WO2016149955A1 - 通知处理方法、通知处理装置和终端 - Google Patents

通知处理方法、通知处理装置和终端 Download PDF

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Publication number
WO2016149955A1
WO2016149955A1 PCT/CN2015/075605 CN2015075605W WO2016149955A1 WO 2016149955 A1 WO2016149955 A1 WO 2016149955A1 CN 2015075605 W CN2015075605 W CN 2015075605W WO 2016149955 A1 WO2016149955 A1 WO 2016149955A1
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WO
WIPO (PCT)
Prior art keywords
notification
signature data
encryption algorithm
information
operating system
Prior art date
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PCT/CN2015/075605
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English (en)
French (fr)
Inventor
侯杰
Original Assignee
宇龙计算机通信科技(深圳)有限公司
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Publication of WO2016149955A1 publication Critical patent/WO2016149955A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M19/00Current supply arrangements for telephone systems
    • H04M19/02Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone
    • H04M19/04Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone the ringing-current being generated at the substations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/12Messaging; Mailboxes; Announcements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/02Protecting privacy or anonymity, e.g. protecting personally identifiable information [PII]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/03Protecting confidentiality, e.g. by encryption
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices

Definitions

  • the present invention relates to the field of terminal technologies, and in particular, to a notification processing method, a notification processing device, and a terminal.
  • a dual system terminal is composed of a security system and a general system, wherein the security system and the general system have contacts, information (SMS, MMS), email,
  • SMS security system
  • MMS general system
  • email email
  • the security data can only be stored and read in the security system, and the normal system cannot read the security system data.
  • the contacts include a secure contact and a normal contact
  • the security contact can only be stored and read in the security system, and the terminal cannot be recognized when receiving an incoming call or a short message in the normal system.
  • the contact is a secure contact or not can automatically switch to the security system to process notifications such as incoming calls or text messages.
  • the invention is based on the above problems, and proposes a new technical solution, which can automatically select an operating system for the user to process the received notification while ensuring the security of the terminal.
  • an aspect of the present invention provides a notification processing method for a terminal having multiple operating systems, including a general system and a security system, including: the current operating system is the general system And when receiving the notification, the letter of the sender according to the notification And a preset encryption algorithm, in which the target operating system for processing the notification is determined; if the target operating system is the security system, switching to the security system to process the notification .
  • the terminal runs in any ordinary system and receives the notification
  • the user can automatically select a suitable operating system to process the received notification according to the notified sender's information and the preset encryption algorithm, thereby improving The security of the notification process, and no need to manually switch the system, user-friendly operation, and enhance the user experience.
  • the security level of the common system is equal to or lower than the security level of other operating systems in the terminal. For example, in a dual-system terminal with a security system and a general system, when an ordinary system is received, an incoming call or a short message is received, and the contact encryption number can be combined with a preset encryption algorithm to automatically identify the contact according to the contact number or name of the incoming call or the short message.
  • the determining, according to the information of the sender of the notification and the preset encryption algorithm, determining a target operating system for processing the notification in the multiple operating systems specifically: determining Whether the information of the sender of the notification matches the contact information in the ordinary system; when the determination result is yes, the ordinary system is determined to be the target operating system; when the determination result is no
  • the notification can be directly processed by the ordinary system, and if it does not match, it can be other than the ordinary system.
  • Each operating system sets a corresponding encryption algorithm to generate shared signature data for the contact information stored by the operating system according to the operating system's own encryption algorithm, and shares the shared signature data into the common system, so that when the ordinary system receives When the notification is reached, the signature data can be generated according to the contact attribute of the notification, and the generated signature is generated.
  • the data is matched with the shared signature data to determine which system the notified contact belongs to, thereby determining the target operating system that handles the notification.
  • the technical solution can automatically select a suitable operating system according to the sender information and the preset encryption algorithm to process the received notification, thereby improving the security of the notification processing, and eliminating the need to manually switch the system, facilitating user operations, and improving the user. Experience.
  • the determining, according to the matching result, the target operating system in the multiple operating systems specifically: when determining that the signature data matches the shared signature data, The security system is set to the target operating system, otherwise the general system is set as the target operating system.
  • the notified signature data matches the shared signature data from an operating system
  • This notification can then be processed using this operating system. If the signature data of the notification does not match the shared signature data of all other operating systems except the normal system, all other operating systems do not store the contact information that sent the notification. In this case, to ensure the security of the terminal, The notification is processed directly using the normal system.
  • the security of the notification processing is improved, and the system is not required to be manually switched, which is convenient for the user to operate and improves the user experience.
  • the method further includes: replacing the preset encryption algorithm for the security system every predetermined time interval; and contacting the security system according to the replaced preset encryption algorithm And updating the shared signature data; and updating the replaced preset encryption algorithm and the updated shared signature data to the common system.
  • a plurality of preset encryption algorithms may be set for each operating system, so that the preset encryption algorithm may be replaced every predetermined time interval. Even if the preset encryption algorithm or the shared signature data is acquired by others, after a predetermined time interval, the terminal can replace the new preset encryption algorithm and generate new signature data correspondingly, thereby ensuring the security of the terminal.
  • the predetermined time interval may be set to 6 hours or may be set to other time intervals.
  • the notification is processed by the current running system.
  • the notification can be directly processed by the ordinary system without switching the system, thereby ensuring the convenience of the user operation.
  • the information of the sender includes one or a combination of the following: the contact information of the notification, the receiving time of the notification, the type of the notification, and the processing of the notification. s application.
  • the sender's information includes but is not limited to the notified contact information, the notification receiving time, the type of the notification, the application for processing the notification, wherein the notified contact information may include a phone number, contact Person name, contact type, etc.
  • the operating system for processing the notification can be determined according to various basis, the user's demand is satisfied to the utmost, and the user experience is improved.
  • Another aspect of the present invention provides a notification processing apparatus for a terminal having a plurality of operating systems including a general system and a security system, including: a determining unit, the current operating system being the general system And when receiving the notification, determining, according to the information of the sender of the notification and a preset encryption algorithm, a target operating system for processing the notification in the plurality of operating systems; and processing unit if the target operating system For the security system, switching to the security system processes the notification.
  • the terminal runs in any ordinary system and receives the notification
  • the user can automatically select a suitable operating system to process the received notification according to the notified sender's information and the preset encryption algorithm, thereby improving The security of the notification process, and no need to manually switch the system, user-friendly operation, and enhance the user experience.
  • the security level of the common system is equal to or lower than the security level of other operating systems in the terminal. For example, in a dual-system terminal with a security system and a general system, when an ordinary system is received, an incoming call or a short message is received, and the contact encryption number can be combined with a preset encryption algorithm to automatically identify the contact according to the contact number or name of the incoming call or the short message.
  • the determining unit includes: a determining unit, determining whether the information of the sender of the notification matches the contact information in the common system, wherein when the determination result is yes Determining, by the normal system, the target operating system, and when the determination result is no, generating signature data for the sender information by using the preset encryption algorithm according to the information of the sender, and The signature data is matched with shared signature data generated according to contact information in the security system; a matching unit, in the shared signature data generated by the signature data and contact information according to the security system After the matching is performed, the target operating system is determined among the plurality of operating systems according to the matching result.
  • the notification can be directly processed by the ordinary system, and if it does not match, it can be other than the ordinary system.
  • Each operating system sets a corresponding encryption algorithm to generate shared signature data for the contact information stored by the operating system according to the operating system's own encryption algorithm, and shares the shared signature data into the common system, so that when the ordinary system receives When the notification is reached, the signature data can be generated according to the contact attribute of the notification, and then the generated signature data is matched with the shared signature data, so that it can determine which system the notified contact belongs to, thereby determining the target operating system that processes the notification.
  • the technical solution can automatically select a suitable operating system according to the sender information and the preset encryption algorithm to process the received notification, thereby improving the security of the notification processing, and eliminating the need to manually switch the system, facilitating user operations, and improving the user. Experience.
  • the matching unit is specifically configured to: when the signature data is determined to match the shared signature data, set the security system as the target operating system; otherwise, the The normal system is set to the target operating system.
  • the notification when the notified signature data matches the shared signature data from an operating system, it may be determined that the notification is from a contact of the operating system, that is, the source of the notification is related to the operating system. This notification can then be processed using this operating system. If the signed signature data does not match the shared signature data of all other operating systems except the normal system, all other operating systems do not store the contact information that sent the notification. At this time, in order to ensure the security of the terminal, the notification can be directly processed by the ordinary system. Through the technical solution, the security of the notification processing is improved, and the system is not required to be manually switched, which is convenient for the user to operate and improves the user experience.
  • the method further includes: an encryption algorithm updating unit, replacing the preset encryption algorithm for the security system every predetermined time interval; and a signature data updating unit, according to the preset encryption after the replacement
  • the algorithm updates the shared signature data for the contact information of the security system
  • the synchronization update unit updates the replaced preset encryption algorithm and the updated shared signature data to the common system.
  • a plurality of preset encryption algorithms may be set for each operating system, so that the preset encryption algorithm may be replaced every predetermined time interval. Even if the preset encryption algorithm or the shared signature data is acquired by others, after a predetermined time interval, the terminal can replace the new preset encryption algorithm and generate new signature data correspondingly, thereby ensuring the security of the terminal.
  • the predetermined time interval may be set to 6 hours or may be set to other time intervals.
  • the notification is processed by the current running system.
  • the notification can be directly processed by the ordinary system without switching the system, thereby ensuring the convenience of the user operation.
  • the information of the sender includes one or a combination of the following: the contact information of the notification, the receiving time of the notification, the type of the notification, and the processing of the notification. s application.
  • the sender's information includes but is not limited to the notified contact information, the notification receiving time, the type of the notification, the application for processing the notification, wherein the notified contact information may include a phone number, contact Person name, contact type, etc.
  • the operating system for processing the notification can be determined according to various basis, the user's demand is satisfied to the utmost, and the user experience is improved.
  • the present invention also proposes a terminal having a plurality of operating systems including a network interface, a memory, and a processor, wherein the memory stores a set of program codes, and the processor is used by the processor Call the program code stored in the memory to do the following:
  • the current running system is the ordinary system and receiving the notification, determining, according to the information of the sender of the notification and a preset encryption algorithm, determining, in the plurality of operating systems, a target operating system for processing the notification;
  • the processor is further configured to:
  • Determining whether the information of the sender of the notification matches the contact information in the common system wherein when the determination result is yes, determining the normal system as the target operating system, when the determination result If not, generating, according to the information of the sender, signature data for the information of the sender by using the preset encryption algorithm, and sharing the signature data with the contact information generated according to the contact information in the security system Signature data is matched;
  • the processor is specifically configured to:
  • the security system is set as the target operating system, otherwise, the normal system is set as the target operating system.
  • the processor is further configured to:
  • the synchronization update unit updates the replaced preset encryption algorithm and the updated shared signature data to the common system synchronously.
  • the notification is processed by the current running system.
  • the user can automatically select a suitable operating system to process the received notification, thereby improving the security of the notification processing, and eliminating the need to manually switch the system.
  • User operations enhance the user experience.
  • FIG. 1 shows a flow chart of a notification processing method according to an embodiment of the present invention
  • FIG. 2 shows a block diagram of a notification processing device in accordance with one embodiment of the present invention
  • Figure 3 shows a block diagram of a terminal in accordance with one embodiment of the present invention
  • FIG. 4 shows a flow chart of a notification processing method according to another embodiment of the present invention.
  • FIG. 5 shows a schematic diagram of signature data matching in FIG.
  • FIG. 1 shows a flow chart of a notification processing method in accordance with one embodiment of the present invention.
  • a notification processing method is used for a terminal having a plurality of operating systems, including a general system and a security system, including:
  • Step 102 When the current running system is the normal system and receives the notification, determine the target operating system for processing the notification among the multiple operating systems according to the notified sender information and the preset encryption algorithm.
  • Step 104 If the target operating system is the security system, switch to the security system to process the notification.
  • the terminal runs in any ordinary system and receives the notification
  • the user can automatically select a suitable operating system to process the received notification according to the notified sender's information and the preset encryption algorithm, thereby improving The security of the notification process, and no need to manually switch the system, user-friendly operation, and enhance the user experience.
  • the security level of the general system etc.
  • the security level of other operating systems in the terminal For example, in a dual-system terminal with a security system and a general system, when an ordinary system is received, an incoming call or a short message is received, and the contact encryption number can be combined with a preset encryption algorithm to automatically identify the contact according to the contact number or name of the incoming call or the short message.
  • the step 102 includes: determining whether the information of the sender of the notification matches the contact information in the ordinary system; when the determination result is yes, determining the normal system as the target operating system; When the judgment result is no, according to the information of the sender, the signature data is generated for the information of the sender by using a preset encryption algorithm, and the signature data is matched with the shared signature data generated according to the contact information in the security system, for Match the results to determine the target operating system across multiple operating systems.
  • the notification can be directly processed by the ordinary system, and if it does not match, it can be other than the ordinary system.
  • Each operating system sets a corresponding encryption algorithm to generate shared signature data for the contact information stored by the operating system according to the operating system's own encryption algorithm, and shares the shared signature data into the common system, so that when the ordinary system receives When the notification is reached, the signature data can be generated according to the contact attribute of the notification, and then the generated signature data is matched with the shared signature data, so that it can determine which system the notified contact belongs to, thereby determining the target operating system that processes the notification.
  • the technical solution can automatically select a suitable operating system according to the sender information and the preset encryption algorithm to process the received notification, thereby improving the security of the notification processing, and eliminating the need to manually switch the system, facilitating user operations, and improving the user. Experience.
  • determining the target operating system in the multiple operating systems according to the matching result specifically, when determining that the signature data matches the shared signature data, setting the security system as the target operating system, otherwise, The normal system is set to the target operating system.
  • the notification when the signed signature data and the shared signature from an operating system When the data matches, it can be determined that the notification is from a contact of the operating system, that is, the source of the notification is related to the operating system, so that the notification can be processed using the operating system. If the signature data of the notification does not match the shared signature data of all other operating systems except the normal system, all other operating systems do not store the contact information that sent the notification. In this case, to ensure the security of the terminal, The notification is processed directly using the normal system. Through the technical solution, the security of the notification processing is improved, and the system is not required to be manually switched, which is convenient for the user to operate and improves the user experience.
  • the method further includes: replacing a preset encryption algorithm for the security system every predetermined time interval; updating the shared signature data for the contact information of the security system according to the replaced preset encryption algorithm;
  • the replaced preset encryption algorithm and the updated shared signature data are synchronously updated to the common system.
  • a plurality of preset encryption algorithms may be set for each operating system, so that the preset encryption algorithm may be replaced every predetermined time interval. Even if the preset encryption algorithm or the shared signature data is acquired by others, after a predetermined time interval, the terminal can replace the new preset encryption algorithm and generate new signature data correspondingly, thereby ensuring the security of the terminal.
  • the predetermined time interval may be set to 6 hours or may be set to other time intervals.
  • the notification is processed by the current running system.
  • the notification can be directly processed by the ordinary system without switching the system, thereby ensuring the convenience of the user operation.
  • the information of the sender includes one or a combination of the following: the contact information of the notification, the reception time of the notification, the type of the notification, and an application for processing the notification.
  • the sender's information includes but is not limited to the notified contact information, the notification receiving time, the type of the notification, the application for processing the notification, wherein the notified contact information may include a phone number, contact Person name, contact type, etc.
  • the operating system for processing the notification can be determined according to various basis, and the use is maximized. The user's needs enhance the user experience.
  • FIG. 2 shows a block diagram of a notification processing device in accordance with one embodiment of the present invention.
  • a notification processing apparatus 200 is used for a terminal having a plurality of operating systems, including a common system and a security system, including: a determining unit 202, the current running system is When receiving the notification, the normal system determines a target operating system for processing the notification in the plurality of operating systems according to the notified sender's information and the preset encryption algorithm; and the processing unit 204, if the target operating system is The security system then switches to the security system to process the notification.
  • the terminal runs in any ordinary system and receives the notification
  • the user can automatically select a suitable operating system to process the received notification according to the notified sender's information and the preset encryption algorithm, thereby improving The security of the notification process, and no need to manually switch the system, user-friendly operation, and enhance the user experience.
  • the security level of the common system is equal to or lower than the security level of other operating systems in the terminal. For example, in a dual-system terminal with a security system and a general system, when an ordinary system is received, an incoming call or a short message is received, and the contact encryption number can be combined with a preset encryption algorithm to automatically identify the contact according to the contact number or name of the incoming call or the short message.
  • the determining unit 202 includes: a determining unit 2022, determining whether the information of the sender of the notification matches the contact information in the ordinary system, wherein when the determination result is yes, the general system determines For the target operating system, when the judgment result is no, according to the information of the sender, the signature data is generated for the information of the sender by using a preset encryption algorithm, and the signature data and the shared signature data generated according to the contact information in the security system are generated. Matching is performed; the matching unit 2024, after matching the signature data with the shared signature data generated according to the contact information in the security system, determines the target operating system among the plurality of operating systems according to the matching result.
  • the sender information of the notification is related to any common system that receives the notification If the contact information in the system matches, the notification can be directly processed by the common system, and if it does not match, the corresponding encryption algorithm can be set for each operating system except the normal system, according to the operating system's own encryption algorithm.
  • the contact information stored by the operating system generates shared signature data, and shares the shared signature data into the common system, so that when the ordinary system receives the notification, the signature data can be generated according to the notified contact attribute, and then the generated The signature data is matched with the shared signature data to determine which system the notified contact belongs to, thereby determining the target operating system that processes the notification.
  • the technical solution can automatically select a suitable operating system according to the sender information and the preset encryption algorithm to process the received notification, thereby improving the security of the notification processing, and eliminating the need to manually switch the system, facilitating user operations, and improving the user. Experience.
  • the matching unit 2024 is specifically configured to: when determining that the signature data matches the shared signature data, set the security system as the target operating system; otherwise, set the normal system as the target operating system.
  • the notified signature data matches the shared signature data from an operating system
  • This notification can then be processed using this operating system. If the signature data of the notification does not match the shared signature data of all other operating systems except the normal system, all other operating systems do not store the contact information that sent the notification. In this case, to ensure the security of the terminal, The notification is processed directly using the normal system.
  • the security of the notification processing is improved, and the system is not required to be manually switched, which is convenient for the user to operate and improves the user experience.
  • the method further includes: an encryption algorithm updating unit 206, which replaces a preset encryption algorithm for the security system every predetermined time interval; the signature data updating unit 208 is configured to be secure according to the replaced preset encryption algorithm.
  • the contact information of the system updates the shared signature data; the synchronization update unit 210 synchronously updates the replaced preset encryption algorithm and the updated shared signature data to the common system.
  • multiple preset encryption algorithms can be set for each operating system, thereby The preset encryption algorithm can be changed every predetermined time interval. Even if the preset encryption algorithm or the shared signature data is acquired by others, after a predetermined time interval, the terminal can replace the new preset encryption algorithm and generate new signature data correspondingly, thereby ensuring the security of the terminal.
  • the predetermined time interval may be set to 6 hours or may be set to other time intervals.
  • the notification is processed by the current running system.
  • the notification can be directly processed by the ordinary system without switching the system, thereby ensuring the convenience of the user operation.
  • the information of the sender includes one or a combination of the following: the contact information of the notification, the reception time of the notification, the type of the notification, and an application for processing the notification.
  • the sender's information includes but is not limited to the notified contact information, the notification receiving time, the type of the notification, the application for processing the notification, wherein the notified contact information may include a phone number, contact Person name, contact type, etc.
  • the operating system for processing the notification can be determined according to various basis, the user's demand is satisfied to the utmost, and the user experience is improved.
  • Figure 3 shows a block diagram of a terminal in accordance with one embodiment of the present invention.
  • a terminal 300 has a plurality of operating systems, and a plurality of operating systems include a general system and a security system.
  • the terminal 300 includes a notification processing device 302, and the notification processing device 302 is equivalent.
  • the notification processing device 200 in the embodiment shown in FIG. 2, therefore, the notification processing device 302 has the same technical effects as the notification processing device 200 according to any of the above-described technical solutions, and details are not described herein again.
  • FIG. 4 shows a flow chart of a notification processing method in accordance with another embodiment of the present invention.
  • a notification processing method is applied to a dual system terminal having a general system and a security system, including:
  • step 402 the terminal receives an incoming call under the normal system.
  • Step 404 determining whether the caller number matches the normal contact number, and when the judgment result is If yes, go to step 406. If the result of the determination is no, go to step 408.
  • Step 406 Generate an incoming call signature data for the incoming call number by using an encryption algorithm, thereby matching the incoming call signature data with the shared signature data of the terminal to determine an operating system for processing the incoming call.
  • step 408 the normal system connects the incoming call and processes.
  • Step 410 Determine whether the incoming call signature data and the shared signature data match.
  • the process proceeds to step 412.
  • the determination result is negative, the process ends.
  • a corresponding encryption algorithm may be set for the security system to generate shared signature data for the security contact information stored by the security system, and the shared signature data is shared into the common system, so as shown in FIG. 5
  • the schematic diagram of matching the signature data when the ordinary system receives the incoming call, the signature data can be generated according to the contact attribute of the incoming call according to the real-time encryption algorithm, and then the generated signature data is matched with the shared signature data, so that the notification connection can be determined. Which system the person belongs to to determine the target operating system that handles the notification.
  • the preset encryption algorithm can be replaced every predetermined time interval to improve the security of the notification process.
  • step 412 the terminal automatically switches to the security system for processing the notification in the security system, thereby improving the security of the notification processing by the terminal.
  • step 414 the call record is saved and returned to the normal system.
  • the technical solution of the present invention is described in detail above with reference to the accompanying drawings.
  • the technical solution of the present invention can automatically select a suitable operating system for the user to process the received notification, thereby improving the security of the notification processing and eliminating the need to manually switch the system. It is convenient for users to operate and enhances the user experience.

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  • Signal Processing (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Computer Security & Cryptography (AREA)
  • Telephone Function (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Telephonic Communication Services (AREA)
  • Alarm Systems (AREA)

Abstract

本发明提供了一种通知处理方法、一种通知处理装置和一种终端,其中,所述通知处理方法用于具有多个操作系统的终端,所述多个操作系统包括普通系统和安全系统。所述通知处理方法包括以下步骤:当前运行系统为所述普通系统且接收到通知时,根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统 (102);若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知 (104)。通过应用本发明的技术方案,为用户自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无需手动切换系统,方便用户操作,提升了用户体验。

Description

通知处理方法、通知处理装置和终端
本申请要求于2015年03月23日提交中国专利局,申请号为201510128562.9、发明名称为“通知处理方法、通知处理装置和终端”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
本发明涉及终端技术领域,具体而言,涉及一种通知处理方法、一种通知处理装置和一种终端。
背景技术
目前,在具有多个操作系统的终端中,比如,双系统终端由一个安全系统和一个普通系统构成,其中,安全系统和普通系统中都有联系人、信息(短信、彩信)、电子邮件、通话记录等应用,其安全数据只能在安全系统中存储和读取,普通系统不能读取安全系统数据。
例如,在双系统终端中,其联系人包括安全联系人和普通联系人,安全联系人只能在安全系统中被存储和读取,当终端在普通系统中接收到来电或短信时,无法识别出该联系人是否为安全联系人,也无法自动切换到安全系统处理来电或短信等通知。
因此需要一种新的技术方案,能够在保证终端的安全性的同时,为用户自动选择操作系统来处理接收到的通知。
发明内容
本发明正是基于上述问题,提出了一种新的技术方案,能够在保证终端的安全性的同时,为用户自动选择操作系统来处理接收到的通知。
有鉴于此,本发明的一方面提出了一种通知处理方法,用于具有多个操作系统的终端,所述多个操作系统包括普通系统和安全系统,包括:当前运行系统为所述普通系统且接收到通知时,根据所述通知的发送方的信 息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统;若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
在该技术方案中,当终端运行在任一普通系统并接收到通知时,可以根据通知的发送方的信息及预设加密算法,为用户自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。其中,普通系统的安全级别等于或低于终端中的其他操作系统的安全级别。例如,在具有安全系统和普通系统的双系统终端中,在运行在普通系统时接收到来电或短信,可以结合预设加密算法,根据来电或短信的联系人号码或名称,自动识别该联系人是否为安全联系人,如果是,则切换至安全系统处理该来电或短信,否则,使用普通系统处理该来电或短信,从而实现了根据联系人类型自动切换到对应的系统,达到了安全处理来电或短信的目的。
在上述技术方案中,优选地,所述根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统,具体包括:判断所述通知的所述发送方的信息与所述普通系统中的联系人信息是否相匹配;当判断结果为是时,将所述普通系统确定为所述目标操作系统;当判断结果为否时,根据所述发送方的信息,通过所述预设加密算法为所述发送方的信息生成签名数据,并将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配,以供根据匹配结果,在所述多个操作系统中确定所述目标操作系统。
在该技术方案中,如果通知的发送方信息与接收到通知的任一普通系统中的联系人信息匹配,可以直接用该普通系统处理该通知,而如果不匹配,则可以为普通系统以外的每个操作系统都设置对应的加密算法,以根据操作系统自身的加密算法为操作系统存储的联系人信息生成共享签名数据,并将这些共享签名数据共享至普通系统中,这样,当普通系统接收到通知时,就可以根据通知的联系人属性生成签名数据,再将生成的签名 数据与共享签名数据进行匹配,就可以确定通知的联系人属于哪个系统,从而确定处理该通知的目标操作系统。通过该技术方案,可以根据发送方信息及预设加密算法自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,所述根据匹配结果,在所述多个操作系统中确定所述目标操作系统,具体包括:当确定所述签名数据与所述共享签名数据匹配时,将所述安全系统设置为所述目标操作系统,否则,将所述普通系统设置为所述目标操作系统。
在该技术方案中,当通知的签名数据与来自某个操作系统的共享签名数据相匹配时,可以确定该通知来自这一操作系统的联系人,即该通知的来源与这一操作系统相关,从而可以使用这一操作系统处理该通知。而如果通知的签名数据与普通系统以外的所有其他操作系统的共享签名数据都无法匹配,说明所有其他操作系统都未存储发出该通知的联系人信息,此时,为了保证终端的安全性,可以直接使用普通系统处理该通知。通过该技术方案,提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,还包括:每隔预定时间间隔,为所述安全系统更换所述预设加密算法;根据更换后的所述预设加密算法,为所述安全系统的联系人信息更新所述共享签名数据;以及将更换后的所述预设加密算法和更新后的所述共享签名数据同步更新到所述普通系统中。
在该技术方案中,可以为每个操作系统设置多种预设加密算法,从而可以每隔预定时间间隔更换一次预设加密算法。即使预设加密算法或共享签名数据被他人获取,在经过预定时间间隔后,终端就能更换新的预设加密算法,并对应生成新的签名数据,从而保证了终端的安全性。其中,预定时间间隔可以设置为6小时,也可以设置为其他时间间隔。
在上述技术方案中,优选地,若所述目标操作系统为所述普通系统, 则采用所述当前运行系统处理所述通知。
在该技术方案中,如果目标操作系统就是当前运行的普通系统,可以直接使用普通系统处理通知,而不必切换系统,确保了用户操作的便利性。
在上述技术方案中,优选地,所述发送方的信息包括以下之一或其组合:所述通知的联系人信息、所述通知的接收时间、所述通知的类型、用于处理所述通知的应用程序。
在该技术方案中,发送方的信息包括但不限于通知的联系人信息、通知的接收时间、通知的类型、用于处理通知的应用程序,其中,通知的联系人信息可以包括电话号码、联系人名称、联系人类型等。通过本技术方案,可根据多种依据确定用于处理通知的操作系统,最大限度地满足了用户的需求,提升了用户体验。
本发明的另一方面提出了一种通知处理装置,用于具有多个操作系统的终端,所述多个操作系统包括普通系统和安全系统,包括:确定单元,当前运行系统为所述普通系统且接收到通知时,根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统;处理单元,若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
在该技术方案中,当终端运行在任一普通系统并接收到通知时,可以根据通知的发送方的信息及预设加密算法,为用户自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。其中,普通系统的安全级别等于或低于终端中的其他操作系统的安全级别。例如,在具有安全系统和普通系统的双系统终端中,在运行在普通系统时接收到来电或短信,可以结合预设加密算法,根据来电或短信的联系人号码或名称,自动识别该联系人是否为安全联系人,如果是,则切换至安全系统处理该来电或短信,否则,使用普通系统处理该来电或短信,从而实现了根据联系人类型自动切换到对应的系统,达到了安全处理来电或短信的目的。
在上述技术方案中,优选地,所述确定单元包括:判断单元,判断所述通知的所述发送方的信息与所述普通系统中的联系人信息是否相匹配,其中,当判断结果为是时,将所述普通系统确定为所述目标操作系统,当判断结果为否时,根据所述发送方的信息,通过所述预设加密算法为所述发送方的信息生成签名数据,并将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配;匹配单元,在所述将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配之后,根据匹配结果,在所述多个操作系统中确定所述目标操作系统。
在该技术方案中,如果通知的发送方信息与接收到通知的任一普通系统中的联系人信息匹配,可以直接用该普通系统处理该通知,而如果不匹配,则可以为普通系统以外的每个操作系统都设置对应的加密算法,以根据操作系统自身的加密算法为操作系统存储的联系人信息生成共享签名数据,并将这些共享签名数据共享至普通系统中,这样,当普通系统接收到通知时,就可以根据通知的联系人属性生成签名数据,再将生成的签名数据与共享签名数据进行匹配,就可以确定通知的联系人属于哪个系统,从而确定处理该通知的目标操作系统。通过该技术方案,可以根据发送方信息及预设加密算法自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,所述匹配单元具体用于:当确定所述签名数据与所述共享签名数据匹配时,将所述安全系统设置为所述目标操作系统,否则,将所述普通系统设置为所述目标操作系统。
在该技术方案中,当通知的签名数据与来自某个操作系统的共享签名数据相匹配时,可以确定该通知来自这一操作系统的联系人,即该通知的来源与这一操作系统相关,从而可以使用这一操作系统处理该通知。而如果通知的签名数据与普通系统以外的所有其他操作系统的共享签名数据都无法匹配,说明所有其他操作系统都未存储发出该通知的联系人信息, 此时,为了保证终端的安全性,可以直接使用普通系统处理该通知。通过该技术方案,提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,还包括:加密算法更新单元,每隔预定时间间隔,为所述安全系统更换所述预设加密算法;签名数据更新单元,根据更换后的所述预设加密算法,为所述安全系统的联系人信息更新所述共享签名数据;同步更新单元,将更换后的所述预设加密算法和更新后的所述共享签名数据同步更新到所述普通系统中。
在该技术方案中,可以为每个操作系统设置多种预设加密算法,从而可以每隔预定时间间隔更换一次预设加密算法。即使预设加密算法或共享签名数据被他人获取,在经过预定时间间隔后,终端就能更换新的预设加密算法,并对应生成新的签名数据,从而保证了终端的安全性。其中,预定时间间隔可以设置为6小时,也可以设置为其他时间间隔。
在上述技术方案中,优选地,若所述目标操作系统为所述普通系统,则采用所述当前运行系统处理所述通知。
在该技术方案中,如果目标操作系统就是当前运行的普通系统,可以直接使用普通系统处理通知,而不必切换系统,确保了用户操作的便利性。
在上述技术方案中,优选地,所述发送方的信息包括以下之一或其组合:所述通知的联系人信息、所述通知的接收时间、所述通知的类型、用于处理所述通知的应用程序。
在该技术方案中,发送方的信息包括但不限于通知的联系人信息、通知的接收时间、通知的类型、用于处理通知的应用程序,其中,通知的联系人信息可以包括电话号码、联系人名称、联系人类型等。通过本技术方案,可根据多种依据确定用于处理通知的操作系统,最大限度地满足了用户的需求,提升了用户体验。
本发明还提出了一种终端,该终端具有多个操作系统,包括网络接口、存储器以及处理器,其中,存储器中存储一组程序代码,且处理器用于 调用存储器中存储的程序代码,用于执行以下操作:
当前运行系统为所述普通系统且接收到通知时,根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统;
若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
优选地,所述处理器还用于:
判断所述通知的所述发送方的信息与所述普通系统中的联系人信息是否相匹配,其中,当判断结果为是时,将所述普通系统确定为所述目标操作系统,当判断结果为否时,根据所述发送方的信息,通过所述预设加密算法为所述发送方的信息生成签名数据,并将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配;
在所述将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配之后,根据匹配结果,在所述多个操作系统中确定所述目标操作系统。
优选地,所述处理器具体用于:
当确定所述签名数据与所述共享签名数据匹配时,将所述安全系统设置为所述目标操作系统,否则,将所述普通系统设置为所述目标操作系统。
优选地,所述处理器还用于:
每隔预定时间间隔,为所述安全系统更换所述预设加密算法;
根据更换后的所述预设加密算法,为所述安全系统的联系人信息更新所述共享签名数据;
同步更新单元,将更换后的所述预设加密算法和更新后的所述共享签名数据同步更新到所述普通系统中。
优选地,若所述目标操作系统为所述普通系统,则采用所述当前运行系统处理所述通知。
通过以上技术方案,可以为用户自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便 用户操作,提升了用户体验。
附图说明
图1示出了根据本发明的一个实施例的通知处理方法的流程图;
图2示出了根据本发明的一个实施例的通知处理装置的框图;
图3示出了根据本发明的一个实施例的终端的框图;
图4示出了根据本发明的另一个实施例的通知处理方法的流程图;
图5示出了图4中进行签名数据匹配的示意图。
具体实施方式
为了能够更清楚地理解本发明的上述目的、特征和优点,下面结合附图和具体实施方式对本发明进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是,本发明还可以采用其他不同于在此描述的其他方式来实施,因此,本发明的保护范围并不受下面公开的具体实施例的限制。
图1示出了根据本发明的一个实施例的通知处理方法的流程图。
如图1所示,根据本发明的一个实施例的通知处理方法,用于具有多个操作系统的终端,所述多个操作系统包括普通系统和安全系统,包括:
步骤102,当前运行系统为所述普通系统且接收到通知时,根据通知的发送方的信息和预设加密算法,在多个操作系统中确定用于处理通知的目标操作系统。
步骤104,若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
在该技术方案中,当终端运行在任一普通系统并接收到通知时,可以根据通知的发送方的信息及预设加密算法,为用户自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。其中,普通系统的安全级别等 于或低于终端中的其他操作系统的安全级别。例如,在具有安全系统和普通系统的双系统终端中,在运行在普通系统时接收到来电或短信,可以结合预设加密算法,根据来电或短信的联系人号码或名称,自动识别该联系人是否为安全联系人,如果是,则切换至安全系统处理该来电或短信,否则,使用普通系统处理该来电或短信,从而实现了根据联系人类型自动切换到对应的系统,达到了安全处理来电或短信的目的。
在上述技术方案中,优选地,步骤102具体包括:判断通知的发送方的信息与普通系统中的联系人信息是否相匹配;当判断结果为是时,将普通系统确定为目标操作系统;当判断结果为否时,根据发送方的信息,通过预设加密算法为发送方的信息生成签名数据,并将签名数据与根据安全系统中的联系人信息生成的共享签名数据进行匹配,以供根据匹配结果,在多个操作系统中确定目标操作系统。
在该技术方案中,如果通知的发送方信息与接收到通知的任一普通系统中的联系人信息匹配,可以直接用该普通系统处理该通知,而如果不匹配,则可以为普通系统以外的每个操作系统都设置对应的加密算法,以根据操作系统自身的加密算法为操作系统存储的联系人信息生成共享签名数据,并将这些共享签名数据共享至普通系统中,这样,当普通系统接收到通知时,就可以根据通知的联系人属性生成签名数据,再将生成的签名数据与共享签名数据进行匹配,就可以确定通知的联系人属于哪个系统,从而确定处理该通知的目标操作系统。通过该技术方案,可以根据发送方信息及预设加密算法自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,根据匹配结果,在多个操作系统中确定目标操作系统,具体包括:当确定签名数据与共享签名数据匹配时,将安全系统设置为目标操作系统,否则,将普通系统设置为目标操作系统。
在该技术方案中,当通知的签名数据与来自某个操作系统的共享签名 数据相匹配时,可以确定该通知来自这一操作系统的联系人,即该通知的来源与这一操作系统相关,从而可以使用这一操作系统处理该通知。而如果通知的签名数据与普通系统以外的所有其他操作系统的共享签名数据都无法匹配,说明所有其他操作系统都未存储发出该通知的联系人信息,此时,为了保证终端的安全性,可以直接使用普通系统处理该通知。通过该技术方案,提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,还包括:每隔预定时间间隔,为安全系统更换预设加密算法;根据更换后的预设加密算法,为安全系统的联系人信息更新共享签名数据;以及将更换后的预设加密算法和更新后的共享签名数据同步更新到普通系统中。
在该技术方案中,可以为每个操作系统设置多种预设加密算法,从而可以每隔预定时间间隔更换一次预设加密算法。即使预设加密算法或共享签名数据被他人获取,在经过预定时间间隔后,终端就能更换新的预设加密算法,并对应生成新的签名数据,从而保证了终端的安全性。其中,预定时间间隔可以设置为6小时,也可以设置为其他时间间隔。
在上述技术方案中,优选地,若目标操作系统为普通系统,则采用当前运行系统处理通知。
在该技术方案中,如果目标操作系统就是当前运行的普通系统,可以直接使用普通系统处理通知,而不必切换系统,确保了用户操作的便利性。
在上述技术方案中,优选地,发送方的信息包括以下之一或其组合:通知的联系人信息、通知的接收时间、通知的类型、用于处理通知的应用程序。
在该技术方案中,发送方的信息包括但不限于通知的联系人信息、通知的接收时间、通知的类型、用于处理通知的应用程序,其中,通知的联系人信息可以包括电话号码、联系人名称、联系人类型等。通过本技术方案,可根据多种依据确定用于处理通知的操作系统,最大限度地满足了用 户的需求,提升了用户体验。
图2示出了根据本发明的一个实施例的通知处理装置的框图。
如图2所示,根据本发明的一个实施例的通知处理装置200,用于具有多个操作系统的终端,多个操作系统包括普通系统和安全系统,包括:确定单元202,当前运行系统为所述普通系统且接收到通知时,根据通知的发送方的信息和预设加密算法,在多个操作系统中确定用于处理通知的目标操作系统;处理单元204,若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
在该技术方案中,当终端运行在任一普通系统并接收到通知时,可以根据通知的发送方的信息及预设加密算法,为用户自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。其中,普通系统的安全级别等于或低于终端中的其他操作系统的安全级别。例如,在具有安全系统和普通系统的双系统终端中,在运行在普通系统时接收到来电或短信,可以结合预设加密算法,根据来电或短信的联系人号码或名称,自动识别该联系人是否为安全联系人,如果是,则切换至安全系统处理该来电或短信,否则,使用普通系统处理该来电或短信,从而实现了根据联系人类型自动切换到对应的系统,达到了安全处理来电或短信的目的。
在上述技术方案中,优选地,确定单元202包括:判断单元2022,判断通知的发送方的信息与普通系统中的联系人信息是否相匹配,其中,当判断结果为是时,将普通系统确定为目标操作系统,当判断结果为否时,根据发送方的信息,通过预设加密算法为发送方的信息生成签名数据,并将签名数据与根据安全系统中的联系人信息生成的共享签名数据进行匹配;匹配单元2024,在将签名数据与根据安全系统中的联系人信息生成的共享签名数据进行匹配之后,根据匹配结果,在多个操作系统中确定目标操作系统。
在该技术方案中,如果通知的发送方信息与接收到通知的任一普通系 统中的联系人信息匹配,可以直接用该普通系统处理该通知,而如果不匹配,则可以为普通系统以外的每个操作系统都设置对应的加密算法,以根据操作系统自身的加密算法为操作系统存储的联系人信息生成共享签名数据,并将这些共享签名数据共享至普通系统中,这样,当普通系统接收到通知时,就可以根据通知的联系人属性生成签名数据,再将生成的签名数据与共享签名数据进行匹配,就可以确定通知的联系人属于哪个系统,从而确定处理该通知的目标操作系统。通过该技术方案,可以根据发送方信息及预设加密算法自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,匹配单元2024具体用于:当确定签名数据与共享签名数据匹配时,将安全系统设置为目标操作系统,否则,将普通系统设置为目标操作系统。
在该技术方案中,当通知的签名数据与来自某个操作系统的共享签名数据相匹配时,可以确定该通知来自这一操作系统的联系人,即该通知的来源与这一操作系统相关,从而可以使用这一操作系统处理该通知。而如果通知的签名数据与普通系统以外的所有其他操作系统的共享签名数据都无法匹配,说明所有其他操作系统都未存储发出该通知的联系人信息,此时,为了保证终端的安全性,可以直接使用普通系统处理该通知。通过该技术方案,提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
在上述技术方案中,优选地,还包括:加密算法更新单元206,每隔预定时间间隔,为安全系统更换预设加密算法;签名数据更新单元208,根据更换后的预设加密算法,为安全系统的联系人信息更新共享签名数据;同步更新单元210,将更换后的预设加密算法和更新后的共享签名数据同步更新到普通系统中。
在该技术方案中,可以为每个操作系统设置多种预设加密算法,从而 可以每隔预定时间间隔更换一次预设加密算法。即使预设加密算法或共享签名数据被他人获取,在经过预定时间间隔后,终端就能更换新的预设加密算法,并对应生成新的签名数据,从而保证了终端的安全性。其中,预定时间间隔可以设置为6小时,也可以设置为其他时间间隔。
在上述技术方案中,优选地,若目标操作系统为普通系统,则采用当前运行系统处理通知。
在该技术方案中,如果目标操作系统就是当前运行的普通系统,可以直接使用普通系统处理通知,而不必切换系统,确保了用户操作的便利性。
在上述技术方案中,优选地,发送方的信息包括以下之一或其组合:通知的联系人信息、通知的接收时间、通知的类型、用于处理通知的应用程序。
在该技术方案中,发送方的信息包括但不限于通知的联系人信息、通知的接收时间、通知的类型、用于处理通知的应用程序,其中,通知的联系人信息可以包括电话号码、联系人名称、联系人类型等。通过本技术方案,可根据多种依据确定用于处理通知的操作系统,最大限度地满足了用户的需求,提升了用户体验。
图3示出了根据本发明的一个实施例的终端的框图。
如图3所示,根据本发明的一个实施例的终端300,具有多个操作系统,多个操作系统包括普通系统和安全系统,其中,终端300包括:通知处理装置302,通知处理装置302相当于图2示出的实施例中的通知处理装置200,因此,通知处理装置302具有和上述技术方案中任一项所述的通知处理装置200相同的技术效果,在此不再赘述。
图4示出了根据本发明的另一个实施例的通知处理方法的流程图。
如图4所示,根据本发明的另一个实施例的通知处理方法,用于具有普通系统和安全系统的双系统终端,包括:
步骤402,终端在普通系统下接收到来电。
步骤404,判断来电号码与普通联系人号码是否匹配,当判断结果为 是时,进入步骤406,当判断结果为否时,进入步骤408。
步骤406,通过加密算法为来电号码生成来电签名数据,从而将来电签名数据与终端的共享签名数据进行匹配,以确定用于处理来电的操作系统。
步骤408,普通系统接通来电并处理。
步骤410,判断来电签名数据与共享签名数据是否匹配,当判断结果为是时,进入步骤412,当判断结果为否时,结束进程。在该技术方案中,可以为安全系统设置对应的加密算法,以为安全系统存储的安全联系人信息生成共享签名数据,并将这些共享签名数据共享至普通系统中,这样,如图5示出的进行签名数据匹配的示意图,当普通系统接收到来电时,就可以根据来电的联系人属性根据实时加密算法生成签名数据,再将生成的签名数据与共享签名数据进行匹配,就可以确定通知的联系人属于哪个系统,从而确定处理该通知的目标操作系统。另外,还可以每隔预定时间间隔更换一次预设加密算法,以提升通知处理的安全性。
步骤412,终端自动切换到安全系统,以供在安全系统中处理该通知,从而提升终端进行通知处理的安全性。
步骤414,通话结束保存通话记录并返回普通系统。
以上结合附图详细说明了本发明的技术方案,通过本发明的技术方案,可以为用户自动选择适合的操作系统来处理接收到的通知,从而提升了通知处理的安全性,并且无须手动切换系统,方便用户操作,提升了用户体验。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (15)

  1. 一种通知处理方法,用于具有多个操作系统的终端,所述多个操作系统包括普通系统和安全系统,其特征在于,包括:
    当前运行系统为所述普通系统且接收到通知时,根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统;
    若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
  2. 根据权利要求1所述的通知处理方法,其特征在于,所述根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统,具体包括:
    判断所述通知的所述发送方的信息与所述普通系统中的联系人信息是否相匹配;
    当判断结果为是时,将所述普通系统确定为所述目标操作系统;
    当判断结果为否时,根据所述发送方的信息,通过所述预设加密算法为所述发送方的信息生成签名数据,并将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配,以供根据匹配结果,在所述多个操作系统中确定所述目标操作系统。
  3. 根据权利要求2所述的通知处理方法,其特征在于,所述根据匹配结果,在所述多个操作系统中确定所述目标操作系统,具体包括:
    当确定所述签名数据与所述共享签名数据匹配时,将所述安全系统设置为所述目标操作系统,否则,将所述普通系统设置为所述目标操作系统。
  4. 根据权利要求3所述的通知处理方法,其特征在于,还包括:
    每隔预定时间间隔,为所述安全系统更换所述预设加密算法;
    根据更换后的所述预设加密算法,为所述安全系统的联系人信息更新所述共享签名数据;以及
    将更换后的所述预设加密算法和更新后的所述共享签名数据同步更 新到所述普通系统中。
  5. 根据权利要求1至4中任一项所述的通知处理方法,其特征在于,若所述目标操作系统为所述普通系统,则采用所述当前运行系统处理所述通知。
  6. 一种通知处理装置,用于具有多个操作系统的终端,所述多个操作系统包括普通系统和安全系统,其特征在于,包括:
    确定单元,当前运行系统为所述普通系统且接收到通知时,根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统;
    处理单元,若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
  7. 根据权利要求6所述的通知处理装置,其特征在于,所述确定单元包括:
    判断单元,判断所述通知的所述发送方的信息与所述普通系统中的联系人信息是否相匹配,其中,当判断结果为是时,将所述普通系统确定为所述目标操作系统,当判断结果为否时,根据所述发送方的信息,通过所述预设加密算法为所述发送方的信息生成签名数据,并将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配;
    匹配单元,在所述将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配之后,根据匹配结果,在所述多个操作系统中确定所述目标操作系统。
  8. 根据权利要求7所述的通知处理装置,其特征在于,所述匹配单元具体用于:
    当确定所述签名数据与所述共享签名数据匹配时,将所述安全系统设置为所述目标操作系统,否则,将所述普通系统设置为所述目标操作系统。
  9. 根据权利要求8所述的通知处理装置,其特征在于,还包括:
    加密算法更新单元,每隔预定时间间隔,为所述安全系统更换所述预设加密算法;
    签名数据更新单元,根据更换后的所述预设加密算法,为所述安全系 统的联系人信息更新所述共享签名数据;
    同步更新单元,将更换后的所述预设加密算法和更新后的所述共享签名数据同步更新到所述普通系统中。
  10. 根据权利要求6至9中任一项所述的通知处理装置,其特征在于,若所述目标操作系统为所述普通系统,则采用所述当前运行系统处理所述通知。
  11. 一种终端,具有多个操作系统,所述多个操作系统包括普通系统和安全系统,其特征在于,包括网络接口、存储器以及处理器,其中,存储器中存储一组程序代码,且处理器用于调用存储器中存储的程序代码,用于执行以下操作:
    当前运行系统为所述普通系统且接收到通知时,根据所述通知的发送方的信息和预设加密算法,在所述多个操作系统中确定用于处理所述通知的目标操作系统;
    若所述目标操作系统为所述安全系统,则切换至所述安全系统处理所述通知。
  12. 根据权利要求11所述的终端,其特征在于,所述处理器还用于:
    判断所述通知的所述发送方的信息与所述普通系统中的联系人信息是否相匹配,其中,当判断结果为是时,将所述普通系统确定为所述目标操作系统,当判断结果为否时,根据所述发送方的信息,通过所述预设加密算法为所述发送方的信息生成签名数据,并将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配;
    在所述将所述签名数据与根据所述安全系统中的联系人信息生成的共享签名数据进行匹配之后,根据匹配结果,在所述多个操作系统中确定所述目标操作系统。
  13. 根据权利要求12所述的终端,其特征在于,所述处理器具体用于:
    当确定所述签名数据与所述共享签名数据匹配时,将所述安全系统设置为所述目标操作系统,否则,将所述普通系统设置为所述目标操作系统。
  14. 根据权利要求13所述的终端,其特征在于,所述处理器还用于:
    每隔预定时间间隔,为所述安全系统更换所述预设加密算法;
    根据更换后的所述预设加密算法,为所述安全系统的联系人信息更新所述共享签名数据;
    同步更新单元,将更换后的所述预设加密算法和更新后的所述共享签名数据同步更新到所述普通系统中。
  15. 根据权利要求11至14中任一项所述的终端,其特征在于,若所述目标操作系统为所述普通系统,则采用所述当前运行系统处理所述通知。
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