Abstract:
The present invention provides a computer and a method to realize the coupling between computers. The computer includes: a first interface used to connect with a second computer; a data interactive module, connected with the second computer through the first interface, which is used to enable the second computer to access the data interactive module when the first interface is connected with the second computer, in which the access includes fetching data from the data interactive module and storing data in the data interactive module; a processing module connected with the data interactive module, which is used to communicate data to the second computer through the data interactive module when the first interface is connected with the second computer. It can conveniently utilize two computers to form a hybrid computer system using this technical solution.
Abstract:
The present invention provides a method and apparatus for muting a sounder device, the method comprises steps of binding a network terminal with the sounder device via a network; generating a muting requirement; sending a muting signal to the sounder device via the network, the muting signal is generated based on the muting requirement; wherein the sounder device is configured to perform a muting process upon the muting signal. The method further comprises a step of sending a recovery signal to the sounder device via the network if the muting requirement becomes invalid, and the sounder device is configured to recover the status before the muting process upon the recovery signal. When it is necessary to remove unwanted background sound, all the sounder devices can be controlled via a network to perform a muting or volume-lowering process. In this way, the mobile terminal can easily and rapidly have the unwanted background sound be removed or lowered at the time of answering or making a call.
Abstract:
The present invention provides a method for accelerating the BIOS running by means of Cache-As-RAM, comprising steps of: a CPU reading a first instruction from a BIOS Flash ROM and beginning to run BIOS programs after a computer is powered on; the CPU turning on a No-Eviction Mode (NEM) of a cache and initializing a Cache-As-RAM (CAR); the CPU copying the BIOS programs to the CAR space from the BIOS Flash ROM and running the BIOS programs completely in the CAR space; at the end of running the BIOS programs in the CAR space, the CPU initializing a system memory; after the system memory is initialized, the CPU again reading the BIOS programs from the Flash ROM; the CPU copying the BIOS program modules that have not been run yet to the system memory from the BIOS Flash ROM; and the CPU running the BIOS programs from the system memory, so as to finish the initialization of the computer platform.
Abstract:
Embodiments of the present invention relate to electronic devices and data transmission methods. The electronic device includes: a first part including a first main board, a first processor connected to the first main board, at least one sharable hardware component and a first connector; and a second part including a second main board, a second processor connected to the second main board and a second connector corresponding to the first connector. The first part and the second part are connectable to each other via the first connector and the second connector. The first connector is configured to receive, from a first driving module of the hardware component, a first data sent from the hardware component via a first connector driving module, and transmit the first data to the second connector such that a second connector driving module can provide the first data from the second connector to a first application running in the second part via a second driving module of the hardware component. The present invention realizes simple and effective sharing of hardware component.
Abstract:
A computer, a graphic card, a display apparatus and a method of updating information is described, wherein, the computer has a first status and a second status, and the system power consumption of computer in the first status is larger than the system power consumption of computer in the second status. The computer includes a graphic card having display memory and a display apparatus connected to the graphic card, and further includes an input processing module for acquiring input information when the computer is in the second status, and updating first display information stored in the display memory outputted to the display apparatus according to the input information to obtain second display information. The graphic card outputs the second display information to the display apparatus when the computer is in the second status.
Abstract:
The present invention discloses a communication method, a communication apparatus, and an electronic device. The communication method is used in a hybrid architecture system comprising a first terminal and a second terminal, the first terminal comprising a first hardware system, the second terminal comprising a second hardware system, there being a first data channel and a second data channel between the first hardware system and the second hardware system, the communication method comprising: obtaining data to be transmitted which are to be transmitted from the first hardware system to the second hardware system; obtaining a channel selection parameter; selecting at least one data channel from the first data channel and the second data channel according to the channel selection parameter; and transmitting the data to be transmitted from the first hardware system to the second hardware system via the selected at least one data channel. The present invention improves flexibility of data transmission.
Abstract:
The present invention provides a method and apparatus for muting a sounder device, the method comprises steps of binding a network terminal with the sounder device via a network; generating a muting requirement; sending a muting signal to the sounder device via the network, the muting signal is generated based on the muting requirement; wherein the sounder device is configured to perform a muting process upon the muting signal. The method further comprises a step of sending a recovery signal to the sounder device via the network if the muting requirement becomes invalid, and the sounder device is configured to recover the status before the muting process upon the recovery signal. When it is necessary to remove unwanted background sound, all the sounder devices can be controlled via a network to perform a muting or volume-lowering process. In this way, the mobile terminal can easily and rapidly have the unwanted background sound be removed or lowered at the time of answering or making a call.
Abstract:
Embodiments of the present invention relate to electronic devices and data transmission methods. The electronic device includes: a first part including a first main board, a first processor connected to the first main board, at least one sharable hardware component and a first connector; and a second part including a second main board, a second processor connected to the second main board and a second connector corresponding to the first connector. The first part and the second part are connectable to each other via the first connector and the second connector. The first connector is configured to receive, from a first driving module of the hardware component, a first data sent from the hardware component via a first connector driving module, and transmit the first data to the second connector such that a second connector driving module can provide the first data from the second connector to a first application running in the second part via a second driving module of the hardware component. The present invention realizes simple and effective sharing of hardware component.
Abstract:
The present invention provides a file synchronization method, an electronic device and a synchronization system. The method comprises: in a hybrid system having a first system and a second system, monitoring in the first system a first cache of the first system, in which first data corresponding to a first file stored in a non-volatile storage of the first system opened by a first file processing program of the first system is saved; sending, to the second system, operating content performed by the first file processing program on the first file via a data information channel between the first system and the second system, when the first data in the first cache is changed; wherein a second file processing program in the second system performs a synchronization processing on a second file according to the operating content, the second file being a file corresponding to the first file in the second system. With the above technical solutions, a real-time synchronization/updating may be performed on same files in different systems, since the plug-in application service logic is provided and may access the cache in real time.
Abstract:
A data processing device with multiple hardware systems and a switching method thereof are provided. The device comprises a first hardware system, a second hardware system, a shared device and a switcher, wherein the first hardware system is connected to the shared device through the switcher, and includes a first inquiry module for inquiring information on applications currently executed in the first hardware system so as to obtain an inquiry result, a first control module for triggering the first inquiry module to perform inquiry when it is required to switch from the first hardware system to the second hardware system, and a first communication module for transmitting the inquiry result to the second hardware system; and the second hardware system includes a second communication module for receiving the inquiry result, a second control module for, in accordance with the inquiry result, activating corresponding applications in the second hardware system so as to generate a first message, and transmitting the first message to the first hardware system through the second communication module; wherein the first control module instructs the switcher to switch the shared device into connection with the second hardware system when the first message is received by the first hardware system through the first communication module.