WO2016165166A1 - 多系统的系统切换的方法及其装置 - Google Patents
多系统的系统切换的方法及其装置 Download PDFInfo
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- WO2016165166A1 WO2016165166A1 PCT/CN2015/078023 CN2015078023W WO2016165166A1 WO 2016165166 A1 WO2016165166 A1 WO 2016165166A1 CN 2015078023 W CN2015078023 W CN 2015078023W WO 2016165166 A1 WO2016165166 A1 WO 2016165166A1
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/46—Multiprogramming arrangements
- G06F9/48—Program initiating; Program switching, e.g. by interrupt
Definitions
- the present invention relates to the field of communications technologies, and in particular, to a multi-system system switching method and apparatus therefor.
- smart terminals are more and more widely used, and smart terminals have an OS (Operating System) and an AP (application). And a smart terminal runs two independent systems (OS1 and OS2) or more independent systems at the same time.
- OS1 and OS2 are two independent systems or more independent systems at the same time.
- the user can control the system to switch between OS1 and OS2.
- FIG. 1A the manner in which OS1 and OS2 are triggered to switch to each other is: by clicking a switching icon on the main interface launcher (the switching system icon in FIG. 1A), the system will switch from OS1 to OS2 (or from OS2 to OS1).
- the OS is followed by a number representing an operating system.
- OS1 and OS2 are two independent operating systems that can communicate with each other, but may differ in function and security.
- the operation of the smart machine is simple.
- the Android system is widely used, and there are a Menu button, a Home button and a Back button, as shown in FIG. 1B.
- the sensor obtains the physical signal and hands the physical signal to the driver layer.
- the driver layer encapsulates the physical signals and delivers them to the system layer.
- the system layer then encapsulates the information and transmits it to the AP.
- Layer the AP makes corresponding actions according to the message transmitted from the system layer, calls the system interface, and the system interface calls the driver to drive the control hardware.
- the corresponding content is displayed on the screen again.
- the operation process is shown in Figure 1C.
- an object of the present invention is to provide a multi-system system switching method and apparatus thereof, which improves the convenience of system switching of multiple systems.
- the present invention provides a multi-system system switching method, including:
- a detecting step detecting an operation of triggering a time interval of at least two preset buttons disposed on the surface of the terminal within a preset time threshold;
- Switching step switching the terminal from the currently operating first operating system to the second operating system.
- the detecting step comprises:
- the switching step includes:
- the method in the step of detecting at least two operation signals that trigger at least two preset buttons disposed on the surface of the terminal, detecting that at least two preset buttons disposed on the surface of the terminal are sequentially triggered At least two operational signals.
- the switching step further includes:
- the at least one message for switching the operating system includes: an operation instruction for switching the terminal from the currently running first operating system to the second operating system.
- the preset button is a menu button, a home button, and a return button that are disposed on the surface of the terminal.
- the present invention also provides a multi-system system switching apparatus, including:
- a detecting module configured to detect an operation of triggering a time interval of at least two preset buttons disposed on the surface of the device within a preset time threshold
- a switching module configured to switch the device from a currently operating first operating system to a second operating system.
- the detection module comprises:
- a first detecting submodule configured to detect at least two operation signals that trigger at least two preset buttons disposed on a surface of the device
- a determining sub-module configured to determine whether a time interval at which the at least two operation signals occur is within the time threshold, and if yes, encapsulating the at least two operation signals into at least one message for switching an operating system
- the switching module includes:
- a first switching submodule configured to switch the device from the currently running first operating system to the second operating system according to the at least one message of the switching operating system.
- the first detecting sub-module detects at least two operating signals that sequentially trigger at least two preset keys provided on the surface of the device.
- the switching module further includes:
- a second switching submodule configured to switch an application interface currently displayed on the first operating system of the device to the second operating system
- the at least one message for switching the operating system includes: an operation instruction for switching the terminal from the currently running first operating system to the second operating system.
- the preset button is a menu button, a home button, and a return button disposed on a surface of the device.
- the present invention improves the switching method of multiple systems. If an operation of triggering a time interval of at least two preset buttons disposed on the surface of the terminal is detected within a preset time threshold, the terminal is operated by the current An operating system switches to the second operating system. This improves the convenience of system switching in multiple systems.
- the method for triggering the system switching is changed to the Menu button, the Home button and the Back button at the bottom of the sliding mobile phone, and the original system switching operation logic is changed, so that the user does not need to exit the AP when switching the system, and can switch anytime and anywhere.
- the system greatly enhances the user experience.
- FIG. 1A is a schematic diagram of a switching interface of a smart terminal of a dual system in the prior art
- 1B is a schematic diagram of operation buttons of a smart terminal in the prior art
- FIG. 1C is a schematic diagram of operation of an inductive button command of a smart terminal in the prior art
- FIG. 2 is a schematic structural diagram of an apparatus for system switching of multiple systems according to an embodiment of the present invention
- FIG. 3 is a schematic structural diagram of an apparatus for system switching of multiple systems according to an embodiment of the present invention.
- FIG. 4 is a flowchart of a method for system switching of multiple systems according to an embodiment of the present invention.
- FIG. 5A is a schematic diagram of operation of an inductive button of a system switching of multiple systems according to an embodiment of the present invention
- FIG. 5B is a schematic diagram of operation of system switching of multiple systems provided by the implementation of the present invention.
- a device 100 for multi-system system switching which includes:
- the detecting module 10 is configured to detect an operation of triggering a time interval of at least two preset buttons disposed on the surface of the device within a preset time threshold;
- the switching module 20 is configured to switch the apparatus 100 from a currently operating first operating system to a second operating system.
- the multi-system system switching device 100 is in a multi-system terminal.
- the detecting module 10 detects an operation that triggers a time interval of at least two preset keys disposed on the surface of the device 100 within a preset time threshold; the switching module 20 then sets the device 100 from the first currently running The operating system switches to the second operating system. Since it is a triggering action for detecting a user's button on the surface of the device 100, there is no need to exit the application interface currently being displayed, thereby eliminating the need to exit the running AP and enter the launcher master when the user wants to switch from OS1 to OS2. Interface, then click the toggle icon. This makes operation easy and enhances the user experience.
- the triggering actions include, but are not limited to, pressing, swiping, touching, and the like.
- the detecting module 10 includes:
- the first detecting sub-module 11 is disposed on the sensor layer of the device 100 for detecting at least two operation signals that trigger at least two preset buttons disposed on the surface of the device 100;
- the determining sub-module 12 is disposed in the driving layer of the device 100, and is configured to determine whether a time interval at which the at least two operation signals occur is within the time threshold, and if yes, the at least two operations
- the signal is encapsulated into at least one message that switches the operating system;
- the switching module 20 includes:
- the first switching sub-module 21 is disposed at a system layer of the apparatus 100, and is configured to switch the apparatus 100 from the currently operating first operating system to the second operation according to the at least one message of the switching operating system. system.
- the first detecting sub-module 11 disposed on the sensor layer of the device 100 detects at least two operation signals that trigger at least two preset buttons disposed on the surface of the device 100; and transmits the operation signals a judging sub-module 12 disposed on the driving layer of the device 100 determines whether a time interval at which the at least two operation signals occur is within the time threshold, and if so, encapsulates the at least two operation signals At least one message to switch the operating system.
- the at least one message for switching the operating system includes: an operation instruction for switching the terminal from the currently running first operating system to the second operating system.
- the time threshold can be a minimum value, and is set according to multiple trials or empirical values to distinguish whether the user triggers the button to switch the system.
- the first switching sub-module 21 disposed at the system layer of the device 100 switches the device 100 from the currently operating first operating system to the second operating system according to the at least one message of the switching operating system.
- the first detecting sub-module 11 detects at least two operation signals that sequentially trigger at least two preset buttons disposed on the surface of the device 100. That is, in order to switch the system, the trigger buttons need to be in a predetermined order, and the system is switched only when it is detected that the user triggers the corresponding button in a predetermined order and the time interval is within a preset time threshold.
- the switching module 20 further includes: a second switching sub-module 22, disposed at a system layer of the device 100, switching an application interface currently displayed on the first operating system of the device 100 to the second Displayed on the operating system; that is, the application interface currently displayed on the first operating system of the device 100 is also switched to display on the second operating system; thereby, the user can continue the use operation of the current application without reopening the related application.
- a second switching sub-module 22 disposed at a system layer of the device 100, switching an application interface currently displayed on the first operating system of the device 100 to the second Displayed on the operating system; that is, the application interface currently displayed on the first operating system of the device 100 is also switched to display on the second operating system; thereby, the user can continue the use operation of the current application without reopening the related application.
- a second switching sub-module 22 disposed at a system layer of the device 100, switching an application interface currently displayed on the first operating system of the device 100 to the second Displayed on the operating system;
- the device 100 can be applied to a communication terminal such as a mobile phone, a PDA (Personal Digital Assistant), a tablet computer, or the like.
- the preset button is a menu button, a home button, and a return button that are disposed on the surface of the device 100. Clicking the Menu button, the Home button, and the Back button in sequence can be equivalent to sliding from the Menu button to the Back button, as shown in Figure 5. Show. This gives the user the feeling that the system switches from OS1 to OS2 by swiping the bottom of the phone from left to right. The user experience has improved a lot. When sliding from left to right, the system switches from OS1 to OS2. For the same reason, it can be configured to switch from OS2 to OS1 when sliding from right to left.
- a method for system switching of multiple systems including:
- step S401 an operation of triggering a time interval of triggering at least two preset buttons disposed on the surface of the terminal within a preset time threshold is detected; the step is a detecting step, and is implemented by the detecting module 10;
- step S402 the terminal is switched from the currently operating first operating system to the second operating system.
- This step is a switching step by the switching module 20.
- the method provided can simplify the operation of the user switching system so that the user can freely switch the system without exiting the current application. Specifically, after detecting that the time interval in which the user triggers at least two preset buttons set on the surface of the terminal is within a preset time threshold, the terminal is switched from the currently operating first operating system to the second operating system.
- the preset button is a menu button, a home button, and a return button that are disposed on the terminal. Of course, it can be other buttons, such as a volume button or a power button. Since these buttons are set on the surface of the terminal, the user can perform preset operations conveniently and quickly, switch the system, and do not need to exit the currently running application interface.
- the step S401 includes:
- the switching step includes:
- the first detecting sub-module 11 detects at least two operation signals that trigger at least two preset buttons disposed on the surface of the terminal; and then the determining sub-module 12 determines that the at least two operation signals occur. Whether the time interval is within the time threshold, if yes, the at least two operation signals are encapsulated into at least one message for switching the operating system; the content of the message includes: switching the terminal by the currently operating first operating system Operation instructions to the second operating system.
- First switching submodule After receiving the message, the block 21 switches the terminal from the currently operating first operating system to the second operating system.
- the first detecting sub-module 11 detects that at least two preset buttons are triggered in sequence.
- Two operating signals That is, in order to switch the system, the trigger button needs to be in a predetermined order, and only when it is detected that the user triggers the corresponding button in a predetermined order, and the time interval is within a preset time threshold, the system is switched, thereby Prevent user misuse.
- a general terminal such as a mobile phone, is usually provided with a Menu button, a Home button, and a Back button. When the buttons are sequentially pressed and the interval time is within a preset time threshold, the system of the terminal is switched.
- step 402 further includes: the second switching sub-module 22 switches the application interface currently displayed on the first operating system of the terminal to the second operating system for display; thereby the user can Continue to perform the current operation normally without interruption.
- the user sequentially clicks the Menu button, the Home button, and the Back button, and the driver layer continuously obtains three messages, and the time interval between each two button messages is recorded as Time_X. .
- the message, this new message contains: Requires the system to switch from OS1 to OS2. This new message is recorded as message A.
- the system layer obtains the message A, the system switching is directly performed at the system layer. This process is shown in FIG. 5A.
- the present invention improves the switching method of multiple systems by detecting an operation of triggering a time interval of at least two preset buttons disposed on a surface of the terminal within a preset time threshold; The currently running first operating system switches to the second operating system.
- This improves the convenience of system switching in multiple systems.
- the method of triggering the system switching is changed to the Menu button, the Home button and the Back button at the bottom of the sliding mobile phone, and the original system switching operation logic is changed, so that the user cuts You do not need to quit the AP when you change the system, you can switch the system anytime, anywhere, greatly improving the user experience.
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Abstract
本发明适用于通信技术领域,提供了一种多系统的系统切换的方法及其装置,所述方法包括:检测步骤:检测触发至少两个设置于终端表面的预设的按键的时间间隔在预设的时间阈值内的操作;切换步骤:将所述终端由当前运行的第一操作系统切换到第二操作系统。借此,本发明提高了多系统的系统切换的便捷性。
Description
本申请要求于2015年04月15日提交中国专利局,申请号为201510177951.0、发明名称为“多系统的系统切换的方法及其装置”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。
本发明涉及通信技术领域,尤其涉及一种多系统的系统切换的方法及其装置。
目前,智能终端的应用越来越广泛,智能终端都具有OS(Operating System,操作系统)和AP(application,应用程序)。而在一台智能终端同时运行2个独立的系统(OS1和OS2)或者更多的独立系统。用户可以控制系统在OS1和OS2之间相互切换。如图1A所示触发OS1和OS2相互切换的方式是:点击主界面launcher上的一个切换图标(图1A中切换系统图标),系统就会从OS1切换到OS2(或者从OS2切换到OS1)。OS后面带数字代表一个操作系统,如下文提到的OS1和OS2是2个独立的操作系统,可以互相通信,但在功能、安全性等方面可有不同。
智能机的操作简便,例如在智能机中,Android系统广泛的被应用,都会有Menu(菜单)键、Home(主页)键和Back(返回)键,如图1B所示。当用户点击其中的一个键,首先,传感器会获得物理信号,把物理信号交给驱动层,驱动层对这些物理信号进行消息封装,交给系统层,系统层再对信息进行封装,传递给AP层;然后,AP根据系统层传上来的消息,作出相应的动作,调用系统接口,系统接口调用驱动,驱动控制硬件。最后,相应的内容再显示在屏幕上。操作过程如图1C所示。
但是,由于现有方案把控制系统切换的图标放置在launcher主界面上,当用户要从OS1切换到OS2时,必须退出正在运行的AP,进入launcher主界面,然后点击切换图标。这样的操作逻辑非常繁琐。而且用户必须退出当前正在运行的AP,用户体验非常不好。
综上可知,现有技术的多系统的系统切换技术在实际使用上显然存在不便
与缺陷,所以有必要加以改进。
发明内容
针对上述的缺陷,本发明的目的在于提供一种多系统的系统切换的方法及其装置,提高多系统的系统切换的便捷性。
为了实现上述目的,本发明提供一种多系统的系统切换的方法,包括:
检测步骤:检测触发至少两个设置于终端表面的预设的按键的时间间隔在预设的时间阈值内的操作;
切换步骤:将所述终端由当前运行的第一操作系统切换到第二操作系统。
根据所述的方法,所述检测步骤包括:
检测触发至少两个设置于所述终端表面的预设按键的至少两个操作信号;
判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作信号封装成至少一个切换操作系统的消息;
所述切换步骤包括:
根据所述至少一个切换操作系统的消息,将所述终端由当前运行的所述第一操作系统切换到第二操作系统。
根据所述的方法,在所述检测触发至少两个设置于所述终端表面的预设按键的至少两个操作信号的步骤中,检测依次触发至少两个设置于所述终端表面的预设按键的至少两个操作信号。
根据所述的方法,所述切换步骤还包括:
将当前正在所述终端的第一操作系统上显示的应用界面切换到所述第二操作系统上显示;
所述至少一个切换操作系统的消息包括:将所述终端由当前运行的第一操作系统切换到第二操作系统的操作指令。
根据上述任一项所述的方法,所述预设按键为设置于所述终端表面上的菜单键、主页键以及返回键。
为了实现本发明的另一发明目的,本发明还提供了一种多系统的系统切换的装置,包括:
检测模块,用于检测触发至少两个设置于所述装置表面的预设的按键的时间间隔在预设的时间阈值内的操作;
切换模块,用于将所述装置由当前运行的第一操作系统切换到第二操作系统。
根据所述的装置,所述检测模块包括:
第一检测子模块,用于检测触发至少两个设置于所述装置表面的预设按键的至少两个操作信号;
判断子模块,用于判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作信号封装成至少一个切换操作系统的消息;
所述切换模块包括:
第一切换子模块,用于根据所述至少一个切换操作系统的消息,将所述装置由当前运行的所述第一操作系统切换到第二操作系统。
根据所述的装置,所述第一检测子模块检测依次触发至少两个设置于所述装置表面的预设按键的至少两个操作信号。
根据所述的装置,所述切换模块还包括:
第二切换子模块,将当前正在所述装置的第一操作系统上显示的应用界面切换到所述第二操作系统上显示;
所述至少一个切换操作系统的消息包括:将所述终端由当前运行的第一操作系统切换到第二操作系统的操作指令。
根据上述任一项所述的装置,所述预设按键为设置于所述装置表面上的菜单键、主页键以及返回键。
本发明对多系统的切换方法进行改进,若检测到触发至少两个设置于终端表面的预设的按键的时间间隔在预设的时间阈值内的操作;则将所述终端由当前运行的第一操作系统切换到第二操作系统。由此提高了多系统的系统切换的便捷性。优选的,把触发系统切换的方法改成了滑动手机底部的Menu键、Home键和Back键,改变了原有的系统切换操作逻辑,使得用户切换系统时不需要退出AP,随时随地都可以切换系统,极大的提升了用户体验。
图1A是现有技术中双系统的智能终端的切换界面示意图;
图1B是现有技术中智能终端的操作按键示意图;
图1C是现有技术中智能终端的感应按键指令的操作示意图;
图2是本发明实施例提供的多系统的系统切换的装置结构示意图;
图3是本发明实施例提供的多系统的系统切换的装置结构示意图;
图4是本发明实施例提供的多系统的系统切换的方法流程图;
图5A是本发明实施提供的多系统的系统切换的感应按键操作示意图;
图5B是本发明实施提供的多系统的系统切换的操作示意图。
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
参见图2,在本发明的第一实施例中,提供了一种多系统的系统切换的装置100,其特征在于,包括:
检测模块10,用于检测触发至少两个设置于所述装置表面的预设的按键的时间间隔在预设的时间阈值内的操作;
切换模块20,用于将所述装置100由当前运行的第一操作系统切换到第二操作系统。
在该实施例中,多系统的系统切换的装置100于多系统终端中。当检测模块10检测触发至少两个设置于所述装置100表面的预设的按键的时间间隔在预设的时间阈值内的操作时;切换模块20则将所述装置100由当前运行的第一操作系统切换到第二操作系统。由于是检测用户对所述装置100表面的按键的触发动作,因此无需退出当前正在显示的应用界面,由此,无需当用户要从OS1切换到OS2时,必须退出正在运行的AP,进入launcher主界面,然后点击切换图标。这样操作便捷,提升用户体验。所述触发动作包括但不限于按下,划过,触摸等动作。
参见图3和图5A~图5B,在本发明的第二实施例中,检测模块10包括:
第一检测子模块11,设置于所述装置100的传感器层,用于检测触发至少两个设置于装置100表面的预设按键的至少两个操作信号;
判断子模块12,设置于所述装置100的驱动层,用于判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作
信号封装成至少一个切换操作系统的消息;
所述切换模块20包括:
第一切换子模块21,设置于所述装置100的系统层,用于根据所述至少一个切换操作系统的消息,将所述装置100由当前运行的所述第一操作系统切换到第二操作系统。
在该实施例中,设置于所述装置100的传感器层的第一检测子模块11将检测触发至少两个设置于装置100表面的预设按键的至少两个操作信号;并将这些操作信号发送到驱动层;设置于所述装置100的驱动层的判断子模块12则判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作信号封装成至少一个切换操作系统的消息。具体的,所述至少一个切换操作系统的消息包括:将所述终端由当前运行的第一操作系统切换到第二操作系统的操作指令。而该时间阈值可以为一极小值,根据多次试验或者经验值进行设置,以区分用户对按键的触发是否是为了切换系统。例如,若两次触发按键的间隔时间很小,则表明用户的操作相当于滑动两个按键,其是为了要切换系统。设置于所述装置100的系统层的第一切换子模块21则根据所述至少一个切换操作系统的消息,将所述装置100由当前运行的所述第一操作系统切换到第二操作系统。
在本发明的一个优选实施例中,所述第一检测子模块11检测依次触发至少两个设置于所述装置100表面的预设按键的至少两个操作信号。即为了切换系统,触发按键是需要按照预定的顺序的,只有在检测到用户是按照预定顺序触发相应的按键,且时间间隔在预设的时间阈值内时,才对系统进行切换。
此外,所述切换模块20还包括:第二切换子模块22,设置于所述装置100的系统层,将当前正在所述装置100的第一操作系统上显示的应用界面切换到所述第二操作系统上显示;即当前正在装置100的第一操作系统上显示的应用界面同样会切换到第二操作系统上显示;由此,用户可以继续当前应用的使用操作,无需重新打开相关的应用进行相关的操作。
而在上述的多个实施例中,所述装置100可应用于手机、PDA(Personal Digital Assistant,个人数字助理)、平板电脑等通信终端中。另外,所述预设按键为设置于所述装置100表面上的菜单键、主页键以及返回键。依次点击Menu键、Home键、Back键可以等效为从Menu键滑动到Back键,如图5所
示。这样给用户产生的感觉就是:从左向右滑动手机底部,系统就从OS1切换到了OS2。用户体验提升很多。当从左向右滑动时,系统从OS1切换到OS2。同理,可以配置成:从右向左滑动时,系统从OS2切换到OS1。
参见图4,在本发明的第三实施例中,提供了一种多系统的系统切换的方法,包括:
步骤S401中,检测触发至少两个设置于所述终端表面的预设的按键的时间间隔在预设的时间阈值内的操作;该步骤为检测步骤,由检测模块10实现;
步骤S402中,将终端由当前运行的第一操作系统切换到第二操作系统。该步骤为切换步骤,由切换模块20。
在该实施例中,提供的方法可以简化用户切换系统的操作,使得用户可以在不退出当前应用的情况下自由的切换系统。具体的,在检测到用户触发至少两个设置于所述终端表面的预设的按键的时间间隔在预设的时间阈值内的操作;则将终端由当前运行的第一操作系统切换到第二操作系统。所述预设按键为设置于所述终端上的菜单键、主页键以及返回键。当然还可以是其他的按键,例如音量键或者是电源键等。由于这些按键设置在终端的表面,用户可以方便快捷的进行预设的操作,进行系统的切换,并且无需退出当前运行的应用界面。
在本发明的第四实施例中,所述步骤S401包括:
检测触发至少两个设置于所述终端表面的预设按键的至少两个操作信号;由第一检测子模块11实现;
判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作信号封装成至少一个切换操作系统的消息;由判断子模块12实现;
所述切换步骤包括:
根据所述至少一个切换操作系统的消息,将所述终端由当前运行的所述第一操作系统切换到第二操作系统。由第一切换子模块21实现。
在该实施例中,首先第一检测子模块11检测触发至少两个设置于所述终端表面的预设按键的至少两个操作信号;然后由判断子模块12判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作信号封装成至少一个切换操作系统的消息;该消息的内容包括:将所述终端由当前运行的第一操作系统切换到第二操作系统的操作指令。第一切换子模
块21接到该消息后则将所述终端由当前运行的所述第一操作系统切换到第二操作系统。
另外,优选的,在所述检测触发至少两个设置于所述终端表面的预设按键的至少两个操作信号的步骤中,第一检测子模块11检测依次触发至少两个预设按键的至少两个操作信号。即为了切换系统,触发按键是需要按照预定的顺序的,只有在检测到用户是按照预定顺序触发相应的按键,且时间间隔在预设的时间阈值内时,才对系统进行切换,由此,防止用户的误操作。当然,也是可以提升用户操作的便捷性。例如,一般的终端,如手机其表面上通常设置有Menu键、Home键和Back键,当依次按下这些按键,且间隔时间在预设的时间阈值内时,则对终端的系统进行切换。
此外,在切换时,所述步骤402还包括:第二切换子模块22将当前正在所述终端的第一操作系统上显示的应用界面切换到所述第二操作系统上显示;由此用户可以继续正常的进行当前的操作,而无间断。
参见图5A~图5B,在本发明的一个实施例中,用户依次点击Menu键、Home键、Back键,驱动层会连续获得三个消息,每两个按键消息之间的时间间隔记作Time_X。可以在驱动层作出如下判定:当Time_X小于某一个时间值(该时间值很小)时,驱动层并不向系统层传递这三个按键消息,而是把这三个按键消息打包成一个新的消息,这个新的消息包含的内容就是:要求系统从OS1切换到OS2。这个新消息记作消息A。当系统层获得消息A时,就在系统层直接进行了系统切换。这一过程如图5A所示,当Time_X的值很小时,依次点击Menu键、Home键、Back键可以等效为从Menu键滑动到Back键,如图5B所示。这样给用户产生的感觉是:从左向右滑动手机底部(如图中虚线的箭头所示),系统就从OS1切换到了OS2。用户体验提升很多。当从左向右滑动时,系统从OS1切换到OS2。同理,可以配置成:从右向左滑动时,系统从OS2切换到OS1。
综上所述,本发明对多系统的切换方法进行改进,通过检测触发至少两个设置于终端表面的预设的按键的时间间隔在预设的时间阈值内的操作;则将所述终端由当前运行的第一操作系统切换到第二操作系统。由此提高了多系统的系统切换的便捷性。优选的,把触发系统切换的方法改成了滑动手机底部的Menu键、Home键和Back键,改变了原有的系统切换操作逻辑,使得用户切
换系统时不需要退出AP,随时随地都可以切换系统,极大的提升了用户体验。
当然,本发明还可有其它多种实施例,在不背离本发明精神及其实质的情况下,熟悉本领域的技术人员当可根据本发明作出各种相应的改变和变形,但这些相应的改变和变形都应属于本发明所附的权利要求的保护范围。
Claims (10)
- 一种多系统的系统切换的方法,其特征在于,包括:检测步骤:检测触发至少两个设置于终端表面的预设的按键的时间间隔在预设的时间阈值内的操作;切换步骤:将所述终端由当前运行的第一操作系统切换到第二操作系统。
- 根据权利要求1所述的方法,其特征在于,所述检测步骤包括:检测触发至少两个设置于所述终端表面的预设按键的至少两个操作信号;判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作信号封装成至少一个切换操作系统的消息;所述切换步骤包括:根据所述至少一个切换操作系统的消息,将所述终端由当前运行的所述第一操作系统切换到第二操作系统。
- 根据权利要求2所述的方法,其特征在于,在所述检测触发至少两个设置于所述终端表面的预设按键的至少两个操作信号的步骤中,检测依次触发至少两个设置于所述终端表面的预设按键的至少两个操作信号。
- 根据权利要求2所述的方法,其特征在于,所述切换步骤还包括:将当前正在所述终端的第一操作系统上显示的应用界面切换到所述第二操作系统上显示;所述至少一个切换操作系统的消息包括:将所述终端由当前运行的第一操作系统切换到第二操作系统的操作指令。
- 根据权利要求1~4任一项所述的方法,其特征在于,所述预设按键为设置于所述终端表面上的菜单键、主页键以及返回键。
- 一种多系统的系统切换的装置,其特征在于,包括:检测模块,用于检测触发至少两个设置于所述装置表面的预设的按键的时间间隔在预设的时间阈值内的操作;切换模块,用于将所述装置由当前运行的第一操作系统切换到第二操作系统。
- 根据权利要求6所述的装置,其特征在于,所述检测模块包括:第一检测子模块,用于检测触发至少两个设置于所述装置表面的预设按键 的至少两个操作信号;判断子模块,用于判断所述至少两个操作信号发生的时间间隔是否在所述时间阈值内,若是则将所述至少两个操作信号封装成至少一个切换操作系统的消息;所述切换模块包括:第一切换子模块,用于根据所述至少一个切换操作系统的消息,将所述装置由当前运行的所述第一操作系统切换到第二操作系统。
- 根据权利要求7所述的装置,其特征在于,所述第一检测子模块检测依次触发至少两个设置于所述装置表面的预设按键的至少两个操作信号。
- 根据权利要求7所述的装置,其特征在于,所述切换模块还包括:第二切换子模块,将当前正在所述装置的第一操作系统上显示的应用界面切换到所述第二操作系统上显示;所述至少一个切换操作系统的消息包括:将所述终端由当前运行的第一操作系统切换到第二操作系统的操作指令。
- 根据权利要求6~9任一项所述的装置,其特征在于,所述预设按键为设置于所述装置表面上的菜单键、主页键以及返回键。
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