WO2016090976A1 - 移动终端及其资源管理方法 - Google Patents

移动终端及其资源管理方法 Download PDF

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Publication number
WO2016090976A1
WO2016090976A1 PCT/CN2015/088837 CN2015088837W WO2016090976A1 WO 2016090976 A1 WO2016090976 A1 WO 2016090976A1 CN 2015088837 W CN2015088837 W CN 2015088837W WO 2016090976 A1 WO2016090976 A1 WO 2016090976A1
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WIPO (PCT)
Prior art keywords
operating system
service request
data service
mobile terminal
modem
Prior art date
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PCT/CN2015/088837
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English (en)
French (fr)
Inventor
徐洋
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to KR1020177018869A priority Critical patent/KR102009037B1/ko
Priority to EP19219740.8A priority patent/EP3690659A3/en
Priority to EP15866644.6A priority patent/EP3220269B1/en
Priority to KR1020197022927A priority patent/KR102045865B1/ko
Publication of WO2016090976A1 publication Critical patent/WO2016090976A1/zh
Priority to US15/620,303 priority patent/US10117253B2/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/30Monitoring
    • G06F11/3003Monitoring arrangements specially adapted to the computing system or computing system component being monitored
    • G06F11/3013Monitoring arrangements specially adapted to the computing system or computing system component being monitored where the computing system is an embedded system, i.e. a combination of hardware and software dedicated to perform a certain function in mobile devices, printers, automotive or aircraft systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/51Allocation or scheduling criteria for wireless resources based on terminal or device properties
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/30Monitoring
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/455Emulation; Interpretation; Software simulation, e.g. virtualisation or emulation of application or operating system execution engines
    • G06F9/45533Hypervisors; Virtual machine monitors
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/40Security arrangements using identity modules
    • H04W12/45Security arrangements using identity modules using multiple identity modules
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/60Subscription-based services using application servers or record carriers, e.g. SIM application toolkits
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup

Definitions

  • Embodiments of the present invention relate to the field of communications technologies, and, in particular, to a mobile terminal and a resource management method thereof.
  • a mobile phone can be used both as an office and as a general mobile phone.
  • the technology of mobile terminal virtualization can run two or more operating systems on a mobile phone, which can meet the needs of mobile office. Users need to bring two or more mobile phones to get things done. Now just bring a mobile phone. Yes.
  • the embodiments of the present invention provide a mobile terminal and a resource management method thereof, which enable each operating system of the mobile terminal to monitor and manage the usage status of multiple SIM card resources of the mobile terminal in real time, and ensure multiple SIM card resources under the mobile terminal.
  • the state of use consistency thereby achieving coordinated management of multiple SIM card resources by mobile terminals under multiple operating systems.
  • the embodiment of the present invention further provides a mobile terminal and a resource management method thereof, which enable each operating system of the mobile terminal to monitor and manage the usage status of the channel resource of the mobile terminal in real time, and ensure that the usage status of the channel resource under the mobile terminal is consistent. Sexuality, so as to achieve coordinated management of channel resources by mobile terminals under multiple operating systems.
  • a mobile terminal comprising a virtual resource sharing control system, a modem and a plurality of operating systems, wherein a plurality of SIM cards are deployed on the modem; a first operation of the plurality of operating systems
  • the system is configured to receive the user of the mobile terminal a card operation request of the first SIM card in the SIM card, and notifying the second operating system and the virtual resource sharing control system of the plurality of operating systems, wherein the first operating system is the multiple operations An operating system running in the foreground in the system, the second operating system is one or more operating systems other than the first operating system of the plurality of operating systems;
  • the virtual resource sharing control system is configured to coordinate the multiple operating systems Managing card operations of the plurality of SIM cards, specifically for performing card operations on the first SIM card by the modem according to the card operation request and the current state of the first SIM card, and performing first feedback of the card operation The result is sent to the first operating system and the second operating system; the first operating system is further configured to: according to the first feedback
  • the first operating system and the second operating system both include a user interface UI interface processing unit, an upper layer logic processing unit, and a resource management unit, where the first operation
  • the UI interface processing unit of the system is configured to receive the card operation request, and notify the upper layer logic processing unit of the current operating system of the card operation request;
  • the upper layer logic processing unit of the first operating system is configured to notify the card operation request a resource management unit of the operating system;
  • the resource management unit of the first operating system is configured to monitor and monitor a current state of the first SIM card in the first operating system according to the card operation request, and notify the virtual resource sharing control system, In order for the virtual resource sharing control system to perform a corresponding card operation according to the card operation request;
  • the upper layer logic processing unit of the first operating system is further configured to notify the upper layer logic processing unit of the second operating system of the card operation request;
  • the upper logic processing unit of the second operating system is configured to notify the second operating system of the card operation request
  • the resource management unit of the second operating system is configured to
  • the specific implementation is as follows: the card operation includes a SIM card startup operation, a SIM card activation operation, and a SIM card deactivation operation. Or SIM card switching operation.
  • the modem is further configured to The data connection of the mobile terminal provides a channel resource;
  • the first operating system is further configured to receive a data service request of the user of the mobile terminal, and notify the second operating system and the virtual resource sharing control system of the data service request, where The data service request needs to establish a new data connection;
  • the virtual resource sharing control system is further configured to coordinate and manage the use of the channel resource for the multiple operating systems, specifically for the data service request and the current channel resource of the modem.
  • the first operating system is further configured to use the second feedback result
  • the management monitors the usage status of the channel resource in the first operating system.
  • the second operating system is further configured to monitor and monitor the usage status of the channel resource in the second operating system according to the data service request or the second feedback result.
  • the first operating system and the second operating system both include a user interface UI interface processing unit, an upper layer logic processing unit, and resource management.
  • a unit wherein the UI interface processing unit of the first operating system is configured to receive the data service request, notify the upper layer logical processing unit of the current operating system of the data service request; and use an upper layer logic processing unit of the first operating system for Notifying the data management unit of the first operating system of the resource management unit;
  • the resource management unit of the first operating system is configured to monitor, according to the data service request, the usage status of the channel resource in the first operating system, and notify the virtual a resource sharing control system, wherein the virtual resource sharing control system allocates a corresponding channel resource for the data service request to establish a data connection;
  • the upper layer logic processing unit of the first operating system is further configured to notify the second operation of the data service request The upper logical processing unit of the system; the upper layer logic of the second operating system
  • the processing unit is configured to notify the resource management
  • the request is based on the data service, and the current channel of the modem a resource usage state
  • the virtual resource sharing control system is specifically configured to: when there is no idle channel resource in the modem, select a channel resource in the modem to be used, and stop the is using a first data connection of the channel resource, and a second data connection is established for the data service request; the virtual resource sharing control system is further configured to release the second data connection after the data service corresponding to the data service request is completed, and recover The first data connection.
  • the request is based on the data service, and the current channel of the modem
  • the resource usage state in the process of establishing a data connection for the data service request, is specifically configured to: when the modem has idle channel resources, select one of the idle channel resources to establish second data for the service request.
  • the virtual resource sharing control system is further configured to release the second data connection after the service corresponding to the service request is completed.
  • a mobile terminal comprising a virtual resource sharing control system, a modem and a plurality of operating systems, wherein the modem is configured to provide channel resources for a data connection of the mobile terminal; the multiple operating systems
  • the first operating system is configured to receive a data service request of the user of the mobile terminal, and notify the second operating system and the virtual resource sharing control system of the multiple operating systems of the data service request, where the data service request is required Establishing a new data connection, where the first operating system is an operating system running in the foreground of the plurality of operating systems, and the second operating system is one or more of the plurality of operating systems except the first operating system An operating system;
  • the virtual resource sharing control system is configured to coordinate and manage the use of the channel resource for the multiple operating systems, specifically for establishing the data service request according to the data service request and the current channel resource usage status of the modem.
  • the first operating system and the second operating system are further configured to: according to the feedback result, manage and monitor usage status of channel resources in the first operating system; the second operating system is further configured to use the data according to the data The service request or the feedback result, the management monitors the usage status of the channel resource in the second operating system.
  • the first operating system and the second operating system both include a user interface UI interface processing unit, an upper layer logic processing unit, and a resource management unit, where the first operation
  • the UI interface processing unit of the system is configured to receive the data service request, and notify the upper layer logical processing unit of the current operating system of the data service request;
  • the upper layer logic processing unit of the first operating system is configured to notify the data service request of the first a resource management unit of the operating system;
  • the resource management unit of the first operating system is configured to monitor and monitor usage status of the channel resource in the first operating system according to the data service request, and notify the virtual resource sharing control system
  • the virtual resource sharing control system allocates corresponding channel resources for the data service request to establish a data connection;
  • the upper layer logic processing unit of the first operating system is further configured to notify the upper layer of the second operating system of the data service request a logic processing unit;
  • the upper layer logic processing unit of the second operating system is configured to notify the resource management unit of the second operating system of the data service request; and the
  • the specific implementation is: used for the service request according to the data, and the current channel resource usage status of the modem
  • the virtual resource sharing control system is specifically configured to: when there is no free channel resource in the modem, select a channel resource that is in use in the modem, and stop the channel that is being used. a first data connection of the resource, and establishing a second data connection for the data service request; the virtual resource sharing control system is further configured to release the second data connection after the data service corresponding to the data service request is completed, and restore the first A data connection.
  • the specific implementation is:
  • the virtual resource sharing control system is specifically configured to: when there is idle channel resource in the modem, select one The idle channel resource establishes a second data connection for the service request; the virtual resource sharing control system is further configured to release the second data connection after the service corresponding to the service request is completed.
  • a third aspect provides a resource management method for a mobile terminal, where the mobile terminal includes a virtual resource sharing control system, a modem, and a plurality of operating systems, and the SIM card is deployed with a plurality of SIM cards, and the method includes: the multiple operations The first operating system in the system receives a card operation request of the user of the mobile terminal for the first SIM card of the plurality of SIM cards, and notifies the second operation system of the plurality of operating systems and the virtual resource sharing of the card operation request Control system, wherein the first The operating system is an operating system running in the foreground of the plurality of operating systems, the second operating system is one or more operating systems other than the first operating system of the plurality of operating systems; the second operating system is based on the card An operation request, the management monitors a current state of the first SIM card in the second operating system; the virtual resource sharing control system passes the first SIM card through the modem according to the card operation request and the current state of the first SIM card Performing a card operation, and transmitting a first feedback result of
  • a fourth aspect provides a resource management method for a mobile terminal, where the mobile terminal includes a virtual resource sharing control system, a modem, and a plurality of operating systems, the modem is configured to provide channel resources for the data connection of the mobile terminal, and the method includes The first operating system of the plurality of operating systems receives a data service request of the user of the mobile terminal, and notifies the second operating system and the virtual resource sharing control system of the plurality of operating systems of the data service request, where The data service request needs to establish a new data connection, wherein the first operating system is an operating system running in the foreground of the plurality of operating systems, and the second operating system is other than the first operating system of the plurality of operating systems One or more operating systems; the second operating system manages monitoring usage status of channel resources in the second operating system according to the data service request; the virtual resource sharing control system according to the data service request and the current channel of the modem Resource usage status, established for the data service request According to the connection, the feedback result of the data connection establishment is sent to the first operating system
  • the mobile terminal and the resource management method thereof by setting a virtual resource sharing control system outside the multiple operating systems of the mobile terminal, Administering each operating system to a plurality of SIM card resources in the modem, and notifying the second operating system (an operating system other than the first operating system) when the first operating system (the operating system executed by the foreground) operates the resources in the modem After the completion, the operating system is notified by the virtual resource sharing control system, so that the operating systems of the mobile terminal monitor and manage the usage status of the multiple SIM card resources of the mobile terminal in real time, and ensure the consistency of the usage status of multiple SIM card resources under the mobile terminal.
  • the virtual resource sharing control system so that the operating systems of the mobile terminal monitor and manage the usage status of the multiple SIM card resources of the mobile terminal in real time, and ensure the consistency of the usage status of multiple SIM card resources under the mobile terminal.
  • the mobile terminal and the resource management method thereof by setting a virtual resource sharing control system outside the multiple operating systems of the mobile terminal, To manage the channel resources of each operating system to the modem, and notify the second operating system (the operating system other than the first operating system) when the first operating system (the operating system executed by the foreground) operates the resources in the modem, after the operation is completed All operating systems are notified by the virtual resource sharing control system, so that the operating systems of the mobile terminal monitor and manage the channel resources or the usage status of the mobile terminal in real time, thereby ensuring the consistency of the usage status of the channel resources under the mobile terminal, thereby realizing the movement under multiple operating systems. Coordinated management of channel resources by terminals.
  • FIG. 1 is a schematic diagram of an embodiment of a system architecture of a mobile terminal according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of another embodiment of a system architecture of a mobile terminal according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • FIG. 4 is another schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of still another embodiment of a mobile terminal according to an embodiment of the present invention.
  • FIG. 6 is a schematic flowchart of dual card resource management in a mobile terminal according to an embodiment of the present invention.
  • FIG. 7 is a schematic flowchart of concurrent management of multiple data services in a mobile terminal according to an embodiment of the present invention.
  • FIG. 8 is another schematic flowchart of concurrent management of multiple data services in a mobile terminal according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • FIG. 10 is another schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • FIG. 11 is another schematic structural diagram of a mobile terminal according to an embodiment of the present invention.
  • FIG. 12 is a flowchart of a resource management method of a mobile terminal according to an embodiment of the present invention.
  • FIG. 13 is a flowchart of another resource management method of a mobile terminal according to an embodiment of the present invention.
  • FIG. 14 is a flowchart of still another resource management method of a mobile terminal according to an embodiment of the present invention.
  • FIG. 15 is a schematic structural diagram of still another embodiment of a mobile terminal according to an embodiment of the present invention.
  • FIG. 16 is a schematic structural diagram of still another embodiment of a mobile terminal according to an embodiment of the present invention.
  • RAN Radio Access Network
  • core networks may be a mobile phone (or "cellular" phone) and a computer with a mobile terminal, for example, portable, pocket, handheld, Computer built-in or in-vehicle mobile devices that exchange language and/or data with a wireless access network, such as a mobile phone, a mobile device on a vehicle, a personal digital assistant PDA, and the like.
  • FIG. 1 and FIG. 2 are schematic structural diagrams of a mobile terminal according to an embodiment of the present invention.
  • the identification method of the application scenario provided by the embodiment of the present invention or the logical structure of the computing node applied by the power consumption management method is introduced by using FIG. 1 and FIG. 2 as an example.
  • the computing node may be a mobile terminal, and the mobile terminal may specifically be a smart phone. As shown in FIG. 1 and FIG.
  • the hardware layer of the mobile terminal includes a central processing unit (CPU), a graphics processing unit (GPU), and the like, and may further include a memory, an input/output device, and
  • the memory device, the memory controller, the network interface, etc., the input device may include a keyboard, a mouse, a touch screen, etc.
  • the output device may include a display device such as a liquid crystal display (LCD), a cathode ray tube (CRT), a hologram. Holographic, Projector, etc.
  • LCD liquid crystal display
  • CRT cathode ray tube
  • hologram Holographic, Projector, etc.
  • On the hardware layer there are operating systems (such as Android, Firefox OS, etc.) and some applications.
  • Figure 1 is an Android system as an example to introduce the software system architecture of the mobile terminal.
  • the core library is the core part of the operating system, including the appearance manager, the media framework, the relational database, the 2G graphics engine library, the web browser engine, and the kernel.
  • the identification of the application scenario and the determination of the power consumption control policy described in the embodiments of the present invention may be implemented at a virtual machine (for example, Dalvik Virtual Machine), that is, virtual and virtual machines (for example, Dalvik Virtual Machine).
  • the application scenario is configured to determine, according to the application scenario information, a power consumption control policy corresponding to the application scenario information, where the control policy set includes a correspondence between the multiple application scenario information and multiple power consumption control policies.
  • the kernel ie, the Linux kernel in FIG. 1
  • the kernel to the mobile terminal Power control is implemented by the corresponding hardware (such as CPU, GPU, or display device, etc.).
  • the mobile terminal further includes a driving layer, a framework layer, and an application layer.
  • the driver layer may include a CPU driver, a GPU driver, a display controller driver, and the like.
  • the framework layer may include a browser engine, a typesetting engine, a file parser, etc.; the application layer may include a plurality of applications such as a home, a media player, and a browser.
  • FIG. 2 is a software system architecture of a mobile terminal by taking a Firefox OS system as an example.
  • the core library is a core part of the operating system, including a appearance manager, a media framework, a relational database, a user interface, a sound manager, and the like.
  • the mobile terminal further includes a driver layer, a framework layer, and an application layer.
  • the driver layer may include a CPU driver, a GPU driver, a display controller driver, and the like.
  • the framework layer may include a browser engine, a typesetting engine, a file parser, a JavaScript engine, etc., wherein the identification of the application scenario and the determination of the power consumption control strategy described in the embodiments of the present invention may be implemented at a JavaScript engine, that is, The JavaScript engine acquires the feature data of the application by compiling and analyzing the running application on the mobile terminal; and determining, according to the feature data of the application, the application scenario corresponding to the feature data of the application from the scene feature data set Information, the scene feature data set includes a corresponding relationship between the plurality of application scenario information and feature data of the plurality of applications, wherein the application scenario information corresponding to the feature data of the application is used to indicate that the mobile terminal is currently
  • the used application scenario determines a power consumption control policy corresponding to the application scenario information from the control policy set according to the application scenario information, where the control policy set includes the multiple application scenario information and multiple power consumption controls The corresponding relationship of the policy, and according to the application scenario Strategy information corresponding power control
  • the application layer may include various applications such as a home interface, a media player, and a browser.
  • FIG. 3 is a schematic structural diagram of a mobile terminal 300 according to an embodiment of the present invention.
  • the mobile terminal 300 can include a plurality of operating systems 310, a virtual resource sharing control system 320, and a modem 330.
  • SIM Subscriber Identity Module
  • SIM cards also known as user identification cards, smart cards, etc.
  • the SIM card may also be other types of cards for providing mobile services in the mobile terminal, which are not limited herein.
  • the first operating system of the plurality of operating systems 310 is configured to receive a card operation request of the user of the mobile terminal 300 for the first SIM card of the plurality of SIM cards, and notify the plurality of operating systems 310 of the card operation request.
  • the second operating system and virtual resource sharing control system 320 is configured to receive a card operation request of the user of the mobile terminal 300 for the first SIM card of the plurality of SIM cards, and notify the plurality of operating systems 310 of the card operation request.
  • the first operating system is an operating system running in the foreground of the plurality of operating systems 310
  • the second operating system is one or more operating systems other than the first operating system of the plurality of operating systems 310, or
  • the second operating system is said to be all operating systems of the plurality of operating systems 310 except the first operating system.
  • the mobile terminal in the working state, operates a plurality of operating systems that can be divided into an operating system running in the foreground and an operating system running in the background. Among them, there may be more than one operating system running in the foreground. Obviously, the user of the mobile terminal usually only operates in the operating system running in the foreground.
  • the first operating system may send the card operation request to other operating systems, including an operating system running in the background and other operating systems running in the foreground.
  • the virtual resource sharing control system 320 is configured to coordinate management of card operations of the plurality of SIM cards for the plurality of operating systems 310. Specifically, the virtual resource sharing control system 320 can be configured to perform a card operation on the first SIM card by using the card 330 according to the card operation request and the current state of the first SIM card, and send the first feedback result of the card operation. Giving the first operating system and the second operating system.
  • the first operating system is further configured to manage and monitor the first operating system according to the first feedback result.
  • the current state of the first SIM card is further configured to manage and monitor the first operating system according to the first feedback result.
  • the second operating system is configured to monitor and monitor a current state of the first SIM card in the second operating system according to the card operation request or the first feedback result.
  • a virtual resource sharing control system is set in addition to a plurality of operating systems of the mobile terminal, and is used for coordinating and managing operating systems of multiple SIM card resources in the modem and operating in a certain foreground.
  • the other operating systems are notified, and all operating systems are notified by the virtual resource sharing control system after the operation is completed, so that the operating systems of the mobile terminal monitor and manage the usage status of multiple SIM card resources of the mobile terminal in real time, and ensure the mobile terminal is under the mobile terminal.
  • the usage status of multiple SIM card resources is consistent, thereby implementing coordinated management of multiple SIM card resources by the mobile terminal under multiple operating systems.
  • the card operation may include a SIM card activation operation, a SIM card activation operation, a SIM card deactivation operation, or a SIM card switching operation.
  • FIG. 4 is another schematic structural diagram of a mobile terminal 300 according to an embodiment of the present invention.
  • the operating system 310 may further include a UI interface processing unit 311, an upper layer logic processing unit 312, and a resource management unit 313.
  • the user interface UI interface processing unit 311, the upper layer logic processing unit 312, and the resource management unit 313 are specifically configured to implement the following functions:
  • the UI interface processing unit 311 of the first operating system is configured to receive the card operation request, and notify the upper layer logic processing unit 312 of the current operating system of the card operation request;
  • the upper layer logic processing unit 312 of the first operating system is configured to notify the resource management unit 313 of the first operating system of the card operation request;
  • the resource management unit 313 of the first operating system is configured to monitor and monitor the current state of the first SIM card in the first operating system according to the card operation request, and notify the virtual resource sharing control system 320, so that the virtual resource sharing control system 320 Performing corresponding card operations according to the card operation request;
  • the upper layer logic processing unit 312 of the first operating system is further configured to notify the upper layer logic processing unit 312 of the second operating system of the card operation request;
  • the upper layer logic processing unit 312 of the second operating system is configured to notify the resource management unit 313 of the second operating system of the card operation request;
  • the resource management unit 313 of the second operating system is configured to monitor and monitor a current state of the first SIM card in the second operating system according to the card operation request.
  • the resource management unit 313 of the first operating system is further configured to receive the feedback information, and according to the The feedback information management monitors a current state of the first SIM card in the first operating system;
  • the resource management unit 313 of the second operating system is further configured to receive the feedback information, and monitor and monitor, according to the feedback information, a current state of the first SIM card in the second operating system.
  • the modem 330 is further configured to provide a channel resource for the data connection of the mobile terminal 300.
  • the first operating system is further configured to receive a data service request of the user of the mobile terminal 300, and the data service is received.
  • the virtual resource sharing control system 320 is further configured to coordinate and manage the channel resources for the plurality of operating systems 310.
  • the second operating system is further configured to: according to the second feedback result, manage and monitor a usage status of the channel resource in the first operating system; the second operating system is further configured to use the data service request or the second As a result of the feedback, the management monitors the usage status of the channel resources in the second operating system.
  • the usage status of the channel resource may include whether the channel resource is used, which operating system is being used, or whether a data connection has been established, and the like.
  • other channel resource usage information may also be included, and the embodiments of the present invention are not described herein.
  • the other operating systems when an operating system running in a foreground requests channel resources, the other operating systems are notified, and after the operation (including allocating channel resources and releasing channel resources), all operating systems are notified through the virtual resource sharing control system, so that the mobile
  • Each operating system of the terminal monitors and manages the usage status of the channel resources of the mobile terminal in real time, and ensures the consistency of the usage status of the channel resources under the mobile terminal, thereby enabling coordinated management of the channel resources by the mobile terminal under multiple operating systems.
  • the user interface UI interface processing unit 311, the upper layer logic processing unit 312, and the resource management unit 313 can also be used for the following functions:
  • the UI interface processing unit 311 of the first operating system is configured to receive the data service request, and notify the upper layer logic processing unit 312 of the current operating system of the data service request;
  • the upper layer logic processing unit 312 of the first operating system is configured to notify the resource management unit 313 of the first operating system of the data service request;
  • the resource management unit 313 of the first operating system is configured to monitor and monitor the usage status of the channel resource in the first operating system according to the data service request, and notify the virtual resource sharing control system 320. So that the virtual resource sharing control system 320 allocates corresponding channel resources for the data service request to establish a data connection;
  • the upper layer logic processing unit 312 of the first operating system is further configured to notify the upper layer logic processing unit 312 of the second operating system of the data service request;
  • the upper layer logic processing unit 312 of the second operating system is configured to notify the resource management unit 313 of the second operating system of the data service request;
  • the resource management unit 313 of the second operating system is configured to monitor, according to the data service request management, a usage status of the channel resource in the second operating system.
  • the resource management unit 313 of the first operating system is further configured to receive the feedback information, and monitor and monitor, according to the feedback information, a usage status of the channel resource in the first operating system;
  • the resource management unit 313 of the second operating system is further configured to receive the feedback information, and monitor and monitor, according to the feedback information, a usage status of the channel resource in the second operating system.
  • the virtual resource sharing control The system 320 is specifically configured to select a channel resource in use in the modem 330 when there is no free channel resource in the modem 330, stop the first data connection of the channel resource in use, and establish a second request for the data service request.
  • the virtual resource sharing control system 320 is further configured to release the second data connection after the data service corresponding to the data service request is completed, and restore the first data connection.
  • the virtual resource sharing The control system 320 is specifically configured to: when there is an idle channel resource in the modem 330, select one of the free channel resources to establish a second data connection for the service request; in addition, the virtual resource sharing control system 320 is further configured to correspond to the service request. After the service is completed, the second data connection is released.
  • the virtual resource sharing control system 320 may directly establish a second data connection corresponding to the service request on the single channel resource; or When the channel resource of the modem 330 is a multi-channel resource, and the current channel resource of the first operating system can meet the service requirement, the virtual resource sharing control system 320 can establish the service on the current channel resource of the first operating system. Request the corresponding second data connection.
  • the embodiment of the present invention is no longer used herein. Said.
  • FIG. 5 is another schematic structural diagram of a mobile terminal 300 according to an embodiment of the present invention.
  • the virtual resource sharing control system 320 may further include an underlying protocol resource sharing access logic control unit 321 and a wireless interface layer 322.
  • the underlying protocol resource sharing access logic control unit 321 can be configured to provide a unified underlying protocol resource sharing access interface for each operating system 310, and the wireless interface layer 322 is configured to implement an access interface with the physical device modem 330.
  • the underlying protocol resource sharing access logic control unit 321 provides an interface for each operating system to perform card operations on the SIM card in the Modem, so as to coordinately manage the SIM cards in the Modem.
  • the card operates and implements card operation on the SIM card in the Modem through the wireless interface layer 322.
  • the logic unit of the embodiment shown in FIG. 3 to FIG. 5 may be a function module in a specific implementation.
  • the UI interface processing module may implement the logic function of the UI interface processing unit, and the upper layer logic processing.
  • the module can implement the logic function of the upper logic processing unit
  • the resource management module can implement the logic function of the resource management unit
  • the underlying protocol resource sharing access logic control module can implement the logic function of the underlying protocol resource sharing access logic control unit, etc.
  • FIG. 6 is a schematic flowchart of dual card resource management in a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal may include three layers, that is, an operating system, an operating system 2, an operating system 2, an operating system N, and the like, and a virtual resource sharing control system and a hardware layer of the virtualization layer. Modem, etc.
  • the operating system 1, the operating system 2, the operating system N are equivalent to the operating system 310 of the embodiment shown in FIG. 3 to FIG. 5, and the virtual resource sharing control system is equivalent to the virtual embodiment of the embodiment shown in FIG. 3 to FIG. 5.
  • the resource sharing control system 320, Modem is equivalent to the modem 330 of the embodiment shown in Figures 3-5.
  • the SIM card of the mobile terminal is located in the Modem, and the mobile terminal implements a startup operation, a card switching operation, an activation operation, a deactivation operation, and the like for the plurality of SIM cards through the Modem.
  • each operating system may include a UI interface processing module, an upper layer logic processing module, and a card management module.
  • the UI interface processing module can be used to display the usage status of the current SIM card resource of the mobile terminal to the user, and send the user's card operation request to the upper logic processing module of the operating system; the upper logic processing module can be used to operate from the operation.
  • System UI display interface module The message is forwarded to the upper logical processing module of the operating system and the card management module of other operating systems, or the message of the card management module of the operating system is forwarded to the UI interface processing module of the operating system; or it may be from another operating system.
  • the message of the upper layer logic processing module is forwarded to the UI display interface module of the operating system and the card management module of the operating system; the multi-connection management module can record the current state of the SIM card resource of the operating system, specifically for The operating system's message refreshes the current SIM card resource usage status of the operating system, or refreshes the current SIM card resource usage status of the operating system based on the result of the card operation fed back by the virtual layer.
  • the virtual layer may further include an underlying protocol resource sharing access logic control module and a radio interface layer (RIL) module.
  • the underlying protocol resource sharing access logic control module is configured to provide a unified underlying protocol resource sharing access interface for each operating system, and the wireless interface layer is used to implement an access interface with the physical device modem.
  • the underlying protocol resource sharing access logic control module may determine the card operation on the SIM card according to the card operation request of each operating system, combined with the current state of use of the SIM card resource, and use the wireless interface layer to the SIM card in the Modem. Take action.
  • the underlying protocol resource sharing access logic control module can also forward the Modem through the feedback of the wireless interface layer to each operating system.
  • the operating system or the virtual layer may have different functional divisions, but the operating system can implement the functions in the embodiments shown in FIG. 3 to FIG.
  • a circle mark is used to indicate the step number of the arrow on the right side of the circle or the arrow on which the circle is located.
  • the user performs an interface operation to generate a card operation request that requires a management card.
  • the operating system 2 is an operating system running in the foreground in the mobile terminal.
  • the Modem includes multiple SIM card resources.
  • the user When the user operates the UI interface processing module, the user generates a card operation request of the management card, which may be assumed to be a request for deactivation of the first SIM card.
  • the upper logical processing module of the operating system 2 notifies the other operating system after receiving the card operation request, and notifies the card management module of the operating system.
  • the card management module of the operating system 2 may refresh the usage status of the SIM card resource of the operating system 2 according to the card operation request. Specifically, the card management module of the operating system 2 can mark the state of the first SIM card as ready to be deactivated.
  • the upper logic processing module of the operating system 2 can also send the card operation request to other operating systems.
  • Other operating systems may include an operating system running in the background in the mobile terminal and other operating systems running in the foreground. Of course, in a specific application, the mobile terminal may have only one operating system running in the foreground.
  • the upper logic processing module of the other operating system After receiving the message about the operation request of the operating system 2, the upper logic processing module of the other operating system notifies the UI interface processing module of the operating system to perform corresponding processing, and notifies the card management module of the operating system.
  • the upper layer logic processing module of the other operating system may notify the UI interface processing module of the operating system to refresh the display of the SIM card resource usage status, and notify the card management module of the operating system to update the record about the SIM card resource usage status.
  • the operating system 1 is also one of the operating systems running in the foreground
  • the operating system N is one of the operating systems running in the background
  • the upper layer logical processing modules of the operating system 1 and the operating system N may be according to the operating system 2
  • the deactivation operation notifies the respective UI interface processing module that the first SIM card is being deactivated, and so on.
  • the upper logic processing modules of the operating system 1 and the operating system N also notify the respective card management modules, so that the respective card management modules change the state record of the first SIM card to the state being deactivated.
  • the card management module of each operating system sends a message to the underlying protocol resource sharing access logic control module.
  • the card management module of the operating system 2 may send a message for deactivating the first SIM card to the underlying protocol resource sharing access logic control module, and the operating system 1 and the current SIM card of the operating system where the operating system N is located.
  • the resource usage information is sent to the underlying protocol resource sharing access logic control module, and so on.
  • the underlying protocol resource sharing access logic control module notifies the RIL module to perform card operations after processing the messages of the respective operating systems.
  • the underlying protocol resource sharing access logic control module coordinates the card operations of each operating system according to the messages of the respective operating systems, and notifies the RIL module to issue a card operation instruction to the Modem through the RIL module.
  • the underlying protocol resource sharing access logic control module may issue a card operation instruction to the Modem through the RIL module, instructing the Modem to perform a deactivation operation on the first SIM card.
  • the RIL module instructs the Modem to perform card operation.
  • Modem notifies the RIL module after the card operation succeeds.
  • the Modem completes the card operation according to the instructions of the RIL module and feeds back the result of the card operation to the RIL module.
  • the result of the card operation may include an operation success and an operation failure. Normally, the card operation will succeed.
  • the embodiment of the present invention takes the card operation success as an example. At this time, the Modem can feed back the result of successful deactivation of the first SIM card to the RIL module.
  • the RIL module returns the message to the underlying protocol resource sharing access logic control module.
  • the RIL module returns the message fed back by the Modem to the underlying protocol resource sharing access logic control module, so that the underlying protocol resource sharing access logic control module performs corresponding logic processing.
  • the underlying protocol resource sharing access logic control module performs logical processing and notifies each operating system.
  • the underlying protocol resource sharing access logic control module can coordinate the management of the SIM card resource of the Modem according to the result of the feedback of the RIL module and the current SIM card resource status of the Modem recorded in the logic control module.
  • the underlying protocol resource sharing access logic control module may change the state of the first SIM card to the deactivated state according to the feedback result of the first SIM card deactivation, and then the state of the first SIM card.
  • the information or the first SIM card deactivation success feedback result is returned to the card management module of each operating system.
  • the card management module of each operating system returns the result to the upper logical processing module of the operating system.
  • the card management module of each operating system can change the state of the first SIM card in the operating system to the deactivated state, and then return the feedback result to the upper logical processing module of the operating system, so that the upper logical processing module of the operating system is located.
  • the state of the first SIM card is refreshed by the UI interface processing module of the operating system.
  • the upper logic processing module notifies the UI interface of the operating system to process the module refresh result.
  • the upper-level logic processing module of each operating system notifies the UI interface processing module of the operating system to perform SIM card state refresh.
  • the UI interface processing module of each operating system may display the first SIM card as a deactivated state.
  • each of the operating systems performs mutual card notification, and the card operations of the plurality of SIM cards of the mobile terminal are uniformly managed through the virtual layer, and the result of the operation is fed back to all operating systems, so that each of the mobile terminals
  • the operating system monitors and manages the usage status of multiple SIM card resources of the mobile terminal in real time, and ensures the consistency of the usage status of multiple SIM card resources under the mobile terminal, thereby implementing coordinated management of multiple SIM card resources by the mobile terminal under multiple operating systems.
  • FIG. 7 is a schematic flowchart of concurrent management of multiple data services in a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal may include three layers, that is, an operating system layer, an operating system 1, an operating system 2, an operating system N, and the like, and a virtual resource sharing control system and a hardware layer of the virtualization layer. Modem, etc.
  • the operating system 1, the operating system 2, the operating system N are equivalent to the operating system 310 of the embodiment shown in FIG. 3 to FIG. 5, and the virtual resource sharing control system is equivalent to the virtual embodiment of the embodiment shown in FIG. 3 to FIG. 5.
  • the resource sharing control system 320, Modem is equivalent to the modem 330 of the embodiment shown in Figures 3-5. Modem can be used to provide data connection resources for mobile terminals.
  • the channel resource that the Modem can provide is a single channel resource.
  • each operating system may include a UI interface processing module, an upper logical processing module, and a multi-connection management module.
  • the UI interface processing module is configured to display the usage status of the current channel resource of the mobile terminal to the user, and send the data service request of the user to the upper logic processing module of the operating system; the upper logic processing module can be used to access the operating system from the operating system.
  • the message of the UI display interface module is forwarded to the upper logical processing module of the operating system and the multi-connection management module of other operating systems, or the message of the multi-connection management module of the operating system is forwarded to the UI interface processing module of the operating system.
  • the multi-connection management module can record the current channel resources of the operating system.
  • the usage status is used to refresh the current channel resource usage status of the operating system according to the message of the operating system, or to refresh the current channel resource usage status of the operating system according to the channel resource usage result fed back by the virtual layer.
  • the usage status of the channel resource may include whether the channel resource is used, which operating system is being used, or whether a data connection has been established, and the like.
  • other channel resource usage information may also be included, and the embodiments of the present invention are not described herein.
  • the virtual layer may further include an underlying protocol resource sharing access logic control module and a radio interface layer (RIL) module.
  • the underlying protocol resource sharing access logic control module is used for each operation The system provides a unified underlying protocol resource sharing access interface, and the wireless interface layer is used to implement an access interface with the physical device modem.
  • the underlying protocol resource sharing access logic control module may determine the allocation of the channel resources according to the data service request of each operating system, combined with the current channel resource usage state, and allocate the channel resources in the Modem through the wireless interface layer.
  • the underlying protocol resource sharing access logic control module can also forward the Modem through the feedback of the wireless interface layer to each operating system.
  • the allocation of the channel resources may include establishing a data connection and releasing the data connection in the channel resource.
  • the operating system or the virtual layer may have different functional divisions, but the operating system can implement the functions in the embodiments shown in FIG. 3 to FIG.
  • a circle mark is used to indicate the step number of the arrow on the right side of the circle or the arrow in which the circle is located.
  • the user performs an interface operation to generate a data service request that needs to re-establish a data connection.
  • the operating system 2 is an operating system running in the foreground of the mobile terminal, and the single channel resource of the Modem has been used, and there is a data connection.
  • the data service request for re-establishing a data connection is a MMS service request
  • the MMS service request requires a channel resource to establish a data connection for data transmission.
  • the upper logical processing module of the operating system 2 notifies the other operating system after receiving the data service request, and notifies the multi-connection management module of the operating system.
  • the multi-connection management module of the operating system 2 may refresh the channel resource usage status of the operating system 2 according to the MMS service request. Specifically, the multi-connection management module of the operating system 2 may mark the status of the channel resource as the status of the MMS service request connection.
  • the upper layer logic processing module of the operating system 2 can also send the MMS service request to the upper layer logic processing module of other operating systems.
  • Other operating systems may include an operating system running in the background in the mobile terminal and other operating systems running in the foreground.
  • the mobile terminal may have only one operating system running in the foreground.
  • the upper-level logic processing module of the other operating system After receiving the message about the data service request of the operating system 2, the upper-level logic processing module of the other operating system notifies the UI interface processing module of the operating system to perform corresponding processing, and notifies the multi-connection management module of the operating system.
  • the upper layer logic processing module of other operating systems can notify the UI of the operating system of the operating system.
  • the interface processing module refreshes the display of the channel resource usage status, and notifies the multi-connection management module of the operating system to update the record about the refresh channel resource usage status.
  • both operating system 1 and operating system N are operating systems running in the background.
  • the operating system 1 and the operating system N can display the status of the MMS service request connection in the respective UI interface processing module according to the MMS service request, and the like.
  • the multi-connection management module of other operating systems can also refresh the channel resource usage status recorded by the operating system according to the MMS service request of the operating system 2.
  • the multi-connection management module of each operating system sends a message for deleting the current data connection to the underlying protocol resource sharing access logic control module.
  • each operating system may send a message for deleting the current data connection to the underlying protocol resource sharing access logic control module through the multi-connection management module, so that the underlying protocol resource sharing access logic control module releases the channel resource, which is a multimedia message service.
  • the channel resource which is a multimedia message service.
  • the underlying protocol resource sharing access logic control module notifies the RIL module to delete the current data connection after processing the data service messages of each operating system.
  • the underlying protocol resource sharing access logic control module can record information about current data services of each operating system, so as to perform data service recovery later.
  • the RIL module is notified to delete the current data connection.
  • the B6 and RIL modules instruct the Modem to delete the current data connection.
  • the B8 and RIL modules return the message to the underlying protocol resource sharing access logic control module.
  • the RIL module returns the feedback result of deleting the data connection to the underlying protocol resource sharing access logic control module.
  • the underlying protocol resource sharing access logic control module performs logical processing, and then notifies the multi-connection management module of each operating system.
  • the underlying protocol resource sharing access logic control module may mark the data connection status of each operating system as a no data connection state, or a data connection pause state, and notify the multi-connection management module of each operating system of the status information.
  • the multi-connection management module of each operating system refreshes the channel resource usage status recorded by the operating system according to the feedback result of deleting the data connection.
  • the multi-connection management module of each operating system returns the result to the upper logical processing module of the operating system.
  • the upper layer logic processing module notifies the UI interface processing module of the operating system to refresh the result.
  • the UI interface processing module of each operating system may remove the display of the current data connection, or display the current data connection suspension, and the like.
  • the multi-connection management module of the operating system 2 sends a message for creating a new data connection to the underlying protocol resource sharing access logic control module.
  • the multi-connection management module of the operating system 2 can send a message for creating a new data connection to the underlying protocol resource sharing access logic control module.
  • the operating system 1 the operating system N, etc.
  • other operating systems such as the operating system 1, the operating system N, etc., may also send the message to the underlying protocol resource sharing access logic control module through the multi-connection management module.
  • the underlying protocol resource sharing access logic control module notifies the RIL module to create a new data connection after processing the data service messages of each operating system.
  • the RIL module commands Modem to create a new data connection.
  • Modem creates a new data connection for transmission, and deletes the data connection after the transmission is completed, and notifies the RIL module.
  • the RIL module After the modem data connection is established, the RIL module, the underlying protocol resource sharing access logic control module, the multi-connection management module of the operating system 2, etc., can feed back the data connection establishment message to the upper layer logic processing module of the operating system 2, and the operating system 2
  • the upper logic processing module can transmit the MMS service on the newly created data connection.
  • the Modem can delete the data connection established for the MMS service and notify the RIL module after the deletion.
  • the B16 and the RIL module return the message to the underlying protocol resource sharing access logic control module.
  • the underlying protocol resource sharing access logic control module performs logical processing, and then notifies the multi-connection management module of each operating system.
  • the underlying protocol resource sharing access logic control module can set the state of the channel resource to an idle state, and the multi-connection management module of each operating system updates the channel resource usage recorded by the operating system according to the message of the underlying protocol resource sharing access logic control module. The status is idle.
  • the multi-connection management module of each operating system returns the result to the upper logical processing module of the operating system.
  • the upper logic processing module notifies the UI interface processing module of the operating system to refresh the result.
  • the UI interface processing module of each operating system can display the completion of the MMS transmission, or Then display the MMS service connection, and so on.
  • the multi-connection management module of each operating system sends a message for re-establishing the previous data connection to the underlying protocol resource sharing access logic control module.
  • the underlying protocol resource sharing access logic control module notifies the RIL module to re-establish the previous data connection after processing the data service messages of the respective operating systems.
  • the data connection recovery can be performed according to the previously recorded data connection information.
  • the B22 and RIL modules instruct the Modem to re-establish the previous data connection.
  • the Modem notifies the RIL module after the previous data connection is successfully established.
  • the B24 and RIL modules return the message to the underlying protocol resource sharing access logic control module.
  • the underlying protocol resource sharing access logic control module performs logical processing, and then notifies the multi-connection management module of each operating system.
  • the underlying protocol resource sharing access logic control module coordinates the management of the data connection of each operating system to the channel resource according to the message fed back by the RIL module, and feeds back the occupancy result of the channel resource to the multi-connection management module of each operating system, and each operating system
  • the multi-connection management module refreshes the channel resource usage status recorded by the operating system according to the feedback result of the data connection reestablishment.
  • the multi-connection management module of each operating system returns the result to the upper logic processing module of the operating system.
  • the upper logic processing module notifies the UI interface processing module of the operating system to refresh the result.
  • the upper logical processing module of each sub-system sends the feedback result of the data connection re-establishment to the UI interface processing module of the operating system, so that the UI interface processing module of the operating system refreshes the channel resource usage status of the operating system.
  • a virtual resource sharing control system is set in addition to a plurality of operating systems of the mobile terminal, for coordinating and managing channel resources in the modem by each operating system, and requesting channel resources by using an operating system running in a foreground. Notifying other operating systems, the operations (including allocating channel resources and releasing channel resources) are notified to all operating systems through the virtual resource sharing control system, so that the operating systems of the mobile terminal monitor and manage the usage status of the channel resources of the mobile terminal in real time, thereby ensuring The usage status of the channel resources in the mobile terminal is consistent, so that the coordinated management of the channel resources by the mobile terminal under multiple operating systems can also be realized.
  • the method of the embodiment of the present invention may also be extended to have multiple channels of Modem. Resources, but there are no idle resources. At this time, before creating a new data connection, you need to select a channel resource that is being used, release the data connection in the channel resource to establish a new data connection, and release it after the service data is transmitted. New data connection and restore the original data connection of the channel resource.
  • FIG. 8 is a schematic flowchart of concurrent management of multiple data services in a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal may include three layers, that is, an operating system, an operating system 2, an operating system 2, an operating system N, and the like, and a virtual resource sharing control system and a hardware layer of the virtualization layer. Modem, etc.
  • the operating system 1, the operating system 2, the operating system N are equivalent to the operating system 310 of the embodiment shown in FIG. 3 to FIG. 5, and the virtual resource sharing control system is equivalent to the virtual embodiment of the embodiment shown in FIG. 3 to FIG. 5.
  • the resource sharing control system 320, Modem is equivalent to the modem 330 of the embodiment shown in Figures 3-5. Modem can be used to provide data connection resources for mobile terminals.
  • the channel resource that the Modem can provide is a multi-channel resource.
  • each operating system may include a UI interface processing module, an upper logical processing module, and a multi-connection management module.
  • the UI interface processing module is configured to display the usage status of the current channel resource of the mobile terminal to the user, and send the data service request of the user to the upper logic processing module of the operating system; the upper logic processing module can be used to access the operating system from the operating system.
  • the message of the UI display interface module is forwarded to the upper logical processing module of the operating system and the multi-connection management module of other operating systems, or the message of the multi-connection management module of the operating system is forwarded to the UI interface processing module of the operating system.
  • the multi-connection management module can record the current channel resources of the operating system.
  • the usage status is used to refresh the current channel resource usage status of the operating system according to the message of the operating system, or to refresh the current channel resource usage status of the operating system according to the channel resource usage result fed back by the virtual layer.
  • the usage status of the channel resource may include which channel resource is being used by the operating system, whether a data connection has been established, and the like.
  • other channel resource usage information may also be included, and the embodiments of the present invention are not described herein.
  • the virtual layer may further include an underlying protocol resource sharing access logic control module and a radio interface layer (RIL) module.
  • the underlying protocol resource sharing access logic control module is configured to provide a unified underlying protocol resource sharing access interface for each operating system, and the wireless interface layer is used to implement and implement the entity. Access interface between device modems.
  • the underlying protocol resource sharing access logic control module may determine the allocation of the channel resources according to the data service request of each operating system, combined with the current channel resource usage state, and allocate the channel resources in the Modem through the wireless interface layer.
  • the underlying protocol resource sharing access logic control module can also forward the Modem through the feedback of the wireless interface layer to each operating system.
  • the allocation of the channel resources may include establishing a data connection and releasing the data connection in the channel resource.
  • the operating system or the virtual layer may have different functional divisions, but the operating system can implement the functions in the embodiments shown in FIG. 3 to FIG.
  • a circle mark is used to indicate the step number of the arrow on the right side of the circle or the arrow on which the circle is located.
  • the user performs an interface operation to generate a business operation that needs to re-establish a data connection.
  • the operating system 2 is an operating system currently used by the mobile terminal, and the multi-channel resource of the Modem has been used, but at least one idle channel resource exists.
  • the business operation that needs to re-establish a data connection is a multimedia message service (an operation of sending a multimedia message).
  • the upper logic processing module of the operating system 2 After receiving the new data connection message, the upper logic processing module of the operating system 2 notifies the other operating system and notifies the multi-connection management module of the operating system.
  • the multi-connection management module of the operating system 2 may refresh the channel resource usage status of the operating system 2 according to the MMS service request. Specifically, the multi-connection management module of the operating system 2 may mark the status of the channel resource as the status of the MMS service request connection.
  • the upper layer logic processing module of the operating system 2 can also send the MMS service request to the upper layer logic processing module of other operating systems.
  • Other operating systems may include an operating system running in the background in the mobile terminal and other operating systems running in the foreground.
  • the mobile terminal may have only one operating system running in the foreground.
  • the upper-level logic processing module of the other operating system After receiving the message about the data service request of the operating system 2, the upper-level logic processing module of the other operating system notifies the UI interface processing module of the operating system to perform corresponding processing, and notifies the multi-connection management module of the operating system.
  • the upper layer logic processing module of the other operating system may notify the UI interface processing module of the operating system to refresh the display of the channel resource usage status, and notify the multi-connection management module of the operating system to update the record about the refresh channel resource usage status.
  • the operating system 1 and the operating system N may display the status of the MMS service request connection in the respective UI interface processing module according to the MMS service request, and the like.
  • the multi-connection management module of other operating systems can also refresh the channel resource usage status recorded by the operating system according to the MMS service request of the operating system 2.
  • the multi-connection management module of each operating system sends a message to the underlying protocol resource sharing access logic control module.
  • Each operating system may send the usage information of the current data connection to the underlying protocol resource sharing access logic control module through the multi-connection management module, so that the underlying protocol resource sharing access logic control module selects idle channel resources to provide a data connection for the MMS service.
  • the underlying protocol resource sharing access logic control module notifies the RIL module to establish a new data connection after processing the data service messages of each operating system.
  • the underlying protocol resource sharing access logic control module selects idle channel resources according to data service messages of each operating system, and notifies the RIL module to establish a new data connection on the idle channel resources.
  • the C6 and RIL modules instruct the Modem to establish a new data connection.
  • the RIL module instructs the Modem to establish a new data connection on the idle channel resource.
  • Modem notifies the RIL module after the data connection is established successfully.
  • Modem completes the establishment of the data connection according to the instructions of the RIL module, and feeds back the result of the data connection to the RIL module.
  • the C8 and RIL modules return the message to the underlying protocol resource sharing access logic control module.
  • the RIL module returns the message fed back by the Modem to the underlying protocol resource sharing access logic control module, so that the underlying protocol resource sharing access logic control module performs corresponding logic processing.
  • the underlying protocol resource sharing access logic control module performs logical processing and notifies each operating system.
  • the underlying protocol resource sharing access logic control module refreshes the channel resource usage status of the Modem according to the feedback result and the underlying protocol resource sharing access mode current channel resource usage status of the Modem, and notifies each of the feedback result of the feedback.
  • Multi-connection management module of the operating system refreshes the channel resource usage status of the Modem according to the feedback result and the underlying protocol resource sharing access mode current channel resource usage status of the Modem, and notifies each of the feedback result of the feedback.
  • the multi-connection management module of each operating system returns the result to the upper logical processing module of the operating system.
  • the multi-connection management module of each operating system returns the feedback result to the operating system.
  • the layer logic processing module is configured to enable the upper layer logic processing module of the operating system to refresh the channel resource usage status by using the UI interface processing module of the operating system.
  • the upper layer logic processing module notifies the UI interface of the operating system to process the module refresh result.
  • the upper-level logic processing module of each operating system notifies the UI interface processing module of the operating system to perform channel resource usage status refresh.
  • a virtual resource sharing control system is set in addition to a plurality of operating systems of the mobile terminal, for coordinating and managing channel resources in the modem by each operating system, and requesting channel resources by using an operating system running in a foreground. Notifying other operating systems, the operations (including allocating channel resources and releasing channel resources) are notified to all operating systems through the virtual resource sharing control system, so that the operating systems of the mobile terminal monitor and manage the usage status of the channel resources of the mobile terminal in real time, thereby ensuring The usage status of the channel resources in the mobile terminal is consistent, so that the coordinated management of the channel resources by the mobile terminal under multiple operating systems can also be realized.
  • FIG. 9 is a schematic structural diagram of a mobile terminal 900 according to an embodiment of the present invention.
  • the mobile terminal in the embodiment of the present invention can solve the defect that the channel resource management is uncoordinated in the case of multi-connection concurrency to some extent.
  • the mobile terminal 900 can include a plurality of operating systems 910, a virtual resource sharing control system 920, and a modem 930. among them,
  • Modem 930 is used to provide channel resources for the data connection of mobile terminal 900.
  • the first operating system of the plurality of operating systems 910 is configured to receive a data service request of a user of the mobile terminal 900, and notify the second operating system and the virtual resource sharing control system 920 of the data service request, wherein the data The service request needs to establish a new data connection, the first operating system is an operating system running in the foreground of the plurality of operating systems 910, and the second operating system is one of the plurality of operating systems 910 other than the first operating system. Or multiple operating systems, or the second operating system is all of the operating systems 110 except the first operating system.
  • the virtual resource sharing control system 920 is configured to coordinate the use of the channel resource for the multiple operating systems 910, specifically for establishing a data connection for the data service request according to the data service request and the current channel resource usage status of the modem 930. And sending a feedback result of the data connection establishment to the first operating system and the second operating system.
  • the first operating system is further configured to: according to the feedback result, manage and monitor a usage status of the channel resource in the first operating system; the second operating system is further configured to use the data service request or the feedback node.
  • the management monitors the usage status of the channel resources in the second operating system.
  • a virtual resource sharing control system is set in addition to multiple operating systems of the mobile terminal 900 for coordinating and managing the channel resources of each operating system to the modem, and requesting the channel through an operating system running in a foreground.
  • the resource is notified, the other operating systems are notified, and all the operating systems are notified by the virtual resource sharing control system after the operations (including the allocation of the channel resources and the channel resources are released), so that the operating systems of the mobile terminal 900 monitor and manage the use of the channel resources of the mobile terminal 900 in real time.
  • the state ensures the consistency of the usage status of the channel resources of the mobile terminal 900, so that the coordinated management of the channel resources by the mobile terminal 900 under multiple operating systems can be realized.
  • FIG. 10 is another schematic structural diagram of a mobile terminal 900 according to an embodiment of the present invention.
  • the operating system 910 may further include a UI interface processing unit 911, an upper layer logic processing unit 912, and a resource management unit 913.
  • the user interface UI interface processing unit 911, the upper layer logic processing unit 912, and the resource management unit 913 can also be used for the following functions when managing concurrent connections for multiple services:
  • the UI interface processing unit 911 of the first operating system is configured to receive the data service request, and notify the upper layer logic processing unit 912 of the current operating system of the data service request;
  • the upper layer logic processing unit 912 of the first operating system is configured to notify the resource management unit 913 of the first operating system of the data service request;
  • the resource management unit 913 of the first operating system is configured to monitor and monitor the usage status of the channel resource in the first operating system according to the data service request, and notify the virtual resource sharing control system 920, so that the virtual resource sharing control system 920 is the data.
  • the service request allocates corresponding channel resources to establish a data connection;
  • the upper layer logic processing unit 912 of the first operating system is further configured to notify the upper layer logic processing unit 912 of the second operating system of the data service request;
  • the upper layer logic processing unit 912 of the second operating system is configured to notify the resource management unit 913 of the second operating system of the data service request;
  • the resource management unit 913 of the second operating system is configured to monitor, according to the data service request management, a usage status of the channel resource in the second operating system.
  • the resource management unit 913 of the first operating system is further configured to receive the feedback information, and monitor and monitor, according to the feedback information, a usage status of the channel resource in the first operating system;
  • the resource management unit 913 of the second operating system is further configured to receive the feedback information, and monitor and monitor, according to the feedback information, a usage status of the channel resource in the second operating system.
  • the virtual resource sharing control system 920 is specifically configured to be used when When there is no free channel resource in the modem 930, a channel resource in use in the modem 930 is selected, the first data connection of the channel resource being used is stopped, and a second data connection is established for the data service request;
  • the resource sharing control system 920 is further configured to release the second data connection after the data service corresponding to the data service request is completed, and restore the first data connection.
  • the virtual resource sharing control system 920 is specifically used in the process of establishing a data connection for the data service request according to the data service request and the current channel resource usage status of the modem 930.
  • the idle channel resource is selected to establish a second data connection for the service request.
  • the virtual resource sharing control system 920 is further configured to release the service after the service corresponding to the service request is completed. The second data connection.
  • the virtual resource sharing control system 920 can directly establish a second data connection corresponding to the service request on the single channel resource; or When the channel resource of the modem 930 is a multi-channel resource, and the current channel resource of the current operating system can meet the service requirement, the virtual resource sharing control system 920 can establish the service request corresponding to the current channel resource of the current operating system.
  • the second data connection For a specific implementation, reference may be made to the prior art, and details are not described herein again.
  • FIG. 11 is another schematic structural diagram of a mobile terminal 900 according to an embodiment of the present invention.
  • the virtual resource sharing control system 920 may further include an underlying protocol resource sharing access logic control module 921 and a wireless interface layer 922.
  • the underlying protocol resource sharing access logic control module 921 can be used to provide a unified underlying protocol resource sharing access interface for each operating system 910, and the wireless interface layer 922 is configured to implement an access interface with the physical device modem 930.
  • the mobile terminal 900 can also implement the functions of the embodiment shown in FIG. 7-8 and its extended embodiment.
  • the operating system 1, the operating system 2, ..., the operating system N in FIGS. 7-8 are equivalent.
  • the virtual resource sharing control system is equivalent to the virtual resource sharing control system 920 of the embodiment shown in FIG. 9-11, and the modem (Modem) is equivalent to FIG. 9-11.
  • Modem 930 of the illustrated embodiment The embodiments of the present invention are not described herein again.
  • the logic unit of the embodiment shown in FIG. 9 to FIG. 11 may be a function module in a specific implementation.
  • the UI interface processing module may implement the logic function of the UI interface processing unit, and the upper layer logic processing.
  • the module can implement the logic function of the upper logic processing unit
  • the resource management module can implement the logic function of the resource management unit
  • the underlying protocol resource sharing access logic control module can implement the logic function of the underlying protocol resource sharing access logic control unit, etc.
  • FIG. 12 is a flowchart of a resource management method of a mobile terminal according to an embodiment of the present invention.
  • the multi-system mobile terminal of the embodiment of the present invention includes a plurality of operating systems, a virtual resource sharing control system, and a modem. Among them, multiple SIM cards are deployed on the modem.
  • the method includes:
  • the first operating system of the plurality of operating systems receives a card operation request of a user of the mobile terminal for the first SIM card of the plurality of SIM cards, and notifies the card operation request of the second operation of the multiple operating systems.
  • the system and the virtual resource share a control system.
  • the first operating system is an operating system running in the foreground of the plurality of operating systems
  • the second operating system is one or more operating systems other than the first operating system of the plurality of operating systems, or
  • the second operating system is all of the plurality of operating systems except the first operating system.
  • the second operating system manages monitoring a current state of the first SIM card in the second operating system according to the card operation request.
  • the virtual resource sharing control system performs a card operation on the first SIM card by using the modem according to the card operation request and the current state of the first SIM card, and sends a first feedback result of the card operation to the first An operating system and the second operating system.
  • the first operating system manages monitoring a current state of the first SIM card in the first operating system according to the first feedback result.
  • the second operating system manages monitoring a current state of the first SIM card in the second operating system according to the first feedback result.
  • a virtual resource sharing control system is set in addition to a plurality of operating systems of the mobile terminal, and is used for coordinating and managing operating systems of multiple SIM card resources in the modem and operating in a certain foreground.
  • the other operating systems are notified, and all operating systems are notified by the virtual resource sharing control system after the operation is completed, so that the operating systems of the mobile terminal monitor and manage the usage status of multiple SIM card resources of the mobile terminal in real time, and ensure the mobile terminal is under the mobile terminal. Consistent use status of multiple SIM card resources, thereby realizing mobile terminals under multiple operating systems Coordinated management of multiple SIM card resources.
  • the modem is further configured to provide a channel resource for the data connection of the mobile terminal. As shown in FIG. 13, the method may further include:
  • the first operating system receives a data service request of a user of the mobile terminal, and notifies the second operating system and the virtual resource sharing control system of the data service request, where the data service request needs to establish a new data connection. .
  • the second operating system manages monitoring usage status of channel resources in the second operating system according to the data service request.
  • the virtual resource sharing control system establishes a data connection for the data service request according to the data service request and the current channel resource usage status of the modem, and sends a second feedback result of the data connection establishment to the first operating system. And the second operating system.
  • the first operating system manages monitoring, according to the second feedback result, a usage status of the channel resource in the first operating system.
  • the second operating system manages monitoring usage status of channel resources in the second operating system according to the second feedback result.
  • the other operating systems when an operating system running in a foreground requests channel resources, the other operating systems are notified, and after the operation (including allocating channel resources and releasing channel resources), all operating systems are notified through the virtual resource sharing control system, so that the mobile
  • the operating systems of the terminal can also monitor and manage the usage status of the channel resources of the mobile terminal in real time, and ensure the consistency of the use of the channel resources under the mobile terminal, thereby enabling coordinated management of the channel resources by the mobile terminal under multiple operating systems.
  • FIG. 14 is a flowchart of a resource management method of a mobile terminal according to an embodiment of the present invention.
  • the multi-system mobile terminal of the embodiment of the present invention includes a plurality of operating systems, a virtual resource sharing control system, and a modem.
  • the modem is used to provide channel resources for the data connection of the mobile terminal.
  • the method includes:
  • the first operating system of the plurality of operating systems receives the data service request of the user of the mobile terminal, and notifies the data service request of the second operating system and the virtual resource sharing control system of the plurality of operating systems, where The data service request needs to establish a new data connection.
  • the first operating system is an operating system running in the foreground of the multiple operating systems.
  • the second operating system is one or more operating systems other than the first operating system of the plurality of operating systems, or the second operating system is all but the first operating system of the plurality of operating systems operating system.
  • the second operating system manages monitoring usage status of channel resources in the second operating system according to the data service request.
  • the virtual resource sharing control system establishes a data connection for the data service request according to the data service request and the current channel resource usage status of the modem, and sends a feedback result of the data connection establishment to the first operating system and the The second operating system.
  • the first operating system manages monitoring usage status of channel resources in the first operating system according to the feedback result.
  • the second operating system manages monitoring usage status of channel resources in the second operating system according to the feedback result.
  • the other operating systems when an operating system running in a foreground requests channel resources, the other operating systems are notified, and after the operation (including allocating channel resources and releasing channel resources), all operating systems are notified through the virtual resource sharing control system, so that the mobile
  • Each operating system of the terminal can monitor and manage the usage status of the channel resources of the mobile terminal in real time, and ensure the consistency of the use of the channel resources under the mobile terminal, thereby enabling coordinated management of the channel resources by the mobile terminal under multiple operating systems.
  • FIG. 15 illustrates a structure of a mobile terminal 1500 according to an embodiment of the present invention.
  • the mobile terminal 1500 includes: at least one processor 1510, at least one modem 1540 or other user interface 1530, a memory 1550, and at least one communication bus 1520.
  • Communication bus 1520 is used to implement connection communication between these components.
  • the mobile terminal 1500 optionally includes a user interface 1530, including a display (eg, a touch screen, LCD, CRT, Holographic or Projector, etc.), a keyboard or a pointing device (eg, a mouse, a trackball) , touch panel or touch screen, etc.).
  • a plurality of SIM cards of the mobile terminal 1500 are deployed on the modem 1540.
  • Memory 1550 can include read only memory and random access memory and provides instructions and data to processor 1510. A portion of memory 1550 may also include non-volatile random access memory (NVRAM).
  • NVRAM non-volatile random access memory
  • the memory 1550 stores elements, executable modules or data structures, or a subset thereof, or their extended set:
  • a plurality of operating systems 1551 including various system programs, such as the framework layer, the core library layer, the driver layer, and the like shown in FIG. 1, for implementing various basic services and processing hardware-based tasks;
  • the application module 1552 includes various applications, such as a desktop, a media player, a browser, and the like as shown in FIG. 1 for implementing various application services;
  • the virtual resource sharing control system 1553 includes a virtual resource sharing control interface, such as a virtual machine of the core library layer shown in FIG. 1, for implementing an access control interface between the operating system and the hardware layer.
  • a virtual resource sharing control interface such as a virtual machine of the core library layer shown in FIG. 1, for implementing an access control interface between the operating system and the hardware layer.
  • the processor 1510 by calling a program or instruction stored in the memory 1550, the processor 1510 is configured to:
  • first operating system is an operating system running in the foreground of the plurality of operating systems 1551
  • second operating system is the first operation in the plurality of operating systems 1551
  • One or more operating systems other than the system, or the second operating system is all operating systems of the plurality of operating systems 1551 except the first operating system
  • the first SIM card is card operated by the modem 1540, and the first feedback result of the card operation is sent to the first An operating system and the second operating system;
  • the management monitors the current state of the first SIM card in the second operating system.
  • a virtual resource sharing control system is set in addition to multiple operating systems of the mobile terminal 1500, for coordinating and managing the channel resources of each operating system to the modem, and requesting the channel through an operating system running in a foreground.
  • the resource is notified, the other operating systems are notified, and all the operating systems are notified by the virtual resource sharing control system after the operations (including the allocation of the channel resources and the channel resources are released), so that the operating systems of the mobile terminal 1500 monitor and manage the mobiles in real time.
  • the usage status of the channel resources of the terminal 1500 ensures the consistency of the usage status of the channel resources in the mobile terminal 1500, thereby enabling coordinated management of the channel resources by the mobile terminal 1500 under multiple operating systems.
  • the card operation includes a SIM card activation operation, a SIM card activation operation, a SIM card deactivation operation, or a SIM card switching operation.
  • the operating system 15510 further includes a UI interface processing unit 15511, an upper layer logic processing unit 15512, and a resource management unit 15513.
  • the processor 1510 is specifically configured to:
  • the card operation request is notified to the resource management unit 15513 of the first operating system;
  • the card operation request is notified to the upper layer logic processing unit 15512 of the second operating system;
  • the card operation request is notified to the resource management unit 15513 of the second operating system;
  • the feedback information is received in the resource management unit 15513 of the second operating system, and the current state of the first SIM card in the second operating system is monitored and monitored according to the feedback information.
  • the modem 1540 is further configured to provide channel resources for the data connection of the mobile terminal 1500
  • the processor 1510 is further configured to:
  • the virtual resource sharing control system 1553 According to the data service request, and the current channel resource usage status of the modem 1540, establish a data connection for the data service request, and send a second feedback result of the data connection establishment to the first operating system. And the second operating system;
  • the management monitors the usage status of the channel resource in the second operating system.
  • a virtual resource sharing control system is set in addition to multiple operating systems of the mobile terminal 1500, for coordinating and managing the channel resources of each operating system to the modem, and requesting the channel through an operating system running in a foreground.
  • the resource is notified, the other operating systems are notified, and all the operating systems are notified by the virtual resource sharing control system after the operations (including the allocation of the channel resources and the channel resources are released), so that the operating systems of the mobile terminal 1500 monitor and manage the use of the channel resources of the mobile terminal 1500 in real time.
  • the state ensures the consistency of the usage status of the channel resources in the mobile terminal 1500, thereby enabling coordinated management of the channel resources by the mobile terminal 1500 under multiple operating systems.
  • the processor 1510 is specifically configured to:
  • the data service request is notified to the resource management unit 15513 of the first operating system;
  • the service request allocates corresponding channel resources to establish a data connection
  • the data service request is notified to the upper operating logic processing unit 15512 of the second operating system;
  • the data service request is notified to the resource management unit 15513 of the second operating system;
  • the feedback information is received in the resource management unit 15513 of the second operating system, and the usage status of the channel resource in the second operating system is monitored and monitored according to the feedback information.
  • the processor 1510 in the process for establishing a data connection for the data service request according to the data service request and the current channel resource usage status of the modem 1540, is specifically configured to: In the virtual resource sharing control system 1553, when there is no free channel resource in the modem 1540, a channel resource in use in the modem 1540 is selected, the first data connection of the channel resource being used is stopped, and the data service request is made. Establish a second data connection.
  • the processor 1510 is further configured to: in the virtual resource sharing control system 1553, release the second data connection after the data service corresponding to the data service request is completed, and restore the first data connection.
  • the processor 1510 in the process of establishing a data connection for the data service request according to the data service request and the current channel resource usage status of the modem 1540, is specifically configured to: In the virtual resource sharing control system 1553, when there is an idle channel resource in the modem 1540, one of the free channel resources is selected to establish a second data connection for the service request.
  • the processor 1510 is further configured to: after the service corresponding to the service request is completed, release the second data connection in the virtual resource sharing control system 1553.
  • the mobile terminal 1500 can also implement the functions of the embodiment shown in FIG. 6 and FIG. 8 and the extended embodiment thereof, and details are not described herein again.
  • FIG. 16 depicts a structure of a mobile terminal 1600 according to an embodiment of the present invention.
  • the mobile terminal 1600 includes at least one processor 1610, at least one modem 1640 or other user interface 1630, a memory 1650, and at least one communication bus 1620.
  • Communication bus 1620 is used to implement connection communication between these components.
  • the mobile terminal 1600 optionally includes a user interface 1630, including a display (eg, a touch screen, LCD, CRT, Holographic or Projector, etc.), a keyboard or a pointing device (eg, a mouse, trackball) , touch panel or touch screen, etc.).
  • the modem 1640 can be used to provide channel resources for the data connection of the mobile terminal 1600.
  • Memory 1650 can include read only memory and random access memory and provides instructions and data to processor 1610. A portion of the memory 1650 may also include non-volatile random access memory (NVRAM).
  • NVRAM non-volatile random access memory
  • the memory 1650 stores the following elements, executable modules or data structures, or a subset thereof, or their extended set:
  • a plurality of operating systems 1651 including various system programs, such as the framework layer, the core library layer, the driver layer, and the like shown in FIG. 1, for implementing various basic services and processing hardware-based tasks;
  • the application module 1652 includes various applications, such as a desktop, a media player, a browser, etc., as shown in FIG. 1 for implementing various application services;
  • the virtual resource sharing control system 1653 includes a virtual resource sharing control interface, such as a virtual machine of the core library layer shown in FIG. 1 , for implementing an access control interface between the operating system and the hardware layer.
  • a virtual resource sharing control interface such as a virtual machine of the core library layer shown in FIG. 1 , for implementing an access control interface between the operating system and the hardware layer.
  • the processor 1610 by calling a program or instruction stored in the memory 1650, the processor 1610 is configured to:
  • the first operating system is an operating system running in the foreground of the plurality of operating systems 1651
  • the second operating system is one or more operations other than the first operating system of the plurality of operating systems 1651
  • the system, or the second operating system is all operating systems of the plurality of operating systems 1651 except the first operating system;
  • the virtual resource sharing control system 1653 According to the data service request, and the current channel resource usage status of the modem 1640, establish a data connection for the data service request, and send a second feedback result of the data connection establishment to the first operating system. And the second operating system;
  • the management monitors the usage status of the channel resource in the second operating system.
  • a virtual resource sharing control system is set in addition to multiple operating systems of the mobile terminal 1600, for coordinating and managing the channel resources of each operating system to the modem, and requesting the channel through an operating system running in a foreground.
  • the resource is notified, the other operating systems are notified, and all the operating systems are notified by the virtual resource sharing control system after the operations (including allocating the channel resources and releasing the channel resources), so that the operating systems of the mobile terminal 1600 monitor and manage the mobiles in real time.
  • the usage status of the channel resources of the terminal 1600 ensures the consistency of the usage status of the channel resources in the mobile terminal 1600, so that the coordinated management of the channel resources by the mobile terminal 1600 under multiple operating systems can be realized.
  • the modem 1640 is further configured to provide channel resources for the data connection of the mobile terminal 1600, and the processor 1610 is further configured to:
  • the operating system 65510 further includes a UI interface processing unit 16511, an upper layer logic processing unit 16512, and a resource management unit 16513.
  • the processor 1610 is specifically configured to:
  • the data service request is notified to the resource management unit 16513 of the first operating system;
  • the service request allocates corresponding channel resources to establish a data connection
  • the data service request is notified to the upper layer logic processing unit 16512 of the second operating system;
  • the data service request is notified to the resource management unit 16513 of the second operating system;
  • the feedback information is received in the resource management unit 16513 of the second operating system, and the usage status of the channel resource in the second operating system is monitored and monitored according to the feedback information.
  • the processor 1610 in the process of establishing a data connection for the data service request according to the data service request and the current channel resource usage status of the modem 1640, is specifically configured to: In the virtual resource sharing control system 1653, when there is no free channel resource in the modem 1640, a channel resource in use in the modem 1640 is selected, the first data connection of the channel resource being used is stopped, and the data is The service request establishes a second data connection.
  • the processor 1610 is further configured to: in the virtual resource sharing control system 1653, release the second data connection after the data service corresponding to the data service request is completed, and restore the first data connection.
  • the processor 1610 in the process of establishing a data connection for the data service request according to the data service request and the current channel resource usage status of the modem 1640, is specifically configured to: In the virtual resource sharing control system 1653, when there is an idle channel resource in the modem 1640, one of the free channel resources is selected to establish a second data connection for the service request.
  • the processor 1610 is further configured to: after the service corresponding to the service request is completed, release the second data connection in the virtual resource sharing control system 1653.
  • the mobile terminal 1600 can also implement the functions of the embodiment shown in FIG. 7 and FIG. 8 and the extended embodiment thereof, and details are not described herein again.
  • the disclosed systems, devices, and methods may be implemented in other manners.
  • 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 Can be integrated 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 in an electrical, mechanical or other form.
  • 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 various embodiments of the present invention may be integrated in one processing unit
  • each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product.
  • the technical solution of the present invention which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used 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 storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

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Abstract

一种移动终端,移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,其中,调制解调器上部署着多个SIM卡;第一操作系统用于接收移动终端的用户对多个SIM卡中第一SIM卡的卡操作请求,并将卡操作请求发送给第二操作系统和虚拟资源共享控制系统;虚拟资源共享控制系统用于根据卡操作请求以及第一SIM卡的当前状态,通过调制解调器对第一SIM卡进行卡操作,并将卡操作的反馈结果发送给第一操作系统和第二操作系统;第一操作系统还用于根据该反馈结果,管理监控第一操作系统中第一SIM卡的当前状态;第二操作系统用于根据卡操作请求或该反馈结果,管理监控第二操作系统中第一SIM卡的当前状态。

Description

移动终端及其资源管理方法
本申请要求于2014年12月12日提交中国专利局、申请号为201410768512.2、发明名称为“移动终端及其资源管理方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明实施例涉及通信技术领域,并且更具体地,涉及一种移动终端及其资源管理方法。
背景技术
随着移动办公、隐私模式、手机安全等需求越来越强烈,如:一部手机既能办公,又能当作一般手机使用。手机终端虚拟化的技术能在一部手机上运行两个或者多个操作系统,可以满足移动办公等需求,用户原来需要带两部或者多部手机才能搞定的事情,现在只要带一部手机就可以了。
现有的技术中,只给出了如何在多个操作系统上运行双卡,没有对双卡的管理给出方案,在系统资源的一致性管理上存在一定的隐患。
发明内容
一方面,本发明实施例提供一种移动终端及其资源管理方法,能够使得移动终端的各个操作系统实时监控管理移动终端的多个SIM卡资源的使用状态,保证移动终端下多个SIM卡资源的使用状态一致性,从而实现多操作系统下移动终端对多个SIM卡资源的协调管理。
另一方面,本发明实施例还提供一种移动终端及其资源管理方法,能够使得移动终端的各个操作系统实时监控管理移动终端的通道资源的使用状态,保证移动终端下通道资源的使用状态一致性,从而实现多操作系统下移动终端对通道资源的协调管理。
第一方面,提供了一种移动终端,该移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,其中,该调制解调器上部署着多个SIM卡;该多个操作系统中的第一操作系统用于接收该移动终端的用户对该多个 SIM卡中第一SIM卡的卡操作请求,并将该卡操作请求通知该多个操作系统中的第二操作系统和该虚拟资源共享控制系统,其中,该第一操作系统为该多个操作系统中前台运行的一个操作系统,该第二操作系统为该多个操作系统中该第一操作系统以外的一个或多个操作系统;该虚拟资源共享控制系统用于为该多个操作系统协调管理该多个SIM卡的卡操作,具体用于根据该卡操作请求以及该第一SIM卡的当前状态,通过该调制解调器对该第一SIM卡进行卡操作,并将该卡操作的第一反馈结果发送给该第一操作系统和该第二操作系统;该第一操作系统还用于根据该第一反馈结果,管理监控该第一操作系统中该第一SIM卡的当前状态;该第二操作系统用于根据该卡操作请求或该第一反馈结果,管理监控该第二操作系统中该第一SIM卡的当前状态。
结合第一方面,在第一种可能的实现方式中,该第一操作系统和该第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,该第一操作系统的UI界面处理单元用于接收该卡操作请求,将该卡操作请求通知该当前操作系统的上层逻辑处理单元;该第一操作系统的上层逻辑处理单元用于将该卡操作请求通知该第一操作系统的资源管理单元;该第一操作系统的资源管理单元用于根据该卡操作请求管理监控该第一操作系统中该第一SIM卡的当前状态,并通知该虚拟资源共享控制系统,以便该虚拟资源共享控制系统根据该卡操作请求进行相应的卡操作;该第一操作系统的上层逻辑处理单元还用于将该卡操作请求通知该第二操作系统的上层逻辑处理单元;该第二操作系统的上层逻辑处理单元用于将该卡操作请求通知该第二操作系统的资源管理单元;该第二操作系统的资源管理单元用于根据该卡操作请求管理监控该第二操作系统中该第一SIM卡的当前状态;该第一操作系统的资源管理单元还用于接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中该第一SIM卡的当前状态;该第二操作系统的资源管理单元还用于接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中该第一SIM卡的当前状态。
结合第一方面或第一方面的第一种可能的实现方式,在第二种可能的实现方式中,具体实现为:该卡操作包括SIM卡启动操作、SIM卡激活操作、SIM卡去激活操作或SIM卡切换操作。
结合第一方面,在第三种可能的实现方式中,该调制解调器还用于为该 移动终端的数据连接提供通道资源;该第一操作系统还用于接收该移动终端的用户的数据业务请求,并将该数据业务请求通知该第二操作系统和该虚拟资源共享控制系统,其中,该数据业务请求需要建立新的数据连接;该虚拟资源共享控制系统还用于为该多个操作系统协调管理该通道资源的使用,具体用于根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的第二反馈结果发送给该第一操作系统和该第二操作系统;该第一操作系统还用于根据该第二反馈结果,管理监控该第一操作系统中通道资源的使用状态;该第二操作系统还用于根据该数据业务请求或该第二反馈结果,管理监控该第二操作系统中通道资源的使用状态。
结合第一方面的第三种可能的实现方式,在第四种可能的实现方式中,该第一操作系统和该第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,该第一操作系统的UI界面处理单元用于接收该数据业务请求,将该数据业务请求通知该当前操作系统的上层逻辑处理单元;该第一操作系统的上层逻辑处理单元用于将该数据业务请求通知该第一操作系统的资源管理单元;该第一操作系统的资源管理单元用于根据该数据业务请求管理监控该第一操作系统中通道资源的使用状态,并通知该虚拟资源共享控制系统,以便该虚拟资源共享控制系统为该数据业务请求分配相应的通道资源以建立数据连接;该第一操作系统的上层逻辑处理单元还用于将该数据业务请求通知该第二操作系统的上层逻辑处理单元;该第二操作系统的上层逻辑处理单元用于将该数据业务请求通知该第二操作系统的资源管理单元;该第二操作系统的资源管理单元用于根据该数据业务请求管理监控该第二操作系统中通道资源的使用状态;该第一操作系统的资源管理单元还用于接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中通道资源的使用状态;该第二操作系统的资源管理单元还用于接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中通道资源的使用状态。
结合第一方面的第三种可能的实现方式或第一方面的第四种可能的实现方式,在第五种可能的实现方式中,在用于根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,该虚拟资源共享控制系统具体用于当该调制解调器中不存在空闲的通道资源时,选择该调制解调器中一个正在使用的通道资源,停止该正在使用 的通道资源的第一数据连接,并为该数据业务请求建立第二数据连接;该虚拟资源共享控制系统还用于在该数据业务请求对应的数据业务完成之后,释放该第二数据连接,恢复该第一数据连接。
结合第一方面的第三种可能的实现方式或第一方面的第四种可能的实现方式,在第六种可能的实现方式中,在用于根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,该虚拟资源共享控制系统具体用于当该调制解调器中存在空闲的通道资源,选择一个该空闲的通道资源为该业务请求建立第二数据连接;该虚拟资源共享控制系统还用于在该业务请求对应的业务完成之后,释放该第二数据连接。
第二方面,提供了一种移动终端,该移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,其中,该调制解调器用于为该移动终端的数据连接提供通道资源;该多个操作系统中第一操作系统用于接收该移动终端的用户的数据业务请求,并将该数据业务请求通知该多个操作系统中第二操作系统和该虚拟资源共享控制系统,其中,该数据业务请求需要建立新的数据连接,其中,该第一操作系统为该多个操作系统中前台运行的一个操作系统,该第二操作系统为该多个操作系统中该第一操作系统以外的一个或多个操作系统;该虚拟资源共享控制系统用于为该多个操作系统协调管理该通道资源的使用,具体用于根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的反馈结果发送给该第一操作系统和该第二操作系统;该第一操作系统还用于根据该反馈结果,管理监控该第一操作系统中通道资源的使用状态;该第二操作系统还用于根据该数据业务请求或该反馈结果,管理监控该第二操作系统中通道资源的使用状态。
结合第二方面,在第一种可能的实现方式中,该第一操作系统和该第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,该第一操作系统的UI界面处理单元用于接收该数据业务请求,将该数据业务请求通知该当前操作系统的上层逻辑处理单元;该第一操作系统的上层逻辑处理单元用于将该数据业务请求通知该第一操作系统的资源管理单元;该第一操作系统的资源管理单元用于根据该数据业务请求管理监控该第一操作系统中通道资源的使用状态,并通知该虚拟资源共享控制系 统,以便该虚拟资源共享控制系统为该数据业务请求分配相应的通道资源以建立数据连接;该第一操作系统的上层逻辑处理单元还用于将该数据业务请求通知该第二操作系统的上层逻辑处理单元;该第二操作系统的上层逻辑处理单元用于将该数据业务请求通知该第二操作系统的资源管理单元;该第二操作系统的资源管理单元用于根据该数据业务请求管理监控该第二操作系统中通道资源的使用状态;该第一操作系统的资源管理单元还用于接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中通道资源的使用状态;该第二操作系统的资源管理单元还用于接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中通道资源的使用状态。
结合第二方面或第二方面的第一种可能的实现方式,在第二种可能的实现方式中,具体实现为:在用于根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,该虚拟资源共享控制系统具体用于当该调制解调器中不存在空闲的通道资源时,选择该调制解调器中一个正在使用的通道资源,停止该正在使用的通道资源的第一数据连接,并为该数据业务请求建立第二数据连接;该虚拟资源共享控制系统还用于在该数据业务请求对应的数据业务完成之后,释放该第二数据连接,恢复该第一数据连接。
结合第二方面或第二方面的第一种可能的实现方式,在第三种可能的实现方式中,具体实现为:
结合第二方面或第二方面的第一种可能的实现方式至第二方面的第三种可能的实现方式中任一种可能的实现方式,在第四种可能的实现方式中,在用于根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,该虚拟资源共享控制系统具体用于当该调制解调器中存在空闲的通道资源,选择一个该空闲的通道资源为该业务请求建立第二数据连接;该虚拟资源共享控制系统还用于在该业务请求对应的业务完成之后,释放该第二数据连接。
第三方面,提供了一种移动终端的资源管理方法,该移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,该调制解调器上部署着多个SIM卡,该方法包括:该多个操作系统中第一操作系统接收该移动终端的用户对该多个SIM卡中第一SIM卡的卡操作请求,并将该卡操作请求通知该多个操作系统中第二操作系统和该虚拟资源共享控制系统,其中,该第一 操作系统为该多个操作系统中前台运行的一个操作系统,该第二操作系统为该多个操作系统中该第一操作系统以外的一个或多个操作系统;该第二操作系统根据该卡操作请求,管理监控该第二操作系统中该第一SIM卡的当前状态;该虚拟资源共享控制系统根据该卡操作请求以及该第一SIM卡的当前状态,通过该调制解调器对该第一SIM卡进行卡操作,并将该卡操作的第一反馈结果发送给该第一操作系统和该第二操作系统;该第一操作系统根据该第一反馈结果,管理监控该第一操作系统中该第一SIM卡的当前状态;该第二操作系统根据该第一反馈结果,管理监控该第二操作系统中该第一SIM卡的当前状态。
第四方面,提供了一种移动终端的资源管理方法,该移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,该调制解调器用于为该移动终端的数据连接提供通道资源,该方法包括:该多个操作系统中第一操作系统接收该移动终端的用户的数据业务请求,并将该数据业务请求通知该多个操作系统中第二操作系统和该虚拟资源共享控制系统,其中,该数据业务请求需要建立新的数据连接,其中,该第一操作系统为该多个操作系统中前台运行的一个操作系统,该第二操作系统为该多个操作系统中该第一操作系统以外的一个或多个操作系统;该第二操作系统根据该数据业务请求,管理监控该第二操作系统中通道资源的使用状态;该虚拟资源共享控制系统根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的反馈结果发送给该第一操作系统和该第二操作系统;该第一操作系统根据该反馈结果,管理监控该第一操作系统中通道资源的使用状态;该第二操作系统根据该反馈结果,管理监控该第二操作系统中通道资源的使用状态。
基于第一方面、第三方面及其扩展技术方案,本发明实施例的一种移动终端及其资源管理方法,通过在移动终端的多个操作系统之外设置一个虚拟资源共享控制系统,用于管理各个操作系统对调制解调器中的多个SIM卡资源,并在第一操作系统(前台执行的操作系统)操作调制解调器中的资源时通知第二操作系统(第一操作系统以外的操作系统),操作完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的多个SIM卡资源的使用状态,保证移动终端下多个SIM卡资源的使用状态一致性,从而实现多操作系统下移动终端对多个SIM卡资 源的协调管理。
基于第二方面、第四方面及其扩展技术方案,本发明实施例的另一种移动终端及其资源管理方法,通过在移动终端的多个操作系统之外设置一个虚拟资源共享控制系统,用于管理各个操作系统对调制解调器中的通道资源,并在第一操作系统(前台执行的操作系统)操作调制解调器中的资源时通知第二操作系统(第一操作系统以外的操作系统),操作完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的通道资源或的使用状态,保证移动终端下通道资源的使用状态一致性,从而实现多操作系统下移动终端对通道资源的协调管理。
附图说明
为了更清楚地说明本发明实施例的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例中移动终端的系统架构的一实施例示意图。
图2是本发明实施例中移动终端的系统架构另一实施例示意图。
图3是本发明实施例移动终端的结构示意图。
图4是本发明实施例移动终端的另一结构示意图。
图5是本发明实施例移动终端的再一结构示意图。
图6是本发明实施例移动终端中双卡资源管理的流程示意图。
图7是本发明实施例移动终端中多数据业务并发管理的流程示意图。
图8是本发明实施例移动终端中多数据业务并发管理的另一流程示意图。
图9是本发明实施例移动终端的结构示意图。
图10是本发明实施例移动终端的另一结构示意图。
图11是本发明实施例移动终端的另一结构示意图。
图12是本发明实施例移动终端的资源管理方法流程图。
图13是本发明实施例移动终端的另一资源管理方法流程图。
图14是本发明实施例移动终端的再一资源管理方法流程图。
图15是本发明实施例移动终端的再一结构示意图。
图16是本发明实施例移动终端的再一结构示意图。
具体实施方式
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。
应理解,本发明实施例的技术方案可以应用于各种移动终端(Terminal),可以称之为用户设备(User Equipment,简称“UE”)、用户等,可以经无线接入网(例如,Radio Access Network,简称“RAN”)与一个或多个核心网进行通信,可以是移动电话(或称为“蜂窝”电话)和具有移动终端的计算机,例如,可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语言和/或数据,例如,可以是手机、车载的移动装置、个人数字助理PDA等。
参阅图1和图2,图1和图2都是本发明实施例中一种移动终端的结构示意图。
以图1和图2为例介绍本发明实施例提供的应用场景的识别方法,或者功耗管理方法应用的计算节点的逻辑结构。该计算节点可以是移动终端,该移动终端具体可以为一智能手机。如图1和图2所示,该移动终端的硬件层包括中央处理器(Center Processing Unit,CPU)、图形处理器(Graphic Processing Unit,GPU)等,当然还可以包括存储器、输入/输出设备、内存、内存控制器、网络接口等,输入设备可包括键盘、鼠标、触摸屏等,输出设备可包括显示设备如液晶显示器(Liquid Crystal Display,LCD)、阴极射线管(Cathode Ray Tube,CRT、)全息成像(Holographic)、投影(Projector)等。在硬件层之上可运行有操作系统(如Android、Firefox OS等)以及一些应用程序。
图1是以Android系统为例,介绍移动终端的软件系统架构,其中,核心库是操作系统的核心部分,包括外观管理器、媒体框架、关系数据库、2G图形引擎库、Web浏览器引擎,内核库和虚拟机(例如Dalvik Virtual Machine)等,其中,本发明实施例所描述的应用场景的识别和功耗控制策略的确定可以是在虚拟机处(例如Dalvik Virtual Machine)进行实施的,即虚拟机通过 编译分析移动终端上正在运行的应用程序,获取所述应用程序的特征数据;根据所述应用程序的特征数据,从场景特征数据集中确定与所述应用程序的特征数据对应的应用场景信息,所述场景特征数据集包括多种应用场景信息与多种应用程序的特征数据的对应关系,其中所述与所述应用程序的特征数据对应的应用场景信息用于表示所述移动终端当前被使用的应用场景,根据所述应用场景信息,从控制策略集中确定与所述应用场景信息对应的功耗控制策略,所述控制策略集包括所述多种应用场景信息与多种功耗控制策略的对应关系,并根据所述与所述应用场景信息对应的功耗控制策略生成对应的功耗控制指令,将功耗控制指令传递给内核(即图1中的Linux内核),由内核对移动终端的相应硬件(例如CPU、GPU或显示设备等)实施功耗控制。
除此之外,该移动终端还包括驱动层、框架层和应用层。驱动层可包括CPU驱动、GPU驱动、显示控制器驱动等。框架层可包括浏览器引擎、排版引擎、文件解析器等;应用层可包括主界面(home)、媒体播放器(Media Player)、浏览器(Browser)等多种应用程序。
图2是以Firefox OS系统为例,介绍移动终端的软件系统架构,其中,核心库是操作系统的核心部分,包括外观管理器、媒体框架、关系数据库、用户界面、声音管理器等。
除了核心库层和硬件层,该移动终端还包括驱动层、框架层和应用层。驱动层可包括CPU驱动、GPU驱动、显示控制器驱动等。
框架层可包括浏览器引擎、排版引擎、文件解析器、JavaScript引擎等,其中,本发明实施例所描述的应用场景的识别和功耗控制策略的确定可以是在JavaScript引擎处进行实施的,即JavaScript引擎通过编译分析移动终端上正在运行的应用程序,获取所述应用程序的特征数据;根据所述应用程序的特征数据,从场景特征数据集中确定与所述应用程序的特征数据对应的应用场景信息,所述场景特征数据集包括多种应用场景信息与多种应用程序的特征数据的对应关系,其中所述与所述应用程序的特征数据对应的应用场景信息用于表示所述移动终端当前被使用的应用场景,根据所述应用场景信息,从控制策略集中确定与所述应用场景信息对应的功耗控制策略,所述控制策略集包括所述多种应用场景信息与多种功耗控制策略的对应关系,并根据所述与所述应用场景信息对应的功耗控制策略生成对应的功耗控制指令,将功 耗控制指令传递给内核(即图2中的Linux内核),由内核对移动终端的相应硬件(例如CPU、GPU或显示设备等)实施功耗控制。
应用层可包括主界面(home)、媒体播放器(Media Player)、浏览器(Browser)等多种应用程序。
现有多操作系统的移动终端中,能够支持双卡,但不能够实现对双卡资源的管理。
本发明实施例的多系统移动终端,能够一定程度上解决上述问题。图3是本发明实施例移动终端300的结构示意图。如图3所示,移动终端300可包括多个操作系统310、虚拟资源共享控制系统320和调制解调器330。
调制解调器330上部署着多个客户识别模块(Subscriber Identity Module,SIM)卡。
SIM卡,也称为用户身份识别卡,智能卡等。当然,SIM卡也可以是移动终端中用于提供移动业务的其它类型的卡,本发明实施例在此不作限制。
该多个操作系统310中的第一操作系统用于接收移动终端300的用户对该多个SIM卡中第一SIM卡的卡操作请求,并将该卡操作请求通知该多个操作系统310中的第二操作系统和虚拟资源共享控制系统320。
其中,该第一操作系统为该多个操作系统310中前台运行的一个操作系统,该第二操作系统为该多个操作系统310中该第一操作系统以外的一个或多个操作系统,或者说,该第二操作系统是该多个操作系统310中除第一操作系统以外的其它所有操作系统。
应理解,移动终端在工作状态中,其运行的多个操作系统可分为前台运行的操作系统和后台运行的操作系统。其中,前台运行的操作系统可能不止一个。显然,移动终端的用户通常只在前台运行的操作系统进行操作。第一操作系统接收到卡操作请求后,可将该卡操作请求发送给其它操作系统,包括后台运行的操作系统和其它前台运行的操作系统。
虚拟资源共享控制系统320用于为该多个操作系统310协调管理该多个SIM卡的卡操作。具体地,虚拟资源共享控制系统320可用于根据该卡操作请求以及该第一SIM卡的当前状态,通过调制解调器330对该第一SIM卡进行卡操作,并将该卡操作的第一反馈结果发送给该第一操作系统和该第二操作系统。
该第一操作系统还用于根据该第一反馈结果,管理监控该第一操作系统 中该第一SIM卡的当前状态。
该第二操作系统用于根据该卡操作请求或该第一反馈结果,管理监控该第二操作系统中该第一SIM卡的当前状态。
本发明实施例中,在移动终端的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的多个SIM卡资源,并在某个前台运行的操作系统操作SIM卡资源时通知其它操作系统,操作完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的多个SIM卡资源的使用状态,保证移动终端下多个SIM卡资源的使用状态一致性,从而实现多操作系统下移动终端对多个SIM卡资源的协调管理。
可选地,卡操作可包括SIM卡启动操作、SIM卡激活操作、SIM卡去激活操作或SIM卡切换操作。
图4是本发明实施例移动终端300的另一结构示意图。可选地,如图4所示,操作系统310进一步可包括UI界面处理单元311、上层逻辑处理单元312和资源管理单元313。在用于对多个SIM卡进行管理时,用户接口UI界面处理单元311、上层逻辑处理单元312和资源管理单元313具体用于实现如下功能:
该第一操作系统的UI界面处理单元311用于接收该卡操作请求,将该卡操作请求通知该当前操作系统的上层逻辑处理单元312;
该第一操作系统的上层逻辑处理单元312用于将该卡操作请求通知该第一操作系统的资源管理单元313;
该第一操作系统的资源管理单元313用于根据该卡操作请求管理监控该第一操作系统中该第一SIM卡的当前状态,并通知虚拟资源共享控制系统320,以便虚拟资源共享控制系统320根据该卡操作请求进行相应的卡操作;
该第一操作系统的上层逻辑处理单元312还用于将该卡操作请求通知该第二操作系统的上层逻辑处理单元312;
该第二操作系统的上层逻辑处理单元312用于将该卡操作请求通知该第二操作系统的资源管理单元313;
该第二操作系统的资源管理单元313用于根据该卡操作请求管理监控该第二操作系统中该第一SIM卡的当前状态;
该第一操作系统的资源管理单元313还用于接收该反馈信息,并根据该 反馈信息管理监控该第一操作系统中该第一SIM卡的当前状态;
该第二操作系统的资源管理单元313还用于接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中该第一SIM卡的当前状态。
可选地,作为另一个实施例,调制解调器330还用于为移动终端300的数据连接提供通道资源;该第一操作系统还用于接收移动终端300的用户的数据业务请求,并将该数据业务请求通知该第二操作系统和虚拟资源共享控制系统320,其中,该数据业务请求需要建立新的数据连接;虚拟资源共享控制系统320还用于为该多个操作系统310协调管理该通道资源的使用,具体用于根据该数据业务请求,以及调制解调器330当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的第二反馈结果发送给该第一操作系统和该第二操作系统;该第一操作系统还用于根据该第二反馈结果,管理监控该第一操作系统中通道资源的使用状态;该第二操作系统还用于根据该数据业务请求或该第二反馈结果,管理监控该第二操作系统中通道资源的使用状态。
应理解,通道资源的使用状态,可包括通道资源是否被使用,正在被哪个操作系统使用,或者是否已经建立数据连接,等等。当然,还可包括其它通道资源使用有关的信息,本发明实施例在此不再一一介绍。
本发明实施例中,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的通道资源的使用状态,保证移动终端下通道资源的使用状态一致性,从而还能够实现多操作系统下移动终端对通道资源的协调管理。
具体地,在当前实施例中,在用于对多业务的并发连接进行管理时,用户接口UI界面处理单元311、上层逻辑处理单元312和资源管理单元313还可用于如下功能:
该第一操作系统的UI界面处理单元311用于接收该数据业务请求,将该数据业务请求通知该当前操作系统的上层逻辑处理单元312;
该第一操作系统的上层逻辑处理单元312用于将该数据业务请求通知该第一操作系统的资源管理单元313;
该第一操作系统的资源管理单元313用于根据该数据业务请求管理监控该第一操作系统中通道资源的使用状态,并通知虚拟资源共享控制系统320, 以便虚拟资源共享控制系统320为该数据业务请求分配相应的通道资源以建立数据连接;
该第一操作系统的上层逻辑处理单元312还用于将该数据业务请求通知该第二操作系统的上层逻辑处理单元312;
该第二操作系统的上层逻辑处理单元312用于将该数据业务请求通知该第二操作系统的资源管理单元313;
该第二操作系统的资源管理单元313用于根据该数据业务请求管理监控该第二操作系统中通道资源的使用状态;
该第一操作系统的资源管理单元313还用于接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中通道资源的使用状态;
该第二操作系统的资源管理单元313还用于接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中通道资源的使用状态。
可选地,在当前实施例的一种具体应用中,在用于根据该数据业务请求,以及调制解调器330当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,虚拟资源共享控制系统320具体用于当调制解调器330中不存在空闲的通道资源时,选择调制解调器330中一个正在使用的通道资源,停止该正在使用的通道资源的第一数据连接,并为该数据业务请求建立第二数据连接;此外,虚拟资源共享控制系统320还用于在该数据业务请求对应的数据业务完成之后,释放该第二数据连接,恢复该第一数据连接。
可选地,在当前实施例的另一种具体应用中,在用于根据该数据业务请求,以及调制解调器330当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,虚拟资源共享控制系统320具体用于当调制解调器330中存在空闲的通道资源,选择一个该空闲的通道资源为该业务请求建立第二数据连接;此外,虚拟资源共享控制系统320还用于在该业务请求对应的业务完成之后,释放该第二数据连接。
应理解,当调制解调器330的通道资源为单通道资源,且该单通道资源尚未被使用时,虚拟资源共享控制系统320可直接在该单通道资源上建立该业务请求对应的第二数据连接;或者,当调制解调器330的通道资源为多通道资源,且该第一操作系统当前的通道资源能够满足该业务要求时,虚拟资源共享控制系统320可在该第一操作系统当前的通道资源上建立该业务请求对应的第二数据连接。具体实现可参考现有技术,本发明实施例在此不再赘 述。
图5是本发明实施例移动终端300的另一结构示意图。可选地,如图5所示,虚拟资源共享控制系统320可进一步包括底层协议资源共享访问逻辑控制单元321和无线接口层322。
其中,底层协议资源共享访问逻辑控制单元321可用于为各个操作系统310提供统一的底层协议资源共享访问接口,无线接口层322用于实现与实体设备调制解调器330之间的访问接口。例如,在进行SIM卡的卡操作时,通过底层协议资源共享访问逻辑控制单元321为各个操作系统提供对Modem中的SIM卡进行卡操作的接口,以便协调管理各个操作系统对Modem中的SIM卡的卡操作,并通过无线接口层322实现对Modem中的SIM卡的卡操作。
当然,应理解,上述图3-图5所示实施例的逻辑单元,在具体的实现中,可以是一个功能模块,例如,UI界面处理模块可以实现UI界面处理单元的逻辑功能,上层逻辑处理模块可以实现上层逻辑处理单元的逻辑功能,资源管理模块可以实现资源管理单元的逻辑功能,底层协议资源共享访问逻辑控制模块可以实现底层协议资源共享访问逻辑控制单元的逻辑功能,等等,本发明实施例在此不再赘述。
下面,将结合具体的实施例,对本发明实施例的方法作进一步的描述。
图6是本发明实施例移动终端中双卡资源管理的流程示意图。图6中,移动终端可包括三层,即操作系统层的操作系统1、操作系统2、……、操作系统N等多个操作系统,以及虚拟化层的虚拟资源共享控制系统、硬件层的调制解调器(Modem)等。其中,操作系统1、操作系统2、……、操作系统N相当于图3-图5所示实施例的操作系统310,虚拟资源共享控制系统相当于图3-图5所示实施例的虚拟资源共享控制系统320,调制解调器(Modem)相当于图3-图5所示实施例的调制解调器330。移动终端的SIM卡位于Modem中,移动终端通过Modem对多个SIM卡实现启动操作、卡切换操作、激活操作、去激活操作等。
另外,每个操作系统可包括UI界面处理模块、上层逻辑处理模块和卡管理模块。UI界面处理模块,可用于向用户显示移动终端当前的SIM卡资源的使用状态,并将用户的卡操作请求发送给所在操作系统的上层逻辑处理模块;上层逻辑处理模块,可用于将来自所在操作系统的UI显示界面模块 的消息转发给所在操作系统的上层逻辑处理模块和其它操作系统的卡管理模块,或者将所在操作系统的卡管理模块的消息,转发给所在操作系统的UI界面处理模块;或者将来自其它操作系统的上层逻辑处理模块的消息,转发给所在操作系统的UI显示界面模块和所在操作系统的卡管理模块;多连接管理模块,可记录所在操作系统当前的SIM卡资源的使用状态,具体用于根据所在操作系统的消息刷新所在操作系统当前的SIM卡资源的使用状态,或根据虚拟层反馈的卡操作的结果,刷新所在操作系统当前的SIM卡资源的使用状态。
此外,虚拟层还可包括底层协议资源共享访问逻辑控制模块和无线接口层(RIL)模块。其中,底层协议资源共享访问逻辑控制模块用于为各个操作系统提供统一的底层协议资源共享访问接口,无线接口层用于实现与实体设备调制解调器之间的访问接口。具体地,底层协议资源共享访问逻辑控制模块可将根据各个操作系统的卡操作请求,结合当前SIM卡资源的使用状态,确定对SIM卡的卡操作,并通过无线接口层对Modem中的SIM卡进行操作。另外,底层协议资源共享访问逻辑控制模块还可将Modem通过无线接口层反馈的结果,转发给各个操作系统。
当然,应理解,在实际的应用中,操作系统或虚拟层可能存在不同的功能划分,但该操作系统能够实现图3至图5所示实施例中的功能。
另外,图6中,圆圈标记用于表示圆圈右侧的箭头或圆圈所在箭头的步骤序号。本发明实施例以去激活卡操作为例进行描述,移动终端实现去激活卡操作的具体流程如下:
A1、用户进行界面操作,产生一个需要管理卡的卡操作请求。
本发明实施例中,操作系统2为移动终端中前台运行的一个操作系统。Modem中包括多个SIM卡资源。用户在UI界面处理模块进行操作时,产生一个管理卡的卡操作请求,不妨假设为对第一SIM卡的去激活操作请求。
A2、操作系统2的上层逻辑处理模块收到卡操作请求后,通知给其它操作系统,同时通知所在操作系统的卡管理模块。
操作系统2的卡管理模块在收到去激活的卡操作请求后,可根据该卡操作请求,刷新操作系统2的SIM卡资源的使用状态。具体地,操作系统2的卡管理模块可标记该第一SIM卡的状态为准备去激活。
操作系统2的上层逻辑处理模块还可将该卡操作请求发送给其它操作系 统的上层逻辑处理模块。其它操作系统,可包括移动终端中后台运行的操作系统和前台运行的其它操作系统。当然,在具体的应用中,移动终端可能只有一个前台运行的操作系统。
A3、其它操作系统的上层逻辑处理模块收到关于操作系统2的卡操作请求的消息后,通知所在操作系统的UI界面处理模块做相应处理,同时通知所在操作系统的卡管理模块。
具体地,其它操作系统的上层逻辑处理模块可通知所在操作系统的UI界面处理模块刷新SIM卡资源使用状态的显示,并通知所在操作系统的卡管理模块更新关于SIM卡资源使用状态的记录。
不妨假设操作系统1也是前台运行的操作系统之一,操作系统N是后台运行的操作系统之一,操作系统1和操作系统N各自的上层逻辑处理模块,可根据操作系统2对第一SIM卡的去激活操作,通知各自的UI界面处理模块中显示第一SIM卡正在去激活的状态,等等。另外,操作系统1和操作系统N各自的上层逻辑处理模块,还通知各自的卡管理模块,以便各自的卡管理模块将第一SIM卡的状态记录改为正在去激活的状态。
当然,应理解,当操作系统2为前台运行操作系统时,其它操作系统也可能都是后台运行的操作系统。
A4、各个操作系统的卡管理模块将消息发给底层协议资源共享访问逻辑控制模块。
具体地,例如,操作系统2的卡管理模块可将对第一SIM卡进行去激活操作的消息发给底层协议资源共享访问逻辑控制模块,操作系统1和操作系统N所在操作系统当前的SIM卡资源使用信息发给底层协议资源共享访问逻辑控制模块,等等。
A5、底层协议资源共享访问逻辑控制模块处理完各个操作系统的消息后,通知RIL模块进行卡的操作。
底层协议资源共享访问逻辑控制模块根据各个操作系统的消息,协调各个操作系统的卡操作,并通知RIL模块,通过RIL模块向Modem发出卡操作指令。
例如,本发明实施例中,底层协议资源共享访问逻辑控制模块可通过RIL模块向Modem发出卡操作指令,指示Modem对第一SIM卡进行去激活操作。
A6、RIL模块指示Modem执行卡操作。
A7、Modem在卡操作成功后通知RIL模块。
Modem根据RIL模块的指令完成卡操作,并将卡操作的结果反馈给RIL模块。
具体地,卡操作的结果可包括操作成功和操作失败。通常情况下,卡操作都会成功。
本发明实施例以卡操作成功为例,此时,Modem可将对第一SIM卡去激活成功的结果反馈给RIL模块。
A8、RIL模块将消息返回给底层协议资源共享访问逻辑控制模块。
RIL模块将Modem反馈的消息返回给底层协议资源共享访问逻辑控制模块,以便底层协议资源共享访问逻辑控制模块作相应的逻辑处理。
A9、底层协议资源共享访问逻辑控制模块进行逻辑处理后,通知每个操作系统。
具体地,底层协议资源共享访问逻辑控制模块可根据RIL模块反馈的结果,以及底层协议资源共享访问逻辑控制模块中记录的Modem当前的SIM卡资源状态,协调管理Modem的SIM卡资源。
例如,本发明实施例中,底层协议资源共享访问逻辑控制模块根据第一SIM卡去激活成功的反馈结果,可将第一SIM卡的状态改为去激活状态,然后将第一SIM卡的状态信息或第一SIM卡去激活成功的反馈结果返回给各个操作系统的卡管理模块。
A10、各个操作系统的卡管理模块将结果返回给所在操作系统的上层逻辑处理模块。
各个操作系统的卡管理模块可将所在操作系统中关于第一SIM卡的状态改为去激活状态,然后将反馈结果返回给所在操作系统的上层逻辑处理模块,以便所在操作系统的上层逻辑处理模块通过所在操作系统的UI界面处理模块刷新第一SIM卡的状态。
A11、上层逻辑处理模块通知所在操作系统的UI界面处理模块刷新结果。
各个操作系统的上层逻辑处理模块通知所在操作系统的UI界面处理模块进行SIM卡状态刷新。此时,本发明实施例中,各个操作系统的UI界面处理模块可显示第一SIM卡为去激活状态。
本发明实施例中,在各个操作系统进行卡操作时相互通知,并通过虚拟层统一管理移动终端的多个SIM卡的卡操作,并将操作的结果反馈给所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的多个SIM卡资源的使用状态,保证移动终端下多个SIM卡资源的使用状态一致性,从而实现多操作系统下移动终端对多个SIM卡资源的协调管理。
图7是本发明实施例移动终端中多数据业务并发管理的流程示意图。图7中,移动终端可包括三层,即操作系统层的操作系统1、操作系统2、……、操作系统N等多个操作系统,以及虚拟化层的虚拟资源共享控制系统、硬件层的调制解调器(Modem)等。其中,操作系统1、操作系统2、……、操作系统N相当于图3-图5所示实施例的操作系统310,虚拟资源共享控制系统相当于图3-图5所示实施例的虚拟资源共享控制系统320,调制解调器(Modem)相当于图3-图5所示实施例的调制解调器330。Modem可用于为移动终端提供数据连接资源。本发明实施例中,Modem所能够提供的通道资源为单通道资源。
此外,每个操作系统可包括UI界面处理模块、上层逻辑处理模块和多连接管理模块。UI界面处理模块,可用于向用户显示移动终端当前的通道资源的使用状态,并将用户的数据业务请求发送给所在操作系统的上层逻辑处理模块;上层逻辑处理模块,可用于将来自所在操作系统的UI显示界面模块的消息转发给所在操作系统的上层逻辑处理模块和其它操作系统的多连接管理模块,或者将所在操作系统的多连接管理模块的消息,转发给所在操作系统的UI界面处理模块;或者将来自其它操作系统的上层逻辑处理模块的消息,转发给所在操作系统的UI显示界面模块和所在操作系统的多连接管理模块;多连接管理模块,可记录所在操作系统当前的通道资源的使用状态,具体用于根据所在操作系统的消息刷新所在操作系统当前的通道资源的使用状态,或根据虚拟层反馈的通道资源使用的结果,刷新所在操作系统当前的通道资源的使用状态。
应理解,通道资源的使用状态,可包括通道资源是否被使用,正在被哪个操作系统使用,或者是否已经建立数据连接,等等。当然,还可包括其它通道资源使用有关的信息,本发明实施例在此不再一一介绍。
此外,虚拟层还可包括底层协议资源共享访问逻辑控制模块和无线接口层(RIL)模块。其中,底层协议资源共享访问逻辑控制模块用于为各个操 作系统提供统一的底层协议资源共享访问接口,无线接口层用于实现与实体设备调制解调器之间的访问接口。具体地,底层协议资源共享访问逻辑控制模块可将根据各个操作系统的数据业务请求,结合当前通道资源的使用状态,确定通道资源的分配,并通过无线接口层对Modem中的通道资源进行分配。另外,底层协议资源共享访问逻辑控制模块还可将Modem通过无线接口层反馈的结果,转发给各个操作系统。具体地,本发明实施例中,对通道资源的分配可包括在通道资源中建立数据连接和释放数据连接。
当然,应理解,在实际的应用中,操作系统或虚拟层可能存在不同的功能划分,但该操作系统能够实现图3至图5所示实施例中的功能。
另外,图7中,圆圈标记用于表示圆圈右侧的箭头或圆圈所在箭头的步骤序号。本发明实施例以彩信业务为例进行描述,移动终端实现多数据业务并发管理的具体流程如下:
B1、用户进行界面操作,产生一个需要重新建一条数据连接的数据业务请求。
本发明实施例中,操作系统2为移动终端中前台运行的一个操作系统,且Modem的单通道资源已经被使用,存在一个数据连接。
不妨假设该需要重新建一条数据连接的数据业务请求为彩信业务请求,彩信业务请求需要一个通道资源建立数据连接,以进行数据传输。
B2、操作系统2的上层逻辑处理模块收到数据业务请求后,通知给其它操作系统,同时通知所在操作系统的多连接管理模块。
操作系统2的多连接管理模块在收到彩信业务请求后,可根据该彩信业务请求,刷新操作系统2的通道资源使用状态。具体地,操作系统2的多连接管理模块可标记通道资源的状态为彩信业务请求连接的状态。
操作系统2的上层逻辑处理模块还可将该彩信业务请求发送给其它操作系统的上层逻辑处理模块。其它操作系统,可包括移动终端中后台运行的操作系统和前台运行的其它操作系统。当然,在具体的应用中,移动终端可能只有一个前台运行的操作系统。
B3、其它操作系统的上层逻辑处理模块收到关于操作系统2的数据业务请求的消息后,通知所在操作系统的UI界面处理模块做相应处理,同时通知所在操作系统的多连接管理模块。
具体地,其它操作系统的上层逻辑处理模块可通知所在操作系统的UI 界面处理模块刷新通道资源使用状态的显示,并通知所在操作系统的多连接管理模块更新关于刷新通道资源使用状态的记录。
不妨假设操作系统1和操作系统N都是后台运行的操作系统。操作系统1和操作系统N可根据该彩信业务请求,在各自的UI界面处理模块中显示彩信业务请求连接的状态,等等。另外,其它操作系统的多连接管理模块也可根据操作系统2的彩信业务请求,刷新所在操作系统记录的通道资源使用状态。
B4、各个操作系统的多连接管理模块将删除当前数据连接的消息发给底层协议资源共享访问逻辑控制模块。
由于只存在一个通道资源,各个操作系统可通过多连接管理模块将删除当前数据连接的消息发给底层协议资源共享访问逻辑控制模块,以便底层协议资源共享访问逻辑控制模块释放通道资源,为彩信业务提供数据连接。
B5、底层协议资源共享访问逻辑控制模块处理完各个操作系统的数据业务消息后,通知RIL模块删除当前的数据连接。
具体地,底层协议资源共享访问逻辑控制模块可记录各个操作系统当前的数据业务的信息,以便之后进行数据业务的恢复。
记录完毕后,通知RIL模块删除当前的数据连接。
B6、RIL模块命令Modem删除当前的数据连接。
B7、Modem删除完毕后通知RIL模块。
B8、RIL模块将消息返回给底层协议资源共享访问逻辑控制模块。
具体的,RIL模块将删除数据连接的反馈结果返回给底层协议资源共享访问逻辑控制模块。
B9、底层协议资源共享访问逻辑控制模块进行逻辑处理后,通知每个操作系统的多连接管理模块。
例如,底层协议资源共享访问逻辑控制模块可将每个操作系统的数据连接状态标记为无数据连接状态,或者是数据连接暂停状态,并将该状态信息通知给各个操作系统的多连接管理模块。
各个操作系统的多连接管理模块根据删除数据连接的反馈结果,刷新所在操作系统记录的通道资源使用状态。
B10、各个操作系统的多连接管理模块将结果返回给所在操作系统的上层逻辑处理模块。
B11、上层逻辑处理模块通知所在操作系统的UI界面处理模块刷新结果。
具体地,各个操作系统的UI界面处理模块可去掉当前数据连接的显示,或显示当前数据连接暂停,等等。
B12、操作系统2的多连接管理模块将新建一条新的数据连接的消息发给底层协议资源共享访问逻辑控制模块。
具体地,操作系统2的多连接管理模块可将新建一条新的数据连接的消息发给底层协议资源共享访问逻辑控制模块。当然,其它操作系统,例如操作系统1、操作系统N等也可通过多连接管理模块向底层协议资源共享访问逻辑控制模块发送该消息。
B13、底层协议资源共享访问逻辑控制模块处理完各个操作系统的数据业务消息后,通知RIL模块新建一条数据连接。
B14、RIL模块命令Modem新建数据连接。
B15、Modem新建数据连接进行传输,并在传输完毕后删除数据连接,通知RIL模块。
Modem数据连接建立后,可通过RIL模块、底层协议资源共享访问逻辑控制模块、操作系统2的多连接管理模块等,向操作系统2的上层逻辑处理模块反馈数据连接建立的消息,操作系统2的上层逻辑处理模块即可在新建数据连接上进行彩信业务的传输。彩信业务传输完毕后,Modem可删除为彩信业务建立的数据连接,并在删除完毕后通知RIL模块。
B16、RIL模块将消息返回给底层协议资源共享访问逻辑控制模块。
B17、底层协议资源共享访问逻辑控制模块进行逻辑处理后,通知每个操作系统的多连接管理模块。
例如,底层协议资源共享访问逻辑控制模块可将通道资源的状态置为空闲状态,各个操作系统的多连接管理模块根据底层协议资源共享访问逻辑控制模块的消息,刷新所在操作系统记录的通道资源使用状态为空闲状态。
B18、各个操作系统的多连接管理模块将结果返回给所在操作系统的上层逻辑处理模块。
B19、上层逻辑处理模块通知所在操作系统的UI界面处理模块刷新结果。
具体地,各个操作系统的UI界面处理模块可显示彩信传输完毕,或不 再显示彩信业务连接,等等。
B20、各个操作系统的多连接管理模块将重新建立先前数据连接的消息发给底层协议资源共享访问逻辑控制模块。
B21、底层协议资源共享访问逻辑控制模块处理完各个操作系统的数据业务消息后,通知RIL模块重新建立先前的数据连接。
底层协议资源共享访问逻辑控制模块处理完各个操作系统的数据业务消息后,即可根据之前记录的数据连接的信息,进行数据连接恢复。
B22、RIL模块命令Modem重新建立先前的数据连接。
B23、Modem在先前的数据连接建立成功后通知RIL模块。
B24、RIL模块将消息返回给底层协议资源共享访问逻辑控制模块。
B25、底层协议资源共享访问逻辑控制模块进行逻辑处理后,通知每个操作系统的多连接管理模块。
底层协议资源共享访问逻辑控制模块根据RIL模块反馈的消息,协调管理各个操作系统的数据连接对通道资源的占用,并将通道资源的占用结果反馈给各个操作系统的多连接管理模块,各个操作系统的多连接管理模块根据数据连接重建的反馈结果,刷新所在操作系统记录的通道资源使用状态。
B26、各个操作系统的多连接管理模块将结果返回给所在操作系统的上层逻辑处理模块。
B27、上层逻辑处理模块通知所在操作系统的UI界面处理模块刷新结果。
各个分系统的上层逻辑处理模块将数据连接重建的反馈结果发给所在操作系统的UI界面处理模块,以便所在操作系统的UI界面处理模块刷新所在操作系统的通道资源使用状态。
本发明实施例中,在移动终端的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的通道资源,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的通道资源的使用状态,保证移动终端下通道资源的使用状态一致性,从而还能够实现多操作系统下移动终端对通道资源的协调管理。
另外,应理解,本发明实施例的方法,还可扩展为Modem具有多通道 资源但不存在空闲资源的情景,此时,在新建一个数据连接之前,需要选择一个正在使用的通道资源,释放通道资源中的数据连接以建立新的数据连接,并在业务数据传输完毕后释放新的数据连接,并恢复通道资源原有的数据连接。
图8是本发明实施例移动终端中多数据业务并发管理的流程示意图。图8中,移动终端可包括三层,即操作系统层的操作系统1、操作系统2、……、操作系统N等多个操作系统,以及虚拟化层的虚拟资源共享控制系统、硬件层的调制解调器(Modem)等。其中,操作系统1、操作系统2、……、操作系统N相当于图3-图5所示实施例的操作系统310,虚拟资源共享控制系统相当于图3-图5所示实施例的虚拟资源共享控制系统320,调制解调器(Modem)相当于图3-图5所示实施例的调制解调器330。Modem可用于为移动终端提供数据连接资源。本发明实施例中,Modem所能够提供的通道资源为多通道资源。
此外,每个操作系统可包括UI界面处理模块、上层逻辑处理模块和多连接管理模块。UI界面处理模块,可用于向用户显示移动终端当前的通道资源的使用状态,并将用户的数据业务请求发送给所在操作系统的上层逻辑处理模块;上层逻辑处理模块,可用于将来自所在操作系统的UI显示界面模块的消息转发给所在操作系统的上层逻辑处理模块和其它操作系统的多连接管理模块,或者将所在操作系统的多连接管理模块的消息,转发给所在操作系统的UI界面处理模块;或者将来自其它操作系统的上层逻辑处理模块的消息,转发给所在操作系统的UI显示界面模块和所在操作系统的多连接管理模块;多连接管理模块,可记录所在操作系统当前的通道资源的使用状态,具体用于根据所在操作系统的消息刷新所在操作系统当前的通道资源的使用状态,或根据虚拟层反馈的通道资源使用的结果,刷新所在操作系统当前的通道资源的使用状态。
应理解,通道资源的使用状态,可包括哪个通道资源正在被所在操作系统使用,是否已经建立数据连接,等等。当然,还可包括其它通道资源使用有关的信息,本发明实施例在此不再一一介绍。
此外,虚拟层还可包括底层协议资源共享访问逻辑控制模块和无线接口层(RIL)模块。其中,底层协议资源共享访问逻辑控制模块用于为各个操作系统提供统一的底层协议资源共享访问接口,无线接口层用于实现与实体 设备调制解调器之间的访问接口。具体地,底层协议资源共享访问逻辑控制模块可将根据各个操作系统的数据业务请求,结合当前通道资源的使用状态,确定通道资源的分配,并通过无线接口层对Modem中的通道资源进行分配。另外,底层协议资源共享访问逻辑控制模块还可将Modem通过无线接口层反馈的结果,转发给各个操作系统。具体地,本发明实施例中,对通道资源的分配可包括在通道资源中建立数据连接和释放数据连接。
当然,应理解,在实际的应用中,操作系统或虚拟层可能存在不同的功能划分,但该操作系统能够实现图3至图5所示实施例中的功能。
另外,图8中,圆圈标记用于表示圆圈右侧的箭头或圆圈所在箭头的步骤序号。本发明实施例以彩信业务为例进行描述,移动终端实现多数据业务并发管理的具体流程如下:
C1、用户进行界面操作,产生一个需要重新建一条数据连接的业务操作。
本发明实施例中,操作系统2为移动终端当前使用的操作系统,且Modem的多通道资源已经被使用,但至少存在一个空闲通道资源。另外,不妨假设该需要重新建一条数据连接的业务操作为彩信业务(发送彩信的操作)。
C2、操作系统2的上层逻辑处理模块收到新建数据连接消息后,通知给其它操作系统,同时通知所在操作系统的多连接管理模块。
操作系统2的多连接管理模块在收到彩信业务请求后,可根据该彩信业务请求,刷新操作系统2的通道资源使用状态。具体地,操作系统2的多连接管理模块可标记通道资源的状态为彩信业务请求连接的状态。
操作系统2的上层逻辑处理模块还可将该彩信业务请求发送给其它操作系统的上层逻辑处理模块。其它操作系统,可包括移动终端中后台运行的操作系统和前台运行的其它操作系统。当然,在具体的应用中,移动终端可能只有一个前台运行的操作系统。
C3、其它操作系统的上层逻辑处理模块收到关于操作系统2的数据业务请求的消息后,通知所在操作系统的UI界面处理模块做相应处理,同时通知所在操作系统的多连接管理模块。
具体地,其它操作系统的上层逻辑处理模块可通知所在操作系统的UI界面处理模块刷新通道资源使用状态的显示,并通知所在操作系统的多连接管理模块更新关于刷新通道资源使用状态的记录。
例如,操作系统1和操作系统N可根据该彩信业务请求,在各自的UI界面处理模块中显示彩信业务请求连接的状态,等等。另外,其它操作系统的多连接管理模块也可根据操作系统2的彩信业务请求,刷新所在操作系统记录的通道资源使用状态。
C4、各个操作系统的多连接管理模块将消息发给底层协议资源共享访问逻辑控制模块。
各个操作系统可通过多连接管理模块将当前数据连接的使用信息发给底层协议资源共享访问逻辑控制模块,以便底层协议资源共享访问逻辑控制模块选择空闲的通道资源,为彩信业务提供数据连接。
C5、底层协议资源共享访问逻辑控制模块处理完各个操作系统的数据业务消息后,通知RIL模块建立一条新的数据连接。
底层协议资源共享访问逻辑控制模块根据各个操作系统的数据业务消息,选择空闲的通道资源,并通知RIL模块在空闲的通道资源上建立一条新的数据连接。
C6、RIL模块命令Modem建立一条新的数据连接。
RIL模块指示Modem在空闲的通道资源上建立一条新的数据连接。
C7、Modem在数据连接建立成功后通知RIL模块。
Modem根据RIL模块的指令完成数据连接的建立,并将数据连接的建立结果反馈给RIL模块。
C8、RIL模块将消息返回给底层协议资源共享访问逻辑控制模块。
RIL模块将Modem反馈的消息返回给底层协议资源共享访问逻辑控制模块,以便底层协议资源共享访问逻辑控制模块作相应的逻辑处理。
C9、底层协议资源共享访问逻辑控制模块进行逻辑处理后,通知每个操作系统。
底层协议资源共享访问逻辑控制模块根据反馈的结果,以及底层协议资源共享访问逻辑控制模块中记录的Modem当前的通道资源使用状态,刷新Modem的通道资源使用状态,并将反馈的结果通知给每个操作系统的多连接管理模块。
C10、各个操作系统的多连接管理模块将结果返回给所在操作系统的上层逻辑处理模块。
各个操作系统的多连接管理模块将反馈结果返回给所在操作系统的上 层逻辑处理模块,以便所在操作系统的上层逻辑处理模块通过所在操作系统的UI界面处理模块刷新通道资源使用状态。
C11、上层逻辑处理模块通知所在操作系统的UI界面处理模块刷新结果。
各个操作系统的上层逻辑处理模块通知所在操作系统的UI界面处理模块进行通道资源使用状态刷新。
本发明实施例中,在移动终端的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的通道资源,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的通道资源的使用状态,保证移动终端下通道资源的使用状态一致性,从而还能够实现多操作系统下移动终端对通道资源的协调管理。
图9是本发明实施例移动终端900的结构示意图。本发明实施例的移动终端,能够一定程度上解决多连接并发时的通道资源管理不协调的缺陷。如图9所示,移动终端900可包括多个操作系统910、虚拟资源共享控制系统920和调制解调器930。其中,
调制解调器930用于为移动终端900的数据连接提供通道资源。
该多个操作系统910中的该第一操作系统用于接收移动终端900的用户的数据业务请求,并将该数据业务请求通知该第二操作系统和虚拟资源共享控制系统920,其中,该数据业务请求需要建立新的数据连接,该第一操作系统为该多个操作系统910中前台运行的一个操作系统,该第二操作系统为该多个操作系统910中该第一操作系统以外的一个或多个操作系统,或者说,该第二操作系统是该多个操作系统110中除第一操作系统以外的其它所有操作系统。
虚拟资源共享控制系统920用于为该多个操作系统910协调管理该通道资源的使用,具体用于根据该数据业务请求,以及调制解调器930当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的反馈结果发送给该第一操作系统和该第二操作系统。
该第一操作系统还用于根据该反馈结果,管理监控该第一操作系统中通道资源的使用状态;该第二操作系统还用于根据该数据业务请求或该反馈结 果,管理监控该第二操作系统中通道资源的使用状态。
本发明实施例中,在移动终端900的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的通道资源,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端900的各个操作系统实时监控管理移动终端900的通道资源的使用状态,保证移动终端900下通道资源的使用状态一致性,从而能够实现多操作系统下移动终端900对通道资源的协调管理。
图10是本发明实施例移动终端900的另一结构示意图。可选地,如图10所示,操作系统910进一步可包括UI界面处理单元911、上层逻辑处理单元912和资源管理单元913。在用于对多业务的并发连接进行管理时,用户接口UI界面处理单元911、上层逻辑处理单元912和资源管理单元913还可用于如下功能:
该第一操作系统的UI界面处理单元911用于接收该数据业务请求,将该数据业务请求通知该当前操作系统的上层逻辑处理单元912;
该第一操作系统的上层逻辑处理单元912用于将该数据业务请求通知该第一操作系统的资源管理单元913;
该第一操作系统的资源管理单元913用于根据该数据业务请求管理监控该第一操作系统中通道资源的使用状态,并通知虚拟资源共享控制系统920,以便虚拟资源共享控制系统920为该数据业务请求分配相应的通道资源以建立数据连接;
该第一操作系统的上层逻辑处理单元912还用于将该数据业务请求通知该第二操作系统的上层逻辑处理单元912;
该第二操作系统的上层逻辑处理单元912用于将该数据业务请求通知该第二操作系统的资源管理单元913;
该第二操作系统的资源管理单元913用于根据该数据业务请求管理监控该第二操作系统中通道资源的使用状态;
该第一操作系统的资源管理单元913还用于接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中通道资源的使用状态;
该第二操作系统的资源管理单元913还用于接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中通道资源的使用状态。
可选地,作为一个实施例,在用于根据该数据业务请求,以及调制解调器930当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,虚拟资源共享控制系统920具体用于当调制解调器930中不存在空闲的通道资源时,选择调制解调器930中一个正在使用的通道资源,停止该正在使用的通道资源的第一数据连接,并为该数据业务请求建立第二数据连接;此外,虚拟资源共享控制系统920还用于在该数据业务请求对应的数据业务完成之后,释放该第二数据连接,恢复该第一数据连接。
可选地,作为另一个实施例,在用于根据该数据业务请求,以及调制解调器930当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,虚拟资源共享控制系统920具体用于当调制解调器930中存在空闲的通道资源,选择一个该空闲的通道资源为该业务请求建立第二数据连接;此外,虚拟资源共享控制系统920还用于在该业务请求对应的业务完成之后,释放该第二数据连接。
应理解,当调制解调器930的通道资源为单通道资源,且该单通道资源尚未被使用时,虚拟资源共享控制系统920可直接在该单通道资源上建立该业务请求对应的第二数据连接;或者,当调制解调器930的通道资源为多通道资源,且该当前操作系统当前的通道资源能够满足该业务要求时,虚拟资源共享控制系统920可在该当前操作系统当前的通道资源上建立该业务请求对应的第二数据连接。具体实现可参考现有技术,本发明实施例在此不再赘述。
图11是本发明实施例移动终端900的另一结构示意图。可选地,如图11所示,虚拟资源共享控制系统920可进一步包括底层协议资源共享访问逻辑控制模块921和无线接口层922。
其中,底层协议资源共享访问逻辑控制模块921可用于为各个操作系统910提供统一的底层协议资源共享访问接口,无线接口层922用于实现与实体设备调制解调器930之间的访问接口。
另外,移动终端900还可实现图7-图8所示实施例及其扩展实施例的功能,此时,图7-图8中的操作系统1、操作系统2、……、操作系统N相当于图9-图11所示实施例的操作系统910,虚拟资源共享控制系统相当于图9-图11所示实施例的虚拟资源共享控制系统920,调制解调器(Modem)相当于图9-图11所示实施例的调制解调器930。本发明实施例在此不再赘述。
当然,应理解,上述图9-图11所示实施例的逻辑单元,在具体的实现中,可以是一个功能模块,例如,UI界面处理模块可以实现UI界面处理单元的逻辑功能,上层逻辑处理模块可以实现上层逻辑处理单元的逻辑功能,资源管理模块可以实现资源管理单元的逻辑功能,底层协议资源共享访问逻辑控制模块可以实现底层协议资源共享访问逻辑控制单元的逻辑功能,等等,本发明实施例在此不再赘述。
图12是本发明实施例移动终端的资源管理方法流程图。本发明实施例的多系统移动终端,包括多个操作系统、虚拟资源共享控制系统和调制解调器。其中,调制解调器上部署着多个SIM卡。该方法包括:
1201,该多个操作系统中第一操作系统接收该移动终端的用户对该多个SIM卡中第一SIM卡的卡操作请求,并将该卡操作请求通知该多个操作系统中第二操作系统和该虚拟资源共享控制系统。
其中,该第一操作系统为该多个操作系统中前台运行的一个操作系统,该第二操作系统为该多个操作系统中该第一操作系统以外的一个或多个操作系统,或者说,该第二操作系统是该多个操作系统中除第一操作系统以外的其它所有操作系统。
1202,该第二操作系统根据该卡操作请求,管理监控该第二操作系统中该第一SIM卡的当前状态;
1203,该虚拟资源共享控制系统根据该卡操作请求以及该第一SIM卡的当前状态,通过该调制解调器对该第一SIM卡进行卡操作,并将该卡操作的第一反馈结果发送给该第一操作系统和该第二操作系统。
1204,该第一操作系统根据该第一反馈结果,管理监控该第一操作系统中该第一SIM卡的当前状态。
1205,该第二操作系统根据该第一反馈结果,管理监控该第二操作系统中该第一SIM卡的当前状态。
本发明实施例中,在移动终端的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的多个SIM卡资源,并在某个前台运行的操作系统操作SIM卡资源时通知其它操作系统,操作完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统实时监控管理移动终端的多个SIM卡资源的使用状态,保证移动终端下多个SIM卡资源的使用状态一致性,从而实现多操作系统下移动终端 对多个SIM卡资源的协调管理。
进一步地,该调制解调器还用于为该移动终端的数据连接提供通道资源,如图13所示,该方法还可包括:
1206,该第一操作系统接收该移动终端的用户的数据业务请求,并将该数据业务请求通知该第二操作系统和该虚拟资源共享控制系统,其中,该数据业务请求需要建立新的数据连接。
1207,该第二操作系统根据该数据业务请求,管理监控该第二操作系统中通道资源的使用状态。
1208,该虚拟资源共享控制系统根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的第二反馈结果发送给该第一操作系统和该第二操作系统。
1209,该第一操作系统根据该第二反馈结果,管理监控该第一操作系统中通道资源的使用状态。
1210,该第二操作系统根据该第二反馈结果,管理监控该第二操作系统中通道资源的使用状态。
本发明实施例中,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统还能够实时监控管理移动终端的通道资源的使用状态,保证移动终端下通道资源的使用状态一致性,从而还能够实现多操作系统下移动终端对通道资源的协调管理。
本发明实施例的具体实现,可参考图6-图8的具体实施例中的方法,本发明实施例在此不再赘述。
图14是本发明实施例移动终端的资源管理方法流程图。本发明实施例的多系统移动终端,包括多个操作系统、虚拟资源共享控制系统和调制解调器。其中,该调制解调器用于为该移动终端的数据连接提供通道资源。该方法包括:
1401,该多个操作系统中第一操作系统接收该移动终端的用户的数据业务请求,并将该数据业务请求通知该多个操作系统中第二操作系统和该虚拟资源共享控制系统,其中,该数据业务请求需要建立新的数据连接。
其中,该第一操作系统为该多个操作系统中前台运行的一个操作系统, 该第二操作系统为该多个操作系统中该第一操作系统以外的一个或多个操作系统,或者说,该第二操作系统是该多个操作系统中除第一操作系统以外的其它所有操作系统。
1402,该第二操作系统根据该数据业务请求,管理监控该第二操作系统中通道资源的使用状态。
1403,该虚拟资源共享控制系统根据该数据业务请求,以及该调制解调器当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的反馈结果发送给该第一操作系统和该第二操作系统。
1404,该第一操作系统根据该反馈结果,管理监控该第一操作系统中通道资源的使用状态。
1405,该第二操作系统根据该反馈结果,管理监控该第二操作系统中通道资源的使用状态。
本发明实施例中,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端的各个操作系统能够实时监控管理移动终端的通道资源的使用状态,保证移动终端下通道资源的使用状态一致性,从而能够实现多操作系统下移动终端对通道资源的协调管理。
本发明实施例的具体实现,可参考图7-图8的具体实施例中的方法,本发明实施例在此不再赘述。
图15描述了本发明实施例提供的一种移动终端1500的结构,该移动终端1500包括:至少一个处理器1510,至少一个调制解调器1540或者其他用户接口1530,存储器1550,至少一个通信总线1520。通信总线1520用于实现这些组件之间的连接通信。该移动终端1500可选的包含用户接口1530,包括显示器(例如,触摸屏、LCD、CRT、全息成像(Holographic)或者投影(Projector)等),键盘或者点击设备(例如,鼠标,轨迹球(trackball),触感板或者触摸屏等)。本发明实施例中,调制解调器1540上部署着移动终端1500的多个SIM卡。
存储器1550可以包括只读存储器和随机存取存储器,并向处理器1510提供指令和数据。存储器1550的一部分还可以包括非易失性随机存取存储器(NVRAM)。
在一些实施方式中,存储器1550存储了如下的元素,可执行模块或者数据结构,或者他们的子集,或者他们的扩展集:
多个操作系统1551,包含各种系统程序,例如图1所示的框架层、核心库层、驱动层等,用于实现各种基础业务以及处理基于硬件的任务;
应用程序模块1552,包含各种应用程序,例如图1所示的桌面(launcher)、媒体播放器(Media Player)、浏览器(Browser)等,用于实现各种应用业务;
虚拟资源共享控制系统1553,包含虚拟资源共享控制接口,例如图1所示的核心库层的虚拟机等,用于实现操作系统与硬件层之间的访问控制接口。
在本发明实施例中,通过调用存储器1550存储的程序或指令,处理器1510用于:
在多个操作系统1551的第一操作系统中接收移动终端1500的用户对该多个SIM卡中第一SIM卡的卡操作请求,并将该卡操作请求通知该多个操作系统1551中的第二操作系统和虚拟资源共享控制系统1553,其中,该第一操作系统为该多个操作系统1551中前台运行的一个操作系统,该第二操作系统为该多个操作系统1551中该第一操作系统以外的一个或多个操作系统,或者说,该第二操作系统是该多个操作系统1551中除第一操作系统以外的其它所有操作系统;
在虚拟资源共享控制系统1553中根据该卡操作请求以及该第一SIM卡的当前状态,通过调制解调器1540对该第一SIM卡进行卡操作,并将该卡操作的第一反馈结果发送给该第一操作系统和该第二操作系统;
在该第一操作系统中根据该第一反馈结果,管理监控该第一操作系统中该第一SIM卡的当前状态;
在该第二操作系统中根据该卡操作请求或该第一反馈结果,管理监控该第二操作系统中该第一SIM卡的当前状态。
本发明实施例中,在移动终端1500的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的通道资源,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端1500的各个操作系统实时监控管理移动 终端1500的通道资源的使用状态,保证移动终端1500下通道资源的使用状态一致性,从而还能够实现多操作系统下移动终端1500对通道资源的协调管理。
可选地,该卡操作包括SIM卡启动操作、SIM卡激活操作、SIM卡去激活操作或SIM卡切换操作。
可选地,操作系统15510进一步可包括UI界面处理单元15511、上层逻辑处理单元15512和资源管理单元15513。此时,所述处理器1510具体用于:
在该第一操作系统的UI界面处理单元15511中接收该卡操作请求,将该卡操作请求通知该当前操作系统的上层逻辑处理单元15512;
在该第一操作系统的上层逻辑处理单元15512中将该卡操作请求通知该第一操作系统的资源管理单元15513;
在该第一操作系统的资源管理单元15513中根据该卡操作请求管理监控该第一操作系统中该第一SIM卡的当前状态,并通知虚拟资源共享控制系统1553,以便虚拟资源共享控制系统1553根据该卡操作请求进行相应的卡操作;
在该第一操作系统的上层逻辑处理单元15512中将该卡操作请求通知该第二操作系统的上层逻辑处理单元15512;
在该第二操作系统的上层逻辑处理单元15512中将该卡操作请求通知该第二操作系统的资源管理单元15513;
在该第二操作系统的资源管理单元15513中根据该卡操作请求管理监控该第二操作系统中该第一SIM卡的当前状态;
在该第一操作系统的资源管理单元15513中接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中该第一SIM卡的当前状态;
在该第二操作系统的资源管理单元15513中接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中该第一SIM卡的当前状态。
此外,调制解调器1540还用于为移动终端1500的数据连接提供通道资源,所述处理器1510还用于:
在该第一操作系统中接收移动终端1500的用户的数据业务请求,并将该数据业务请求通知该第二操作系统和虚拟资源共享控制系统1553,其中,该数据业务请求需要建立新的数据连接;
在虚拟资源共享控制系统1553中根据该数据业务请求,以及调制解调器1540当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的第二反馈结果发送给该第一操作系统和该第二操作系统;
在该第一操作系统中根据该第二反馈结果,管理监控该第一操作系统中通道资源的使用状态;
在该第二操作系统中根据该数据业务请求或该第二反馈结果,管理监控该第二操作系统中通道资源的使用状态。
本发明实施例中,在移动终端1500的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的通道资源,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端1500的各个操作系统实时监控管理移动终端1500的通道资源的使用状态,保证移动终端1500下通道资源的使用状态一致性,从而还能够实现多操作系统下移动终端1500对通道资源的协调管理。
更进一步地,当操作系统包括UI界面处理单元15511、上层逻辑处理单元15512和资源管理单元15513时,所述处理器1510具体用于:
在该第一操作系统的UI界面处理单元15511中接收该数据业务请求,将该数据业务请求通知该当前操作系统的上层逻辑处理单元15512;
在该第一操作系统的上层逻辑处理单元15512中将该数据业务请求通知该第一操作系统的资源管理单元15513;
在该第一操作系统的资源管理单元15513中根据该数据业务请求管理监控该第一操作系统中通道资源的使用状态,并通知虚拟资源共享控制系统1553,以便虚拟资源共享控制系统1553为该数据业务请求分配相应的通道资源以建立数据连接;
在该第一操作系统的上层逻辑处理单元15512中将该数据业务请求通知该第二操作系统的上层逻辑处理单元15512;
在该第二操作系统的上层逻辑处理单元15512中将该数据业务请求通知该第二操作系统的资源管理单元15513;
在该第二操作系统的资源管理单元15513中根据该数据业务请求管理监控该第二操作系统中通道资源的使用状态;
在该第一操作系统的资源管理单元15513中接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中通道资源的使用状态;
在该第二操作系统的资源管理单元15513中接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中通道资源的使用状态。
可选地,作为一个实施例,在用于根据该数据业务请求,以及调制解调器1540当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,所述处理器1510具体用于:在虚拟资源共享控制系统1553中,当调制解调器1540中不存在空闲的通道资源时,选择调制解调器1540中一个正在使用的通道资源,停止该正在使用的通道资源的第一数据连接,并为该数据业务请求建立第二数据连接。所述处理器1510还用于:在虚拟资源共享控制系统1553中,在该数据业务请求对应的数据业务完成之后,释放该第二数据连接,恢复该第一数据连接。
可选地,作为另一个实施例,在用于根据该数据业务请求,以及调制解调器1540当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,所述处理器1510具体用于:在虚拟资源共享控制系统1553中当调制解调器1540中存在空闲的通道资源,选择一个该空闲的通道资源为该业务请求建立第二数据连接。所述处理器1510还用于:在虚拟资源共享控制系统1553中,该业务请求对应的业务完成之后,释放该第二数据连接。
另外,移动终端1500还可实现图6-图8所示实施例及其扩展实施例的功能,本发明实施例在此不再赘述。
图16描述了本发明实施例提供的一种移动终端1600的结构,该移动终端1600包括:至少一个处理器1610,至少一个调制解调器1640或者其他用户接口1630,存储器1650,至少一个通信总线1620。通信总线1620用于实现这些组件之间的连接通信。该移动终端1600可选的包含用户接口1630,包括显示器(例如,触摸屏、LCD、CRT、全息成像(Holographic)或者投影(Projector)等),键盘或者点击设备(例如,鼠标,轨迹球(trackball),触感板或者触摸屏等)。本发明实施例中,调制解调器1640可用于为移动终端1600的数据连接提供通道资源。
存储器1650可以包括只读存储器和随机存取存储器,并向处理器1610提供指令和数据。存储器1650的一部分还可以包括非易失性随机存取存储器(NVRAM)。
在一些实施方式中,存储器1650存储了如下的元素,可执行模块或者数据结构,或者他们的子集,或者他们的扩展集:
多个操作系统1651,包含各种系统程序,例如图1所示的框架层、核心库层、驱动层等,用于实现各种基础业务以及处理基于硬件的任务;
应用程序模块1652,包含各种应用程序,例如图1所示的桌面(launcher)、媒体播放器(Media Player)、浏览器(Browser)等,用于实现各种应用业务;
虚拟资源共享控制系统1653,包含虚拟资源共享控制接口,例如图1所示的核心库层的虚拟机等,用于实现操作系统与硬件层之间的访问控制接口。
在本发明实施例中,通过调用存储器1650存储的程序或指令,处理器1610用于:
在多个操作系统1651的第一操作系统中接收移动终端1600的用户的数据业务请求,并将该数据业务请求通知第二操作系统和虚拟资源共享控制系统1653,其中,该数据业务请求需要建立新的数据连接,该第一操作系统为该多个操作系统1651中前台运行的一个操作系统,该第二操作系统为该多个操作系统1651中该第一操作系统以外的一个或多个操作系统,或者说,该第二操作系统是该多个操作系统1651中除第一操作系统以外的其它所有操作系统;
在虚拟资源共享控制系统1653中根据该数据业务请求,以及调制解调器1640当前的通道资源使用状态,为该数据业务请求建立数据连接,并将数据连接建立的第二反馈结果发送给该第一操作系统和该第二操作系统;
在该第一操作系统中根据该第二反馈结果,管理监控该第一操作系统中通道资源的使用状态;
在该第二操作系统中根据该数据业务请求或该第二反馈结果,管理监控该第二操作系统中通道资源的使用状态。
本发明实施例中,在移动终端1600的多个操作系统之外设置一个虚拟资源共享控制系统,用于协调管理各个操作系统对调制解调器中的通道资源,通过在某个前台运行的操作系统请求通道资源时通知其它操作系统,操作(包括分配通道资源和释放通道资源)完毕后通过虚拟资源共享控制系统通知所有操作系统,使得移动终端1600的各个操作系统实时监控管理移动 终端1600的通道资源的使用状态,保证移动终端1600下通道资源的使用状态一致性,从而能够实现多操作系统下移动终端1600对通道资源的协调管理。
进一步地,调制解调器1640还用于为移动终端1600的数据连接提供通道资源,所述处理器1610还用于:
可选地,操作系统16510进一步可包括UI界面处理单元16511、上层逻辑处理单元16512和资源管理单元16513。此时,所述处理器1610具体用于:
在该第一操作系统的UI界面处理单元16511中接收该数据业务请求,将该数据业务请求通知该当前操作系统的上层逻辑处理单元16512;
在该第一操作系统的上层逻辑处理单元16512中将该数据业务请求通知该第一操作系统的资源管理单元16513;
在该第一操作系统的资源管理单元16513中根据该数据业务请求管理监控该第一操作系统中通道资源的使用状态,并通知虚拟资源共享控制系统1653,以便虚拟资源共享控制系统1653为该数据业务请求分配相应的通道资源以建立数据连接;
在该第一操作系统的上层逻辑处理单元16512中将该数据业务请求通知该第二操作系统的上层逻辑处理单元16512;
在该第二操作系统的上层逻辑处理单元16512中将该数据业务请求通知该第二操作系统的资源管理单元16513;
在该第二操作系统的资源管理单元16513中根据该数据业务请求管理监控该第二操作系统中通道资源的使用状态;
在该第一操作系统的资源管理单元16513中接收该反馈信息,并根据该反馈信息管理监控该第一操作系统中通道资源的使用状态;
在该第二操作系统的资源管理单元16513中接收该反馈信息,并根据该反馈信息管理监控该第二操作系统中通道资源的使用状态。
可选地,作为一个实施例,在用于根据该数据业务请求,以及调制解调器1640当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,所述处理器1610具体用于:在虚拟资源共享控制系统1653中,当调制解调器1640中不存在空闲的通道资源时,选择调制解调器1640中一个正在使用的通道资源,停止该正在使用的通道资源的第一数据连接,并为该数据 业务请求建立第二数据连接。所述处理器1610还用于:在虚拟资源共享控制系统1653中,在该数据业务请求对应的数据业务完成之后,释放该第二数据连接,恢复该第一数据连接。
可选地,作为另一个实施例,在用于根据该数据业务请求,以及调制解调器1640当前的通道资源使用状态,为该数据业务请求建立数据连接的过程中,所述处理器1610具体用于:在虚拟资源共享控制系统1653中当调制解调器1640中存在空闲的通道资源,选择一个该空闲的通道资源为该业务请求建立第二数据连接。所述处理器1610还用于:在虚拟资源共享控制系统1653中,该业务请求对应的业务完成之后,释放该第二数据连接。
另外,移动终端1600还可实现图7-图8所示实施例及其扩展实施例的功能,本发明实施例在此不再赘述。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本发明的范围。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统、装置和方法,可以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,机械或其它的形式。
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。
所述功能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介质中。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介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,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。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应所述以权利要求的保护范围为准。

Claims (23)

  1. 一种移动终端,其特征在于,所述移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,其中,
    所述调制解调器上部署着多个客户识别模块SIM卡;
    所述多个操作系统中的第一操作系统用于接收所述移动终端的用户对所述多个SIM卡中第一SIM卡的卡操作请求,并将所述卡操作请求通知所述多个操作系统中的第二操作系统和所述虚拟资源共享控制系统,其中,所述第一操作系统为所述多个操作系统中前台运行的一个操作系统,所述第二操作系统为所述多个操作系统中所述第一操作系统以外的一个或多个操作系统;
    所述虚拟资源共享控制系统用于为所述多个操作系统协调管理所述多个SIM卡的卡操作,具体用于根据所述卡操作请求以及所述第一SIM卡的当前状态,通过所述调制解调器对所述第一SIM卡进行卡操作,并将所述卡操作的第一反馈结果发送给所述第一操作系统和所述第二操作系统;
    所述第一操作系统还用于根据所述第一反馈结果,管理监控所述第一操作系统中所述第一SIM卡的当前状态;
    所述第二操作系统用于根据所述卡操作请求或所述第一反馈结果,管理监控所述第二操作系统中所述第一SIM卡的当前状态。
  2. 如权利要求1所述的移动终端,其特征在于,所述第一操作系统和所述第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,
    所述第一操作系统的UI界面处理单元用于接收所述卡操作请求,将所述卡操作请求通知所述当前操作系统的上层逻辑处理单元;
    所述第一操作系统的上层逻辑处理单元用于将所述卡操作请求通知所述第一操作系统的资源管理单元;
    所述第一操作系统的资源管理单元用于根据所述卡操作请求管理监控所述第一操作系统中所述第一SIM卡的当前状态,并通知所述虚拟资源共享控制系统,以便所述虚拟资源共享控制系统根据所述卡操作请求进行相应的卡操作;
    所述第一操作系统的上层逻辑处理单元还用于将所述卡操作请求通知所述第二操作系统的上层逻辑处理单元;
    所述第二操作系统的上层逻辑处理单元用于将所述卡操作请求通知所述第二操作系统的资源管理单元;
    所述第二操作系统的资源管理单元用于根据所述卡操作请求管理监控所述第二操作系统中所述第一SIM卡的当前状态;
    所述第一操作系统的资源管理单元还用于接收所述反馈信息,并根据所述反馈信息管理监控所述第一操作系统中所述第一SIM卡的当前状态;
    所述第二操作系统的资源管理单元还用于接收所述反馈信息,并根据所述反馈信息管理监控所述第二操作系统中所述第一SIM卡的当前状态。
  3. 如权利要求1或2所述的移动终端,其特征在于,所述卡操作包括SIM卡启动操作、SIM卡激活操作、SIM卡去激活操作或SIM卡切换操作。
  4. 如权利要求1所述的移动终端,其特征在于,
    所述调制解调器还用于为所述移动终端的数据连接提供通道资源;
    所述第一操作系统还用于接收所述移动终端的用户的数据业务请求,并将所述数据业务请求通知所述第二操作系统和所述虚拟资源共享控制系统,其中,所述数据业务请求需要建立新的数据连接;
    所述虚拟资源共享控制系统还用于为所述多个操作系统协调管理所述通道资源的使用,具体用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接,并将数据连接建立的第二反馈结果发送给所述第一操作系统和所述第二操作系统;
    所述第一操作系统还用于根据所述第二反馈结果,管理监控所述第一操作系统中通道资源的使用状态;
    所述第二操作系统还用于根据所述数据业务请求或所述第二反馈结果,管理监控所述第二操作系统中通道资源的使用状态。
  5. 如权利要求4所述的移动终端,其特征在于,
    所述第一操作系统和所述第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,
    所述第一操作系统的UI界面处理单元用于接收所述数据业务请求,将所述数据业务请求通知所述当前操作系统的上层逻辑处理单元;
    所述第一操作系统的上层逻辑处理单元用于将所述数据业务请求通知所述第一操作系统的资源管理单元;
    所述第一操作系统的资源管理单元用于根据所述数据业务请求管理监控所述第一操作系统中通道资源的使用状态,并通知所述虚拟资源共享控制系统,以便所述虚拟资源共享控制系统为所述数据业务请求分配相应的通道资源以建立数据连接;
    所述第一操作系统的上层逻辑处理单元还用于将所述数据业务请求通知所述第二操作系统的上层逻辑处理单元;
    所述第二操作系统的上层逻辑处理单元用于将所述数据业务请求通知所述第二操作系统的资源管理单元;
    所述第二操作系统的资源管理单元用于根据所述数据业务请求管理监控所述第二操作系统中通道资源的使用状态;
    所述第一操作系统的资源管理单元还用于接收所述反馈信息,并根据所述反馈信息管理监控所述第一操作系统中通道资源的使用状态;
    所述第二操作系统的资源管理单元还用于接收所述反馈信息,并根据所述反馈信息管理监控所述第二操作系统中通道资源的使用状态。
  6. 如权利要求4或5所述的移动终端,其特征在于,在用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接的过程中,所述虚拟资源共享控制系统具体用于当所述调制解调器中不存在空闲的通道资源时,选择所述调制解调器中一个正在使用的通道资源,停止所述正在使用的通道资源的第一数据连接,并为所述数据业务请求建立第二数据连接;
    所述虚拟资源共享控制系统还用于在所述数据业务请求对应的数据业务完成之后,释放所述第二数据连接,恢复所述第一数据连接。
  7. 如权利要求4或5所述的移动终端,其特征在于,在用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接的过程中,所述虚拟资源共享控制系统具体用于当所述调制解调器中存在空闲的通道资源,选择一个所述空闲的通道资源为所述业务请求建立第二数据连接;
    所述虚拟资源共享控制系统还用于在所述业务请求对应的业务完成之 后,释放所述第二数据连接。
  8. 一种移动终端,其特征在于,所述移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,其中,
    所述调制解调器用于为所述移动终端的数据连接提供通道资源;
    所述多个操作系统中第一操作系统用于接收所述移动终端的用户的数据业务请求,并将所述数据业务请求通知所述多个操作系统中第二操作系统和所述虚拟资源共享控制系统,其中,所述数据业务请求需要建立新的数据连接,其中,所述第一操作系统为所述多个操作系统中前台运行的一个操作系统,所述第二操作系统为所述多个操作系统中所述第一操作系统以外的一个或多个操作系统;
    所述虚拟资源共享控制系统用于为所述多个操作系统协调管理所述通道资源的使用,具体用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接,并将数据连接建立的反馈结果发送给所述第一操作系统和所述第二操作系统;
    所述第一操作系统还用于根据所述反馈结果,管理监控所述第一操作系统中通道资源的使用状态;
    所述第二操作系统还用于根据所述数据业务请求或所述反馈结果,管理监控所述第二操作系统中通道资源的使用状态。
  9. 如权利要求8所述的移动终端,其特征在于,
    所述第一操作系统和所述第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,
    所述第一操作系统的UI界面处理单元用于接收所述数据业务请求,将所述数据业务请求通知所述当前操作系统的上层逻辑处理单元;
    所述第一操作系统的上层逻辑处理单元用于将所述数据业务请求通知所述第一操作系统的资源管理单元;
    所述第一操作系统的资源管理单元用于根据所述数据业务请求管理监控所述第一操作系统中通道资源的使用状态,并通知所述虚拟资源共享控制系统,以便所述虚拟资源共享控制系统为所述数据业务请求分配相应的通道资源以建立数据连接;
    所述第一操作系统的上层逻辑处理单元还用于将所述数据业务请求通 知所述第二操作系统的上层逻辑处理单元;
    所述第二操作系统的上层逻辑处理单元用于将所述数据业务请求通知所述第二操作系统的资源管理单元;
    所述第二操作系统的资源管理单元用于根据所述数据业务请求管理监控所述第二操作系统中通道资源的使用状态;
    所述第一操作系统的资源管理单元还用于接收所述反馈信息,并根据所述反馈信息管理监控所述第一操作系统中通道资源的使用状态;
    所述第二操作系统的资源管理单元还用于接收所述反馈信息,并根据所述反馈信息管理监控所述第二操作系统中通道资源的使用状态。
  10. 如权利要求8或9所述的移动终端,其特征在于,在用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接的过程中,所述虚拟资源共享控制系统具体用于当所述调制解调器中不存在空闲的通道资源时,选择所述调制解调器中一个正在使用的通道资源,停止所述正在使用的通道资源的第一数据连接,并为所述数据业务请求建立第二数据连接;
    所述虚拟资源共享控制系统还用于在所述数据业务请求对应的数据业务完成之后,释放所述第二数据连接,恢复所述第一数据连接。
  11. 如权利要求8或9所述的移动终端,其特征在于,在用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接的过程中,所述虚拟资源共享控制系统具体用于当所述调制解调器中存在空闲的通道资源,选择一个所述空闲的通道资源为所述业务请求建立第二数据连接;
    所述虚拟资源共享控制系统还用于在所述业务请求对应的业务完成之后,释放所述第二数据连接。
  12. 一种移动终端的资源管理方法,其特征在于,所述移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,所述调制解调器上部署着多个客户识别模块SIM卡,所述方法包括:
    所述多个操作系统中第一操作系统接收所述移动终端的用户对所述多个SIM卡中第一SIM卡的卡操作请求,并将所述卡操作请求通知所述多个操作系统中第二操作系统和所述虚拟资源共享控制系统,其中,所述第一操 作系统为所述多个操作系统中前台运行的一个操作系统,所述第二操作系统为所述多个操作系统中所述第一操作系统以外的一个或多个操作系统;
    所述第二操作系统根据所述卡操作请求,管理监控所述第二操作系统中所述第一SIM卡的当前状态;
    所述虚拟资源共享控制系统根据所述卡操作请求以及所述第一SIM卡的当前状态,通过所述调制解调器对所述第一SIM卡进行卡操作,并将所述卡操作的第一反馈结果发送给所述第一操作系统和所述第二操作系统;
    所述第一操作系统根据所述第一反馈结果,管理监控所述第一操作系统中所述第一SIM卡的当前状态;
    所述第二操作系统根据所述第一反馈结果,管理监控所述第二操作系统中所述第一SIM卡的当前状态。
  13. 一种移动终端的资源管理方法,其特征在于,所述移动终端包括虚拟资源共享控制系统,调制解调器和多个操作系统,所述调制解调器用于为所述移动终端的数据连接提供通道资源,所述方法包括:
    所述多个操作系统中第一操作系统接收所述移动终端的用户的数据业务请求,并将所述数据业务请求通知所述多个操作系统中第二操作系统和所述虚拟资源共享控制系统,其中,所述数据业务请求需要建立新的数据连接,其中,所述第一操作系统为所述多个操作系统中前台运行的一个操作系统,所述第二操作系统为所述多个操作系统中所述第一操作系统以外的一个或多个操作系统;
    所述第二操作系统根据所述数据业务请求,管理监控所述第二操作系统中通道资源的使用状态;
    所述虚拟资源共享控制系统根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接,并将数据连接建立的反馈结果发送给所述第一操作系统和所述第二操作系统;
    所述第一操作系统根据所述反馈结果,管理监控所述第一操作系统中通道资源的使用状态;
    所述第二操作系统根据所述反馈结果,管理监控所述第二操作系统中通道资源的使用状态。
  14. 一种移动终端,其特征在于,所述移动终端包括至少一个处理器, 至少一个调制解调器和存储器,其中,
    所述调制解调器部署着所述移动终端的多个客户识别模块SIM卡;
    所述存储器存储着多个操作系统、应用程序模块和虚拟资源共享控制系统;
    所述处理器用于执行以下步骤:
    在所述多个操作系统中的第一操作系统中接收所述移动终端的用户对所述多个SIM卡中第一SIM卡的卡操作请求,并将所述卡操作请求通知所述多个操作系统中的第二操作系统和所述虚拟资源共享控制系统,其中,所述第一操作系统为所述多个操作系统中前台运行的一个操作系统,所述第二操作系统为所述多个操作系统中所述第一操作系统以外的一个或多个操作系统;
    在所述虚拟资源共享控制系统中根据所述卡操作请求以及所述第一SIM卡的当前状态,通过所述调制解调器对所述第一SIM卡进行卡操作,并将所述卡操作的第一反馈结果发送给所述第一操作系统和所述第二操作系统;
    在所述第一操作系统中根据所述第一反馈结果,管理监控所述第一操作系统中所述第一SIM卡的当前状态;
    在所述第二操作系统中根据所述卡操作请求或所述第一反馈结果,管理监控所述第二操作系统中所述第一SIM卡的当前状态。
  15. 如权利要求14所述的移动终端,其特征在于,所述第一操作系统和所述第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,所述处理器具体用于:
    在所述第一操作系统的UI界面处理单元中接收所述卡操作请求,将所述卡操作请求通知所述当前操作系统的上层逻辑处理单元;
    在所述第一操作系统的上层逻辑处理单元中将所述卡操作请求通知所述第一操作系统的资源管理单元;
    在所述第一操作系统的资源管理单元中根据所述卡操作请求管理监控所述第一操作系统中所述第一SIM卡的当前状态,并通知所述虚拟资源共享控制系统,以便所述虚拟资源共享控制系统根据所述卡操作请求进行相应的卡操作;
    在所述第一操作系统的上层逻辑处理单元中将所述卡操作请求通知所述第二操作系统的上层逻辑处理单元;
    在所述第二操作系统的上层逻辑处理单元中将所述卡操作请求通知所述第二操作系统的资源管理单元;
    在所述第二操作系统的资源管理单元中根据所述卡操作请求管理监控所述第二操作系统中所述第一SIM卡的当前状态;
    在所述第一操作系统的资源管理单元中接收所述反馈信息,并根据所述反馈信息管理监控所述第一操作系统中所述第一SIM卡的当前状态;
    在所述第二操作系统的资源管理单元中接收所述反馈信息,并根据所述反馈信息管理监控所述第二操作系统中所述第一SIM卡的当前状态。
  16. 如权利要求14或15所述的移动终端,其特征在于,所述卡操作包括SIM卡启动操作、SIM卡激活操作、SIM卡去激活操作或SIM卡切换操作。
  17. 如权利要求14所述的移动终端,其特征在于,
    所述调制解调器还用于为所述移动终端的数据连接提供通道资源;
    所述处理器还用于:
    在所述第一操作系统中接收所述移动终端的用户的数据业务请求,并将所述数据业务请求通知所述第二操作系统和所述虚拟资源共享控制系统,其中,所述数据业务请求需要建立新的数据连接;
    在所述虚拟资源共享控制系统中为所述多个操作系统协调管理所述通道资源的使用,具体中根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接,并将数据连接建立的第二反馈结果发送给所述第一操作系统和所述第二操作系统;
    在所述第一操作系统中根据所述第二反馈结果,管理监控所述第一操作系统中通道资源的使用状态;
    在所述第二操作系统中根据所述数据业务请求或所述第二反馈结果,管理监控所述第二操作系统中通道资源的使用状态。
  18. 如权利要求17所述的移动终端,其特征在于,
    所述第一操作系统和所述第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,
    在所述第一操作系统的UI界面处理单元中接收所述数据业务请求,将所述数据业务请求通知所述当前操作系统的上层逻辑处理单元;
    在所述第一操作系统的上层逻辑处理单元中将所述数据业务请求通知所述第一操作系统的资源管理单元;
    在所述第一操作系统的资源管理单元中根据所述数据业务请求管理监控所述第一操作系统中通道资源的使用状态,并通知所述虚拟资源共享控制系统,以便所述虚拟资源共享控制系统为所述数据业务请求分配相应的通道资源以建立数据连接;
    在所述第一操作系统的上层逻辑处理单元中将所述数据业务请求通知所述第二操作系统的上层逻辑处理单元;
    在所述第二操作系统的上层逻辑处理单元中将所述数据业务请求通知所述第二操作系统的资源管理单元;
    在所述第二操作系统的资源管理单元中根据所述数据业务请求管理监控所述第二操作系统中通道资源的使用状态;
    在所述第一操作系统的资源管理单元中接收所述反馈信息,并根据所述反馈信息管理监控所述第一操作系统中通道资源的使用状态;
    在所述第二操作系统的资源管理单元中接收所述反馈信息,并根据所述反馈信息管理监控所述第二操作系统中通道资源的使用状态。
  19. 如权利要求17或18所述的移动终端,其特征在于,
    在用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接的过程中,所述处理器具体用于:在所述虚拟资源共享控制系统中,当所述调制解调器中不存在空闲的通道资源时,选择所述调制解调器中一个正在使用的通道资源,停止所述正在使用的通道资源的第一数据连接,并为所述数据业务请求建立第二数据连接;
    所述处理器还用于:在所述虚拟资源共享控制系统中,当所述业务请求对应的业务完成之后,释放所述第二数据连接。
  20. 一种移动终端,其特征在于,所述移动终端包括至少一个处理器,至少一个调制解调器和存储器,其中,
    所述调制解调器用于为所述移动终端的数据连接提供通道资源;
    所述存储器存储着多个操作系统、应用程序模块和虚拟资源共享控制系统;
    所述处理器用于执行以下步骤:
    在所述多个操作系统的第一操作系统中接收所述移动终端的用户的数据业务请求,并将所述数据业务请求通知所述多个操作系统中第二操作系统和所述虚拟资源共享控制系统,其中,所述数据业务请求需要建立新的数据连接,其中,所述第一操作系统为所述多个操作系统中前台运行的一个操作系统,所述第二操作系统为所述多个操作系统中所述第一操作系统以外的一个或多个操作系统;
    在所述虚拟资源共享控制系统中为所述多个操作系统协调管理所述通道资源的使用,具体用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接,并将数据连接建立的反馈结果发送给所述第一操作系统和所述第二操作系统;
    在所述第一操作系统中根据所述反馈结果,管理监控所述第一操作系统中通道资源的使用状态;
    在所述第二操作系统中根据所述数据业务请求或所述反馈结果,管理监控所述第二操作系统中通道资源的使用状态。
  21. 如权利要求20所述的移动终端,其特征在于,
    所述第一操作系统和所述第二操作系统都包括用户接口UI界面处理单元、上层逻辑处理单元和资源管理单元,其中,所述处理器具体用于:
    在所述第一操作系统的UI界面处理单元中接收所述数据业务请求,将所述数据业务请求通知所述当前操作系统的上层逻辑处理单元;
    在所述第一操作系统的上层逻辑处理单元中将所述数据业务请求通知所述第一操作系统的资源管理单元;
    在所述第一操作系统的资源管理单元中根据所述数据业务请求管理监控所述第一操作系统中通道资源的使用状态,并通知所述虚拟资源共享控制系统,以便所述虚拟资源共享控制系统为所述数据业务请求分配相应的通道资源以建立数据连接;
    在所述第一操作系统的上层逻辑处理单元中将所述数据业务请求通知所述第二操作系统的上层逻辑处理单元;
    在所述第二操作系统的上层逻辑处理单元中将所述数据业务请求通知所述第二操作系统的资源管理单元;
    在所述第二操作系统的资源管理单元中根据所述数据业务请求管理监控所述第二操作系统中通道资源的使用状态;
    在所述第一操作系统的资源管理单元中接收所述反馈信息,并根据所述反馈信息管理监控所述第一操作系统中通道资源的使用状态;
    在所述第二操作系统的资源管理单元中接收所述反馈信息,并根据所述反馈信息管理监控所述第二操作系统中通道资源的使用状态。
  22. 如权利要求20或21所述的移动终端,其特征在于,在用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接的过程中,所述处理器具体用于:在所述虚拟资源共享控制系统中,当所述调制解调器中不存在空闲的通道资源时,选择所述调制解调器中一个正在使用的通道资源,停止所述正在使用的通道资源的第一数据连接,并为所述数据业务请求建立第二数据连接;
    所述处理器还用于:在所述虚拟资源共享控制系统中,当所述数据业务请求对应的数据业务完成之后,释放所述第二数据连接,恢复所述第一数据连接。
  23. 如权利要求20或21所述的移动终端,其特征在于,在用于根据所述数据业务请求,以及所述调制解调器当前的通道资源使用状态,为所述数据业务请求建立数据连接的过程中,所述处理器具体用于:在所述虚拟资源共享控制系统中,当所述调制解调器中存在空闲的通道资源,选择一个所述空闲的通道资源为所述业务请求建立第二数据连接;
    所述处理器还用于:在所述虚拟资源共享控制系统中,当所述业务请求对应的业务完成之后,释放所述第二数据连接。
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