Notification display method, electronic device, chip system and readable storage medium
By displaying notifications in full screen in the low-power mode of electronic devices and supporting sliding operation switching notifications, the problem of low notification recognition when the device is far away from the user is solved, and fast switching of notifications and high recognition display is realized.
Patent Information
- Application Number
- PCT/CN2024/106898
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-10
- Filing Date
- 2024-07-23
- Publication Date
- 2025-05-22
AI Technical Summary
The prior art is difficult to reasonably display notifications in the low-power mode of electronic devices, especially when the device is far away from the user, the notifications are less recognizable.
When the electronic device is in the bracket state, enter low power mode and display notifications in full screen to improve the recognition of notifications. At the same time, by switching notifications through sliding operations, users can quickly view and switch multiple notifications.
Improves the recognition and switching speed of notifications, ensuring that users can clearly view notifications even when the device is far away, and quickly switch multiple notifications through swipe operations.
Smart Images

Figure CN2024106898_22052025_PF_FP_ABST
Abstract
Description
Notification display method, electronic device, chip system and readable storage medium
[0001] This application claims priority to the Chinese patent application filed with the State Intellectual Property Office on November 15, 2023, with application number 202311526812.5 and application name “Notification display method, electronic device and readable storage medium”, and claims priority to the Chinese patent application filed with the State Intellectual Property Office on January 10, 2024, with application number 202410040048.9 and application name “Notification display method, electronic device, chip system and readable storage medium”, the entire contents of which are incorporated by reference into this application. Technical Field
[0002] The present application relates to the field of terminal technology, and in particular to a notification display method, electronic device, chip system and readable storage medium. Background Art
[0003] With the rapid development of terminal technology, electronic devices such as mobile phones and tablets have gradually become an indispensable part of people's daily lives. When users use electronic devices, when new notification events occur on the electronic devices, the electronic devices need to properly display the notifications corresponding to the notification events.
[0004] Summary of the Invention
[0005] This application provides a notification display method, electronic device, chip system, and readable storage medium, which can solve the problem of properly displaying notifications. The technical solution is as follows:
[0006] In a first aspect, a notification display method is provided, which is applied to an electronic device, and the method includes:
[0007] The electronic device is in a first state, and the first state is a screen-on state or a screen-off state. When the electronic device meets the state switching condition, the electronic device switches from the first state to the second state, and displays the first interface in the second state. In the second state, the electronic device is in low power consumption mode and displayed in landscape mode. The state switching condition includes that the electronic device is in a stand state. After the electronic device obtains the first notification, it displays the first notification on the first interface. When the electronic device does not receive a user input operation within a first time period, it displays the second interface in the second state, and the second interface includes the first notification icon of the first notification and does not include the first notification. After the electronic device obtains the second notification, it displays the second notification on the second interface. In response to the first sliding operation triggered on the second interface, the electronic device displays the third interface in the second state, and the third interface includes the first notification and the first notification icon.
[0008] In this way, after receiving the first notification, the first notification is displayed in the first interface in the second state. If the user does not operate, the first notification is collapsed into the first notification icon. After receiving the second notification, the second notification continues to be displayed. After receiving the first sliding operation from the user, the first notification is switched to the first notification in response to the first sliding operation. In this way, the user can trigger the electronic device to switch the display of notifications through sliding operations, which improves the speed of notification switching and ensures the rationality of notification display.
[0009] As an example of the present application, when the second notification is an ongoing notification, the third interface also includes a second notification icon for the second notification, the first notification icon and the second notification icon are displayed in an expanded state, the first notification icon is in a selected state, and the second notification icon is in an unselected state; wherein, the notification event corresponding to the ongoing notification is a persistent event.
[0010] In this way, by displaying the second notification icon of the second notification on the third interface, the user can know which notifications can be switched for display, thereby improving the user experience.
[0011] As an example of the present application, in response to a first sliding operation triggered on the second interface, after the electronic device displays the third interface in the second state, it also includes: in response to a user selection operation on the second notification icon triggered in the third interface, the electronic device switches the first notification in the third interface to the second notification, and displays the first notification icon as unselected, and displays the second notification icon as selected.
[0012] In this way, by displaying the expanded first notification icon and second notification icon to the user, the user can switch notifications by triggering the notification icon. If there are more notifications, the user can quickly trigger the electronic device to switch to the notification he wants to display, thereby improving the switching speed of notifications and thus improving the user experience.
[0013] As an example of the present application, in response to the first sliding operation triggered on the second interface, after the electronic device displays the third interface in the second state, it also includes: when the condition for folding and displaying the second notification is met, the electronic device displays the fourth interface in the second state, and the fourth interface includes the first notification icon and the second notification icon, but does not include the first notification and the second notification, and the first notification icon and the second notification icon are expanded and displayed.
[0014] In this way, when the conditions for folding and displaying the second notification are met, the second notification is no longer displayed, but the first notification icon and the second notification icon continue to be displayed, so that the user can view the corresponding notification through the notification icon at any time, and display space can be saved.
[0015] As an example of the present application, when the conditions for folding and displaying the second notification are met, after the electronic device displays the fourth interface in the second state, it also includes: if no user trigger operation is received within the second time period, the second notification icon is stacked and displayed on top of the first notification icon; when a user trigger operation is received for the stacked notification icon, the first notification icon and the second notification icon are expanded and displayed.
[0016] In this way, users are supported to trigger the expanded display of multiple notification icons, and also to trigger the stacked display of multiple notification icons, so that users can control the display mode of notification icons according to their needs, thereby improving the user experience.
[0017] As an example of the present application, when a user trigger operation is received for stacked notification icons, after the first notification icon and the second notification icon are expanded and displayed, it also includes: the electronic device receives a trigger operation for any one of the expanded notification icons; in response to the trigger operation for any one of the notification icons, the electronic device displays the notification corresponding to any one of the notification icons in the second state, and displays any one of the notification icons as selected.
[0018] In this way, for any one of the multiple notification icons displayed in the expanded state, when a user trigger operation is received on any one of the notification icons, the notification corresponding to the any one of the notification icons is displayed, so that the user can view the notification information, thereby improving the user experience.
[0019] As an example of the present application, if no user trigger operation is received within the second time period, the second notification icon is stacked and displayed on top of the first notification icon, and it also includes: after the electronic device obtains the third notification, it displays the fifth interface in the second state, and the fifth interface includes the first notification icon, the second notification icon, the third notification and the third notification icon of the third notification. The third notification is an ongoing notification, and the first notification icon, the second notification icon and the third notification icon are expanded and displayed.
[0020] In this way, when notification icons are displayed in a stacked manner, when a new ongoing notification is received, the electronic device will expand and display all notification icons so that the user can trigger the electronic device to display the notification corresponding to the notification icon based on the expanded notification icon, thereby realizing fast switching display of notifications.
[0021] As an example of the present application, when the number of notification icons in the second state exceeds a preset number, the preset number of notification icons are expanded and displayed, and in the second state, other notification icons except the preset number of notification icons are stacked and displayed below the preset number of notification icons, and the push time of the stacked displayed notification icons is earlier than the push time of the expanded displayed notification icons.
[0022] In this way, by partially stacking and partially expanding the display, the display space can be saved, and the user can intuitively view the expanded notification icons, so that the user can know which notifications are available for viewing.
[0023] As an example of the present application, an electronic device receives a second sliding operation on a notification icon in a second state, wherein the sliding direction of the second sliding operation is the direction from the stacked notification icons to the expanded notification icons, and the sliding distance of the second sliding operation corresponds to the movement distance of one notification icon. In response to the second sliding operation, the electronic device displays the second notification icon in the expanded notification icons as a stack on top of the first notification icon, and moves the other notification icons in the expanded notification icons, except the first notification icon and the second notification icon, one position in the sliding direction in sequence.
[0024] In this way, the user is supported to trigger the electronic device to stack and display on both sides through the second sliding operation, so that the user can view different notification icons and then know which notification icons exist, thereby improving the user experience.
[0025] As an example of the present application, after the electronic device obtains the second notification and displays the second notification on the second interface, the following further comprises: after the electronic device obtains the fourth notification, the fourth notification is overlaid on the second notification; or, after the electronic device obtains the fourth notification, the second notification in the second interface is replaced with the fourth notification. In this way, in the case of continuous acquisition of notifications, the continuously acquired notifications can be overlaid and displayed, or they can be replaced, thereby increasing the notification display method.
[0026] As an example of the present application, after the notification event corresponding to the second notification ends, the electronic device no longer displays the second notification and the second notification icon in the second state. This can save the display space occupied by the notification and notification icon, and can also avoid the situation where the user triggers a corresponding notification without a response due to the end of the notification event.
[0027] As an example of the present application, after the electronic device obtains the second notification, it displays the second notification on the second interface, including: after the electronic device obtains the second notification, it determines the first application information of the application to which the second notification belongs; when the first application information belongs to the ongoing notification whitelist, the electronic device displays the second notification in full screen on the second interface, and the ongoing notification whitelist includes the application information of the application to which the ongoing notification belongs.
[0028] In this way, by setting a whitelist of ongoing notifications to distinguish ongoing notifications from non-ongoing notifications, it is easy to determine which notifications need to display corresponding notification icons when the conditions for folding and displaying are met.
[0029] As an example of the present application, the second notification is a non-ongoing notification, and the notification event corresponding to the non-ongoing notification is a non-persistent event. In this case, after the electronic device obtains the second notification, displaying the second notification on the second interface includes: after the electronic device obtains the second notification, displaying the first notification information of the second notification on the second interface, where the first notification information is obtained after hiding the notification text content of the second notification.
[0030] In this way, by hiding the second notification, the security of the second notification display can be improved, thereby improving the security of user privacy.
[0031] As an example of the present application, after the electronic device obtains the second notification and displays the second notification on the second interface, it also includes: when the electronic device receives a viewing operation on the first notification information, the electronic device displays the second notification information of the second notification, and the notification text content of the second notification is not hidden in the second notification information; or, if a cancel display operation is received, or no user trigger operation on the second notification information is received within a third time period, the electronic device displays the second interface.
[0032] In this way, after receiving the second notification, the user can trigger the electronic device to display the notification text content of the second notification, and also support the user to trigger the cancellation of the display of the second notification, thereby improving the user experience.
[0033] As an example of the present application, when an electronic device receives a viewing operation on a first notification message, after the electronic device displays the second notification message of a second notification, it also includes: the electronic device receives a viewing operation on the second notification message; in response to the viewing operation on the second notification message, the electronic device displays the application details page of the application to which the second notification belongs.
[0034] In this way, the user can click on the second notification information and enter the application details page of the application on the electronic device with one click, so that the user can quickly view the detailed information of the second notification, thereby improving the speed at which the user views the detailed information.
[0035] As an example of the present application, when a viewing operation on a first notification message is received, if the electronic device is set with a lock screen password, the electronic device displays an unlocking interface, and the unlocking interface is used to instruct the user to unlock; when the electronic device receives a viewing operation on the first notification message, the electronic device displays second notification information of the second notification, including: when the unlocking is successful, in response to the viewing operation on the first notification message, the electronic device displays the second notification information of the second notification.
[0036] In this way, when a lock screen password is set, the user is instructed to unlock the phone before the second notification message is displayed. The second notification message will only be displayed when the user successfully unlocks the phone, thereby improving the security of the second notification display and protecting user privacy.
[0037] As an example of the present application, after the electronic device obtains the first notification, it displays the first notification on the first interface, including: after the electronic device obtains the first notification, the electronic device adds a non-transparent layer on the first interface; the electronic device displays the first notification in the non-transparent layer.
[0038] In this way, by adding a non-transparent layer and displaying the first notification in the non-transparent layer, the first notification is displayed clearly, that is, the recognition of the first notification is improved, so that the user can clearly see the first notification.
[0039] As an example of the present application, when the electronic device includes only one display unit, the stand state means that the electronic device is in a horizontal state and the duration is greater than a fourth time duration; when the electronic device includes two display units, the stand state means that the angle between the two display units is less than or equal to the first preset angle and greater than or equal to the second preset angle, and the duration is greater than the fourth time duration, and the first preset angle is greater than the second preset angle.
[0040] In this way, when the electronic device is in the stand state, it can enter the second state, so that it can be displayed in landscape mode in the second state, and when displayed in landscape mode, it supports the user to quickly trigger the electronic device to switch notifications.
[0041] In a second aspect, an electronic device is provided, comprising: one or more processors, and a memory; the memory is coupled to the one or more processors, the memory being used to store computer program code, the computer program code comprising computer instructions, the one or more processors calling the computer instructions to enable the electronic device to execute the method described in the first aspect above.
[0042] In a third aspect, a chip system is provided, which is applied to an electronic device, and the chip system includes one or more processors, and the one or more processors are used to call computer instructions so that the electronic device executes the method as described in any one of the first aspects.
[0043] In a fourth aspect, a computer-readable storage medium is provided, wherein the computer-readable storage medium includes instructions, and when the instructions are executed on an electronic device, the electronic device executes the method as described in any one of the first aspects.
[0044] In a fifth aspect, a computer program product comprising instructions is provided, which, when executed on a computer, enables the computer to execute the method described in the first aspect.
[0045] The technical effects obtained by the above-mentioned second, third, fourth and fifth aspects are similar to the technical effects obtained by the corresponding technical means in the above-mentioned first aspect, and will not be repeated here. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] FIG1 is a schematic diagram showing an application scenario according to an exemplary embodiment;
[0047] FIG2 is a schematic diagram showing an electronic device in a stand state according to an exemplary embodiment;
[0048] FIG3 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0049] FIG4 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0050] FIG5 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0051] FIG6 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0052] FIG7 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0053] FIG8 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0054] FIG9 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0055] FIG10 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0056] FIG11 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0057] FIG12 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0058] FIG13 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0059] FIG14 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0060] FIG15 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0061] FIG16 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0062] FIG17 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0063] FIG18 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0064] FIG19 is a schematic diagram showing an application scenario according to another exemplary embodiment;
[0065] FIG20 is a schematic flow chart showing a notification display method according to an exemplary embodiment;
[0066] Fig. 21 is a schematic structural diagram of an electronic device according to an exemplary embodiment. DETAILED DESCRIPTION
[0067] In order to make the objectives, technical solutions and advantages of this application clearer, the implementation methods of this application will be further described in detail below with reference to the accompanying drawings.
[0068] It should be understood that the “multiple” mentioned in this application refers to two or more. In the description of this application, unless otherwise specified, “ / ” means or, for example, A / B can mean A or B; “and / or” in this article is merely a description of the association relationship of associated objects, indicating that there can be three relationships, for example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone. In addition, in order to facilitate the clear description of the technical solution of this application, words such as “first” and “second” are used to distinguish between identical or similar items with basically the same functions and effects. Those skilled in the art can understand that words such as “first” and “second” do not limit the quantity and execution order, and words such as “first” and “second” do not necessarily limit them to be different.
[0069] References to "one embodiment" or "some embodiments" in this specification mean that a particular feature, structure, or characteristic described in conjunction with that embodiment is included in one or more embodiments of the present application. Thus, phrases such as "in one embodiment," "in some embodiments," "in other embodiments," and "in other embodiments" appearing in various places in this specification do not necessarily refer to the same embodiment, but rather mean "one or more but not all embodiments," unless otherwise specifically emphasized. The terms "including," "comprising," "having," and variations thereof all mean "including but not limited to," unless otherwise specifically emphasized.
[0070] As the functions of electronic devices are improved, electronic devices can install various applications, such as instant messaging, ticket purchase, shopping, takeout, calls, alarm clocks, games, videos and other applications. The applications in the electronic device will generate notification events regularly or irregularly. In this case, the electronic device is usually required to display the notification corresponding to the notification event. For example, when the instant messaging application in the electronic device receives a new instant messaging message, the electronic device is required to display the corresponding instant messaging notification. The traditional way of displaying notifications is to display them in the form of a banner at the top of the screen. However, in some scenarios, the electronic device may be far away from the user. For example, referring to Figure 1, the electronic device is on a bracket (which can be called a bracket state, or a horizontal screen hovering state), and the electronic device is far away from the user. In this case, if the traditional way of displaying notifications is used, it is easy to result in a low recognition rate of the notification, which will cause the user to be unable to see the notification clearly.
[0071] In one example, a method for displaying notifications is provided, and notifications can be displayed in full screen on the screen when the electronic device is in standby mode, wherein standby mode is a mode with very low power consumption. In some embodiments, standby mode is also called low power mode or smart stand mode. The electronic device can usually enter standby mode when it is on a bracket. In this way, the recognition of the notification can be improved by displaying the notification in full screen in standby mode, so that the user can see the notification clearly even if the electronic device is far away from the user. However, in some cases, there may be multiple notifications to be displayed. The embodiment of the present application provides a notification display method, which can maintain a high recognition display effect of the notification when there are multiple notifications, and can quickly switch the display between multiple notifications, so that the user can quickly view different notifications.
[0072] For ease of understanding, before introducing in detail the notification display method provided in the embodiment of the present application, the application scenarios involved in the embodiment of the present application are first introduced.
[0073] An electronic device can enter standby mode when it is in a stand state. The stand state can be positioned as being in a table mode or a relaxation mode. For example, taking the electronic device as a candy bar as an example, when the candy bar is placed in landscape mode or fixed on a stand, it is in the stand state, as shown in Figure (a) in Figure 2. At this time, the bottom edge of the candy bar after being in landscape mode is parallel to the horizontal plane or the angle between it and the horizontal plane is less than a certain angle, and the candy bar is also said to be in landscape mode. Taking the electronic device as a folding screen device as an example, when the folding screen device is in a notebook state, a tent state, a desk calendar state, an external screen landscape state, an internal screen landscape state, an internal screen portrait state or a book state, it is in the stand state. The various stand states of the folding screen device are shown in (b) to (h) in Figure 2, respectively, where the notebook state refers to the folding angle range of the folding screen device being 45 degrees to 145 degrees and being stationary for a certain period of time (such as 500ms), as shown in Figure 2 (b); the tent state refers to the folding angle range of the folding screen device being 0 degrees to 85 degrees and being stationary for a certain period of time, as shown in Figure 2 (c); the calendar state refers to the folding angle range of the folding screen device being 0 degrees to 80 degrees and being stationary for a certain period of time, as shown in Figure 2 (d); the horizontal screen state of the external screen refers to the horizontal screen state of the external screen. The foldable screen device is folded inward into a straight-screen shape and then left stationary for a certain period of time, as shown in Figure 2 (e); the inner screen horizontal state refers to the foldable screen device's screen being unfolded 180 degrees and then left stationary in horizontal position for a certain period of time, as shown in Figure 2 (f); the inner screen vertical state refers to the foldable screen device's screen being unfolded 180 degrees and then left stationary in vertical position for a certain period of time, as shown in Figure 2 (g); the book state refers to the foldable screen device's screen being unfolded to a certain angle so that the foldable screen device can be like an open book and can be left stationary for a certain period of time, as shown in Figure 2 (h).
[0074] It should be noted that the stand state of the electronic device shown in Figure 2 is only exemplary. In another example, it may also include other situations. For example, the stand state of the folding screen device may also include the horizontal screen state after the inner screen is folded outward into a straight-screen shape, etc. The embodiments of the present application do not limit this.
[0075] When an electronic device is in the stand position, it can enter the standby mode from different working states. For ease of understanding, the following uses a bar phone (such as a mobile phone) as an example to illustrate several possible situations in which the electronic device enters the standby mode from the stand position:
[0076] In one example, referring to FIG3 (a), the electronic device is in the lock screen state. When the electronic device enters the stand state, referring to FIG3 (e), the electronic device enters stand mode. For example, when the electronic device displays the lock screen interface, if the electronic device is placed in landscape orientation on a stand, the electronic device may automatically enter stand mode. By way of example and not limitation, the electronic device displays clock information after entering stand mode.
[0077] In another example, referring to FIG3(b), the electronic device is in a desktop state. When the electronic device enters a stand state, referring to FIG3(e), the electronic device enters stand mode. For example, when the electronic device is in desktop mode, if the electronic device is placed in landscape orientation on a stand, the electronic device automatically enters stand mode. By way of example and not limitation, the electronic device displays clock information after entering stand mode.
[0078] In another example, referring to FIG3 (c), the electronic device is in the screen-off state. When the electronic device enters the stand state, referring to FIG3 (e), the electronic device enters the stand mode. For example, when the electronic device is in the screen-off state, if the electronic device is placed in a horizontal position on the stand, the electronic device automatically enters the stand mode. By way of example and not limitation, the electronic device displays clock information after entering the stand mode.
[0079] In another example, referring to FIG3 (d), the electronic device is in the AOD (always on display) state. When the electronic device enters the stand state, referring to FIG3 (e), the electronic device enters the stand mode. For example, when the electronic device displays the AOD interface, if the electronic device is placed in a stand in landscape orientation, the electronic device automatically enters the stand mode. By way of example and not limitation, the electronic device displays clock information after entering the stand mode.
[0080] In addition, in addition to being able to enter standby mode from the several working states shown in Figure 3, the electronic device can also enter standby mode from any other usage state. For example, referring to Figure 4 (a), the user places the electronic device in landscape orientation on a bracket, and the electronic device is playing a video. In this case, if the user presses the power button of the electronic device, then in response to the user pressing the power button, referring to Figure 4 (b), the electronic device enters standby mode. As an example and not a limitation, the electronic device displays clock information after entering standby mode.
[0081] After an electronic device enters standby mode, if a user wants the electronic device to exit standby mode, the user can trigger the electronic device to exit standby mode in a variety of ways. As examples and not limitations, the following two possible implementations may be included:
[0082] In a first possible implementation, referring to FIG5(a), a user can swipe up from the bottom of the electronic device's screen. In response to the user swiping up from the bottom of the screen, the electronic device exits standby mode. Specifically, in standby mode, if a user swipes up from the bottom of the screen, the electronic device does not trigger multitasking, the standby mode does not appear in the multitasking manager, and the electronic device exits standby mode. As an example of the present application, after exiting standby mode, the electronic device can redisplay the operating state before entering standby mode. For example, referring to FIG5(b), if the electronic device enters standby mode from the lock screen, in response to the user swiping up from the bottom of the screen, the electronic device exits standby mode and redisplays the lock screen. For another example, referring to FIG5(c), if the electronic device enters standby mode from the desktop, in response to the user swiping up from the bottom of the screen, the electronic device exits standby mode and redisplays the desktop. By way of example and not limitation, if the electronic device remains in a stand state, after exiting standby mode and redisplaying the desktop, it may not reenter standby mode and may reenter standby mode the next time it is in the stand state.
[0083] In a second possible implementation, referring to Figure 6 (a), the electronic device enters standby mode, and then, if the electronic device exits the stand state, such as the user takes the electronic device off the stand, or turns the electronic device vertically, the electronic device automatically exits standby mode and redisplays the display state before entering standby mode. For example, referring to Figure 6 (b), in the case where the electronic device enters standby mode from the lock screen interface, if the user turns the electronic device vertically, the electronic device detects this operation, exits standby mode, and redisplays the lock screen interface. For another example, referring to Figure 6 (c), in the case where the electronic device enters standby mode from the desktop, if the user turns the electronic device vertically, the electronic device detects this operation, exits standby mode, and redisplays the desktop. As an example and not a limitation, the electronic device can detect whether the electronic device is in a horizontal or vertical state through a sensor such as a gyroscope.
[0084] As an example of the present application, the electronic device also supports the user to turn off the display of standby mode. For example, referring to Figure 7 (a), after the electronic device enters standby mode, if the user wants to control the electronic device not to display standby mode, the user can press the power button. In response to the user's pressing of the power button, referring to Figure 7 (b), the electronic device no longer displays standby mode, that is, enters the screen-off mode. In one example, when the user presses the power button again or touches the screen lightly, the electronic device displays standby mode again, that is, it enters the state shown in Figure 7 (a) again. In another example, if the electronic device has the smart recognition function turned on, for example, the user turns on the switch of the smart recognition function through the "Settings-Accessibility" path, then when the screen is off (that is, the interface shown in Figure 7 (b) is displayed), if the user stares at the screen for a long time, the electronic device will redisplay the standby mode, that is, it will redisplay the interface shown in Figure 7 (a).
[0085] As an example of the present application, when a lock screen password is set for an electronic device, after the user triggers the electronic device to turn off the display of the standby mode, that is, after the electronic device enters the state shown in Figure (b) of Figure 7, if the user presses the power button of the electronic device, then before redisplaying the standby mode, in response to the user pressing the power button, the electronic device can first enter the unlocking interface, and then the user can unlock it in the unlocking interface. For example, the user can unlock it by entering the unlocking password or face recognition. As an example and not a limitation, the electronic device can disable the fingerprint unlocking function (including the screen and power button) in the standby mode. Accordingly, the electronic device performs unlocking authentication. If the authentication is successful, the electronic device redisplays the standby mode. Otherwise, if the authentication fails, the standby mode may not be redisplayed.
[0086] It should also be noted that Figures 3 and 4 are only used to illustrate the display of clock information after entering standby mode, that is, entering the clock weather theme display mode. In another example, standby mode also supports other theme display modes, such as other theme display modes including album (i.e. gallery) theme display mode and video theme display mode. Among them, the clock weather theme display mode is a theme display mode that pushes clock information and weather information, the album theme display mode is a theme display mode that pushes pictures in the album, and the video theme display mode is a theme display mode that pushes video content.
[0087] Referring to FIG. 8 (a), taking the electronic device in the locked screen state as an example, in this case, after the electronic device is in the stand state, it may enter the following theme display modes:
[0088] In one possible case, referring to FIG. 8 ( b ), after the electronic device enters the standby mode, it displays clock information, that is, enters the clock weather theme display mode.
[0089] In another possible scenario, referring to FIG8 (c), after the electronic device enters standby mode, it displays a picture in the album (i.e., the gallery), i.e., it enters album theme display mode. For example, the electronic device may randomly select a picture from the album for display, or may select a picture from the album for display according to a certain strategy, such as displaying the most recently taken picture, or displaying a picture taken on this day last year, etc., which is not limited in the embodiments of the present application.
[0090] In another possible scenario, referring to (d) in FIG8 , after the electronic device enters standby mode, it displays the video screen of a target video, i.e., enters video theme display mode. The target video is a video played in a video application on the electronic device that supports standby mode. Video applications that support standby mode are whitelisted and are subsequently referred to as whitelist video applications. In one example, the target video can be a video that the user recently watched in a whitelist video application. If the user has recently watched videos only through one whitelist video application, the electronic device determines that a video played by the whitelist video application is the target video. For example, the video can be the most recently played video. If the user has recently watched different videos through multiple whitelist video applications, the electronic device can select the video that the user most recently watched through the whitelist video application as the target video. In one possible implementation, if the user has not recently watched a video through a whitelist video application, the electronic device can display the homepage of the whitelist video application, i.e., the video push page of the whitelist video application. If there are multiple whitelist video applications, a whitelist video application can be selected from the multiple whitelist video applications, for example, randomly selected, and the video push page of the whitelist video application can be displayed.
[0091] Optionally, referring to Figure (d) in Figure 8, the video screen includes a "play control", and the user can click the "play control". In response to the user's click operation on the "play control", the electronic device can play the video to which the video screen belongs, that is, play the target video.
[0092] As an example of the present application, if the electronic device enters standby mode for the first time, the electronic device may default to a clock and weather theme display mode. If this is not the first time the electronic device enters standby mode, the electronic device may determine the theme display mode based on an intelligent recommendation strategy. The intelligent recommendation strategy can be set as needed and may comprehensively consider factors such as time, location, and user-initiated feedback. As an example, the electronic device may use the theme display mode it was in before it last exited standby mode. For example, if the clock information was displayed after the electronic device last entered standby mode and the user actively swipes to the album theme display mode, then after entering standby mode this time, the electronic device may display pictures from the album, i.e., enter the album theme display mode. As another example, the user may also count the theme display modes used by the electronic device after entering standby mode at different time periods, thereby displaying the content based on the current time period. For example, if statistics show that the user actively triggers the electronic device to switch to the video theme display mode after the electronic device enters standby mode within a certain time period, for example, the user triggers the electronic device to switch to the video theme display mode after the electronic device enters standby mode at noon, then when the electronic device enters standby mode at noon, it enters the video theme display mode, i.e., displays the video image.
[0093] It should be noted that the above-mentioned display mode after entering standby mode is merely exemplary. In another example, other implementations may also be included. For example, each time the electronic device enters standby mode, it may randomly select one of the three theme display modes for display. In addition, the electronic device may also support other theme display modes in standby mode, such as a sports theme display mode, a food delivery theme display mode, etc., which are not limited in the embodiments of the present application.
[0094] It should also be noted that the user can trigger the electronic device to switch between different theme display modes by sliding left and right. For example, if the electronic device displays clock information after entering standby mode, when the user slides left (or right), in response to the user's sliding operation to the left (or right), the electronic device enters another theme display mode, such as entering the video theme display mode. In addition, the user can also trigger the electronic device to switch to different display styles in the same theme display mode by sliding up and down. For example, when the user slides up (or down) in the video theme display mode, in response to the user's sliding operation up (or down), the electronic device displays another video screen in the video theme display mode.
[0095] According to the above embodiments, it can be seen that when an electronic device enters standby mode, the electronic device is in a stand state. In one possible case, the electronic device will be far away from the user, such as when the user places a mobile phone on a stand while doing yoga. In this case, if there is a new notification event in the electronic device, if the notification corresponding to the new notification event is displayed in a traditional manner, it is easy to cause the recognition of the notification to be low, making it impossible for the user to see the notification clearly from a distance. For this reason, in an embodiment of the present application, when the electronic device enters standby mode, when a notification is obtained, the electronic device displays the notification in full screen to highlight the notification, thereby improving the recognition of the notification, and thus allowing the user to see the notification clearly even when the user is far away from the electronic device.
[0096] As an example of the present application, the types of notifications to be displayed include ongoing notifications and non-ongoing notifications. An ongoing notification generally refers to a non-transient notification, and its corresponding notification event is an event that takes a long time to proceed, that is, a continuous event. For example, ongoing notifications include music notifications, YoYo card notifications, call notifications, alarm notifications, countdown notifications, etc.; a non-ongoing notification is generally a transient notification, and its corresponding notification event does not need to take a long time to proceed, and is a single event, or a non-continuous event. In some embodiments, a non-ongoing notification can also be called a banner notification. For example, a non-ongoing notification includes a weather notification, a shopping notification, a text message notification, an instant messaging notification, etc. Next, for these two types of notifications, the scenarios in which electronic devices display notifications in standby mode are introduced. The following explanation is given by taking the example of an electronic device displaying clock information after entering standby mode.
[0097] In one possible implementation, referring to FIG9 (a), the electronic device enters standby mode, after which the electronic device obtains a notification to be displayed. The obtained notification to be displayed may be sent by another device, such as a push from a background server, or may be triggered by an application in the electronic device. Taking the notification to be displayed as a non-active notification, for example, a weather notification, referring to FIG9 (b), the electronic device displays the weather notification in full screen. Exemplarily, the electronic device may add a non-transparent layer to the display interface of the current standby mode (which may be referred to as the standby interface), and then display the weather notification in the added layer, for example, the weather notification may be displayed in the center of the added layer. As an example, the electronic device has enabled the function of hiding the text content of the notification. Therefore, when displaying the weather notification, the electronic device may hide the text content of the notification, for example, referring to FIG9 (b), and only display the weather icon and the new notification prompt information. The new notification prompt information is "a notification". This type of notification can be called a hidden notification. If the user does not perform any operation on the weather notification, the electronic device automatically resumes displaying the clock information in standby mode after displaying the weather notification for a certain period of time (e.g., 5 seconds), redisplaying the interface shown in FIG. 9 (a) and no longer displaying the weather notification. Alternatively, if the user clicks a blank area in the interface or swipes upward from the bottom of the electronic device, the electronic device can also resume displaying the clock information in standby mode in response to the user's click on the blank area or swiping upward from the bottom of the screen. If the user clicks on a hidden weather notification, see FIG. 9 (c). In response to the user's click on the hidden weather notification, the electronic device displays the notification text content of the weather notification, such as "The weather in Haidian District will be sunny tomorrow. Always bring an umbrella when going out," so that the user can quickly understand the notification details. If the user clicks on the weather notification displaying the notification text again, see FIG. 9 (d). In response to the user's click on the weather notification displaying the notification text content, the electronic device enters the application details page of the weather application, so that the user can quickly understand the weather details.
[0098] Optionally, when the electronic device displays a hidden weather notification, if the user clicks on the hidden weather notification, the electronic device can also directly enter the application details page of the weather application in response to the user's click operation on the hidden weather notification, that is, the electronic device directly jumps from the interface shown in Figure (b) of Figure 9 to the interface shown in Figure (d) of Figure 9.
[0099] Optionally, referring to Figure 10 (a), when the electronic device displays a hidden weather notification, if the user clicks on the hidden weather notification, then when the electronic device has set a lock screen password, referring to Figure 10 (b), in response to the user's click operation on the hidden weather notification, the electronic device displays an unlocking interface to instruct the user to unlock. Accordingly, the user can unlock by entering a fingerprint, password or face recognition. Referring to Figure 10 (c), if the user unlocks successfully, the electronic device displays the notification text content. Otherwise, if the user unlocks unsuccessfully, the electronic device does not display the notification text content, for example, it can continue to display the hidden weather notification, that is, continue to display the interface shown in Figure 10 (a).
[0100] It should be noted that the above description is based on the example of an electronic device that has the function of hiding the notification text content enabled. In another example, if the electronic device does not have the function of hiding the notification text content enabled, and the notification is a non-customized notification, that is, the notification text content is provided by a third-party application, then after the electronic device obtains the notification event, the electronic device directly displays the notification text content corresponding to the notification event, for example, it can directly display the interface shown in Figure (c) in Figure 9, without displaying the hidden notification, that is, without displaying the interface shown in Figure (b) in Figure 9.
[0101] In another possible case, the notification to be displayed is an ongoing notification. In this case, the electronic device can display the notification in either of two ways. In one example, taking the ongoing notification as a YoYo card notification as an example, if the electronic device obtains a flight reminder card notification, the YoYo card notification to be displayed will be a flight reminder card notification. Referring to (a) in FIG11 , after the electronic device enters standby mode, if a flight reminder card notification is received, referring to (b) in FIG11 , the electronic device can add a non-transparent layer to the current display interface, and then display the flight reminder card notification on top of the added layer, for example, displaying the flight reminder card notification at the center of the added layer; or, referring to (c) in FIG11 , the electronic device can also display the flight reminder card notification at the center of the added layer in an immersive display manner, wherein the notification is integrated with the added layer in the immersive display manner.
[0102] Referring to Figure (b) or (c) in Figure 11, the electronic device displays a "boarding pass" control while displaying the flight reminder card notification. When the user wants to view the boarding pass, he or she can click the "boarding pass" control. In response to the user's triggering operation on the "boarding pass" control, the electronic device enters the boarding pass details page, which includes the electronic boarding pass. In this way, the user can trigger the electronic device to display the boarding pass details page with one click in standby mode, so that the user can quickly use the electronic boarding pass to board the plane, avoiding the need to search for the electronic boarding pass from the ticket booking application.
[0103] Optionally, if a lock screen password is set for the electronic device, after the user clicks the "Boarding Pass" control, in response to the user's triggering operation on the "Boarding Pass" control, the electronic device displays an unlock interface to instruct the user to unlock. The user can unlock the device through facial recognition or password input, and the electronic device performs unlock authentication accordingly. If the user successfully unlocks the device, that is, the unlock authentication passes, the electronic device displays the boarding pass details page. Otherwise, if the user fails to unlock the device, that is, the unlock authentication fails, the electronic device does not display the boarding pass details page.
[0104] It should be noted that the embodiments of this application are merely illustrative of an electronic device displaying a "boarding pass" control simultaneously with a flight reminder card notification. In another example, the electronic device may not display the "boarding pass" control, but the flight reminder card notification may be triggerable. In this case, when the user wishes to view their boarding pass, they can click the flight reminder card notification. In response to the user's click on the flight reminder card notification, the electronic device displays the boarding pass details page or unlock interface in the relevant application.
[0105] In another example, the ongoing notification can also be a call notification. For example, referring to FIG12(a), the electronic device enters standby mode. Thereafter, when an incoming call is received, referring to FIG12(b), the electronic device displays a call notification on the current interface. For example, the call notification includes the incoming call number, an answer control, an end control, etc., so that the user can answer or end the call as needed.
[0106] In another example, the ongoing notification can also be a countdown notification. For example, a user sets a countdown task on the electronic device, such as setting a countdown timer of 4 minutes. Referring to FIG. 13 (a), the electronic device enters standby mode. Then, referring to FIG. 13 (b), the electronic device displays a countdown notification on the current display interface. For example, the countdown notification includes a countdown timer, a refresh control, and a pause control, allowing the user to restart or pause the countdown as needed. When the countdown ends, the electronic device can provide a preset prompt, such as a vibration or ringing alarm. Furthermore, the countdown notification can include an end prompt, such as "Countdown Ended." The countdown notification can also include a close control that the user can slide to close. Upon sliding the close control, the electronic device no longer displays the countdown notification. Alternatively, if the countdown notification displays an end prompt, the electronic device can automatically stop displaying the countdown notification if the user does not access the countdown notification within a certain period of time.
[0107] In another example, the ongoing notification can also be an alarm notification. For example, the user sets an alarm for 10:08 in the electronic device. Referring to Figure 14 (a), the electronic device enters standby mode. Afterwards, when the alarm event is triggered (i.e., the alarm goes off), referring to Figure 14 (b), the electronic device displays the alarm notification in the current display interface. For example, the alarm notification includes the current time, a later reminder control, a close control, etc., so that the user can operate the alarm as needed.
[0108] It should be noted that the above-mentioned several ongoing notifications are only exemplary, among which call notifications, alarm notifications, and countdown notifications are interruptive notifications. In another example, ongoing notifications may also include other notifications, such as music notifications, etc., which are not limited in this embodiment of the present application.
[0109] It should be noted that, since the traditional banner notification display method is that when the electronic device has enabled the function of hiding the notification text content, the electronic device will give priority to displaying the hidden notification. If the user clicks on the hidden notification and successfully unlocks it, the electronic device will then display the notification text content. Therefore, the embodiment of the present application uses this notification display method for non-ongoing notifications to reduce the modification of the notification display method, allowing users to continue to adapt to this display rule. As for ongoing notifications, due to their higher priority, the embodiment of the present application can directly display the notification text content for ongoing notifications to facilitate quick viewing by users.
[0110] As an example of the present application, when the notification to be displayed is an ongoing notification, the electronic device can not only display the ongoing notification in full screen but also support folding the ongoing notification into a notification icon (also known as a resident icon), for example, the notification icon can be displayed in a capsule shape. For example, referring to FIG15 (a), taking the electronic device displaying a flight reminder card notification in an immersive display mode as an example, if the user does not currently need to view the boarding pass, they can swipe up from the bottom of the screen. In response to the user's swiping operation from the bottom of the screen, the electronic device folds the flight reminder card notification into a notification icon in standby mode, as shown in FIG15 (b) (1500). In one implementation, when the user wants to view the flight reminder card notification again, they can click on the notification icon 1500. In response to the user's click on the notification icon 1500, the electronic device redisplays the flight reminder card notification. In another implementation, when the user clicks on the notification icon 1500, the electronic device can directly enter the boarding pass details page of the relevant application in response to the user's click on the notification icon 1500, at which point the electronic device exits standby mode.
[0111] It should be noted that the above description uses the example of an electronic device displaying a flight reminder card notification in an immersive manner. In another example, if the electronic device does not display the flight reminder card notification in an immersive manner, such as in Figure 11 (b), where the electronic device displays the flight reminder card notification in the center of the screen, then when the user wishes to collapse the flight reminder card notification into a notification icon, they can select the flight reminder card notification and swipe or drag it upward. Accordingly, in response to the user selecting the flight reminder card notification and swiping or dragging it upward, the electronic device collapses the flight reminder card notification into a notification icon.
[0112] It should also be noted that the above description uses the example of a user triggering the electronic device to collapse a flight reminder card notification into a notification icon. In another example, if the user does not interact with the displayed flight reminder card notification for a period of time (e.g., 5 seconds), the electronic device may collapse the flight reminder card notification into a notification icon. This allows the flight reminder card notification to be automatically collapsed when the user no longer needs to view it, thereby avoiding obstruction of the clock information displayed in standby mode.
[0113] Of course, for other ongoing notifications (such as interrupting notifications), after the electronic device displays the call in full screen in standby mode, if the user swipes up from the bottom of the screen, the electronic device can also be triggered to retract the other ongoing notifications into notification icons. For example, taking call notifications as an example, referring to Figure 16 (a), after the electronic device receives an incoming call, the call notification is displayed in full screen on the screen. When the user swipes up from the bottom of the screen, in response to the user's sliding operation, the electronic device retracts the call notification into a notification icon, as shown in Figure 16 (b) 1600. In one implementation, when the user needs to view the call notification again, the user can click on the notification icon 1600. In response to the user's click on the notification icon 1600, the electronic device redisplays the call notification. In another implementation, when the user clicks on the notification icon 1600, in response to the user's click on the notification icon 1600, the electronic device can directly enter the call application interface.
[0114] As an example of this application, for an ongoing notification, if the corresponding notification event has been completed, the electronic device will no longer display the ongoing notification, nor will it display the notification icon corresponding to the ongoing notification. For example, for a flight reminder card notification, if the boarding event is completed, the electronic device will no longer display the flight reminder card notification, nor will it display the notification icon corresponding to the flight reminder card notification.
[0115] As an example of the present application, if an electronic device is performing a game service before entering standby mode, then after entering standby mode, when a game notification is received, the electronic device displays the game notification in full screen. Afterwards, if the user swipes up from the bottom of the screen, in response to the user swiping up from the bottom of the screen, the electronic device retracts the game notification into a notification icon and displays the interface in standby mode. Afterwards, if the user clicks the notification icon, the electronic device can directly enter the game interface. That is, for services that require real-time user attention, the user can directly enter the application interface after clicking the notification icon.
[0116] As an example of the present application, when an electronic device obtains multiple ongoing notifications to be displayed, that is, when multiple tasks coexist, the electronic device supports displaying notification icons of the multiple ongoing notifications in standby mode. As an example, referring to Figure 17 (a), when multiple ongoing notifications are received in standby mode and all of the multiple ongoing notifications are folded and displayed as notification icons, the electronic device can display the multiple notification icons in a stacked state, as shown in 1701 in Figure 17 (a). For example, if an electronic device receives a flight reminder card notification in standby mode, the electronic device displays the flight reminder card notification. When the folding display condition is met (such as the user has not operated for a period of time), the electronic device folds the flight reminder card notification into a notification icon. Afterwards, the electronic device receives an incoming call, displays the call notification, and can display the call notification icon above the flight reminder card notification icon, that is, stacking the notification icons.
[0117] It should be noted that the embodiment shown in FIG. 17 (a) is merely exemplary. In one possible scenario, before the electronic device receives a new ongoing notification, it already displays a notification icon in standby mode, such as a notification icon corresponding to a call notification. When a new ongoing notification is received, such as a flight reminder card notification, the electronic device displays the flight reminder card notification in full screen and may expand and display both the notification icon corresponding to the call notification and the notification icon corresponding to the flight reminder card notification. The notification icon corresponding to the flight reminder card notification appears selected, while the notification icon corresponding to the call notification appears unselected. After the conditions for folding the flight reminder card notification are met, the electronic device does not display the flight reminder card notification. In this case, the notification icon corresponding to the call notification and the notification icon corresponding to the flight reminder card notification remain expanded and both appear unselected. If the user does not operate on either notification icon within a certain period of time (e.g., 5 seconds), or if the user triggers a stacking operation (e.g., pinching multiple fingers to display the displayed notification icons), the electronic device stacks the two notification icons again, with the notification icon corresponding to the flight reminder card notification appearing above the notification icon corresponding to the call notification.
[0118] In another possible scenario, before the electronic device receives a new ongoing notification, it displays two or more notification icons in standby mode, such as a notification icon corresponding to a countdown notification and a notification icon corresponding to a call notification. If the two notification icons are displayed in a stacked manner, then after receiving a new ongoing notification, such as a flight reminder card notification, the electronic device displays the flight reminder card notification and may stack the notification icon corresponding to the flight reminder card notification on top of the two existing notification icons. If the two notification icons are displayed in an expanded manner, then after receiving a new ongoing notification, such as a flight reminder card notification, the electronic device displays the flight reminder card notification and may continue to expand and display the two original notification icons and the notification icon corresponding to the flight reminder card notification. If the user does not operate any notification icon within a certain period of time (such as 5 seconds), or the user triggers the notification icon stacking operation, the electronic device will stack and display these notification icons again, that is, stack and display the notification icon corresponding to the countdown notification, the notification icon corresponding to the call notification, and the notification icon corresponding to the flight reminder card notification, and the notification icon corresponding to the flight reminder card notification may be displayed on top.
[0119] In another example, an electronic device receives an ongoing notification in standby mode and displays the notification in full screen, such as a flight reminder card. Subsequently, the electronic device receives another ongoing notification, such as a call notification. In this case, there are two possible implementations:
[0120] In one optional implementation, the electronic device may display the call notification above the flight reminder card notification. Thus, if the user swipes upward from the bottom of the screen within a certain period of time (e.g., 5 seconds), the electronic device will retract the call notification into a notification icon in response to this user action, and the flight reminder card notification will now be displayed full screen. The user can swipe upward from the bottom of the screen again, and in response to this user action, the electronic device will retract the flight reminder card notification into a notification icon and display the flight reminder card notification icon stacked below the call notification icon. If the user does not retract the call notification within a certain period of time (e.g., 5 seconds), the electronic device may automatically retract the flight reminder card notification into a notification icon and not display the flight reminder card notification. Alternatively, after the electronic device displays the call notification above the flight reminder card notification, it can also expand and display the notification icon corresponding to the call notification and the notification icon corresponding to the flight reminder card notification, with the notification icon corresponding to the call notification displayed in a selected state and the notification icon corresponding to the flight reminder card notification displayed in an unselected state. If the user collapses the call notification within a certain period of time, the electronic device displays the flight reminder card notification in full screen, with the notification icon corresponding to the flight reminder card notification displayed in a selected state and the notification icon corresponding to the call notification displayed in an unselected state; if the user does not collapse the call notification within a certain period of time, the electronic device can automatically cancel the display of the flight reminder card notification.
[0121] In another optional implementation, the electronic device may replace the flight reminder card notification with a call notification and may display a notification icon corresponding to the flight reminder card notification. When the user swipes upward from the bottom of the screen, the electronic device, in response to this user action, collapses the call notification into a notification icon. For example, the call notification icon may be displayed stacked on top of the flight reminder card notification icon, or the call notification icon and the flight reminder card notification icon may be displayed together.
[0122] As an example of the present application, when a user clicks on a stacked notification icon, see Figure 17 (b), multiple notification icons are directly expanded. If the user does not operate any of the multiple notification icons within a certain period of time (such as 5 seconds) after the expansion, the electronic device retracts the multiple notification icons into a stacked state, that is, restores to the display of Figure 17 (a). When the user clicks on a notification icon among the multiple notification icons after expansion, the electronic device can display the ongoing notification corresponding to the notification icon clicked by the user in full screen, and display the notification icon clicked by the user as selected, while the other notification icons are displayed as unselected. For example, see Figure 17 (c), when the user clicks on the notification icon of the call notification, in response to the user's click operation on the notification icon of the call notification, the electronic device displays the call notification in full screen. Afterwards, if the user swipes up from the bottom of the screen, in response to the user's swipe up from the bottom of the screen, the electronic device retracts the call notification into a notification icon, and the notification icon of the call notification is displayed as unselected, that is, the electronic device restores the display interface shown in Figure 17 (b).
[0123] In one example, referring to FIG17 (d), if the user clicks on a notification icon that is not selected in the interface shown in FIG17 (c), the electronic device displays the ongoing notification corresponding to the notification icon that the user clicked again. For example, if the user clicks on the notification icon of the countdown notification, referring to FIG17 (d), in response to the user's click operation on the notification icon of the countdown notification, the electronic device displays the countdown notification in full screen, and after switching, the notification icon corresponding to the countdown notification is displayed in a selected state, and other notification icons are displayed in an unselected state. In this way, by displaying the expanded notification icon, the user can trigger the electronic device to switch to display different notifications by clicking the notification icon, which can improve the user experience.
[0124] In another example, when the electronic device displays the interface shown in Figure 17 (c), it also supports the user to swipe left and right to trigger the electronic device to switch to displaying the ongoing notification. For example, if the user swipes left on the interface shown in Figure 17 (c), then in response to the user's left swipe operation, the electronic device switches to displaying the next notification, that is, the electronic device switches to displaying the notification icon of the countdown notification, as shown in Figure 17 (d). In this way, the user is supported to trigger the electronic device to switch to display different notifications by swiping left and right, which also achieves the effect of improving the user experience.
[0125] As an example of the present application, when displaying the interface shown in Figure (c) in Figure 17, if the user does not perform any operation within a certain period of time (such as 5 seconds), the electronic device can collapse the ongoing notification into a notification icon and stack the displayed notification icons, and the display effect is consistent with the display effect of Figure (a) in Figure 17.
[0126] As an example of the present application, when there are multiple notification icons, the display order of each notification icon can be displayed from right to left (or from left to right) according to the push time from early to late, that is, the notification icon of the latest ongoing notification is displayed on the far left.
[0127] As an example of the present application, when the number of notification icons exceeds a certain numerical threshold, multiple notification icons can be partially expanded and displayed, and partially stacked, wherein the preset number can be set according to demand, for example, the preset number can be 6. For example, referring to (a) in Figure 18, when the number of notifications to be displayed exceeds 6, 6 notification icons can be expanded and displayed, and other notification icons are displayed by default on the right stack. In one example, the electronic device supports the user to slide the notification icons left and right, for example, referring to (b) in Figure 18, when the user slides a notification icon to the left, in response to the user sliding a notification icon to the left, the electronic device can stack the second notification icon from the left in Figure 18 (a) on the first notification icon, that is, stack display on the left, and the other notification icons are shifted in sequence, the top one of the notification icons stacked on the right is displayed in the fifth position, and the next notification icon in the notification icon stacked on the right is displayed on the top layer of the notification icons stacked on the right. In this way, the user can continue to slide the notification icon to the left, and the notification icons stacked on the right can be gradually expanded, and the number of notification icons stacked on the left gradually increases. For an expanded notification icon, the user can click on the expanded notification icon to trigger the electronic device to display the corresponding ongoing notification. If the user continues to slide after sliding to the bottom, the electronic device will display a rebound animation.
[0128] As an example of the present application, referring to FIG19, when the user clicks on a certain expanded notification icon for the first time, in response to the user's click operation, the electronic device displays the ongoing notification corresponding to the notification icon clicked by the user, and the novice operation guidance information can be displayed on the upper layer of the displayed ongoing notification to guide the user to trigger the electronic device to retract the ongoing notification. For example, as shown in FIG19, the electronic device can add a layer to the interface, and display a prompt message of "Swipe up from the bottom to exit the notification details page" in the added layer, and can also display an operation guidance gesture with an animated playback effect. In one example, the novice operation guidance information may appear only once, and after the animation playback is completed, the user can trigger the electronic device to no longer display the novice operation guidance information after actively completing the corresponding sliding operation or clicking the "×" control in the upper right corner. In this way, the user can be guided to trigger the electronic device to retract the ongoing notification according to the novice operation guidance information.
[0129] It should be noted that the embodiments of this application are described using the example of an electronic device that can collapse an ongoing notification into a notification icon. In another example, a non-ongoing notification can also be collapsed into a notification icon. For example, when a user swipes upward from the bottom of the screen, or when a user selects a non-ongoing notification and swipes upward, the electronic device can collapse the non-ongoing notification into a notification icon. The notification icon for the non-ongoing notification and the notification icon for the ongoing notification can be displayed stacked together.
[0130] As can be seen, in standby mode, when the electronic device is far away from the user, when there is a new notification event, the corresponding notification can be displayed full screen, improving the recognition of the notification. In addition, important ongoing notifications can be folded into notification icons, and users can expand the detailed notification by clicking them. It also supports quick switching between multiple notifications, which can improve user operation efficiency and thus enhance the user experience.
[0131] Next, the implementation process of the notification display method provided in the embodiment of the present application is described in detail. Referring to Figure 20, Figure 20 is a flow chart of a notification display method according to an exemplary embodiment. As an example and not a limitation, the method can be applied to electronic devices and may mainly include some or all of the following contents:
[0132] S2001: The electronic device is in a first state, which is a screen-on state or a screen-off state.
[0133] The screen-on state includes displaying the desktop interface, the lock screen interface, or other interfaces in use, such as the video playback interface, etc. The screen-off state includes displaying the screen-off interface or the AOD interface.
[0134] S2002: When the electronic device meets the state switching condition, the electronic device switches from the first state to the second state and displays the first interface in the second state.
[0135] In the second state, the electronic device is in a low power consumption mode and displays the screen in landscape mode. In the embodiment of the present application, the electronic device being in the second state means that the electronic device is in a standby mode.
[0136] The state switching condition includes that the electronic device is in a stand state. Among them, when the electronic device includes only one display screen (that is, the electronic device is a straight-screen device), the stand state means that the electronic device is in a landscape state and the duration is greater than or equal to the fourth duration. In the landscape state, the angle between the bottom edge of the electronic device and the horizontal plane is less than the third preset angle. When the electronic device includes two display units (that is, the electronic device is a folding screen device), the stand state means that the angle between the two display units of the electronic device is less than or equal to the first preset angle and greater than or equal to the second preset angle, and the duration is greater than or equal to the fourth duration, and the first preset angle is greater than the second preset angle, or the stand state means that the angle between the two display units of the electronic device is 0 degrees or 180 degrees in the landscape state and the duration is greater than or equal to the fourth duration.
[0137] The third preset angle can be set according to actual needs, and the third preset angle is usually a very small angle.
[0138] The first preset angle and the second preset angle can be set as needed. For example, the first preset angle is 145 degrees and the second preset angle is 45 degrees; or the first preset angle is 85 degrees and the second preset angle is 0 degrees; or the first preset angle is 85 degrees and the second preset angle is 0 degrees. The support state of the folding screen device can be seen in Figure 2 (b) to (h).
[0139] The fourth duration can be set according to needs, for example, the fourth duration is 500ms.
[0140] In one example, the state switching condition also includes receiving a power button pressing operation by the user.
[0141] As an example and not a limitation, the posture, folding angle and duration of the electronic device can be determined by obtaining sensor data collected by sensors such as acceleration sensors and gyroscope sensors, and the embodiments of the present application are not limited to this.
[0142] The first interface can display card information in one of multiple theme display modes. For example, the first interface displays clock information in the clock and weather theme display mode, or displays a video in the video theme display mode, or displays a picture in the album theme display mode. For specific implementations, please refer to the embodiments shown in Figures 3, 4, or 8.
[0143] S2003: After receiving the first notification, the electronic device displays the first notification on the first interface.
[0144] As an example of the present application, the first notification is an ongoing notification.
[0145] As an example of the present application, an electronic device may store an ongoing notification whitelist, which includes application information of the application to which the ongoing notification belongs. The application information is used to uniquely indicate an application. For example, the application may include an application name and / or an application ID, etc. In this way, when obtaining the first notification, it is possible to query which application generated the first notification, and then query the ongoing notification whitelist to see whether the application information of the application to which the first notification belongs is included. If the ongoing notification whitelist includes the application information of the application to which the first notification belongs, it can be determined that the first notification belongs to an ongoing notification. Otherwise, if the ongoing notification whitelist does not include the application information of the application to which the first notification belongs, it can be determined that the first notification does not belong to an ongoing notification.
[0146] This embodiment of the present application is described using the example of a first notification being an ongoing notification. For example, if the application to which the first notification belongs is a call application, and the ongoing notification whitelist includes application information of the call application, the electronic device determines that the first notification is an ongoing notification, i.e., the call notification is an ongoing notification.
[0147] According to Figures 9 and 11 to 14, it can be seen that the way of displaying notifications is different depending on the type of notification. For example, if the notification obtained is a non-ongoing notification, a non-transparent layer is added to the first interface when the notification is displayed, and then the non-ongoing notification is displayed in the form of an icon. For details, please refer to the embodiment shown in Figure 9. If the notification obtained is an ongoing notification, a non-transparent layer is added to the first interface when the notification is displayed, and then the ongoing notification is displayed in the form of a page. For details, please refer to Figures 11 to 14. Since the first notification is an ongoing notification, the electronic device displays the first notification in full screen in the form of a page.
[0148] S2004: When the electronic device does not receive any user input operation within the first time period, the second interface in the second state is displayed, where the second interface includes the first notification icon of the first notification but does not include the first notification.
[0149] The first duration can be set according to needs, and this embodiment of the present application does not limit this.
[0150] If the electronic device does not receive any user input operation within the first time period, it means that the user currently does not need to operate the first notification. In this case, the electronic device can collapse the first notification into a first notification icon.
[0151] It should be noted that, in addition to the first notification icon, the other display content in the second interface can be the same as the display content of the first interface, for example, both display the clock information as shown in Figure 14 (a); or the other display content can also be different from the display content of the first interface, for example, the second interface is shown in Figure 15 (b), and the first interface is shown in Figure 8 (c).
[0152] It should be noted that the embodiment of the present application is described using the example of the first notification being collapsed when no user input is received within the first time period. In another example, the first notification can also be collapsed when a collapse operation is received. For example, referring to Figure 15 (a), the collapse operation can be a user swiping upward from the bottom of the screen.
[0153] S2005: After receiving the second notification, the electronic device displays the second notification on the second interface.
[0154] In one example, the second notification may be an ongoing notification, such as a call notification, a YoYo card notification, an alarm notification, or a countdown notification. In another example, the second notification may be a non-ongoing notification, such as a weather notification, a text message notification, or the like.
[0155] When the second notification is an ongoing notification, the second interface may further include a second notification icon for the second notification, with the first notification icon and the second notification icon displayed expanded, the second notification icon displayed as selected, and the first notification icon displayed as unselected.
[0156] S2006: In response to the first sliding operation triggered on the second interface, the electronic device displays a third interface in the second state, where the third interface includes the first notification and the first notification icon.
[0157] In one example, the first sliding operation is a sliding operation to the left or right.
[0158] The electronic device displays the first notification in full screen on the third interface and displays the first notification icon.
[0159] As an example of the present application, when the second notification is an ongoing notification, the third interface also includes a second notification icon for the second notification, and the first notification icon and the second notification icon are displayed in an expanded state. At this time, the first notification icon is displayed as selected and the second notification icon is displayed as unselected.
[0160] In this way, the user can trigger the electronic device to switch the displayed notifications by sliding left or right, which can increase the switching speed of notifications.
[0161] As an example of the present application, in the case where the second notification is an ongoing notification, in response to a first sliding operation triggered on the second interface, after the electronic device displays the third interface in the second state, in response to a user selection operation of the second notification icon triggered in the third interface, the electronic device switches the first notification in the third interface to the second notification, and displays the first notification icon as unselected, and displays the second notification icon as selected. In this way, the user can not only trigger the electronic device to switch notifications by sliding left and right, but also trigger the electronic device to switch notifications by selecting the expanded notification icon, which can also improve the speed of notification switching.
[0162] As an example of the present application, when the second notification is an ongoing notification, in response to the first sliding operation triggered on the second interface, after the electronic device displays the third interface in the second state, when the condition for folding the second notification is met, the electronic device displays the fourth interface in the second state, and the fourth interface includes the first notification icon and the second notification icon, but does not include the first notification and the second notification, and the first notification icon and the second notification icon are expanded and displayed.
[0163] For example, when displaying the second notification, after receiving the user's upward swipe operation from the bottom of the screen, the electronic device determines that the conditions for retracting the second notification are met. In this case, the electronic device displays the fourth interface in the second state. At this time, the first notification icon and the second notification icon are expanded and displayed in the fourth interface, and the first notification and the second notification are no longer displayed. The display effect can be seen in Figure (b) of Figure 17, which only includes notification icons for two ongoing notifications. In this way, the display space occupied by notifications can be reduced, and because the notification icon is still displayed, the user can trigger the electronic device to display the corresponding notification at any time based on the displayed notification icon.
[0164] As an example of the present application, after the electronic device displays the fourth interface in the second state, if no user trigger operation is received within the second time period, the second notification icon is displayed stacked on top of the first notification icon. When a user trigger operation is received on the stacked notification icon, the first notification icon and the second notification icon are displayed unfolded.
[0165] The second duration can be set according to needs, and this embodiment of the present application does not limit this.
[0166] If no user trigger operation is received within the second time period, it means that the user does not need to view the notification. In this case, the first notification icon and the second notification icon can be stacked and displayed, with the notification icon of the notification pushed earlier displayed at the bottom and the notification icon of the notification pushed later displayed at the top, so as to reduce the occupied space of the interface. Afterwards, if the user clicks on the stacked notification icon, it means that the user may need to view the notification. For this purpose, the electronic device expands and displays the first notification icon and the second notification icon. For details, please refer to Figures (a) to (b) in Figure 17.
[0167] As an example of the present application, when a user trigger operation is received for stacked notification icons, after the first notification icon and the second notification icon are expanded and displayed, the electronic device receives a trigger operation for any of the expanded notification icons. In response to the trigger operation for any of the notification icons, the electronic device displays the notification corresponding to any of the notification icons in the second state and displays any of the notification icons as selected. For example, see Figure (c) in Figure 17. In this way, the user can view any ongoing notification at any time.
[0168] As an example of the present application, if no user trigger operation is received within the second time period, the second notification icon is stacked and displayed on top of the first notification icon. After the electronic device obtains the third notification, it displays the fifth interface in the second state. The fifth interface includes the first notification icon, the second notification icon, the third notification and the third notification icon of the third notification. The third notification is an ongoing notification, and the first notification icon, the second notification icon and the third notification icon are expanded and displayed.
[0169] That is, after the notification icons are stacked and displayed, if a new ongoing notification is obtained, the electronic device can display the newly obtained ongoing notification in full screen in the second state, and can expand all notification icons to display them, so that the user can trigger the electronic device to quickly switch notifications based on the expanded notification icon.
[0170] In one example, when the first notification icon and the second notification icon are displayed in a stacked manner, if the received third notification is a non-ongoing notification, the electronic device may also expand and display the stacked first notification icon and the second notification icon.
[0171] As an example of the present application, when the number of notification icons in the second state exceeds a preset number, the preset number of notification icons are displayed in an expanded state, and the notification icons other than the preset number of notification icons in the second state are displayed in a stacked state below the preset number of notification icons. The stacked notification icons are pushed earlier than the expanded notification icons. The preset number can be set as needed, for example, to 6, and this embodiment of the present application is not limited thereto.
[0172] That is, when multiple notification icons are expanded and displayed, if the number of notification icons exceeds a preset number, the electronic device can stack and display the notification icons that exceed the preset number on the first display side, and expand and display the preset number of notification icons on the second display side. The first display side and the second display side can be set as needed. For example, the first display side can be the right side of the upper end area of the screen in the landscape state, and the second display side can refer to the left side of the upper end area of the screen in the landscape state. Specifically, the stacked display effect can be seen in the embodiment shown in Figure (a) of Figure 18. Alternatively, the first display side can also refer to the lower side of the right end area of the screen in the landscape state, and the second display side refers to the upper side of the right end area of the screen in the landscape state. In this way, the display space occupied by the notification icons can be reduced, and the user can also view some notification icons to know which notifications can be viewed, thereby improving the user experience.
[0173] In one example, the electronic device receives a second sliding operation on the notification icon in the second state, the sliding direction of the second sliding operation is the direction from the stacked notification icon to the expanded notification icon, and the sliding distance of the second sliding operation corresponds to the moving distance of one notification icon. In response to the second sliding operation, the electronic device stacks and displays the second notification icon in the expanded notification icon on top of the first notification icon, and moves the other notification icons in the expanded notification icon except the first notification icon and the second notification icon one position in the sliding direction in sequence. Specifically, please refer to the embodiment shown in Figure (b) of Figure 18. In this way, the user can slide the notification icon to make the notification icon partially expanded and partially stacked, so that the user can trigger the electronic device to display the corresponding notification based on the expanded notification icon, and the stacked display can reduce the occupation of the display space.
[0174] As an example of this application, after the electronic device receives the second notification and displays the second notification on the second interface, after the electronic device receives the fourth notification, the fourth notification is overlaid on the second notification; or after the electronic device receives the fourth notification, the second notification on the second interface is replaced by the fourth notification. In this way, notifications can be displayed in multiple ways, increasing the richness of notification display.
[0175] As an example of the present application, after the notification event corresponding to the second notification is executed, the electronic device no longer displays the second notification and the second notification icon in the second state, thereby saving display space.
[0176] In one example, when the second notification is not an ongoing notification, after the electronic device obtains the second notification, it displays the first notification information of the second notification on the second interface. The first notification information is obtained by hiding the notification text content of the second notification. For example, referring to Figure 9 (b), the first notification information includes a weather icon and a new notification prompt message of "1 notification", that is, the weather notification text content is not displayed. In this way, the security of notification display can be guaranteed and the security of user privacy can be improved.
[0177] As an example of the present application, when an electronic device receives a viewing operation on a first notification message, the electronic device displays the second notification message of the second notification, and the notification text content of the second notification is not hidden in the second notification message. For example, see Figure (c) in Figure 9; or, if a cancel display operation is received, or no user trigger operation on the second notification message is received within a third time period, the electronic device displays the second interface. For example, see the process from Figure (b) in Figure 9 to Figure (a) in Figure 9.
[0178] In one example, when the electronic device receives a view operation on a first notification message, the electronic device displays the second notification message of a second notification message, and then receives a view operation on the second notification message; in response to the view operation on the second notification message, the electronic device displays the application details page of the application to which the second notification message belongs. In this way, the user can quickly view the application details page when the electronic device is in the second state.
[0179] In one example, upon receiving a viewing operation for a first notification message, if the electronic device has a lock screen password, the electronic device displays an unlocking interface that instructs the user to unlock the device. If the unlocking is successful, the electronic device displays a second notification message in response to the viewing operation for the first notification message. This improves the security of information viewing and successfully protects user privacy.
[0180] It should be noted that the first interface, second interface, third interface, fourth interface and fifth interface in the embodiment of the present application can all be called standby interfaces, and their display contents are different. For example, some include notification icons, some do not include notification icons, some include one notification icon, and some include multiple notification icons, etc. In addition, other display contents may be the same or different. For details, please refer to the above introduction to the distinction between the first interface and the second interface.
[0181] In an embodiment of the present application, an electronic device is in a first state, which is either a screen-on state or a screen-off state. When a state switching condition is met, the electronic device switches from the first state to a second state and displays the first interface in the second state. In the second state, the electronic device is in low-power mode and displayed in landscape mode. The state switching condition includes the electronic device being in the stand position. After receiving a first notification, the electronic device displays the first notification on a first interface, allowing the user to clearly see the first notification on the first interface. When the electronic device does not receive any user input within a first time period, the electronic device displays a second interface in the second state, which includes the first notification icon for the first notification and does not include the first notification, thereby retracting the first notification to the first notification icon. After receiving a second notification, the electronic device displays the second notification on a second interface, allowing the user to clearly see the second notification on the second interface. In response to a first sliding operation triggered on the second interface, the electronic device displays a third interface in the second state, which includes the first notification and the first notification icon. This allows the user to trigger a notification display switch in the electronic device through the first sliding operation, improving the notification switching speed and thus the rationality of notification display.
[0182] The notification display method provided in the embodiments of the present application can be applied to electronic devices, or computer devices. For example, the electronic device can be a mobile phone, a sports camera (GoPro), a digital camera, a tablet computer, a desktop computer, a laptop computer, a handheld computer, a notebook computer, an in-vehicle device, an ultra-mobile personal computer (UMPC), a netbook, a cellular phone, a personal digital assistant (PDA), an augmented reality (AR) or virtual reality (VR) device, etc., and the embodiments of the present application are not limited to this.
[0183] FIG21 is a schematic diagram of the structure of an electronic device provided in an embodiment of the present application. Referring to FIG21 , the electronic device 100 may include a processor 110, an external memory interface 120, an internal memory 121, a universal serial bus (USB) interface 130, a charging management module 140, a power management module 141, a battery 142, an antenna 1, an antenna 2, a mobile communication module 150, a wireless communication module 160, an audio module 170, a speaker 170A, a receiver 170B, a microphone 170C, an earphone jack 170D, a sensor module 180, a button 190, a motor 191, an indicator 192, a camera 193, a display 194, and a subscriber identification module (SIM) card interface 195, etc.
[0184] Among them, the sensor module 180 can include a pressure sensor 180A, a gyroscope sensor 180B, an air pressure sensor 180C, a magnetic sensor 180D, an acceleration sensor 180E, a distance sensor 180F, a proximity light sensor 180G, a fingerprint sensor 180H, a temperature sensor 180J, a touch sensor 180K, an ambient light sensor 180L, a bone conduction sensor 180M, etc.
[0185] It should be understood that the structures illustrated in the embodiments of the present application do not constitute a specific limitation on the electronic device 100. In other embodiments of the present application, the electronic device 100 may include more or fewer components than shown, or may combine or separate certain components, or arrange the components differently. The illustrated components may be implemented in hardware, software, or a combination of software and hardware.
[0186] The processor 110 may include one or more processing units, for example, the processor 110 may include an application processor (AP), a modem processor, a graphics processing unit (GPU), an image signal processor (ISP), a controller, a memory, a video codec, a digital signal processor (DSP), a baseband processor, and / or a neural-network processing unit (NPU). The different processing units may be independent devices or integrated into one or more processors.
[0187] The controller may be the nerve center and command center of the electronic device 100. The controller may generate an operation control signal according to the instruction operation code and the timing signal to complete the control of fetching and executing instructions.
[0188] Processor 110 may also include a memory for storing instructions and data. In some embodiments, the memory in processor 110 is a cache memory. This memory can store instructions or data that have just been used or are being recycled by processor 110. If processor 110 needs to use the same instruction or data again, it can directly access the memory. This avoids duplicate accesses, reduces processor 110 latency, and thus improves system efficiency.
[0189] In some embodiments, the processor 110 may include one or more interfaces, such as an inter-integrated circuit (I2C) interface, an inter-integrated circuit sound (I2S) interface, a pulse code modulation (PCM) interface, a universal asynchronous receiver / transmitter (UART) interface, a mobile industry processor interface (MIPI), a general-purpose input / output (GPIO) interface, a subscriber identity module (SIM) interface, and / or a universal serial bus (USB) interface, etc.
[0190] The charging management module 140 is configured to receive charging input from a charger. While charging the battery 142, the charging management module 140 can also provide power to the electronic device 100 via the power management module 141. The power management module 141 is configured to connect the battery 142, the charging management module 140, and the processor 110. The power management module 141 receives input from the battery 142 and / or the charging management module 140 to power the processor 110, the internal memory 121, the external memory, the display 194, the camera 193, and the wireless communication module 160.
[0191] The wireless communication function of the electronic device 100 can be implemented through the antenna 1, the antenna 2, the mobile communication module 150, the wireless communication module 160, the modem processor and the baseband processor.
[0192] Electronic device 100 implements display functionality through a GPU, display screen 194, and an application processor. A GPU is a microprocessor for image processing that connects display screen 194 and the application processor. The GPU is used to perform mathematical and geometric calculations for graphics rendering. Processor 110 may include one or more GPUs that execute program instructions to generate or modify display information.
[0193] Display screen 194 is used to display images, videos, and the like. Display screen 194 includes a display panel. The display panel can be a liquid crystal display (LCD), an organic light-emitting diode (OLED), an active-matrix organic light-emitting diode (AMOLED), a flexible light-emitting diode (FLED), a MiniLED, a MicroLED, a Micro-oLed, or a quantum dot light-emitting diode (QLED). In some embodiments, electronic device 100 may include one or N display screens 194, where N is an integer greater than one.
[0194] The electronic device 100 can implement a shooting function through an ISP, a camera 193, a video codec, a GPU, a display screen 194, and an application processor.
[0195] The external memory interface 120 can be used to connect an external memory card, such as a Micro SD card, to expand the storage capacity of the electronic device 100. The external memory card communicates with the processor 110 via the external memory interface 120 to implement data storage functions. For example, files such as music and videos can be stored on the external memory card.
[0196] The internal memory 121 can be used to store computer executable program codes, which include instructions. The processor 110 executes various functional applications and data processing of the electronic device 100 by running the instructions stored in the internal memory 121. The internal memory 121 may include a program storage area and a data storage area. Among them, the program storage area can store an operating system, an application required for at least one function (such as a sound playback function, an image playback function, etc.), etc. The data storage area can store data created by the electronic device 100 during use (such as audio data, a phone book, etc.), etc. In addition, the internal memory 121 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, a universal flash storage (UFS), etc.
[0197] The electronic device 100 can implement audio functions, such as music playback and recording, through the audio module 170, the speaker 170A, the receiver 170B, the microphone 170C, the headphone jack 170D and the application processor.
[0198] The keys 190 include a power button, a volume button, etc. The keys 190 may be mechanical keys or touch keys. The electronic device 100 may receive key inputs and generate key signal inputs related to user settings and function control of the electronic device 100.
[0199] In the above embodiments, it can be implemented in whole or in part by software, hardware, firmware or any combination thereof. When implemented using software, it can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer instructions are loaded and executed on a computer, the process or function described in the embodiment of the present application is generated in whole or in part. The computer can be a general-purpose computer, a special-purpose computer, a computer network or other programmable device. The computer instructions can be stored in a computer-readable storage medium, or transmitted from one computer-readable storage medium to another computer-readable storage medium. For example, the computer instructions can be transmitted from a website, computer, server or data center to another website, computer, server or data center via a wired (such as a coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (such as infrared, wireless, microwave, etc.) method. The computer-readable storage medium can be any available medium that a computer can access, or a data storage device such as a server or data center that includes one or more available media integrations. The available medium may be a magnetic medium (eg, a floppy disk, a hard disk, a magnetic tape), an optical medium (eg, a digital versatile disc (DVD)), or a semiconductor medium (eg, a solid state disk (SSD)).
[0200] The above are optional embodiments provided for this application and are not intended to limit this application. Any modifications, equivalent replacements, improvements, etc. made within the technical scope disclosed in this application should be included in the scope of protection of this application.
Claims
1. A notification display method, characterized in that: Applied to electronic equipment, the method comprises: The electronic device is in a first state, wherein the first state is a screen-on state or a screen-off state; When the electronic device satisfies a state switching condition, the electronic device switches from the first state to the second state and displays the first interface in the second state, in which the electronic device is in a low power consumption mode and displayed in a horizontal screen, and the state switching condition includes that the electronic device is in a stand state; After the electronic device obtains the first notification, the first notification is displayed on the first interface; When the electronic device does not receive a user input operation within the first time period, displaying a second interface in the second state, the second interface including the first notification icon of the first notification but not including the first notification; After the electronic device obtains the second notification, the second notification is displayed on the second interface; In response to a first sliding operation triggered on the second interface, the electronic device displays a third interface in the second state, where the third interface includes the first notification and the first notification icon.
2. The method according to claim 1, characterized in that In the case where the second notification is an ongoing notification, the third interface further includes a second notification icon for the second notification, the first notification icon and the second notification icon are displayed in an unfolded manner, the first notification icon is in a selected state, and the second notification icon is in an unselected state; The notification event corresponding to the ongoing notification is a persistent event.
3. The method according to claim 2, characterized in that After the electronic device displays the third interface in the second state in response to the first sliding operation triggered on the second interface, the method further includes: In response to a user selection operation on the second notification icon triggered in the third interface, the electronic device switches the first notification in the third interface to the second notification, displays the first notification icon as an unselected state, and displays the second notification icon as a selected state.
4. The method according to claim 2, characterized in that After the electronic device displays the third interface in the second state in response to the first sliding operation triggered on the second interface, the method further includes: When the condition for folding and displaying the second notification is met, the electronic device displays a fourth interface in the second state, wherein the fourth interface includes the first notification icon and the second notification icon, but does not include the first notification and the second notification, and the first notification icon and the second notification icon are displayed in an expanded state.
5. The method according to claim 4, characterized in that After the electronic device displays the fourth interface in the second state when the retracted display condition of the second notification is met, the method further includes: If no user trigger operation is received within the second time period, displaying the second notification icon in a stacked manner on top of the first notification icon; When a user trigger operation on the stacked notification icons is received, the first notification icon and the second notification icon are unfolded and displayed.
6. The method according to claim 5, characterized in that The method further comprises: after the first notification icon and the second notification icon are unfolded and displayed when a user triggering operation on the stacked notification icons is received, the method further comprises: The electronic device receives a triggering operation on any one of the expanded and displayed notification icons; In response to a triggering operation on any one of the notification icons, the electronic device displays a notification corresponding to the any one of the notification icons in the second state, and displays the any one of the notification icons as a selected state.
7. The method according to claim 5 or 6, characterized in that If no user trigger operation is received within the second time period, after displaying the second notification icon on top of the first notification icon, the method further includes: After the electronic device obtains the third notification, it displays the fifth interface in the second state, wherein the fifth interface includes the first notification icon, the second notification icon, the third notification and a third notification icon of the third notification, the third notification is the ongoing notification, and the first notification icon, the second notification icon and the third notification icon are displayed in an expanded form.
8. The method according to any one of claims 2 to 7, characterized in that When the number of notification icons in the second state exceeds a preset number, the preset number of notification icons are expanded and displayed, and other notification icons except the preset number of notification icons in the second state are stacked and displayed below the preset number of notification icons, and the push time of the stacked displayed notification icons is earlier than the push time of the expanded displayed notification icons.
9. The method according to claim 8, characterized in that The method further comprises: The electronic device receives a second sliding operation on the notification icon in the second state, the sliding direction of the second sliding operation is a direction from the stacked notification icons to the unfolded notification icons, and the sliding distance of the second sliding operation corresponds to a moving distance of one notification icon; In response to the second sliding operation, the electronic device stacks and displays the second notification icon among the expanded notification icons on top of the first notification icon, and moves the other notification icons among the expanded notification icons except the first notification icon and the second notification icon one position in the sliding direction in sequence.
10. The method according to claim 2, characterized in that After the electronic device acquires the second notification and displays the second notification on the second interface, the further step further includes: After acquiring the fourth notification, the electronic device overlays the fourth notification on the second notification; or, After obtaining the fourth notification, the electronic device replaces the second notification in the second interface with the fourth notification.
11. The method according to any one of claims 2 to 10, characterized in that: The method further comprises: After the notification event corresponding to the second notification is executed, the electronic device no longer displays the second notification and the second notification icon in the second state.
12. The method according to any one of claims 2 to 11, characterized in that After the electronic device obtains the second notification, displaying the second notification on the second interface includes: After acquiring the second notification, the electronic device determines first application information of the application to which the second notification belongs; In the case where the first application information belongs to an ongoing notification whitelist, the electronic device displays the second notification in full screen on the second interface, and the ongoing notification whitelist includes application information of the application to which the ongoing notification belongs.
13. The method according to claim 1, characterized in that The second notification is a non-ongoing notification, and the notification event corresponding to the non-ongoing notification is a non-persistent event; After the electronic device obtains the second notification, displaying the second notification on the second interface includes: After acquiring the second notification, the electronic device displays first notification information of the second notification on the second interface, where the first notification information is obtained by hiding the notification text content of the second notification.
14. The method according to claim 13, characterized in that After the electronic device acquires the second notification and displays the second notification on the second interface, the further step further includes: When the electronic device receives a viewing operation on the first notification information, the electronic device displays second notification information of the second notification, and the notification text content of the second notification is not hidden in the second notification information; or, If a cancel display operation is received, or if no user trigger operation for the second notification information is received within a third time period, the electronic device displays the second interface.
15. The method according to claim 14, characterized in that When the electronic device receives a viewing operation on the first notification information, after the electronic device displays the second notification information of the second notification, the method further includes: The electronic device receives a viewing operation on the second notification information; In response to a viewing operation on the second notification information, the electronic device displays an application details page of the application to which the second notification belongs.
16. The method according to claim 14 or 15, characterized in that The method further comprises: When a viewing operation on the first notification information is received, if a lock screen password is set on the electronic device, the electronic device displays an unlocking interface, where the unlocking interface is used to instruct a user to unlock the device; When the electronic device receives a viewing operation on the first notification information, the electronic device displays second notification information of the second notification, including: When the unlocking is successful, in response to the viewing operation of the first notification information, the electronic device displays the second notification information of the second notification.
17. The method according to any one of claims 1 to 14, characterized in that After the electronic device obtains the first notification, displaying the first notification on the first interface includes: After the electronic device obtains the first notification, adding a non-transparent layer on the first interface; The electronic device displays the first notification in the non-transparent layer.
18. The method according to any one of claims 1 to 17, characterized in that When the electronic device includes only one display unit, the support state means that the electronic device is in a horizontal screen state and the duration is greater than a fourth duration; When the electronic device includes two display units, the support state means that the angle between the two display units is less than or equal to the first preset angle and greater than or equal to the second preset angle, and the duration is greater than the fourth duration, and the first preset angle is greater than the second preset angle.
19. An electronic device, characterized in that: The electronic device includes: one or more processors, and a memory; The memory is coupled to the one or more processors, and the memory is used to store computer program codes, wherein the computer program codes include computer instructions, and the one or more processors call the computer instructions to enable the electronic device to perform the method according to any one of claims 1 to 18.
20. A chip system, characterized in that: The chip system is applied to an electronic device, and the chip system includes one or more processors, and the one or more processors are used to call computer instructions so that the electronic device executes the method as described in any one of claims 1 to 18.
21. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores instructions, which, when executed on a computer, enable the computer to execute the method according to any one of claims 1 to 18.
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