CN111065094A - Address book transmission method and device, storage medium and electronic equipment - Google Patents

Address book transmission method and device, storage medium and electronic equipment Download PDF

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Publication number
CN111065094A
CN111065094A CN201911290222.0A CN201911290222A CN111065094A CN 111065094 A CN111065094 A CN 111065094A CN 201911290222 A CN201911290222 A CN 201911290222A CN 111065094 A CN111065094 A CN 111065094A
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China
Prior art keywords
name
voice
identification code
contact
address book
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CN201911290222.0A
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Chinese (zh)
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CN111065094B (en
Inventor
陈增桂
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Priority to CN201911290222.0A priority Critical patent/CN111065094B/en
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    • 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]

Abstract

The embodiment of the application discloses an address book transmission method, an address book transmission device, a storage medium and electronic equipment, wherein the method comprises the following steps: receiving a transmission instruction aiming at a voice address book, and acquiring a name identification code and a contact number of each contact in the voice address book; generating a number identification code corresponding to the contact number based on the name identification code and the contact number; and transmitting the name identification code and the number identification code. Therefore, by adopting the embodiment of the application, the information of the address list can be protected, the probability of the address list being cracked in transmission is reduced, and the transmission safety can be improved.

Description

Address book transmission method and device, storage medium and electronic equipment
Technical Field
The present application relates to the field of computer technologies, and in particular, to a method and an apparatus for transmitting an address book, a storage medium, and an electronic device.
Background
Mobile terminals, including cell phones, are one personal item that is now very popular. As mobile terminals become more and more powerful and the capacity of information that can be stored therein becomes greater and greater, people rely on mobile terminals more and more. Many times, the communication function of the mobile terminal remains the most important function for the user. With the increase of the capacity of the mobile terminal and the great popularization of the application area, for many users, the important contact information is almost stored only in the mobile terminal.
When the user automatically backs up the address book to the cloud or sends the address book to the friend, the address book data is easily uploaded to the internet by some junk software, so that the information of the user is leaked, and lawbreakers can utilize the information to infringe and cheat people nearby. Therefore, the security of the address book transmission is not sufficient.
Disclosure of Invention
The embodiment of the application provides an address book transmission method, an address book transmission device, a storage medium and electronic equipment, which can protect address book information, reduce the probability of cracking the address book in transmission and further improve transmission safety. The technical scheme is as follows:
in a first aspect, an embodiment of the present application provides an address book transmission method, where the method includes:
receiving a transmission instruction aiming at a voice address book, and acquiring a name identification code and a contact number of each contact in the voice address book;
generating a number identification code corresponding to the contact number based on the name identification code and the contact number;
and transmitting the name identification code and the number identification code.
In a second aspect, an embodiment of the present application provides an address book transmission apparatus, where the apparatus includes:
the name identification code acquisition module is used for receiving a transmission instruction aiming at the voice address list and acquiring the name identification code and the contact number of each contact in the voice address list;
the number identification code acquisition module is used for generating a number identification code corresponding to the contact number based on the name identification code and the contact number;
and the identification code transmission module is used for transmitting the name identification code and the number identification code.
In a third aspect, embodiments of the present application provide a computer storage medium storing a plurality of instructions adapted to be loaded by a processor and to perform the above-mentioned method steps.
In a fourth aspect, an embodiment of the present application provides an electronic device, which may include: a processor and a memory; wherein the memory stores a computer program adapted to be loaded by the processor and to perform the above-mentioned method steps.
The beneficial effects brought by the technical scheme provided by some embodiments of the application at least comprise:
in the embodiment of the application, a terminal receives a transmission instruction aiming at a voice address book, acquires the name identification code and the contact number of each contact in the voice address book, generates the number identification code corresponding to the contact number based on the name identification code and the contact number, and transmits the name identification code and the number identification code. The voice name and the contact number are separated, the name identification code corresponding to the voice name and the number identification code corresponding to the contact number are transmitted, and the address list information is transmitted in a coding mode instead of directly transmitting the address list information, so that the address list information is protected, the probability that the address list is cracked in transmission is reduced, and the transmission safety can be improved.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic flowchart of an address book transmission method according to an embodiment of the present disclosure;
fig. 2 is a schematic diagram illustrating an example of a transmission interface of a voice address book according to an embodiment of the present disclosure;
FIG. 3 is a schematic diagram illustrating an example of an operation interface for inputting a contact according to an embodiment of the present application;
fig. 4 is a schematic flowchart of an address book transmission method according to an embodiment of the present disclosure;
fig. 5 is an exemplary schematic diagram of an operation interface for creating a voice address book according to an embodiment of the present application;
fig. 6 is an exemplary schematic diagram of an operation interface for creating a voice address book according to an embodiment of the present application;
fig. 7 is an exemplary schematic diagram of an operation interface for creating a voice address book according to an embodiment of the present application;
fig. 8 is an exemplary schematic diagram of a contact display interface of a voice address book according to an embodiment of the present application;
fig. 9 is a schematic structural diagram of an address book transmission apparatus according to an embodiment of the present application;
fig. 10 is a schematic structural diagram of an address book transmission apparatus according to an embodiment of the present application;
fig. 11 is a schematic structural diagram of an electronic device according to an embodiment of the present application.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more clear, embodiments of the present application will be described in further detail below with reference to the accompanying drawings.
When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the application, as detailed in the appended claims.
In the description of the present application, it is to be understood that the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. The specific meaning of the above terms in the present application can be understood in a specific case by those of ordinary skill in the art. Further, in the description of the present application, "a plurality" means two or more unless otherwise specified. "and/or" describes the association relationship of the associated objects, meaning that there may be three relationships, e.g., a and/or B, which may mean: a exists alone, A and B exist simultaneously, and B exists alone. The character "/" generally indicates that the former and latter associated objects are in an "or" relationship.
The address book transmission method provided by the embodiment of the present application will be described in detail below with reference to fig. 1 to 8. The method may be implemented in dependence on a computer program operable on a von neumann based address book transmission device. The computer program may be integrated into the application or may run as a separate tool-like application. The task allocation device in the embodiment of the present application may be a user terminal, where the user terminal includes but is not limited to: a smartphone, personal computer, tablet, handheld device, in-vehicle device, wearable device, computing device, or other processing device connected to a wireless modem, and the like.
Please refer to fig. 1, which is a flowchart illustrating an address book transmission method according to an embodiment of the present disclosure. As shown in fig. 1, the method of the embodiment of the present application may include the steps of:
s101, receiving a transmission instruction aiming at a voice address book, and acquiring a name identification code and a contact number of each contact in the voice address book;
the voice address book can be understood as an address book generated by inputting the contact persons in a voice mode, and the address book can be broadcasted in the voice mode.
Including at least one contact, each contact including a name and a contact number. The name and the contact number can be marked and displayed in a text and voice mode.
Receiving a transmission instruction for the voice address book, a feasible understanding is that a transmission control is arranged on the voice address book interface, for example, "send" in fig. 2, and when the user clicks the transmission control, the sharing interface is pulled up. Another possible understanding is that the voice assistant clicks a microphone to input "send voice address list to friend" in the voice assistant interface, as shown in fig. 3.
And after receiving the transmission instruction, the terminal generates a name identification code for each contact in the voice address list, wherein the name identification code is used for uniquely identifying each name.
For example, as shown in table 1, the correspondence between the name, the name identification code, and the contact number in the voice address book is shown. The name identifier corresponding to the name a is "abcdef", the contact number is "123456789", the name identifier corresponding to the name B is "686 fse", and the contact number is "455685353".
TABLE 1
Name (R) Name identification code Contact number
A abcdef 123456789
B 686fse 455685353
N 4ttgse 435485456
Optionally, the instruction may also be transmitted to a target contact person selected in the voice address book, and the name identification code and the contact number of each contact person in the voice address book may be acquired. The target contact may be one or more.
S102, generating a number identification code corresponding to the contact number based on the name identification code and the contact number;
specifically, the number identification code can be generated by combining the name identification code and the contact number code and adopting a preset coding algorithm.
For example, as shown in table 2, the correspondence between the name, the name identifier, the contact number, and the number identifier in the voice address book is shown. The name identification code corresponding to the name a is "abcdef", the contact number is "123456789", and "1 a2b3c4 d" is generated by encoding "abcdef" and "123456789".
TABLE 2
Name (R) Name identification code Contact number Number identification code
A abcdef 123456789 1a2b3c4d
B 686fse 455685353 4s5s6f7j
N 4ttgse 435485456 6h4j7e5r
The encoding algorithm may be URL encoding or Base64 encoding, but may also be other encoding algorithms, and is not limited herein.
The URL code is the code used by the browser to send data to the server and is a coding algorithm rather than an encryption algorithm. The purpose of URL encoding is to encode arbitrary text data as text expressed in% prefixes, the encoded text containing only a-Z, 0-9, and- _ which facilitates browser and server processing, e.g., < expressed in% 3C.
For example, a complete URL is "http:// www.mukedada.com/login? Adenname & passswerd & 123456? The URL code is http% 3A% 2F% 2 fww.mukedada.com% 2 Flogin% 3 Fusername% 3 Dadmin% 26 passswerd% 3D 123456% 3 Fremark% 3D 7% AE% a 1% E7% 90% 86% E5% 91% 98, all except english letters and numbers are started with% and since a chinese language is represented by 3 bytes, the administrator is represented by 9% xx.
Base64 encoding is an encoding algorithm that textually represents binary data, and contains only 64 characters: ' A ', ' B ', ' C ', ' a ', ' B ', ' C ', '0', '1', ' a ' + ', '/', with corresponding indices from 0 to 63, respectively. Since Base64 can only display 64 text characters, for binary data, it needs a set of mapping mechanism to convert binary data into text data, i.e. 3 bytes are selected as a group for regrouping: every 6 bits are a new byte, forming 4 groups, what is left in the end of 1 or 2 bytes if the binary data to be encoded is not a multiple of 3? Base64 is complemented at the end with \ x00 bytes, and then 1 or 2 marks are added at the end of the code to indicate how many bytes are complemented, and the information is automatically removed when decoding.
S103, transmitting the name identification code and the number identification code.
One possible way is to transmit the name identifier and the number identifier directly, i.e. to send the name identifier one by one and the number identifier one by one. Since the number of the name identification codes is multiple and the number of the corresponding number identification codes is multiple, even if the name identification codes are directly transmitted, the name identification codes are difficult to crack due to unclear correspondence. Another feasible way is to encapsulate the name identifier(s) and the number identifier(s) respectively, that is, to map the name identifier and the number identifier to the payload of a certain encapsulation protocol respectively, then fill the packet header of the corresponding protocol to form the data packet of the encapsulation protocol, complete rate adaptation, and then perform transmission, which can reduce the amount of transmission data and improve the transmission efficiency. Another possible way is that the name identifier and the number identifier may be encrypted and then transmitted, which may further increase data security.
The method can be directly sent to the friends, can also be transmitted through third-party application, and can also be uploaded to a server.
Optionally, when the user has the right, name voice and/or number voice can be uploaded synchronously.
Optionally, the uploaded name voice, the name identification code and the number identification code may also be downloaded through a terminal, then the number identification code is decoded to obtain a contact number corresponding to the number identification code, the name voice is decoded to obtain a name text corresponding to the name voice, and finally, the contact number corresponding to the name text is determined based on the corresponding relationship between the contact number and the name identification code and the corresponding relationship between the name identification code and the name voice.
In the embodiment of the application, a terminal receives a transmission instruction aiming at a voice address book, acquires the name identification code and the contact number of each contact in the voice address book, generates the number identification code corresponding to the contact number based on the name identification code and the contact number, and transmits the name identification code and the number identification code. The voice name and the contact number are separated, the name identification code corresponding to the voice name and the number identification code corresponding to the contact number are transmitted, and the address list information is transmitted in a coding mode instead of directly transmitting the address list information, so that the address list information is protected, the probability that the address list is cracked in transmission is reduced, and the transmission safety can be improved. In addition, the address book information obtained by the third party is encrypted and then sent, so that the encryption performance is increased. The user downloads the address list from the background, the system automatically downloads the name identification code, the number identification code and the name voice, and data recovery can be realized through matching and decoding of the identification codes.
Please refer to fig. 4, which is a flowchart illustrating an address book transmission method according to an embodiment of the present disclosure. The difference between the embodiment shown in fig. 4 and the embodiment shown in fig. 1 is that fig. 4 is a detailed description of the present solution with reference to a specific example, and the address book transmission method may include the following steps:
s201, creating a voice address book, and sequentially inputting voice information of each contact in the voice address book;
the voice address book can be understood as an address book generated by inputting the contact persons in a voice mode, and the address book can be broadcasted in the voice mode.
One possible way is a full creation way based on a voice assistant, as shown in fig. 5, a user presses a power key for a long time or clicks a voice assistant icon on a main interface of a terminal to wake up the voice assistant, and clicks a voice control on the voice assistant interface and inputs a creation command, so as to create a voice address book. The user then continues to speak "xxx' as the phone of xxx is xxxxxxxxx" through the voice control, completing the input of voice information for each contact. At this time, the system stores the name part in the form of audio data (i.e. name voice), and the contact number part is stored in the form of digital part data and voice data, respectively. Of course, if the address list is created on the terminal, the voice control is directly clicked to input the voice information of the contact person.
Another possible way is that, based on the address book creating way, as shown in fig. 6, an address book interface is opened, and a long press is performed on the address book interface, at this time, a dialog box is popped up, which includes options of "copy, paste, edit, create voice address book", and the like, the voice address book is selected to be created, then the system prompts the user to "please say the name of the object", at this time, the user can say a name, or a code number, and a contact number corresponding to the name or the code number, then the name is saved in the form of audio, and the contact number part is saved in the form of numbers and audio respectively.
Another possible way is also a creation way based on the address book, as shown in fig. 7, specifically, when an object is newly created on the address book, a new voice address book is selected, and then a voice control is popped up, the following creation process is the same as the above-mentioned way using the voice assistant, and details are not repeated.
S202, reading name keywords and contact numbers in the voice information, and establishing a corresponding relation between the name keywords and the contact numbers;
it will be appreciated that the name part of the voice message is stored in audio form (name voice) and the contact number is stored in audio form (number voice) and in numerical form (contact number) respectively.
And converting the name voice into a text to obtain a name text. The name keyword can be a name text or a part of keywords in the name text.
For example, the name text is "baby" and the name keyword is "baby".
And establishing a corresponding relation between the name keywords and the contact numbers according to the information contained in the voice information input by the user, thereby forming a plurality of groups of contacts.
For example, as shown in table 3, the name keyword "bao" corresponds to the contact number "123456789", the name keyword "gui" corresponds to the contact number "455685353", and the name keyword "yu" corresponds to the contact number "435485456", so that a correspondence table is established therebetween.
Of course, when creating the voice address book, if the user uses the dialect to input, when reading the name text, the name information is packaged by using the harmonic sound, and then the name keyword is read. The purpose that others cannot easily know can be achieved.
TABLE 3
Name key word Contact number
Treasure
123456789
Sweet osmanthus 455685353
Feather 435485456
S203, displaying the name keywords of each contact person and the contact numbers corresponding to the name keywords line by line on a display interface, and marking the name keywords in a voice form;
for example, as shown in FIG. 8, each contact's information is displayed line by line, including name keywords and corresponding contact numbers. If the contact has voice information, one is displayed next to the name keyword "))", the user can click on the address book and the address book is broadcasted.
S204, acquiring a dialing voice input aiming at the target contact in the display interface;
the target contact person can be any person or a plurality of persons in the voice address book.
The user may enter a dialing voice by invoking a voice assistant, such as entering "call to feather".
S205, when the dialing voice is matched with the name voice of the target contact person, dialing calling is carried out on the target contact person;
and analyzing the dialing voice, determining the tone, the tone and the temperament of the dialing voice, matching the tone, the tone and the temperament of the name voice, if the matching is successful, indicating that the operation is the same user operation, carrying out dialing calling on the target contact person, otherwise, not carrying out calling.
The successful matching can be understood as that the tone, the tone and the temperament of the two are successfully matched, or that the two features are successfully matched.
S206, receiving a transmission instruction input aiming at the voice address book, and reading voice information corresponding to the transmission instruction;
it will be appreciated that the user enters voice information as the transmission instruction, which also includes timbre, pitch and temperament.
S207, judging whether the voice information is matched with preset voice information or not, and if so, acquiring name voices of all contacts in the voice address list;
the preset voice information is the voice information which is stored in advance by the operation user of the terminal and is used for safety verification. And matching the tone, the tone and the rhythm of the voice information with the tone, the tone and the rhythm of the preset voice information, and if the matching is successful, indicating that the transmission requirements sent by the same user have transmission authority, reading the name voice of each contact in the voice address list in a cache.
The successful matching can be understood as that the tone, the tone and the temperament of the two are successfully matched, or that the two features are successfully matched.
S208, generating name identification codes corresponding to the name voices of the contacts respectively;
the name identification code is a name ID code, and each contact in the voice address list corresponds to a name identification code and a name voice one-to-one, and is used for uniquely identifying the name voice.
May be generated according to a preset rule, such as the character string "abcdef". Of course, in order to increase the difficulty of identification, the generated name identification code may be composed of a combination of letters, numbers, symbols, and the like.
S209, coding the name identification code and the contact number by adopting a preset coding algorithm to generate a number identification code corresponding to the contact number;
see S102 for details, which are not described herein.
S210, acquiring a transmission authority aiming at name voice;
and the transmission authority is set to improve the transmission safety. The probability of being cracked is avoided being increased when the name voice and the name identification code are uploaded.
S211, when the transmission authority indicates that the name voice, the name identification code and the number identification code are authorized, the name voice, the name identification code and the number identification code are transmitted.
When the transmission permission indication is authorized, the user wants to synchronously upload the name voice, the name identification code and the number identification code, so that the receiving party can decode the information conveniently and the information can be recovered conveniently. The applicable scene can be that this pronunciation address book is received through different equipment to same user, perhaps current user uploads this pronunciation address book to the high in the clouds and backups.
Wherein, the name voice, the name identification code and the number identification code can be transmitted respectively. The receiving end can decode and complete data recovery according to the corresponding relation between the name identification code and the number identification code and the corresponding relation between the name voice and the name identification code.
In the embodiment of the application, a terminal receives a transmission instruction aiming at a voice address book, acquires the name identification code and the contact number of each contact in the voice address book, generates the number identification code corresponding to the contact number based on the name identification code and the contact number, and transmits the name identification code and the number identification code. The voice name and the contact number are separated, then the name identification code corresponding to the voice name and the number identification code corresponding to the contact number are transmitted, the address book information is transmitted in a coding mode instead of directly transmitting the address book information, so that the address book information is protected, the probability of cracking of the address book in transmission is reduced, in addition, the voice information is authenticated (identity authentication) before transmission, the permission for transmission can be ensured, and the transmission safety can be improved through multiple processing such as authentication, coding and encryption. Through the voice creating mode, the operation can be simplified, the convenience of address list contact storage and dialing operation is improved, and the user experience is improved.
The following are embodiments of the apparatus of the present application that may be used to perform embodiments of the method of the present application. For details which are not disclosed in the embodiments of the apparatus of the present application, reference is made to the embodiments of the method of the present application.
Please refer to fig. 9, which illustrates a schematic structural diagram of an address book transmission apparatus according to an exemplary embodiment of the present application. The address book transmission device can be realized by software, hardware or a combination of the two to form all or part of the user terminal. The device 1 comprises a name identification code acquisition module 10, a number identification code acquisition module 20 and an identification code transmission module 30.
The name identification code acquisition module 10 is configured to receive a transmission instruction for a voice address book, and acquire a name identification code and a contact number of each contact in the voice address book;
a number identification code obtaining module 20, configured to generate a number identification code corresponding to the contact number based on the name identification code and the contact number;
an identification code transmission module 30, configured to transmit the name identification code and the number identification code.
Optionally, the name identifier obtaining module 10 is specifically configured to:
acquiring name voices of each contact in the voice address list;
and generating name identification codes corresponding to the name voices of the contacts respectively.
Optionally, as shown in fig. 10, the apparatus further includes:
the voice input module 40 is used for creating a voice address list and sequentially inputting the voice information of each contact in the voice address list;
the corresponding relationship establishing module 50 is configured to read a name keyword and a contact number in the voice message, and establish a corresponding relationship between the name keyword and the contact number.
Optionally, as shown in fig. 10, the apparatus further includes:
and the information display module 60 is configured to display the name keywords of each contact and the contact numbers corresponding to the name keywords line by line on a display interface, and mark the name keywords in a voice form.
Optionally, the name identifier obtaining module 10 is specifically configured to:
receiving a transmission instruction input aiming at a voice address book, and reading voice information corresponding to the transmission instruction;
and judging whether the voice information is matched with preset voice information or not, and if so, triggering and executing the step of acquiring the name identification codes and the contact numbers of the contacts in the voice address list.
Optionally, the number identifier obtaining module 20 is specifically configured to:
and coding the name identification code and the contact number by adopting a preset coding algorithm to generate a number identification code corresponding to the contact number.
Optionally, the identification code transmission module 30 is specifically configured to:
acquiring transmission authority aiming at name voice;
and when the transmission permission indication is authorized, transmitting the name voice, the name identification code and the number identification code.
Optionally, as shown in fig. 10, the apparatus further includes:
an information downloading module 70, configured to download the name voice, the name identifier, and the number identifier;
an identification code decoding module 80, configured to decode the number identification code to obtain a contact number corresponding to the number identification code;
a voice decoding module 90, configured to decode the name voice to obtain a name text corresponding to the name voice;
the text determination module 100 is configured to determine a contact number corresponding to the name text based on a corresponding relationship between a contact number and a name identifier and a corresponding relationship between the name identifier and the name voice.
Optionally, as shown in fig. 10, the method further includes:
a dialing voice receiving module 110, configured to obtain a dialing voice input for a target contact in the display interface;
the dial call module 120 is configured to perform a dial call to the target contact when the dial voice matches the name voice of the target contact.
It should be noted that, when the address book transmission apparatus provided in the foregoing embodiment executes the address book transmission method, only the division of the functional modules is illustrated, and in practical applications, the functions may be distributed by different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules, so as to complete all or part of the functions described above. In addition, the address book transmission device and the address book transmission method provided by the above embodiments belong to the same concept, and details of implementation processes are found in the method embodiments, which are not described herein again.
The above-mentioned serial numbers of the embodiments of the present application are merely for description and do not represent the merits of the embodiments.
In the embodiment of the application, a terminal receives a transmission instruction aiming at a voice address book, acquires the name identification code and the contact number of each contact in the voice address book, generates the number identification code corresponding to the contact number based on the name identification code and the contact number, and transmits the name identification code and the number identification code. The voice name and the contact number are separated, then the name identification code corresponding to the voice name and the number identification code corresponding to the contact number are transmitted, the address book information is transmitted in a coding mode instead of directly transmitting the address book information, so that the address book information is protected, the probability of cracking of the address book in transmission is reduced, in addition, the voice information is authenticated (identity authentication) before transmission, the permission for transmission can be ensured, and the transmission safety can be improved through multiple processing such as authentication, coding and encryption. Through the voice creating mode, the operation can be simplified, the convenience of address list contact storage and dialing operation is improved, and the user experience is improved.
An embodiment of the present application further provides a computer storage medium, where the computer storage medium may store a plurality of instructions, where the instructions are suitable for being loaded by a processor and executing the method steps in the embodiments shown in fig. 1 to 8, and a specific execution process may refer to specific descriptions of the embodiments shown in fig. 1 to 8, which are not described herein again.
Fig. 11 is a schematic structural diagram of an electronic device according to an embodiment of the present disclosure. As shown in fig. 11, the electronic device 1000 may include: at least one processor 1001, at least one network interface 1004, a user interface 1003, memory 1005, at least one communication bus 1002.
Wherein a communication bus 1002 is used to enable connective communication between these components.
The user interface 1003 may include a Display screen (Display) and a Camera (Camera), and the optional user interface 1003 may also include a standard wired interface and a wireless interface.
The network interface 1004 may optionally include a standard wired interface, a wireless interface (e.g., WI-FI interface), among others.
Processor 1001 may include one or more processing cores, among other things. The processor 1001 interfaces various components throughout the electronic device 1000 using various interfaces and lines to perform various functions of the electronic device 1000 and to process data by executing or executing instructions, programs, code sets, or instruction sets stored in the memory 1005 and invoking data stored in the memory 1005. Alternatively, the processor 1001 may be implemented in at least one hardware form of Digital Signal Processing (DSP), Field-Programmable Gate Array (FPGA), and Programmable Logic Array (PLA). The processor 1001 may integrate one or more of a Central Processing Unit (CPU), a Graphics Processing Unit (GPU), a modem, and the like. Wherein, the CPU mainly processes an operating system, a user interface, an application program and the like; the GPU is used for rendering and drawing the content required to be displayed by the display screen; the modem is used to handle wireless communications. It is understood that the modem may not be integrated into the processor 1001, but may be implemented by a single chip.
The Memory 1005 may include a Random Access Memory (RAM) or a Read-Only Memory (Read-Only Memory). Optionally, the memory 1005 includes a non-transitory computer-readable medium. The memory 1005 may be used to store an instruction, a program, code, a set of codes, or a set of instructions. The memory 1005 may include a stored program area and a stored data area, wherein the stored program area may store instructions for implementing an operating system, instructions for at least one function (such as a touch function, a sound playing function, an image playing function, etc.), instructions for implementing the various method embodiments described above, and the like; the storage data area may store data and the like referred to in the above respective method embodiments. The memory 1005 may optionally be at least one memory device located remotely from the processor 1001. As shown in fig. 11, a memory 1005, which is a kind of computer storage medium, may include therein an operating system, a network communication module, a user interface module, and a directory transfer application.
In the electronic device 1000 shown in fig. 11, the user interface 1003 is mainly used as an interface for providing input for a user, and acquiring data input by the user; the processor 1001 may be configured to call the address book transmission application stored in the memory 1005, and specifically perform the following operations:
receiving a transmission instruction aiming at a voice address book, and acquiring a name identification code and a contact number of each contact in the voice address book;
generating a number identification code corresponding to the contact number based on the name identification code and the contact number;
and transmitting the name identification code and the number identification code.
In an embodiment, when the processor 1001 acquires the name identifier and the contact number of each contact in the voice address book, the following operations are specifically performed:
acquiring name voices of each contact in the voice address list;
and generating name identification codes corresponding to the name voices of the contacts respectively.
In one embodiment, before performing the step of receiving the transmission instruction for the voice address book, the processor 1001 further performs the following operations:
creating a voice address book, and sequentially inputting voice information of each contact in the voice address book;
and reading name keywords and contact numbers in the voice information, and establishing a corresponding relation between the name keywords and the contact numbers.
In one embodiment, after the processor 1001 establishes the correspondence between the name keyword and the contact number, the following operations are further performed:
and displaying the name keywords of each contact person and the contact numbers corresponding to the name keywords line by line on a display interface, and marking the name keywords in a voice form.
In an embodiment, when the processor 1001 receives a transmission instruction for a voice address book, the following operations are specifically performed:
receiving a transmission instruction input aiming at a voice address book, and reading voice information corresponding to the transmission instruction;
and judging whether the voice information is matched with preset voice information or not, and if so, triggering and executing the step of acquiring the name identification codes and the contact numbers of the contacts in the voice address list.
In an embodiment, when the processor 1001 generates a number identifier corresponding to the contact number based on the name identifier and the contact number, specifically performs the following operations:
and coding the name identification code and the contact number by adopting a preset coding algorithm to generate a number identification code corresponding to the contact number.
In an embodiment, when the processor 1001 performs the transmission of the name identifier and the number identifier, the following operations are specifically performed:
acquiring transmission authority aiming at name voice;
and when the transmission permission indication is authorized, transmitting the name voice, the name identification code and the number identification code.
In one embodiment, after performing the transmission of the name speech, the name identifier and the number identifier, the processor 1001 further performs the following operations:
downloading the name voice, the name identification code and the number identification code;
decoding the number identification code to obtain a contact number corresponding to the number identification code;
decoding the name voice to obtain a name text corresponding to the name voice;
and determining the contact number corresponding to the name text based on the corresponding relation between the contact number and the name identification code and the corresponding relation between the name identification code and the name voice.
In one embodiment, the processor 1001 further performs the following operations:
acquiring a dialing voice input aiming at a target contact in the display interface;
and when the dialing voice is matched with the name voice of the target contact person, performing dialing call to the target contact person.
In the embodiment of the application, a terminal receives a transmission instruction aiming at a voice address book, acquires the name identification code and the contact number of each contact in the voice address book, generates the number identification code corresponding to the contact number based on the name identification code and the contact number, and transmits the name identification code and the number identification code. The voice name and the contact number are separated, then the name identification code corresponding to the voice name and the number identification code corresponding to the contact number are transmitted, the address book information is transmitted in a coding mode instead of directly transmitting the address book information, so that the address book information is protected, the probability of cracking of the address book in transmission is reduced, in addition, the voice information is authenticated (identity authentication) before transmission, the permission for transmission can be ensured, and the transmission safety can be improved through multiple processing such as authentication, coding and encryption. Through the voice creating mode, the operation can be simplified, the convenience of address list contact storage and dialing operation is improved, and the user experience is improved.
It will be understood by those skilled in the art that all or part of the processes of the methods of the embodiments described above can be implemented by a computer program, which can be stored in a computer-readable storage medium, and when executed, can include the processes of the embodiments of the methods described above. The storage medium may be a magnetic disk, an optical disk, a read-only memory or a random access memory.
The above disclosure is only for the purpose of illustrating the preferred embodiments of the present application and is not to be construed as limiting the scope of the present application, so that the present application is not limited thereto, and all equivalent variations and modifications can be made to the present application.

Claims (11)

1. A method for transmitting an address book is characterized by comprising the following steps:
receiving a transmission instruction aiming at a voice address book, and acquiring a name identification code and a contact number of each contact in the voice address book;
generating a number identification code corresponding to the contact number based on the name identification code and the contact number;
and transmitting the name identification code and the number identification code.
2. The method of claim 1, wherein the obtaining the name identifier and the contact number of each contact in the voice address book comprises:
acquiring name voices of each contact in the voice address list;
and generating name identification codes corresponding to the name voices of the contacts respectively.
3. The method of claim 2, wherein before receiving the transmission instruction for the voice address book, the method further comprises:
creating a voice address book, and sequentially inputting voice information of each contact in the voice address book;
and reading name keywords and contact numbers in the voice information, and establishing a corresponding relation between the name keywords and the contact numbers.
4. The method of claim 3, wherein after the establishing the correspondence between the name keyword and the contact number, further comprising:
and displaying the name keywords of each contact person and the contact numbers corresponding to the name keywords line by line on a display interface, and marking the name keywords in a voice form.
5. The method of claim 1, wherein receiving a transmission instruction for a voice address book comprises:
receiving a transmission instruction input aiming at a voice address book, and reading voice information corresponding to the transmission instruction;
and judging whether the voice information is matched with preset voice information or not, and if so, triggering and executing the step of acquiring the name identification codes and the contact numbers of the contacts in the voice address list.
6. The method of claim 1, wherein generating a number identifier corresponding to the contact number based on the name identifier and the contact number comprises:
and coding the name identification code and the contact number by adopting a preset coding algorithm to generate a number identification code corresponding to the contact number.
7. The method of claim 1, wherein transmitting the name identifier and the number identifier comprises:
acquiring transmission authority aiming at name voice;
and when the transmission permission indication is authorized, transmitting the name voice, the name identification code and the number identification code.
8. The method of claim 7, wherein after transmitting the name voice, the name identifier, and the number identifier, further comprising:
downloading the name voice, the name identification code and the number identification code;
decoding the number identification code to obtain a contact number corresponding to the number identification code;
decoding the name voice to obtain a name text corresponding to the name voice;
and determining the contact number corresponding to the name text based on the corresponding relation between the contact number and the name identification code and the corresponding relation between the name identification code and the name voice.
9. The method of claim 4, further comprising:
acquiring a dialing voice input aiming at a target contact in the display interface;
and when the dialing voice is matched with the name voice of the target contact person, performing dialing call to the target contact person.
10. A computer storage medium, characterized in that it stores a plurality of instructions adapted to be loaded by a processor and to carry out the method steps according to any one of claims 1 to 9.
11. An electronic device, comprising: a processor and a memory; wherein the memory stores a computer program adapted to be loaded by the processor and to perform the method steps of any of claims 1 to 9.
CN201911290222.0A 2019-12-16 2019-12-16 Address book transmission method and device, storage medium and electronic equipment Active CN111065094B (en)

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