CN105630509A - Control method of breathing lamp and mobile terminal - Google Patents

Control method of breathing lamp and mobile terminal Download PDF

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Publication number
CN105630509A
CN105630509A CN201610003900.0A CN201610003900A CN105630509A CN 105630509 A CN105630509 A CN 105630509A CN 201610003900 A CN201610003900 A CN 201610003900A CN 105630509 A CN105630509 A CN 105630509A
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China
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breath light
event
framework
control method
breath
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CN201610003900.0A
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章严
杨海晓
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Shanghai Feixun Data Communication Technology Co Ltd
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Shanghai Feixun Data Communication Technology Co Ltd
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Priority to CN201610003900.0A priority Critical patent/CN105630509A/en
Publication of CN105630509A publication Critical patent/CN105630509A/en
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    • 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
    • G06F9/4401Bootstrapping
    • G06F9/4411Configuring for operating with peripheral devices; Loading of device drivers

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  • Software Systems (AREA)
  • Theoretical Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Telephone Function (AREA)
  • Illuminated Signs And Luminous Advertising (AREA)
  • Optical Communication System (AREA)

Abstract

The invention discloses a control method of a breathing lamp. The control method comprises the following steps of S10, building a breathing lamp framework in a system framework layer; S20, adding a data structure describing a breathing lamp event into the breathing lamp framework; S30, adding a data structure of priority corresponding to the described breathing lamp event into the breathing lamp framework; S50, adding a strategy type of the breathing lamp event into the breathing lamp framework; S60, adding the breathing lamp event into the strategy type of the breathing lamp event, and controlling the flashing state of the breathing lamp. The control method of the breathing lamp has the advantage that the control level of the breathing lamp is converted into the framework layer from an inner core drive layer, the breathing lamp event of a whole system is defined at the framework layer, and the breathing lamp is controlled by the event drive, so as to freely expand the breathing lamp event, and greatly increase the function and type of the breathing lamp.

Description

The control method of a kind of breath light and mobile terminal
Technical field
The present invention relates to technical field of mobile terminals, particularly relate to control method and the mobile terminal of breath light.
Background technology
At present, breath light is widely used on mobile terminal, shows the charge condition of mobile terminal especially with breath light, for instance, when mobile terminal is charged, its breath light is shown in red; When mobile terminal charging complete, its breath light is shown in green. The display situation of its breath light is to be controlled by trigger, and this trigger is arranged in the breath light driver of operating system nucleus layer on mobile terminals.
But, there is following defect in the control program of above-mentioned breath light: the operating system nucleus layer on (one) mobile terminal is difficult to other events be detected, for instance the upper strata events such as notice or message, thus being difficult to be pointed out by breath light; (2) event that the trigger in operating system nucleus layer detects is limited, and prompt facility and the kind of its breath light are more single; (3) trigger self function in operating system nucleus layer is relatively simple, it is difficult to control the flashing state of breath light according to more event.
Summary of the invention
Technical scheme provided by the invention is as follows:
A kind of control method of breath light, including: step S10 sets up breath light framework in system framework layer; Step S20 adds the data structure describing breath light event to this breath light framework; Step S50 adds breath light Event Policies class to described breath light framework; Step S60 adds described breath light event to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light.
Further, also include: step S30 adds the data structure describing the priority corresponding to described breath light event to this breath light framework.
The control method of another kind of breath light provided by the invention, including: step S10 sets up breath light framework in system framework layer; Step S20 adds the data structure describing breath light event to this breath light framework; Step S30 adds the data structure describing the priority corresponding to described breath light event to this breath light framework; Step S50 adds breath light Event Policies class to described breath light framework; Step S61 adds priority query's extremely described breath light Event Policies apoplexy due to endogenous wind; Step S62 priority corresponding to described breath light event, adds this breath light event to the corresponding priority query of described breath light Event Policies apoplexy due to endogenous wind; Step S63, according to the breath light event in described priority query, controls the flicker state of breath light.
Further, also include: step S01 arranges color and/or the flicker frequency of the breath light that every kind of breath light event triggers.
Preferably, described step S20 also includes: step S21 adds the data structure describing low battery event, Full Charge Capacity event and charge volume event to described breath light framework.
Preferably, described step S20 also includes: step S22 adds the data structure describing various notification events or message event to described breath light framework.
The control method of another breath light provided by the invention, also includes: step S10 sets up breath light framework in system framework layer; Step S21 adds the data structure describing low battery event, Full Charge Capacity event and charge volume event to described breath light framework; Step S411 arranges each self-corresponding event condition of described low battery event, Full Charge Capacity event and charge volume event; Step S412, according to the event condition arranged, arranges each self-corresponding priority of described low battery event, Full Charge Capacity event and charge volume event; Step S50 adds breath light Event Policies class to described breath light framework; Step S60 adds described breath light event to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light.
The control method of another breath light provided by the invention, also includes: step S10 sets up breath light framework in system framework layer; Step S22 adds the data structure describing various notification events or message event to described breath light framework; The step S42 sequencing according to described various notification events or message event, arranges the priority corresponding to described various notification event or message event; Step S50 adds breath light Event Policies class to described breath light framework; Step S60 adds described breath light event to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light.
A kind of mobile terminal, including: framework sets up module, and this framework is set up module and set up breath light framework in system framework layer; Adding module, this interpolation module receives described framework and sets up the breath light framework in the system framework layer that module obtains; The described data structure describing breath light event of adding is to this breath light framework; Described interpolation module is also added with breath light Event Policies class to described breath light framework; Described interpolation module is also added with described breath light event to this breath light Event Policies apoplexy due to endogenous wind; Intelligent control module, this intelligent control module receives the described breath light event of described interpolation module interpolation to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light.
Further, this mobile terminal also includes: arrange module, arranges, at this, the color and/or flicker frequency that arrange the breath light that every kind of breath light event triggers in module.
Compared with prior art, the control method of a kind of breath light provided by the invention, the control of breath light is transferred to ccf layer by kernel-driven layer, and the breath light event of whole system is defined at ccf layer, breath light is controlled by event-driven, thus realizing arbitrary extension breath light event, it is greatly increased breath light function and kind. Additionally, this method is by defining the priority of various breath light events, breath light Event Priority determine the order of lamp flicker. This method also has the advantages such as reliability is strong, motility is strong, can be widely applied to control the breath light on mobile terminal, is especially provided with the mobile terminal of android system.
Accompanying drawing explanation
Below by the way of clearly understandable, accompanying drawings preferred implementation, control method and the above-mentioned characteristic of mobile terminal, technical characteristic, advantage and implementation thereof to a kind of breath light are further described.
Fig. 1 is the steps flow chart schematic diagram of the control method of a kind of breath light of the present invention;
Fig. 2 is the steps flow chart schematic diagram of the control method of another kind breath light of the present invention;
Fig. 3 is the steps flow chart schematic diagram of the control method of another breath light of the present invention;
Fig. 4 is the steps flow chart schematic diagram of the control method of another breath light of the present invention;
Fig. 5 is the composition structural representation of a kind of mobile terminal of the present invention;
Fig. 6 is the schematic flow sheet of the control method of a kind of breath light in an embodiment.
Drawing reference numeral illustrates:
10, framework sets up module, and 20, add module, 30, intelligent control module, 40, module is set.
Detailed description of the invention
In order to be illustrated more clearly that the embodiment of the present invention or technical scheme of the prior art, below comparison accompanying drawing is illustrated the specific embodiment of the present invention. Apparently, accompanying drawing in the following describes is only some embodiments of the present invention, for those of ordinary skill in the art, under the premise not paying creative work, other accompanying drawing can also be obtained according to these accompanying drawings, and obtain other embodiment.
For making simplified form, only schematically show part related to the present invention in each figure, they do not represent its practical structures as product. It addition, so that simplified form readily appreciates, some figure has the parts of identical structure or function, only symbolically depict one of them, or only mark one of them. In this article, " one " not only represents " only this ", it is also possible to represent the situation of " more than one ".
Fig. 1 is the steps flow chart schematic diagram of the control method of a kind of breath light of the present invention. As it is shown in figure 1, according to one embodiment of present invention, the control method of a kind of breath light, including: step S10 sets up breath light framework in system framework layer; This breath light framework can also include electricity breath light subframe and notice or message breath light subframe; Step S20 adds the data structure describing breath light event to this breath light framework; Can also is that and add the sub-data structure describing electricity breath light event to the electricity breath light subframe in this breath light framework; Can also is that and add the sub-data structure describing notice or message breath light event to the notice in this breath light framework or in message breath light subframe; Step S50 adds breath light Event Policies class to described breath light framework; Step S60 adds described breath light event to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light; Electricity breath light event and notice or message breath light event are added to this breath light Event Policies apoplexy due to endogenous wind.
Fig. 2 is the steps flow chart schematic diagram of the control method of another kind breath light of the present invention. As in figure 2 it is shown, according to another embodiment of the invention, the control method of a kind of breath light, including: step S10 sets up breath light framework in system framework layer; This breath light framework can also include electricity breath light subframe and notice or message breath light subframe; Step S20 adds the data structure describing breath light event to this breath light framework; Can also is that and add the sub-data structure describing electricity breath light event to the electricity breath light subframe in this breath light framework; Can also is that and add the sub-data structure describing notice or message breath light event to the notice in this breath light framework or in message breath light subframe; Step S30 adds the data structure describing the priority corresponding to described breath light event to this breath light framework; Can also is that and add the sub-data structure that describes priority corresponding to electricity breath light event to the electricity breath light subframe in this breath light framework; Can also is that and add the sub-data structure describing the priority corresponding to notice or message breath light event to the notice in this breath light framework or in message breath light subframe; Step S50 adds breath light Event Policies class to described breath light framework; Preferably, also include step S61 and add priority query's extremely described breath light Event Policies apoplexy due to endogenous wind; Preferably, also include step S62 priority corresponding to described breath light event, add this breath light event to the corresponding priority query of described breath light Event Policies apoplexy due to endogenous wind; Described breath light event oneself can define the priority corresponding to every kind of breath light event, it is also possible to is defined its priority according to certain rule; Preferably, also include step S63 according to the breath light event in described priority query, control the flicker state of breath light; The flicker state of described breath light refers to: breath light is in flicker state or stops flicker state, and it is in the breath light of flicker state, and the frequency of its flicker can differ.
Concrete, this breath light framework can be made up of electricity breath light subframe and notice or message breath light subframe; This breath light framework can also not have subframe; The sub-data structure describing electricity breath light event and the sub-data structure describing the priority corresponding to electricity breath light event can be same sub-data structure, it is also possible to be two different sub-data structure; The sub-data structure describing notice or message breath light event and the sub-data structure describing the priority corresponding to notice or message breath light event can be same sub-data structure, it is also possible to be two different sub-data structure.
Fig. 3 is the steps flow chart schematic diagram of the control method of another breath light of the present invention. As it is shown on figure 3, according to still a further embodiment, the control method of a kind of breath light, including: preferred, also include step S01 and color and/or the flicker frequency of the breath light that every kind of breath light event triggers are set; Breath light corresponding one color that every kind of breath light event (low battery event, Full Charge Capacity event and charge volume event) is triggered and/or specific flicker frequency, can also being the breath light correspondence one color that triggers of same class breath light event (battery event), the sub-respiration case (low battery event, Full Charge Capacity event and charge volume event) in such respiration case is a corresponding specific flicker frequency respectively; Step S10 sets up breath light framework in system framework layer; This breath light framework can also include electricity breath light subframe and notice or message breath light subframe; Step S21 adds the data structure describing low battery event, Full Charge Capacity event and charge volume event to described breath light framework; Can also is that and add the sub-data structure describing electricity breath light event to the electricity breath light subframe in this breath light framework; Step S30 adds the data structure describing the priority corresponding to described breath light event to this breath light framework; Can also is that and add the sub-data structure that describes priority corresponding to electricity breath light event to the electricity breath light subframe in this breath light framework; Step S411 arranges each self-corresponding event condition of described low battery event, Full Charge Capacity event and charge volume event; Described breath light event oneself can define the priority corresponding to every kind of breath light event; Its priority can also be defined according to certain rule, for instance: the event condition that low battery event is corresponding refers to: less than the 10% or 15% or 20% etc. of specified electric quantity; Event condition corresponding to Full Charge Capacity event refers to: specified electric quantity; Event condition corresponding to charge volume event refers to: whether the actual electricity of mobile terminal is more than the actual electricity of previous moment; Step S412, according to the event condition arranged, arranges each self-corresponding priority of described low battery event, Full Charge Capacity event and charge volume event; Step S50 adds breath light Event Policies class to described breath light framework; Step S61 adds priority query's extremely described breath light Event Policies apoplexy due to endogenous wind; Step S62 priority corresponding to described breath light event, adds this breath light event to the corresponding priority query of described breath light Event Policies apoplexy due to endogenous wind; Step S63, according to the breath light event in described priority query, controls the flicker state of breath light; The flicker state of described breath light refers to: breath light is in flicker state or stops flicker state, and it is in the breath light of flicker state, and the frequency of its flicker can differ.
Fig. 4 is the steps flow chart schematic diagram of the control method of another breath light of the present invention. As shown in Figure 4, according to still another embodiment of the invention, the control method of a kind of breath light, including: preferred, also include step S01 and color and/or the flicker frequency of the breath light that every kind of breath light event triggers are set; Breath light corresponding one color that every kind of breath light event (low battery event, Full Charge Capacity event and charge volume event) is triggered and/or specific flicker frequency, can also being the breath light correspondence one color that triggers of same class breath light event (battery event), the sub-respiration case (low battery event, Full Charge Capacity event and charge volume event) in such respiration case is a corresponding specific flicker frequency respectively; Step S10 sets up breath light framework in system framework layer; This breath light framework can also include electricity breath light subframe and notice or message breath light subframe; Step S22 adds the data structure describing various notification events or message event to described breath light framework; Can also is that and add the sub-data structure describing notice or message breath light event to the notice in this breath light framework or in message breath light subframe; Step S30 adds the data structure describing the priority corresponding to described breath light event to this breath light framework; Can also is that and add the sub-data structure describing the priority corresponding to notice or message breath light event to the notice in this breath light framework or in message breath light subframe; The step S42 sequencing according to described various notification events or message event, arranges the priority corresponding to described various notification event or message event; The sequencing of described various notification event or message event refers to: receive the sequencing of various notice or message; Step S50 adds breath light Event Policies class to described breath light framework; Step S61 adds priority query's extremely described breath light Event Policies apoplexy due to endogenous wind; Step S62 priority corresponding to described breath light event, adds this breath light event to the corresponding priority query of described breath light Event Policies apoplexy due to endogenous wind; Step S63, according to the breath light event in described priority query, controls the flicker state of breath light; The flicker state of described breath light refers to: breath light is in flicker state or stops flicker state, and it is in the breath light of flicker state, and the frequency of its flicker can differ.
Fig. 5 is the composition structural representation of a kind of mobile terminal of the present invention. As it is shown in figure 5, according to one embodiment of present invention, a kind of mobile terminal, including: framework sets up module 10, and this framework is set up module 10 and set up breath light framework in system framework layer; Adding module 20, this interpolation module 20 receives described framework and sets up the breath light framework in the system framework layer that module 10 obtains; The described data structure describing breath light event of adding is to this breath light framework; Described interpolation module 20 is also added with breath light Event Policies class to described breath light framework; Described interpolation module 20 is also added with described breath light event to this breath light Event Policies apoplexy due to endogenous wind; Intelligent control module 30, this intelligent control module 30 receives the described breath light event of described interpolation module 20 interpolation to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light. Preferably, also include arranging module 40, the color and/or flicker frequency that arrange the breath light that every kind of breath light event triggers in module 40 are set at this.
In conjunction with Fig. 3, Fig. 4 and Fig. 5, according to still another embodiment of the invention, the control method of a kind of breath light, including:
Preferably, it is additionally included in the color and/or flicker frequency arranging the breath light that every kind of breath light event triggers in module 40 is set; Breath light corresponding one color that every kind of breath light event (low battery event, Full Charge Capacity event and charge volume event) is triggered and/or specific flicker frequency, can also being the breath light correspondence one color that triggers of same class breath light event (battery event), the sub-respiration case (low battery event, Full Charge Capacity event and charge volume event) in such respiration case is a corresponding specific flicker frequency respectively;
Framework is set up module 10 and is set up breath light framework in system framework layer; This breath light framework can also include electricity breath light subframe and notice or message breath light subframe;
Add module 20 and add the data structure describing low battery event, Full Charge Capacity event and charge volume event to described breath light framework; Can also is that and add the sub-data structure describing electricity breath light event to the electricity breath light subframe in this breath light framework;
Add module 20 and be also added with describing the data structure of various notification event or message event to described breath light framework; Can also is that and add the sub-data structure describing notice or message breath light event to the notice in this breath light framework or in message breath light subframe;
Add module 20 and be also added with the data structure describing the priority corresponding to described breath light event to this breath light framework; Can also is that and add the sub-data structure that describes priority corresponding to electricity breath light event to the electricity breath light subframe in this breath light framework; Can also is that and add the sub-data structure describing the priority corresponding to notice or message breath light event to the notice in this breath light framework or in message breath light subframe;
The each self-corresponding event condition of described low battery event, Full Charge Capacity event and charge volume event is set in module 40 is set; Described breath light event oneself can define the priority corresponding to every kind of breath light event; Its priority can also be defined according to certain rule, for instance: the event condition that low battery event is corresponding refers to: less than the 10% or 15% or 20% etc. of specified electric quantity; Event condition corresponding to Full Charge Capacity event refers to: specified electric quantity; Event condition corresponding to charge volume event refers to: whether the actual electricity of mobile terminal is more than the actual electricity of previous moment;
Always according to the event condition arranged in arranging module 40, each self-corresponding priority of described low battery event, Full Charge Capacity event and charge volume event is set;
Sequencing according to described various notification events or message event in arranging module 40, arranges the priority corresponding to described various notification event or message event; The sequencing of described various notification event or message event refers to: receive the sequencing of various notice or message;
Add module 20 and add breath light Event Policies class to described breath light framework;
Add module 20 and add priority query's extremely described breath light Event Policies apoplexy due to endogenous wind;
Add the module 20 priority corresponding to described breath light event, add this breath light event to the corresponding priority query of described breath light Event Policies apoplexy due to endogenous wind;
Intelligent control module 30, according to the breath light event in described priority query, controls the flicker state of breath light; The flicker state of described breath light refers to: breath light is in flicker state or stops flicker state, and it is in the breath light of flicker state, and the frequency of its flicker can differ.
Fig. 6 is the schematic flow sheet of the control method of a kind of breath light in an embodiment. As shown in Figure 6, according to still a further embodiment, the control method of a kind of breath light, including:
Remove breath light kernel-driven trigger in primary android system;
The framework of the LightService of Android ccf layer adds the data structure describing breath light event and priority;
Adding the class controlling breath light strategy in the framework of the LightService of Android ccf layer, this apoplexy due to endogenous wind adds a priority query and stores the breath light event caused by different condition, and these events arrange with priority orders in queue;
The BettaryService of Android ccf layer adds low battery event, Full Charge Capacity event and charge event etc., the priority of every kind of event is set, the class controlling breath light strategy add in enqueue according to event condition;
Adding various notice or message event in the NotificationService of Android ccf layer, arrange the priority of every kind of event, the sequencing come according to notice by the class controlling breath light strategy equally is sequentially added in queue;
The trigger that the present invention will remove in the primary system of Android in kernel-driven, and the control of breath light is transferred to Android ccf layer, and in the breath light event of ccf layer definition whole system, such as notice, message, low electricity, charging, full electricity, system upgrade etc., and define the priority of various breath light event, event-driven control breath light. The present invention can realize arbitrary extension breath light event, is greatly increased breath light function and kind; And the order of lamp flicker is determined by Event Priority. The present invention is controlled breath light rather than kernel-driven layer entirely by Android upper strata; It is controlled breath light flicker by event-driven, and event can arrange priority.
It should be noted that, above-described embodiment all can independent assortment as required. The above is only the preferred embodiment of the present invention; it should be pointed out that, for those skilled in the art, under the premise without departing from the principles of the invention; can also making some improvements and modifications, these improvements and modifications also should be regarded as protection scope of the present invention.

Claims (10)

1. the control method of a breath light, it is characterised in that including:
Step S10 sets up breath light framework in system framework layer;
Step S20 adds the data structure describing breath light event to this breath light framework;
Step S50 adds breath light Event Policies class to described breath light framework;
Step S60 adds described breath light event to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light.
2. the control method of breath light as claimed in claim 1, it is characterised in that also include:
Step S30 adds the data structure describing the priority corresponding to described breath light event to this breath light framework.
3. the control method of breath light as claimed in claim 2, it is characterised in that described step S60 also includes:
Step S61 adds priority query's extremely described breath light Event Policies apoplexy due to endogenous wind;
Step S62 priority corresponding to described breath light event, adds this breath light event to the corresponding priority query of described breath light Event Policies apoplexy due to endogenous wind;
Step S63, according to the breath light event in described priority query, controls the flicker state of breath light.
4. the control method of the breath light as described in claim 1 or 2 or 3, it is characterised in that also include:
Step S01 arranges color and/or the flicker frequency of the breath light that every kind of breath light event triggers.
5. the control method of the breath light as described in claim 1 or 2 or 3, it is characterised in that described step S20 also includes:
Step S21 adds the data structure describing low battery event, Full Charge Capacity event and charge volume event to described breath light framework.
6. the control method of the breath light as described in claim 1 or 2 or 3, it is characterised in that described step S20 also includes:
Step S22 adds the data structure describing various notification events or message event to described breath light framework.
7. the control method of breath light as claimed in claim 5, it is characterised in that also include:
Step S411 arranges each self-corresponding event condition of described low battery event, Full Charge Capacity event and charge volume event;
Step S412, according to the event condition arranged, arranges each self-corresponding priority of described low battery event, Full Charge Capacity event and charge volume event.
8. the control method of breath light as claimed in claim 6, it is characterised in that also include:
The step S42 sequencing according to described various notification events or message event, arranges the priority corresponding to described various notification event or message event.
9. the mobile terminal of the control method of the breath light applied as described in any one in claim 1��8, it is characterised in that including:
Framework sets up module, and this framework is set up module and set up breath light framework in system framework layer;
Adding module, this interpolation module receives described framework and sets up the breath light framework in the system framework layer that module obtains; The described data structure describing breath light event of adding is to this breath light framework; Described interpolation module is also added with breath light Event Policies class to described breath light framework; Described interpolation module is also added with described breath light event to this breath light Event Policies apoplexy due to endogenous wind;
Intelligent control module, this intelligent control module receives the described breath light event of described interpolation module interpolation to this breath light Event Policies apoplexy due to endogenous wind, controls the flicker state of breath light.
10. mobile terminal as claimed in claim 9, it is characterised in that also include:
Module is set, the color and/or flicker frequency that arrange the breath light that every kind of breath light event triggers in module are set at this.
CN201610003900.0A 2016-01-04 2016-01-04 Control method of breathing lamp and mobile terminal Pending CN105630509A (en)

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Application publication date: 20160601