User interface for group training

CN120066649BActive Publication Date: 2026-08-28APPLE INC
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Patent Information

Application Number
CN202510130289.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2021-09-13
Filing Date
2022-05-13
Publication Date
2026-08-28
Estimated Expiration
2042-05-13

AI Technical Summary

Technical Problem

提供用于在这些电子设备上使用和实现各种功能的高效方法可能是复杂而且耗时的

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Abstract

The present disclosure relates to a user interface for group training. The present disclosure generally relates to sharing training content on an electronic device.
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Description

[0001] This application is a divisional application of the application with international application number PCT / US2022 / 029297, international application date of May 13, 2022, entry into the Chinese national phase on November 15, 2023, national application number 202280035286.X, and invention title "User Interface for Group Training".

[0002] Cross-reference to related applications

[0003] This application claims priority to U.S. Provisional Application No. 63 / 243,576, filed September 13, 2021, entitled “USER INTERFACES FOR GROUP WORKOUTS”, and U.S. Provisional Application No. 63 / 189,085, filed May 15, 2021, entitled “USER INTERFACES FOR GROUP WORKOUTS”; the contents of each of these applications are incorporated herein by reference for all purposes. Technical Field

[0004] This disclosure relates generally to computer user interfaces, and more specifically to techniques for navigating and outputting training content, including shared training content. Background Technology

[0005] As electronic devices such as smartphones become increasingly widespread, their functionality has expanded beyond simple phone calls and text messaging. These functions can include providing training content (e.g., workout plans). Developing efficient methods for using and implementing these diverse functions on these electronic devices can be complex and time-consuming. Summary of the Invention

[0006] Some technologies used in electronic devices to navigate, display, and share training content, such as audio and / or video content guiding users through physical activities, are often cumbersome and inefficient. For example, some existing technologies use complex and time-consuming user interfaces that may involve multiple keystrokes or button presses. These technologies require more time than necessary, resulting in wasted user time and device energy. This latter consideration is particularly important in battery-powered devices. Similarly, some existing technologies for coordinating the display of fitness content across multiple devices are not intuitive, leading to input errors or requiring multiple keystrokes or button presses. These technologies again require more time than necessary, resulting in wasted user time and device energy. This latter consideration is particularly important in battery-powered devices.

[0007] Therefore, this technology provides electronic devices with faster and more efficient methods and interfaces for navigating, displaying, and sharing training content. Such methods and interfaces can optionally supplement or replace other methods for navigating, displaying, and sharing training content. These methods and interfaces reduce the cognitive burden on users and result in more effective human-computer interfaces. For battery-powered computing devices, such methods and interfaces save power and increase the time interval between battery charging sessions.

[0008] According to some embodiments, a method is described. The method includes: at a computer system communicating with a display generation component and one or more input devices: displaying a user interface via the display generation component including a first user interface object corresponding to a first training; detecting user input via the one or more input devices corresponding to a selection of the first user interface object; and in response to detecting the user input: initiating a training session corresponding to the first training, including initiating a process for displaying content associated with the first training via the display generation component; based on determination that the computer system participates in a first type of communication session with one or more external computer systems, including a first external computer system, causing a selectable user interface object to be displayed at the first external computer system, wherein the selectable user interface object is selectable to display the content associated with the training at the first external computer system; and based on determination that the computer system does not participate in the first type of communication session, abandoning the cause of the first external computer system to display the selectable user interface object.

[0009] According to some embodiments, a non-transitory computer-readable storage medium is described. In some embodiments, the non-transitory computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices. The one or more programs include instructions for: displaying a user interface including a first user interface object corresponding to a first training via the display generation component; detecting user input corresponding to a selection of the first user interface object via the one or more input devices; and in response to detecting the user input: initiating a training session corresponding to the first training, including initiating a process for displaying content associated with the first training via the display generation component; causing a selectable user interface object to be displayed at the first external computer system, wherein the selectable user interface object is selectable to display the content associated with the training at the first external computer system, based on a determination that the computer system is involved in a first type of communication session with one or more external computer systems including a first external computer system; and abandoning the cause of the first external computer system to display the selectable user interface object, based on a determination that the computer system is not involved in the first type of communication session.

[0010] According to some embodiments, a transient computer-readable storage medium is described. In some embodiments, the transient computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices. The one or more programs include instructions for: displaying a user interface including a first user interface object corresponding to a first training via the display generation component; detecting user input corresponding to a selection of the first user interface object via the one or more input devices; and in response to detecting the user input: initiating a training session corresponding to the first training, including initiating a process for displaying content associated with the first training via the display generation component; causing a selectable user interface object to be displayed at the first external computer system, wherein the selectable user interface object is selectable to display the content associated with the training at the first external computer system, based on a determination that the computer system is involved in a first type of communication session with one or more external computer systems including a first external computer system; and abandoning the cause of the first external computer system to display the selectable user interface object based on a determination that the computer system is not involved in the first type of communication session.

[0011] According to some embodiments, a computer system is described. In some embodiments, the computer system communicates with a display generation component and one or more input devices, and includes: one or more processors; and a memory storing one or more programs configured to be executed by the one or more processors, the one or more programs including instructions for: displaying a user interface including a first user interface object corresponding to a first training via the display generation component; detecting user input corresponding to a selection of the first user interface object via the one or more input devices; and in response to detecting the user input: initiating a training session corresponding to the first training, including initiating a process for displaying content associated with the first training via the display generation component; causing a selectable user interface object to be displayed at the first external computer system, wherein the selectable user interface object is selectable to display the content associated with the training at the first external computer system, based on a determination that the computer system participates in a first type of communication session with one or more external computer systems including a first external computer system; and abandoning the cause of the first external computer system to display the selectable user interface object based on a determination that the computer system does not participate in the first type of communication session.

[0012] According to some embodiments, a computer system is described. In some embodiments, the computer system communicates with a display generation component and one or more input devices, and includes: means for displaying a user interface including a first user interface object corresponding to a first training via the display generation component; means for detecting user input corresponding to a selection of the first user interface object via the one or more input devices; and means for performing the following operations in response to detecting the user input: initiating a training session corresponding to the first training, including initiating a process for displaying content associated with the first training via the display generation component; causing a selectable user interface object to be displayed at the first external computer system, wherein the selectable user interface object is selectable to display the content associated with the training at the first external computer system, based on a determination that the computer system participates in a first type of communication session with one or more external computer systems including a first external computer system; and abandoning the cause of the first external computer system to display the selectable user interface object based on a determination that the computer system does not participate in the first type of communication session.

[0013] According to some embodiments, a computer program product is described. In some embodiments, the computer program product includes one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices. The one or more programs include instructions for: displaying a user interface including a first user interface object corresponding to a first training via the display generation component; detecting user input corresponding to a selection of the first user interface object via the one or more input devices; and in response to detecting the user input: initiating a training session corresponding to the first training, including initiating a process for displaying content associated with the first training via the display generation component; causing a selectable user interface object to be displayed at the first external computer system, wherein the selectable user interface object is selectable to display the content associated with the training at the first external computer system, based on a determination that the computer system is involved in a first type of communication session with one or more external computer systems including a first external computer system; and abandoning the cause of the first external computer system to display the selectable user interface object, based on a determination that the computer system is not involved in the first type of communication session.

[0014] According to some embodiments, a method is described. The method includes: at a computer system communicating with a display generation component and one or more input devices: while the computer system is participating in a first type of communication session with one or more external computer systems, including a first external computer system: receiving an indication that the first external computer system has initiated a shared training session; in response to receiving the indication that the first external computer system has initiated the shared training session, displaying a user interface object corresponding to the shared training session via the display generation component; while displaying the user interface object corresponding to the shared training session, detecting user input via the one or more input devices; and in response to detecting the user input: based on a determination that the user input corresponds to a request to join the shared training session, displaying content corresponding to the shared training session via the display generation component while maintaining the first type of communication session, wherein the display of the content corresponding to the shared training session is initiated from a first playback position based on a playback position of the corresponding content displayed at the first external computer system; and based on a determination that the user input does not correspond to a request to join the shared training session, abandoning the display of the content corresponding to the shared training session while maintaining the first type of communication session.

[0015] According to some embodiments, a non-transitory computer-readable storage medium is described. In some embodiments, the non-transitory computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices, the one or more programs including instructions for: when the computer system is participating in a first type of communication session with one or more external computer systems, including a first external computer system: receiving an indication that the first external computer system has initiated a shared training session; in response to receiving the indication that the first external computer system has initiated the shared training session, displaying a user interface object corresponding to the shared training session via the display generation component; and displaying a user interface object corresponding to the shared training session. When training the user interface object of the training session, user input is detected via the one or more input devices; and in response to detecting the user input: based on the determination that the user input corresponds to a request to join the shared training session, content corresponding to the shared training session is displayed via the display generation component while maintaining the first type of communication session, wherein the display of the content corresponding to the shared training session is initiated from a first playback position based on the playback position of the corresponding content displayed on the first external computer system; and based on the determination that the user input does not correspond to a request to join the shared training session, the display of the content corresponding to the shared training session is abandoned while maintaining the first type of communication session.

[0016] According to some embodiments, a transient computer-readable storage medium is described. In some embodiments, the transient computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices, the one or more programs including instructions for: when the computer system is engaged in a first type of communication session with one or more external computer systems, including a first external computer system: receiving an indication that the first external computer system has initiated a shared training session; in response to receiving the indication that the first external computer system has initiated the shared training session, displaying a user interface object corresponding to the shared training session via the display generation component; and displaying a user interface object corresponding to the shared training session. When training the user interface object of the training session, user input is detected via the one or more input devices; and in response to detecting the user input: based on the determination that the user input corresponds to a request to join the shared training session, content corresponding to the shared training session is displayed via the display generation component while maintaining the first type of communication session, wherein the display of the content corresponding to the shared training session is initiated from a first playback position based on the playback position of the corresponding content displayed on the first external computer system; and based on the determination that the user input does not correspond to a request to join the shared training session, the display of the content corresponding to the shared training session is abandoned while maintaining the first type of communication session.

[0017] According to some embodiments, a computer system is described. In some embodiments, the computer system communicates with a display generation component and one or more input devices, and includes: one or more processors; and a memory storing one or more programs configured to be executed by the one or more processors, the one or more programs including instructions to: when the computer system is engaged in a first type of communication session with one or more external computer systems, including a first external computer system: receive an indication that the first external computer system has initiated a shared training session; in response to receiving the indication that the first external computer system has initiated the shared training session, display a user interface object corresponding to the shared training session via the display generation component; and when the computer system is engaged in a first type of communication session with one or more external computer systems, including a first external computer system: receive an indication that the first external computer system has initiated the shared training session; and in response to receiving the indication that the first external computer system has initiated the shared training session, display a user interface object corresponding to the shared training session via the display generation component; and when the display... When the user interface object corresponds to the shared training session, user input is detected via the one or more input devices; and in response to detecting the user input: based on the determination that the user input corresponds to a request to join the shared training session, content corresponding to the shared training session is displayed via the display generation component while maintaining the first type of communication session, wherein the display of the content corresponding to the shared training session is initiated from a first playback position based on the playback position of the corresponding content displayed on the first external computer system; and based on the determination that the user input does not correspond to a request to join the shared training session, the display of the content corresponding to the shared training session is abandoned while maintaining the first type of communication session.

[0018] A computer system is described based on some implementation schemes. In some embodiments, the computer system communicates with a display generation component and one or more input devices, and includes: when the computer system is engaged in a first type of communication session with one or more external computer systems, including a first external computer system: means for receiving an indication that the first external computer system has initiated a shared training session; means for displaying a user interface object corresponding to the shared training session via the display generation component in response to receiving the indication that the first external computer system has initiated the shared training session; means for detecting user input via the one or more input devices while displaying the user interface object corresponding to the shared training session; and means for performing the following operations in response to detecting the user input: based on a determination that the user input corresponds to a request to join the shared training session, displaying content corresponding to the shared training session via the display generation component while maintaining the first type of communication session, wherein the display of the content corresponding to the shared training session is initiated from a first playback position based on a playback position of the corresponding content displayed at the first external computer system; and based on a determination that the user input does not correspond to a request to join the shared training session, abandoning the display of the content corresponding to the shared training session while maintaining the first type of communication session.

[0019] According to some embodiments, a computer program product is described. In some embodiments, the computer program product includes one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices, the one or more programs including instructions for: when the computer system is participating in a first type of communication session with one or more external computer systems, including a first external computer system: receiving an indication that the first external computer system has initiated a shared training session; in response to receiving the indication that the first external computer system has initiated the shared training session, displaying a user interface object corresponding to the shared training session via the display generation component; and displaying a user interface object corresponding to the shared training session. When the user interface object of the session is active, user input is detected via the one or more input devices; and in response to detecting the user input: based on a determination that the user input corresponds to a request to join the shared training session, content corresponding to the shared training session is displayed via the display generation component while maintaining the first type of communication session, wherein the display of the content corresponding to the shared training session is initiated from a first playback position based on the playback position of the corresponding content displayed on the first external computer system; and based on a determination that the user input does not correspond to a request to join the shared training session, the display of the content corresponding to the shared training session is abandoned while maintaining the first type of communication session.

[0020] A method is described based on some implementation schemes. The method includes: at a computer system communicating with a display generation component, one or more input devices, and a first external computer system: detecting via the one or more input devices a set of one or more user inputs corresponding to a request to initiate a training session, wherein initiating the training session includes initiating the display of content corresponding to training; and in response to detecting the set of one or more user inputs: based on a determination that the first external computer system meets one or more training sharing criteria, wherein the one or more training sharing criteria include a first criterion that is met when the first external computer system is participating in a first type of communication session with one or more external computer systems: displaying a first user interface via the display generation component, wherein the first user interface includes: a first user interface object, the first user interface object being selectable to share content corresponding to the training session with the one or more external computer systems in the first type of communication session; and a second user interface object, the second user interface object being selectable to display content corresponding to the training session via the display generation component without sharing the content corresponding to the training session with the one or more computer systems in the first type of communication session; and based on a determination that the first external computer system does not meet the one or more training sharing criteria: initiating the training session, including displaying content corresponding to the training via the display generation component without displaying the first user interface.

[0021] According to some embodiments, a non-transitory computer-readable storage medium is described. In some embodiments, the non-transitory computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component, one or more input devices, and a first external computer system. The one or more programs include instructions for: detecting, via the one or more input devices, a set of one or more user inputs corresponding to a request to initiate a training session, wherein initiating the training session includes initiating the display of content corresponding to training; and in response to detecting the set of one or more user inputs: determining, based on the first external computer system's satisfaction of one or more training sharing criteria, wherein the one or more training sharing criteria include when the first external computer system is participating in a first type of communication with one or more external computer systems. The first criterion met during the call is: displaying a first user interface via the display generation component, wherein the first user interface includes: a first user interface object, which is selectable to share content corresponding to the training session to one or more external computer systems in the first type of communication session; and a second user interface object, which is selectable to display content corresponding to the training session via the display generation component without sharing the content corresponding to the training session to one or more computer systems in the first type of communication session; and, based on the determination that the first external computer system does not meet the one or more training sharing criteria: initiating the training session, including displaying content corresponding to the training via the display generation component without displaying the first user interface.

[0022] According to some embodiments, a transient computer-readable storage medium is described. In some embodiments, the transient computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component, one or more input devices, and a first external computer system. The one or more programs include instructions for: detecting, via the one or more input devices, a set of one or more user inputs corresponding to a request to initiate a training session, wherein initiating the training session includes initiating the display of content corresponding to training; and in response to detecting the set of one or more user inputs: determining, based on the first external computer system's satisfaction of one or more training sharing criteria, wherein the one or more training sharing criteria include when the first external computer system is participating in a first type of communication with one or more external computer systems. The first criterion met during the call is: displaying a first user interface via the display generation component, wherein the first user interface includes: a first user interface object, which is selectable to share content corresponding to the training session to one or more external computer systems in the first type of communication session; and a second user interface object, which is selectable to display content corresponding to the training session via the display generation component without sharing the content corresponding to the training session to one or more computer systems in the first type of communication session; and, based on the determination that the first external computer system does not meet the one or more training sharing criteria: initiating the training session, including displaying content corresponding to the training via the display generation component without displaying the first user interface.

[0023] According to some embodiments, a computer system is described. In some embodiments, the computer system communicates with a display generation component, one or more input devices, and a first external computer system, and includes: one or more processors; and a memory storing one or more programs configured to be executed by the one or more processors, the one or more programs including instructions for: detecting a set of one or more user inputs corresponding to a request to initiate a training session via the one or more input devices, wherein initiating the training session includes initiating the display of content corresponding to training; and in response to detecting the set of one or more user inputs: determining that the first external computer system meets one or more training sharing criteria, wherein the one or more training sharing criteria include when the first external computer system is participating in a first training sharing session with one or more external computer systems. A first criterion is met when a communication session of a certain type is established: a first user interface is displayed via the display generation component, wherein the first user interface includes: a first user interface object, which is selectable to share content corresponding to the training session to one or more external computer systems in the first type of communication session; and a second user interface object, which is selectable to display content corresponding to the training session via the display generation component without sharing the content corresponding to the training session to one or more computer systems in the first type of communication session; and, based on the determination that the first external computer system does not meet the one or more training sharing criteria: initiating the training session, including displaying content corresponding to the training via the display generation component without displaying the first user interface.

[0024] According to some embodiments, a computer system is described. In some embodiments, the computer system communicates with a display generation unit, one or more input devices, and a first external computer system, and includes: means for detecting a set of one or more user inputs corresponding to a request to initiate a training session via the one or more input devices, wherein initiating the training session includes initiating a display of content corresponding to training; and means for performing the following operations in response to detecting the set of one or more user inputs: determining that the first external computer system meets one or more training sharing criteria, wherein the one or more training sharing criteria include a first criterion that is met when the first external computer system is participating in a first type of communication session with one or more external computer systems: via the display generation unit The component displays a first user interface, which includes: a first user interface object selectable to share content corresponding to the training session to one or more external computer systems in the first type of communication session; and a second user interface object selectable to display content corresponding to the training session via the display generation component without sharing the content corresponding to the training session to one or more computer systems in the first type of communication session; and, based on a determination that the first external computer system does not meet the one or more training sharing criteria, initiate the training session, including displaying content corresponding to the training via the display generation component without displaying the first user interface.

[0025] According to some embodiments, a computer program product is described. In some embodiments, the computer program product includes one or more programs configured to execute by one or more processors of a computer system communicating with a display generation component, one or more input devices, and a first external computer system. The one or more programs include instructions for: detecting, via the one or more input devices, a set of one or more user inputs corresponding to a request to initiate a training session, wherein initiating the training session includes initiating the display of content corresponding to training; and in response to detecting the set of one or more user inputs: determining that the first external computer system meets one or more training sharing criteria, wherein the one or more training sharing criteria include when the first external computer system is participating in a first type of communication session with one or more external computer systems. The first criterion is met: a first user interface is displayed via the display generation component, wherein the first user interface includes: a first user interface object, which is selectable to share content corresponding to the training session to one or more external computer systems in the first type of communication session; and a second user interface object, which is selectable to display content corresponding to the training session via the display generation component without sharing the content corresponding to the training session to one or more computer systems in the first type of communication session; and, based on the determination that the first external computer system does not meet the one or more training sharing criteria: initiating the training session, including displaying content corresponding to the training via the display generation component without displaying the first user interface.

[0026] According to some embodiments, a method is described. The method includes: at a computer system communicating with a display generation component and one or more input devices: displaying a user interface corresponding to a training session via the display generation component, the user interface including one or more physical activity indicators corresponding to the training session; detecting one or more user inputs via the one or more input devices while displaying the user interface corresponding to the training session; and in response to detecting the one or more user inputs: based on a determination that the training session is a shared training session with one or more external computer systems, displaying a first set of one or more options via the display generation component, wherein the first set of one or more options includes a first option, which, when selected, causes the one or more external computer systems participating in the shared training session to display visual content corresponding to the first option.

[0027] According to some embodiments, a non-transitory computer-readable storage medium is described. In some embodiments, the non-transitory computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices. The one or more programs include instructions for: displaying a user interface corresponding to a training session via the display generation component, the user interface including one or more physical activity indicators corresponding to the training session; detecting one or more user inputs via the one or more input devices while displaying the user interface corresponding to the training session; and in response to detecting the one or more user inputs: displaying a first set of one or more options via the display generation component based on a determination that the training session is a shared training session with one or more external computer systems, wherein the first set of one or more options includes a first option, which, when selected, causes the one or more external computer systems participating in the shared training session to display visual content corresponding to the first option.

[0028] According to some embodiments, a transient computer-readable storage medium is described. In some embodiments, the transient computer-readable storage medium stores one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices. The one or more programs include instructions for: displaying a user interface corresponding to a training session via the display generation component, the user interface including one or more physical activity indicators corresponding to the training session; detecting one or more user inputs via the one or more input devices while displaying the user interface corresponding to the training session; and in response to detecting the one or more user inputs: displaying a first set of one or more options via the display generation component based on a determination that the training session is a shared training session with one or more external computer systems, wherein the first set of one or more options includes a first option, which, when selected, causes the one or more external computer systems participating in the shared training session to display visual content corresponding to the first option.

[0029] According to some embodiments, a computer system is described. In some embodiments, the computer system communicates with a display generation component and one or more input devices, and includes: one or more processors; and a memory storing one or more programs configured to be executed by the one or more processors, the one or more programs including instructions for: displaying a user interface corresponding to a training session via the display generation component, the user interface including one or more physical activity indicators corresponding to the training session; detecting one or more user inputs via the one or more input devices while displaying the user interface corresponding to the training session; and in response to detecting the one or more user inputs: displaying a first set of one or more options via the display generation component based on a determination that the training session is a shared training session with one or more external computer systems, wherein the first set of one or more options includes a first option, which, when selected, causes the one or more external computer systems participating in the shared training session to display visual content corresponding to the first option.

[0030] According to some embodiments, a computer system is described. In some embodiments, the computer system communicates with a display generation component and one or more input devices, and includes: means for displaying a user interface corresponding to a training session via the display generation component, the user interface including one or more physical activity indicators corresponding to the training session; means for detecting one or more user inputs via the one or more input devices while displaying the user interface corresponding to the training session; and means for performing the following operation in response to detecting the one or more user inputs: displaying a first set of one or more options via the display generation component based on a determination that the training session is a shared training session with one or more external computer systems, wherein the first set of one or more options includes a first option, which, when selected, causes the one or more external computer systems participating in the shared training session to display visual content corresponding to the first option.

[0031] According to some embodiments, a computer program product is described. In some embodiments, the computer program product includes one or more programs configured to be executed by one or more processors of a computer system communicating with a display generation component and one or more input devices. The one or more programs include instructions for: displaying a user interface corresponding to a training session via the display generation component, the user interface including one or more physical activity indicators corresponding to the training session; detecting one or more user inputs via the one or more input devices while displaying the user interface corresponding to the training session; and in response to detecting the one or more user inputs: displaying a first set of one or more options via the display generation component based on a determination that the training session is a shared training session with one or more external computer systems, wherein the first set of one or more options includes a first option, which, when selected, causes the one or more external computer systems participating in the shared training session to display visual content corresponding to the first option.

[0032] Executable instructions for performing these functions are optionally included in a non-transitory computer-readable storage medium or other computer program product configured for execution by one or more processors.

[0033] Therefore, faster and more efficient methods and interfaces are provided for navigating and outputting fitness content, thereby improving the effectiveness, efficiency, and user satisfaction of such devices. These methods and interfaces can complement or replace other methods used for navigating and outputting fitness content. Attached Figure Description

[0034] To better understand the various embodiments described, reference should be made to the following detailed description in conjunction with the accompanying drawings, wherein similar reference numerals indicate corresponding parts in all the drawings.

[0035] Figure 1A This is a block diagram illustrating a portable multi-functional device with a touch-sensitive display according to some embodiments.

[0036] Figure 1B This is a block diagram illustrating exemplary components for event handling according to some implementation schemes.

[0037] Figure 2 A portable multi-functional device with a touchscreen is shown according to some embodiments.

[0038] Figure 3 This is a block diagram of an exemplary multifunctional device having a display and a touch-sensitive surface according to some implementation schemes.

[0039] Figure 4A An exemplary user interface for a menu on an application on a portable multifunction device, according to some implementation schemes, is shown.

[0040] Figure 4B An exemplary user interface for a multifunctional device having a touch-sensitive surface separate from the display is shown according to some embodiments.

[0041] Figure 5A A personal electronic device according to some implementation schemes is shown.

[0042] Figure 5B This is a block diagram illustrating a personal electronic device according to some implementation schemes.

[0043] Figures 6A to 6X An exemplary user interface for displaying and sharing group training content is shown according to some implementation schemes.

[0044] Figure 7A This is a flowchart illustrating an exemplary process for displaying group training content according to some implementation schemes.

[0045] Figure 7B This is a flowchart illustrating an exemplary process for displaying group training content according to some implementation schemes.

[0046] Figures 8A-1 to 8I An exemplary user interface for displaying group training content is shown according to some implementation schemes.

[0047] Figure 9 This is a flowchart illustrating an exemplary process for displaying group training content according to some implementation schemes.

[0048] Figures 10A to 10K An exemplary user interface for displaying group training content is shown according to some implementation schemes.

[0049] Figure 11 This is a flowchart illustrating an exemplary process for displaying group training content according to some implementation schemes. Detailed Implementation

[0050] The following description illustrates exemplary methods, parameters, etc. However, it should be understood that such description is not intended to limit the scope of this disclosure, but is provided as a description of exemplary embodiments.

[0051] Electronic devices need to provide efficient methods and interfaces for navigating and outputting training content, including shared group training content. For example, users would benefit from being able to share synchronized training content with one or more other users on individual and / or remote computing devices. Such technologies can reduce the cognitive burden on users accessing training content, thereby increasing productivity. Furthermore, such technologies can reduce processor and battery power otherwise wasted on redundant user input.

[0052] under, Figures 1A to 1B , Figure 2 , Figure 3 , Figures 4A to 4B and Figures 5A to 5B A description of an exemplary device is provided for implementing techniques for displaying and sharing training content. Figures 6A to 6X An exemplary user interface for displaying and sharing group training content is shown. Figure 7A This is a flowchart illustrating a method for displaying and sharing group training content according to some implementation schemes. Figure 7B This is a flowchart illustrating a method for accessing and displaying group training content according to some implementation schemes. Figures 6A to 6X The user interface in the document is used to illustrate the process described below, including Figure 7A and Figure 7B The process in. Figures 8A-1 to 8I An exemplary user interface for displaying and sharing group training content is shown. Figure 9 This is a flowchart illustrating a method for displaying and sharing group training content according to some implementation schemes. Figures 8A-1 to 8I The user interface in the document is used to illustrate the process described below, including Figure 9 The process in. Figures 10A to 10K An exemplary user interface for displaying and sharing group training content is shown. Figure 11 This is a flowchart illustrating a method for displaying and sharing group training content according to some implementation schemes. Figures 10A to 10K The user interface in the document is used to illustrate the process described below, including Figure 11 The process in.

[0053] Furthermore, in methods described herein where one or more steps depend on the satisfaction of one or more conditions, it should be understood that the method may be repeated in multiple repetitions such that, during the repetitions, all conditions determining the steps in the method are satisfied in different repetitions of the method. For example, if a method requires performing a first step (if a condition is satisfied) and a second step (if a condition is not satisfied), those skilled in the art will know that the stated steps are repeated until both conditions are satisfied and not satisfied (in no particular order). Thus, a method described as having one or more steps depending on the satisfaction of one or more conditions can be rewritten as a method that repeats until each condition described in the method is satisfied. However, this does not require the system or computer-readable medium to declare that the system or computer-readable medium contains instructions for performing discretionary operations based on the satisfaction of the corresponding one or more conditions, and thus to determine whether possible conditions have been satisfied without explicitly repeating the steps of the method until all conditions determining the steps in the method are satisfied. Those skilled in the art will also understand that, similar to methods having discretionary steps, a system or computer-readable storage medium may repeat the steps of the method multiple times as needed to ensure that all discretionary steps have been performed.

[0054] Although the following description uses the terms "first," "second," etc., to describe various elements, these elements should not be limited by the terms. These terms are only used to distinguish one element from another. For example, a first touch may be named a second touch and similarly, a second touch may be named a first touch, without departing from the scope of the various described embodiments. Both the first touch and the second touch are touches, but they are not the same touch.

[0055] The terminology used in the description of the various embodiments herein is for the purpose of describing particular embodiments only and is not intended to be limiting. As used in the description of the various embodiments and the appended claims, the singular forms “a” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will also be understood that the term “and / or” as used herein refers to and covers any and all possible combinations of one or more of the associated listed items. It will also be understood that the terms “comprising” and / or “including” as used in this specification specify the presence of the stated features, integers, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof.

[0056] Depending on the context, the term "if" may optionally be interpreted as meaning "when," "at," or "in response to determination" or "in response to detection." Similarly, depending on the context, the phrases "if determination..." or "if detection [the stated condition or event]" may optionally be interpreted as meaning "in response to determination..." or "in response to detection [the stated condition or event]."

[0057] This document describes implementations of electronic devices, user interfaces for such devices, and associated processes for using such devices. In some implementations, the device is a portable communication device, such as a mobile phone, that also includes other functionalities such as PDA and / or music player functionality. Exemplary implementations of portable multi-functional devices include, but are not limited to, those from Apple Inc. (Cupertino, California). Devices, iPod Equipment, and Device. Optionally, other portable electronic devices may be used, such as laptops or tablets with touch-sensitive surfaces (e.g., touchscreen displays and / or touchpads). It should also be understood that in some embodiments, the device is not a portable communication device, but a desktop computer with touch-sensitive surfaces (e.g., touchscreen displays and / or touchpads). In some embodiments, the electronic device is a computer system that communicates with a display generating component (e.g., via wireless or wired communication). The display generating component is configured to provide visual output, such as a display via a CRT monitor, a display via an LED monitor, or a display via image projection. In some embodiments, the display generating component is integrated with the computer system. In some embodiments, the display generating component is separate from the computer system. As used herein, “display” content includes displaying content (e.g., video data rendered or decoded by display controller 156) by transmitting data (e.g., image data or video data) to an integrated or external display generating component via a wired or wireless connection to visually generate content.

[0058] In the following discussion, an electronic device including a display and a touch-sensitive surface is described. However, it should be understood that the electronic device may optionally include one or more other physical user interface devices, such as a physical keyboard, mouse, and / or joystick.

[0059] The device typically supports a variety of applications, such as one or more of the following: drawing applications, presentation applications, word processing applications, website creation applications, disk editing applications, spreadsheet applications, game applications, phone applications, video conferencing applications, email applications, instant messaging applications, fitness support applications, photo management applications, digital camera applications, digital video camcorder applications, web browsing applications, digital music player applications, and / or digital video player applications.

[0060] Various applications running on the device optionally use at least one common physical user interface device, such as a touch-sensitive surface. One or more functions of the touch-sensitive surface and the corresponding information displayed on the device are optionally adjusted and / or varied for different applications, and / or adjusted and / or varied within the respective applications. In this way, the device's common physical architecture (such as the touch-sensitive surface) optionally utilizes a user interface that is intuitive and clear to the user to support various applications.

[0061] Now let’s turn our attention to implementation schemes for portable devices with touch-sensitive displays. Figure 1A This is a block diagram illustrating a portable multi-functional device 100 with a touch-sensitive display system 112 according to some embodiments. The touch-sensitive display system 112 is sometimes referred to as a “touchscreen” for convenience, and is sometimes called or referred to as a “touchscreen display” or “touchscreen monitor.” Device 100 includes a memory 102 (which optionally includes one or more computer-readable storage media), a memory controller 122, one or more processing units (CPUs) 120, a peripheral interface 118, RF circuitry 108, audio circuitry 110, a speaker 111, a microphone 113, an input / output (I / O) subsystem 106, other input control devices 116, and an external port 124. Device 100 optionally includes one or more optical sensors 164. Device 100 optionally includes one or more contact strength sensors 165 for detecting the intensity of contact on device 100 (e.g., a touch-sensitive surface, such as the touch-sensitive display system 112 of device 100). Device 100 optionally includes one or more haptic output generators 167 for generating haptic output on device 100 (e.g., generating haptic output on a touch-sensitive surface such as the touch-sensitive display system 112 of device 100 or the touchpad 355 of device 300). These components optionally communicate via one or more communication buses or signal lines 103.

[0062] As used in this specification and claims, the term "intensity" of contact on a tactile surface refers to the force or pressure (force per unit area) of a contact (e.g., finger contact) on a tactile surface, or to a substitute (alternative) for the force or pressure of a contact on a tactile surface. The intensity of contact has a range of values ​​that includes at least four different values ​​and more typically hundreds of different values ​​(e.g., at least 256). The intensity of contact is optionally determined (or measured) using various methods and various sensors or combinations of sensors. For example, one or more force sensors below or adjacent to the tactile surface are optionally used to measure the force at different points on the tactile surface. In some embodiments, force measurements from multiple force sensors are combined (e.g., weighted average) to determine the estimated contact force. Similarly, the pressure-sensitive tip of a stylus is optionally used to determine the pressure of the stylus on the tactile surface. Alternatively, the size and / or variation of the contact area detected on the touch-sensitive surface, the capacitance and / or variation of the touch-sensitive surface near the contact, and / or the resistance and / or variation of the touch-sensitive surface near the contact may optionally be used as substitutes for the force or pressure of the contact on the touch-sensitive surface. In some embodiments, the substitute measurement of the contact force or pressure is used directly to determine whether an intensity threshold (e.g., the intensity threshold is described in units corresponding to the substitute measurement) has been exceeded. In some embodiments, the substitute measurement of the contact force or pressure is converted into an estimated force or pressure, and the estimated force or pressure is used to determine whether an intensity threshold (e.g., the intensity threshold is a pressure threshold measured in units of pressure) has been exceeded. Using the intensity of the contact as an attribute of user input allows the user to access additional device functions that would otherwise be inaccessible to the user on a smaller device with limited physical space, which is used (e.g., on a touch-sensitive display) to display an indication and / or receive user input (e.g., via a touch-sensitive display, touch-sensitive surface, or physical / mechanical controls, such as knobs or buttons).

[0063] As used in this specification and claims, the term "haptic output" refers to a physical displacement of the device relative to a previous position of the device, a physical displacement of a component of the device (e.g., a touch-sensitive surface) relative to another component of the device (e.g., the housing), or a displacement of a component relative to the center of mass of the device, which is detected by the user using the user's tactile sense. For example, when the device or a component of the device comes into contact with a touch-sensitive surface (e.g., a finger, palm, or other part of the user's hand), the haptic output generated by the physical displacement will be interpreted by the user as a tactile sensation corresponding to a perceived change in the physical characteristics of the device or a component of the device. For example, movement of a touch-sensitive surface (e.g., a touch-sensitive display or touchpad) may optionally be interpreted by the user as a "press-click" or "release-click" on a physically actuated button. In some cases, the user will feel a tactile sensation, such as a "press-click" or "release-click," even when a physically actuated button associated with a touch-sensitive surface that has been physically pressed (e.g., displaced) by the user's movement does not move. For example, even when the smoothness of the tactile surface remains unchanged, the movement of the tactile surface can optionally be interpreted or sensed by the user as the "roughness" of the tactile surface. While such interpretations of touch by users will be limited by the individualized sensory perceptions of the user, many sensory perceptions of touch are common to most users. Therefore, when a tactile output is described as corresponding to a specific sensory perception of a user (e.g., "press click", "release click", "roughness"), unless otherwise stated, the generated tactile output corresponds to a physical displacement of the device or its components that will generate the sensory perception of a typical (or ordinary) user.

[0064] It should be understood that device 100 is merely an example of a portable multifunctional device, and device 100 may optionally have more or fewer components than those shown, may optionally combine two or more components, or may optionally have different configurations or arrangements of these components. Figure 1A The various components shown are implemented in hardware, software, or a combination of both, including one or more signal processing and / or application-specific integrated circuits.

[0065] Memory 102 optionally includes high-speed random access memory and also optionally includes non-volatile memory, such as one or more disk storage devices, flash memory devices, or other non-volatile solid-state memory devices. Memory controller 122 optionally controls other components of device 100 to access memory 102.

[0066] Peripheral interface 118 can be used to couple the device's input and output peripherals to CPU 120 and memory 102. The one or more processors 120 run or execute various software programs (such as computer programs (e.g., including instructions)) and / or instruction sets stored in memory 102 to perform various functions of device 100 and process data. In some embodiments, peripheral interface 118, CPU 120, and memory controller 122 are optionally implemented on a single chip, such as chip 104. In some other embodiments, they are optionally implemented on separate chips.

[0067] RF (Radio Frequency) circuit 108 receives and transmits RF signals, also known as electromagnetic signals. RF circuit 108 converts electrical signals into electromagnetic signals and vice versa, and communicates with communication networks and other communication devices via these electromagnetic signals. RF circuit 108 optionally includes well-known circuitry for performing these functions, including but not limited to antenna systems, RF transceivers, one or more amplifiers, tuners, one or more oscillators, digital signal processors, codec chipsets, Subscriber Identity Module (SIM) cards, memory, etc. RF circuit 108 optionally communicates wirelessly with networks and other devices, such as the Internet (also known as the World Wide Web (WWW)), intranets, and / or wireless networks (such as cellular telephone networks, wireless local area networks (LANs), and / or metropolitan area networks (MANs)). RF circuit 108 optionally includes well-known circuitry for detecting near-field communication (NFC) fields, such as via near-field communication radio components. Wireless communication may optionally employ any of a variety of communication standards, protocols, and technologies, including but not limited to Global System for Mobile Communications (GSM), Enhanced Data GSM Environment (EDGE), High-Speed ​​Downlink Packet Access (HSDPA), High-Speed ​​Uplink Packet Access (HSUPA), Evolution, Pure Data (EV-DO), HSPA, HSPA+, Dual-Unit HSPA (DC-HSPDA), Long Term Evolution (LTE), Near Field Communication (NFC), Wideband Code Division Multiple Access (W-CDMA), Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Bluetooth, Bluetooth Low Energy (BTLE), and Wi-Fi (e.g., IEEE 802.11a, IEEE 802.11b, IEEE 802.11g, IEEE...). 802.11n and / or IEEE 802.11ac), Voice over Internet Protocol (VoIP), Wi-MAX, email protocols (e.g., Internet Messaging Access Protocol (IMAP) and / or Post Office Protocol (POP)), instant messaging (e.g., Extensible Messaging and Presence Protocol (XMPP), Session Initiation Protocol for Instant Messaging and Presence with Extended Utility (SIMPLE), Instant Messaging and Presence Service (IMPS)), and / or Short Message Service (SMS), or any other suitable communication protocol that has not been developed as of the date of this document submission.

[0068] Audio circuitry 110, speaker 111, and microphone 113 provide an audio interface between the user and device 100. Audio circuitry 110 receives audio data from peripheral interface 118, converts the audio data into electrical signals, and transmits the electrical signals to speaker 111. Speaker 111 converts the electrical signals into sound waves that are audible to humans. Audio circuitry 110 also receives electrical signals converted from sound waves by microphone 113. Audio circuitry 110 converts the electrical signals into audio data and transmits the audio data to peripheral interface 118 for processing. Audio data is optionally retrieved by peripheral interface 118 from and / or transmitted to memory 102 and / or RF circuitry 108. In some embodiments, audio circuitry 110 also includes a headset jack (e.g., ...). Figure 2 (212 in the text). The headset jack provides an interface between the audio circuitry 110 and a removable audio input / output peripheral device, such as an output-only headphone or a headset with both output (e.g., a single-ear or dual-ear headphone) and input (e.g., a microphone).

[0069] I / O subsystem 106 couples input / output peripherals on device 100, such as touchscreen 112 and other input control devices 116, to peripheral interface 118. I / O subsystem 106 optionally includes display controller 156, optical sensor controller 158, depth camera controller 169, intensity sensor controller 159, haptic feedback controller 161, and one or more input controllers 160 for other input or control devices. The one or more input controllers 160 receive electrical signals from / send electrical signals to the other input control device 116. The other input control device 116 optionally includes physical buttons (e.g., push-buttons, rocker buttons, etc.), dial pads, slide switches, joysticks, click dials, etc. In some embodiments, input controller 160 is optionally coupled to (or not coupled to) any of the following: keyboard, infrared port, USB port, and pointing device such as mouse. One or more buttons (e.g., Figure 2 Optionally, 208) includes an increase / decrease button for volume control of speaker 111 and / or microphone 113. The one or more buttons optionally include a push-button (e.g., Figure 2(Ref. 206 in the original text). In some embodiments, the electronic device is a computer system that communicates with one or more input devices (e.g., via wireless communication, via wired communication). In some embodiments, the one or more input devices include a touch-sensitive surface (e.g., a touchpad, as part of a touch-sensitive display). In some embodiments, the one or more input devices include one or more camera sensors (e.g., one or more optical sensors 164 and / or one or more depth camera sensors 175), such as for tracking user gestures (e.g., hand gestures) as input. In some embodiments, the one or more input devices are integrated with the computer system. In some embodiments, the one or more input devices are separate from the computer system.

[0070] A quick press of the push button optionally disengages the touchscreen 112 from its lock or optionally initiates a process of unlocking the device using gestures on the touchscreen, as described in U.S. Patent Application 11 / 322,549 (i.e., U.S. Patent No. 7,657,849), filed December 23, 2005, entitled "Unlocking a Device by Performing Gestures on an Unlock Image," the entire contents of which are incorporated herein by reference. A long press of the push button (e.g., 206) optionally powers the device 100 on or off. The function of one or more buttons is optionally user-customizable. The touchscreen 112 is used to implement virtual buttons or soft buttons and one or more soft keyboards.

[0071] The touch-sensitive display 112 provides input and output interfaces between the device and the user. The display controller 156 receives electrical signals from and / or sends electrical signals to the touchscreen 112. The touchscreen 112 displays visual output to the user. The visual output optionally includes graphics, text, icons, video, and any combination thereof (collectively, "graphics"). In some embodiments, some or all of the visual output optionally corresponds to user interface objects.

[0072] Touchscreen 112 has a touch-sensitive surface, sensor, or sensor array that accepts input from a user based on tactile and / or haptic contact. Touchscreen 112 and display controller 156 (along with any associated modules and / or instruction set in memory 102) detect contact on touchscreen 112 (and any movement or interruption of that contact) and translate the detected contact into interaction with user interface objects (e.g., one or more soft keys, icons, web pages, or images) displayed on touchscreen 112. In an exemplary embodiment, the contact point between touchscreen 112 and the user corresponds to the user's finger.

[0073] Touchscreen 112 optionally employs LCD (Liquid Crystal Display) technology, LPD (Light Emitting Polymer Display) technology, or LED (Light Emitting Diode) technology, but other display technologies are used in other embodiments. Touchscreen 112 and display controller 156 optionally employ any of a variety of touch sensing technologies now known or to be developed hereafter, along with other proximity sensor arrays or other elements for determining one or more points of contact with touchscreen 112, to detect contact and any movement or interruption thereof. These various touch sensing technologies include, but are not limited to, capacitive, resistive, infrared, and surface acoustic wave technologies. In an exemplary embodiment, projected mutual capacitance sensing technology is used, such as that from Apple Inc. (Cupertino, California). and iPod The technology used.

[0074] In some embodiments of the touchscreen 112, the touch-sensitive display optionally resembles a multi-touch touchpad described in the following U.S. patents: 6,323,846 (Westerman et al.), 6,570,557 (Westerman et al.), and / or 6,677,932 (Westerman et al.) and / or U.S. Patent Publication 2002 / 0015024A1, each of which is incorporated herein by reference in its entirety. However, the touchscreen 112 displays visual output from the device 100, while the touch-sensitive touchpad does not provide visual output.

[0075] The touch-sensitive display in some embodiments of the touchscreen 112 is described in the following applications: (1) U.S. Patent Application No. 11 / 381,313, filed May 2, 2006, “Multipoint Touch Surface Controller”; (2) U.S. Patent Application No. 10 / 840,862, filed May 6, 2004, “Multipoint Touchscreen”; (3) U.S. Patent Application No. 10 / 903,964, filed July 30, 2004, “Gestures For Touch Sensitive Input Devices”; (4) U.S. Patent Application No. 11 / 048,264, filed January 31, 2005, “Gestures For Touch Sensitive Input Devices”; and (5) U.S. Patent Application No. 11 / 038,590, filed January 18, 2005, “Mode-Based Graphical User Interfaces For Touch Sensitive Input”. (6) U.S. Patent Application No. 11 / 228,758, filed September 16, 2005, “Virtual Input Device Placement On A Touch Screen User Interface”; (7) U.S. Patent Application No. 11 / 228,700, filed September 16, 2005, “Operation Of A Computer With A Touch Screen Interface”; (8) U.S. Patent Application No. 11 / 228,737, filed September 16, 2005, “Activating Virtual Keys Of A Touch-Screen Virtual Keyboard”; and (9) U.S. Patent Application No. 11 / 367,749, filed March 3, 2006, “Multi-Functional Hand-Held Device”. The full text of all these applications is incorporated herein by reference.

[0076] Touchscreen 112 optionally has a video resolution exceeding 100 dpi. In some embodiments, the touchscreen has a video resolution of approximately 160 dpi. Users optionally use any suitable object or accessory such as a stylus, finger, etc., to interact with touchscreen 112. In some embodiments, the user interface is designed to operate primarily through finger-based touch and gestures, which may be less precise than stylus-based input due to the larger contact area of ​​a finger on the touchscreen. In some embodiments, the device translates coarse finger-based input into precise pointer / cursor positions or commands to perform the user-desired actions.

[0077] In some embodiments, in addition to the touchscreen, device 100 optionally includes a touchpad for activating or deactivating specific functions. In some embodiments, the touchpad is a touch-sensitive area of ​​the device that, unlike the touchscreen, does not display visual output. Optionally, the touchpad is a touch-sensitive surface separate from the touchscreen 112, or an extension of the touch-sensitive surface formed by the touchscreen.

[0078] The device 100 also includes a power system 162 for supplying power to various components. The power system 162 optionally includes a power management system, one or more power sources (e.g., batteries, alternating current (AC)), a recharging system, a power fault detection circuit, a power converter or inverter, a power status indicator (e.g., light-emitting diodes (LEDs)), and any other components associated with the generation, management, and distribution of power in the portable device.

[0079] The device 100 may optionally also include one or more optical sensors 164. Figure 1AAn optical sensor 164 is shown coupled to an optical sensor controller 158 in the I / O subsystem 106. The optical sensor 164 optionally includes a charge-coupled device (CCD) or a complementary metal-oxide-semiconductor (CMOS) phototransistor. The optical sensor 164 receives light projected through one or more lenses from the environment and converts the light into data representing an image. In conjunction with an imaging module 143 (also called a camera module), the optical sensor 164 optionally captures still images or video. In some embodiments, the optical sensor is located on the rear of the device 100, opposite to a touchscreen display 112 on the front of the device, allowing the touchscreen display to be used as a viewfinder for still image and / or video image acquisition. In some embodiments, the optical sensor is located on the front of the device, allowing images of the user to be optionally acquired for video conferencing while the user views other video conferencing participants on the touchscreen display. In some embodiments, the position of the optical sensor 164 can be changed by the user (e.g., by rotating the lenses and sensor within the device housing), allowing a single optical sensor 164 to be used in conjunction with the touchscreen display for both video conferencing and still image and / or video image acquisition.

[0080] The device 100 optionally also includes one or more depth camera sensors 175. Figure 1A A depth camera sensor is shown coupled to a depth camera controller 169 in I / O subsystem 106. Depth camera sensor 175 receives data from the environment to create a 3D model of an object (e.g., a face) within the scene from a viewpoint (e.g., the depth camera sensor). In some embodiments, in conjunction with imaging module 143 (also referred to as a camera module), depth camera sensor 175 may optionally be used to determine depth maps of different portions of an image captured by imaging module 143. In some embodiments, the depth camera sensor is located at the front of device 100, such that user images with depth information are optionally acquired for video conferencing while the user views other video conferencing participants on a touchscreen display, and selfies with depth map data are captured. In some embodiments, depth camera sensor 175 is located at the rear of the device, or both the rear and front of device 100. In some embodiments, the position of depth camera sensor 175 may be changed by the user (e.g., by rotating a lens and sensor within the device housing), such that depth camera sensor 175 is used in conjunction with a touchscreen display for both video conferencing and still image and / or video image acquisition.

[0081] The device 100 may optionally also include one or more contact strength sensors 165. Figure 1AA contact strength sensor is shown coupled to a strength sensor controller 159 in I / O subsystem 106. The contact strength sensor 165 optionally includes one or more piezoresistive strain gauges, capacitive force sensors, electro-force sensors, piezoelectric sensors, optical force sensors, capacitive touch-sensitive surfaces, or other strength sensors (e.g., sensors for measuring the force (or pressure) of contact on a touch-sensitive surface). The contact strength sensor 165 receives contact strength information (e.g., pressure information or a substitute for pressure information) from the environment. In some embodiments, at least one contact strength sensor is arranged juxtaposed with or adjacent to a touch-sensitive surface (e.g., touch-sensitive display system 112). In some embodiments, at least one contact strength sensor is located on the rear of device 100, opposite to the touchscreen display 112 located on the front of device 100.

[0082] The device 100 may optionally also include one or more proximity sensors 166. Figure 1A A proximity sensor 166 coupled to a peripheral device interface 118 is shown. Alternatively, the proximity sensor 166 may optionally be coupled to an input controller 160 in an I / O subsystem 106. The proximity sensor 166 may optionally perform as described in the following U.S. patent applications: 11 / 241,839, entitled "Proximity Detector In Handheld Device"; 11 / 240,788, entitled "Proximity Detector In Handheld Device"; 11 / 620,702, entitled "Using Ambient Light Sensor To Augment Proximity Sensor Output"; 11 / 586,862, entitled "Automated Response To And Sensing Of User Activity In Portable Devices"; and 11 / 638,251, entitled "Methods And Systems For Automatic Configuration Of Peripherals", the entire contents of which are incorporated herein by reference. In some implementations, the proximity sensor is turned off and the touchscreen 112 is disabled when the multifunction device is placed near the user's ear (e.g., when the user is making a phone call).

[0083] The device 100 may optionally also include one or more tactile output generators 167. Figure 1AA haptic output generator coupled to a haptic feedback controller 161 in I / O subsystem 106 is shown. The haptic output generator 167 optionally includes one or more electroacoustic devices such as speakers or other audio components; and / or electromechanical devices for converting energy into linear motion, such as motors, solenoids, electroactive polymers, piezoelectric actuators, electrostatic actuators, or other haptic output generating components (e.g., components for converting electrical signals into haptic outputs on the device). A contact intensity sensor 165 receives haptic feedback generation instructions from a haptic feedback module 133 and generates a haptic output on device 100 that can be felt by a user of device 100. In some embodiments, at least one haptic output generator is juxtaposed or adjacent to a haptic surface (e.g., haptic display system 112) and optionally generates the haptic output by moving the haptic surface vertically (e.g., in / outward from the surface of device 100) or laterally (e.g., backward and forward in the same plane as the surface of device 100). In some embodiments, at least one haptic output generator sensor is located on the rear of the device 100, opposite to the touch screen display 112 located on the front of the device 100.

[0084] The device 100 may optionally also include one or more accelerometers 168. Figure 1A An accelerometer 168 coupled to a peripheral device interface 118 is shown. Alternatively, the accelerometer 168 may be coupled to an input controller 160 in an I / O subsystem 106. The accelerometer 168 may optionally perform as described in the following U.S. Patent Publications: 20050190059, entitled "Acceleration-based Theft Detection System for Portable Electronic Devices" and 20060017692, entitled "Methods And Apparatuses For Operating A Portable DeviceBased On An Accelerometer," both of which are incorporated herein by reference in their entirety. In some embodiments, information is displayed on a touchscreen display in portrait or landscape view based on analysis of data received from one or more accelerometers. Device 100 may optionally include, in addition to the accelerometer 168, a magnetometer and a GPS (or GLONASS or other global navigation system) receiver for acquiring information about the location and orientation (e.g., portrait or landscape) of device 100.

[0085] In some embodiments, the software components stored in memory 102 include an operating system 126, a communication module (or instruction set) 128, a contact / motion module (or instruction set) 130, a graphics module (or instruction set) 132, a text input module (or instruction set) 134, a Global Positioning System (GPS) module (or instruction set) 135, and an application program (or instruction set) 136. Furthermore, in some embodiments, memory 102 ( Figure 1A ) or 370 ( Figure 3 Storage device / global internal state 157, such as Figure 1A and Figure 3 As shown in the figure. Device / global internal state 157 includes one or more of the following: active application state, which indicates which applications (if any) are currently active; display state, indicating what applications, views or other information occupy various areas of the touch screen display 112; sensor state, including information obtained from the device's various sensors and input control devices 116; and position information relating to the device's position and / or orientation.

[0086] The operating system 126 (e.g., Darwin, RTXC, LINUX, UNIX, OS X, iOS, WINDOWS, or embedded operating systems such as VxWorks) includes various software components and / or drivers for controlling and managing general system tasks (e.g., memory management, storage device control, power management, etc.) and facilitates communication between various hardware and software components.

[0087] The communication module 128 facilitates communication with other devices via one or more external ports 124 and includes various software components for processing data received by the RF circuitry 108 and / or the external ports 124. The external ports 124 (e.g., Universal Serial Bus (USB), FireWire, etc.) are adapted to be directly coupled to other devices or indirectly coupled via a network (e.g., the Internet, wireless LAN, etc.). In some embodiments, the external port is connected to… (Trademark of Apple Inc.) The same or similar and / or compatible multi-pin (e.g., 30-pin) connectors used in Apple Inc. devices.

[0088] The contact / motion module 130 optionally detects contact with the touchscreen 112 (in conjunction with the display controller 156) and other touch-sensitive devices (e.g., touchpads or physical click-based rotary dials). The contact / motion module 130 includes various software components for performing various operations related to contact detection, such as determining whether a contact has occurred (e.g., detecting a finger press event), determining the contact intensity (e.g., the force or pressure of the contact, or an alternative to force or pressure), determining whether there is movement of the contact and tracking movement on the touch-sensitive surface (e.g., detecting one or more finger drag events), and determining whether the contact has stopped (e.g., detecting a finger lift event or a contact break). The contact / motion module 130 receives contact data from the touch-sensitive surface. Determining the movement of the contact point optionally includes determining the rate (magnitude), velocity (magnitude and direction), and / or acceleration (change in magnitude and / or direction) of the contact point, the movement of which is represented by a series of contact data. These operations are optionally applied to single-point contact (e.g., single-finger contact) or multi-point simultaneous contact (e.g., "multi-touch" / multiple-finger contact). In some implementations, the contact / motion module 130 and the display controller 156 detect contact on the touchpad.

[0089] In some implementations, the contact / motion module 130 uses a set of one or more intensity thresholds to determine whether an operation has been performed by a user (e.g., determining whether the user has “clicked” an icon). In some implementations, at least a subset of the intensity thresholds is determined based on software parameters (e.g., the intensity thresholds are not determined by the activation threshold of a specific physical actuator and can be adjusted without changing the physical hardware of device 100). For example, the mouse “click” threshold of a touchpad or touchscreen can be set to any threshold in a wide range of predefined thresholds without changing the touchpad or touchscreen display hardware. Additionally, in some specific implementations, the user of the device is provided with software settings for adjusting one or more intensity thresholds in a set (e.g., by adjusting the individual intensity thresholds and / or by adjusting multiple intensity thresholds at once using system-level clicks on the “intensity” parameter).

[0090] The touch / motion module 130 optionally detects gesture input performed by the user. Different gestures on a touch-sensitive surface have different contact patterns (e.g., different movements, timings, and / or intensities of the detected contact). Therefore, gestures are optionally detected by detecting specific contact patterns. For example, detecting a finger tap gesture includes detecting a finger press event and then detecting a finger lift-off (lift-away) event at the same (or substantially the same) location as the finger press event (e.g., at the location of an icon). As another example, detecting a finger swipe gesture on a touch-sensitive surface includes detecting a finger press event, then detecting one or more finger drag events, and subsequently detecting a finger lift-off (lift-away) event.

[0091] The graphics module 132 includes various known software components for rendering and displaying graphics on the touchscreen 112 or other displays, including components for altering the visual impact of the displayed graphics (e.g., brightness, transparency, saturation, contrast, or other visual properties). As used herein, the term "graphics" includes any object that can be displayed to a user, including but not limited to text, web pages, icons (such as user interface objects including soft keys), digital images, videos, animations, etc.

[0092] In some implementations, the graphics module 132 stores data representing the graphics to be used. Each graphic is optionally assigned a corresponding code. The graphics module 132 receives one or more codes from an application or the like to specify the graphic to be displayed, and, if necessary, also receives coordinate data and other graphic attribute data, and then generates screen image data for output to the display controller 156.

[0093] The haptic feedback module 133 includes various software components for generating instructions which are used by the haptic output generator 167 to generate haptic output at one or more locations on the device 100 in response to user interaction with the device 100.

[0094] Optionally, the text input module 134, a component of the graphics module 132, provides a soft keyboard for entering text in various applications (e.g., the contact module 137, the email client module 140, the IM module 141, the browser module 147, and any other application that requires text input).

[0095] GPS module 135 determines the location of the device and provides that information for use in various applications (e.g., to telephone module 138 for use in location-based dialing; to camera module 143 as image / video metadata; and to applications that provide location-based services, such as weather widgets, local yellow pages widgets, and map / navigation widgets).

[0096] Application 136 optionally includes the following modules (or instruction sets) or subsets or supersets thereof:

[0097] • Contacts module 137 (sometimes called address book or contact list);

[0098] • Telephone module 138;

[0099] • Video conferencing module 139;

[0100] • Email client module 140;

[0101] • Instant Messaging (IM) module 141;

[0102] Fitness support module 142;

[0103] • Camera module 143 for still images and / or video images;

[0104] • Image management module 144;

[0105] • Video player module;

[0106] Music player module;

[0107] • Browser module 147;

[0108] • Calendar module 148;

[0109] • Widget module 149, which optionally includes one or more of the following: weather widget 149-1, stock market widget 149-2, calculator widget 149-3, alarm clock widget 149-4, dictionary widget 149-5, and other widgets acquired by the user, and user-created widgets 149-6;

[0110] • Widget creator module 150 for creating user-created widgets 149-6;

[0111] • Search module 151;

[0112] • Video and music player module 152, which combines a video player module and a music player module;

[0113] • Notes module 153;

[0114] • Map module 154; and / or

[0115] • Online video module 155.

[0116] Examples of other applications 136 that may be optionally stored in memory 102 include other word processing applications, other image editing applications, drawing applications, rendering applications, Java-enabled applications, encryption, digital rights management, speech recognition, and speech duplication.

[0117] In conjunction with the touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, and text input module 134, the contact module 137 is optionally used to manage an address book or contact list (e.g., in the application internal state 192 of the contact module 137 stored in memory 102 or memory 370), including: adding one or more names to the address book; deleting names from the address book; associating phone numbers, email addresses, physical addresses, or other information with names; associating images with names; categorizing and classifying names; providing phone numbers or email addresses to initiate and / or facilitate communications via the telephone module 138, video conferencing module 139, email client module 140, or IM module 141; and so on.

[0118] Combining RF circuitry 108, audio circuitry 110, speaker 111, microphone 113, touchscreen 112, display controller 156, contact / motion module 130, graphics module 132, and text input module 134, telephone module 138 is optionally used to input character sequences corresponding to telephone numbers, access one or more telephone numbers in contact module 137, modify entered telephone numbers, dial corresponding telephone numbers, initiate conversations, and disconnect or hang up when a conversation is completed. As described above, wireless communication optionally uses any of a variety of communication standards, protocols, and technologies.

[0119] Combining RF circuitry 108, audio circuitry 110, speaker 111, microphone 113, touchscreen 112, display controller 156, optical sensor 164, optical sensor controller 158, contact / motion module 130, graphics module 132, text input module 134, contact module 137, and telephone module 138, video conferencing module 139 includes executable instructions to initiate, conduct, and terminate video conferences between the user and one or more other participants based on user instructions.

[0120] Incorporating RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, and text input module 134, email client module 140 includes executable instructions for creating, sending, receiving, and managing emails in response to user commands. Combined with image management module 144, email client module 140 makes it very easy to create and send emails containing still images or video images captured by camera module 143.

[0121] In conjunction with RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, and text input module 134, instant messaging module 141 includes executable instructions for: inputting a character sequence corresponding to an instant message, modifying previously input characters, transmitting a corresponding instant message (e.g., using Short Message Service (SMS) or Multimedia Messaging Service (MMS) protocols for telephone-based instant messaging or using XMPP, SIMPLE, or IMPS for internet-based instant messaging), receiving an instant message, and viewing a received instant message. In some embodiments, the transmitted and / or received instant messages optionally include graphics, photographs, audio files, video files, and / or other attachments supported in MMS and / or Enhanced Messaging Services (EMS). As used herein, "instant message" refers to both telephone-based messages (e.g., messages sent using SMS or MMS) and internet-based messages (e.g., messages sent using XMPP, SIMPLE, or IMPS).

[0122] Incorporating RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, text input module 134, GPS module 135, map module 154, and music player module, fitness support module 142 includes executable instructions for creating fitness activities (e.g., with time, distance, and / or calorie burning goals); communicating with fitness sensors (executive devices); receiving fitness sensor data; calibrating sensors used to monitor fitness; selecting and playing music for fitness activities; and displaying, storing, and transmitting fitness data.

[0123] In conjunction with the touchscreen 112, display controller 156, optical sensor 164, optical sensor controller 158, contact / motion module 130, graphics module 132, and image management module 144, the camera module 143 includes executable instructions for: capturing still images or videos (including video streams) and storing them in memory 102, modifying the characteristics of still images or videos, or deleting still images or videos from memory 102.

[0124] Incorporating the touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, text input module 134, and camera module 143, the image management module 144 includes executable instructions for arranging, modifying (e.g., editing), or otherwise manipulating, tagging, deleting, presenting (e.g., in a digital slideshow or album), and storing still images and / or video images.

[0125] Combining RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, and text input module 134, browser module 147 includes executable instructions for browsing the Internet according to user instructions, including searching, linking to, receiving, and displaying web pages or portions thereof, as well as links to attachments and other files on web pages.

[0126] Combining RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, text input module 134, email client module 140, and browser module 147, calendar module 148 includes executable instructions to create, display, modify, and store calendars and associated data (e.g., calendar entries, to-dos, etc.) according to user instructions.

[0127] In conjunction with RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, text input module 134, and browser module 147, widget module 149 is optionally a microapplication downloaded and used by a user (e.g., weather widget 149-1, stock market widget 149-2, calculator widget 149-3, alarm clock widget 149-4, and dictionary widget 149-5) or a user-created microapplication (e.g., user-created widget 149-6). In some embodiments, the widget includes HTML (Hypertext Markup Language) files, CSS (Cascading Style Sheets) files, and JavaScript files. In some embodiments, the widget includes XML (Extensible Markup Language) files and JavaScript files (e.g., Yahoo! widgets).

[0128] In conjunction with RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, text input module 134, and browser module 147, widget creator module 150 can optionally be used by the user to create widgets (e.g., to convert user-specified portions of a webpage into widgets).

[0129] In conjunction with the touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, and text input module 134, the search module 151 includes executable instructions for searching the memory 102 for text, music, sound, images, videos, and / or other files that match one or more search criteria (e.g., one or more user-specified search terms) according to user instructions.

[0130] Incorporating touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, audio circuitry 110, speaker 111, RF circuitry 108, and browser module 147, video and music player module 152 includes executable instructions allowing users to download and play recorded music and other sound files stored in one or more file formats such as MP3 or AAC files, as well as executable instructions for displaying, presenting, or otherwise playing back video (e.g., on touchscreen 112 or on an external display connected via external port 124). In some embodiments, device 100 optionally includes the functionality of an MP3 player such as an iPod (a trademark of Apple Inc.).

[0131] Incorporating the touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, and text input module 134, the note-taking module 153 includes executable instructions for creating and managing notes, to-do items, etc., according to user instructions.

[0132] Combining RF circuitry 108, touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, text input module 134, GPS module 135, and browser module 147, map module 154 is optionally used to receive, display, modify, and store maps and map-related data (e.g., driving directions, data related to shops and other points of interest at or near a specific location, and other location-based data) according to user instructions.

[0133] Incorporating touchscreen 112, display controller 156, touch / motion module 130, graphics module 132, audio circuitry 110, speaker 111, RF circuitry 108, text input module 134, email client module 140, and browser module 147, the online video module 155 includes instructions for performing the following actions: allowing users to access, browse, receive (e.g., via streaming and / or downloading), play back (e.g., on the touchscreen or on an external display connected via external port 124), send emails with links to specific online videos, and otherwise manage online videos in one or more file formats such as H.264. In some embodiments, an instant messaging module 141 is used instead of the email client module 140 to send links to specific online videos. Further descriptions of the online video application can be found in U.S. Provisional Patent Application No. 60 / 936,562, filed June 20, 2007, entitled “Portable Multifunction Device, Method, and Graphical User Interface for Playing Online Videos,” and U.S. Patent Application No. 11 / 968,067, filed December 31, 2007, both of which are incorporated herein by reference in their entirety.

[0134] Each of the above modules and applications corresponds to an executable set of instructions for performing one or more of the functions described above and the methods described in this patent application (e.g., computer-implemented methods and other information processing methods as described herein). These modules (e.g., instruction sets) need not be implemented as separate software programs (such as computer programs (e.g., including instructions)), processes, or modules; therefore, various subsets of these modules may optionally be combined or otherwise rearranged in various embodiments. For example, a video player module may optionally be combined with a music player module into a single module (e.g., Figure 1A (e.g., video and music player module 152). In some embodiments, memory 102 optionally stores subgroups of the aforementioned modules and data structures. Additionally, memory 102 optionally stores other modules and data structures not described above.

[0135] In some implementations, device 100 is a device on which the operation of a predefined set of functions is performed solely via a touchscreen and / or touchpad. By using a touchscreen and / or touchpad as the primary input control device for operating device 100, the number of physical input control devices (e.g., push-buttons, dials, etc.) on device 100 can be optionally reduced.

[0136] A predefined set of functions, uniquely performed via a touchscreen and / or touchpad, optionally includes navigation between user interfaces. In some embodiments, the touchpad, when touched by a user, navigates device 100 from any user interface displayed on device 100 to the main menu, home menu, or root menu. In such embodiments, a "menu button" is implemented using a touchpad. In some other embodiments, the menu button is a physical push-button or other physical input control device, rather than a touchpad.

[0137] Figure 1B This is a block diagram illustrating exemplary components for event processing according to some embodiments. In some embodiments, memory 102 ( Figure 1A ) or memory 370 ( Figure 3 This includes an event classifier 170 (e.g., in operating system 126) and a corresponding application 136-1 (e.g., any one of the aforementioned modules 137 to 151, 155, 380 to 390).

[0138] Event classifier 170 receives event information and determines the application 136-1 and application view 191 of application 136-1 to which the event information should be delivered. Event classifier 170 includes event monitor 171 and event dispatcher module 174. In some embodiments, application 136-1 includes application internal state 192, which indicates one or more current application views displayed on touch-sensitive display 112 when the application is active or executing. In some embodiments, device / global internal state 157 is used by event classifier 170 to determine which application(s) is currently active, and application internal state 192 is used by event classifier 170 to determine the application view 191 to which the event information should be delivered.

[0139] In some implementations, the application internal state 192 includes additional information such as one or more of the following: recovery information to be used when the application 136-1 resumes execution, user interface state information indicating that information is being displayed or ready to be displayed by the application 136-1, a state queue for enabling the user to return to the previous state or view of the application 136-1, and a repeat / undo queue for the user's previous actions.

[0140] Event monitor 171 receives event information from peripheral device interface 118. The event information includes information about sub-events (e.g., user touches on touch-sensitive display 112 as part of a multi-touch gesture). Peripheral device interface 118 transmits information it receives from I / O subsystem 106 or sensors such as proximity sensor 166, one or more accelerometers 168, and / or microphone 113 (via audio circuitry 110). The information received by peripheral device interface 118 from I / O subsystem 106 includes information from touch-sensitive display 112 or touch-sensitive surfaces.

[0141] In some implementations, event monitor 171 sends requests to peripheral device interface 118 at predetermined intervals. In response, peripheral device interface 118 transmits event information. In other implementations, peripheral device interface 118 transmits event information only when a significant event occurs (e.g., receiving input above a predetermined noise threshold and / or receiving input for a predetermined duration).

[0142] In some implementations, the event classifier 170 also includes a hit view determination module 172 and / or an activity event recognizer determination module 173.

[0143] When the touch-sensitive display 112 displays more than one view, the hit view determination module 172 provides a software process for determining where a sub-event has occurred within one or more views. A view consists of controls and other elements that the user can see on the display.

[0144] Another aspect of the user interface associated with an application is a set of views, sometimes referred to herein as application views or user interface windows, in which information is displayed and touch-based gestures occur. The application view (of the corresponding application) in which a touch is detected optionally corresponds to a procedural level within the application's procedural or view hierarchy. For example, the lowest-level view in which a touch is detected is optionally referred to as the hit view, and the set of events identified as correct input is optionally determined at least in part based on the hit view of the initial touch that initiates a touch-based gesture.

[0145] The hit view determination module 172 receives information related to sub-events of touch-based gestures. When an application has multiple views organized in a hierarchical structure, the hit view determination module 172 identifies the hit view as the lowest-level view in the hierarchical structure from which the sub-events should be processed. In most cases, the hit view is the lowest-level view in which the initiating sub-event (e.g., the first sub-event in a sequence of sub-events forming an event or potential event) occurs. Once the hit view is identified by the hit view determination module 172, the hit view typically receives all sub-events related to the same touch or input source to which it was identified as the hit view.

[0146] The activity event recognizer determination module 173 determines which views(s) within the view hierarchy should receive a specific sub-event sequence. In some embodiments, the activity event recognizer determination module 173 determines that only the hit view should receive the specific sub-event sequence. In other embodiments, the activity event recognizer determination module 173 determines that all views including the physical location of the sub-event are actively participating views, and therefore determines that all actively participating views should receive the specific sub-event sequence. In other embodiments, even if the touch sub-event is entirely confined to the area associated with a particular view, higher views in the hierarchy will still remain actively participating views.

[0147] Event assigner module 174 assigns event information to event identifiers (e.g., event identifier 180). In embodiments that include active event identifier determination module 173, event assigner module 174 delivers event information to the event identifier determined by active event identifier determination module 173. In some embodiments, event assigner module 174 stores event information in an event queue, which is retrieved by the corresponding event receiver 182.

[0148] In some embodiments, operating system 126 includes event classifier 170. Alternatively, application 136-1 includes event classifier 170. In yet another embodiment, event classifier 170 is a standalone module or part of another module (such as contact / motion module 130) stored in memory 102.

[0149] In some implementations, application 136-1 includes a plurality of event handlers 190 and one or more application views 191, each of which includes instructions for handling touch events occurring within a corresponding view of the application's user interface. Each application view 191 of application 136-1 includes one or more event recognizers 180. Typically, a corresponding application view 191 includes a plurality of event recognizers 180. In other implementations, one or more of the event recognizers 180 are part of a separate module, such as a user interface toolkit or a higher-level object from which application 136-1 inherits methods and other properties. In some implementations, a corresponding event handler 190 includes one or more of the following: a data updater 176, an object updater 177, a GUI updater 178, and / or event data 179 received from an event classifier 170. Event handlers 190 optionally utilize or invoke the data updater 176, the object updater 177, or the GUI updater 178 to update the application's internal state 192. Alternatively, one or more application views in application view 191 include one or more corresponding event handlers 190. Additionally, in some embodiments, one or more of data updater 176, object updater 177, and GUI updater 178 are included in the corresponding application view 191.

[0150] The corresponding event recognizer 180 receives event information (e.g., event data 179) from the event classifier 170 and identifies the event based on the event information. The event recognizer 180 includes an event receiver 182 and an event comparator 184. In some embodiments, the event recognizer 180 also includes at least one subset of metadata 183 and event delivery instructions 188 (which optionally include sub-event delivery instructions).

[0151] Event receiver 182 receives event information from event classifier 170. The event information includes information about sub-events, such as touch or touch movement. Depending on the sub-event, the event information also includes additional information, such as the location of the sub-event. When the sub-event involves touch movement, the event information optionally also includes the rate and direction of the sub-event. In some embodiments, the event includes the device rotating from one orientation to another (e.g., from a longitudinal orientation to a lateral orientation, or vice versa), and the event information includes corresponding information about the device's current orientation (also referred to as device orientation).

[0152] Event comparator 184 compares event information with predefined event or sub-event definitions and determines the event or sub-event based on the comparison, or determines or updates the state of the event or sub-event. In some embodiments, event comparator 184 includes event definition 186. Event definition 186 contains definitions of events (e.g., predefined sequences of sub-events), such as event 1 (187-1), event 2 (187-2), and others. In some embodiments, sub-events in event (187) include, for example, touch start, touch end, touch move, touch cancel, and multi-touch. In one example, event 1 (187-1) is defined as a double-click on a displayed object. For example, a double-click includes a first touch (touch start) of a predetermined duration on the displayed object, a first lift-off of a predetermined duration (touch end), a second touch (touch start) of a predetermined duration on the displayed object, and a second lift-off of a predetermined duration (touch end). In another example, event 2 (187-2) is defined as a drag on a displayed object. For example, dragging includes a touch (or contact) on the displayed object for a predetermined duration, movement of the touch on the touch-sensitive display 112, and lifting off the touch (end of touch). In some embodiments, the event also includes information for one or more associated event handlers 190.

[0153] In some implementations, the definition of event 187 includes a definition of an event for the corresponding user interface object. In some implementations, event comparator 184 performs a hit test to determine which user interface object is associated with the sub-event. For example, in an application view displaying three user interface objects on touch-sensitive display 112, when a touch is detected on touch-sensitive display 112, event comparator 184 performs a hit test to determine which of the three user interface objects is associated with the touch (sub-event). If each displayed object is associated with a corresponding event handler 190, the event comparator uses the result of the hit test to determine which event handler 190 should be activated. For example, event comparator 184 selects the event handler associated with the sub-event and the object that triggered the hit test.

[0154] In some implementations, the definition of the corresponding event (187) also includes a delay action that delays the delivery of event information until it has been determined whether the sub-event sequence actually corresponds to or does not correspond to the event type of the event recognizer.

[0155] When the corresponding event recognizer 180 determines that the sub-event sequence does not match any event in event definition 186, the corresponding event recognizer 180 enters an event impossible, event failed, or event ended state, after which subsequent sub-events based on touch gestures are ignored. In this case, other event recognizers (if any) that remain active in the hit view continue to track and process the ongoing sub-events based on touch gestures.

[0156] In some embodiments, the corresponding event recognizer 180 includes metadata 183 having configurable attributes, flags, and / or lists instructing how the event delivery system should perform sub-event delivery to actively participating event recognizers. In some embodiments, the metadata 183 includes configurable attributes, flags, and / or lists instructing how or how event recognizers can interact with each other. In some embodiments, the metadata 183 includes configurable attributes, flags, and / or lists instructing whether sub-events are delivered to different levels in a view or programmatic hierarchy.

[0157] In some implementations, when one or more specific sub-events of an event are identified, the corresponding event recognizer 180 activates the event handler 190 associated with the event. In some implementations, the corresponding event recognizer 180 delivers event information associated with the event to the event handler 190. Activating the event handler 190 is different from sending (and delaying) the sub-event to the corresponding hit view. In some implementations, the event recognizer 180 throws a flag associated with the identified event, and the event handler 190 associated with that flag retrieves the flag and executes a predefined process.

[0158] In some implementations, event delivery instruction 188 includes a sub-event delivery instruction that delivers event information about a sub-event without activating an event handler. Instead, the sub-event delivery instruction delivers the event information to an event handler associated with the sub-event sequence or to an actively participating view. The event handler associated with the sub-event sequence or the actively participating view receives the event information and executes a predetermined process.

[0159] In some implementations, data updater 176 creates and updates data used in application 136-1. For example, data updater 176 updates phone numbers used in contact module 137 or stores video files used in video player module. In some implementations, object updater 177 creates and updates objects used in application 136-1. For example, object updater 177 creates new user interface objects or updates the location of user interface objects. GUI updater 178 updates the GUI. For example, GUI updater 178 prepares display information and sends the display information to graphics module 132 for display on touch-sensitive display.

[0160] In some implementations, event handler 190 includes, or has access to, a data updater 176, an object updater 177, and a GUI updater 178. In some implementations, data updater 176, object updater 177, and GUI updater 178 are included in a single module of the corresponding application 136-1 or application view 191. In other implementations, they are included in two or more software modules.

[0161] It should be understood that the above discussion regarding event handling for user touch on a touch-sensitive display also applies to other forms of user input used to operate the multifunction device 100 using an input device, and not all user input is initiated on the touchscreen. For example, mouse movement and mouse button presses optionally in conjunction with single or multiple keyboard presses or holds; touch movements on the touchpad, such as taps, drags, scrolls, etc.; stylus input; device movement; verbal commands; detected eye movements; biometric input; and / or any combination thereof may optionally be used as input corresponding to sub-events that define the event to be identified.

[0162] Figure 2A portable multifunction device 100 with a touchscreen 112 is shown according to some embodiments. The touchscreen optionally displays one or more graphics within a user interface (UI) 200. In this embodiment and other embodiments described below, a user can select one or more graphics by gesturing over the graphics, for example, using one or more fingers 202 (not drawn to scale in the figure) or one or more styluses 203 (not drawn to scale in the figure). In some embodiments, selection of one or more graphics occurs when the user breaks contact with one or more graphics. In some embodiments, gestures optionally include one or more taps, one or more swipes (from left to right, from right to left, up and / or down), and / or scrolling (from right to left, from left to right, up and / or down) of a finger already in contact with the device 100. In some specific embodiments or in some cases, unintentional contact with a graphic does not select the graphic. For example, a swipe gesture over an application icon optionally does not select the corresponding application when the gesture corresponding to selection is a tap.

[0163] Device 100 optionally also includes one or more physical buttons, such as a "home" or menu button 204. As previously described, menu button 204 is optionally used to navigate to any application 136 of a set of applications optionally executed on device 100. Alternatively, in some embodiments, the menu button is implemented as a soft key in a GUI displayed on touchscreen 112.

[0164] In some embodiments, device 100 includes a touchscreen 112, a menu button 204, a push-button 206 for powering on / off and locking the device, one or more volume control buttons 208, a SIM card slot 210, a headset jack 212, and a docking / charging external port 124. The push-button 206 is optionally used to power on / off the device by pressing the button and holding it in the pressed state for a predefined time interval; to lock the device by pressing the button and releasing it before the predefined time interval has elapsed; and / or to unlock the device or initiate an unlocking process. In another embodiment, device 100 also accepts voice input via microphone 113 for activating or deactivating certain functions. Device 100 also optionally includes one or more contact strength sensors 165 for detecting the intensity of contact on the touchscreen 112, and / or one or more haptic output generators 167 for generating haptic outputs for a user of device 100.

[0165] Figure 3This is a block diagram of an exemplary multi-functional device with a display and a touch-sensitive surface according to some embodiments. Device 300 need not be portable. In some embodiments, device 300 is a laptop, desktop computer, tablet computer, multimedia player device, navigation device, educational device (such as a children's learning toy), gaming system, or control device (e.g., a home controller or industrial controller). Device 300 typically includes one or more processing units (CPUs) 310, one or more network or other communication interfaces 360, memory 370, and one or more communication buses 320 for interconnecting these components. The communication bus 320 optionally includes circuitry (sometimes referred to as a chipset) that interconnects system components and controls communication between system components. Device 300 includes an input / output (I / O) interface 330 with a display 340, which is typically a touchscreen display. The I / O interface 330 also optionally includes a keyboard and / or mouse (or other pointing device) 350 and a touchpad 355, and a haptic output generator 357 for generating haptic output on device 300 (e.g., similar to the reference above). Figure 1A The tactile output generator 167 and sensor 359 (e.g., optical sensor, accelerometer, proximity sensor, touch sensor and / or contact intensity sensor (similar to the one mentioned above)) are described. Figure 1A The contact strength sensor 165 is mentioned above. The memory 370 includes high-speed random access memory, such as DRAM, SRAM, DDRRAM, or other random access solid-state memory devices; and optionally includes non-volatile memory, such as one or more disk storage devices, optical disk storage devices, flash memory devices, or other non-volatile solid-state memory devices. The memory 370 optionally includes one or more storage devices located remotely from the CPU 310. In some embodiments, the memory 370 stores data with the portable multifunction device 100. Figure 1A The memory 370 stores programs, modules, and data structures similar to those in the memory 102 of the portable multifunction device 100, or subsets thereof. Additionally, the memory 370 optionally stores additional programs, modules, and data structures not present in the memory 102 of the portable multifunction device 100. For example, the memory 370 of the device 300 optionally stores a drawing module 380, a rendering module 382, ​​a word processing module 384, a website creation module 386, a disk editing module 388, and / or a spreadsheet module 390, while the portable multifunction device 100 (… Figure 1A The memory 102 may optionally not store these modules.

[0166] Figure 3Each of the elements described above is optionally stored in one or more memory devices of the previously mentioned memory devices. Each of the modules described above corresponds to a set of instructions for performing the functions described above. The modules or computer programs described above (e.g., instruction sets or including instructions) need not be implemented as separate software programs (such as computer programs (e.g., including instructions)), processes, or modules, and therefore various subsets of these modules are optionally combined or otherwise rearranged in various embodiments. In some embodiments, memory 370 optionally stores a subgroup of the modules and data structures described above. In addition, memory 370 optionally stores additional modules and data structures not described above.

[0167] Now let’s turn our attention to the implementation of the user interface, which is optionally implemented on, for example, a portable multifunction device 100.

[0168] Figure 4A An exemplary user interface for an application menu on a portable multifunction device 100 according to some embodiments is shown. A similar user interface is optionally implemented on device 300. In some embodiments, user interface 400 includes the following elements or a subset or superset thereof:

[0169] • Signal strength indicator 402 for wireless communications such as cellular signals and Wi-Fi signals;

[0170] • Time 404;

[0171] Bluetooth indicator 405;

[0172] • Battery status indicator 406;

[0173] • Tray icon 408 with icons for commonly used applications, such as:

[0174] The telephone module 138 has an icon 416 labeled "telephone", which optionally includes an indicator 414 indicating the number of missed calls or voicemail messages.

[0175] The email client module 140 has an icon 418 labeled "Mail", which optionally includes an indicator 410 for the number of unread emails;

[0176] The browser module 147 has an icon 420 labeled "Browser"; and

[0177] The video and music player module 152 (also known as the iPod module 152, a trademark of Apple Inc.) with an icon 422 labeled "iPod"; and

[0178] • Icons of other applications, such as:

[0179] Icon 424 of the οIM module 141, labeled "Message";

[0180] The icon 426 of the calendar module 148 is labeled "Calendar";

[0181] The icon 428 of the image management module 144 is labeled "photo";

[0182] The icon 430 of the camera module 143 is labeled "camera";

[0183] The icon 432 of the online video module 155 is labeled "Online Video";

[0184] The icon 434 labeled "Stock Market" in the Stock Market widget 149-2;

[0185] The icon 436 of the map module 154 is labeled "map";

[0186] The weather widget 149-1 has icon 438 labeled "weather";

[0187] The alarm clock widget 149-4 has an icon 440 labeled "clock";

[0188] The icon 442 of the fitness support module 142 is labeled "fitness support";

[0189] The icon 444 labeled "Notes" in the Notes module 153; and

[0190] The icon 446, labeled "Settings," is used to set the settings of the device 100 and its various applications 136.

[0191] It should be pointed out that, Figure 4A The icon labels shown are merely exemplary. For example, icon 422 of video and music player module 152 is labeled "Music" or "Music Player". Other labels may be optionally used for various application icons. In some embodiments, the label of a particular application icon includes the name of the application corresponding to that particular application icon. In some embodiments, the label of a particular application icon is different from the name of the application corresponding to that particular application icon.

[0192] Figure 4B A touch-sensitive surface 451 (e.g., separate from the display 450 (e.g., touchscreen display 112)) is shown. Figure 3 Devices such as tablets or touchpads (e.g., 355) Figure 3An exemplary user interface on the device 300. The device 300 also optionally includes one or more contact intensity sensors (e.g., one or more of the sensors 359) for detecting the intensity of contact on the tactile surface 451 and / or one or more tactile output generators 357 for generating tactile outputs for the user of the device 300.

[0193] While some examples of input on a reference touchscreen display 112 (which combines a touch-sensitive surface and a display) are given below, in some implementations the device detects input on a touch-sensitive surface separate from the display, such as... Figure 4B As shown in the diagram. In some embodiments, the touch-sensitive surface (e.g., Figure 4B 451) has a spindle (e.g., on the display (e.g., 450)). Figure 4B The spindle corresponding to 453 in the middle (e.g., Figure 4B (452 in the example). According to these embodiments, the device detects the position corresponding to the corresponding position on the display (e.g., in the example). Figure 4B In the middle, 460 corresponds to 468 and 462 corresponds to 470) is in contact with the touch-sensitive surface 451 (e.g., Figure 4B (460 and 462 in the text). Thus, when the touch-sensitive surface (e.g., ...) Figure 4B 451) and the display of a multi-functional device (e.g., Figure 4B When 450 is separated from the touch-sensitive surface, user input detected by the device on that touch-sensitive surface (e.g., touches 460 and 462 and their movement) is used by the device to manipulate the user interface on the display. It should be understood that similar methods may optionally be used for other user interfaces described herein.

[0194] Additionally, while the examples below are primarily given with reference to finger input (e.g., finger touch, single-finger tap, finger swipe), it should be understood that in some implementations, one or more of these finger inputs may be replaced by input from another input device (e.g., mouse-based input or stylus input). For example, a swipe gesture may optionally be replaced by a mouse click (e.g., instead of a touch), followed by movement of the cursor along the swipe path (e.g., instead of movement of the touch). Similarly, a tap gesture may optionally be replaced by a mouse click while the cursor is over the location of the tap gesture (e.g., instead of detection of touch, followed by cessation of touch detection). Likewise, when multiple user inputs are detected simultaneously, it should be understood that multiple computer mice may optionally be used simultaneously, or mouse and finger touch may optionally be used simultaneously.

[0195] Figure 5AAn exemplary personal electronic device 500 is illustrated. Device 500 includes a body 502. In some embodiments, device 500 may include components relative to devices 100 and 300 (e.g., Figures 1A to 4B Some or all of the features described herein. In some embodiments, device 500 has a touch-sensitive display 504, referred to below as touchscreen 504. As an alternative to or complement to touchscreen 504, device 500 has a display and a touch-sensitive surface. Similar to devices 100 and 300, in some embodiments, touchscreen 504 (or touch-sensitive surface) optionally includes one or more intensity sensors for detecting the intensity of an applied contact (e.g., touch). The one or more intensity sensors of touchscreen 504 (or touch-sensitive surface) can provide output data representing the intensity of the touch. The user interface of device 500 can respond to touches based on the intensity of the touch, meaning that touches of different intensities can invoke different user interface operations on device 500.

[0196] Exemplary techniques for detecting and processing touch intensity are found, for example, in the following related patent applications: International Patent Application Serial No. PCT / US2013 / 040061, filed May 8, 2013, entitled “Device, Method, and Graphical User Interface for Displaying User Interface Objects Corresponding to an Application,” published under WIPO Patent Publication No. WO / 2013 / 169849; and International Patent Application Serial No. PCT / US2013 / 069483, filed November 11, 2013, entitled “Device, Method, and Graphical User Interface for Transitioning Between Touch Input to Display Output Relationships,” published under WIPO Patent Publication No. WO / 2014 / 105276, each of which is incorporated herein by reference in its entirety.

[0197] In some embodiments, device 500 has one or more input mechanisms 506 and 508. Input mechanisms 506 and 508 (if included) may be physical. Examples of physical input mechanisms include push-buttons and rotatable mechanisms. In some embodiments, device 500 has one or more attachment mechanisms. Such attachment mechanisms (if included) allow device 500 to be attached to, for example, hats, glasses, earrings, necklaces, shirts, jackets, bracelets, watch straps, bangles, trousers, belts, shoes, wallets, backpacks, etc. These attachment mechanisms allow a user to wear device 500.

[0198] Figure 5B An exemplary personal electronic device 500 is depicted. In some embodiments, device 500 may include a reference retrieval system. Figure 1A , Figure 1B and Figure 3 Some or all of the components described herein. Device 500 has a bus 512 that operatively couples I / O portion 514 to one or more computer processors 516 and memory 518. I / O portion 514 may be connected to display 504, which may have touch-sensitive components 522 and optionally have an intensity sensor 524 (e.g., a contact intensity sensor). Furthermore, I / O portion 514 may be connected to communication unit 530 for receiving application and operating system data using Wi-Fi, Bluetooth, near field communication (NFC), cellular and / or other wireless communication technologies. Device 500 may include input mechanisms 506 and / or 508. For example, input mechanism 506 may optionally be a rotatable input device or a pressable input device and a rotatable input device. In some examples, input mechanism 508 may optionally be a button.

[0199] In some examples, the input mechanism 508 is optionally a microphone. The personal electronic device 500 optionally includes various sensors, such as a GPS sensor 532, an accelerometer 534, an orientation sensor 540 (e.g., a compass), a gyroscope 536, a motion sensor 538, and / or combinations thereof, all of which are operatively connected to the I / O section 514.

[0200] The memory 518 of the personal electronic device 500 may include one or more non-transitory computer-readable storage media for storing computer-executable instructions that, when executed by one or more computer processors 516, may cause the computer processors to perform the techniques described below, including processes 700, 750, and 900 (Figure 7). Figure 7B and Figure 9A computer-readable storage medium can be any medium that can tangibly contain or store computer-executable instructions for use by or in connection with an instruction execution system, apparatus, or device. In some examples, the storage medium is a transient computer-readable storage medium. In some examples, the storage medium is a non-transitory computer-readable storage medium. Non-transitory computer-readable storage media can include, but are not limited to, magnetic storage devices, optical storage devices, and / or semiconductor storage devices. Examples of such storage devices include magnetic disks, optical discs based on CD, DVD, or Blu-ray technology, and persistent solid-state storage such as flash memory, solid-state drives, etc. Personal electronic devices are not limited to... Figure 5B It can be the components and configurations, or it can include other components or additional components in a variety of configurations.

[0201] As used herein, the term "power indication" refers optionally to the power indication in devices 100, 300, and / or 500 ( Figure 1A , Figure 3 and Figures 5A to 5B A user-interactive graphical user interface object displayed on a screen. For example, images (e.g., icons), buttons, and text (e.g., hyperlinks) optionally each constitute a functional representation.

[0202] As used herein, the term "focus selector" refers to an input element used to indicate the current portion of a user interface with which a user is interacting. In some specific implementations that include a cursor or other positional marker, the cursor acts as a "focus selector," such that when the cursor is over a particular user interface element (e.g., a button, window, slider, or other user interface element), the cursor is positioned on a touch-sensitive surface (e.g., a...). Figure 3 The touchpad 355 or Figure 4B When an input (e.g., a press input) is detected on the touch-sensitive surface 451 of the display, the specific user interface element is adjusted according to the detected input. This applies to touchscreen displays (e.g., those capable of enabling direct interaction with user interface elements on the touchscreen display) Figure 1A The touch-sensitive display system 112 or Figure 4AIn some embodiments of the touchscreen 112, a touch detected on the touchscreen acts as a "focus selector," such that when input (e.g., a press input by touch) is detected at the location of a particular user interface element (e.g., a button, window, slider, or other user interface element) on the touchscreen display, that particular user interface element is adjusted according to the detected input. In some embodiments, focus moves from one area of ​​the user interface to another without corresponding movement of the cursor or movement of a touch on the touchscreen display (e.g., moving focus from one button to another using tab keys or arrow keys); in these embodiments, the focus selector moves according to the movement of focus between different areas of the user interface. Regardless of the specific form the focus selector takes, the focus selector is typically a user-controlled user interface element (or a touch on the touchscreen display) that delivers the user-expected interaction with the user interface (e.g., by indicating to the device the element of the user interface that the user expects to interact with). For example, when a press input is detected on a touch-sensitive surface (e.g., a touchpad or touchscreen), the position of the focus selector (e.g., a cursor, touch, or selection box) above the corresponding button will indicate to the user that they expect to activate the corresponding button (rather than other user interface elements shown on the device's display).

[0203] As used in the specification and claims, the term "characteristic intensity" of a contact refers to a characteristic of the contact based on one or more intensities of the contact. In some embodiments, the characteristic intensity is based on multiple intensity samples. The characteristic intensity is optionally based on a predefined number of intensity samples or a set of intensity samples collected over a predetermined time period (e.g., 0.05 seconds, 0.1 seconds, 0.2 seconds, 0.5 seconds, 1 second, 2 seconds, 5 seconds, 10 seconds) relative to a predefined event (e.g., after contact is detected, before contact is detected to be lifted away, before or after contact begins to move, before contact ends, before or after contact intensity is detected to increase and / or before or after contact intensity decreases). The characteristic intensity of the contact is optionally based on one or more of the following: the maximum value of the contact intensity, the mean value of the contact intensity, the average value of the contact intensity, the value at the top 10% of the contact intensity, the half maximum value of the contact intensity, the 90% maximum value of the contact intensity, etc. In some embodiments, the duration of the contact is used when determining the characteristic intensity (e.g., when the characteristic intensity is the average value of the contact intensity over time). In some implementations, the feature intensity is compared to a set of one or more intensity thresholds to determine whether the user has performed an action. For example, the set of one or more intensity thresholds may optionally include a first intensity threshold and a second intensity threshold. In this example, contact with a feature intensity not exceeding the first threshold results in a first action, contact with a feature intensity exceeding the first intensity threshold but not exceeding the second intensity threshold results in a second action, and contact with a feature intensity exceeding the second threshold results in a third action. In some implementations, a comparison between the feature intensity and one or more thresholds is used to determine whether to perform one or more actions (e.g., whether to perform the corresponding action or abandon performing the corresponding action) rather than to determine whether to perform the first action or the second action.

[0204] As used herein, "installed application" refers to a software application that has been downloaded to an electronic device (e.g., device 100, 300, and / or 500) and is ready to be launched on the device (e.g., become open). In some implementations, the downloaded application becomes an installed application using an installer that extracts program portions from the downloaded software package and integrates the extracted portions with the computer system's operating system.

[0205] As used herein, the terms "open application" or "running application" refer to a software application that maintains state information (e.g., as part of device / global internal state 157 and / or application internal state 192). An open or running application is optionally any of the following types of applications:

[0206] • The active application currently displayed on the screen of the device that is using the application;

[0207] • Background applications (or background processes) that are not currently displayed but whose one or more processes are being handled by one or more processors; and

[0208] • A suspended or hibernating application that is not running but has state information stored in memory (both volatile and non-volatile) that can be used to resume the application's execution.

[0209] As used herein, the term "closed application" refers to a software application that does not retain state information (e.g., the state information of a closed application is not stored in the device's memory). Therefore, closing an application includes stopping and / or removing the application's process and removing the application's state information from the device's memory. Generally, opening a second application while the first application is running does not close the first application. When the second application is displayed and the first application stops displaying, the first application becomes a background application.

[0210] Now let’s turn our attention to the implementation of user interfaces (“UIs”) and associated processes on electronic devices (such as portable multifunction devices 100, 300 or 500).

[0211] Figures 6A to 6X Exemplary user interfaces for displaying and sharing group training (e.g., exercise plans) content, according to some embodiments, are shown. The user interfaces in these figures are used to illustrate the processes described below, including... Figure 7A and Figure 7B The process in.

[0212] Figure 6AElectronic device 600A, a smartphone with display 602A; electronic device 600B, a smartphone with display 602B; and electronic device 600C, a smartphone with display 602C. Electronic device 600A displays a communication session overlay 604A overlaid on a main menu user interface 606A. Communication session overlay 604A indicates that electronic device 600A is participating in communication sessions with three other devices (e.g., communication sessions facilitated by a communication application) (e.g., currently active communication, synchronized media, and communication sessions). Electronic device 600B is also participating in a communication session with electronic device 600A. Therefore, electronic device 600B displays communication session overlay 604B overlaid on a main menu user interface 606B. Electronic device 600C is also participating in communication sessions with electronic devices 600A and 600B. Therefore, electronic device 600C displays communication session overlay 604C overlaid on a main menu user interface 606C. The accompanying drawings do not depict a fourth device participating in the communication sessions with electronic devices 600A, 600B, and 600C. In the depicted scenario, electronic device 600A corresponds to a user named John (e.g., John logs into electronic device 600A), electronic device 600B corresponds to a user named Jane (e.g., Jane logs into electronic device 600B), and electronic device 600C corresponds to a user named Sarah (e.g., Sarah logs into electronic device 600C).

[0213] In the depicted implementation, a communication session connects electronic devices 600A, 600B, and 600C, enabling communication between the electronic devices via various communication media. For example, the communication session overlay 604A includes a messaging option 608A for exchanging text-based communication within the communication session, an audio communication option 610A for exchanging audio-based communication (e.g., voice communication) within the communication session, a video communication option 612A for exchanging video-based communication (e.g., live video communication) within the communication session, and a synchronization content (e.g., media content) sharing option 614A for exchanging synchronized content within the communication session. For example, the synchronization content sharing option 614A allows a user to share video content with the communication session, and users in the communication session can view the video content synchronously (e.g., enabling playback of the video content to be synchronized across all electronic devices participating in the communication session and viewing the video content). In this way, the communication session allows communication between multiple electronic devices via various communication media. The communication session overlay 604A also includes a departure option 616A that allows the electronic device 600A to leave the communication session (e.g., disconnect from the communication session). Communication session overlays 604B and 604C are identical to communication session overlay 604A.

[0214] exist Figure 6A In the scenario, John, the user of electronic device 600A, says, "Let's do group training." Electronic device 600A receives audio input and transmits it to electronic devices 600B and 600C via a communication session. Electronic devices 600B and 600C then output the corresponding audio to their respective users, Jane and Sarah. Figure 6A In this context, electronic device 600A detects user input 618 (e.g., tap input) corresponding to the selection of fitness application option 620A.

[0215] exist Figure 6B In response to detecting user input 618, electronic device 600A displays a training suggestion user interface 622A generated by a fitness application. This training suggestion user interface includes multiple training suggestions 624A-624C that can be selected by the user to initiate a process for playing a specific training session (e.g., initiating the playback of audio and / or video content corresponding to the selected training). Electronic device 600A also displays an active communication session indicator 626A indicating that electronic device 600A is currently engaged in a communication session. In some embodiments, electronic device 600A stops displaying the communication session overlay 604A and displays the active communication session indicator 626A in response to determination of a threshold duration since the user has interacted with the communication session overlay 604A and / or in response to a predetermined user gesture (e.g., an upward swipe on the communication session overlay 604A). Figure 6B In this context, electronic device 600A detects user input 628 (e.g., tap input) corresponding to the selection of training suggestion 624A, which corresponds to rowing training.

[0216] exist Figure 6C In response to detecting user input 628, the electronic device 600A displays a training start user interface 630. The training start user interface 630 includes a first option 632A and a second option 632B. The first option can be selected to initiate playback of the selected training (e.g., start playing audio and / or video content corresponding to the selected training), and the second option can be selected to view a preview of the selected training (e.g., start playing preview audio and / or preview video content corresponding to the selected training). Figure 6C In this process, electronic device 600A detects user input 634 (e.g., tap input) corresponding to the selection of option 632A.

[0217] exist Figure 6DIn response to detecting user input 634, electronic device 600A displays training user interface 636A. Training user interface 636A displays video content (e.g., audiovisual content) corresponding to the selected training (e.g., playing audio and / or video of the selected training to provide instructions and / or demonstrate the selected training to the user). Figure 6D In the training user interface 636A, a timer 638A is displayed indicating that training will begin in three seconds.

[0218] exist Figure 6D In response to electronic device 600A detecting user input 634 indicating the start of training, and based on electronic device 600A's participation in a communication session with electronic device 600B, electronic device 600B displays a notification 640B indicating that electronic device 600A has initiated group training (e.g., training was initiated while participating in a communication session with electronic device 600B). Notification 640B includes a join option 642B that allows electronic device 600B to join the group training. Similarly, in response to electronic device 600A detecting user input 634 indicating the start of training, and based on electronic device 600A's participation in a communication session with electronic device 600C, electronic device 600C displays a notification 640C indicating that electronic device 600C has initiated group training (e.g., training was initiated while participating in a communication session with electronic device 600C). Notification 640C includes a join option 642C that allows electronic device 600C to join the group training. In some implementations, in response to detecting user input 634, electronic device 600A transmits (e.g., via a communication session) and / or causes electronic devices 600B and 600C to transmit an indication that electronic device 600A has received user input corresponding to a request to initiate group training. Figure 6D In this process, electronic device 600B detects user input 644 (e.g., tap input) corresponding to the selection of add option 642B.

[0219] exist Figure 6EIn response to the detection of user input 644, electronic device 600B joins the group training and displays training user interface 636B. Training user interface 636B corresponds to training user interface 636A and displays video content synchronized with training user interface 636A (e.g., playback of video content in training user interface 636B is synchronized with playback of video content in training user interface 636A). For example, training user interface 636B displays timer 638B indicating that training will begin in two seconds, while training user interface 636A displays timer 638A, also indicating that training will begin in two seconds. Furthermore, in response to electronic device 600B joining the group training, electronic device 600A displays notification 646A indicating that electronic device 600B has joined the group training, and electronic device 600C displays notification 646C indicating that electronic device 600B has joined the group training. In some implementations, electronic device 600B transmits (e.g., via a communication session) and / or causes electronic devices 600A and 600C to transmit an indication that electronic device 600B has detected user input 644 corresponding to a request to join group training, and electronic devices 600A and 600C display notifications 646A and 646C in response to receiving the indication.

[0220] exist Figure 6E In this scenario, electronic device 600A receives audio input from user John saying, "Sarah, let's begin now, join when you're ready." Electronic device 600A transmits the audio input to electronic devices 600B and 600C (e.g., via a communication session), causing electronic devices 600B and 600C to output corresponding audio outputs.

[0221] exist Figure 6FThe group training session has lasted 1 minute and 52 seconds. Electronic device 600A continues to display training user interface 636A, which displays video content corresponding to the training (e.g., a video demonstrating the training). Training user interface 636A also includes a training physical activity index 648A indicating (e.g., corresponding to) the physical activity of the user of electronic device 600A (e.g., "John"). Training physical activity index 648A displays John's heart rate (e.g., 161 BPM) and the number of calories John has burned during the training (e.g., 26 calories). Training user interface 636A also includes a daily physical activity index 650A. Daily physical activity index 650A includes John's physical activity index for the day, including time outside of the current training session. For example, in some implementations, the outer ring of the Daily Physical Activity Index 650A indicates the number of calories John has burned in a day (e.g., indicating John's progress toward a daily calorie goal), the middle ring of the Daily Physical Activity Index 650A indicates the number of minutes John has exercised in a day (e.g., indicating John's progress toward a daily exercise minutes goal), and the innermost ring of the Daily Physical Activity Index 650A indicates the number of hours John has stood for a threshold amount of time in a day (e.g., the number of hours John has stood for at least 3 minutes) (e.g., indicating John's progress toward a daily standing goal).

[0222] Similarly, electronic device 600B displays training user interface 636B, which also displays video content corresponding to the training. The video content displayed in training user interface 636B is synchronized with the video content displayed in training user interface 636A. Training user interface 636B also displays training physical activity index 648B, which indicates the physical activity of the user of electronic device 600B (e.g., "Jane") during training. Training user interface 636B also displays daily physical activity index 650B, which indicates Jane's physical activity for the day, as described above with reference to daily physical activity index 650A.

[0223] exist Figure 6F In this context, electronic device 600C receives audio input from user Sarah stating "Join now!". Electronic device 600C transmits the received audio input to electronic devices 600A and 600B (e.g., via a communication session), and electronic devices 600A and 600B output corresponding audio outputs. Figure 6F In the process, electronic device 600C detects user input 652 (e.g., tap input) corresponding to the selection of fitness application option 620C.

[0224] exist Figure 6GIn response to detecting user input 652, electronic device 600C displays training suggestion user interface 622C. However, training suggestion user interface 622C typically displays multiple training suggestions for Sarah (e.g., similar to...). Figure 6B The training suggestion user interface 622A) is because the electronic device 600C is participating in the group training and the current communication session is ongoing, so Figure 6G The training suggestion user interface 622C only includes the option 654C to join an ongoing group workout. In the depicted implementation, in order to take other actions within the fitness application, Sarah would have to leave the communication session, or the group workout occurring within the communication session would have to be terminated. Figure 6G In the process of displaying option 654C, electronic device 600C detects user input 656 (e.g., tap input) corresponding to the selection of option 654C.

[0225] exist Figure 6H In response to the detection of user input 656, electronic device 600C joins the group training and displays training user interface 636C. Training user interface 636C displays video content corresponding to the group training. The video content displayed in training user interface 636C is synchronized with the video content displayed in training user interfaces 636A and 636B (e.g., a timer indicates that 1 minute and 55 seconds of training has elapsed). Training interface 636C displays a training physical activity index 648C indicating (e.g., corresponding to) the physical activity of the user (e.g., "Sarah") of electronic device 600C during training. Training user interface 636C also displays a daily physical activity index 650C indicating (e.g., corresponding to) Sarah's physical activity for the day, as described above with reference to daily physical activity index 650A.

[0226] In addition, Figure 6H In one embodiment, in response to electronic device 600C detecting user input 656 and joining group training, electronic device 600A displays a notification 658A indicating that electronic device 600C has joined group training, and electronic device 600B displays a notification 658B indicating that electronic device 600C has joined group training. In some embodiments, in response to detecting user input 656, electronic device 600C transmits (e.g., via a communication session) and / or causes electronic devices 600A and 600B to transmit an indication that electronic device 600C has detected user input corresponding to the request to join group training.

[0227] exist Figure 6I In the group training session, the time had reached 10 minutes and 55 seconds of marking. Figure 6IIn this scenario, electronic device 600B receives audio input from user Jane stating, "Wait a minute, I want to pause." Electronic device 600B transmits the received audio input to electronic devices 600A and 600C via an active communication session, and electronic devices 600A and 600C output corresponding audio outputs. Figure 6I In this process, electronic device 600B detects user input 660 (e.g., tap input).

[0228] exist Figure 6J In response to the detection of user input 660, the electronic device 600B displays an active communication session indicator 626B, a communication session overlay 604B, and playback controls 662B. The playback controls 662B include a pause option 662B-1, a playback progress indicator 662B-2, and a scrubbing bar 662B-3. Figure 6J In the process, electronic device 600B detects user input 664 (e.g., tap input) corresponding to the selection of pause option 662B-1.

[0229] exist Figure 6K In response to the detection of input 664, electronic device 600B pauses the playback of video content corresponding to the group training. As previously described, the video playback of the group training content is synchronized across devices 600A, 600B, and 600C. Therefore, user input 664 also causes the playback of the video content corresponding to the group training on electronic devices 600A and 600C to pause. For example, in some embodiments, electronic device 600B transmits (e.g., via an active communication session) an indication that a pause input has been received at electronic device 600B and / or causes the indication to be transmitted to electronic devices 600A and 600C, and electronic devices 600A and 600C pause the playback of the video content in response to receiving the pause input indication received at electronic device 600B. In addition, in response to pause input 664 (e.g., in response to receiving an instruction to pause input 664), electronic device 600A displays notification 666A, electronic device 600B displays notification 666B, and electronic device 600C displays notification 666C indicating that electronic device 600B has paused group training.

[0230] exist Figure 6K In response to input 664, electronic device 600B replaces pause option 662B-1 with play option 662B-4. Figure 6K At this point, electronic device 600B receives audio input from the user stating "Okay, start training again" and transmits the audio input to electronic devices 600A and 600C via an active communication session. Electronic devices 600A and 600C output corresponding audio outputs. Electronic device 600B also detects user input 668 (e.g., tap input) corresponding to a selection of playback options 662B-4.

[0231] exist Figure 6L In response to detecting user input 664, electronic device 600B resumes playback of the video content corresponding to the group training. Electronic device 600B also transmits (e.g., via an active communication session) an indication to electronic devices 600A and 600C that electronic device 600B has detected user input corresponding to a request to resume playback of the group training, and / or causes such indication to be transmitted to electronic devices 600A and 600C. In response to receiving this indication, electronic devices 600A and 600C also resume playback of the video content corresponding to the group training, and display notifications 670A and 670C indicating that electronic device 600B has resumed playback of the group training.

[0232] exist Figure 6M In the group training session, 11 minutes and 5 seconds of marking had been completed. Figure 6M In this process, electronic device 600C determines and / or detects that the user (e.g., "Sarah") corresponding to electronic device 600C has completed a physical activity goal (e.g., completed her daily activity goal), as indicated by the closed outermost circle in the daily physical activity indicator 650C. In response to this determination, electronic device 600C displays a fitness notification 672C. Furthermore, electronic device 600C transmits (e.g., via an activity communication session) and / or causes to transmit to electronic devices 600A and 600B an indication that Sarah has completed her physical activity goal. In response to receiving this indication, electronic devices 600A and 600B display fitness notifications 672A and 672B indicating that Sarah has completed her physical activity goal.

[0233] exist Figure 6M And earlier Figure 6H and 6K As can be seen, notifications related to fitness apps (e.g., notifications generated by the fitness app) (e.g., Figure 6M Notifications related to the communication session (e.g., notifications generated by the communication application) are displayed in the first display area (e.g., the upper right corner of the display area), while notifications related to the communication session (e.g., notifications generated by the communication application) are displayed in the second display area (e.g., the upper right corner of the display area). Figure 6H and Figure 6K The notifications are displayed in different secondary display areas (e.g., the upper central area). In some implementations, fitness application notifications include notifications related to a user achieving one or more physical activity goals and / or one or more physical activity achievements during group training, while activity communication session notifications include notifications related to one or more users joining and / or leaving group training, one or more users joining and / or leaving a communication session, and / or one or more users pausing and / or resuming playback of video content from group training.

[0234] exist Figure 6MAt this point, the electronic device 600C detects user input 674 (e.g., tap input).

[0235] exist Figure 6N In response to the detection of user input 674, the electronic device 600C displays playback controls 662C, an active communication session indicator 626C, a communication session overlay 604C, and an exit option 676C. The exit option 676C can be selected by the user to leave the group training and stop displaying the video content corresponding to the group training (e.g., stop displaying the training user interface 636C). Figure 6N In the process, electronic device 600C detects user input 678 (e.g., tap input) corresponding to the selection of exit option 676C.

[0236] exist Figure 6O In response to detecting user input 678, electronic device 600C displays options 680C-1, 680C-2, and 680C-3. Option 680C-1 can be selected by the user to end group training involving only that user and that device (e.g., only device 600C). Option 680C-2 can be selected by the user to end group training involving all users participating in the group training (e.g., electronic devices 600A, 600B, and 600C). Option 680C-3 can be selected to stop displaying options 680C-1, 680C-2, and 680C-3, and return to group training. Figure 6O In this context, electronic device 600C detects user input 682 (e.g., tap input) corresponding to the selection of option 680C-1.

[0237] exist Figure 6P In response to the detection of user input 682, electronic device 600C stops displaying the training user interface 636C and displays a training suggestion user interface 622C overlaid by the communication session overlay 604C. Additionally, in response to user input 682, electronic device 600C transmits (e.g., via the communication session) an indication to electronic devices 600A and 600B that electronic device 600C has left the group training and / or causes such an indication to be transmitted to electronic devices 600A and 600B. In response to receiving this indication, electronic devices 600A and 600B respectively display notifications 683A and 683B indicating that electronic device 600C has left the group training.

[0238] As discussed above, the communication session overlay 604C includes a leave option 616C that allows the electronic device 600C to leave the communication session (e.g., disconnect from the communication session). The training suggestion user interface 622C also includes a join option 654C that allows rejoining the group training. Figure 6PAt this point, electronic device 600C detects user input 684-1 corresponding to the selection of the leave option 654C and user input 684-2 corresponding to the selection of the join option 616C.

[0239] Figure 6P-1 An exemplary scenario is depicted in which, in response to the detection of user input 684-2, electronic device 600C redisplays training user interface 636C. As discussed above, the training content displayed in training user interface 636C is synchronized with the training content displayed in training user interfaces 636A and 636B on electronic devices 600A and 600B, respectively. Therefore, in response to the detection of user input 684-2, electronic device 600C rejoins the group training at the 11-minute and 11-second mark.

[0240] Alternatively, Figure 6Q An exemplary scenario is depicted, in which, in response to the detection Figure 6P In the user input 684-1 (for example, instead of detecting user input 684-2, such as...), Figure 6P-1 As stated above, electronic device 600C has left the communication session (e.g., disconnected from the communication session). Additionally, in response to user input 684-1 and before leaving the communication session, electronic device 600C transmits (e.g., via the communication session) and / or causes electronic devices 600A and 600B to transmit an indication that electronic device 600C has left (e.g., is leaving) the communication session. In response to receiving this indication, electronic devices 600A and 600B display notifications 685A and 685B indicating that electronic device 600C has left the communication session.

[0241] exist Figure 6RIn the context of the training session, group training has been completed (e.g., the video content corresponding to the group training has finished playing and / or the user has finished the group training for all users). In response to detecting that group training has been completed, electronic device 600A displays a training summary user interface 686A. The training summary user interface 686A includes a training physical activity index 687A-2 corresponding to the user (“John”) of electronic device 600A, including a training performance bar 687A-7 indicating John's performance relative to other users performing the same training. The training summary user interface 686A also includes John's daily physical activity index 687A-6, as discussed above. The training summary user interface 686A also includes an indication 687A-1 for users who participated in the group training session. In the depicted exemplary scenario, indication 687A-1 includes representations of John, Jane, and Sarah. The training summary user interface 686A also includes: a completion option 687A-3, which can be selected to close (e.g., stop displaying) the training summary user interface 686A; a sharing option 687A-4, which can be selected to share the training summary information with one or more other users; and a relaxation option 687A-5, which can be selected to initiate playback of the relaxation training. In some embodiments, the relaxation training is shared training (e.g., shared via a communication session). In some embodiments, the relaxation training is not shared even if the device 600A remains in a communication session.

[0242] Similar to electronic device 600A, electronic device 600B displays a training summary user interface 686B. The training summary user interface 686B is essentially the same as the training summary user interface 686A, except that the training summary user interface 686B includes training physical activity indicators 687B-2, training performance bars 687B-7, and daily physical activity indicators 687B-6 corresponding to the user (“Jane”) associated with electronic device 600B.

[0243] Figure 6S An exemplary scenario is depicted in which electronic device 600A is participating in video communication with another electronic device within a communication session (e.g., electronic device 600A is participating in video communication with electronic device 600B within the same communication session). Figure 6S In the process of displaying the training user interface 636A, the electronic device 600A displays the video communication object 688 in a corner of the display superimposed on the training user interface 636A. (See above reference...) Figures 6A to 6R The exemplary scenarios discussed demonstrate various examples where audio communication is enabled via a communication session and audio communication is transmitted between electronic devices while the electronic devices are engaged in (e.g., displaying) group training. Similarly, in Figure 6SIn the exemplary scenario shown, electronic devices can maintain video communication (e.g., audiovisual communication, video and audio communication) with each other via a communication session during group training. Figure 6S At this point, the electronic device 600A detects user input 689 (e.g., tap input).

[0244] exist Figure 6T In response to detecting user input 689, electronic device 600A displays a communication session overlay 604A, an exit option 676A, an active communication session indicator 626A, and a playback control 662A. The playback control 662A includes display selection options 662A-5 selectable to initiate the process of displaying video content on different displays (e.g., a display different from display 602A). Figure 6T At this point, electronic device 600A detects user input 690 corresponding to the selection of display selection option 662A-5.

[0245] exist Figure 6U In response to detecting user input 690, electronic device 600A displays options 691A-1, 691A-2, and 691A-3 corresponding to three different display devices. Option 691A-1 corresponds to monitor 602A, option 691A-2 corresponds to television display device, and option 691A-3 corresponds to a third display device. Figure 6U At this point, electronic device 600A detects user input 692 corresponding to the selection of option 691A-2.

[0246] exist Figure 6V In response to detecting user input 692, electronic device 600A causes television display device 600D to display training user interface 636D. Additionally, in response to detecting user input 692, electronic device 600A displays user interface 693 indicating that training video content (e.g., training user interface 636D) is being displayed on a different display device. Figure 6V In this embodiment, while the training user interface 636D is displayed on the television display device 600D, the video communication object 688 continues to be displayed on the device 600A via the display 602A. In some embodiments, display components related to the fitness application (e.g., display components generated by the fitness application) (e.g., the training user interface 636D) are displayed via the television display device 600D, while display components related to the communication session (e.g., display components generated by the communication application) (e.g., the video communication object 688) are displayed via the display 602A on the electronic device 600A.

[0247] exist Figure 6WIn this process, electronic device 600A receives an indication that another electronic device (e.g., electronic device 600B) associated with user Jane Appleseed has joined the group training. Based on the determination related to the communication session by this indication (e.g., the indication that the user has joined the group training through the communication session), electronic device 600A displays a notification 694 indicating that Jane Appleseed has joined the group training.

[0248] exist Figure 6X In this context, electronic device 600A receives an indication that a user participating in group training has achieved a physical activity goal. In response to receiving this indication, and based on a determination relating the indication to a fitness application, electronic device 600A causes television display device 600D to display a notification 695 indicating that Jane Appleseed has achieved a physical activity goal.

[0249] Figure 7A This is a flowchart illustrating a method for displaying and sharing group training content using a computer system, according to some embodiments. Method 700 is performed at a computer system (e.g., 100, 300, 500) communicating with a display generation component and one or more input devices. Some operations in method 700 are optionally combined, some operations are optionally changed in order, and some operations are optionally omitted.

[0250] As described below, method 700 provides an intuitive way to display and share group training content. This method reduces the cognitive burden on users when displaying and sharing group training content, thereby creating a more efficient human-computer interface. For battery-powered computing devices, it enables users to display and share group training content more quickly and efficiently, saving power and increasing the time interval between battery charging sessions.

[0251] A computer system (e.g., smartphone, smartwatch, tablet, digital media player, computer set-top box; smart TV) that communicates with a display generating component (e.g., 602A, 602B, 602C) (e.g., display controller; touch-sensitive display system; and / or display (integrated or connected display)) and one or more input devices (e.g., touch-sensitive surface (e.g., touch-sensitive display); mouse; keyboard; and / or remote control) displays (702) a user interface (e.g., fitness application training user interface) including a first user interface object (e.g., 622A) corresponding to a first training session (e.g., 624A) via the display generating component (e.g., 602A, 602B, 602C) (e.g., display controller; touch-sensitive display system; and / or display (integrated or connected display)) and one or more input devices (e.g., touch-sensitive surface (e.g., touch-sensitive display); mouse; keyboard; and / or remote control); and a computer system (e.g., 600A, 600B, 600C) that controls an external display, via the display generating component (702) a user interface (e.g., 624A) including a first user interface object (e.g., 622A) corresponding to a first training session (e.g., 622A).

[0252] The computer system detects (704) user input (e.g., tap input and / or non-tap input) corresponding to the selection of a first user interface object via one or more input devices (e.g., 628).

[0253] In response to the detection of user input (706), the computer system initiates (708) a training session corresponding to the first training (in some embodiments, initiating a training session includes initiating a user physical activity tracking function), including initiating a process for displaying content associated with the first training (e.g., video content, instructions, tutorials) via a display generation component (e.g., initiating playback of video content associated with the training) (e.g., demonstrating video content of the training). In some embodiments, initiating a training session also includes recording one or more physical activity metrics (e.g., heart rate and / or calories burned) for initiating the training session.

[0254] Based on the determination (710) that the computer system participates in a first type of communication session with one or more external computer systems, including a first external computer system (e.g., 600B, 600C), the computer system causes (712) to display (712) selectable user interface objects (e.g., 640B, 642B, 640C, 642C) at the first external computer system (e.g., 600B, 600C) (e.g., causing selectable user interface objects to be displayed at one or more external computer systems), wherein the selectable user interface objects are selectable to display training-related content at the first external computer system (e.g., selectable to initiate playback of training-related video content at the first external computer system) (e.g., selectable user interface objects selectable to cause the first external computer system to join the training session). In some embodiments, the display of training-related video content at the first external computer system and the display of training-related video content at the computer system are synchronized. In some embodiments, the first type of communication session includes audio communication, video communication, and / or text-based communication. In some embodiments, the communication session is a synchronous media and communication session. In some embodiments, a first type of communication session enables a computer system to output corresponding content (e.g., synchronous content (e.g., audio and / or video data whose output is synchronized at the computer system and external computer systems (e.g., one or more external computer systems)) and / or screen-shared content (e.g., image data generated by a device (e.g., the computer system in the first type of communication session) that provides a real-time representation of the image or video content currently displayed at the device)) while it is being output by a first external computer system. In some embodiments, during the first type of communication session, the corresponding content is output simultaneously at both the computer system and one or more external computer systems. In some embodiments, the corresponding content is screen-shared content from the computer system (e.g., content displayed on the computer system's monitor) that is transmitted to one or more external computer systems, such that the computer system and one or more external computer systems simultaneously output the screen-shared content from the computer system. In some embodiments, the corresponding content is screen-shared content from a first external computer system (e.g., content displayed on the monitor of the first external computer system), which is transmitted to the computer system such that the computer system and one or more external computer systems, including the first external computer system, simultaneously output the screen-shared content from the first external computer system. In some embodiments, the corresponding content is synchronized content output at the computer system and one or more external computer systems.In some implementations, the computer system and one or more external computer systems each individually access corresponding content (e.g., videos; movies; television programs; songs) from a remote server and synchronize in the corresponding output of their respective content, such that as each computer system individually accesses the corresponding content from the remote server, the content is output at the computer system and one or more external computer systems (e.g., via an application local to the respective computer system). In some implementations, the computer system and one or more external computer systems individually access the corresponding content (e.g., synchronize the content) in response to an option received at the computer system or at one of the one or more external computer systems for requesting the output of the corresponding content. Performing multiple operations in response to a single user input (including displaying training content at the computer system in response to user input) and automatically causing the display of a selectable user interface object at the external computer system in response to the same user input, which can be selected to display training-related content at the external computer system, enables the user to quickly share training content with the external computer system, thereby reducing the amount of input required to share training content with the external computer system. Reducing the amount of input required to perform an operation enhances device operability and makes the user device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), thereby further reducing power consumption and extending device battery life by enabling users to use the device more quickly and efficiently.

[0255] Based on the determination (714) that the computer system is not involved in a first type of communication session (e.g., not involved in a first type of communication when user input is detected), the computer system waives the right to cause the first external computer system to display a selectable user interface object (716). In some embodiments, the computer system waives the right to cause any external computer system to display a selectable user interface object.

[0256] In some implementations, when displaying content associated with the first training and when the computer system participates in a first type of communication session with one or more external computer systems, the computer system (e.g., 600A) is configured to communicate (e.g., transmit to or receive from) one or more external computer systems (e.g., 600B, 600C) via a communication mode of the first type of communication session selected from the group consisting of: audio communication (e.g., voice audio), video communication (e.g., using one or more cameras communicating with the computer system), text communication, screen content sharing communication, and combinations thereof (e.g., ...). Figure 6E , Figure 6F , Figure 6I , Figure 6J , Figure 6N(Participating in audio communication when displaying content associated with the first training) and / or Figure 6W (Participating in video communication while displaying content associated with the first training session). Configuring the computer system to communicate with one or more external computer systems via a communication mode of a first type of communication session while displaying content associated with the first training session enables the user to communicate quickly and easily with other users while viewing the training content, thereby reducing the amount of input required to communicate with other users while viewing the training content. Reducing the amount of input required to perform operations enhances the operability of the device and makes the user device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), thereby further reducing power consumption and extending the device's battery life by enabling users to use the device more quickly and efficiently.

[0257] In some implementations, while displaying content associated with the first training and while the computer system is engaged in a first type of communication session with one or more external computer systems, including the first external computer system (in some implementations, and while the first external computer system is displaying content associated with the first training), the computer system (e.g., from an external device; from an application running on the computer system) receives notification data. In response to receiving the notification data, based on the determination that the notification data is associated with a first type of communication session (e.g., receiving notification data from one or more external computer systems; the notification is associated with communication from one of the participants), the computer system displays the generated component at a first location (e.g., Figure 6E , Figure 6H , Figure 6K , Figure 6L , Figure 6P , Figure 6Q The computer system displays a first notification (e.g., 646A, 658A, 658B, 666A, 666C, 670A, 670C, 683A, 683B, 685A, 685B) at a location different from the first location (e.g., communication from one or more external computer systems); and based on the determination that the notification data is associated with the first training (e.g., associated with a training application that manages the first training), the computer system displays the generated component at a second location different from the first location (e.g., Figure 6MA second notification (e.g., 672A, 672B) (e.g., training-related notification) is displayed at the first display location. In some embodiments, the first and second locations do not overlap. Displaying a notification associated with a first type of communication session at the first display location and a notification associated with the first training at the second display location provides the user with feedback on the current state of the device (e.g., whether a particular notification is related to the first type of communication session or the first training). These notifications also quickly and easily provide the user with information about the actions of other users in the communication or training sessions. By providing different types of notifications in different areas of the screen, the electronic device enhances the user's readability and allows them to understand the current state of other users' devices without additional user input. Providing improved feedback to the user further enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0258] In some implementations, a first notification instructs a second external computer system to begin displaying content associated with the first training (e.g., 646A, 658A, 658B) or stop displaying content associated with the first training (e.g., 683A, 683B) via a first type of communication session (e.g., via one or more communication protocols of the first type of communication session). The notification indicating that the second external computer system is beginning to display or stopping displaying content associated with the first training provides feedback to the user regarding the current state of the device (e.g., the device has detected and / or received information about the second external computer system beginning to display and / or stopping displaying content associated with the first training). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0259] In some implementations, a first notification (e.g., a communication session status notification) indicates that a third external computer system is joining (in some implementations, has joined) a first type of communication session or is leaving (in some implementations, has left) a first type of communication session (e.g., 685A, 685B). The notification indicating that the third external computer system is joining or leaving a first type of communication session provides feedback to the user about the current status of the device (e.g., the device has detected and / or received information about the third external computer system joining and / or leaving a first type of communication session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0260] In some implementations, the second notification is a notification that includes first information related to the first training on the computer system or one or more external computer systems (e.g., Figure 6M The notification (672A, 672B, 672C) indicates that the one or more external computer systems are in a first type of communication session and are displaying content associated with the first training. In some embodiments, the second notification may be a training-related notification from any user participating in the first training within the first type of communication session. Displaying a notification related to the first training on the computer system or one or more external computer systems provides the user with feedback on the current state of the device (e.g., the device has detected and / or received first information related to the first training). Providing the user with improved feedback enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0261] In some implementations, the first information is an indication that a user of a fourth external computer system, which is in a first type of communication session and is displaying content associated with the first training, has achieved a predetermined physical activity goal (e.g., meeting a calorie goal, meeting an activity intensity level goal) or has achieved a state change relative to one or more other participants in the first training (e.g., the user has achieved a physical activity level that places the user within a predetermined segment of the participants in the first training). Figure 6MNotifications 672A, 672B, and 672C in the documentation. Notifications indicating that the user of the fourth external computer system has achieved a predetermined physical activity goal or a change in status relative to one or more other participants in the first training session provide feedback to the user regarding the current status of the device (e.g., the device has detected and / or received information indicating that the user of the fourth external computer system has achieved a predetermined physical activity goal or a change in status relative to one or more other participants in the first training session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0262] In some implementations, when displaying content associated with the first training and when the computer system is engaged in a first type of communication session with one or more external computer systems, the computer system receives user input (e.g., 678) corresponding to a request to initiate a process for ending the training session corresponding to the first training. In response to receiving user input corresponding to a request to initiate a process for ending a training session corresponding to the first training, the computer system displays: a first end option (e.g., 680C-1), which, when selected, causes the computer system to stop displaying content associated with the first training (e.g., user interface 636C) (e.g., ending the training session associated with the first training), without causing at least one external computer system in a first type of communication session that is displaying content associated with the first training to stop displaying content associated with the first training (in some embodiments, and ending the training associated with the first training at the external computer system); and a second end option (e.g., 680C-2), which, when selected, causes the computer system to stop displaying content associated with the first training, and causes at least one external computer system in a first type of communication session that is displaying content associated with the first training to stop displaying content associated with the first training (in some embodiments, and ending the training associated with the first training at the external computer system). The simultaneous display of a first end option, which allows the computer system to stop displaying content associated with the first training session, and a second end option, which allows multiple computer systems to stop displaying content associated with the first training session, provides the user with the ability to end only their own training or to end training on multiple computer systems. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling users to use the device more quickly and efficiently.

[0263] In some implementations, the computer system receives user input (e.g., 682) corresponding to a first end option (e.g., 680C-1). In response to receiving user input corresponding to the first end option, the computer system stops displaying content associated with the first training via a display generation component communicating with the computer system (e.g., ending the training session associated with the first training), wherein after the display generation component communicating with the computer system stops displaying content associated with the first training, the content associated with the first training continues to be displayed by a display generation component communicating with at least one external computer system in a first type of communication session (e.g., ...). Figure 6PDevice 600C stops displaying training, while devices 600A and 600B continue displaying training. In some implementations, selecting the first end option causes only the computer system to stop displaying content associated with the first training, without causing any external computer systems to stop displaying content associated with the first training. Simultaneously displaying a first end option that allows selection to cause the computer system to stop displaying content associated with the first training, and a second end option that allows selection to cause multiple computer systems to stop displaying content associated with the first training, provides the user with the ability to end only their own training or to end training on multiple computer systems. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends device battery life by enabling users to use the device more quickly and efficiently.

[0264] In some embodiments, the computer system receives user input corresponding to a second end option (e.g., 680C-2). In response to receiving user input corresponding to the second end option: the computer system stops displaying content associated with the first training (e.g., training user interface 636C) via a display generation component communicating with the computer system (e.g., ending the training session associated with the first training); and causes at least one external computer system (e.g., devices 600A and / or 600B) in a first type of communication session and displaying content associated with the first training to stop displaying content associated with the first training via a display generation component communicating with at least one external computer system (in some embodiments, ending the training associated with the first training at the external computer system). Simultaneously displaying a first end option selectable to cause the computer system to stop displaying content associated with the first training and a second end option selectable to cause multiple computer systems to stop displaying content associated with the first training provides the user with the ability to end only their own training or to end the training of multiple computer systems. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling users to use the device more quickly and efficiently.

[0265] In some implementations, when displaying content associated with the first training (e.g., Figure 6J Device 600B in the computer system) and a fifth external computer system (e.g., displaying content associated with the first training) are involved in the computer system. Figure 6JWhen a first type of communication session is established between the computer system and one or more external computer systems (devices 600A and 600C), the computer system receives user input (e.g., 664) corresponding to a request to pause the training session corresponding to the first training (e.g., suspend the display of content associated with the first training session). In response to receiving the user input corresponding to the request to pause the training session corresponding to the first training: the computer system pauses the training session corresponding to the first training (e.g., suspends the display of content associated with the first training at the display generation component (e.g., without ending the training session)). Figure 6K ); and causing a fifth external computer system (e.g., device 600A, 600C) to suspend displaying content associated with the first training (e.g., Figure 6K In some implementations, after training is paused, the computer system receives user input corresponding to a request to resume training, and in response, resumes training at both the computer system and a fifth external computer system. Pausing the display of training-related content on multiple computer systems in response to user input on the computer system provides the user with the ability to pause training content on multiple computer systems without requiring further input. Performing the operation when a set of conditions has been met and no further user input is needed enhances device operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends device battery life by enabling users to use the device more quickly and effectively.

[0266] In some implementations, when displaying content associated with the first training and when the computer system is engaged in a first type of communication session with one or more external computer systems, including a sixth external computer system displaying content associated with the first training, the computer system receives a request from the sixth external computer system to terminate the training session associated with the first training and stop displaying the content associated with the first training (e.g., a request initiated by selecting the "End All" option at the sixth external computer system). (e.g., if device 600C receives a request for...) Figure 6OIf option 680C-2 is selected, devices 600A and / or 600B receive a request to end the training session from device 600C. In response to receiving the request from the sixth external computer system, the computer system ends the training session on the computer system. In some implementations, ending the training session includes stopping the display of the training session and / or stopping the display of content associated with the first training on the computer system. Automatically ending the training session in response to a request received from the sixth external computer system provides the user with the ability to end training content on multiple computer systems without further input. Performing the operation when a set of conditions has been met and no further user input is required enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device). This also reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0267] In some implementations, while displaying content associated with the first training and while the computer system is engaged in a first type of communication session with one or more external computer systems, including a seventh external computer system displaying content associated with the first training, the computer system receives a request from the seventh external computer system to pause the display of the content associated with the first training (e.g., a request initiated by selecting a "pause" option at the seventh external computer system) (e.g., device 600B receives a request to...). Figure 6J The pause option 662B-1 is selected, and devices 600A and / or 600C receive a request from device 600B to pause the display of content associated with the training. In response to receiving the request from the seventh external computer system, the computer system pauses the display of content associated with the first training on the computer system (e.g., Figure 6K (For example, without ending the training session). In some implementations, after pausing the display of content, the computer system receives an indication from an external computer system in a first type of communication session that the display of content has been resumed, and in response to this indication, the computer system resumes the display of content associated with the first training. Pausing the display of training-associated content in response to a request received from a seventh external computer system provides the user with the ability to pause training content on multiple computer systems without requiring further input. Performing the operation when a set of conditions has been met without requiring further user input enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0268] In some implementations, after completing a training session associated with the first training, the computer system displays a training summary user interface (e.g., 686A, 686B) via a display generation component. This training summary user interface includes: physical activity data (e.g., calorie burned data; heart rate data) collected by the computer system for the user of the computer system (e.g., 687A-2, 687B-2); and instructions from one or more external computer systems (e.g., instructions from the user of the external computer system) (e.g., 687A-1, 687B-1), which are in a first type of communication session with the computer system and participate in (e.g., display) the training session associated with the first training (e.g., participate in shared training). The training summary user interface, which displays physical activity data and instructions from one or more external computer systems that are in a first type of communication session and display content associated with the first training, provides the user with feedback on the current status of the device (e.g., the training session has ended) and feedback on the status of one or more external computer systems (e.g., which computer systems are in a first type of communication session and display content associated with the first training). Providing users with improved feedback enhances device operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device). This, in turn, reduces power consumption and improves device battery life by enabling users to use the device more quickly and effectively.

[0269] In some implementations, the training summary user interface further includes one or more indications (e.g., 687A-6, 687B-6) (e.g., similar to the indications in notifications 672A, 672B, 672C) of the user on the external computer system achieving predetermined physical activity goals (e.g., meeting calorie goals, meeting activity intensity level goals). The training summary user interface, displaying one or more indications of the user on the external computer system achieving predetermined physical activity goals, provides the user with feedback on the current status of the device (e.g., the computer system receiving and / or detecting information that the user on the external computer system has achieved predetermined physical activity goals) and feedback on the status of one or more external computer systems (e.g., the external computer system receiving and / or detecting that the user on the external computer system has achieved predetermined physical activity goals). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0270] In some implementations, when displaying content associated with the first training via a display generation component, the computer system receives a request (e.g., inputs 690, 692) that causes a second display generation component (e.g., 600D) (e.g., a smart TV; a digital media player connected to a TV or monitor) to communicate with the computer system to display the content associated with the first training. In response to the request that the second display generation component, communicating with the computer system, display the content associated with the first training, the computer system causes the second display generation component to display the content associated with the first training (e.g., ...). Figure 6V In some implementations, the computer system also stops displaying content via the display generation component. Responding to a request, the second display generation component displays content associated with the first training, providing the user with the ability to display content associated with the first training on the second display generation component. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by assisting the user in providing appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0271] In some embodiments, the computer system receives second notification data when it causes content associated with the first training to be displayed at the second display generation component. In response to the second notification data: based on a determination that the second notification data is associated with a first type of communication session (e.g., receiving the second notification data from one or more external computer systems), the computer system displays a third notification (e.g., 694) (e.g., communication from one or more external computer systems) via the display generation component; and based on a determination that the second notification data is associated with the first training (e.g., associated with a training application managing the first training), the computer system causes a fourth notification (e.g., 695) (e.g., a training-related notification) to be displayed at the second display generation component. In some embodiments, notifications are displayed on different displays depending on the type of notification. Displaying notifications associated with the first type of communication session on the display generation component and displaying notifications associated with the first training at the second display generation component provides the user with feedback on the current state of the device (e.g., whether a particular notification is related to a first type of communication session or to the first training). Providing users with improved feedback enhances device operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device). This, in turn, reduces power consumption and improves device battery life by enabling users to use the device more quickly and effectively.

[0272] In some implementations, after the training session associated with the first training is completed, the computer system causes the second display generation component to stop displaying the content associated with the first training and displays the training summary user interface via the display generation component.

[0273] It should be noted that the above description is relative to the process described in method 700 (e.g., Figure 7A The details of the above methods can also be applied in a similar manner to the methods described below. For example, methods 750, 900, and 1100 optionally include one or more features of the various methods described above with reference to method 700. For example, in some embodiments, the first type of communication session described in methods 700, 750, 900, and 1100 is the same communication session in all three methods. In another example, in some embodiments, training initiated via method 700 may result in instructions from method 750. For the sake of brevity, these details will not be repeated below.

[0274] Figure 7B This is a flowchart illustrating a method for accessing and displaying group training content using a computer system, according to some embodiments. Method 750 is performed at a computer system (e.g., 100, 300, 500) communicating with a display generation component and one or more input devices. Some operations in method 750 are optionally combined, some operations are optionally changed in order, and some operations are optionally omitted.

[0275] As described below, method 750 provides an intuitive way to access and display group training content. This method reduces the cognitive burden on users when accessing and displaying group training content, thereby creating a more efficient human-computer interface. For battery-powered computing devices, it enables users to access and display group training content more quickly and efficiently, saving power and increasing the time interval between battery charging sessions.

[0276] In some implementations, a computer system (e.g., a smartphone, smartwatch, tablet, digital media player, computer set-top box; smart TV; computer system controlling an external display) communicating with display generating components (e.g., a display controller; a touch-sensitive display system; and / or a display (e.g., an integrated and / or connected display)) and one or more input devices (e.g., a touch-sensitive surface (e.g., a touch-sensitive display); a mouse; a keyboard; and / or a remote control) receives (754) an indication (e.g., via a communication protocol associated with the first type of communication session) that the first external computer system has initiated a shared training session while the computer system is engaged in a first type of communication session with one or more external computer systems, including the first external computer system (752).

[0277] In some embodiments, the communication session is a synchronous media and communication session. In some embodiments, the first type of communication session includes audio communication, video communication, and / or text-based communication. In some embodiments, the first type of communication session enables the computer system to output corresponding content (e.g., synchronous content (e.g., audio and / or video data whose output is synchronized at the computer system and the external computer system (e.g., one or more external computer systems)) and / or screen-shared content (e.g., image data generated by a device (e.g., the computer system in the first type of communication session) that provides a real-time representation of the image or video content currently displayed at the device)) while it is being output by a first external computer system. In some embodiments, during the first type of communication session, the corresponding content is output simultaneously at both the computer system and one or more external computer systems. In some embodiments, the corresponding content is screen-shared content from the computer system (e.g., content displayed on the monitor of the computer system), which is transmitted to one or more external computer systems such that the computer system and one or more external computer systems simultaneously output the screen-shared content from the computer system. In some embodiments, the corresponding content is screen-shared content from a first external computer system (e.g., content displayed on the monitor of the first external computer system), which is transmitted to the computer system such that the computer system and one or more external computer systems, including the first external computer system, simultaneously output the screen-shared content from the first external computer system. In some embodiments, the corresponding content is synchronized content output at the computer system and one or more external computer systems. In some embodiments, the computer system and one or more external computer systems each individually access the corresponding content (e.g., video; movie; television program; song) from a remote server and synchronize their respective outputs of the corresponding content, such that as each computer system individually accesses the corresponding content from the remote server, content is output at the computer system and one or more external computer systems (e.g., via an application local to the corresponding computer system). In some embodiments, the computer system and one or more external computer systems individually access the corresponding content (e.g., synchronized content) in response to an option received at the computer system or at one of the one or more external computer systems for requesting the output of the corresponding content.

[0278] In response to receiving an indication that a shared training session has been initiated by a first external computer system (756), the computer system displays a user interface object (e.g., a notification and / or selectable user interface object) corresponding to the shared training session (e.g., 640B, 642B, 640C, 642C) (758) via a display generation component. While displaying the user interface object corresponding to the shared training session (760), the computer system detects (762) user input (e.g., tap input and / or non-tap input) via one or more input devices. Displaying the user interface object corresponding to the shared training session in response to receiving an indication that a shared training session has been initiated by the first external computer system provides feedback to the user regarding the current state of the device (e.g., the computer system has received an indication that a shared training session has been initiated by the first external computer system). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0279] In response to the detection of user input (764), and based on the determination that the user input corresponds to a request to join a shared training session (e.g., 644) (e.g., a determination that the user input corresponds to a selection of a user interface object), the computer system, while maintaining a first type of communication session, displays (e.g., plays and / or initiates playback) content corresponding to the shared training session via a display generation component, wherein the display of content corresponding to the shared training session is based on a first external computer system (e.g., Figure 6E The first playback position (766) is initiated at the device 600B in the middle, corresponding to the playback position of the content. In some embodiments, the playback of the video content on the computer system is synchronized with the playback of the video content on a first external computer system. In some embodiments, the computer system further initiates a user physical activity tracking function based on a determination of a user input corresponding to a request to join a shared training session.

[0280] In response to detecting user input (764), and based on the determination that the user input does not correspond to a request to join a shared training session (e.g., based on the determination that the user input does not correspond to a selection of a user interface object), the computer system maintains the first type of communication session (e.g., Figure 6EWhile the computer system (e.g., device 600C) abandons displaying (e.g., abandoning playback and / or abandoning initiating playback) content corresponding to the shared training session (e.g., maintaining an audio, video, and / or text-based communication session without displaying video content corresponding to the training session) (768). In some embodiments, even if the computer system abandons displaying video content corresponding to the training session, the first external computer system (e.g., device 600A) continues to display (e.g., play) the video content corresponding to the training session.

[0281] In some embodiments, after abandoning the display of content corresponding to a shared training session (e.g., after user input is determined not to correspond to a request for a shared training session) and while the computer system continues to participate in a first type of communication session with one or more external computer systems, the computer system receives a first set of one or more inputs (e.g., 652) corresponding to a request to display the user interface of a training application. In some embodiments, when user input is determined to be a request to join a shared training session, the training application is the same application that causes / manages the display of content corresponding to the shared training session. In response to the first set of one or more inputs, the computer system displays the user interface of the training application (e.g., 622C), wherein the user interface of the training application includes a second user interface object (e.g., 654C) corresponding to the shared training session, which, when selected, causes the display of content corresponding to the shared training session via a display generation component. In some embodiments, the computer system displays the user interface of the training application while maintaining the first type of communication session. In some embodiments, the display of content corresponding to the shared training session is initiated based on a playback position of the corresponding content displayed at a first external computer system. In some implementations, the user interface of the training application does not include one or more user interface objects (e.g., a power indicator for starting or selecting a new training session), which will be included when the user interface of the training application is displayed, provided the computer system is not in a first type of communication session with an external computer that has initiated a shared training session. In some implementations, when a second user interface object corresponding to the shared training session is selected, it causes the content corresponding to the shared training to be displayed via a display generation component from a playback position (e.g., playback time), which corresponds to the current playback position of the shared training when the input to select the second user interface object is received (e.g., when the second user interface object is selected, the shared training begins playing from the current playback position of the shared training as seen by other participants in the shared training (e.g., not from the beginning)). Displaying the second user interface object corresponding to the shared training session provides the user with feedback on the current state of the device (e.g., the computer system has detected that a participant in the first type of communication session is sharing a training session). Providing users with improved feedback enhances device operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device). This, in turn, reduces power consumption and improves device battery life by enabling users to use the device more quickly and effectively.

[0282] In some implementations, when displaying content associated with a shared training session and while the computer system is engaged in a first type of communication session with one or more external computer systems, the computer system (e.g., 600B, 600C) is configured to communicate (e.g., transmit to or receive from) one or more external computer systems (e.g., 600A, 600B, 600C) via a communication mode of a first type of communication session selected from the group consisting of: audio communication (e.g., voice audio), video communication (e.g., using one or more cameras communicating with the computer system), text communication, screen content sharing communication, and combinations thereof (e.g., ...). Figure 6E , Figure 6F , Figure 6I , Figure 6J , Figure 6N (Participating in audio communication when displaying content associated with the first training) and / or Figure 6W (Participating in video communication while displaying content associated with the first training session). Configuring the computer system to communicate with one or more external computer systems via a communication mode of the first type of communication session while displaying content corresponding to the shared training session allows users to communicate quickly and easily with other users while viewing training content, thereby reducing the amount of input required to communicate with other users while viewing training content. Reducing the amount of input required to perform operations enhances the operability of the device and makes the user device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), thereby further reducing power consumption and extending the device's battery life by enabling users to use the device more quickly and efficiently.

[0283] In some implementations, while displaying content corresponding to a shared training session and while the computer system is engaged in a first type of communication session with one or more external computer systems, the computer system (e.g., from an external device; from an application running on the computer system) receives notification data. In response to receiving the notification data: based on the determination that the notification data is associated with a first type of communication session (e.g., receiving notification data from one or more external computer systems; the notification is related to communication from one of the participants), the computer system displays the generated component at a first location (e.g., Figure 6E , Figure 6H , Figure 6K , Figure 6L , Figure 6P , Figure 6QThe computer system displays a first notification (e.g., 646A, 658A, 658B, 666A, 666C, 670A, 670C, 683A, 683B, 685A, 685B) at a location different from the first location (e.g., communication from one or more external computer systems); and based on the determination that the notification data is associated with a shared training session (e.g., associated with a training application that manages shared training), the computer system displays the generated component at a second location different from the first location (e.g., Figure 6M A second notification (e.g., 672A, 672B) (e.g., training-related notification) is displayed at the first display location. In some embodiments, the first and second locations do not overlap. Displaying a notification associated with a first type of communication session at the first display location and a notification associated with a shared training session at the second display location provides the user with feedback on the current state of the device (e.g., whether a particular notification is related to a first type of communication session or a shared training session). These notifications also quickly and easily provide the user with information about the actions of other users in the communication or training sessions. By providing different types of notifications in different areas of the screen, the electronic device enhances the user's readability and allows them to understand the current state of other users' devices without additional user input. Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0284] In some implementations, a first notification indicates that a second external computer system is joining a shared training session (e.g., 646A, 658A, 658B) or leaving a shared training session (e.g., 683A, 683B) via a first type of communication session (e.g., via one or more communication protocols of the first type of communication session). The notification indicating that the second external computer system is joining or leaving the shared training session provides the user with feedback on the current status of the device (e.g., the device has detected and / or received information about the second external computer system joining or leaving the shared training session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0285] In some implementations, a first notification (e.g., a communication session status notification) indicates that a third external computer system is joining (in some implementations, has joined) a first type of communication session or is leaving (in some implementations, has left) a first type of communication session (e.g., 685A, 685B). The notification indicating that the third external computer system is joining or leaving a first type of communication session provides feedback to the user about the current status of the device (e.g., the device has detected and / or received information about the third external computer system joining and / or leaving a first type of communication session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0286] In some implementations, the second notification is a notification that includes first information relating to the shared training session of the computer system or one or more external computer systems participating in the shared training session (e.g., Figure 6M (Notifications 672A, 672B, 672C). In some embodiments, the second notification may be a training-related notification from any user participating in the shared training session within the first type of communication session. Displaying a notification related to the shared training session of the computer system or one or more external computer systems provides the user with feedback on the current state of the device (e.g., the device has detected and / or received first information related to the shared training session). Providing the user with improved feedback enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0287] In some implementations, the first information is an indication that a user of a fourth external computer system, which is in a first type of communication session and participating in a shared training session, has achieved a predetermined physical activity goal (e.g., meeting a calorie goal, meeting an activity intensity level goal) or has achieved a state change relative to one or more other participants in the first training session corresponding to the shared training session (e.g., the user has achieved a physical activity level that places the user within a predetermined segment of the participants (e.g., participants in the shared training session; participants not in the shared training session but also participating in the first training session)). Figure 6MNotifications 672A, 672B, and 672C in the documentation. Notifications indicating that the user of the fourth external computer system has achieved a predetermined physical activity goal or a change in status relative to one or more other participants in the first training session provide feedback to the user regarding the current status of the device (e.g., the device has detected and / or received information indicating that the user of the fourth external computer system has achieved a predetermined physical activity goal or a change in status relative to one or more other participants in the first training session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0288] In some implementations, when displaying content corresponding to a shared training session and when the computer system is engaged in a first type of communication session with one or more external computer systems, the computer system receives user input (e.g., 678) corresponding to a request to initiate a process for ending the display of content corresponding to the shared training session. In response to receiving user input corresponding to a request to initiate the process of ending the display of content corresponding to a shared training session, the computer system displays: a first end option (e.g., 680C-1), which, when selected, causes the computer system to stop displaying content corresponding to the shared training session (e.g., user interface 636C) (e.g., only the user of the computer system leaves the shared training session), without causing at least one external computer system in a first type of communication session and displaying content corresponding to the shared training session to stop displaying content corresponding to the shared training session (in some embodiments, and the training associated with the shared training session ends at the external computer system); and a second end option (e.g., 680C-2), which, when selected, causes the computer system to stop displaying content corresponding to the shared training session and causes at least one external computer system in a first type of communication session and displaying content corresponding to the shared training session (in some embodiments, all computer systems participating in the shared training session (e.g., ending the shared training session of all participants) to stop displaying content corresponding to the shared training session (in some embodiments, and the shared training session ends at the external computer system). The simultaneous display of a first end option that allows the computer system to stop displaying content corresponding to the shared training session, and a second end option that allows multiple computer systems to stop displaying content corresponding to the shared training session, provides users with the ability to end only their own training or to end training on multiple computer systems. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends device battery life by enabling users to use the device more quickly and efficiently.

[0289] In some implementations, the computer system receives user input (e.g., 682) corresponding to a first end option (e.g., 680C-1). In response to receiving user input corresponding to the first end option, the computer system stops displaying content corresponding to the shared training session via a display generation component communicating with the computer system (e.g., only the user of the computer system leaves the shared training session), wherein after the computer system stops displaying content corresponding to the shared training session, the content corresponding to the shared training session continues to be displayed via a display generation component communicating with at least one external computer system in a first type of communication session (e.g., ...). Figure 6P Device 600C stops displaying training, while devices 600A and 600B continue to display training. In some implementations, selecting the first termination option only causes the computer system to leave the shared training session, without causing any external computer system to stop displaying content corresponding to the shared training session (e.g., leaving the shared training session). Simultaneously displaying both a first termination option that allows the computer system to stop displaying content corresponding to the shared training session and a second termination option that allows multiple computer systems to stop displaying content corresponding to the shared training session provides the user with the ability to terminate only their own training or terminate training on multiple computer systems. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by assisting the user in providing appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends device battery life by enabling users to use the device more quickly and efficiently.

[0290] In some implementations, after ceasing the display of content corresponding to the shared training session via a display generation component communicating with the computer system, the computer system receives a first set of user input corresponding to a request to rejoin the shared training session (e.g., one or more tap inputs and / or one or more non-tap inputs) (e.g., 684-2) (e.g., receiving a first set of user input corresponding to a selection of display options for rejoining the shared training session) (e.g., 654C). In response to receiving the first set of user input, the computer system displays content corresponding to the shared training session via a display generation component communicating with the computer system (e.g., ...). Figure 6P-1The device 600C in the example displays content corresponding to a shared training session via a display generation component (e.g., 602C) communicating with a computer system (e.g., 600C) and content corresponding to the shared training session (e.g., 636A, 636B) displayed via a display generation component communicating with at least one external computer system (e.g., 600A, 600B) in a first type of communication session. In some embodiments, the content corresponding to the shared training session displayed via the display generation component communicating with the computer system is displayed from a specific playback position based on the playback position of the content corresponding to the shared training session played at and / or by at least one external computer system (e.g., the playback position of the content displayed at and / or by the computer system is synchronized with the playback position of the content displayed at and / or by at least one external computer system (e.g., matched)). Allowing a user to rejoin the shared training session provides the user with the ability to temporarily leave the shared training session and then rejoin it in a manner synchronized with at least one external computer system. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling users to use the device more quickly and efficiently.

[0291] In some implementations, the computer system receives user input corresponding to a second end option (e.g., 680C-2). In response to receiving user input corresponding to the second end option: the computer system stops displaying content corresponding to the shared training session (e.g., training user interface 636C) via the display generation component (e.g., leaving the shared training session); and causes at least one external computer system (e.g., devices 600A and / or 600B) in a first type of communication session and displaying content corresponding to the shared training session to stop displaying such content. Simultaneously displaying a first end option that causes the computer system to stop displaying content corresponding to the shared training session and a second end option that causes multiple computer systems to stop displaying such content provides the user with the ability to end only their own training or to end the training of multiple computer systems. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0292] In some implementations, when displaying content corresponding to a shared training session (e.g., Figure 6J Device 600B in the computer system and a fifth external computer system (e.g., displaying content corresponding to a shared training session) are involved in the computer system's interaction with the system. Figure 6J When a first type of communication session occurs between the computer system and one or more external computer systems (devices 600A and 600C) in the first type of communication session, the computer system receives user input (e.g., 664) corresponding to a request to pause the shared training session (e.g., pause the display of content corresponding to the shared training session). In response to receiving the user input corresponding to the request to pause the shared training session: the computer system pauses the shared training session (e.g., pauses the display of content corresponding to the shared training session at the display generation component (e.g., without ending the shared training session)). Figure 6K ); and causing a fifth external computer system (e.g., devices 600A, 600C) to pause displaying content corresponding to the shared training session (e.g., Figure 6K In some implementations, after training is paused, the computer system receives user input corresponding to a request to resume training, and in response, resumes training at both the computer system and a fifth external computer system. Pausing the display of training-related content on multiple computer systems in response to user input on the computer system provides the user with the ability to pause training content on multiple computer systems without requiring further input. Performing the operation when a set of conditions has been met and no further user input is needed enhances device operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends device battery life by enabling users to use the device more quickly and effectively.

[0293] In some implementations, when displaying content corresponding to a shared training session and when the computer system is engaged in a first type of communication session with one or more external computer systems, including a sixth external computer system displaying content corresponding to the shared training session, the computer system receives a request from the sixth external computer system to end the shared training session and stop displaying the content corresponding to the shared training session (e.g., a request initiated by selecting the "End All" option at the sixth external computer system) (e.g., if device 600C receives...). Figure 6OIf option 680C-2 is selected, devices 600A and / or 600B receive a request to end the training session from device 600C. In response to the request received from the sixth external computer system, the computer system ends the training session on the computer system. In some implementations, ending the training session includes stopping the display of content corresponding to the shared training session on the computer system. Automatically ending the training session in response to a request received from the sixth external computer system provides the user with the ability to end training content on multiple computer systems without further input. Performing the operation when a set of conditions has been met and no further user input is required enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0294] In some implementations, when displaying content corresponding to a shared training session and when the computer system is engaged in a first type of communication session with one or more external computer systems, including a seventh external computer system displaying content corresponding to the shared training session, the computer system receives a request from the seventh external computer system to pause the display of the content corresponding to the shared training session (e.g., a request initiated by selecting a "pause" option at the seventh external computer system) (e.g., device 600B receives a request from the seventh external computer system to pause the display of the content corresponding to the shared training session). Figure 6J The pause option 662B-1 is selected, and devices 600A and / or 600C receive a request from device 600B to pause the display of content associated with training. In response to receiving a request from a seventh external computer system, the computer system pauses the display of content corresponding to the shared training session (e.g., Figure 6K (For example, without ending the shared training session). In some implementations, after pausing the display of content, the computer system receives an indication from the external computer system in the first type of communication session that the display of content has been resumed, and in response to the indication, resumes the display of content corresponding to the shared training session. Pausing the display of training-related content in response to a request received from a seventh external computer system provides the user with the ability to pause training content on multiple computer systems without requiring further input. Performing the operation when a set of conditions has been met without requiring further user input enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0295] In some implementations, after a shared training session is completed, the computer system displays a training summary user interface (e.g., 686A, 686B) via a display generation component. This training summary user interface includes: physical activity data (e.g., calorie burned data; heart rate data) collected by the computer system for the user of the computer system (e.g., 687A-2, 687B-2); and instructions from one or more external computer systems (e.g., instructions from the user of the external computer system), which are in a first-type communication session with the computer system and participating in the shared training session (e.g., 687A-1, 687B-1) (e.g., content corresponding to the shared training session is being displayed). The training summary user interface, which displays physical activity data and instructions from one or more external computer systems in a first-type communication session and participating in the shared training session, provides the user with feedback on the current status of the device (e.g., the shared training session has ended) and feedback on the status of one or more external computer systems (e.g., which computer systems are in a first-type communication session and participating in the shared training session). Providing users with improved feedback enhances device operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device). This, in turn, reduces power consumption and improves device battery life by enabling users to use the device more quickly and effectively.

[0296] In some implementations, when displaying content corresponding to a shared training session via a display generation component, the computer system receives a request (e.g., inputs 690, 692) that causes a second display generation component (e.g., 600D) (e.g., a smart TV; a digital media player connected to a TV or monitor) to communicate with the computer system to display content corresponding to the shared training session. In response to the request that the second display generation component, communicating with the computer system, display content corresponding to the shared training session, the computer system causes the second display generation component to display content corresponding to the shared training session (e.g., ...). Figure 6V In some implementations, the computer system also stops displaying content via the display generation component. The second display generation component, responding to a request, displays content corresponding to the shared training session, providing the user with the ability to display content corresponding to the shared training session on the second display generation component. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by assisting the user in providing appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling the user to use the device more quickly and efficiently.

[0297] In some embodiments, the computer system receives second notification data when it causes content corresponding to a shared training session to be displayed at a second display generation component. In response to the second notification data: based on a determination that the second notification data is associated with a first type of communication session (e.g., receiving the second notification data from one or more external computer systems), the computer system displays a third notification (e.g., 694) (e.g., communication from one or more external computer systems) via the display generation component; and based on a determination that the second notification data is associated with a shared training session (e.g., associated with a training application managing the shared training session), the computer system causes a fourth notification (e.g., 695) (e.g., a training-related notification) to be displayed at the second display generation component. In some embodiments, notifications are displayed on different displays depending on the type of notification. Displaying notifications associated with a first type of communication session on the display generation component and displaying notifications associated with a shared training session at the second display generation component provides the user with feedback on the current state of the device (e.g., whether a particular notification is related to a first type of communication session or a shared training session). Providing users with improved feedback enhances device operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device). This, in turn, reduces power consumption and improves device battery life by enabling users to use the device more quickly and effectively.

[0298] It should be noted that the above is relative to method 750 (e.g., Figure 7B The details of the process described herein also apply in a similar manner to the methods described below and / or above. For example, methods 700, 900, and 1100 optionally include one or more features of the various methods described above with reference to method 750. For example, in some embodiments, the first type of communication session described in methods 700, 750, 900, and 1100 is the same communication session in all three methods. For example, in some embodiments, the instruction received in method 750 corresponds to the training shared via method 900. For the sake of brevity, these details will not be repeated below.

[0299] Figures 8A-1 to 8I Exemplary user interfaces for displaying and sharing group training content are shown according to some embodiments. The user interfaces in these figures are used to illustrate the processes described below, including... Figure 9 The process in.

[0300] Figures 8A-1 to 8I An exemplary device and user interface are shown. Figure 8A-1At this location, electronic device 800 (e.g., device 100, 300, 500) is displaying a media main menu user interface 801 on display 802 (e.g., a smart TV (e.g., a computer system with dedicated media playback capabilities) (e.g., a device having one or more features of device 100, 300, or 500) or a television connected to a digital media player (e.g., a computer system with dedicated media playback capabilities) (e.g., a device having one or more features of device 100, 300, or 500)). In some embodiments, display 802 is an integrated part of electronic device 800. In some embodiments, electronic device 800 is a separate digital media player that communicates with display 802 (e.g., wirelessly or wired). The media main menu user interface 801 includes multiple options 803A, 803B, 803C corresponding to different applications (e.g., different media applications). Option 803A corresponds to a fitness application, option 803B corresponds to a music application, and option 803C corresponds to a television application.

[0301] Figure 8A-1 Remote control 804 is also shown, which is configured to transmit data to electronic device 800 based on user input detected at remote control 804 (e.g., via RF communication, via Bluetooth, via infrared). Remote control 804 includes a selection area 806A (which includes a touch-sensitive surface for detecting tap, press, and swipe gestures), menu button 806B, TV button 806C, microphone button 806D, play / pause button 806E, and volume control button 806F.

[0302] Figure 8A-1Electronic device 600A is also shown, which is a smartphone with a display 602A. In the depicted embodiments, electronic devices 600A and 800 are associated with the same user John (e.g., uniquely corresponding to the same user John). In some embodiments, both electronic devices 600A and 800 are logged into the same user account corresponding to the same user. In some embodiments, electronic device 600A is associated with one or more user accounts (e.g., one or more user accounts are logged into electronic device 600A and / or have previously logged into the electronic device), electronic device 800 is associated with one or more user accounts (e.g., one or more user accounts are logged into electronic device 800 and / or have previously logged into the electronic device), and the one or more user accounts associated with electronic device 600A overlap with the one or more user accounts associated with electronic device 800, such that both electronic devices 600A and 800 are associated with user John. Electronic device 600A displays a communication session overlay 604A superimposed on the main menu user interface 606A. The communication session overlay 604A indicates that electronic device 600A is participating in a communication session with three other devices. In some implementations, the communication session is a synchronous media communication session. (See reference above.) Figure 6A The communication sessions discussed enable communication between electronic devices via multiple communication media, including text-based communication, audio-based communication, video-based communication, and synchronous content sharing.

[0303] Figure 8A-1 Two electronic devices 805A and 805B (e.g., wearable electronic devices and / or smartwatches) are also depicted. In the depicted embodiments, electronic devices 805A and 805B are smartwatches. Electronic device 805A corresponds to a first user John (e.g., logging into a user account corresponding to the first user), and electronic device 805B corresponds to a second user Natalie (e.g., logging into a user account corresponding to the second user). In some embodiments, electronic devices 805A and 805B meet proximity criteria relative to electronic device 800 (e.g., within a threshold distance of electronic device 800 and / or meet signal strength criteria relative to electronic device 800).

[0304] When the electronic device 800 causes the media main menu user interface 801 to be displayed with option 803A as the focus, the remote control 804 detects the activation of the selection area 806A via button press input 807 corresponding to the selection of option 803A, and transmits the instruction of the input to the electronic device 800. The electronic device 800 receives the instruction of input 807 corresponding to the selection of option 803A from the remote control 804.

[0305] exist Figure 8A-2 In response to the detection of input 807 (e.g., receiving an indication of the input), and in some embodiments, based on the determination that multiple electronic devices of a specific type (e.g., multiple wearable devices, multiple smartwatches) satisfy a proximity criterion, electronic device 800 causes display 802 to display a disambiguation user interface 809 including options 811A, 811B, and 811C. Option 811A corresponds to electronic device 805A and option 811B corresponds to electronic device 805B. Option 811A can be selected to indicate that the user associated with electronic device 805A (“John”) is the user who will perform the training, and option 811B can be selected to indicate that the user associated with electronic device 805B (“Natalie”) is the user who will perform the training. Option 811C can be selected to add a new user and / or device (e.g., to indicate that neither John nor Natalie is the user who will perform the training).

[0306] When the electronic device 800 causes the disambiguation user interface 809 to be displayed with option 811A as the focus, the remote control 804 detects the activation of the selection area 806A via button press input 813 corresponding to the selection of option 811A, and transmits the indication of the input to the electronic device 800. The electronic device 800 receives the indication of input 813 corresponding to the selection of option 811A from the remote control 804.

[0307] exist Figure 8A-3 In response to the detection of input 813 (e.g., receiving an indication of the input), electronic device 800 displays training suggestion user interface 808. Training suggestion user interface 808 includes a plurality of training suggestions 810A-810F, which can be selected to initiate a process for playing content (e.g., video content, audiovisual content, and / or audio content) corresponding to the selected training suggestion.

[0308] In addition, the training suggestion user interface 808 includes an indication 815 that indicates that user John is an active user in the training session (e.g., based on the information provided). Figure 8A-2 (Selection of option 811A in the text). In some embodiments, electronic device 800 receives user information (e.g., user-specific physical activity indicators (e.g., daily physical activity indicators), user name, user alias, and / or user profile picture) from electronic device 805A in response to user input 813. Alternatively, in some embodiments, if the user has selected... Figure 8A-2In option 811B, electronic device 800 receives user information from electronic device 805B and instructs 815 to display a profile picture corresponding to user Natalie instead of user John. In some embodiments, if electronic device 800 detects only a single electronic device of a specific type that meets the proximity criteria (e.g., only a single smartwatch), electronic device 800 extracts user information from that single electronic device, and in some embodiments, the disambiguation user interface 809 will not be displayed (e.g., the training suggestion user interface 808 will be displayed instead of the disambiguation user interface 809).

[0309] exist Figure 8A-3 In this embodiment, electronic device 800 displays indication 812. Indication 812 is displayed based on the determination that one or more electronic devices (e.g., electronic device 600A) meet one or more criteria relative to electronic device 800. In some embodiments, the one or more criteria include one or more proximity criteria met when the electronic device is within a threshold proximity of electronic device 800 (e.g., electronic device 600A is within a threshold distance and / or proximity of electronic device 800 (e.g., based on signal strength information of wireless signals transmitted between electronic device 600A and electronic device 800)). In some embodiments, the one or more criteria include criteria met when the electronic device meets one or more proximity criteria and is participating in a communication session (e.g., a synchronous media communication session). In some embodiments, the one or more criteria include user account criteria met when the electronic device meets one or more proximity criteria, is participating in a communication session, and is associated with a common user account of electronic device 800. Figure 8A-3 In this process, electronic device 600A meets one or more standards, and accordingly, electronic device 800 causes display 802 to display indication 812.

[0310] When the electronic device 800 causes the training suggestion user interface 808 to display with training suggestion 810C as the focus, the remote control 804 detects the activation of the selection area 806A via button press input 814 corresponding to the selection of training suggestion 810C, and transmits the indication of the input to the electronic device 800. The electronic device 800 receives the indication of input 814 corresponding to the selection of training suggestion 810C from the remote control 804.

[0311] exist Figure 8BIn response to the detection of input 814 (e.g., receiving an indication of the input), and based on a determination that one or more electronic devices meet one or more criteria (e.g., a determination that electronic device 600A meets one or more criteria), electronic device 800 causes display 802 to display options 816A and 816B. Option 816A can be selected to initiate a process for sharing training content corresponding to the selected training suggestion 810C to one or more external electronic devices (e.g., via a communication session), while option 816B can be selected to cause electronic device 800 and / or display 802 to display the training content corresponding to the selected training suggestion 810C only on display 802 (e.g., without displaying and / or sharing the training content to any other electronic device). Figure 8B When electronic device 800 displays options 816A and 816B with option 816A as the focus, remote control 804 detects activation of selection area 806A via button press input 818 corresponding to the selection of option 816A, and transmits the instruction of the input to electronic device 800. Electronic device 800 receives the instruction of input 818 corresponding to the selection of option 816A from remote control 804.

[0312] exist Figure 8C In response to the detection of input 818 (e.g., receiving an indication of such input), electronic device 800 causes display 802 to display user interface 822. User interface 822 instructs the user to use electronic device 600A to confirm the user's intention to share training content from electronic device 800 to a communication session. Furthermore, in response to the detection of input 818 (e.g., receiving an indication of such input), electronic device 800 causes electronic device 600A to display a notification 820 that can be selected by the user to confirm the user's intention to share training content from electronic device 800 to a communication session. While displaying notification 820, electronic device 600A detects user input 824 (e.g., a tap) corresponding to the selection of notification 820.

[0313] exist Figure 8DIn response to detecting user input 824, electronic device 600A transmits and / or causes electronic device 800A to transmit an indication that electronic device 600A has detected user input 824 corresponding to the selection of notification 820. In response to receiving this indication, electronic device 800 joins the communication session and displays a training user interface 826, which includes a timer 828 indicating that training will begin in three seconds. The communication session overlay 604A on device 600A now indicates that five devices are participating in the communication session because electronic device 800 has been added as a participating device. Furthermore, in response to electronic device 800 being added to the communication session, electronic device 800 causes display 802 to display an indication 830 indicating that electronic device 800 is participating in the communication session. In response to electronic device 800 being added to the communication session and sharing training content with the communication session, other devices participating in the communication session (including electronic device 600B) display a notification (e.g., notification 832) indicating that electronic device 800 is sharing group training in the communication session. Notification 832 includes an option 834 that allows the electronic device 600B to be included in group training. Figure 8D At this point, the electronic device 600B detects user input 836 (e.g., tap input) corresponding to the selection of the added option 834.

[0314] exist Figure 8E In response to the detection of user input 836, electronic device 600B joins the group training and displays training user interface 826B. Training user interface 826B corresponds to training user interface 826 and displays video content synchronized with training user interface 826 (e.g., playback of video content in training user interface 826B is synchronized with playback of video content in training user interface 826). For example, training user interface 826B displays timer 828B indicating that training will begin in two seconds, while training user interface 826 displays timer 828, also indicating that training will begin in two seconds. Furthermore, in response to electronic device 600B joining the group training, electronic device 600A displays notification 838, and electronic device 800 displays notification 840 indicating that electronic device 600B has joined the group training. In some implementations, electronic device 600B transmits (e.g., via a communication session) and / or causes electronic devices 600A and 800 to transmit an indication that electronic device 600B has detected user input 836 corresponding to a request to join group training, and electronic devices 600A and 800 display notifications 838 and 840 in response to receiving the indication.

[0315] exist Figure 8FNine seconds into the group training session, electronic device 800 continues to display training user interface 826, which shows video content corresponding to the training (e.g., a video demonstrating the training). Training user interface 826 also includes a training physical activity index 842A indicating (e.g., corresponding to) the physical activity of the user of electronic device 800 (e.g., "John"). Training physical activity index 842A displays John's heart rate (e.g., 142 BPM) and the number of calories John has burned during the training (e.g., 5 calories). Training user interface 826 also includes John's daily physical activity index 844A for the day, including time outside of the current training session. For example, as discussed above with reference to Daily Activity Index 650A, the outer ring of Daily Activity Index 844A indicates the number of calories John burned that day (e.g., indicating John's progress toward his daily calorie goal), the middle ring of Daily Activity Index 844A indicates the number of minutes John exercised that day (e.g., indicating John's progress toward his daily exercise minutes goal), and the innermost ring of Daily Activity Index 844A indicates the number of hours John stood for a threshold amount of time that day (e.g., the number of hours John stood for at least 3 minutes) (e.g., indicating John's progress toward his daily standing goal).

[0316] Similarly, electronic device 600B displays a training user interface 826B, which also displays video content corresponding to the training. The video content displayed in training user interface 826B is synchronized with the video content displayed in training user interface 826. Training user interface 826B also displays a training physical activity index 842B indicating the physical activity of the user of electronic device 600B (e.g., "Jane") during training. Training user interface 826B also displays a daily physical activity index 844B indicating Jane's physical activity for the day, as described above with reference to daily physical activity index 844A.

[0317] exist Figure 8G In the communication session, electronic devices participating in the communication session (e.g., all electronic devices participating in the communication session), including electronic devices 600A, 800, and 600B, receive an indication that a new electronic device (e.g., the electronic device corresponding to user Sarah Jones) has joined the group training. In response to receiving this indication, electronic device 600A displays notification 846C, electronic device 800 causes display 802 to display notification 846A, and electronic device 600 displays notification 846B indicating that the new electronic device has joined the group training.

[0318] exist Figure 8HIn this embodiment, electronic device 800 detects and / or determines that its user John has achieved a physical activity goal (e.g., has achieved his daily calorie goal), as indicated by the closed outermost circle in the Daily Physical Activity Index 844A. In response to this determination, electronic device 800 displays a fitness notification 848A via display 802. Furthermore, electronic device 800 transmits (e.g., via an activity communication session) and / or causes to transmit to electronic devices participating in the group training (including electronic device 600B) an indication that John has achieved his physical activity goal. In response to receiving this indication, electronic device 600B displays a fitness notification 848B indicating that John has achieved his physical activity goal. In some embodiments, electronic devices participating in the communication session but not participating in the group training, such as electronic device 600A, do not receive an indication that John has achieved his physical activity goal and / or do not display a notification that John has achieved his physical activity goal.

[0319] exist Figure 8G and Figure 8H As can be seen, notifications related to fitness apps (e.g., notifications generated by the fitness app) (e.g., Figure 8H Notifications related to the communication session (e.g., notifications generated by the communication application) are displayed in the first display area (e.g., the upper right corner of the display area), while notifications related to the communication session (e.g., notifications generated by the communication application) are displayed in the second display area (e.g., the upper right corner of the display area). Figure 8G The notifications are displayed in different secondary display areas (e.g., the upper central area). In some implementations, fitness application notifications include notifications related to a user achieving one or more physical activity goals and / or one or more physical activity achievements during group training, while activity communication session notifications include notifications related to one or more users joining and / or leaving group training, one or more users joining and / or leaving a communication session, and / or one or more users pausing and / or resuming playback of video content from group training.

[0320] exist Figure 8IIn the context of the group training session, the group training has been completed (e.g., the video content corresponding to the group training has finished playing and / or the user has finished the group training for all users). In response to detecting that the group training has been completed, the electronic device 800 displays a training summary user interface 850A. The training summary user interface 850A includes a training physical activity index 852A-1 corresponding to the user (“John”) of the electronic device 800, including a training performance bar 852A-3 indicating John's performance relative to other users performing the same training. The training summary user interface 850A also includes John's daily physical activity index 852A-2, as discussed above. The training summary user interface 850A also includes an indication 852A-4 for users who participated in the group training session. In the illustrated exemplary scenario, indication 852A-4 includes representations of John, Jane, and Sarah. The training summary user interface 850A also includes: a completion option 852A-5, which can be selected to close (e.g., stop displaying) the training summary user interface 850A; a sharing option 852A-6, which can be selected to share training summary information with one or more other users; and a relaxation option 852A-7, which can be selected to initiate a playback of relaxation training.

[0321] Similar to electronic device 800, electronic device 600B displays a training summary user interface 850B. The training summary user interface 850B is essentially the same as the training summary user interface 850A, except that the training summary user interface 850B includes training physical activity indicators 852B-1, training performance bars 852B-3, and daily physical activity indicators 852B-2 corresponding to the user (“Jane”) associated with electronic device 600B.

[0322] Although it has already Figures 8A-1 to 8I The text describes certain exemplary features, but it should be understood that the above references... Figures 6A to 6X Any feature in the publicly disclosed features can be applied to Figures 8A-1 to 8I The exemplary embodiments described. For example, in some embodiments, in Figures 8A-1 to 8I In this scenario, if group training is paused on one electronic device, group training is also paused on all electronic devices involved in the group training. In another example, in some implementations, in... Figures 8A-1 to 8I If a user attempts to exit group training on his or her electronic device, the user is presented with the option to end group training only for that user (e.g., only on that electronic device) and / or for all users participating in group training (e.g., for all electronic devices participating in group training).

[0323] above Figures 6V to 6X An exemplary scenario of displaying training content on a television display device 600D is depicted. In some implementations, Figures 6V to 6X The exemplary scenario depicted and Figures 8A-1 to 8I The difference in the exemplary scenario depicted is that, Figures 6V to 6X In this embodiment, device 600D simply acts as a display for device 600A, and device 600D is not added to the communication session as a separate device. In contrast, in some implementations, in... Figures 8A-1 to 8I In the exemplary scenario depicted, electronic device 800 is added to the communication session separately from electronic device 600A, and training content is shared to the communication session independently of electronic device 600A.

[0324] Figure 9 This is a flowchart illustrating a method for displaying and sharing group training content using a computer system, according to some embodiments. Method 900 is performed at a computer system (e.g., 100, 300, 500) communicating with a display generation component, one or more input devices, and a first external computer system. Some operations in method 900 are optionally combined, some operations are optionally changed in order, and some operations are optionally omitted.

[0325] As described below, Method 900 provides an intuitive way to display and share group training content. This method reduces the cognitive burden on users when displaying and sharing group training content, thereby creating a more efficient human-computer interface. For battery-powered computing devices, it enables users to display and share group training content more quickly and efficiently, saving power and increasing the time interval between battery charging sessions.

[0326] In some implementations, a computer system (e.g., a digital media player; a computer set-top box; a smart TV; a computer system controlling an external display) (e.g., 800) communicating with a display generating component (e.g., 802) (e.g., a display controller; a touch-sensitive display system; and / or a display (e.g., an integrated and / or connected display)), one or more input devices (e.g., a touch-sensitive surface (e.g., a touch-sensitive display); a mouse; a keyboard; and / or a remote control) and a first external computer system (e.g., 600A) (e.g., a smartphone, a tablet; a smartwatch) (e.g., a first external computer system different from the computer system) detects (902) via one or more input devices a set of one or more user inputs (e.g., 814) corresponding to a request to initiate a training session (e.g., a single input (e.g., a tap input, a non-tap input, a remote control input, and / or a touch-sensitive display input)) (e.g., a user input selecting a training option from multiple training options), wherein initiating a training session includes initiating the display of content corresponding to the training (e.g., video content, instructions, tutorials) (e.g., initiating playback of content corresponding to the training).

[0327] In response to detecting one or more user inputs (904), and based on the determination that the first external computer system (e.g., 600A) satisfies (906) one or more training sharing criteria (e.g., satisfying one or more training sharing criteria relative to the computer system), wherein the one or more training sharing criteria include a first criterion satisfied when the first external computer system is participating in a first type of communication session with one or more external computer systems (e.g., excluding the computer system), the computer system displays (908) a first user interface (e.g., ...) via a display generation component. Figure 8B The device 800 in the first user interface includes: a first user interface object (e.g., 816A) selectable to share content corresponding to a training session to one or more external computer systems in a first type of communication session (in some embodiments, the first user interface object is selectable to also add computer systems to the first type of communication session) (in some embodiments, selection of the first user interface object causes one or more external computer systems participating in the first type of communication session to display a user interface object corresponding to (e.g., an instruction) the training session (e.g., a notification)); and a second user interface object (e.g., 816B) selectable to display content corresponding to the training session via a display generation component (e.g., selectable to initiate playback of video content corresponding to the training session) without sharing the content corresponding to the training session to one or more computer systems in the first type of communication session (e.g., and optionally, without adding computer systems to the first type of communication session).

[0328] In response to the detection of one or more user inputs (904), and based on the determination (910) that the first external computer system does not meet one or more training sharing criteria (e.g., the determination that no external computer system meets one or more training sharing criteria relative to the computer system), the computer system initiates (912) a training session (in some embodiments, initiating a training session includes initiating a user physical activity tracking function), including displaying content corresponding to the training via a display generation component (e.g., initiating playback of video content corresponding to the training), without displaying the first user interface (e.g., without sharing the video content corresponding to the training session to a first type of communication session).

[0329] In some embodiments, one or more training sharing criteria include a second criterion that is met when the first external computer system meets one or more proximity criteria relative to the computer system (e.g., when the first external computer system is within a threshold distance of the computer system (e.g., as indicated by signal strength information)). In some embodiments, one or more training sharing criteria include a third criterion that is met when the first external computer system and the computer system are associated with the same user account (e.g., the same user account is logged into both the first external computer system and the computer system, and / or the same user account has previously been logged into both the first external computer system and the computer system). In some embodiments, the communication session is a synchronous media and communication session. In some embodiments, a first type of communication session enables the first external computer system to output corresponding content (e.g., synchronous content (e.g., audio and / or video data synchronized at the first external computer system and the external computer systems (e.g., one or more external computer systems)) and / or screen-sharing content (e.g., image data generated by a device (e.g., a computer system in the first type of communication session) that provides a real-time representation of the image or video content currently displayed at the device). In some embodiments, during a first type of communication session, corresponding content is simultaneously output at both a first external computer system and one or more external computer systems. In some embodiments, the corresponding content is screen-shared content from the first external computer system (e.g., content displayed on the monitor of the first external computer system), which is transmitted to one or more external computer systems such that the first external computer system and one or more external computer systems simultaneously output the screen-shared content from the first external computer system. In some embodiments, the corresponding content is screen-shared content from a second external computer system (e.g., content displayed on the monitor of the second external computer system), which is transmitted to the first external computer system such that the first external computer system and one or more external computer systems including the second external computer system simultaneously output the screen-shared content from the second external computer system. In some embodiments, the corresponding content is synchronized content output at both the first external computer system and one or more external computer systems.In some implementations, a first external computer system and one or more external computer systems each individually access corresponding content (e.g., video; movie; television program; song) from a remote server and synchronize in the corresponding output of their respective content, such that as each computer system individually accesses the corresponding content from the remote server, content is output at the first external computer system and one or more external computer systems (e.g., via an application local to the respective computer system). In some implementations, the first external computer system and one or more external computer systems individually access the corresponding content (e.g., synchronize the content) in response to an option received at the first external computer system or at one of the one or more external computer systems for requesting the output of the corresponding content.

[0330] Based on the determination that the first external computer system meets one or more training sharing criteria, the first user interface displays feedback to the user regarding the current state of the device (e.g., the computer system has detected a first external computer system that meets one or more training sharing criteria). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device). This, in turn, reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0331] Simultaneously displaying a first user interface object that can be selected to share content corresponding to the training session and a second user interface object that can be selected to display content corresponding to the training session without sharing the content provides the user with the ability to choose whether to share the training content. Providing additional control over the device enhances its operability and makes the user-device interface more efficient (e.g., by helping users provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and extends the device's battery life by enabling users to use the device more quickly and efficiently.

[0332] In some implementations, one or more training sharing criteria include criteria that are met when a first external computer system (e.g., 600A) logs into a user account associated with a computer system (e.g., 800) (e.g., the computer system is also logged into the same user account; the computer system is associated with multiple user accounts, including the user account to which the first external computer system is logged in (e.g., logged into those multiple user accounts)). Displaying the option to share content corresponding to a training session based on the determination of the user account associated with the computer system for which the first external computer system is logged in enhances security by preventing unauthorized devices from sharing training content. Providing improved security enhances device operability and makes the user-device interface more efficient (e.g., by restricting unauthorized access), which in turn reduces power consumption and extends device battery life by limiting the execution of restricted operations.

[0333] In some implementations, one or more training sharing criteria include criteria that are met when the first external computer system meets a proximity criterion relative to the computer system (e.g., device 600A meets a proximity criterion relative to device 800D) (e.g., the first external computer system is determined to be within a predetermined distance of the computer system). Displaying the option to share content corresponding to a training session based on the determination that the first external computer system meets the proximity criterion relative to the computer system enhances security by preventing unauthorized devices from sharing training content. Providing improved security enhances device operability and makes the user-device interface more efficient (e.g., by restricting unauthorized access), which in turn reduces power consumption and extends device battery life by limiting the execution of restricted operations.

[0334] In some implementations, based on the determination that a first external computer system (e.g., 600A) (in some implementations, any external computer system) meets one or more training sharing criteria, the computer system (in some implementations, before or after detecting the set of one or more user inputs) displays a first indicator (e.g., 812) via a display generation component (e.g., 802) indicating that one or more training sharing criteria are currently met; and based on the determination that one or more training sharing criteria are not met (e.g., the first external computer system does not meet) the display of the first indicator is abandoned. Displaying the first indicator based on the determination that the first external computer system meets one or more training sharing criteria provides the user with feedback on the current state of the device (e.g., the device has detected an external computer system that meets one or more training sharing criteria). Providing the user with improved feedback enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the battery life of the device by enabling the user to use the device more quickly and effectively.

[0335] In some embodiments, based on the determination that the computer system has joined (e.g., has been added to; is currently participating in) a first type of communication session with one or more external computers (in some embodiments, and when the first visual indicator is displayed), the computer system displays a second indicator (e.g., 830) via a display generation component indicating that the computer system has joined the first type of communication session with one or more external computers (e.g., the second indicator is different from the first indicator). In some embodiments, the second visual indicator replaces the first visual indicator. Displaying the second indicator based on the determination that the computer system has joined the first type of communication session with one or more external computers provides the user with feedback on the current state of the device (e.g., the computer system has joined the first type of communication session with one or more external computers). Providing the user with improved feedback enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and efficiently.

[0336] In some embodiments, the computer system detects user input (e.g., 818) corresponding to a first user interface object (e.g., 816A) via one or more input devices. In response to detecting user input corresponding to the first user interface object, the computer system causes a first external computer system (e.g., 600A) to display a request (e.g., 820) confirming that the computer system should be added to a first type of communication session with one or more external computer systems (e.g., as part of a notification). In some embodiments, this request includes a selectable user interface object, which, when selected, causes the computer system to be added to the first type of communication session. Causing the first external computer system to display the request confirming that the computer system should be added to the first type of communication session enhances security by preventing unauthorized devices from joining the first type of communication session. Providing improved security enhances device operability and makes the user-device interface more efficient (e.g., by restricting unauthorized access), which in turn reduces power consumption and extends device battery life by limiting the execution of restricted operations.

[0337] In some embodiments, after a training session is completed, the computer system displays a training summary user interface (e.g., 850A) via a display generation component. In some embodiments, the training summary user interface includes physical activity data (calorie burn data; heart rate data) collected by the computer system for the user of the computer system. In some embodiments, the training summary user interface includes instructions from one or more external computer systems (e.g., instructions from the user of the external computer system) that are in a first-type communication session with the computer system and also participate in the training session (e.g., sharing a training session). In some embodiments, the training summary user interface is not displayed on the external computer system. Displaying the training summary user interface provides the user with feedback on the current status of the device (e.g., the training session has ended). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0338] In some implementations, when sharing content corresponding to a training session to one or more external computer systems in a first type of communication session, the computer system (e.g., from an external device; from an application running on the computer system) receives notification data. In response to receiving the notification data: based on the determination that the notification data is associated with a first type of communication session (e.g., receiving notification data from one or more external computer systems; the notification is related to communication from one of the participants in the communication session), the computer system displays the generated component at a first location (e.g., Figure 8E , 8G The computer system displays a first notification (e.g., 840, 846A) (e.g., communication from one or more external computer systems) at a location different from the first location, based on a determination that the notification data is associated with a training session (e.g., associated with a training application that manages the training session). Figure 8H A second notification (e.g., 848A) (e.g., a training-related notification) is displayed at the first display location. In some implementations, the first and second locations do not overlap. Displaying a notification associated with a first type of communication session at the first display location and a notification associated with a training session at the second display location provides the user with feedback on the current state of the device (e.g., whether a particular notification is related to a first type of communication session or a training session). Providing the user with improved feedback enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0339] In some implementations, a first notification instructs a second external computer system to begin or cease displaying content corresponding to a training session via a first type of communication session (e.g., via one or more communication protocols of the first type of communication session) (e.g., 840, 846A) (e.g., joining or leaving a training session as a shared training session). The notification indicating that the second external computer system is beginning or ceasing to display content corresponding to the training session provides feedback to the user regarding the current state of the device (e.g., the device has detected and / or received information about the second external computer system beginning and / or ceasing to display content corresponding to the training session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0340] In some implementations, a first notification (e.g., a communication session status notification) indicates that a third external computer system is joining (in some implementations, has joined) a first type of communication session or is leaving (in some implementations, has left) a first type of communication session (e.g., 685A, 685B). The notification indicating that the third external computer system is joining or leaving a first type of communication session provides feedback to the user about the current status of the device (e.g., the device has detected and / or received information about the third external computer system joining and / or leaving a first type of communication session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when operating / interacting with the device), which in turn reduces power consumption and improves the device's battery life by enabling the user to use the device more quickly and effectively.

[0341] In some implementations, the second notification is a notification that includes first information relating to the training session of the computer system or one or more external computer systems (e.g., Figure 6M Notifications 672A, 672B, 672C and / or Figure 8H The notification (848A, 848B) indicates that the one or more external computer systems are in a first type of communication session and are displaying content corresponding to the training session. In some embodiments, the second notification may be a training-related notification from any user participating in the training session within the first type of communication session. Displaying notifications related to the training session of the computer system or one or more external computer systems provides the user with feedback on the current state of the device (e.g., the device has detected and / or received first information related to the training session). Providing improved feedback to the user enhances the operability of the device and makes the user-device interface more efficient (e.g., by helping the user provide appropriate input and reducing user errors when ope...

Claims

1. A computer system configured to communicate with a display generation component and one or more input devices, the computer system comprising: One or more processors; and The memory stores one or more programs configured to be executed by the one or more processors, the one or more programs including instructions for the following operations: The display generation component displays a user interface for a fitness application that includes a first user interface object corresponding to the first training session; When the user interface for the fitness application, which includes the first user interface object corresponding to the first training, is displayed, user input corresponding to the selection of the first user interface object is detected via the one or more input devices; as well as In response to detecting user input corresponding to the selection of the first user interface object corresponding to the first training: Initiating a training session corresponding to the first training includes initiating a process for displaying a training user interface corresponding to the fitness application via the display generation component, the training user interface including content associated with the first training; When user input corresponding to the selection of the first user interface object corresponding to the first training is detected, the computer system is determined to be involved in a first type of communication session with one or more external computer systems, including a first external computer system. When the computer system is involved in the first type of communication session, a communication session user interface is displayed that corresponds to the communication session with the one or more external computer systems including the first external computer system, wherein the communication session user interface is separate from the user interface of the fitness application. This causes a selectable user interface object to be displayed on the first external computer system, wherein the selectable user interface object can be selected to display the training user interface corresponding to the fitness application on the first external computer system, the training user interface including the content associated with the first training. as well as When user input corresponding to the selection of the first user interface object is detected, the first user interface object, corresponding to the first training, abandons the display of the selectable user interface object at the first external computer system based on the determination that the computer system is not involved in the first type of communication session with the one or more external computer systems. When displaying the content associated with the first training and when the computer system participates in the first type of communication session with the one or more external computer systems, user input corresponding to a request to initiate a process for ending the training session corresponding to the first training is received; In response to receiving user input corresponding to the request to initiate the process for ending the training session corresponding to the first training, the following is displayed: A first termination option, when selected, causes the computer system to stop displaying the content associated with the first training, without causing at least one external computer system in the first type of communication session and displaying the content associated with the first training to stop displaying the content associated with the first training. and A second termination option, when selected, causes the computer system to stop displaying the content associated with the first training, and causes at least one external computer system in the first type of communication session that is displaying the content associated with the first training to stop displaying the content associated with the first training.

2. The computer system according to claim 1, wherein: When displaying the content associated with the first training and when the computer system participates in the first type of communication session with the one or more external computer systems, the computer system is configured to communicate with the one or more external computer systems via a communication mode selected from the group consisting of the first type of communication session: audio communication, video communication, text communication, screen content sharing communication, and combinations thereof.

3. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: Receive notification data when displaying the content associated with the first training and when the computer system participates in the first type of communication session with one or more external computer systems, including the first external computer system; as well as In response to receiving the notification data: Based on the determination that the notification data is associated with the communication session of the first type, a first notification is displayed at a first location of the display generation component; as well as Based on the determination that the notification data is associated with the first training, a second notification is displayed at a second position on the display generation component that is different from the first position.

4. The computer system of claim 3, wherein the first notification instructs a second external computer system to begin displaying the content associated with the first training or to stop displaying the content associated with the first training via the first type of communication session.

5. The computer system of claim 3, wherein the first notification indicates that a third external computer system is joining or leaving the communication session of the first type.

6. The computer system of claim 3, wherein the second notification is a notification including first information relating to the first training of the computer system or one or more external computer systems, which are in the first type of communication session and are displaying the content associated with the first training.

7. The computer system of claim 6, wherein the first information is an indication that a user of a fourth external computer system, which is in the first type of communication session and is displaying content associated with the first training, has achieved a predetermined physical activity goal or has achieved a change in status relative to one or more other participants in the first training.

8. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: Receive user input corresponding to the first end option; and In response to receiving the user input corresponding to the first end option, the display of the content associated with the first training is stopped via the display generation component communicating with the computer system, wherein after the display generation component communicating with the computer system stops displaying the content associated with the first training, the content associated with the first training continues to be displayed by the display generation component communicating with at least one external computer system in the first type of communication session.

9. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: Receive user input corresponding to the second end option; and In response to receiving the user input corresponding to the second end option: Stop displaying the content associated with the first training via the display generation component that communicates with the computer system; and This causes at least one external computer system in the first type of communication session and displaying the content associated with the first training to stop displaying the content associated with the first training via a display generation component that communicates with the at least one external computer system.

10. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: While displaying the content associated with the first training and while the computer system is engaged in the first type of communication session with one or more external computer systems, including a fifth external computer system, user input corresponding to a request to pause the training session corresponding to the first training is received, the fifth external computer system being displayed the content associated with the first training; In response to receiving the user input corresponding to the request to pause the training session corresponding to the first training: Pause the training session corresponding to the first training session; as well as This causes the fifth external computer system to suspend displaying the content associated with the first training.

11. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: While displaying the content associated with the first training and while the computer system is engaged in a communication session of the first type with one or more external computer systems, including a sixth external computer system, a request is received from the sixth external computer system to terminate the training session associated with the first training and stop displaying the content associated with the first training; and In response to receiving the request from the sixth external computer system: End the training session on the computer system.

12. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: While displaying the content associated with the first training and while the computer system is engaged in the first type of communication session with one or more external computer systems, including a seventh external computer system, a request is received from the seventh external computer system to pause the display of the content associated with the first training; and In response to receiving the request from the seventh external computer system, the display of the content associated with the first training is paused on the computer system.

13. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: After the training session associated with the first training is completed, a training summary user interface is displayed via the display generation component, the training summary user interface including: Physical activity data collected by the computer system for users of the computer system; as well as The one or more external computer systems indicate that the one or more external computer systems are in the first type of communication session with the computer system and are participating in the training session associated with the first training.

14. The computer system of claim 13, wherein the training summary user interface further comprises: One or more instructions for users of external computer systems to achieve predetermined physical activity goals.

15. The computer system of claim 1, wherein the one or more programs further include instructions for performing the following operations: When displaying the content associated with the first training via the display generation component, a request is received to cause a second display generation component communicating with the computer system to display the content associated with the first training; and In response to the request to cause the second display generation component, which communicates with the computer system, to display the content associated with the first training, the second display generation component is caused to display the content associated with the first training.

16. The computer system of claim 15, wherein the one or more programs further include instructions for performing the following operations: When causing the content associated with the first training to be displayed at the second display generation component, receive second notification data; and In response to the second notification data: Based on the determination that the second notification data is associated with the communication session of the first type, a third notification is displayed via the display generation component; and Based on the determination that the second notification data is associated with the first training, a fourth notification is displayed at the second display generation component.

17. A non-transitory computer-readable storage medium storing one or more programs configured to be executed by one or more processors of a computer system in communication with a display generation component and one or more input devices, the one or more programs including instructions for: The display generation component displays a user interface for a fitness application that includes a first user interface object corresponding to the first training session; When the user interface for the fitness application, which includes the first user interface object corresponding to the first training, is displayed, user input corresponding to the selection of the first user interface object is detected via the one or more input devices; as well as In response to detecting user input corresponding to the selection of the first user interface object corresponding to the first training: Initiating a training session corresponding to the first training includes initiating a process for displaying a training user interface corresponding to the fitness application via the display generation component, the training user interface including content associated with the first training; When user input corresponding to the selection of the first user interface object corresponding to the first training is detected, the computer system is determined to be involved in a first type of communication session with one or more external computer systems, including a first external computer system. When the computer system is involved in the first type of communication session, a communication session user interface is displayed that corresponds to the communication session with the one or more external computer systems including the first external computer system, wherein the communication session user interface is separate from the user interface of the fitness application. This causes a selectable user interface object to be displayed on the first external computer system, wherein the selectable user interface object can be selected to display the training user interface corresponding to the fitness application on the first external computer system, the training user interface including the content associated with the first training. as well as When user input corresponding to the selection of the first user interface object is detected, the first user interface object, corresponding to the first training, abandons the display of the selectable user interface object at the first external computer system based on the determination that the computer system is not involved in the first type of communication session with the one or more external computer systems. When displaying the content associated with the first training and when the computer system participates in the first type of communication session with the one or more external computer systems, user input corresponding to a request to initiate a process for ending the training session corresponding to the first training is received; In response to receiving user input corresponding to the request to initiate the process for ending the training session corresponding to the first training, the following is displayed: A first termination option, when selected, causes the computer system to stop displaying the content associated with the first training, without causing at least one external computer system in the first type of communication session and displaying the content associated with the first training to stop displaying the content associated with the first training. and A second termination option, when selected, causes the computer system to stop displaying the content associated with the first training, and causes at least one external computer system in the first type of communication session that is displaying the content associated with the first training to stop displaying the content associated with the first training.

18. The non-transitory computer-readable storage medium according to claim 17, wherein: When displaying the content associated with the first training and when the computer system participates in the first type of communication session with the one or more external computer systems, the computer system is configured to communicate with the one or more external computer systems via a communication mode selected from the group consisting of the first type of communication session: audio communication, video communication, text communication, screen content sharing communication, and combinations thereof.

19. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: Receive notification data when displaying the content associated with the first training and when the computer system participates in the first type of communication session with one or more external computer systems, including the first external computer system; as well as In response to receiving the notification data: Based on the determination that the notification data is associated with the communication session of the first type, a first notification is displayed at a first location of the display generation component; as well as Based on the determination that the notification data is associated with the first training, a second notification is displayed at a second position on the display generation component that is different from the first position.

20. The non-transitory computer-readable storage medium of claim 19, wherein the first notification instructs a second external computer system to begin displaying the content associated with the first training or to stop displaying the content associated with the first training via the first type of communication session.

21. The non-transitory computer-readable storage medium of claim 19, wherein the first notification indicates that a third external computer system is joining or leaving the communication session of the first type.

22. The non-transitory computer-readable storage medium of claim 19, wherein the second notification is a notification including first information relating to the first training of the computer system or one or more external computer systems, which are in the first type of communication session and are displaying the content associated with the first training.

23. The non-transitory computer-readable storage medium of claim 22, wherein the first information is an indication that a user of a fourth external computer system, in the first type of communication session and displaying content associated with the first training, has achieved a predetermined physical activity goal or has achieved a change in state relative to one or more other participants in the first training.

24. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: Receive user input corresponding to the first end option; and In response to receiving the user input corresponding to the first end option, the display of the content associated with the first training is stopped via the display generation component communicating with the computer system, wherein after the display generation component communicating with the computer system stops displaying the content associated with the first training, the content associated with the first training continues to be displayed by the display generation component communicating with at least one external computer system in the first type of communication session.

25. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: Receive user input corresponding to the second end option; and In response to receiving the user input corresponding to the second end option: Stop displaying the content associated with the first training via the display generation component that communicates with the computer system; and This causes at least one external computer system in the first type of communication session and displaying the content associated with the first training to stop displaying the content associated with the first training via a display generation component that communicates with the at least one external computer system.

26. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: While displaying the content associated with the first training and while the computer system is engaged in the first type of communication session with one or more external computer systems, including a fifth external computer system, user input corresponding to a request to pause the training session corresponding to the first training is received, the fifth external computer system being displayed the content associated with the first training; In response to receiving the user input corresponding to the request to pause the training session corresponding to the first training: Pause the training session corresponding to the first training session; as well as This causes the fifth external computer system to suspend displaying the content associated with the first training.

27. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: While displaying the content associated with the first training and while the computer system is engaged in a communication session of the first type with one or more external computer systems, including a sixth external computer system, a request is received from the sixth external computer system to terminate the training session associated with the first training and stop displaying the content associated with the first training; and In response to receiving the request from the sixth external computer system: End the training session on the computer system.

28. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: While displaying the content associated with the first training and while the computer system is engaged in the first type of communication session with one or more external computer systems, including a seventh external computer system, a request is received from the seventh external computer system to pause the display of the content associated with the first training; and In response to receiving the request from the seventh external computer system, the display of the content associated with the first training is paused on the computer system.

29. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: After the training session associated with the first training is completed, a training summary user interface is displayed via the display generation component, the training summary user interface including: Physical activity data collected by the computer system for users of the computer system; as well as The one or more external computer systems indicate that the one or more external computer systems are in the first type of communication session with the computer system and are participating in the training session associated with the first training.

30. The non-transitory computer-readable storage medium of claim 29, wherein the training summary user interface further comprises: One or more instructions for users of external computer systems to achieve predetermined physical activity goals.

31. The non-transitory computer-readable storage medium of claim 17, wherein the one or more programs further include instructions for performing the following operations: When displaying the content associated with the first training via the display generation component, a request is received to cause a second display generation component communicating with the computer system to display the content associated with the first training; and In response to the request to cause the second display generation component, which communicates with the computer system, to display the content associated with the first training, the second display generation component is caused to display the content associated with the first training.

32. The non-transitory computer-readable storage medium of claim 31, wherein the one or more programs further include instructions for performing the following operations: When causing the content associated with the first training to be displayed at the second display generation component, receive second notification data; and In response to the second notification data: Based on the determination that the second notification data is associated with the communication session of the first type, a third notification is displayed via the display generation component; and Based on the determination that the second notification data is associated with the first training, a fourth notification is displayed at the second display generation component.

33. A method, the method comprising: At the computer system that communicates with the display generation component and one or more input devices: The display generation component displays a user interface for a fitness application that includes a first user interface object corresponding to the first training session; When the user interface for the fitness application, which includes the first user interface object corresponding to the first training, is displayed, user input corresponding to the selection of the first user interface object is detected via the one or more input devices; as well as In response to detecting user input corresponding to the selection of the first user interface object corresponding to the first training: Initiating a training session corresponding to the first training includes initiating a process for displaying a training user interface corresponding to the fitness application via the display generation component, the training user interface including content associated with the first training; When user input corresponding to the selection of the first user interface object corresponding to the first training is detected, the computer system is determined to be involved in a first type of communication session with one or more external computer systems, including a first external computer system. When the computer system is involved in the first type of communication session, a communication session user interface is displayed that corresponds to the communication session with the one or more external computer systems including the first external computer system, wherein the communication session user interface is separate from the user interface of the fitness application. This causes a selectable user interface object to be displayed on the first external computer system, wherein the selectable user interface object can be selected to display the training user interface corresponding to the fitness application on the first external computer system, the training user interface including the content associated with the first training. as well as When user input corresponding to the selection of the first user interface object is detected, the first user interface object, corresponding to the first training, abandons the display of the selectable user interface object at the first external computer system based on the determination that the computer system is not involved in the first type of communication session with the one or more external computer systems. When displaying the content associated with the first training and when the computer system participates in the first type of communication session with the one or more external computer systems, user input corresponding to a request to initiate a process for ending the training session corresponding to the first training is received; In response to receiving user input corresponding to the request to initiate the process for ending the training session corresponding to the first training, the following is displayed: A first termination option, when selected, causes the computer system to stop displaying the content associated with the first training, without causing at least one external computer system in the first type of communication session and displaying the content associated with the first training to stop displaying the content associated with the first training. and A second termination option, when selected, causes the computer system to stop displaying the content associated with the first training, and causes at least one external computer system in the first type of communication session that is displaying the content associated with the first training to stop displaying the content associated with the first training.

34. The method according to claim 33, wherein: When displaying the content associated with the first training and when the computer system participates in the first type of communication session with the one or more external computer systems, the computer system is configured to communicate with the one or more external computer systems via a communication mode selected from the group consisting of the first type of communication session: audio communication, video communication, text communication, screen content sharing communication, and combinations thereof.

35. The method of claim 33, further comprising: Receive notification data when displaying the content associated with the first training and when the computer system participates in the first type of communication session with one or more external computer systems, including the first external computer system; as well as In response to receiving the notification data: Based on the determination that the notification data is associated with the communication session of the first type, a first notification is displayed at a first location of the display generation component; as well as Based on the determination that the notification data is associated with the first training, a second notification is displayed at a second position on the display generation component that is different from the first position.

36. The method of claim 35, wherein the first notification instructs a second external computer system to begin displaying or stop displaying the content associated with the first training via the first type of communication session.

37. The method of claim 35, wherein the first notification indicates that a third external computer system is joining or leaving the communication session of the first type.

38. The method of claim 35, wherein the second notification is a notification including first information relating to the first training of the computer system or one or more external computer systems, the one or more external computer systems being in the first type of communication session and displaying the content associated with the first training.

39. The method of claim 38, wherein the first information is an indication that a user of a fourth external computer system, in the first type of communication session and displaying content associated with the first training, has achieved a predetermined physical activity goal or has achieved a change in status relative to one or more other participants in the first training.

40. The method of claim 33, further comprising: Receive user input corresponding to the first end option; as well as In response to receiving the user input corresponding to the first end option, the display of the content associated with the first training is stopped via the display generation component communicating with the computer system, wherein after the display generation component communicating with the computer system stops displaying the content associated with the first training, the content associated with the first training continues to be displayed by the display generation component communicating with at least one external computer system in the first type of communication session.

41. The method of claim 33, further comprising: Receive user input corresponding to the second end option; as well as In response to receiving the user input corresponding to the second end option: Stop displaying the content associated with the first training via the display generation component that communicates with the computer system; as well as This causes at least one external computer system in the first type of communication session and displaying the content associated with the first training to stop displaying the content associated with the first training via a display generation component that communicates with the at least one external computer system.

42. The method of claim 33, further comprising: While displaying the content associated with the first training and while the computer system is engaged in the first type of communication session with one or more external computer systems, including a fifth external computer system, user input corresponding to a request to pause the training session corresponding to the first training is received, the fifth external computer system being displayed the content associated with the first training; In response to receiving the user input corresponding to the request to pause the training session corresponding to the first training: Pause the training session corresponding to the first training session; as well as This causes the fifth external computer system to suspend displaying the content associated with the first training.

43. The method of claim 33, further comprising: While displaying the content associated with the first training and while the computer system is engaged in a communication session of the first type with one or more external computer systems, including a sixth external computer system, a request is received from the sixth external computer system to terminate the training session associated with the first training and stop displaying the content associated with the first training; and In response to receiving the request from the sixth external computer system: End the training session on the computer system.

44. The method of claim 33, further comprising: While displaying the content associated with the first training and while the computer system is engaged in the first type of communication session with one or more external computer systems, including a seventh external computer system, a request is received from the seventh external computer system to pause the display of the content associated with the first training, which is currently displaying the content associated with the first training; as well as In response to receiving the request from the seventh external computer system, the display of the content associated with the first training is paused on the computer system.

45. The method of claim 33, further comprising: After the training session associated with the first training is completed, a training summary user interface is displayed via the display generation component, the training summary user interface including: Physical activity data collected by the computer system for users of the computer system; and The one or more external computer systems indicate that the one or more external computer systems are in the first type of communication session with the computer system and are participating in the training session associated with the first training.

46. ​​The method of claim 45, wherein the training summary user interface further comprises: One or more instructions for users of external computer systems to achieve predetermined physical activity goals.

47. The method of claim 33, further comprising: When displaying the content associated with the first training via the display generation component, a request is received to cause a second display generation component communicating with the computer system to display the content associated with the first training; and In response to the request to cause the second display generation component, which communicates with the computer system, to display the content associated with the first training, the second display generation component is caused to display the content associated with the first training.

48. The method of claim 47, further comprising: When the content associated with the first training is displayed at the second display generation component, second notification data is received; as well as In response to the second notification data: Based on the determination that the second notification data is associated with the communication session of the first type, a third notification is displayed via the display generation component; as well as Based on the determination that the second notification data is associated with the first training, a fourth notification is displayed at the second display generation component.

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