WO2017206851A1 - 安装任务的分配方法及移动终端 - Google Patents
安装任务的分配方法及移动终端 Download PDFInfo
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- WO2017206851A1 WO2017206851A1 PCT/CN2017/086446 CN2017086446W WO2017206851A1 WO 2017206851 A1 WO2017206851 A1 WO 2017206851A1 CN 2017086446 W CN2017086446 W CN 2017086446W WO 2017206851 A1 WO2017206851 A1 WO 2017206851A1
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/46—Multiprogramming arrangements
- G06F9/50—Allocation of resources, e.g. of the central processing unit [CPU]
- G06F9/5005—Allocation of resources, e.g. of the central processing unit [CPU] to service a request
- G06F9/5027—Allocation of resources, e.g. of the central processing unit [CPU] to service a request the resource being a machine, e.g. CPUs, Servers, Terminals
- G06F9/5044—Allocation of resources, e.g. of the central processing unit [CPU] to service a request the resource being a machine, e.g. CPUs, Servers, Terminals considering hardware capabilities
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/46—Multiprogramming arrangements
- G06F9/50—Allocation of resources, e.g. of the central processing unit [CPU]
- G06F9/5005—Allocation of resources, e.g. of the central processing unit [CPU] to service a request
- G06F9/5027—Allocation of resources, e.g. of the central processing unit [CPU] to service a request the resource being a machine, e.g. CPUs, Servers, Terminals
- G06F9/505—Allocation of resources, e.g. of the central processing unit [CPU] to service a request the resource being a machine, e.g. CPUs, Servers, Terminals considering the load
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F8/00—Arrangements for software engineering
- G06F8/60—Software deployment
- G06F8/61—Installation
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/44—Arrangements for executing specific programs
- G06F9/445—Program loading or initiating
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/44—Arrangements for executing specific programs
- G06F9/445—Program loading or initiating
- G06F9/44568—Immediately runnable code
- G06F9/44578—Preparing or optimising for loading
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/46—Multiprogramming arrangements
- G06F9/50—Allocation of resources, e.g. of the central processing unit [CPU]
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2209/00—Indexing scheme relating to G06F9/00
- G06F2209/50—Indexing scheme relating to G06F9/50
- G06F2209/501—Performance criteria
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2209/00—Indexing scheme relating to G06F9/00
- G06F2209/50—Indexing scheme relating to G06F9/50
- G06F2209/503—Resource availability
Definitions
- the present invention relates to the field of mobile terminal technologies, and in particular, to a method for allocating an installation task and a mobile terminal.
- more and more applications that can be installed in a mobile terminal to implement multiple functions mean that there are more and more running tasks in the application to be processed by the processor of the mobile terminal.
- the processor of the mobile terminal may also have to handle the installation tasks of the application at the same time.
- the operating system of the mobile terminal is not able to intelligently identify the installation task of the application, and therefore, the installation task may not be allocated to effective processor resources for fast processing, which reduces the installation speed of the application, thereby reducing the speed of the application. user experience.
- the embodiment of the invention provides a method for allocating an installation task and a mobile terminal, so that an installation task of the application can be allocated to an effective processor resource for fast processing, thereby improving the installation speed of the application, thereby improving the user.
- an installation task of the application can be allocated to an effective processor resource for fast processing, thereby improving the installation speed of the application, thereby improving the user.
- an embodiment of the present invention provides a method for allocating an installation task, including:
- the querying available processor resources according to an operation level of a processor resource includes:
- the processor resource is determined to be the available processor resource.
- the querying available processor resources according to an operation level of a processor resource includes:
- the processor resources of the other computing levels are determined to be the available processor resources.
- the improving performance indicators of the available processor resources includes:
- the clock frequency of the available processor resources is increased based on the amount of load of the installation task.
- the increasing the clock frequency of the available processor resources based on the loading amount of the installation task includes:
- the clock frequency of the one or more core processing units is adjusted based on the clock frequency increase.
- the method further includes:
- the performance indicator of the available processor resources is lowered.
- the reducing performance indicators of the available processor resources including:
- the performance indicator to be adjusted is adjusted according to the adjustment amount.
- the available processor resources include one or more core processing units that are processing tasks.
- the performance indicator includes at least one of a number of core processing units, a low power consumption mode, or a clock frequency.
- an embodiment of the present invention provides a device for distributing tasks, the mobile terminal includes a functional unit, and the function module is configured to perform part or all of the methods described in any one of the first aspects of the embodiments of the present invention. step.
- an embodiment of the present invention provides a mobile terminal, including:
- processor a processor, a memory, a communication interface, and a communication bus, wherein the processor, the memory, and the communication interface are connected by the communication bus and complete communication with each other;
- the memory stores executable program code for wireless communication
- the processor is configured to invoke the executable program code in the memory to perform some or all of the steps described in any of the methods of the first aspect of the embodiments of the present invention.
- FIG. 1 is a schematic flow chart of a method for allocating an installation task in the prior art
- FIG. 2 is a schematic flow chart of another method for allocating an installation task according to an embodiment of the present invention.
- FIG. 3 is a block diagram showing the unit composition of a device for distributing tasks according to an embodiment of the present invention
- FIG. 4 is a schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
- FIG. 5 is a schematic structural diagram of another mobile terminal according to an embodiment of the present invention.
- references to "an embodiment” herein mean that a particular feature, structure, or characteristic described in connection with the embodiments can be included in at least one embodiment of the invention.
- the appearances of the phrases in various places in the specification are not necessarily referring to the same embodiments, and are not exclusive or alternative embodiments that are mutually exclusive. Those skilled in the art will understand and implicitly understand that the embodiments described herein can be combined with other embodiments.
- FIG. 1 is a schematic flowchart diagram of a method for allocating an installation task according to an embodiment of the present invention.
- the allocation method of the installation task can be implemented by the mobile terminal. As shown in FIG. 1, the method includes at least the following steps.
- Step S101 after detecting the startup signal for the installation task of the application, querying the available processor resources according to the operation level of the processor resource.
- available processor resources may be queried in descending order of the operational level of the processor resources. Specifically, detecting the startup signal for the installation task of the application may detect the installation of the application being opened. The start signal of the process, or the confirmation signal of the user's installation task to open the application, the confirmation signal can be used as the start signal for the installation task of the application. After detecting the start signal of any of the above modes, the available processor resources can be queried according to the operation level of the processor resource. Optionally, the processor resource with a high computing level may be preferentially queried. If the available resources in the processor resource with a high computing level can process the installation task, determine that the processor resource with the high computing level is an available processor resource.
- the available resources in the processor resource with high computing level are insufficient to process the installation task, continue to query processor resources of other computing levels to obtain the processor resources currently capable of processing the installation task.
- the processor resource corresponding to the operation level corresponding to the installation task is determined according to the load of the installation task. If the load of the installation task is small, the calculation level of the corresponding processor resource is low.
- the available resources of the processor resources corresponding to the operation level are preferentially queried. If the processor resources corresponding to the operation level are not available, the processor resources of other computing levels may be further queried. Of course, the processor resources with high computing levels may be preferentially queried. Of course, the available processor resources may be queried in other ways, which are not limited in this embodiment of the present invention.
- the processor resource described in the embodiment of the present invention may include at least one core processing unit, where the core processing unit in the processor resource may be integrated in the same processor, or may be configured in different processors. in.
- the computing levels of the core processing units under the same processor resource may be the same or different. If the core processing unit has strong computing power, its operation level is high.
- Step S102 after querying the available processor resources, allocating the installation task to the available processor resources for processing.
- the above installation tasks can be allocated to the queried available processor resources for processing. Specifically, when the available processor resources are queried, it indicates that the processor resource can bear the load of the installation task, and further, the installation task can be allocated to available processor resources for processing.
- Step S103 improving performance indicators of the available processor resources.
- the performance metrics for the available processor resources can be increased by assigning the installation tasks to the available processor resources for processing.
- improving performance metrics of available processor resources may include increasing a number of core processing units in the processor resource; or increasing a clock frequency (primary frequency) of at least one core processing unit in the processor resource to improve the The performance of the processor resource; or, if it is determined that the processor resource is currently in a low power state, the low power state of the processor resource is turned off to improve the performance of the processor resource, thereby enabling faster processing of the processor resource Installation task.
- performance metrics that increase processor resources may also include one or more of the combinations described above.
- the performance indicator of the processor resource to be adjusted is determined before the performance indicator of the processor resource is improved.
- the number of the core processing unit may be used as a performance indicator to be adjusted; or If the clock frequency of the processor resource is not adjusted to the highest, the clock frequency is determined as a performance indicator to be adjusted. After determining the performance indicator to be adjusted, the performance indicator to be adjusted is improved to improve the performance of the available processor resource.
- the execution order of the step S102 and the step S103 is not limited, and the performance index of the available processor resources may be improved after the available processor resources are queried.
- the installation task is assigned to the available processor resources for processing; or, The above steps may be performed in parallel; or, the installation task may be first allocated to the available processor resources for processing, and then the performance indicators of the available processor resources may be improved, and optionally, the installation task may be allocated to available processing.
- the processor resource is further monitored for the time of processing the installation task. When it is detected that the processor is about to process the installation task, the performance of the processor resource is improved, thereby reducing the processing while ensuring rapid processing of the installation task. The power consumption of the resource.
- the available processor resources may be queried according to the operation level of the processor resource.
- the installation tasks can be allocated to available processor resources for processing and performance metrics for the available processor resources can be increased.
- the processor resources can be allocated reasonably for the installation task, the processing speed of the installation task can be accelerated, and the processing speed of the installation task can be further accelerated by improving the performance index of the processor resources.
- the application installation task can be allocated to effective processor resources for fast processing, which improves the installation speed of the application, thereby improving the user experience.
- FIG. 2 is a schematic flowchart diagram of another method for allocating an installation task according to an embodiment of the present invention.
- the allocation method of the installation task can be implemented by the mobile terminal. As shown in FIG. 2, the method includes at least the following steps.
- Step S201 After detecting a startup signal for the installation task of the application, acquiring a load amount of the installation task.
- the load of the installation task can be obtained when a startup signal for an installation task for the application is detected.
- the startup signal for detecting an installation task for the application may be an activation signal for detecting an installation process in which the application is opened, or an acknowledgment signal for detecting an installation task of the application to be opened by the user, and the confirmation signal may be used as a target The startup signal for the application's installation task.
- the load of the installation task can be obtained.
- the processor resource matching the installation task may be determined according to the load of the installation task.
- the load of the installation task can be related to the available resources or available margin of the processor resources or to the computing power of the processor resources.
- Step S202 Query whether the available resources in the processor resource can process the load according to the order of operation of the processor resources from high to low.
- the processor resource may determine a corresponding operation level according to its computing capability, and the computing power of the processor resource is high, and the corresponding computing level is high.
- the computing capability of determining the processor resource may be determined based on the number of core processing units and/or the computing power of the core processing unit, if the processor resource includes more core processing units, and includes core processing. The higher the computing power of the unit, the higher the computing level of the processor resource.
- the processor resource may count the sum of the bearer tasks of the core processing unit it includes.
- the processor resources may be sorted according to the operation level in advance. When the startup signal of the installation task is detected, the available processor resources may be queried one by one according to the sorting result. Query the processor resources with high computing level first, and query the available resources of the processor resources. The amount, and the available margin of the processor resource and the load of the installer, if the available margin is greater than the load of the installer, indicating that the processor resource is available, through the above methods to the available processor resources.
- Step S203 when the processor resource capable of processing the load is queried, determining that the processor resource is the available processor resource.
- step S201 to step S203 may be replaced by the following steps:
- the processor resources of the other computing levels are determined to be the available processor resources.
- the processor resource matching the load quantity may be determined, and specifically, the processor resource corresponding to the operation level and the load quantity is determined. If the load of the installation task is large, the level of operation of the processor resource that matches it is high. It is possible to preferentially determine whether the processor resource matched with it is available, and if the matching processor resource is not available, further query whether the processor resources of other operation levels are available. Wherein, the available margin in the processor resource and the load of the installation task are, if the available margin is greater than the load, indicating that the processor resource can carry the load of the installation task, and the processor resource is available. In this way, available processor resources can be determined.
- Step S204 after querying the available processor resources, allocating the installation task to the available processor resources for processing.
- the above installation tasks can be allocated to the queried available processor resources for processing. Specifically, when the available processor resources are queried, it indicates that the processor resource can bear the load of the installation task, and further, the installation task can be allocated to available processor resources for processing.
- Step S205 improving performance indicators of the available processor resources.
- the performance metrics for the available processor resources can be increased by assigning the installation tasks to the available processor resources for processing.
- improving performance metrics of available processor resources may include increasing a number of core processing units in the processor resource; or increasing a clock frequency (primary frequency) of at least one core processing unit in the processor resource to improve the The performance of the processor resource; or, if it is determined that the processor resource is currently in a low power state, the low power state of the processor resource is turned off to improve the performance of the processor resource, thereby enabling faster processing of the processor resource Installation task.
- performance metrics that increase processor resources may also include one or more of the combinations described above.
- the performance of the processor resource to be adjusted may be determined before the performance indicator of the processor resource is improved.
- the number of core processing units can be used as the performance index to be adjusted; or if the clock frequency of the processor resource is not adjusted to the highest, the clock frequency can be determined as the performance index to be adjusted. After determining the performance indicator to be adjusted, the performance indicator to be adjusted is improved to improve the performance of the available processor resources.
- the execution order of the step S102 and the step S103 is not limited, and the performance index of the available processor resources may be improved after the available processor resources are queried.
- the installation task is further allocated to the available processor resources for processing; or, the above steps may be performed in parallel; or, the installation task may be first allocated to the available processor resources for processing, and then the available processor may be improved.
- the performance indicator of the resource optionally, after the installation task is allocated to the available processor resources, further monitoring the time when the processor resource processes the installation task, and improving processing when it is detected that the processor is about to process the installation task. The performance of the resources, thereby reducing the power consumption of the processor resources while ensuring fast processing of installation tasks.
- one or more core processing units for processing the installation task may be determined, and based on the The workload of the installation task determines the clock frequency increase corresponding to the load amount, and the correspondence may be pre-stored in the mobile terminal, and the one or more core processing units may be upgraded according to the determined clock frequency increase amount. Clock frequency.
- the corresponding clock frequency increase amount may be further determined according to the load amount allocated by each core processing unit, that is, determined for each core processing unit.
- the amount of clock frequency increase can be the same or different.
- Step S206 determining whether a stop signal for the installation task is detected within a preset time range.
- the performance indicator of the available processor resources when the performance indicator of the available processor resources is improved, after the installation task is processed, it may further be determined whether a stop signal for the installation task is detected within a preset time range.
- the stop signal is a stop signal sent after the process of the installation task ends. If the stop signal is not detected within the preset time range, indicating that the installation task fails to process or the stop signal is not normally issued after the process of the installation task ends, the power consumption loss is avoided in order to avoid the performance of the processor resources for a long time. If the problem is too fast, the performance metrics of the available processor resources can be reduced at the end of the preset time range.
- the performance index of the available processor resources may be restored or reduced according to the current load.
- the detection timer may be set, and the stop signal is monitored during a timing period of the detection timer. If the stop signal is not detected when the detection timer expires, it indicates that the stop signal is not detected.
- Step S207 if it is determined that the stop signal is not detected, reducing the performance indicator of the available processor resources.
- the performance indicator of the available processor resources may be reduced to avoid waste of power consumption of the processor resource.
- performance metrics for reducing available processor resources include restoring performance metrics of available processor resources to unupgraded Performance. If the processor resources before the upgrade are in a low power state, the performance index of reducing the processor resources is to restore the processor resources to a low power state.
- the current load quantity that the processor resource is processing may be detected first, and the performance indicator to be adjusted in the processor resource is determined according to the current load quantity, and the adjustment of the performance indicator to be adjusted is determined according to the current load quantity. The amount, and further, the performance index to be adjusted can be adjusted according to the determined adjustment amount.
- detecting the current load amount that the processor resource is processing determining whether the core processing unit that is running in the processor resource is processing load, if there is an unprocessed load but the core processing unit is running, or there is processing
- the core processing unit of the small load determines the clock frequency or power consumption state of the core processing unit as a performance indicator to be adjusted.
- the clock frequency or power consumption state of the core processing unit can be reduced.
- the amount of adjustment can be determined according to the amount of load that the core processing unit is processing the load.
- the available processor resources may be queried according to the operation level of the processor resource.
- the installation tasks can be allocated to available processor resources for processing and performance metrics for the available processor resources can be increased.
- the processor resources can be allocated reasonably for the installation task, the processing speed of the installation task can be accelerated, and the processing speed of the installation task can be further accelerated by improving the performance index of the processor resources.
- the application installation task can be allocated to effective processor resources for fast processing, which improves the installation speed of the application, thereby improving the user experience.
- FIG. 3 is a block diagram showing the unit composition of a device for distributing tasks according to an embodiment of the present invention.
- the mobile terminal can include a first query unit 301, an allocation unit 302, and an improvement unit 303.
- the first query unit 301 is configured to query, when the startup signal for the installation task of the application is detected, the available processor resources according to the operation level of the processor resource;
- the allocating unit 302 is configured to allocate the installation task to the available processor resources for processing after the query unit queries the available processor resources;
- the augmenting unit 303 is configured to improve performance indicators of the available processor resources.
- the first query unit includes:
- a first acquiring unit configured to acquire a load quantity of the installation task
- a second query unit configured to query whether the available resources in the processor resource can process the load according to an order of operation of the processor resources from high to low;
- a first determining unit configured to determine, when the second query unit queries the processor resource capable of processing the load, the processor resource as the available processor resource.
- the first query unit includes:
- a second acquiring unit configured to acquire a load quantity of the installation task
- a first determining unit configured to determine whether an available resource in a processor resource of a computing level corresponding to the load amount is capable of processing the load amount
- a second determining unit if the result of the determining by the first determining unit is yes, determining that the processor resource of the corresponding computing level is the available processor resource;
- a third query unit configured to query whether the available resources in the processor resources of other operation levels can process the load amount if the result of the first determining unit is negative;
- a third determining unit configured to determine, if the third query unit queries the available resources in the processor resources of other operation levels to process the load, determine that the processor resources of the other operation levels are the available Processor resources.
- the improvement unit is configured to:
- the clock frequency of the available processor resources is increased based on the amount of load of the installation task.
- the improving unit is configured to increase a clock frequency of the available processor resources based on the load of the installation task:
- the clock frequency of the one or more core processing units is adjusted based on the clock frequency increase.
- the mobile terminal further includes:
- a second determining unit configured to determine, after the improving unit improves the performance indicator of the available processor resource, whether a stop signal for the installation task is detected within a preset time range
- a lowering unit configured to reduce a performance indicator of the available processor resource if the second determining unit determines that the stop signal is not detected.
- the reducing unit is configured to:
- the performance indicator to be adjusted is adjusted according to the adjustment amount.
- the available processor resources may be queried according to the operation level of the processor resource.
- the installation tasks can be allocated to available processor resources for processing and performance metrics for the available processor resources can be increased.
- the processor resources can be allocated reasonably for the installation task, the processing speed of the installation task can be accelerated, and the processing speed of the installation task can be further accelerated by improving the performance index of the processor resources.
- the application installation task can be allocated to effective processor resources for fast processing, which improves the installation speed of the application, thereby improving the user experience.
- FIG. 4 Another embodiment of the present invention further provides a mobile terminal, as shown in FIG. 4, comprising: a processor 101, a memory 102, a communication interface 103, and a communication bus 104; wherein the processor 101, the memory 102, and the communication interface 103 communicate The bus 104 connects and completes communication with each other; the processor 101 controls wireless communication with an external cellular network through the communication interface 103; the communication interface 103 includes but is not limited to an antenna, an amplifier, Transceiver, coupler, LNA (Low Noise Amplifier), duplexer, etc.
- LNA Low Noise Amplifier
- the memory 102 includes at least one of: a random access memory, a nonvolatile memory, and an external memory, the memory 102 storing executable program code capable of directing the processor 101 to perform the method embodiment of the present invention
- the method for allocating the installation tasks specifically disclosed includes the following steps:
- the processor 101 After detecting the startup signal for the installation task of the application, the processor 101 queries the available processor resources according to the operation level of the processor resource;
- the processor 101 after querying the available processor resources, allocates the installation task to the available processor resources for processing;
- the processor 101 increases performance indicators of the available processor resources.
- the available processor resources may be queried according to the operation level of the processor resource.
- the installation tasks can be allocated to available processor resources for processing and performance metrics for the available processor resources can be increased.
- the processor resources can be allocated reasonably for the installation task, the processing speed of the installation task can be accelerated, and the processing speed of the installation task can be further accelerated by improving the performance index of the processor resources.
- the application installation task can be allocated to effective processor resources for fast processing, which improves the installation speed of the application, thereby improving the user experience.
- executable program code stored in the above memory 102 is also used to perform the relevant steps of the method illustrated in FIG. 2 above. I won't go into details here.
- the embodiment of the present invention further provides another mobile terminal.
- the mobile terminal can be any terminal device including a mobile phone, a tablet computer, a PDA (Personal Digital Assistant), a POS (Point of Sales), an in-vehicle computer, and the mobile terminal is used as a mobile phone as an example:
- FIG. 5 is a block diagram showing a partial structure of a mobile phone related to a mobile terminal provided by an embodiment of the present invention.
- the mobile phone includes: a radio frequency (RF) circuit 910, a memory 920, an input unit 930, a display unit 940, a sensor 950, an audio circuit 960, a wireless fidelity (WiFi) module 970, and a processor 980. And power supply 990 and other components.
- RF radio frequency
- the RF circuit 910 can be used for receiving and transmitting information.
- RF circuit 910 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a Low Noise Amplifier (LNA), a duplexer, and the like.
- LNA Low Noise Amplifier
- RF circuitry 910 can also communicate with the network and other devices via wireless communication.
- the above wireless communication may use any communication standard or protocol, including but not limited to Global System of Mobile communication (GSM), General Packet Radio Service (GPRS), Code Division Multiple Access (Code Division). Multiple Access, CDMA), Wideband Code Division Multiple Access (WCDMA), Long Term Evolution (LTE), E-mail, Short Messaging Service (SMS), and the like.
- GSM Global System of Mobile communication
- GPRS General Packet Radio Service
- CDMA Code Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- LTE Long Term Evolution
- E-mail Short Messaging Service
- the memory 920 can be used to store software programs and modules, and the processor 980 executes various functional applications and data processing of the mobile phone by running software programs and modules stored in the memory 920.
- the memory 920 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function, and the like; the storage data area may store data created according to usage of the mobile phone, and the like.
- memory 920 can include high speed random access memory, and can also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device.
- the input unit 930 can be configured to receive input numeric or character information and to generate key signal inputs related to user settings and function controls of the handset.
- the input device 930 may include, but is not limited to, one or more of a physical keyboard, function keys (such as a volume control button, a switch button, etc.), a trackball, a mouse, a joystick, a fingerprint recognition module, and the like.
- the display unit 940 can be used to display information input by the user or information provided to the user as well as various menus of the mobile phone.
- the display unit 940 can include a display screen 941.
- the display screen 941 can be configured in the form of a liquid crystal display (LCD), an organic light-emitting diode (OLED), or the like.
- the handset may also include at least one type of sensor 950, such as a light sensor, motion sensor, and other sensors.
- the light sensor may include an ambient light sensor and a proximity sensor, wherein the ambient light sensor may adjust the brightness of the display screen 941 according to the brightness of the ambient light, and the proximity sensor may turn off the display screen 941 and/or when the mobile phone moves to the ear. Or backlight.
- the accelerometer sensor can detect the magnitude of acceleration in all directions (usually three axes). When it is stationary, it can detect the magnitude and direction of gravity.
- the mobile phone can be used to identify the gesture of the mobile phone (such as horizontal and vertical screen switching, related Game, magnetometer attitude calibration), vibration recognition related functions (such as pedometer, tapping), etc.; as for the mobile phone can also be configured with gyroscopes, barometers, hygrometers, thermometers, infrared sensors and other sensors, no longer Narration.
- the gesture of the mobile phone such as horizontal and vertical screen switching, related Game, magnetometer attitude calibration
- vibration recognition related functions such as pedometer, tapping
- the mobile phone can also be configured with gyroscopes, barometers, hygrometers, thermometers, infrared sensors and other sensors, no longer Narration.
- An audio circuit 960, a speaker 961, and a microphone 962 can provide an audio interface between the user and the handset.
- the audio circuit 960 can transmit the converted electrical data of the received audio data to the speaker 961, and convert it into a sound signal output by the speaker 961.
- the microphone 962 converts the collected sound signal into an electrical signal, and the audio circuit 960 After receiving, it is converted into audio data, and then processed by the audio data output processor 980, sent to the other mobile phone via the RF circuit 910, or outputted to the memory 920 for further processing.
- WiFi is a short-range wireless transmission technology
- the mobile phone can help users to send and receive emails, browse web pages, and access streaming media through the WiFi module 970, which provides users with wireless broadband Internet access.
- FIG. 5 shows the WiFi module 970, it can be understood that it does not belong to the essential configuration of the mobile phone, and may be omitted as needed within the scope of not changing the essence of the invention.
- the processor 980 is a control center of the mobile phone, and connects various mobile phones by using various interfaces and lines. In part, the mobile phone is monitored in its entirety by running or executing software programs and/or modules stored in memory 920, as well as invoking data stored in memory 920, performing various functions and processing data of the handset.
- the processor 980 may include one or more core processing units; preferably, the processor 980 may integrate an application processor and a modem processor, where the application processor mainly processes an operating system, a user interface, and an application. Etc.
- the modem processor primarily handles wireless communications. It will be appreciated that the above described modem processor may also not be integrated into the processor 980.
- the handset also includes a power source 990 (such as a battery) that supplies power to the various components.
- a power source 990 such as a battery
- the power source can be logically coupled to the processor 980 through a power management system to manage functions such as charging, discharging, and power management through the power management system.
- the mobile phone may further include a camera, a Bluetooth module, and the like, and details are not described herein again.
- each step method flow may be implemented based on the structure of the mobile phone.
- each unit function can be implemented based on the structure of the mobile phone.
- the embodiment of the present invention further provides a computer storage medium, wherein the computer storage medium can store a program, and the program includes some or all of the steps of the method for allocating the installation tasks described in the foregoing method embodiments.
- the disclosed apparatus may be implemented in other ways.
- the device embodiments described above are merely illustrative.
- the division of the unit is only a logical function division.
- there may be another division manner for example, multiple units or components may be combined or may be Integrate into another system, or some features can be ignored or not executed.
- the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be electrical or otherwise.
- the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
- each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. in.
- the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
- the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable memory. Based on such understanding, the technical solution of the present invention may contribute to the prior art or all or part of the technical solution may be embodied in the form of a software product stored in a memory. A number of instructions are included to cause a computer device (which may be a personal computer, server or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
- the foregoing memory includes: a U disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a removable hard disk, a magnetic disk, or an optical disk, and the like, which can store program codes.
- ROM Read-Only Memory
- RAM Random Access Memory
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Abstract
本发明实施例公开了一种安装任务的分配方法及移动终端,包括:当检测到针对应用程序的安装任务的启动信号后,按照处理器资源的运算等级查询可用的处理器资源;当查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理;提高所述可用的处理器资源的性能指标。本发明实施例有利于应用程序的安装任务能够被分配到有效的处理器资源以进行快速处理,提升了应用程序的安装速度,进而提升了用户体验。
Description
本发明涉及移动终端技术领域,具体涉及一种安装任务的分配方法及移动终端。
当前,移动终端中安装的能够实现多种功能的应用程序越来越多,意味着移动终端的处理器所要处理的应用程序中的运行任务越来越多。在此期间,移动终端的处理器可能还要同时处理应用程序的安装任务。目前,移动终端的操作系统并不能够智能识别应用程序的安装任务,因此,可能导致该安装任务无法被分配到有效的处理器资源以进行快速处理,降低了应用程序的安装速度,进而降低了用户体验。
发明内容
本发明实施例提供了一种安装任务的分配方法及移动终端,以使应用程序的安装任务能够被分配到有效的处理器资源以进行快速处理,提升了应用程序的安装速度,进而提升了用户体验。
第一方面,本发明实施例提供一种安装任务的分配方法,包括:
当检测到针对应用程序的安装任务的启动信号后,按照处理器资源的运算等级查询可用的处理器资源;
当查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理;
提高所述可用的处理器资源的性能指标。
结合第一方面,在一些可能的实现方式中,所述按照处理器资源的运算等级查询可用的处理器资源,包括:
获取所述安装任务的负载量;
按照处理器资源的运算等级由高到低的顺序,查询处理器资源中的可用资源是否能够处理所述负载量;
当查询到能够处理所述负载量的处理器资源时,确定所述处理器资源为所述可用的处理器资源。
结合第一方面,在一些可能的实现方式中,所述按照处理器资源的运算等级查询可用的处理器资源,包括:
获取所述安装任务的负载量;
判断与所述负载量所对应运算等级的处理器资源中的可用资源是否能够处理所述负载量;
若判断的结果为是,则确定所述对应运算等级的处理器资源为所述可用的处理器资源;
若判断的结果为否,则查询其他运算等级的处理器资源中的可用资源是否能够处理所述负载量;
若查询到其他运算等级的处理器资源中的可用资源能够处理所述负载量,则确定所述其他运算等级的处理器资源为所述可用的处理器资源。
结合第一方面,在一些可能的实现方式中,所述提高所述可用的处理器资源的性能指标,包括:
增加所述可用的处理器资源中的核心处理单元的数量;或者,
关闭所述可用的处理器资源的低功耗模式;或者,
基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率。
此外,结合第一方面,在一些可能的实现方式中,所述基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率,包括:
基于所述安装任务的所述负载量,确定与所述负载量对应的时钟频率增加量;
确定所述可用的处理器资源中用于处理所述安装任务的一个或多个核心处理单元;
根据所述时钟频率增加量,调节所述一个或多个核心处理单元的时钟频率。
结合第一方面,在一些可能的实现方式中,所述提高所述可用的处理器资源的性能指标之后,所述方法还包括:
判断在预设的时间范围内是否检测到针对所述安装任务的停止信号;
若判断出未检测到所述停止信号,则降低所述可用的处理器资源的性能指标。
结合第一方面,在一些可能的实现方式中,所述降低所述可用的处理器资源的性能指标,包括:
检测所述处理器资源正在处理的当前负载量;
根据所述当前负载量,确定所述处理器资源中待调节的性能指标,并确定对所述待调节的性能指标的调节量;
根据所述调节量,调节所述待调节的性能指标。
结合第一方面,在一些可能的实现方式中,所述可用的处理器资源包括为处理任务的一个或多个核心处理单元。
结合第一方面,在一些可能的实现方式中,所述性能指标包括核心处理单元的数量、低功耗模式或时钟频率中的至少一种。
第二方面,本发明实施例提供了一种安装任务的分配装置,所述移动终端包括功能单元,所述功能模块用于执行本发明实施例第一方面任一方法中所描述的部分或全部步骤。
第三方面,本发明实施例提供了一种移动终端,包括:
处理器、存储器、通信接口和通信总线,所述处理器、所述存储器和所述通信接口通过所述通信总线连接并完成相互间的通信;
所述存储器存储有可执行程序代码,所述通信接口用于无线通信;
所述处理器用于调用所述存储器中的所述可执行程序代码,执行本发明实施例第一方面任一方法中所描述的部分或全部步骤。
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。
图1是现有技术中的一种安装任务的分配方法的流程示意图;
图2是本发明实施例公开的另一种安装任务的分配方法的流程示意图;
图3是本发明实施例公开的一种安装任务的分配装置的单元组成框图;
图4是本发明实施例公开的一种移动终端的结构示意图;
图5是本发明实施例公开的另一种移动终端的结构示意图。
为了使本技术领域的人员更好地理解本发明方案,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。此外,术语“包括”和“具有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或单元的过程、方法、系统、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其他步骤或单元。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本发明的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
下面对本发明的方法实施例进行详细描述。
请参见图1,图1是本发明实施例公开的一种安装任务的分配方法的流程示意图。该安装任务的分配方法可由移动终端实现。如图1所示,该方法至少包括以下步骤。
步骤S101,当检测到针对应用程序的安装任务的启动信号后,按照处理器资源的运算等级查询可用的处理器资源。
在一个实施例中,当检测到针对应用程序的安装任务的启动信号后,可按照处理器资源的运算等级由高到低的顺序查询可用的处理器资源。具体的,检测针对应用程序的安装任务的启动信号可为检测到开启了应用程序的安装进
程的启动信号,或者检测到用户对开启应用程序的安装任务的确认信号,该确认信号即可作为针对应用程序的安装任务的启动信号。当检测到上述任一种方式的启动信号后,可按照处理器资源的运算等级查询可用的处理器资源。可选的,可优先查询运算等级高的处理器资源,若运算等级高的处理器资源中的可用资源能够处理该安装任务,则确定该运算等级高的处理器资源为可用的处理器资源。若运算等级高的处理器资源中的可用资源不足以处理该安装任务,则继续查询其他运算等级的处理器资源,以得到当前能够处理该安装任务的处理器资源。或者,根据安装任务的负载量确定与其相对应的运算等级的处理器资源,如安装任务的负载量小,则对应的处理器资源的运算等级低等。优先查询对应运算等级的处理器资源的可用资源,若对应运算等级的处理器资源不可用,则可进一步查询其他运算等级的处理器资源,当然,可优先查询运算等级高的处理器资源。当然,还可通过其他方式查询可用的处理器资源,在此本发明实施例不做限定。需要说明的是,本发明实施例中描述的处理器资源可包括至少一个核心处理单元,其中,处理器资源中的核心处理单元可集成在同一处理器中,也可被配置在不同的处理器中。同一处理器资源下的核心处理单元的运算等级可相同,也可不同。如核心处理单元的运算能力强,则其运算等级高。
步骤S102,当查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理。
在一个实施例中,当查询到上述可用的处理器资源后,即可将上述安装任务分配至查询到的可用的处理器资源中进行处理。具体的,当查询到可用的处理器资源后,表明该处理器资源能够承载该安装任务的负载量,进而,可将安装任务分配至可用的处理器资源中进行处理。
步骤S103,提高所述可用的处理器资源的性能指标。
在一个实施例中,将安装任务分配至可用的处理器资源中进行处理后,可提高该可用的处理器资源的性能指标。可选的,提高可用的处理器资源的性能指标可包括增加该处理器资源中的核心处理单元的数量;或者,提高处理器资源中至少一个核心处理单元的时钟频率(主频)以提高该处理器资源的性能;或者,若判断出处理器资源目前处于低功耗状态,则关闭该处理器资源的低功耗状态,以提高该处理器资源的性能,从而,能够更快速的处理该安装任务。当然,提高处理器资源的性能指标还可包括上述的一种或多种方式组合。可选的,可在提高处理器资源的性能指标之前,确定该处理器资源的待调节性能指标,如核心处理单元没有全部使用,即可将核心处理单元的数量作为待调节性能指标;或者,处理器资源的时钟频率没有被调节至最高,则可确定该时钟频率为待调节性能指标,通过确定待调节性能指标后,提高该待调节性能指标,以提高该可用的处理器资源的性能。
需要说明的是,当查询到可用的处理器资源后,步骤S102与步骤S103的执行顺序并无限定,可在查询到可用的处理器资源后,先提高该可用的处理器资源的性能指标,进而将安装任务分配至该可用的处理器资源中进行处理;或者,
可上述步骤并行进行;或者,可先将安装任务分配至该可用的处理器资源中进行处理,后提高该可用的处理器资源的性能指标,可选的,可将安装任务分配至可用的处理器资源中后,进一步监测处理器资源处理该安装任务的时间,当监测到该处理器即将处理该安装任务时,提高处理器资源的性能,从而在保证快速处理安装任务的同时,降低该处理器资源的功耗。
本发明实施例中,当检测到针对应用程序的安装任务的启动信号后,可按照处理器资源的运算等级查询可用的处理器资源。当查询到可用的处理器资源后,可将安装任务分配至可用的处理器资源中进行处理,并提高该可用的处理器资源的性能指标。通过上述方式,可为安装任务合理分配处理器资源,加快安装任务的处理速度,并可通过提高处理器资源的性能指标,进一步加快该安装任务的处理速度。从而,使应用程序的安装任务能够被分配到有效的处理器资源以进行快速处理,提升了应用程序的安装速度,进而提升了用户体验。
请参见图2,图2是本发明实施例公开的另一种安装任务的分配方法的流程示意图。该安装任务的分配方法可由移动终端实现。如图2所示,该方法至少包括以下步骤。
步骤S201,当检测到针对应用程序的安装任务的启动信号后,获取所述安装任务的负载量。
在一个实施例中,当检测到针对应用程序的安装任务的启动信号后,可获取该安装任务的负载量。具体的,检测针对应用程序的安装任务的启动信号可为检测到开启了应用程序的安装进程的启动信号,或者检测到用户对开启应用程序的安装任务的确认信号,该确认信号即可作为针对应用程序的安装任务的启动信号。当检测到上述任一种方式的启动信号后,可获取该安装任务的负载量。其中,可根据该安装任务的负载量确定与安装任务相匹配的处理器资源。安装任务的负载量可与处理器资源的可用资源或可用余量或者与处理器资源的运算能力相关。
步骤S202,按照处理器资源的运算等级由高到低的顺序,查询处理器资源中的可用资源是否能够处理所述负载量。
在一个实施例中,当获取该安装任务的负载量后,可按照处理器资源的运算等级由高到低的顺序,查询处理器资源中的可用资源是否能够处理该负载量。具体的,处理器资源可按照其运算能力确定对应的运算等级,处理器资源的运算能力高,则其对应的运算等级高。其中,确定处理器资源的运算能力可基于其包括的核心处理单元的数量和/或核心处理单元的运算能力决定,若该处理器资源包括的核心处理单元的数量越多,且包括的核心处理单元的运算能力越高,则该处理器资源的运算等级越高。或者,处理器资源可统计其包括的核心处理单元的承载任务量的总和,该总和越高,表明该处理器资源能够处理的负载量越高,则该处理器资源的运算等级越高。可预先对处理器资源按照运算等级进行排序,当检测到安装任务的启动信号后,可按照排序结果一次查询可用的处理器资源。优先查询运算等级高的处理器资源,查询处理器资源的可用余
量,并比对处理器资源的可用余量与该安装程序的负载量,若可用余量大于该安装程序的负载量,则表明该处理器资源可用,通过上述方式到可用的处理器资源。
步骤S203,当查询到能够处理所述负载量的处理器资源时,确定所述处理器资源为所述可用的处理器资源。
可选的,步骤S201~步骤S203可由以下步骤代替:
获取所述安装任务的负载量;
判断与所述负载量所对应运算等级的处理器资源中的可用资源是否能够处理所述负载量;
若判断的结果为是,则确定所述对应运算等级的处理器资源为所述可用的处理器资源;
若判断的结果为否,则查询其他运算等级的处理器资源中的可用资源是否能够处理所述负载量;
若查询到其他运算等级的处理器资源中的可用资源能够处理所述负载量,则确定所述其他运算等级的处理器资源为所述可用的处理器资源。
具体的,获取该安装任务的负载量后,可确定与该负载量相匹配的处理器资源,具体的,确定运算等级与负载量对应的处理器资源。如若该安装任务的负载量大,则与其相匹配的处理器资源的运算的等级高。可优先确定与其匹配的处理器资源是否可用,若与其匹配的处理器资源不可用,则进一步查询其他运算等级的处理器资源是否可用。其中,可比对处理器资源中的可用余量与上述安装任务的负载量,若可用余量大于负载量,表明该处理器资源能够承载上述安装任务的负载量,进而该处理器资源可用。通过上述方式,可确定可用的处理器资源。
步骤S204,当查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理。
在一个实施例中,当查询到上述可用的处理器资源后,即可将上述安装任务分配至查询到的可用的处理器资源中进行处理。具体的,当查询到可用的处理器资源后,表明该处理器资源能够承载该安装任务的负载量,进而,可将安装任务分配至可用的处理器资源中进行处理。
步骤S205,提高所述可用的处理器资源的性能指标。
在一个实施例中,将安装任务分配至可用的处理器资源中进行处理后,可提高该可用的处理器资源的性能指标。可选的,提高可用的处理器资源的性能指标可包括增加该处理器资源中的核心处理单元的数量;或者,提高处理器资源中至少一个核心处理单元的时钟频率(主频)以提高该处理器资源的性能;或者,若判断出处理器资源目前处于低功耗状态,则关闭该处理器资源的低功耗状态,以提高该处理器资源的性能,从而,能够更快速的处理该安装任务。当然,提高处理器资源的性能指标还可包括上述的一种或多种方式组合。可选的,可在提高处理器资源的性能指标之前,确定该处理器资源的待调节性能指
标,如核心处理单元没有全部使用,即可将核心处理单元的数量作为待调节性能指标;或者,处理器资源的时钟频率没有被调节至最高,则可确定该时钟频率为待调节性能指标,通过确定待调节性能指标后,提高该待调节性能指标,以提高该可用的处理器资源的性能。
需要说明的是,当查询到可用的处理器资源后,步骤S102与步骤S103的执行顺序并无限定,可在查询到可用的处理器资源后,先提高该可用的处理器资源的性能指标,进而将安装任务分配至该可用的处理器资源中进行处理;或者,可上述步骤并行进行;或者,可先将安装任务分配至该可用的处理器资源中进行处理,后提高该可用的处理器资源的性能指标,可选的,可将安装任务分配至可用的处理器资源中后,进一步监测处理器资源处理该安装任务的时间,当监测到该处理器即将处理该安装任务时,提高处理器资源的性能,从而在保证快速处理安装任务的同时,降低该处理器资源的功耗。可选的,在将安装任务分配至可用的处理器资源后,如果确定出需要调节处理器资源的时钟频率,则可以确定用于处理该安装任务的一个或多个核心处理单元,并基于该安装任务的负载量,确定与该负载量对应的时钟频率增加量,这种对应关系可以预存储在移动终端中,则可以根据所确定的时钟频率增加量,提升上述一个或多个核心处理单元的时钟频率。其中,如果又多个核心处理单元对该安装任务进行处理,则可以进一步根据各核心处理单元分配到的负载量,确定对应的时钟频率增加量,也就是说,为每个核心处理单元确定的时钟频率增加量可以相同,也可以不同。
步骤S206,判断在预设的时间范围内是否检测到针对所述安装任务的停止信号。
在一个实施例中,当提高可用处理器资源的性能指标,对安装任务进行处理后,还可进一步判断在预设的时间范围内是否检测到针对该安装任务的停止信号。其中,该停止信号为该安装任务的进程结束后发出的停止信号。若在预设的时间范围内未检测到该停止信号,表明安装任务处理失败或者安装任务的进程结束后未正常发出停止信号,则为了避免长期提高处理器资源的性能而带来的功耗损耗过快问题,则可在预设时间范围结束时,降低该可用的处理器资源的性能指标。若在上述预设的时间范围内检测到该停止信号,表明上述可用的处理器资源已完成处理上述安装任务,则可恢复或根据当前负载量降低该可用处理器资源的性能指标。可选的,可设定检测定时器,在检测定时器的定时周期内监测上述停止信号,若在检测定时器超时的时刻仍未监测到上述停止信号,则表明未检测到停止信号。
步骤S207,若判断出未检测到所述停止信号,则降低所述可用的处理器资源的性能指标。
在一个实施例中,若判断出未检测到上述停止信号,则可降低上述可用的处理器资源的性能指标,以避免该处理器资源的功耗浪费。具体的,降低可用处理器资源的性能指标包括将可用处理器资源的性能指标恢复至未提高前的
性能指标。如为提高前的处理器资源处于低功耗状态,则降低处理器资源的性能指标即将处理器资源恢复至低功耗状态等。另一种情况为,可以首先检测处理器资源正在处理的当前负载量,并根据当前负载量确定处理器资源中待调节的性能指标,并根据当前负载量确定对该待调节的性能指标的调节量,进而,可以根据确定的调节量,调节待调节的性能指标。例如,检测所述处理器资源正在处理的当前负载量,确定是否处理器资源中正在运行的核心处理单元是否均在处理负载,如果存在未处理负载但正在运行的核心处理单元,或者存在处理较小负载的核心处理单元,则确定该核心处理单元的时钟频率或者功耗状态为待调节的性能指标。可以降低该核心处理单元的时钟频率或者功耗状态,进一步的,如果核心处理单元处理较小负载,则可以根据核心处理单元正在处理负载的负载量,来确定调节量。
本发明实施例中,当检测到针对应用程序的安装任务的启动信号后,可按照处理器资源的运算等级查询可用的处理器资源。当查询到可用的处理器资源后,可将安装任务分配至可用的处理器资源中进行处理,并提高该可用的处理器资源的性能指标。通过上述方式,可为安装任务合理分配处理器资源,加快安装任务的处理速度,并可通过提高处理器资源的性能指标,进一步加快该安装任务的处理速度。从而,使应用程序的安装任务能够被分配到有效的处理器资源以进行快速处理,提升了应用程序的安装速度,进而提升了用户体验。
请参阅图3,图3是本发明实施例公开的一种安装任务的分配装置的单元组成框图。该移动终端可包括第一查询单元301、分配单元302、提高单元303。
其中,第一查询单元301,用于当检测到针对应用程序的安装任务的启动信号后,按照处理器资源的运算等级查询可用的处理器资源;
分配单元302,用于当所述查询单元查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理;
提高单元303,用于提高所述可用的处理器资源的性能指标。
可选的,所述第一查询单元包括:
第一获取单元,用于获取所述安装任务的负载量;
第二查询单元,用于按照处理器资源的运算等级由高到低的顺序,查询处理器资源中的可用资源是否能够处理所述负载量;
第一确定单元,用于当所述第二查询单元查询到能够处理所述负载量的处理器资源时,确定所述处理器资源为所述可用的处理器资源。
可选的,所述第一查询单元包括:
第二获取单元,用于获取所述安装任务的负载量;
第一判断单元,用于判断与所述负载量所对应运算等级的处理器资源中的可用资源是否能够处理所述负载量;
第二确定单元,若所述第一判断单元判断的结果为是,则确定所述对应运算等级的处理器资源为所述可用的处理器资源;
第三查询单元,用于若所述第一判断单元判断的结果为否,则查询其他运算等级的处理器资源中的可用资源是否能够处理所述负载量;
第三确定单元,用于若所述第三查询单元查询到其他运算等级的处理器资源中的可用资源能够处理所述负载量,则确定所述其他运算等级的处理器资源为所述可用的处理器资源。
可选的,所述提高单元用于:
增加所述可用的处理器资源中的核心处理单元的数量;或者,
关闭所述可用的处理器资源的低功耗模式;或者,
基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率。
可选的,所述提高单元基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率的实现方式为:
基于所述安装任务的所述负载量,确定与所述负载量对应的时钟频率增加量;
确定所述可用的处理器资源中用于处理所述安装任务的一个或多个核心处理单元;
根据所述时钟频率增加量,调节所述一个或多个核心处理单元的时钟频率。
可选的,所述移动终端还包括:
第二判断单元,用于在所述提高单元提高所述可用的处理器资源的性能指标之后,判断在预设的时间范围内是否检测到针对所述安装任务的停止信号;
降低单元,用于若所述第二判断单元判断出未检测到所述停止信号,则降低所述可用的处理器资源的性能指标。
可选的,所述降低单元用于:
检测所述处理器资源正在处理的当前负载量;
根据所述当前负载量,确定所述处理器资源中待调节的性能指标,并确定对所述待调节的性能指标的调节量;
根据所述调节量,调节所述待调节的性能指标。
本发明实施例中,当检测到针对应用程序的安装任务的启动信号后,可按照处理器资源的运算等级查询可用的处理器资源。当查询到可用的处理器资源后,可将安装任务分配至可用的处理器资源中进行处理,并提高该可用的处理器资源的性能指标。通过上述方式,可为安装任务合理分配处理器资源,加快安装任务的处理速度,并可通过提高处理器资源的性能指标,进一步加快该安装任务的处理速度。从而,使应用程序的安装任务能够被分配到有效的处理器资源以进行快速处理,提升了应用程序的安装速度,进而提升了用户体验。
本发明实施例还提供了另一种移动终端,如图4所示,包括:处理器101,存储器102,通信接口103、通信总线104;其中,处理器101、存储器102和通信接口103通过通信总线104连接并完成相互间的通信;处理器101通过通信接口103控制与外部蜂窝网的无线通信;通信接口103包括但不限于天线、放大器、
收发信机、耦合器、LNA(Low Noise Amplifier,低噪声放大器)、双工器等。存储器102包括以下至少一种:随机存取存贮器、非易失性存储器以及外部存储器,存储器102中存储有可执行程序代码,该可执行程序代码能够引导处理器101执行本发明方法实施例中具体披露的安装任务的分配方法,包括以下步骤:
所述处理器101当检测到针对应用程序的安装任务的启动信号后,按照处理器资源的运算等级查询可用的处理器资源;
所述处理器101当查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理;
所述处理器101提高所述可用的处理器资源的性能指标。
本发明实施例中,当检测到针对应用程序的安装任务的启动信号后,可按照处理器资源的运算等级查询可用的处理器资源。当查询到可用的处理器资源后,可将安装任务分配至可用的处理器资源中进行处理,并提高该可用的处理器资源的性能指标。通过上述方式,可为安装任务合理分配处理器资源,加快安装任务的处理速度,并可通过提高处理器资源的性能指标,进一步加快该安装任务的处理速度。从而,使应用程序的安装任务能够被分配到有效的处理器资源以进行快速处理,提升了应用程序的安装速度,进而提升了用户体验。
此外,上述存储器102中存储的可执行程序代码还用于执行上述图2所示的方法的相关步骤。在此暂不赘述。
本发明实施例还提供了另一种移动终端,如图5所示,为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照本发明实施例方法部分。该移动终端可以为包括手机、平板电脑、PDA(Personal Digital Assistant,个人数字助理)、POS(Point of Sales,销售终端)、车载电脑等任意终端设备,以移动终端为手机为例:
图5示出的是与本发明实施例提供的移动终端相关的手机的部分结构的框图。参考图5,手机包括:射频(Radio Frequency,RF)电路910、存储器920、输入单元930、显示单元940、传感器950、音频电路960、无线保真(wireless fidelity,WiFi)模块970、处理器980、以及电源990等部件。本领域技术人员可以理解,图5中示出的手机结构并不构成对手机的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
下面结合图5对手机的各个构成部件进行具体的介绍:
RF电路910可用于信息的接收和发送。通常,RF电路910包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器(Low Noise Amplifier,LNA)、双工器等。此外,RF电路910还可以通过无线通信与网络和其他设备通信。上述无线通信可以使用任一通信标准或协议,包括但不限于全球移动通讯系统(Global System of Mobile communication,GSM)、通用分组无线服务(General Packet Radio Service,GPRS)、码分多址(Code Division Multiple Access,
CDMA)、宽带码分多址(Wideband Code Division Multiple Access,WCDMA)、长期演进(Long Term Evolution,LTE)、电子邮件、短消息服务(Short Messaging Service,SMS)等。
存储器920可用于存储软件程序以及模块,处理器980通过运行存储在存储器920的软件程序以及模块,从而执行手机的各种功能应用以及数据处理。存储器920可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序等;存储数据区可存储根据手机的使用所创建的数据等。此外,存储器920可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
输入单元930可用于接收输入的数字或字符信息,以及产生与手机的用户设置以及功能控制有关的键信号输入。具体地,输入设备930可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆、指纹识别模组等中的一种或多种。
显示单元940可用于显示由用户输入的信息或提供给用户的信息以及手机的各种菜单。显示单元940可包括显示屏941,可选的,可以采用液晶显示器(Liquid Crystal Display,LCD)、有机发光二极管(Organic Light-Emitting Diode,OLED)等形式来配置显示屏941。
手机还可包括至少一种传感器950,比如光传感器、运动传感器以及其他传感器。具体地,光传感器可包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节显示屏941的亮度,接近传感器可在手机移动到耳边时,关闭显示屏941和/或背光。作为运动传感器的一种,加速计传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别手机姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等;至于手机还可配置的陀螺仪、气压计、湿度计、温度计、红外线传感器等其他传感器,在此不再赘述。
音频电路960、扬声器961,传声器962可提供用户与手机之间的音频接口。音频电路960可将接收到的音频数据转换后的电信号,传输到扬声器961,由扬声器961转换为声音信号输出;另一方面,传声器962将收集的声音信号转换为电信号,由音频电路960接收后转换为音频数据,再将音频数据输出处理器980处理后,经RF电路910以发送给比如另一手机,或者将音频数据输出至存储器920以便进一步处理。
WiFi属于短距离无线传输技术,手机通过WiFi模块970可以帮助用户收发电子邮件、浏览网页和访问流式媒体等,它为用户提供了无线的宽带互联网访问。虽然图5示出了WiFi模块970,但是可以理解的是,其并不属于手机的必须构成,完全可以根据需要在不改变发明的本质的范围内而省略。
处理器980是手机的控制中心,利用各种接口和线路连接整个手机的各个
部分,通过运行或执行存储在存储器920内的软件程序和/或模块,以及调用存储在存储器920内的数据,执行手机的各种功能和处理数据,从而对手机进行整体监控。可选的,处理器980可包括一个或多个核心处理单元;优选的,处理器980可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器980中。
手机还包括给各个部件供电的电源990(比如电池),优选的,电源可以通过电源管理系统与处理器980逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。
尽管未示出,手机还可以包括摄像头、蓝牙模块等,在此不再赘述。
前述图1或图2所示的实施例中,各步骤方法流程可以基于该手机的结构实现。
前述图3所示的实施例中,各单元功能可以基于该手机的结构实现。
本发明实施例还提供一种计算机存储介质,其中,该计算机存储介质可存储有程序,该程序执行时包括上述方法实施例中记载的任何一种安装任务的分配方法的部分或全部步骤。
需要说明的是,对于前述的各方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,因为依据本发明,某些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本发明所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
在本申请所提供的几个实施例中,应该理解到,所揭露的装置,可通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元
中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储器中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储器中,包括若干指令用以使得一台计算机设备(可为个人计算机、服务器或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储器包括:U盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储器中,存储器可以包括:闪存盘、只读存储器(英文:Read-Only Memory,简称:ROM)、随机存取器(英文:Random Access Memory,简称:RAM)、磁盘或光盘等。
以上对本发明实施例进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。
Claims (20)
- 一种安装任务的分配方法,其特征在于,包括:当检测到针对应用程序的安装任务的启动信号后,按照处理器资源的运算等级查询可用的处理器资源;当查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理;提高所述可用的处理器资源的性能指标。
- 如权利要求1所述方法,其特征在于,所述按照处理器资源的运算等级查询可用的处理器资源,包括:获取所述安装任务的负载量;按照处理器资源的运算等级由高到低的顺序,查询处理器资源中的可用资源是否能够处理所述负载量;当查询到能够处理所述负载量的处理器资源时,确定所述处理器资源为所述可用的处理器资源。
- 如权利要求1所述方法,其特征在于,所述按照处理器资源的运算等级查询可用的处理器资源,包括:获取所述安装任务的负载量;判断与所述负载量所对应运算等级的处理器资源中的可用资源是否能够处理所述负载量;若判断的结果为是,则确定所述对应运算等级的处理器资源为所述可用的处理器资源;若判断的结果为否,则查询其他运算等级的处理器资源中的可用资源是否能够处理所述负载量;若查询到其他运算等级的处理器资源中的可用资源能够处理所述负载量,则确定所述其他运算等级的处理器资源为所述可用的处理器资源。
- 如权利要求1-3任一项所述方法,其特征在于,所述提高所述可用的处理器资源的性能指标,包括:增加所述可用的处理器资源中的核心处理单元的数量;或者,关闭所述可用的处理器资源的低功耗模式;或者,基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率。
- 如权利要求4所述方法,其特征在于,所述基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率,包括:基于所述安装任务的所述负载量,确定与所述负载量对应的时钟频率增加 量;确定所述可用的处理器资源中用于处理所述安装任务的一个或多个核心处理单元;根据所述时钟频率增加量,调节所述一个或多个核心处理单元的时钟频率。
- 如权利要求4所述方法,其特征在于,所述提高所述可用的处理器资源的性能指标之后,所述方法还包括:判断在预设的时间范围内是否检测到针对所述安装任务的停止信号;若判断出未检测到所述停止信号,则降低所述可用的处理器资源的性能指标。
- 如权利要求6所述方法,其特征在于,所述降低所述可用的处理器资源的性能指标,包括:检测所述处理器资源正在处理的当前负载量;根据所述当前负载量,确定所述处理器资源中待调节的性能指标,并确定对所述待调节的性能指标的调节量;根据所述调节量,调节所述待调节的性能指标。
- 如权利要求1所述方法,其特征在于,所述可用的处理器资源包括为处理任务的一个或多个核心处理单元。
- 如权利要求1所述方法,其特征在于,所述性能指标包括核心处理单元的数量、低功耗模式或时钟频率中的至少一种。
- 一种安装任务的分配装置,其特征在于,包括:第一查询单元,用于当检测到针对应用程序的安装任务的启动信号后,按照处理器资源的运算等级查询可用的处理器资源;分配单元,用于当所述查询单元查询到所述可用的处理器资源后,将所述安装任务分配至所述可用的处理器资源中进行处理;提高单元,用于提高所述可用的处理器资源的性能指标。
- 如权利要求10所述装置,其特征在于,所述第一查询单元包括:第一获取单元,用于获取所述安装任务的负载量;第二查询单元,用于按照处理器资源的运算等级由高到低的顺序,查询处理器资源中的可用资源是否能够处理所述负载量;第一确定单元,用于当所述第二查询单元查询到能够处理所述负载量的处理器资源时,确定所述处理器资源为所述可用的处理器资源。
- 如权利要求10所述装置,其特征在于,所述第一查询单元包括:第二获取单元,用于获取所述安装任务的负载量;第一判断单元,用于判断与所述负载量所对应运算等级的处理器资源中的可用资源是否能够处理所述负载量;第二确定单元,若所述第一判断单元判断的结果为是,则确定所述对应运算等级的处理器资源为所述可用的处理器资源;第三查询单元,用于若所述第一判断单元判断的结果为否,则查询其他运算等级的处理器资源中的可用资源是否能够处理所述负载量;第三确定单元,用于若所述第三查询单元查询到其他运算等级的处理器资源中的可用资源能够处理所述负载量,则确定所述其他运算等级的处理器资源为所述可用的处理器资源。
- 如权利要求10-12任一项所述装置,其特征在于,所述提高单元用于:增加所述可用的处理器资源中的核心处理单元的数量;或者,关闭所述可用的处理器资源的低功耗模式;或者,基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率。
- 如权利要求13所述装置,其特征在于,所述提高单元基于所述安装任务的所述负载量,增加所述可用的处理器资源的时钟频率的实现方式为:基于所述安装任务的所述负载量,确定与所述负载量对应的时钟频率增加量;确定所述可用的处理器资源中用于处理所述安装任务的一个或多个核心处理单元;根据所述时钟频率增加量,调节所述一个或多个核心处理单元的时钟频率。
- 如权利要求13所述装置,其特征在于,还包括:第二判断单元,用于在所述提高单元提高所述可用的处理器资源的性能指标之后,判断在预设的时间范围内是否检测到针对所述安装任务的停止信号;降低单元,用于若所述第二判断单元判断出未检测到所述停止信号,则降低所述可用的处理器资源的性能指标。
- 如权利要求15所述装置,其特征在于,所述降低单元用于:检测所述处理器资源正在处理的当前负载量;根据所述当前负载量,确定所述处理器资源中待调节的性能指标,并确定对所述待调节的性能指标的调节量;根据所述调节量,调节所述待调节的性能指标。
- 如权利要求10所述装置,其特征在于,所述可用的处理器资源包括为 处理任务的一个或多个核心处理单元。
- 如权利要求10所述装置,其特征在于,所述性能指标包括核心处理单元的数量、低功耗模式或时钟频率中的至少一种。
- 一种移动终端,其特征在于,包括:处理器、存储器;所述存储器存储有可执行程序代码;所述处理器用于调用所述存储器中的所述可执行程序代码,执行如权利要求1-9任意一项方法。
- 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质中存储有指令,当其在计算机上运行时,使得计算机执行如权利要求1-9中任意一个方法。
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- 2016-05-31 CN CN201610380701.1A patent/CN106095567B/zh active Active
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- 2017-05-27 EP EP17805796.4A patent/EP3407192B1/en active Active
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Also Published As
Publication number | Publication date |
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EP3407192A4 (en) | 2019-02-27 |
US20180365067A1 (en) | 2018-12-20 |
CN106095567B (zh) | 2019-08-30 |
EP3407192B1 (en) | 2021-03-24 |
EP3407192A1 (en) | 2018-11-28 |
CN106095567A (zh) | 2016-11-09 |
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