects (415)) on a screen (405) for editing a home screen based on an input (435) for drawing a curve (430), or may receive an input (435) for drawing a curve (430) while displaying the window (410). For example, the window (410) may be displayed based on an input for selecting a frame object category from among a plurality of object categories (e.g., stickers) received while displaying the screen (405) for editing a home screen. For example, at least one processor (210) may receive a user input (440) for selecting one frame object (415) from among the frame objects within the window (410) while displaying the window (410). For example, a user input (440) for selecting one frame object (415) from among the frame objects may include a touch input having a contact point on the frame object (415). For example, at least one processor (210) may edit the home screen by adding a frame object (415) surrounding an area corresponding to an area surrounded by a curve (430) to the home screen based on the user input (440). For example, at least one processor (210) may display the frame object (415) on an area corresponding to an area surrounded by a curve (430) on the home screen based on the user input (440).
[0049] For example, at least one processor (210) may cause a frame object (415) to surround one or more application objects (420) included in the home screen based on an input (435) for drawing a curve (430) and a user input (440) while displaying a screen (405) for editing a home screen. For example, at least one processor (210) may group one or more applications corresponding to one or more application objects (420) based on an input (435) for drawing a curve (430) and a user input (440). For example, the input (435) for drawing a curve (430) and the user input (440) may be defined as a user input in operation 310 of FIG. 3.
[0050] Referring to FIG. 4C, a state (445) may be described as a state in which an input (450) for selecting one or more application objects (420) is performed. Within the state (445), at least one processor (210) may display a screen (405) for editing a home screen including application objects through the display (230). For example, while displaying the screen (405) for editing the home screen, the at least one processor (210) may receive an input (450) for selecting one or more application objects (420) from among the application objects on the home screen. For example, the input (450) for selecting one or more application objects (420) may include an input for touching each of the one or more application objects (420) (420-1, 420-2, 420-3) and a drag input having a contact point on the one or more application objects (420). For example, an input (450) for selecting one or more application objects (420) may include an input via a pop-up window for one or more application objects (420) and / or a long press input for one or more application objects (420). For example, at least one processor (210) may, based on an input (450) for selecting one or more application objects (420), display an indicator (422) superimposed on one or more application objects (420) to indicate that one or more application objects (420) are selected.
[0051] For example, at least one processor (210) may display a window (410) including frame objects (e.g., frame objects (415)) on a screen (405) for editing a home screen based on an input (450) for selecting one or more application objects (420), or may receive an input (450) for selecting one or more application objects (420) while displaying the window (410). For example, the window (410) may be displayed based on an input for selecting a frame object category from among a plurality of object categories (e.g., stickers) while displaying the screen (405) for editing a home screen. For example, at least one processor (210) may receive a user input (440) for selecting one frame object (415) from among the frame objects within the window (410) while displaying the window (410). For example, a user input (440) for selecting one frame object (415) from among the frame objects may include a touch input having a contact point on the frame object (415). For example, at least one processor (210) may edit the home screen by adding a frame object (415) surrounding one or more application objects (420) selected by the input (450) to the home screen based on the user input (440). For example, at least one processor (210) may display the frame object (415) on the home screen based on the user input (440).
[0052] For example, at least one processor (210) may cause a frame object (415) to surround one or more application objects (420) included in the home screen based on an input (450) and a user input (440) for selecting one or more application objects (420) while displaying a screen (405) for editing a home screen. For example, at least one processor (210) may group one or more applications corresponding to one or more application objects (420) based on an input (450) and a user input (440) for selecting one or more application objects (420). For example, the input (450) and the user input (440) for selecting one or more application objects (420) may be defined as a user input in operation 310 of FIG. 3.
[0053] Referring again to FIG. 3, at operation 320, at least one processor (210) may identify one or more applications corresponding to one or more application objects based on a user input that causes a frame object to surround one or more application objects included in a home screen. For example, at least one processor (210) may obtain first information about a category of the identified one or more applications and second information about the one or more application objects. For example, the first information and the second information may be obtained based on third information about the one or more applications. Obtaining the first information and the second information is exemplified within the description of FIG. 5.
[0054] FIG. 5 illustrates an example of obtaining first information about a category of one or more applications and second information about one or more application objects.
[0055] Referring to FIG. 5, the electronic device (200) may include a first trained model (500). For example, the first trained model (500) may include a large multimodal model (LMM). For example, the first trained model (500) may include a machine learning model, a deep learning model, and / or a generative artificial intelligence model. For example, the first trained model (500) may be trained on prompts, and may perform operations based on the prompts provided to obtain data and information in response to the prompts. For example, the first trained model (500) may include the generative AI model (1230) of FIG. 12. For example, the first trained model (500) may include an artificial neural network model including a plurality of layers and / or operations (or computations).As a non-limiting example, the first trained model (500) may include one of a feedforward neural network (FNN), a deep neural network (DNN), a convolutional neural network (CNN), a region with convolution neural network (R-CNN), a region proposal network (RPN), a recurrent neural network (RNN), a stacking-based deep neural network (S-DNN), a state-space dynamic neural network (S-SDNN), a deconvolution network, a restricted Boltzmann machine (RBM), a deep belief network (DBN), a bidirectional recurrent deep neural network (BRDNN), deep Q-networks, a fully convolutional network, a long short-term memory (LSTM) network, a classification network, or a combination of two or more thereof. For example, the first trained model (500) may include a hardware structure, or may include a software structure in addition to (or in place of) the hardware structure.
[0056] At least one processor (210) may provide (or input) third information (505) about one or more applications corresponding to one or more application objects to the first trained model (500) based on a user input that causes a frame object to surround one or more application objects included in the home screen. For example, the third information (505) may include an image of one or more application objects, a name (or title) of one or more applications, and / or an address (or package name) of one or more applications. For example, the third information (505) may have a JSON (Javascript object notation) file format, and the image of one or more application objects may have a BMP (bitmap) file format.
[0057] At least one processor (210) may provide (or input) a first prompt (510) to a first trained model (500) to generate first information (515) about a category of one or more applications and second information (520) about one or more application objects based on a user input that causes a frame object to surround one or more application objects included in a home screen. For example, the first prompt (510) may be stored in the memory (220) or may be generated by the prompt design component (1221) of FIG. 12. For example, the first prompt (510) may include text requesting generation of the first information (515), or requesting generation of the first information (515) and the second information (520). For example, the first prompt (510) may be composed of natural language. As a non-limiting example, the first prompt (510) may include text such as, but not limited to, "Describe as much detail as possible about the image" to request the generation of the second information (520).
[0058] For example, at least one processor (210) can obtain first information (515) about a category of one or more applications and second information (520) about one or more application objects in response to the first prompt (510) from the first trained model (500) into which third information (505) and a first prompt (510) are input (or provided). As a non-limiting example, the categories of applications of the first information (515) can include shopping, travel, games, photography, music, video, books, health, fitness, food, recipes, education, social media, news, weather, transportation, security, productivity, design, fashion, and / or art.
[0059] In another embodiment, the first information (515) may be obtained by user input. For example, at least one processor (210) may obtain first information (515) regarding the selected category by receiving user input selecting one or more categories of applications.
[0060] For example, the second information (520) may include information representing the appearance of one or more application objects. As a non-limiting example, the second information (520) may include information representing the color, texture, shape, arrangement, text, and / or font of the text of one or more application objects.
[0061] Referring back to FIG. 3, at operation 330, at least one processor (210) may provide (or input) first information (515) and second information (520) to a second trained model (e.g., the second trained model (600) of FIG. 6). For example, the at least one processor (210) may provide (or input) a second prompt (e.g., the second prompt (615) of FIG. 6) together with the first information (515) and the second information (520) to the second trained model. For example, the at least one processor (210) may further provide (or input) additional information to the second trained model (e.g., the fourth information (605) about the frame object of FIG. 6 and / or the fifth information (610) about a portion of the wallpaper screen associated with the frame object of FIG. 6).
[0062] In another embodiment, the first trained model (500) may be included in a server external to the electronic device (200). For example, the electronic device (200) may include a communication circuit. For example, the electronic device (200) may provide (or input) third information (505) and a first prompt (510) for one or more applications to the server using the communication circuit. For example, the server may transmit first information (515) and second information (520) obtained from the first trained model (500) to the electronic device (200). For example, at least one processor (210) may obtain the first information (515) and the second information (520) by receiving the first information (515) and the second information (520) from the server via the communication circuit.
[0063] In operation 340, at least one processor (210) may obtain a representation of one or more applications from the second trained model. For example, the representation of one or more applications may be described as a visual object (or sticker) representing one or more applications. Obtaining the representation of one or more applications is exemplified in the description of FIG. 6 .
[0064] Figure 6 illustrates an example of obtaining a representation of one or more applications.
[0065] Referring to FIG. 6, the electronic device (200) may include a second trained model (600). For example, the second trained model (600) may be described as an image generation model (e.g., a text-to-image diffusion model). For example, the second trained model (600) may include a machine learning model, a deep learning model, and / or a generative artificial intelligence model. For example, the second trained model (600) may be trained on prompts, and may perform operations based on the prompts provided to obtain a visual object (or image) in response to the prompts. For example, the second trained model (600) may include the generative AI model (1230) of FIG. 12. For example, the second trained model (600) may include an artificial neural network model including a plurality of layers and / or operations (or calculations).As a non-limiting example, the second trained model (600) may include one of a feedforward neural network (FNN), a deep neural network (DNN), a convolutional neural network (CNN), a region with convolution neural network (R-CNN), a region proposal network (RPN), a recurrent neural network (RNN), a stacking-based deep neural network (S-DNN), a state-space dynamic neural network (S-SDNN), a deconvolution network, a restricted Boltzmann machine (RBM), a deep belief network (DBN), a bidirectional recurrent deep neural network (BRDNN), deep Q-networks, a fully convolutional network, a long short-term memory (LSTM) network, a classification network, or a combination of two or more thereof. For example, the second trained model (600) may include a hardware structure, or may include a software structure in addition to (or in place of) the hardware structure.
[0066] At least one processor (210) can provide (or input) first information (e.g., first information (515) of FIG. 5) and second information (e.g., second information (520) of FIG. 5) obtained from a first trained model (e.g., first trained model (500) of FIG. 5) to a second trained model (600). For example, at least one processor (210) can further provide (or input) fourth information (605) about a frame object and / or fifth information (610) about a portion of a wallpaper screen associated with the frame object to the second trained model (600).
[0067] For example, the fourth information (605) for the frame object may include information about the shape of the frame object surrounding one or more application objects. For example, the fourth information (605) may include information about the artistic style of the frame object. For example, the artistic style of the frame object may be predetermined for each of the frame objects. As a non-limiting example, the artistic style of the frame object may include watercolor, animation, pencil drawing, cartoon, and / or three-dimensional neon.
[0068] For example, the fifth information (610) for a portion of a wallpaper screen associated with a frame object may include information about the wallpaper screen and / or image information for a portion of the wallpaper screen. For example, the fifth information (610) may include information about the shape, color, texture, and / or text of the wallpaper screen (or an image for a portion of the wallpaper screen). For example, a visual object within a portion of the wallpaper screen (e.g., a visual object (710) of FIG. 7) may be associated with the frame object or may interact with the frame object. As a non-limiting example, a portion of a wallpaper screen associated with a frame object having a speech bubble shape may include a visual object within the wallpaper screen pointed to by the frame object having the speech bubble shape.
[0069] At least one processor (210) may provide (or input) a second prompt (615) to the second trained model (600) for generating a representation (620) of one or more applications. For example, the second prompt (615) may be stored in the memory (220) or may be generated by the prompt design component (1221) of FIG. 12 . For example, the second prompt (615) may include text requesting generation of a representation (620) of one or more applications based on the first information (515), the second information (520), the fourth information (605), and / or the fifth information (610). For example, the second prompt (615) may be composed of natural language. As a non-limiting example, the second prompt (615) may include text such as "Combine the information to generate an image" to request generation of a representation (620) of one or more applications. But it is not limited to this.
[0070] For example, at least one processor (210) may obtain a representation (620) of one or more applications in response to a second prompt (615) from a second trained model (600) provided (or input) with the first information (515), the second information (520), the fourth information (605), the fifth information (610), and / or the second prompt (615). For example, the representation (620) of one or more applications may be described as an image (or sticker, or visual object) representing one or more applications. For example, the representation (620) of one or more applications may have an appearance associated with a category of one or more applications. For example, the representation (620) of one or more applications may have a color and shape corresponding to the color, shape, arrangement, text, and / or font of the text of one or more application objects. For example, the representation (620) of one or more applications may have an artistic style corresponding to the artistic style of a frame object. For example, a representation (620) of one or more applications may have colors and shapes that correspond to the colors, shapes, and / or text of a wallpaper screen (or a portion of a wallpaper screen associated with a frame object).
[0071] In another embodiment, the second trained model (600) may be included in a server external to the electronic device (200). For example, the electronic device (200) may include a communication circuit. For example, the electronic device (200) may provide (or input) the first information (515), the second information (520), the fourth information (605), the fifth information (610), and the second prompt (615) to the server using the communication circuit, thereby transmitting the first information (515), the second information (520), the fourth information (605), the fifth information (610), and the second prompt (615) to the server. For example, the server may transmit to the electronic device (200) a representation (620) of one or more applications obtained from the second trained model (600). For example, at least one processor (210) may obtain the representation (620) of one or more applications by receiving the representation (620) of one or more applications from the server via the communication circuit.
[0072] In another embodiment, the electronic device (200) may include a third trained model that integrates the first trained model (500) and the second trained model (600). For example, at least one processor (210) may provide the third trained model with third information (505) about one or more applications, fourth information (605) about a frame object, fifth information (610) about a portion of a home screen associated with the frame object, and / or a prompt to generate a representation (620) (e.g., a sticker) of one or more applications. For example, the third trained model may be provided with the third information (505) about one or more applications, thereby generating second information (520) about one or more application objects, and may further generate a representation (620) (e.g., a sticker) of one or more applications using the second information (520) about one or more application objects. For example, the third trained model may bypass generating the second information (520) about one or more application objects (or not generating it) and, in response to a prompt to generate a representation (620) (e.g., a sticker) of one or more applications, use the third information (505) about the applications, the fourth information (605) about the frame object, and / or the fifth information (610) about a portion of the home screen associated with the frame object to generate the representation (620) of one or more applications.
[0073] Referring again to FIG. 3 , at operation 350, at least one processor (210) may display, via the display (230), within the home screen, a frame object and a representation (620) of one or more applications obtained from the second trained model (600). For example, by displaying the frame object, the at least one processor (210) may visually emphasize one or more applications surrounded by the frame object relative to one or more other application objects. For example, the at least one processor (210) may display the representation (620) of one or more applications on the frame object (or on a portion adjacent to the frame object). Displaying the frame object and the representation (620) of one or more applications is exemplified within the description of FIG. 7 .
[0074] Figure 7 illustrates an example of displaying representations of one or more applications.
[0075] Referring to FIG. 7, a state (700) may be described as a state in which a home screen (705) is displayed. Within the state (700), at least one processor (210) may display, via the display (230), within the home screen (705), a representation (620) of one or more applications obtained from a frame object (415) and a second trained model (e.g., the second trained model (600) of FIG. 6). For example, the at least one processor (210) may visually emphasize one or more application objects (420) relative to one or more other application objects by displaying a frame object (415) surrounding the one or more application objects (420).
[0076] At least one processor (210) can display a representation (620) of one or more applications on the frame object (415) (or on a portion adjacent to the frame object (415). For example, in the state (700), since one or more applications have a shopping category (or an e-commerce category), the representation (620) of one or more applications can have a shape (e.g., a shape of a woman shopping) related to the shopping category (or the e-commerce category). For example, the at least one processor (210) can intuitively show the category of one or more applications to the user by displaying the representation (620) of one or more applications having a shape related to the category of one or more applications.
[0077] For example, a representation (620) of one or more applications may have an appearance that corresponds to the shape, texture, color, arrangement, text, and / or text font of one or more application objects (420). For example, a representation (620) of one or more applications may have an artistic style that corresponds to the artistic style of a frame object (415). By way of non-limiting example, a representation (620) of one or more applications may have an artistic style such as cartoon, vector art, flat design, minimalist, vintage, hand-drawn, pop art, watercolor, typography, three dimensional art, grunge, and / or retro. For example, a representation (620) of one or more applications may have an appearance that corresponds to the shape and / or color of a visual object (710) associated with a frame object (415) within a wallpaper screen. For example, the representation (620) of one or more applications may have a shape that matches (or harmonizes) with the wallpaper screen. For example, at least one processor (210) may obtain the representation (620) of one or more applications having a shape that matches (or harmonizes) with the wallpaper screen, and display the representation (620) of one or more applications on the home screen (705) without inputting a selection of a visual object (or sticker) within the screen for editing the home screen (705).
[0078] According to another embodiment, at least one processor (210) can display a representation (620) of one or more applications on a top layer, a home component layer, and / or a bottom layer. For example, the representation (620) of one or more applications displayed on the top layer can be displayed on application objects and a frame object (415) on a home screen (705). For example, at least one processor (210) can receive a touch input for the representation (620) of one or more applications displayed on the top layer. For example, the representation (620) of one or more applications displayed on the home component layer can be displayed without overlapping with the application objects and the frame object (415) on the home screen (705). For example, at least one processor (210) can receive a touch input for the representation (620) of one or more applications displayed on the home component layer. For example, a representation (620) of one or more applications displayed on the bottom layer may be displayed below the application objects and the frame object (415) on the home screen (705). For example, at least one processor (210) may not receive a touch input for a representation (620) of one or more applications displayed on the bottom layer.
[0079] For example, while a representation (620) of one or more applications is displayed, the state of at least one of the one or more applications may change. For example, at least one processor (210) may display a different representation of one or more applications in place of the representation (620) of one or more applications, depending on the change in the state of the at least one application. The different representation of one or more applications depending on the change in the state of the at least one application is exemplified in the description of FIG. 8.
[0080] FIG. 8 is a flowchart illustrating exemplary operations of an electronic device for displaying different representations of one or more applications depending on changes in the state of the application.
[0081] Referring to FIG. 8, in operation 800, at least one processor (210) may identify a change in the state of at least one application among the one or more applications while displaying a representation of the one or more applications. For example, the change in the state of the at least one application may include the occurrence of an event of the at least one application, an update of the at least one application, and / or the receipt of a notification from the at least one application. In operation 810, at least one processor (210) may obtain sixth information about the changed state of the at least one application based on identifying the change in the state of the at least one application. For example, the at least one processor (210) may provide (or input) the sixth information and a third prompt (e.g., the third prompt (905) of FIG. 9) to the second trained model.
[0082] At operation 820, at least one processor (210) may obtain alternative representations of one or more applications from the second trained model. For example, the alternative representations of one or more applications may be described as visual objects (or stickers) representing one or more applications and indicating a change in the state of at least one application. Obtaining alternative representations of one or more applications is exemplified in the description of FIG. 9 .
[0083] Figure 9 illustrates an example of obtaining different representations of one or more applications.
[0084] Referring to FIG. 9, at least one processor (210) may provide (or input) sixth information (900) and a third prompt (905) regarding a changed state of at least one application among one or more applications to the second trained model (600). For example, the sixth information (900) may include information regarding an event occurring within at least one application, information regarding an update of at least one application, and / or information regarding a notification received from at least one application.
[0085] For example, the third prompt (905) may be stored in the memory (220) or may be generated by the prompt design component (1221) of FIG. 12. For example, the third prompt (905) may include text requesting the generation of another representation (910) of one or more applications based on the representation (620) of one or more applications and the sixth information (900). For example, the third prompt (905) may be composed of natural language. As a non-limiting example, the third prompt (905) may include text such as "Generate a different image based on the information" to request the generation of another representation (910) of one or more applications. However, the present invention is not limited thereto.
[0086] For example, at least one processor (210) may obtain another representation (910) of one or more applications in response to the third prompt (905) from the second trained model (600) provided (or input) with the sixth information (900) and the third prompt (905). For example, the another representation (910) of one or more applications may be described as an image (or sticker, or visual object) representing one or more applications. For example, the another representation (910) of one or more applications may have an artistic style corresponding to the artistic style of the representation (620) of one or more applications. For example, the another representation (910) of one or more applications may have a shape and color corresponding to the shape and color of the representation (620) of one or more applications. For example, the another representation (910) of one or more applications may have an appearance representing a change in the state of one or more applications.
[0087] In another embodiment, the second trained model (600) may be included in a server external to the electronic device (200). For example, the electronic device (200) may include a communication circuit. For example, the electronic device (200) may provide (or input) the second trained model (600) by transmitting the sixth information (900) and the third prompt (905) to the server using the communication circuit. For example, the server may transmit to the electronic device (200) another representation (910) of one or more applications obtained from the second trained model (600). For example, at least one processor (210) may obtain another representation (910) of one or more applications by receiving the another representation (910) of one or more applications from the server via the communication circuit.
[0088] In another embodiment, at least one processor (210) may identify changes in the state of at least one application among a threshold number or more of the one or more applications during a reference time interval while displaying a representation of one or more applications. For example, at least one processor (210) may generate another representation (910) (e.g., a sticker) of one or more applications that meet a predetermined criterion based on identifying changes in the state of at least one application among a threshold number or more of the one or more applications during a reference time interval. For example, the predetermined criterion may include events received (or generated) within a reference time from a current time point, events received from at least one application among the one or more applications that has been executed within a reference time from a current time point, and / or events received from at least one application that has been executed (or used) at a relatively high frequency. For example, at least one processor (210) may signal a change in the state of at least one of the one or more applications by displaying another representation (910) of one or more applications that meet a predetermined criterion.
[0089] Referring again to FIG. 8, at operation 830, at least one processor (210) may display, via the display (230), a different representation of one or more applications on a frame object (or on a portion adjacent to the frame object) instead of the representation of one or more applications within the home screen. For example, at least one processor (210) may indicate a change in the status of at least one of the one or more applications by displaying a different representation of the one or more applications. The different representations of one or more applications displayed to indicate a change in the status of at least one application are exemplified in FIG. 10A.
[0090] FIG. 10a illustrates another example of a representation of one or more applications for notifying a change in the state of at least one of the applications.
[0091] Referring to FIG. 10A, a state (1000) may be described as a state in which the state of at least one application has changed. Within the state (1000), at least one processor (210) may identify a change in the state of at least one application corresponding to at least one application object (420-1) among one or more applications corresponding to one or more application objects (420) while displaying a representation of one or more applications. For example, at least one processor (210) may identify a change in the state of at least one application by receiving a notification from at least one application.
[0092] For example, at least one processor (210) may display an indicator (1005) indicating a notification received from at least one application on at least one application object (420-1) (or on a portion adjacent to at least one application object (420-1)) based on a change in the status of at least one application. For example, the indicator (1005) may indicate the number of notifications received from at least one application. For example, the indicator (1005) may not be intuitively visible to the user due to its relatively small size. For example, the user may not be able to recognize the change in the status of at least one application due to the indicator (1005) not being intuitively visible to the user.
[0093] In order to resolve the inconvenience of the user not recognizing the change in the status of at least one application, at least one processor (210) may display on the frame object (415) (or on a portion adjacent to the frame object (415)) another representation (910) of one or more applications that represents the change in the status of at least one application, in place of the representation of one or more applications. As a non-limiting example, when an event related to delivery of at least one application occurs, the status of at least one application changes, and thus the another representation (910) of one or more applications may have a shape related to delivery. For example, at least one processor (210) may display another representation (910) of one or more applications that represents the change in the status of at least one application in place of (or together with) the indicator (1005), thereby intuitively notifying the user of the change in the status of at least one application.
[0094] According to another embodiment, at least one processor (210) may display an animation of a representation of one or more applications, or display a representation of one or more applications moving on a home screen (705), based on a change in the state of at least one application among the one or more applications. The representation of one or more applications based on a change in the state of at least one application is exemplified in the description of FIG. 10b.
[0095] FIG. 10b illustrates an example of a representation of one or more applications for notifying a change in the state of at least one of the applications.
[0096] Referring to FIG. 10B, state (1010) can be described as a state in which the state of at least one application has changed. Within state (1000), at least one processor (210) can identify a change in the state of at least one application corresponding to at least one application object (420-1) among one or more applications corresponding to one or more application objects (420) while displaying a representation of one or more applications. For example, at least one processor (210) can identify a change in the state of at least one application by receiving a notification from at least one application.
[0097] For example, at least one processor (210) may display an indicator (1005) indicating a notification received from at least one application on at least one application object (420-1) (or on a portion adjacent to at least one application object (420-1)) based on a change in the status of at least one application. For example, the indicator (1005) may indicate the number of notifications received from at least one application. For example, the indicator (1005) may not be intuitively visible to the user due to its relatively small size. For example, the user may not be able to recognize the change in the status of at least one application due to the indicator (1005) not being intuitively visible to the user.
[0098] In order to resolve the inconvenience of the user not recognizing the change in the status of at least one application, at least one processor (210) may display a representation (620) of one or more applications moving on the home screen (705) on the frame object (415) (or on a portion adjacent to the frame object (415)) according to the change in the status of at least one application. As a non-limiting example, as the status of at least one application among the one or more applications changes, the representation (620) of one or more applications may move (1015) to a portion adjacent to at least one application object (420-1). As a non-limiting example, since the representation (620) of one or more applications has a shape having directionality, the representation (620) of one or more applications may move on the home screen (705) according to the directionality. For example, at least one processor (210) can move a representation (620) of one or more applications on the frame object (415) (or on a portion adjacent to the frame object (415)). For example, at least one processor (210) can display a representation (620) of applications moving on the home screen (705) according to a change in the status of at least one application, in place of (or together with) the indicator (1005), thereby intuitively notifying the user of a change in the status of at least one application.
[0099] According to another embodiment, in order to resolve the inconvenience of the user not recognizing the change in the status of at least one application, at least one processor (210) may display an animation of a representation (620) of one or more applications performing an action corresponding to the change in the status of at least one application on the frame object (415) (or on a portion adjacent to the frame object (415)). For example, at least one processor (210) may display an animation of a representation (620) of one or more applications performing an action corresponding to the change in the status of at least one application instead of (or together with) the indicator (1005), thereby intuitively notifying the user of the change in the status of at least one application.
[0100] FIG. 11 is a block diagram of an electronic device within a network environment according to various embodiments.
[0101] Referring to FIG. 11, in a network environment (1100), an electronic device (1101) may communicate with an electronic device (1102) via a first network (1198) (e.g., a short-range wireless communication network), or may communicate with at least one of an electronic device (1104) or a server (1108) via a second network (1199) (e.g., a long-range wireless communication network). In one embodiment, the electronic device (1101) may communicate with the electronic device (1104) via the server (1108). According to one embodiment, the electronic device (1101) may include a processor (1120), a memory (1130), an input module (1150), an audio output module (1155), a display module (1160), an audio module (1170), a sensor module (1176), an interface (1177), a connection terminal (1178), a haptic module (1179), a camera module (1180), a power management module (1188), a battery (1189), a communication module (1190), a subscriber identification module (1196), or an antenna module (1197). In some embodiments, the electronic device (1101) may omit at least one of these components (e.g., the connection terminal (1178)), or may have one or more other components added. In some embodiments, some of these components (e.g., sensor module (1176), camera module (1180), or antenna module (1197)) may be integrated into a single component (e.g., display module (1160)).
[0102] The processor (1120) may, for example, execute software (e.g., a program (1140)) to control at least one other component (e.g., a hardware or software component) of the electronic device (1101) connected to the processor (1120) and perform various data processing or operations. According to one embodiment, as at least a part of the data processing or operations, the processor (1120) may store commands or data received from other components (e.g., a sensor module (1176) or a communication module (1190)) in a volatile memory (1132), process the commands or data stored in the volatile memory (1132), and store result data in a non-volatile memory (1134). According to one embodiment, the processor (1120) may include a main processor (1121) (e.g., a central processing unit or an application processor) or an auxiliary processor (1123) (e.g., a graphics processing unit, a neural processing unit (NPU), an image signal processor, a sensor hub processor, or a communication processor) that can operate independently or together with the main processor (1121). For example, when the electronic device (1101) includes the main processor (1121) and the auxiliary processor (1123), the auxiliary processor (1123) may be configured to use less power than the main processor (1121) or to be specialized for a given function. The auxiliary processor (1123) may be implemented separately from the main processor (1121) or as a part thereof.
[0103] The auxiliary processor (1123) may control at least a portion of functions or states associated with at least one component (e.g., a display module (1160), a sensor module (1176), or a communication module (1190)) of the electronic device (1101), for example, on behalf of the main processor (1121) while the main processor (1121) is in an inactive (e.g., sleep) state, or together with the main processor (1121) while the main processor (1121) is in an active (e.g., application execution) state. In one embodiment, the auxiliary processor (1123) (e.g., an image signal processor or a communication processor) may be implemented as a part of another functionally related component (e.g., a camera module (1180) or a communication module (1190)). In one embodiment, the auxiliary processor (1123) (e.g., a neural network processing unit) may include a hardware structure specialized for processing artificial intelligence models. The artificial intelligence models may be generated through machine learning. This learning can be performed, for example, on the electronic device (1101) itself where the artificial intelligence model is executed, or can be performed through a separate server (e.g., server (1108)). The learning algorithm can include, for example, supervised learning, unsupervised learning, semi-supervised learning, or reinforcement learning, but is not limited to the examples described above. The artificial intelligence model can include multiple artificial neural network layers.The artificial neural network may be one of a deep neural network (DNN), a convolutional neural network (CNN), a recurrent neural network (RNN), a restricted Boltzmann machine (RBM), a deep belief network (DBN), a bidirectional recurrent deep neural network (BRDNN), a deep Q-network, or a combination of two or more of the above, but is not limited to the examples described above. In addition to, or alternatively to, a hardware structure, an artificial intelligence model may include a software structure.
[0104] The memory (1130) can store various data used by at least one component (e.g., the processor (1120) or the sensor module (1176)) of the electronic device (1101). The data can include, for example, software (e.g., the program (1140)) and input data or output data for commands related thereto. The memory (1130) can include a volatile memory (1132) or a non-volatile memory (1134).
[0105] The program (1140) may be stored as software in memory (1130) and may include, for example, an operating system (1142), middleware (1144), or an application (1146).
[0106] The input module (1150) can receive commands or data to be used in a component of the electronic device (1101) (e.g., a processor (1120)) from an external source (e.g., a user) of the electronic device (1101). The input module (1150) can include, for example, a microphone, a mouse, a keyboard, a key (e.g., a button), or a digital pen (e.g., a stylus pen).
[0107] The audio output module (1155) can output audio signals to the outside of the electronic device (1101). The audio output module (1155) can include, for example, a speaker or a receiver. The speaker can be used for general purposes, such as multimedia playback or recording playback. The receiver can be used to receive incoming calls. In one embodiment, the receiver can be implemented separately from the speaker or as part of the speaker.
[0108] The display module (1160) can visually provide information to an external party (e.g., a user) of the electronic device (1101). The display module (1160) may include, for example, a display, a holographic device, or a projector and a control circuit for controlling the device. In one embodiment, the display module (1160) may include a touch sensor configured to detect a touch, or a pressure sensor configured to measure the intensity of a force generated by the touch.
[0109] The audio module (1170) can convert sound into an electrical signal, or vice versa, convert an electrical signal into sound. According to one embodiment, the audio module (1170) can acquire sound through the input module (1150), output sound through the sound output module (1155), or an external electronic device (e.g., electronic device (1102)) (e.g., speaker or headphone) directly or wirelessly connected to the electronic device (1101).
[0110] The sensor module (1176) can detect the operating status (e.g., power or temperature) of the electronic device (1101) or the external environmental status (e.g., user status) and generate an electrical signal or data value corresponding to the detected status. According to one embodiment, the sensor module (1176) can include, for example, a gesture sensor, a gyro sensor, a barometric pressure sensor, a magnetic sensor, an acceleration sensor, a grip sensor, a proximity sensor, a color sensor, an IR (infrared) sensor, a biometric sensor, a temperature sensor, a humidity sensor, or an illuminance sensor.
[0111] The interface (1177) may support one or more designated protocols that may be used to directly or wirelessly connect the electronic device (1101) with an external electronic device (e.g., the electronic device (1102)). In one embodiment, the interface (1177) may include, for example, a high definition multimedia interface (HDMI), a universal serial bus (USB) interface, an SD card interface, or an audio interface.
[0112] The connection terminal (1178) may include a connector through which the electronic device (1101) may be physically connected to an external electronic device (e.g., the electronic device (1102)). In one embodiment, the connection terminal (1178) may include, for example, an HDMI connector, a USB connector, an SD card connector, or an audio connector (e.g., a headphone connector).
[0113] The haptic module (1179) can convert electrical signals into mechanical stimuli (e.g., vibration or movement) or electrical stimuli that a user can perceive through tactile or kinesthetic sensations. In one embodiment, the haptic module (1179) may include, for example, a motor, a piezoelectric element, or an electrical stimulation device.
[0114] The camera module (1180) can capture still images and videos. In one embodiment, the camera module (1180) may include one or more lenses, image sensors, image signal processors, or flashes.
[0115] The power management module (1188) can manage the power supplied to the electronic device (1101). According to one embodiment, the power management module (1188) can be implemented as, for example, at least a part of a power management integrated circuit (PMIC).
[0116] A battery (1189) may power at least one component of the electronic device (1101). In one embodiment, the battery (1189) may include, for example, a non-rechargeable primary battery, a rechargeable secondary battery, or a fuel cell.
[0117] The communication module (1190) may support the establishment of a direct (e.g., wired) communication channel or a wireless communication channel between the electronic device (1101) and an external electronic device (e.g., electronic device (1102), electronic device (1104), or server (1108)), and the performance of communication through the established communication channel. The communication module (1190) may operate independently from the processor (1120) (e.g., application processor) and may include one or more communication processors that support direct (e.g., wired) communication or wireless communication. According to one embodiment, the communication module (1190) may include a wireless communication module (1192) (e.g., a cellular communication module, a short-range wireless communication module, or a global navigation satellite system (GNSS) communication module) or a wired communication module (1194) (e.g., a local area network (LAN) communication module, or a power line communication module). Any of these communication modules may communicate with an external electronic device (1104) via a first network (1198) (e.g., a short-range communication network such as Bluetooth, Wi-Fi (wireless fidelity) direct, or IrDA (infrared data association)) or a second network (1199) (e.g., a long-range communication network such as a legacy cellular network, a 5G network, a next-generation communication network, the Internet, or a computer network (e.g., a LAN or WAN)). These various types of communication modules may be integrated into a single component (e.g., a single chip) or implemented as multiple separate components (e.g., multiple chips). The wireless communication module (1192) may use subscriber information (e.g., an international mobile subscriber identity (IMSI)) stored in the subscriber identification module (1196) to verify or authenticate the electronic device (1101) within a communication network such as the first network (1198) or the second network (1199).
[0118] The wireless communication module (1192) can support 5G networks and next-generation communication technologies following the 4G network, such as NR access technology (new radio access technology). The NR access technology can support high-speed transmission of high-capacity data (eMBB (enhanced mobile broadband)), minimization of terminal power and connection of multiple terminals (mMTC (massive machine type communications)), or high reliability and low latency (URLLC (ultra-reliable and low-latency communications)). The wireless communication module (1192) can support, for example, a high-frequency band (e.g., mmWave band) to achieve a high data transmission rate. The wireless communication module (1192) may support various technologies for securing performance in a high-frequency band, such as beamforming, massive multiple-input and multiple-output (MIMO), full dimensional MIMO (FD-MIMO), array antenna, analog beam-forming, or large scale antenna. The wireless communication module (1192) may support various requirements specified in the electronic device (1101), an external electronic device (e.g., the electronic device (1104)), or a network system (e.g., the second network (1199)). According to one embodiment, the wireless communication module (1192) may support a peak data rate (e.g., 20 Gbps or more) for eMBB implementation, a loss coverage (e.g., 164 dB or less) for mMTC implementation, or a U-plane latency (e.g., 0.5 ms or less for downlink (DL) and uplink (UL), or 1 ms or less for round trip) for URLLC implementation.
[0119] The antenna module (1197) can transmit or receive signals or power to or from an external device (e.g., an external electronic device). In one embodiment, the antenna module (1197) may include an antenna including a radiator formed of a conductor or a conductive pattern formed on a substrate (e.g., a PCB). In one embodiment, the antenna module (1197) may include a plurality of antennas (e.g., an array antenna). In this case, at least one antenna suitable for a communication method used in a communication network, such as the first network (1198) or the second network (1199), may be selected from the plurality of antennas by, for example, the communication module (1190). A signal or power may be transmitted or received between the communication module (1190) and an external electronic device via the selected at least one antenna. In some embodiments, in addition to the radiator, another component (e.g., a radio frequency integrated circuit (RFIC)) may be additionally formed as a part of the antenna module (1197).
[0120] According to various embodiments, the antenna module (1197) may form a mmWave antenna module. In one embodiment, the mmWave antenna module may include a printed circuit board, an RFIC disposed on or adjacent a first side (e.g., a bottom side) of the printed circuit board and capable of supporting a designated high frequency band (e.g., a mmWave band), and a plurality of antennas (e.g., an array antenna) disposed on or adjacent a second side (e.g., a top side or a side side) of the printed circuit board and capable of transmitting or receiving signals in the designated high frequency band.
[0121] At least some of the above components can be interconnected and exchange signals (e.g., commands or data) with each other via a communication method between peripheral devices (e.g., a bus, GPIO (general purpose input and output), SPI (serial peripheral interface), or MIPI (mobile industry processor interface)).
[0122] According to one embodiment, commands or data may be transmitted or received between the electronic device (1101) and an external electronic device (1104) via a server (1108) connected to a second network (1199). Each of the external electronic devices (1102 or 1104) may be the same or a different type of device as the electronic device (1101). According to one embodiment, all or part of the operations executed in the electronic device (1101) may be executed in one or more of the external electronic devices (1102, 1104, or 1108). For example, when the electronic device (1101) is to perform a certain function or service automatically or in response to a request from a user or another device, the electronic device (1101) may, instead of or in addition to executing the function or service itself, request one or more external electronic devices to perform the function or at least a part of the service. One or more external electronic devices that receive the request may execute at least a portion of the requested function or service, or an additional function or service related to the request, and transmit the result of the execution to the electronic device (1101). The electronic device (1101) may process the result as is or additionally and provide it as at least a portion of a response to the request. For this purpose, cloud computing, distributed computing, mobile edge computing (MEC), or client-server computing technology may be used, for example. The electronic device (1101) may provide an ultra-low latency service by using distributed computing or mobile edge computing, for example. In another embodiment, the external electronic device (1104) may include an Internet of Things (IoT) device. The server (1108) may be an intelligent server utilizing machine learning and / or a neural network.According to one embodiment, an external electronic device (1104) or server (1108) may be included within the second network (1199). The electronic device (1101) may be applied to intelligent services (e.g., smart homes, smart cities, smart cars, or healthcare) based on 5G communication technology and IoT-related technology.
[0123] Electronic devices according to the various embodiments disclosed in this document may take various forms. Electronic devices may include, for example, portable communication devices (e.g., smartphones), computer devices, portable multimedia devices, portable medical devices, cameras, wearable devices, or home appliances. Electronic devices according to the embodiments of this document are not limited to the aforementioned devices.
[0124] The various embodiments of this document and the terminology used therein are not intended to limit the technical features described in this document to specific embodiments, but should be understood to include various modifications, equivalents, or substitutes of the embodiments. In connection with the description of the drawings, similar reference numerals may be used for similar or related components. The singular form of a noun corresponding to an item may include one or more of the items, unless the context clearly indicates otherwise. In this document, each of the phrases "A or B", "at least one of A and B", "at least one of A or B", "A, B, or C", "at least one of A, B, and C", and "at least one of A, B, or C" can include any one of the items listed together in the corresponding phrase among those phrases, or all possible combinations thereof. Terms such as "first," "second," or "first" or "second" may be used merely to distinguish one component from another, and do not limit the components in any other respect (e.g., importance or order). When a component (e.g., a first component) is referred to as "coupled" or "connected" to another component (e.g., a second component), with or without the terms "functionally" or "communicatively," it means that the component can be connected to the other component directly (e.g., wired), wirelessly, or through a third component.
[0125] The term "module" used in various embodiments of this document may include a unit implemented in hardware, software, or firmware, and may be used interchangeably with terms such as logic, logic block, component, or circuit. A module may be an integral component, or a minimum unit or part of such a component that performs one or more functions. For example, according to one embodiment, a module may be implemented in the form of an application-specific integrated circuit (ASIC).
[0126] Various embodiments of the present document may be implemented as software (e.g., a program (1140)) including one or more instructions stored in a storage medium (e.g., an internal memory (1136) or an external memory (1138)) readable by a machine (e.g., an electronic device (1101)). For example, a processor (e.g., a processor (1120)) of the machine (e.g., an electronic device (1101)) may call at least one instruction among the one or more instructions stored from the storage medium and execute it. This enables the machine to operate to perform at least one function according to the at least one called instruction. The one or more instructions may include code generated by a compiler or code executable by an interpreter. The machine-readable storage medium may be provided in the form of a non-transitory storage medium. Here, 'non-transitory' simply means that the storage medium is a tangible device and does not contain signals (e.g. electromagnetic waves), and the term does not distinguish between cases where data is stored semi-permanently or temporarily on the storage medium.
[0127] According to one embodiment, the method according to various embodiments disclosed in this document may be provided as included in a computer program product. The computer program product may be traded as a commodity between a seller and a buyer. The computer program product may be distributed in the form of a machine-readable storage medium (e.g., compact disc read-only memory (CD-ROM)), or may be distributed online (e.g., downloaded or uploaded) via an application store (e.g., Play Store™) or directly between two user devices (e.g., smart phones). In the case of online distribution, at least a portion of the computer program product may be temporarily stored or temporarily generated in a machine-readable storage medium, such as the memory of a manufacturer's server, an application store's server, or an intermediary server.
[0128] According to various embodiments, each component (e.g., a module or a program) of the above-described components may include one or more entities, and some of the entities may be separated and placed in other components. According to various embodiments, one or more components or operations of the aforementioned components may be omitted, or one or more other components or operations may be added. Alternatively or additionally, a plurality of components (e.g., a module or a program) may be integrated into a single component. In such a case, the integrated component may perform one or more functions of each of the plurality of components identically or similarly to those performed by the corresponding component among the plurality of components prior to the integration. According to various embodiments, the operations performed by a module, program, or other component may be executed sequentially, in parallel, iteratively, or heuristically, or one or more of the operations may be executed in a different order, omitted, or one or more other operations may be added.
[0129] Figure 12 is a schematic diagram of an exemplary AI system.
[0130] Referring to FIG. 12, the AI system (1200) may include an input / output interface (1210), an AI framework (1220), a generative AI model (1230), and / or a knowledge repository (1290).
[0131] The input / output interface (1210) can receive input. The input can include user input and / or data acquired or generated by an electronic device (e.g., the electronic device (200) or the electronic device (1101) described above). The data can include images, videos, and / or sensor data generated by at least one processor (e.g., at least one processor (210) or processor (1120)) of the electronic device (e.g., illuminance data around the electronic device acquired from a sensor or sensor hub (e.g., a coprocessor (1123), posture data (or orientation data) of the electronic device, temperature inside the electronic device (e.g., temperature of the display (230) or temperature of the at least one processor (210)), size information of a display area of the display (230), and / or images acquired through an image sensor (e.g., included in a camera module (1180)) of the electronic device). The user input may include natural language, touch data obtained through touch circuitry included within the display panel (e.g., used to identify input from a finger and / or a stylus), images displayed (and / or to be displayed) on the display panel, and / or video. As a non-limiting example, the user input may be received by the input / output interface (1210) together with context information. The context information may be described as additional information obtained in relation to the user input. The context information may relate to a state when the user input is received (e.g., including a state of the electronic device and / or a state surrounding the electronic device (e.g., a user state)). For example, the context information may include information about one or more software applications running within the electronic device when the user input is received.For example, the contextual information may include information about the location of the electronic device (or the location of the user of the electronic device) at the time the user input is received. For example, the user input may be integrated with the contextual information. For example, the user input integrated with the contextual information may be received by the input / output interface (1210).
[0132] The input / output interface (1210) can transmit (or provide) output. The output may include a result (or result information) generated or acquired by the AI system (1200) based at least in part on the input. The format of the output may vary. For example, the output may include natural language. For example, the output may include content (e.g., including media content and / or multimedia content). For example, the output may include an action related to a user of the electronic device. For example, the output may have a format according to a user setting of the electronic device.
[0133] The input / output interface (1210) can be described as a user query / response interface (1210).
[0134] The AI framework (1220) can be used to obtain information (or data) about the input from the input / output interface (1210) and control one or more components related to the AI system (1200) using the obtained information.
[0135] For example, the prompt design component (1221) within the AI framework (1220) can use the acquired information to generate or obtain a prompt for a generative AI model (1230) (e.g., including a large language model (LLM) or a large multimodal model (LMM)). For example, the prompt design component (1221) can be described as an AI component that utilizes a learning algorithm and / or a neural network to provide enhanced prompts over time. For example, the prompt design component (1221) can use the acquired information to access a knowledge component (e.g., a knowledge repository (1290)) that includes user preference data, a prompt library, and / or prompt examples to generate or obtain a prompt. The generated prompt can be provided to the generative AI model (1230) (e.g., including an LLM or LMM).
[0136] For example, the API / plugin management component (1222) within the AI framework (1220) may be utilized to support communication for additional information requested (or induced) in connection with the prompt provided (or to be provided) to the generative AI model (1230). For example, the API / plugin management component (1222) may be utilized to create or establish channels for communication with various data sources (e.g., knowledge repositories (1290)). For example, the API / plugin management component (1222) may support access to at least some of the data sources. For example, the API / plugin management component (1222) may be utilized to request another component (e.g., an application / service component (1280)) to perform feedback (or response) according to the prompt. As a non-limiting example, information obtained (or generated) through the API / plugin management component (1222) may be provided to the prompt design component (1221) for generating a prompt. As a non-limiting example, information obtained (or generated) through the API / plugin management component (1222) may be provided to the generative AI model (1230).
[0137] For example, the improvement component (1223) within the AI framework (1220) can at least partially tune (or adjust) (or change) the result (e.g., content) obtained (or output) from the generative AI model (1230). For example, the improvement component (1223) can determine or verify whether the content obtained from the generative AI model (1230) is related to the input. For example, the improvement component (1223) can determine or verify whether the content obtained from the generative AI model (1230) contains biased content. For example, the improvement component (1223) can determine or verify whether the content obtained from the generative AI model (1230) contains harmful content. For example, the improvement component (1223) can support or assist in performing additional processing to improve the content obtained from the generative AI model (1230). For example, the improvement component (1223) may support providing hints to the user to improve the content.
[0138] A generative AI model (1230) can be described as an artificial intelligence neural network that generates feedback in response to a prompt. For example, the feedback may include additional data and / or information related to the prompt, but relative to the prompt. For example, the feedback may include new content related to the prompt. For example, the generative AI model (1230) may include a model that generates images and / or a model that generates language. For example, the model that generates images may include a generative adversarial network (GAN) and / or a variational autoencoder (VAE). For example, the model that generates images may include a diffusion-based generative model (e.g., a transformer VAE). For example, the model that generates language may include CHAT-GPT 3 and / or CHAT-GPT 4. For example, a generative AI model (1230) may include an LMM that generates the feedback by recognizing text, images, and / or speech.
[0139] As a non-limiting example, the AI framework (1220) and / or the generative AI model (1230) may be included within an AI module (e.g., including a processing circuit) within the electronic device (200). For example, the AI module may be operatively coupled with at least one processor (e.g., at least one processor (210) or processor (1120)) of the electronic device (200). For example, the AI module may be operatively coupled with a display driving circuit of the electronic device. For example, the AI module may be operatively coupled with a sensor hub of the electronic device for one or more sensors within the electronic device.
[0140] The technical problems to be achieved in the present disclosure are not limited to the technical problems mentioned above, and other technical problems not mentioned will be clearly understood by a person having ordinary knowledge in the technical field to which the present disclosure pertains.
[0141] As described above, the electronic device (e.g., the electronic device (200) of FIG. 2) may include a memory (e.g., the memory (220) of FIG. 2) that stores instructions and includes one or more storage media, a display (e.g., the display (230) of FIG. 2), and at least one processor (e.g., at least one processor (210) of FIG. 2) that includes a processing circuit. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display a screen (e.g., the screen (405) of FIG. 4A) for editing a home screen (e.g., the home screen (705) of FIG. 7) through the display. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to receive a user input (e.g., input (421) of FIG. 4A, input (435) of FIG. 4B, and / or input (450) of FIG. 4C) that causes a frame object (e.g., frame object (415) of FIG. 4A) to surround one or more application objects included in the home screen (e.g., one or more application objects (420) of FIG. 4A) within the screen while displaying the screen. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to generate a representation associated with the one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420).The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the expression positioned on the frame object.
[0142] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to provide a trained model with a prompt for generating the representation of the first information, the second information, and the one or more applications based on the user input. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to generate the representation from the trained model using the first information and the second information in response to the prompt.
[0143] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to further provide fourth information about the frame object (e.g., fourth information (605) of FIG. 6 ) to the trained model based on the user input. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to further generate the representation from the trained model using the third information.
[0144] For example, the third information may include information about the artistic style of the frame object, and the expression may have the artistic style of the frame object.
[0145] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to further provide third information (e.g., fifth information (610) of FIG. 6) about at least a portion of the wallpaper screen associated with the frame object to the trained model based on the user input, and to further generate the expression from the trained model using the third information.
[0146] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to provide third information about the one or more applications (e.g., third information (505) of FIG. 5) and another prompt for generating the first information and the second information to another trained model (e.g., first trained model (500) of FIG. 5). The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to obtain the first information and the second information from the another trained model in response to the another prompt. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to provide the first information, the second information, and the prompt to the trained model.
[0147] For example, the one or more application objects may include icons for the one or more applications, widgets for the one or more applications, and / or picture in a picture (PIP) windows for the one or more applications.
[0148] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to identify a change in the state of at least one of the one or more applications. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to, based on the identification, display, through the display, another representation of the one or more applications (e.g., another representation (910) of the one or more applications of FIG. 9) in which at least a portion of the representation has been changed in response to the change in the state of the at least one application, in place of the representation.
[0149] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to obtain third information (e.g., sixth information (900) of FIG. 9) about a changed state of the at least one application based on the identification. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to provide the trained model with the third information and another prompt for generating the other representation (e.g., third prompt (905) of FIG. 9). The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to obtain, from the trained model, the other representation generated using the fourth information in response to the other prompt. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display, via the display, the other representation as a replacement for the representation.
[0150] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to identify the change in the state of the at least one application by receiving a notification of the at least one application. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to, based on the identification, refrain from displaying an indicator (e.g., indicator (1005) of FIG. 10A) for notifying the notification of the at least one application through the display, and to display the other representation.
[0151] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to identify a change in the state of at least one of the one or more applications. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to, based on the identification, display an animation representing the expression performing an action corresponding to the change in the state of the at least one application through the display.
[0152] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to identify a change in state of at least one application of the one or more applications. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display, through the display, the representation moving on the frame object in response to the change in state of the at least one application based on the identification.
[0153] For example, the user input may include an input for drawing a curve surrounding the one or more application objects, an input for selecting the one or more application objects, and / or an input for dragging the frame object so that the frame object surrounds the one or more application objects.
[0154] As described above, the method may be performed in an electronic device including a display. The method may include an operation of displaying a screen for editing a home screen through the display. The method may include an operation of receiving, while displaying the screen, a user input causing a frame object to surround one or more application objects included in the home screen within the screen. The method may include an operation of generating a representation associated with the one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The method may include an operation of displaying the frame object within the home screen through the display, thereby visually highlighting the one or more application objects relative to one or more other application objects and displaying the representation positioned on the frame object.
[0155] For example, the method may include providing a trained model with a prompt for generating a representation of the first information, the second information, and the one or more applications based on the user input. The method may include generating the representation in response to the prompt from the trained model using the first information and the second information.
[0156] For example, the method may include an operation of providing further fourth information about the frame object to the trained model based on the user input. The method may include an operation of generating the expression from the trained model using further third information.
[0157] For example, the third information may include information about the artistic style of the frame object, and the expression may have the artistic style of the frame object.
[0158] For example, the method may further include providing third information about at least a portion of a wallpaper screen associated with the frame object to the trained model based on the user input, and generating the expression from the trained model using the third information.
[0159] For example, the method may include providing another trained model with third information about the one or more applications and another prompt for generating the first information and the second information. The method may include obtaining the first information and the second information from the other trained model in response to the other prompt. The method may include providing the first information, the second information, and the prompt to the trained model.
[0160] For example, the one or more application objects may include icons for the one or more applications, widgets for the one or more applications, and / or picture in a picture (PIP) windows for the one or more applications.
[0161] For example, the method may include an operation of identifying a change in the state of at least one of the one or more applications. Based on the identification, the method may include an operation of displaying, through the display, a different representation of the one or more applications, wherein at least a portion of the representation has been changed in response to the change in the state of the one or more applications, in place of the representation.
[0162] For example, the method may include an operation of obtaining third information about a changed state of the at least one application based on the identification. The method may include an operation of providing the trained model with the third information and another prompt for generating the other representation. The method may include an operation of obtaining, from the trained model, the other representation generated using the third information in response to the other prompt. The method may include an operation of displaying the other representation as a replacement for the other representation through the display.
[0163] For example, the method may include an operation of identifying a change in the status of the at least one application by receiving a notification of the at least one application. Based on the identification, the method may include an operation of refraining from displaying an indicator for notifying the notification of the at least one application through the display, and displaying another representation.
[0164] For example, the method may include an operation of identifying a change in the state of at least one of the one or more applications. Based on the identification, the method may include an operation of displaying an animation representing the expression performing an action corresponding to the change in the state of the at least one application through the display.
[0165] For example, the method may include an operation of identifying a change in the state of at least one application among the one or more applications. Based on the identification, the method may include an operation of displaying, through the display, the representation moving on the frame object according to the change in the state of the at least one application.
[0166] For example, the user input may include an input for drawing a curve surrounding the one or more application objects, an input for selecting the one or more application objects, and / or an input for dragging the frame object so that the frame object surrounds the one or more application objects.
[0167] As described above, the non-transitory computer-readable storage medium may store one or more programs. The one or more programs may include instructions that, when executed by an electronic device including a display, cause the electronic device to display a screen for editing a home screen through the display. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to receive a user input that causes a frame object to surround one or more application objects included in the home screen within the screen while displaying the screen. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to generate a representation associated with the one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the expression positioned on the frame object.
[0168] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to provide a trained model with a prompt for generating the representation of the first information, the second information, and the one or more applications based on the user input. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to generate the representation from the trained model using the first information and the second information in response to the prompt.
[0169] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to further provide third information about the frame object to the trained model based on the user input, and to generate the representation from the trained model using the third information.
[0170] For example, the third information may include information about the artistic style of the frame object, and the expression may have the artistic style of the frame object.
[0171] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to further provide third information about at least a portion of the wallpaper screen associated with the frame object to the trained model based on the user input, and to generate the representation from the trained model using the third information.
[0172] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to provide another trained model with third information about the one or more applications and another prompt for generating the first information and the second information. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to obtain, from the another trained model, the first information and the second information in response to the another prompt. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to provide the first information, the second information, and the prompt to the trained model.
[0173] For example, the one or more application objects may include icons for the one or more applications, widgets for the one or more applications, and / or picture in a picture (PIP) windows for the one or more applications.
[0174] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to identify a change in the state of at least one of the one or more applications. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to, based on the identification, display, through the display, a different representation of the one or more applications, wherein at least a portion of the representation has been changed in response to the change in the state of the at least one application, in place of the representation.
[0175] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to obtain third information about a changed state of the at least one application based on the identification. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to provide the trained model with the third information and another prompt for generating the other representation. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to obtain, from the trained model, the other representation generated using the third information in response to the other prompt. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, the other representation as a replacement for the representation.
[0176] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to identify the change in the state of the at least one application by receiving a notification of the at least one application. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to, based on the identification, refrain from displaying an indicator for notifying the notification of the at least one application through the display, and to display the other representation.
[0177] The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to identify a change in the state of at least one of the one or more applications. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, an animation representing the expression performing an action corresponding to the change in the state of the at least one application based on the identification.
[0178] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to identify a change in the state of at least one of the one or more applications. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, the representation that moves on the frame object in response to the change in the state of the at least one application based on the identification.
[0179] For example, the user input may include an input for drawing a curve surrounding the one or more application objects, an input for selecting the one or more application objects, and / or an input for dragging the frame object so that the frame object surrounds the one or more application objects.
[0180] As described above, the electronic device may include at least one processor including a memory storing instructions and including one or more storage media, a display, and a processing circuit. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display a screen for editing a home screen through the display. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to receive a user input that causes a frame object to surround one or more application objects included in the home screen within the screen while displaying the screen. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to generate a representation associated with the one or more applications based on first information (515) about a category of the one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the representation positioned on the frame object. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to identify a change in a state of at least one application of the one or more applications.The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to, based on the identification, display, through the display, a different representation of the one or more applications, at least a portion of which has been changed in response to the change in the state of the at least one application, in place of the representation.
[0181] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to provide a trained model with a prompt for generating the representation of the first information, the second information, and the one or more applications based on the user input. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to generate the representation from the trained model using the first information and the second information in response to the prompt.
[0182] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to obtain third information about a changed state of the at least one application based on the identification. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to provide the third information to the trained model. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to obtain the other representation generated using the third information from the trained model. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display the other representation as a replacement for the representation through the display.
[0183] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to identify the change in the state of the at least one application by receiving a notification of the at least one application. The instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to, based on the identification, refrain from displaying an indicator for notifying the notification of the at least one application through the display, and to display the other representation.
[0184] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to further provide third information about the frame object to the trained model based on the user input, and to generate the representation from the trained model using the third information.
[0185] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to further provide third information about at least a portion of the wallpaper screen associated with the frame object to the trained model based on the user input, and to further generate the representation from the trained model using the third information.
[0186] For example, the one or more application objects may include icons for the one or more applications, widgets for the one or more applications, and / or picture in a picture (PIP) windows for the one or more applications.
[0187] For example, the other expression may include an animation representing the expression performing an action corresponding to the change in the state of the at least one application.
[0188] For example, the instructions, when individually or collectively executed by the at least one processor, may cause the electronic device to display, via the display, the different representation to notify the user of the change in the state of the at least one application.
[0189] As described above, the method may be performed in an electronic device including a display. The method may include an operation of displaying a screen for editing a home screen through the display. The method may include an operation of receiving, while displaying the screen, a user input causing a frame object to surround one or more application objects included in the home screen within the screen. The method may include an operation of generating a representation associated with the one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The method may include an operation of displaying the frame object within the home screen through the display, thereby visually highlighting the one or more application objects relative to one or more other application objects and displaying the representation positioned on the frame object. The method may include an operation of identifying a change in the status of at least one of the one or more applications. The method may include, based on the identification, an operation of displaying, through the display, another representation of the one or more applications, in which at least a portion of the representation has been changed according to the change in the state of the at least one application, as a replacement for the representation.
[0190] For example, the method may include providing a trained model with a prompt for generating a representation of the first information, the second information, and the one or more applications based on the user input. The method may include generating the representation in response to the prompt from the trained model using the first information and the second information.
[0191] For example, the method may include an operation of obtaining third information about a changed state of the at least one application based on the identification. The method may include an operation of providing the third information to the trained model. The method may include an operation of obtaining, from the trained model, the other expression generated using the third information. The method may include an operation of displaying the other expression as a replacement for the other expression through the display.
[0192] For example, the method may include an operation of identifying a change in the status of the at least one application by receiving a notification of the at least one application. Based on the identification, the method may include an operation of refraining from displaying an indicator for notifying the notification of the at least one application through the display, and displaying another representation.
[0193] For example, the method may include providing further third information about the frame object to the trained model based on the user input, and generating the expression from the trained model using the further third information.
[0194] For example, the method may further include providing, to the trained model, third information about at least a portion of the wallpaper screen associated with the frame object based on the user input, and generating, from the trained model, the expression using the third information.
[0195] For example, the one or more application objects may include icons for the one or more applications, widgets for the one or more applications, and / or picture in a picture (PIP) windows for the one or more applications.
[0196] For example, the other expression may include an animation representing the expression performing an action corresponding to the change in the state of the at least one application.
[0197] For example, the method may include an action of displaying, via the display, the other representation to notify the user of the change in the status of the at least one application.
[0198] As described above, the non-transitory computer-readable storage medium may store one or more programs. The one or more programs may include instructions that, when executed by an electronic device including a display, cause the electronic device to display a screen for editing a home screen through the display. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to receive a user input that causes a frame object to surround one or more application objects included in the home screen within the screen while displaying the screen. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to generate a representation associated with the one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420). The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, the one or more application objects visually highlighted relative to one or more other application objects by displaying the frame object within the home screen and the expression positioned on the frame object. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to identify a change in the state of at least one of the one or more applications.The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to, based on the identification, display, through the display, a different representation of the one or more applications, at least a portion of which has been changed in response to the change in the state of the at least one application, in place of the representation.
[0199] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to provide a trained model with a prompt for generating the representation of the first information, the second information, and the one or more applications based on the user input. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to generate the representation from the trained model using the first information and the second information in response to the prompt.
[0200] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to obtain third information about a changed state of the at least one application based on the identification. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to provide the third information to the trained model. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to obtain the other representation generated using the third information from the trained model. The one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display the other representation as a replacement for the representation through the display.
[0201] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to identify the change in the state of the at least one application by receiving a notification of the at least one application. The one or more programs may include actions that, when executed by the electronic device, cause the electronic device to: based on the identification, refrain from displaying an indicator for notifying the notification of the at least one application through the display, and display the other representation.
[0202] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to further provide third information about the frame object to the trained model based on the user input, and to generate the representation from the trained model using the third information.
[0203] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to further provide third information about at least a portion of the wallpaper screen associated with the frame object to the trained model based on the user input, and to generate the representation from the trained model using the third information.
[0204] For example, the one or more application objects may include icons for the one or more applications, widgets for the one or more applications, and / or picture in a picture (PIP) windows for the one or more applications.
[0205] For example, the other expression may include an animation representing the expression performing an action corresponding to the change in the state of the at least one application.
[0206] For example, the one or more programs may include instructions that, when executed by the electronic device, cause the electronic device to display, through the display, the different representation to notify the user of the change in the status of the at least one application.
[0207] The effects that can be obtained from the present disclosure are not limited to the effects mentioned above, and other effects that are not mentioned will be clearly understood by a person having ordinary skill in the art to which the present disclosure pertains.
Claims
1. In an electronic device (200), A memory (220) storing instructions and including one or more storage media; display (230); and At least one processor (210) comprising a processing circuit, The above instructions, when executed individually or collectively by the at least one processor (210), A screen (405) for editing the home screen (705) is displayed through the display (230), While displaying the above screen (405), a user input (420, 435, 450) is received that causes a frame object (415) to surround one or more application objects (420) included in the home screen (705) within the above screen (405), Generating a representation related to one or more applications based on first information (515) about a category of one or more applications corresponding to the one or more application objects and second information (520) about the one or more application objects (420), and By displaying the frame object (415) within the home screen (705) through the display (230), one or more application objects (420) visually highlighted with respect to one or more other application objects and the expression (620) positioned on the frame object (415) are displayed. causing the above electronic device (200), Electronic device (200).
2. In claim 1, The above instructions, when executed individually or collectively by the at least one processor (210), Based on the user input, providing a trained model with a prompt to generate the representation of the first information, the second information, and the one or more applications, and From the trained model, generate the expression as a response to the prompt using the first information and the second information. causing the above electronic device (200), Electronic device (200).
3. In claim 2, The above instructions, when executed individually or collectively by the at least one processor (210), Based on the user input (420, 435, 450), the third information (605) about the frame object (415) is further provided to the trained model (600); and From the above trained model (600), to further generate the expression using the third information (605), causing the above electronic device (200), Electronic device (200).
4. In claim 3, The above third information (605) is, Contains information about the artistic style of the above frame object (415), The above expression (620) is, Having the above artistic style of the above frame object (415), Electronic device (200).
5. In claim 2, The above instructions, when executed individually or collectively by the at least one processor (210), Based on the user input (420, 435, 450), providing the trained model (600) with third information (610) about at least a portion of the wallpaper screen associated with the frame object (415); and From the above trained model (600), to further generate the expression using the third information (610), causing the above electronic device (200), Electronic device (200).
6. In claim 2, The above instructions, when executed individually or collectively by the at least one processor (210), Providing another trained model (500) with another prompt (510) for generating third information (505) and the first information (515) and the second information (520) for one or more of the applications, From the other trained model (500), as a response to the other prompt (510), the first information (515) and the second information (520) are obtained, and To provide the first information (515), the second information (520), and the prompt (615) to the trained model, causing the above electronic device (200), Electronic device (200).
7. In claim 1, One or more of the above application objects (420) including icons for said one or more applications, widgets for said one or more applications, and / or PIP (picture in a picture) windows for said one or more applications. Electronic device (200).
8. In claim 2, The above instructions, when executed individually or collectively by the at least one processor (210), Identifying a change in the state of at least one application among the one or more applications, and Based on the above identification, to display, through the display (230), another representation (910) of the one or more applications, in which at least a part of the representation has been changed according to the change in the state of the at least one application, in place of the representation (620). causing the above electronic device (200), Electronic device (200).
9. In claim 8, The above instructions, when executed individually or collectively by the at least one processor (210), Based on the above identification, third information (900) about the changed status of at least one application is obtained, Providing the trained model (600) with the third information (900) and other prompts (905) for generating the other expression, From the above trained model (600), in response to the above other prompt (905), obtain the other expression (910) generated using the third information (900), and Through the above display (230), the other expression (910) is displayed as a replacement for the above expression (620). causing the above electronic device (200), Electronic device (200).
10. In claim 8, The above instructions, when executed individually or collectively by the at least one processor (210), By receiving a notification of at least one application, identifying the change in the status of the at least one application, Based on the above identification, to refrain from displaying the indicator (1005) for notifying the notification of the at least one application, and to display the other expression (910) through the display (230). causing the above electronic device (200), Electronic device (200).
11. In claim 1, The above instructions, when executed individually or collectively by the at least one processor (210), Identifying a change in the state of at least one application among the one or more applications, and Based on the above identification, display an animation representing the expression performing an action corresponding to the change in the state of the at least one application through the display (230). causing the above electronic device (200), Electronic device (200).
12. In claim 1, The above instructions, when executed individually or collectively by the at least one processor (210), Identifying a change in the state of at least one application among the one or more applications, and Based on the above identification, to display the expression moving on the frame object (415) according to the change in the state of the at least one application through the display (230). causing the above electronic device (200), Electronic device (200).
13. In claim 1, The above user input (420, 435, 450) is An input (435) for drawing a curve surrounding one or more application objects (420), an input (450) for selecting one or more application objects (420), and / or an input (421) for dragging the frame object (415) to surround one or more application objects (420). Electronic device (200).
14. In the electronic device (200), A memory (220) storing instructions and including one or more storage media; display (230); and At least one processor (210) comprising a processing circuit, The above instructions, when executed individually or collectively by the at least one processor (210), A screen (405) for editing the home screen (705) is displayed through the display (230), While displaying the above screen (405), a user input (420, 435, 450) is received that causes a frame object (415) to surround one or more application objects (420) included in the home screen (705) within the above screen (405), Generating a representation related to one or more applications based on first information about a category of one or more applications corresponding to the one or more application objects and second information about the one or more application objects, and By displaying the frame object (415) within the home screen (705) through the display (230), the one or more application objects (420) visually highlighted with respect to one or more other application objects and the expression (620) positioned on the frame object (415) are displayed, Identifying a change in the state of at least one application among the one or more applications, and Based on the above identification, to display, through the display (230), another representation (910) of the one or more applications in which at least a part of the representation (620) has been changed in accordance with the change in the state of the at least one application, in place of the representation (620). causing the above electronic device (200), Electronic device (200).
15. In claim 14, The above instructions, when executed individually or collectively by the at least one processor (210), Based on the user input, providing a trained model with a prompt to generate the representation of the first information, the second information, and the one or more applications, and From the trained model, generate the expression generated by the trained model as a response to the prompt using the first information and the second information. causing the above electronic device (200), Electronic device (200).
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