CN111507068B - Input information processing method and device and mobile terminal - Google Patents

Input information processing method and device and mobile terminal Download PDF

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Publication number
CN111507068B
CN111507068B CN202010261393.7A CN202010261393A CN111507068B CN 111507068 B CN111507068 B CN 111507068B CN 202010261393 A CN202010261393 A CN 202010261393A CN 111507068 B CN111507068 B CN 111507068B
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coding
coding mode
input information
character
information
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CN111507068A (en
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吕欣阳
田海燕
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Hisense Mobile Communications Technology Co Ltd
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Hisense Mobile Communications Technology Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F40/00Handling natural language data
    • G06F40/10Text processing
    • G06F40/12Use of codes for handling textual entities
    • G06F40/126Character encoding

Abstract

The application provides a processing method and device of input information and a mobile terminal. The application provides a processing method of input information, which comprises the following steps: determining the coding mode supported by the current input information; determining a character length limit value corresponding to the coding mode; coding the current input information according to the coding mode, and determining the length of the coded character; judging whether the length of the coded character is larger than the character length limit value, if so, sending prompt information to a user to instruct the user to stop inputting information. The application can improve the usability of the input information of the mobile terminal.

Description

Input information processing method and device and mobile terminal
The application discloses a method and a device for processing input information and a mobile terminal for processing input information, which are filed by the application of China patent application 201610951071.9 of the application of the year 2016, the month 10 and the day 27.
Technical Field
The present application relates to electronic technologies, and in particular, to a method and an apparatus for processing input information, and a mobile terminal.
Background
With the development of mobile communication technology, the mobile terminal has a close relationship with the daily life, learning, entertainment, etc. of the user.
Users are increasingly inclined to use mobile terminals for information processing, such as storing information through mobile terminals, and gradually abandon traditional information processing modes such as manually recording information. The user uses the mobile terminal to process information, at least the information is input into the mobile terminal, and the input information is stored by the mobile terminal.
At present, the processing of the input information mostly only prompts the user that the character length of the input information is out of limit in the process of storing the input information until abnormal storage occurs, and the usability is poor.
Disclosure of Invention
The application provides an information processing method, an information processing device and a mobile terminal, so as to improve usability of the mobile terminal for input information.
The application provides a processing method of input information, comprising the following steps:
determining the coding mode supported by the current input information;
determining a character length limit value corresponding to the coding mode;
coding the current input information according to the coding mode, and determining the length of the coded character;
judging whether the length of the coded character is larger than the character length limit value, if so, sending prompt information to a user to instruct the user to stop inputting information.
The application also provides a processing device of the input information, comprising:
the first determining module is used for determining the coding mode supported by the current input information;
the second determining module is used for determining a character length limit value corresponding to the coding mode;
the coding module is used for coding the current input information according to the coding mode and determining the coded character length;
a judging module for judging whether the character length after coding is larger than the character length limit value,
and the prompting module is used for sending prompting information to a user to instruct the user to stop inputting information if the character length of the current input information is larger than the character length limit value.
The application also provides a mobile terminal, comprising: input device, output device, processor and memory; the input device and the output device are respectively connected with the processor, and the processor is also connected with the memory;
the input device is used for receiving input information and transmitting the input information to the processor;
the memory is used for storing program instructions;
the processor is used for calling the program instructions stored in the memory to determine a coding mode supported by the input information, determining a character length limit value corresponding to the coding mode, coding the current input information according to the coding mode, and determining the coded character length; judging whether the length of the coded character is larger than the character length limit value, if so, controlling the output equipment to send prompt information to the user so as to instruct the user to stop inputting information.
The method, the device and the mobile terminal for processing the input information can determine the coding mode supported by the current input information, determine the character length limit value corresponding to the coding mode, code the current input information according to the coding mode to determine the coded character length, judge whether the coded character length is greater than the character length limit value, and if so, send prompt information to a user to instruct the user to stop inputting the information. According to the method, in the information input process, if the character length of the current input information after coding is larger than the character length limit value, prompt information is sent to the user to instruct the user to stop inputting the information, instead of prompting the user that the character length of the input information is out of limit in the input information storage process, storage abnormality caused by overlong input information is avoided, usability of the mobile terminal for the input information is improved, and therefore user experience is improved.
Drawings
FIG. 1 is a flow chart of a method for processing input information provided by the application;
FIG. 2 is a flow chart of another method for processing input information provided by the application;
FIG. 3 is a flowchart of another method for processing input information according to the present application;
FIG. 4 is a schematic diagram of a device for processing input information according to the present application;
FIG. 5 is a schematic diagram of another input information processing apparatus according to the present application;
fig. 6 is a schematic structural diagram of a mobile terminal according to the present application.
Detailed Description
The processing method of each input information provided by the application can be executed by the processing device of the input information, and the processing device of the input information can be integrated in any mobile terminal capable of inputting information by a mode of software and/or hardware. The processing device of the input information can be located in an input control of the mobile terminal, for example, or can be integrated with other controls in the mobile terminal. The mobile terminal can be any mobile terminal capable of inputting information, such as a mobile phone or a tablet personal computer.
Fig. 1 is a flowchart of a method for processing input information according to the present application. As shown in fig. 1, the processing method of the input information may include the following:
s101, determining a coding mode supported by current input information.
Specifically, the current input information may include: a first character received through an input device, and a second character received through the input device from before the first character. The second character is for example located in a cache of the mobile terminal. For example, the input device may include: at least one of a touch display, physical keys, and a voice input device. The voice input device may be a Microphone (Microphone, abbreviated as Mic). For example, in the method, the coding mode supported by the current input information may be determined from a plurality of coding modes. The plurality of coding modes may be coding modes supported by the mobile terminal.
It should be noted that the method may be a processing method of executing the input information once every time an input character is received. The current input information may be a character corresponding to the contact information, such as a contact name character.
S102, determining a character length limit value corresponding to the coding mode.
Specifically, character length limits corresponding to different coding modes are different, in the method, after the coding mode supported by the current input information is determined, the character length limit corresponding to the coding mode is determined, and then the current input information is coded according to the coding mode.
S103, coding the current input information according to the coding mode, and determining the length of the coded characters.
Specifically, in S103, all the characters of the current input information may be encoded according to the encoding mode, so as to obtain the encoded current input information, and then the character length of the encoded current input information is determined.
S104, judging whether the length of the coded character is larger than the character length limit value.
Specifically, in S104, it may be determined whether the encoded character length is greater than the character length limit by comparing the encoded character length with the character length limit.
And S105, if the encoded character length is greater than the character length limit value, sending prompt information to a user so as to instruct the user to stop inputting information.
Specifically, the method can send the prompt information to the user in a vibration mode or in a text or voice mode. At present, other modes can be adopted to send prompt information to the user, and the application is not limited by the mode. If the encoded character length is greater than the character length limit, the method may also cease to obtain information entered by the input device.
Optionally, the method may further include:
if the encoded character length is less than the character length limit, the steps S101-S105 are continued.
The processing method of the input information provided by the application can determine the coding mode supported by the current input information, determine the character length limit value corresponding to the coding mode, code the current input information according to the coding mode to determine the coded character length, judge whether the coded character length is larger than the character length limit value, and if so, send prompt information to a user to instruct the user to stop inputting information. According to the method, in the information input process, if the character length of the current input information after coding is larger than the character length limit value, prompt information is sent to the user to instruct the user to stop inputting the information, instead of prompting the user that the character length of the input information is out of limit in the input information storage process, storage abnormality caused by overlong input information is avoided, usability of the mobile terminal for the input information is improved, and therefore user experience is improved.
Optionally, in the method for processing input information as described above, determining the coding mode supported by the current input information in S101 may include:
determining a first coding mode supported by the current input information from a plurality of coding modes according to a preset coding mode arrangement sequence; the arrangement sequence of the coding modes is the sequence from big to small of the character length limit value corresponding to the coding modes.
Since the arrangement order of the coding modes is the order of the character length limit values corresponding to the coding modes from large to small, the character length limit value corresponding to the first coding mode supported by the current input information in the plurality of coding modes is the maximum character length limit value supported by the current input information. Therefore, in the method, the first coding mode supported by the current input information is determined from a plurality of coding modes according to the sequence from the large character length limit value to the small character length limit value, so that the usability of the input information is improved, and the information quantity of the input information is improved.
Optionally, the application further provides a processing method of the input information. Fig. 2 is a flowchart of another method for processing input information according to the present application. As shown in fig. 2, determining the first coding scheme supported by the current input information from the plurality of coding schemes according to the preset coding scheme arrangement sequence as described above may include:
s201, judging whether the current input information supports a first coding mode in the plurality of coding modes.
S202, if the current input information supports the first coding mode, determining that the first coding mode supported by the current input information is the first coding mode in the plurality of coding modes.
And S203, if the current input information does not support the first coding mode, continuing to judge whether the current input information supports a second coding mode in the plurality of coding modes until the first coding mode supported by the current input information is determined.
The character length limit value corresponding to the first coding mode is larger than the character length limit value corresponding to the second coding mode.
Specifically, the first coding scheme and the second coding scheme may be any coding scheme other than the last coding scheme among the plurality of coding schemes. The second coding mode may be a next coding mode of the first coding mode after the plurality of coding modes are arranged according to a preset coding mode arrangement sequence.
If the second coding mode is the previous coding mode of the last coding mode in the plurality of coding modes, the current input information supports the second coding mode in the plurality of coding modes, the method can determine the second coding mode as the first coding mode supported by the current input information in the plurality of coding modes; if the current input information does not support the second coding mode of the plurality of coding modes, the second coding mode is directly determined, that is, the last coding mode of the plurality of coding modes is the first coding mode supported by the current input information.
Optionally, the plurality of coding modes as described above include: an 8-bit (bit) encoding mode, an 81 encoding mode of a 2-byte unit character set (2-byte Universal Character Set, abbreviated as UCS-2) and a 16-bit unified code conversion format (16-bit Unicode Transformation Format, abbreviated as UTF-16) encoding mode.
Specifically, the character length limit corresponding to the 8-bit (bit) encoding mode may be 14 bytes; the character length limit corresponding to the 81 encoding mode of UCS-2, also called 0X81 encoding mode, can be 11 bytes; the character length limit corresponding to the UTF-16 coding scheme may be 6 bytes.
The application also provides a processing method of the input information. Fig. 3 is a flowchart of another method for processing input information according to the present application. As shown in fig. 3, the processing method of the input information may include:
s301, receiving information input by a user, wherein the input information comprises name information of a contact person.
S302, determining whether the input information supports an 8-bit coding mode.
Specifically, in S302, it may be determined whether each character of the input information is in a preset encoding table, and if each character corresponding to the input information is in the encoding table, it may be determined that the input information supports an 8-bit encoding mode; otherwise, if the character corresponding to the input information has the content which is not in the coding table, the input information can be determined not to support the 8-bit coding mode. For example, the S302 may be, for example, calling interface control code of an Android operation (Android) system, such as gsmalphabet.
S303, if the input information supports the 8-bit coding mode, determining a character length limit value corresponding to the 8-bit coding mode, coding the current input information according to the 8-bit coding mode, and determining the coded character length.
S304, judging whether the coded character length is larger than a character length limit value corresponding to the 8-bit coding mode.
And S305, if the encoded character length is greater than the character length limit value corresponding to the 8-bit encoding mode, sending prompt information to a user so as to instruct the user to stop inputting information.
If the encoded character length is smaller than the character length limit corresponding to the 8-bit encoding mode, the process returns to S301.
S306, if the input information does not support the 8-bit coding mode, determining whether the input information supports the 81 coding mode of UCS-2.
Specifically, in S306, each character in the input information is converted into a Unicode (Unicode), such as 0xxx format, and if the number of bits of 16 bits in the Unicode of each character is less than 4 bits, 0 is high-order complementary. If the decimal number corresponding to the unicode of each character is smaller than 128, each character in the input information is a character in the American standard information interchange code (American Standard Code for Information Interchange, ASCII for short), and it is determined that the input information does not need to adopt an 81 coding mode of UCS-2 and returns to be a null value (null); if the first hexadecimal bit in the value obtained by performing AND operation on the Unicode of one character in the input information and 0x8000 is 1, the one character does not support the 81 coding mode of UCS-2 and returns to be a null value; if the first hexadecimal bit in the value obtained by performing the AND operation on the unicode of the character and 0x8000 is 0, each character supports the 81 coding mode of UCS-2. In the method, whether the base addresses corresponding to all the characters of the input information are the same or not is also required to be determined, and if the base addresses corresponding to all the characters of the input information are the same, the input information can be determined to support the 81 coding mode of the UCS-2; if the input information has characters with different base addresses, it can be determined that the input information does not support the 81 coding mode of the UCS-2.
If the decimal number corresponding to each character of the input information is smaller than 128, each character is a character in an ASCII set, and the binary sum 0xff corresponding to each character is stored in an array after AND operation; if the decimal number corresponding to each character of the input information is greater than 128, performing an AND operation on one character in the input information, such as a binary number corresponding to the first character and 0x7f80, wherein 2-9 bits in the result of the AND operation are determined to be base; the other character in the input information is exclusive-ored with the base corresponding to the binary number, and the exclusive-ored result is expressed as tempAlphaId. If the tempAlphaId is greater than 128, determining that the base address of the other character is different from the base address of the one character, and returning a null value if the input information does not support the 81 coding mode of UCS-2; if the tempAlphaId is less than 128, the result of the and operation of tempAlphaId and 0x80 is stored in the result array. The base is shifted to the right by 7 bits and the result of the AND operation with 0xff is used as the base address of the input information.
If the input information can support the 81 coding mode of UCS-2, an array is newly created, the array length is the input character length plus 3, the first byte memory 81, the second byte memory input character length, the third memory base address, and the following bytes sequentially store the codes of each character in the input information.
For example, if the unicode corresponding to one character in the input information is 0x45E8, the binary corresponding to the one character is 0100 0101 1110 1000, and the base corresponding to the binary and 0x7f80 is 0100 0101 1000 0000. And carrying out exclusive or on the binary corresponding to other characters and the base, if the exclusive or result is larger than 128, determining that the 2-9 bits of the binary corresponding to the other characters are different from 0x45E8, namely, the base address is different, and the input information cannot support the 81 coding mode of the UCS-2.
S307, if the input information supports the 81 coding mode of the UCS-2, determining a character length limit value corresponding to the 81 coding mode of the UCS-2, coding the current input information according to the 81 coding mode of the UCS-2, and determining the coded character length.
S308, judging whether the coded character length is larger than a character length limit value corresponding to the 81 coding mode of the UCS-2.
S309, if the encoded character length is greater than the character length limit corresponding to the 81 encoding mode of UCS-2, a prompt message is sent to the user to instruct the user to stop inputting information.
If the encoded character length is smaller than the character length limit corresponding to the 81 encoding mode of the UCS-2, the above-mentioned S301 is executed again.
S310, if the input information does not support the 81 coding mode of the UCS-2, determining a character length limit value corresponding to the UTF-16 coding mode, coding the current input information according to the UTF-16 coding mode, and determining the coded character length.
S311, judging whether the length of the coded character is larger than the character length limit value corresponding to the UTF-16 coding mode.
And S312, if the coded character length is greater than the character length limit value corresponding to the UTF-16 coding mode, sending prompt information to a user so as to instruct the user to stop inputting information.
If the encoded character length is smaller than the character length limit corresponding to the UTF-16 encoding mode, the above S301 is executed again.
The processing method of the input information can send the prompt information to the user when the character length of the current input information after being coded is larger than the character length limit value in the information input process, instruct the user to stop inputting the information, but not prompt the user that the character length of the input information is out of limit in the input information storage process, avoid the storage abnormality caused by overlong input information and improve the usability of the mobile terminal for the input information. In addition, the method determines the coding mode supported by the current input information from a plurality of coding modes according to the sequence from the big character length limit value to the small character length limit value corresponding to the coding mode, so that the usability of the input information is improved, and the information quantity of the input information is also improved.
The present application also provides an input information processing apparatus for executing the input information processing apparatus described in any one of fig. 1 to 3. Fig. 4 is a schematic structural diagram of an input information processing device according to the present application. As shown in fig. 4, the processing apparatus 400 for input information may include:
a first determining module 401, configured to determine an encoding mode supported by the current input information.
A second determining module 402, configured to determine a character length limit corresponding to the encoding mode.
The encoding module 403 is configured to encode the current input information according to the encoding mode, and determine the encoded character length.
A determining module 404, configured to determine whether the encoded character length is greater than the character length limit.
And the prompting module 405 is configured to send a prompting message to the user to instruct the user to stop inputting the information if the character length of the current input information is greater than the character length limit value.
Optionally, the first determining module 401 is specifically configured to determine, according to a preset coding manner arrangement sequence, a first coding manner supported by the current input information from multiple coding manners; the arrangement sequence of the coding modes is the sequence from big to small of the character length limit value corresponding to the coding modes.
Optionally, fig. 5 is a schematic structural diagram of another input information processing apparatus provided by the present application. As shown in fig. 5, in the processing apparatus 400 for input information, the first determining module 401 may include:
the judging subunit 4011 is configured to judge whether the current input information supports a first coding scheme of the plurality of coding schemes.
The determining subunit 4012 is configured to determine that the first coding scheme supported by the current input information is the first coding scheme of the plurality of coding schemes if the first coding scheme is supported by the current input information.
The judging subunit 4011 is further configured to, if the current input information does not support the first coding scheme of the plurality of coding schemes, continue to judge whether the current input information supports the second coding scheme of the plurality of coding schemes until it is determined that the current input information supports the first coding scheme; the character length limit value corresponding to the first coding mode is larger than the character length limit value corresponding to the second coding mode.
Optionally, the plurality of coding modes include: 8-bit coding scheme, 81 coding scheme of UCS-2 and UTF-16 coding scheme.
The processing device for input information provided by the present application may execute the processing method for input information described in any of fig. 1 to 3, and the specific implementation process and beneficial effects thereof may be referred to above, and will not be described herein.
The application further provides a mobile terminal. Fig. 6 is a schematic structural diagram of a mobile terminal according to the present application. As shown in fig. 6, the mobile terminal 600 may include: an input device 601, an output device 602, a processor 603, and a memory 604; the input device 601 and the output device 602 are connected to a processor 603, respectively, and the processor 603 is also connected to a memory 604.
An input device 601 for receiving input information and transmitting the input information to the processor 603.
Memory 604 for storing program instructions.
The processor 603 is configured to invoke the program instruction stored in the memory 604 to determine a coding mode supported by the input information, determine a character length limit corresponding to the coding mode, code the current input information according to the coding mode, and determine the coded character length; and judging whether the length of the coded character is greater than the character length limit value, if so, controlling the output device 602 to send prompt information to the user so as to instruct the user to stop inputting information.
Optionally, the processor 603 as described above is specifically configured to determine, according to a preset coding scheme arrangement sequence, a first coding scheme supported by the current input information from multiple coding schemes; the arrangement sequence of the coding modes is the sequence from big to small of the character length limit value corresponding to the coding modes.
Optionally, the processor 603 is specifically configured to determine whether the current input information supports a first coding mode of the plurality of coding modes; if yes, determining that a first coding mode supported by the current input information is a first coding mode in the plurality of coding modes; if not, continuing to judge whether the current input information supports a second coding mode in the plurality of coding modes or not until a first coding mode supported by the current input information is determined; the character length limit value corresponding to the first coding mode is larger than the character length limit value corresponding to the second coding mode.
Optionally, the plurality of coding modes include: 8-bit coding scheme, 81 coding scheme of UCS-2 and UTF-16 coding scheme.
The mobile terminal provided by the present application may execute the method for processing the input information described in any of the foregoing fig. 1 to 3, and the specific implementation process and the beneficial effects thereof may be referred to the foregoing, and will not be described herein.
Finally, it should be noted that: the above embodiments are only for illustrating the technical solution of the present application, and not for limiting the same; although the application has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical scheme described in the foregoing embodiments can be modified or some or all of the technical features thereof can be replaced by equivalents; such modifications and substitutions do not depart from the spirit of the application.

Claims (7)

1. A method of processing input information, comprising:
the mobile terminal receives contact name information input by a user;
determining a coding mode supported by the currently input contact name information, coding the currently input contact name information according to the coding mode, and determining the length of the coded characters, wherein the coding mode supported by the currently input contact name information is determined from a plurality of preset coding modes according to the sequence of the preset coding modes, and the sequence of the preset coding modes is the sequence from big to small of the character length limit corresponding to the coding modes;
and if the length of the coded character is greater than the character length limit value corresponding to the coding mode, stopping acquiring the input information.
2. The method as recited in claim 1, further comprising:
a prompt message appears to instruct the user to stop inputting information.
3. The method of claim 1, further comprising:
judging whether the currently input contact name information supports a first coding mode in the plurality of coding modes or not;
if yes, determining that a first coding mode supported by the currently input contact name information is a first coding mode in the plurality of coding modes;
if not, continuing to judge whether the currently input contact name information supports a second coding mode in the plurality of coding modes or not until determining the coding mode supported by the currently input contact name information; the character length limit value corresponding to the first coding mode is larger than the character length limit value corresponding to the second coding mode.
4. A method according to any one of claims 1-3, wherein the plurality of coding modes comprises: an 8-bit encoding mode, an 81 encoding mode of a 2-byte universal character set UCS-2 and a 16-bit unified code conversion format UTF-16 encoding mode.
5. An apparatus for processing input information, comprising:
the mobile terminal is used for receiving the contact name information input by the user and determining the coding mode supported by the contact name information input currently;
the second determining module is used for determining a character length limit value corresponding to the coding mode;
the encoding module is used for encoding the currently input contact name information according to the encoding mode, and determining the encoded character length, wherein the encoding mode supported by the currently input contact name information is determined from a plurality of preset encoding modes according to the sequence of the preset encoding modes, and the sequence of the preset encoding modes is the sequence from big to small of the character length limit value corresponding to the encoding mode;
and the judging module is used for stopping acquiring the input information if the length of the coded character is greater than the character length limit value corresponding to the coding mode.
6. The apparatus as recited in claim 5, further comprising:
and the prompting module is used for generating prompting information to instruct the user to stop inputting information if the length of the coded character is larger than the character length limit value corresponding to the coding mode.
7. The apparatus of claim 5, wherein the determining subunit is further configured to determine whether the currently entered contact name information supports a first encoding scheme of the plurality of encoding schemes;
if yes, determining that a first coding mode supported by the currently input contact name information is a first coding mode in the plurality of coding modes;
if not, continuing to judge whether the currently input contact name information supports a second coding mode in the plurality of coding modes or not until determining the coding mode supported by the currently input contact name information; the character length limit value corresponding to the first coding mode is larger than the character length limit value corresponding to the second coding mode.
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