Abstract:
FIG. 1 is a front view of a first embodiment of a front surface of a display screen showing our new design; FIG. 2 is a front view of a second embodiment of a front surface of a display screen showing our new design; FIG. 3 is a front view of a third embodiment of a front surface of a display screen showing our new design; and, FIG. 4 is a front view of a fourth embodiment of a front surface of a display screen showing our new design. The broken lines, showing a graphical user interface visible on the display screen in FIGS. 1-4, represent environmental subject matter and form no part of the claimed design. The broken lines, showing a mobile device in FIGS. 1-4, represent environmental subject matter and form no part of the claimed design. The rear, top, bottom, left side, and right side views are omitted and form no part of the claimed design.
Abstract:
A system for implementing service function deployment includes an active apparatus and a standby apparatus for a first service, such as an active main processing unit (MPU) and a standby MPU. The active apparatus is configured to process the first service and deploy a first function module (such as a feature extraction module or an inference module) for a second service (such as an artificial intelligence (AI) service) on the standby apparatus. The standby apparatus is configured to process data of the second service by using the first function module. The second service may be implemented by using an idle resource of the standby apparatus for the first service.
Abstract:
An intermediate node determining method and apparatus are provided, where the method includes: collecting an original data flow used to acquire a target service; based on the original data flow, determining request nodes and response nodes that are in nodes, and determining a connection relationship between the nodes; combining the determined request nodes into a first composite node and the determined response nodes into a second composite node, and determining, based on the determined connection relationship between the nodes, a connection path between the first composite node and the second composite node; and determining, based on a selected optimization objective and from the connection paths, at least one preferred connection path, to acquire an intermediate node on the at least one preferred connection path.
Abstract:
An access point (AP) handover method in wireless communications, a network control node, and user equipment includes obtaining AP information of a target AP having an association relationship with the target base station when user equipment is handed over to a target base station; and sending a first indication message to the user equipment, where the first indication message includes the AP information, and the first indication message is used to instruct the user equipment to perform AP handover according to the AP information.
Abstract:
The present disclosure discloses a digital wallet-based transaction method. The method includes acquiring sales information of a target object, acquiring at least one payment solution for the target object, where when there are at least two target objects, the at least one payment solution is obtained after multiple types of valid preference information of the at least two target objects are crosswise combined, and the valid preference information is preference information that can be used when the target object is paid for using an account in a digital wallet of a user, and displaying the acquired at least one payment solution. According to the present disclosure, a payment solution is generated by crosswise combining multiple types of valid preference information of at least two target objects, thereby obtaining a payment solution that better meets a user demand, which gives full consideration to user benefits and has strong practicability.
Abstract:
Embodiments of the present invention provide an intermediate node determining method and apparatus, where the method includes: collecting an original data flow used to acquire a target service; based on the original data flow, determining request nodes and response nodes that are in nodes, and determining a connection relationship between the nodes; combining the determined request nodes into a first composite node and the determined response nodes into a second composite node, and determining, based on the determined connection relationship between the nodes, a connection path between the first composite node and the second composite node; and determining, based on a selected optimization objective and from the connection paths, at least one preferred connection path, to acquire an intermediate node on the at least one preferred connection path.
Abstract:
A method for displaying interface content and user equipment, which effectively improve interaction experience of a user when the user performs a flick operation on a touchscreen, and enhance pleasure in application interaction. A specific solution is acquiring an initial position and a movement direction of a touch point, determining a motion parameter of an interface element object in each grid on a screen according to the initial position and the movement direction, where the screen is divided in advance into multiple grids, and each grid includes a preset quantity of pixels, and moving the interface element object in each grid according to the motion parameter of the interface element object in each grid.
Abstract:
Embodiments of the present invention disclose a mood information processing method and apparatus. The method includes: first determining a mood information mode that corresponds to an application program, acquiring mood information of a message sender if the mood information mode that corresponds to the application program is transmitting a mood or correcting a mood, and then sending the mood information of the message sender to a message receiver. The embodiments of the present invention are applicable to outputting mood information of a user in an application program.
Abstract:
A network switching method and a terminal device, which relate to the field of communications technologies, includes acquiring a network resource parameter of a network allowed to be accessed, and determining, from the network allowed to be accessed and according to the network resource parameter of the network allowed to be accessed, a target network to be switched to and a network resource parameter of the target network, where the network resource parameter of the target network is used to determine and set a running parameter of an application program that is to be run in the target network, and switching from a current network to the target network, and running the application program in the target network. The solutions can be used to enable the application program to implement, to some extent, seamless network switching.
Abstract:
The present invention discloses a wireless charging intensity indication method, including: obtaining, by a charged device, wireless charging intensity of the charged device at a present charging position, and displaying, on a display screen, the wireless charging intensity at the present charging position, where the displaying the wireless charging intensity on the display screen is intended to provide a basis for a user to select an optimum charging position. By using the wireless charging intensity indication method provided by the embodiment of the present invention, the user may select, from different charging positions, the optimum charging position according to the magnitude of the wireless charging intensity displayed on the display screen of the charged device, thereby improving the efficiency of wireless charging. The embodiments of the present invention also provide a corresponding charged device and a mobile terminal.