WO2017008633A1 - 一种密码识别方法与设备 - Google Patents
一种密码识别方法与设备 Download PDFInfo
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- WO2017008633A1 WO2017008633A1 PCT/CN2016/087470 CN2016087470W WO2017008633A1 WO 2017008633 A1 WO2017008633 A1 WO 2017008633A1 CN 2016087470 W CN2016087470 W CN 2016087470W WO 2017008633 A1 WO2017008633 A1 WO 2017008633A1
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- Prior art keywords
- key code
- password
- quantized value
- input operation
- preset
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F21/00—Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
- G06F21/30—Authentication, i.e. establishing the identity or authorisation of security principals
- G06F21/45—Structures or tools for the administration of authentication
- G06F21/46—Structures or tools for the administration of authentication by designing passwords or checking the strength of passwords
Definitions
- the present application relates to the field of computers, and in particular, to a method and an apparatus for upgrading a distributed cache cluster.
- the existing password input is mostly the input method using the selection of letters and/or buttons.
- the user enters the password because the screen area is small and there are too many buttons to be displayed on the screen.
- you need to keep an eye on the screen to distinguish the numbers or letters press the button corresponding to the smaller area, and it is easy to accidentally touch other buttons, causing input errors.
- such passwords are easy to describe and inform others, which will cause password leakage problems. Not very sexual.
- An object of the present application is to provide a password identification method and device, which can solve the problem of password input errors and low confidentiality.
- a password identification method comprising:
- the first key code is a point
- the second key code is a line
- the key code corresponding to the input operation of each acquired password is obtained, including:
- the key code corresponding to the input operation of the bit code is identified according to the quantized value.
- the key code corresponding to the input operation of the bit password is identified according to the quantized value, and includes:
- the key code corresponding to the input operation for identifying the password is the first key code
- the key code corresponding to the input operation for identifying the bit code is the second key code.
- determining whether the quantized value exceeds the preset threshold includes:
- determining whether the quantized value exceeds the preset threshold includes:
- determining whether the quantized value exceeds the preset threshold includes:
- the method when identifying the key code corresponding to the input operation of each of the acquired passwords, the method further includes:
- the corresponding key code is displayed.
- the method when identifying the key code corresponding to the input operation of each of the acquired passwords, the method further includes:
- a password identification device comprising:
- the identification device is configured to identify a key code corresponding to the input operation of each of the acquired passwords, wherein the key code comprises a first key code or a second key code;
- the determining means is configured to determine that the password input is correct when all the identified bit codes are a combination of the corresponding preset first key code and/or second key code.
- the first key code is a point
- the second key code is a line
- the identifying device comprises:
- a module for identifying a key code corresponding to an input operation of the bit cipher according to the quantized value is a module for identifying a key code corresponding to an input operation of the bit cipher according to the quantized value.
- the module for identifying a key code corresponding to the input operation of the bit password according to the quantized value includes:
- An input operation operation for identifying the bit code if the quantized value exceeds the preset threshold The corresponding key code is a unit of the first key code
- the key code corresponding to the input operation for identifying the bit password is a unit of the second key code.
- the unit for determining whether the quantized value exceeds the preset threshold is used to determine whether a finger's finger pad area value exceeds a preset area threshold.
- the unit for determining whether the quantized value exceeds the preset threshold is used to determine whether a click strength value of the finger exceeds a preset click strength threshold.
- the unit for determining whether the quantized value exceeds the preset threshold is used to determine whether the input time-consuming value exceeds a preset input time-consuming threshold.
- the device further includes display key code means for displaying the corresponding key code while identifying the key code corresponding to the input operation of each of the acquired passwords.
- the device further includes a display effect device for displaying an animation effect of the recognition process of the corresponding key code while identifying the key code corresponding to the input operation of each of the acquired passwords. .
- the present application identifies a key code corresponding to an input operation of each bit code obtained, wherein the key code includes a first key code or a second key code, when all the bits are recognized.
- the password is a combination of the corresponding preset first key code and/or the second key code, it is judged that the password input is correct, thereby avoiding setting a button corresponding to too many key codes on the screen, especially on a small screen.
- the area of each button is small, the user is not easy to recognize, and it is easy to accidentally touch other buttons, causing a problem of input errors.
- the button case is not set on the screen, the confidentiality of the password can be improved, and the conventional number can be solved. And / or the letter password is not confidential.
- the first key code is set as a point
- the second key code is set as a line, so that only a key code similar to "drop, ⁇ (point, line)" is used, which is similar to a Morse code.
- the combination of passwords of various meanings, length and complexity can be defined according to the user's own, the password setting can be simple and complicated, and can be combined with the corresponding input mode on the screen or the corresponding input mode, so that the operator can complete the password quickly and easily. Input.
- the present application calculates a quantized value of an input operation of each bit of the obtained password, and identifies a key code corresponding to the input operation of the bit code according to the quantized value, and can correspond to different classes according to different types of input operations.
- Quantitative values due to the need to identify pairs based on each type of quantized value
- Each type of quantized value can be divided into two types, and the first type of quantized value of the type of quantized value corresponds to the first key code.
- the second quantized value of the type of quantized value corresponds to the second key code, so that the identification and distinction of the first key code and the second key code are more efficient and accurate.
- FIG. 1 is a flow chart of a method for identifying a password in accordance with an aspect of the present application
- FIG. 2 is a diagram showing an interface activation password input according to an embodiment of the present application.
- FIG. 3 is a diagram of a password input interface according to an embodiment of the present application.
- FIG. 5 is an interface diagram when a single finger belly area is less than 45% of the maximum contact area when the contact area of the screen is less than 45% of the maximum contact area according to an embodiment of the present application;
- FIG. 6 is an interface diagram in which a contact area of a single finger belly area on a screen is greater than 45% of the maximum contact area according to an embodiment of the present application;
- FIG. 7 is a diagram showing an interface of an identification process of a password input error according to an embodiment of the present application.
- FIG. 8( a ) is a diagram showing an interface of a gradient animation effect input as a point according to an embodiment of the present application
- FIG. 8(b) is an interface diagram of a gradient animation effect input as a line according to an embodiment of the present application.
- FIG. 9 is an interface diagram of the gradation animation effect of the detail input of FIG. 8(a);
- FIG. 10 is an interface diagram of the gradation animation effect of the detailed input of FIG. 8(b);
- FIG. 11 is an interface diagram of a gradient animation effect input as a line according to another embodiment of the present application.
- FIG. 12 is a structural diagram of a password recognition apparatus according to another aspect of the present application.
- FIG. 13 is a structural diagram of a password recognition apparatus according to a preferred embodiment of the present application.
- FIG. 14 is a structural diagram of a password recognition apparatus according to another preferred embodiment of the present application.
- FIG. 15 is a structural diagram of a password recognition apparatus according to still another preferred embodiment of the present application.
- FIG 16 is a block diagram of a password identifying apparatus in accordance with still another preferred embodiment of the present application.
- the terminal, the device of the service network, and the trusted party each include one or more processors (CPUs), input/output interfaces, network interfaces, and memory.
- processors CPUs
- input/output interfaces network interfaces
- memory volatile and non-volatile memory
- the memory may include non-persistent memory, random access memory (RAM), and/or non-volatile memory in a computer readable medium, such as read only memory (ROM) or flash memory.
- RAM random access memory
- ROM read only memory
- Memory is an example of a computer readable medium.
- Computer readable media includes both permanent and non-persistent, removable and non-removable media.
- Information storage can be implemented by any method or technology.
- the information can be computer readable instructions, data structures, modules of programs, or other data.
- Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read only memory. (ROM), electrically erasable programmable read only memory (EEPROM), flash memory or other memory technology, compact disk read only memory (CD-ROM), digital versatile disk (DVD) or other optical storage,
- computer readable media does not include non-transitory computer readable media, such as modulated data signals and carrier waves.
- the present application provides a password identification method, where the method includes:
- Step S1 identifying a key code corresponding to the input operation of each of the acquired passwords, wherein the key code includes a first key code or a second key code;
- step S2 when all the identified bit codes are a combination of the corresponding preset first key code and/or second key code, it is determined that the password input is correct.
- the key code has only two choices, either the first key code or the second key code.
- Embodiments can only set only two on the screen
- each of the first key code and the second key code may respectively correspond to any one of any two preset symbols, and the symbol may be any type of letters, numbers, marks or graphics.
- the first key code and the second key code have no limitation on the order. As long as the first key code and the second key code are different, the difference can be made.
- the first key code and the second key code can be respectively Any two of the 26 letters may also be any two of the 0-9 numbers, and one of the first key code and the second key code may also be any one of the 26 letters, and A key code is any one of 0 to 9 digits, or the first key code and the second key code may respectively be one of any other two different characters.
- the complexity of the password can be adjusted by controlling the number of digits of the password, wherein the fewer the number of password digits, the simpler the password formed by the combination of the first key code and the second key code, the more the number of password digits, the first key The more complicated the combination of the code and the second key code arrangement, the more the user can meet the simple or complex password requirements.
- buttons can be set large enough for the user to recognize. And selection to avoid the occurrence of input errors; when the button is not set on the screen, two different input operations can be defined in advance to correspond to the first key code and the second key code respectively, since there are only two different key codes, There are only two possibilities for identifying the corresponding key code by the input operation, either the first key code or the second key code. For example, the input operation is divided into a first operation and a second operation. When the first operation is input, the corresponding The first key code is recognized.
- the second key code is correspondingly recognized, and the input operation does not correspond to other key codes, and the recognized content only needs to be from the first key.
- One of the code and the second key code can be selected, and the recognition speed is very fast, so that the recognition accuracy and recognition efficiency of the first key code or the second key code can be ensured, and the button is not set on the screen. Case, it can also improve the confidentiality of the password, to solve the conventional numbers and / or letters password confidentiality is not high.
- the first key code is a point
- the second key code is a line
- the present embodiment introduces the concept of a Morse code, and uses a key code similar to a "mose, ⁇ (point, line)" type of Moss code to combine passwords of various meanings, and the length and complexity can be
- the user can define it by himself or herself.
- the password setting can be simple or complicated. It can be combined with the input mode of the corresponding button or the corresponding button on the screen, so that the operator can quickly and easily complete the password input. For example, there are two types of input operations that can be defined in advance.
- the first operation is correspondingly recognized as a point
- the second operation is correspondingly recognized as a line.
- the operator After the operator can activate the password input process in the interface as shown in FIG. 2, the operator only needs to combine the order of the memory points and the lines, on the screen. With a button, use your finger to point or press the button on the screen. In the case of no button on the screen, as shown in Figure 3, use your finger to point or press the screen to enter the password, without the operator having to stare at the screen to distinguish the screen. A large number of letters or numbers that increase the efficiency and accuracy of input operations and identification of key codes.
- the operator can set a password of 2 to 16 points and/or lines in the interface as shown in FIG.
- the key code corresponding to the input operation of each acquired password is obtained, including:
- the key code corresponding to the input operation of the bit code is identified according to the quantized value.
- different types of quantized values can be operated according to different types of input operations, with the first key code as a point and the second key code as a line, for example
- each type of quantized value there are only two corresponding key codes to be identified, either points or lines.
- Each type of quantized value can be divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the point.
- the second quantized value of the type of quantized value is corresponding to the line, so that the identification and distinction of the first key code and the second key code are more efficient and accurate.
- the key code corresponding to the input operation of the bit password is identified according to the quantized value, including:
- the key code corresponding to the input operation for identifying the password is the first key code
- the key code corresponding to the input operation for identifying the bit code is the second key code.
- each type of quantized value is correspondingly divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the first key code, and the second quantized value of the type of quantized value is corresponding to the second key code.
- the first key code is used as a point, and the second key code is a line.
- some types of quantized values are correspondingly divided into two types, and the first type of quantized value that does not exceed a preset threshold corresponds to Point, the second type of quantized value of the class exceeds the quantized value corresponding to the preset threshold, so that the quantized value range identifying the point and the line has a common boundary, that is, a preset threshold, so that the boundary can be efficiently
- the first key code and the second key code are accurately identified.
- determining whether the quantized value exceeds the preset threshold includes:
- each type of quantized value is correspondingly divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the first key code, and the second type of quantized value of the type of quantized value is corresponding to the second type.
- the first key code is a point
- the second key code is a line.
- the type of the quantized value is the finger pad area value of the finger, and the finger belly is The area value is correspondingly divided into two types.
- the first type does not exceed the corresponding value of the preset area threshold value
- the second type of the quantized value exceeds the quantized value of the preset area threshold corresponding line, thereby making the identification point
- the range of quantized values of the line and the line have a common boundary, that is, a preset area threshold, and the boundary can efficiently and accurately identify the first key code and the second key code.
- the scanning principle of the capacitive screen can be utilized, as shown in FIGS. 5 and 6, the screen is divided into an average size grid, and the contact area is scanned from the X and Y axes to calculate the contact area. Specifically, the operation is performed according to general conditions.
- the maximum contact area of the single finger belly area on the screen is 2cm*3cm, as shown in FIG.
- determining whether the quantized value exceeds the preset threshold includes:
- the finger's click strength value exceeds the preset click strength threshold.
- one type of each type of quantized value is correspondingly divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the first key code, and the second type of quantized value of the type of quantized value is corresponding to the second type.
- the key code the first key code is used as a point, and the second key code is a line.
- the type of the quantized value is the click strength value of the finger, and the embodiment can be in the touch screen.
- the corresponding button is not set on the operator, and the operator can perform input operation at any position on the touch screen.
- the finger pressing force value is correspondingly divided into two types, and the first type does not exceed the preset point pressing force threshold value.
- the second type of the quantized value of the class exceeds the quantized value corresponding to the preset threshold by the velocity threshold, so that the quantized value range of the identification point and the line has a common boundary, that is, the preset point pressing velocity threshold With this boundary, the first key code and the second key code can be efficiently and accurately identified.
- the pressure sensitive touch technology can be used to sense the intensity of the operator's finger pressing or pressing on the touch screen, and to call out different corresponding points or lines, such as tapping “point” and pressing “line”. ".
- the first type does not exceed the quantized value of the preset point by the velocity threshold
- the second type exceeds the If the preset taps the quantized value of the velocity threshold, it is determined that the input is "line”.
- determining whether the quantized value exceeds the preset threshold includes:
- the type of the quantized value is the input time-consuming value of the input operation, for example, the tapping time of the finger on the touch screen
- the first key code is the point
- the second key For example, the code is a line.
- the corresponding button can be not set on the touch screen, and the operator can perform an input operation at any position on the touch screen.
- the input time-consuming value of the input operation is divided into two types.
- the first type does not exceed the corresponding value of the preset input time-consuming threshold
- the second type of the quantized value exceeds the preset input time-consuming threshold.
- the quantized values correspond to the lines, so that the quantized value ranges of the identification points and the lines have a common boundary, that is, a preset input time-consuming threshold, and the boundary can efficiently and accurately identify the first key code and the second key code.
- the pressure sensitive touch technology can be used to sense the intensity of the operator's finger pressing or pressing on the touch screen, and to call out different corresponding points or lines, that is, the length of time that the finger is in contact with the touch screen can be used to determine Pressing for a short time is a "dot", long press is a "line”, such as a long press to meet the duration of 500 milliseconds, specifically, when the operator's finger is on the touch screen, the time is smaller than the preset input.
- the time-consuming threshold (the first type does not exceed the quantized value of the preset input time-consuming threshold)
- the preset input time-consuming threshold the second type of quantization value exceeding the preset input time-consuming threshold
- the method when the key code corresponding to the input operation of each password is obtained, the method further includes:
- the corresponding key code is displayed.
- the corresponding point or the identified point may be displayed in a partial area of the screen.
- the line in the case of incorrect identification, the operator can find out in time and re-enter the input operation.
- the size of the first key code or the second key code displayed on the screen should not be too large, so that the operator can clearly see the limit, to avoid the person around the operator peek into the password. .
- the input operation of the corresponding point and line can be sequentially performed in the interface of FIG.
- the method when the key code corresponding to the input operation of each password is obtained, the method further includes:
- the animation effect of the recognition process of the corresponding key code is displayed.
- different animations corresponding to the recognized point or line may be set.
- the effect is that there is no need to display the corresponding key code on the screen to protect the password from leaking. Since there are only two types of key codes, namely, points and lines, the animation effect is also set to two, so the user can display different animation effects according to the display. Quickly identify whether the identified key code is correct. If the recognition is incorrect, the operator can find it in time and re-enter the input operation.
- the quantized value of the above embodiment is the click strength value of the finger or the finger pad area value of the finger
- the corresponding A blue horizontal elliptical gradient animation effect is generated around the fingerprint of the interface shown in FIG. 8(a).
- the second key code is input as a line in the interface shown in FIG. 8(b)
- the corresponding A yellow longitudinal elliptical gradient animation effect is produced around the fingerprint of the interface shown in Fig. 8(b).
- the entire gradual process of the blue horizontal ellipsoidal gradient animation effect generated around the fingerprint of the interface shown in FIG. 8(a) can be seen in FIGS.
- the scheme of the animation effect of the identification process of the corresponding key code of the present embodiment may be the key code corresponding to the display of the previous embodiment.
- the scheme can be used together to facilitate the user to confirm whether the identified first key code or second key code is correct in any desired manner.
- Apparatus 100 includes:
- the identification device 1 is configured to identify a key code corresponding to the input operation of each of the acquired passwords, wherein the key code includes a first key code or a second key code;
- the judging device 2 is configured to judge that the password input is correct when all the recognized bit codes are a combination of the corresponding preset first key code and/or second key code.
- the key code has only two choices, either the first key code or the second key code. Therefore, it is possible to avoid setting too many keys corresponding to the key code on the screen, especially on a small screen, resulting in a small area of each key, the user is not easy to recognize, and it is easy to accidentally touch other keys, resulting in input errors,
- only two buttons may be set on the screen or no buttons may be set at all.
- the first key code and the second key code may respectively correspond to one of any two preset symbols, and the symbol may be Any type of letter, number, mark or graphic, the first key code and the second key code have no limitation on the order, as long as the first key code and the second key code are different, the difference can be made, for example, the first The key code and the second key code may be any two of 26 letters, and may be any two of 0 to 9 numbers, and one of the first key code and the second key code may also be Any of the 26 letters
- the other key code is any one of 0 to 9 digits, or the first key code and the second key code may respectively be one of any other two different characters.
- the complexity of the password can be adjusted by controlling the number of digits of the password, wherein the fewer the number of password digits, the simpler the password formed by the combination of the first key code and the second key code, the more the number of password digits, the first key
- the button is set on the screen, since only two buttons are set to correspond to the first key code or the second key code, even on a small screen, the two buttons can be set large enough for the user to recognize.
- the input operation is divided into a first operation and a second operation.
- the first operation is input, the corresponding The first key code is recognized.
- the second operation is input, the second key code is correspondingly recognized, and the input operation does not correspond to other key codes, and the recognized content only needs to be from the first key.
- the first key code is a point
- the second key code is a line
- the present embodiment introduces the concept of a Morse code, and uses a key code similar to a "mose, ⁇ (point, line)" type of Moss code to combine passwords of various meanings, and the length and complexity can be
- the user can define it by himself or herself.
- the password setting can be simple or complicated. It can be combined with the input mode of the corresponding button or the corresponding button on the screen, so that the operator can quickly and easily complete the password input. For example, there are two types of input operations that can be defined in advance.
- An input operation and a second operation the first operation is correspondingly identified as a point, and the second operation is correspondingly identified as a line.
- the operator can activate the password input process in the interface as shown in FIG. 2, the operator only needs to press the memory point and the line.
- buttons on the screen use the finger to point or press the button on the screen.
- there is no button on the screen as shown in Figure 3 use the finger to point or press the screen to enter the password.
- the operator keeps an eye on the screen to resolve a large number of letters or numbers on the screen, improving the efficiency and accuracy of the input operation and identification of the key code.
- the operator can set a password of 2 to 16 points and/or lines in the interface as shown in FIG.
- the identifying apparatus 1 is configured to calculate a module 11 of the obtained quantized value of the input operation of each bit of the password;
- a module 12 for identifying a key code corresponding to the input operation of the bit cipher according to the quantized value For example, by converting the input operation calculation into the corresponding quantized value, different types of quantized values can be operated according to different types of input operations, with the first key code as a point and the second key code as a line, for example According to each type of quantized value, there are only two corresponding key codes to be identified, either points or lines. Each type of quantized value can be divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the point.
- the second quantized value of the type of quantized value is corresponding to the line, thereby making the first key code and the first
- the identification and distinction of the two-key code is more efficient and accurate. It should be understood by those skilled in the art that the description of the above-mentioned quantized values is only an example, and other descriptions of existing or future quantitative values may be applicable to the present application, and should also be included in the scope of protection of the present application. The reference is included here.
- the module 12 for identifying a key code corresponding to the input operation of the bit password according to the quantized value includes:
- the key code corresponding to the input operation for identifying the bit code is the first key code unit 122;
- the key code corresponding to the input operation for identifying the bit code is the second key code unit 123.
- one type of each type of quantized value is correspondingly divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the first key code, and the second type of quantized value of the type of quantized value is corresponding to the second type.
- the first key code is used as a point
- the second key code is a line.
- some types of quantized values are correspondingly divided into two types, and the first type does not exceed a preset threshold.
- the quantized value corresponds to the point, and the second type of the quantized value of the class exceeds the quantized value corresponding to the preset threshold, so that the quantized value range identifying the point and the line has a common boundary, that is, a preset threshold.
- the boundary can efficiently and accurately identify the first key code and the second key code.
- the unit 121 for determining whether the quantized value exceeds the preset threshold is used to determine whether a finger's finger pad area value exceeds a preset area threshold.
- one type of each type of quantized value is correspondingly divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the first key code, and the second type of quantized value of the type of quantized value is corresponding to the second type.
- the first key code is a point
- the second key code is a line.
- the type of the quantized value is the finger pad area value of the finger, and the finger belly is The area value is correspondingly divided into two types.
- the first type does not exceed the corresponding value of the preset area threshold value
- the second type of the quantized value exceeds the quantized value of the preset area threshold corresponding line, thereby making the identification point
- the range of quantized values of the line and the line have a common boundary, that is, a preset area threshold, and the boundary can efficiently and accurately identify the first key code and the second key code.
- the maximum contact area of the operator's single finger belly area on the screen is 2cm*3cm, as shown in FIG. 5, when the contact area of the single finger belly area is equal to 45% of the maximum contact area (the first type does not exceed the quantized value of the preset area threshold value), then it is determined
- the first key code is, for example, a "dot", as shown in FIG. 6, when the contact area of the single finger belly area on the screen is greater than 45% of the maximum contact area (the second type exceeds the preset area) If the threshold value is quantized, it is determined that the input is "line".
- the unit 121 for determining whether the quantized value exceeds the preset threshold is used to determine whether a tapping force value of the finger exceeds a preset point.
- Velocity threshold one type of each type of quantized value is correspondingly divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the first key code, and the second type of quantized value of the type of quantized value is corresponding to the second type.
- the key code the first key code is used as a point, and the second key code is a line.
- the type of the quantized value is the click strength value of the finger, and the embodiment can be in the touch screen.
- the corresponding button is not set on the operator, and the operator can perform input operation at any position on the touch screen.
- the finger pressing force value is correspondingly divided into two types, and the first type does not exceed the preset point pressing force threshold value.
- the second type of the quantized value of the class exceeds the quantized value corresponding to the preset threshold by the velocity threshold, so that the quantized value range of the identification point and the line has a common boundary, that is, the preset point pressing velocity threshold With this boundary, the first key code and the second key code can be efficiently and accurately identified.
- the pressure sensitive touch technology can be used to sense the intensity of the operator's finger pressing or pressing on the touch screen, and to call out different corresponding points or lines, such as tapping “point” and pressing “line”. ". Specifically, when the operator's finger is lightly pressed on the touch screen to generate a small amount equal to the press point of the preset point by the velocity threshold (the first type does not exceed the quantized value of the preset point by the velocity threshold), Then determining that the input of the first key code is, for example, a “point”, when the operator’s finger presses the velocity value on the touch screen by a light pressure that is greater than the preset click strength threshold (the second type exceeds the If the preset taps the quantized value of the velocity threshold, it is determined that the input is "line”.
- the description of the above quantized values is only an example, and other existing or future possible quantitative values may be applied to the present application. It is also intended to be included within the scope of this application and is hereby incorporated by reference.
- the unit 121 for determining whether the quantized value exceeds the preset threshold is used to determine whether the input time-consuming value exceeds a preset input time-consuming threshold.
- one type of each type of quantized value is correspondingly divided into two types, and the first type of quantized value of the type of quantized value is corresponding to the first key code, and the second type of quantized value of the type of quantized value is corresponding to the second type.
- the type of the quantized value is the input time-consuming value of the input operation, for example, the tapping time of the finger on the touch screen, and the first key code is the point, the second key
- the code is a line.
- the corresponding button can be not set on the touch screen, and the operator can perform an input operation at any position on the touch screen.
- the input time value of the input operation is correspondingly divided into two types.
- the first type of quantized value corresponding to the preset input time-consuming threshold corresponds to a point
- the second type of quantized value of the type exceeds the quantized value of the preset input time-consuming threshold corresponding line, thereby quantifying the identification point and the line
- the range of values has a common boundary, the preset input time-consuming threshold, which enables efficient and accurate identification of the first key code and the second key code.
- the pressure sensitive touch technology can be used to sense the intensity of the operator's finger pressing or pressing on the touch screen, and to call out different corresponding points or lines, that is, the length of time that the finger is in contact with the touch screen can be used to determine Pressing for a short time is a "dot", long press is a "line”, such as a long press to meet the duration of 500 milliseconds, specifically, when the operator's finger is on the touch screen, the time is smaller than the preset input.
- the time-consuming threshold (the first type does not exceed the quantized value of the preset input time-consuming threshold)
- the preset input time-consuming threshold the second type of quantization value exceeding the preset input time-consuming threshold
- the device further includes a display key code device 3 for identifying a key code corresponding to an input operation of each bit code obtained.
- the corresponding key code is displayed.
- the corresponding point or the identified point may be displayed in a partial area of the screen.
- the line in the case of incorrect identification, the operator can find out in time and re-enter the input operation.
- the size of the first key code or the second key code displayed on the screen should not be too large, so that the operator can clearly see the limit, to avoid people around the operator peek into the password.
- the input operation of the corresponding point and line can be sequentially performed in the interface of FIG. 7(a), and each time a password is input, the currently recognized passwords are displayed at the bottom of the screen, when all the passwords are used.
- the password of all bits can be displayed in the interface of Figure 7(b) to facilitate the user to confirm whether the password is entered correctly. If the input is correct, the operator can slide the finger up on the screen interface of Figure 7(b) to Confirm the entered password.
- the device further includes a display effect device 4 for identifying the key code corresponding to the input operation of each bit password obtained.
- the animation effect of the recognition process of the corresponding key code is displayed.
- a point or line corresponding to the recognized point or line may be set.
- Different animation effects no need to display the corresponding key code on the screen to protect the password from leaking. Since there are only two key codes, namely points and lines, the animation effect is also set to two, so the user is different according to the display.
- the animation effect can quickly identify whether the recognized key code is correct. If the recognition is incorrect, the operator can find it in time and re-enter the input operation.
- the quantized value of the above embodiment is the click strength value of the finger or the finger pad area value of the finger
- the corresponding A blue horizontal elliptical gradient animation effect is generated around the fingerprint of the interface shown in FIG. 8(a).
- the second key code is input as a line in the interface shown in FIG. 8(b)
- the corresponding A yellow longitudinal elliptical gradient animation effect is produced around the fingerprint of the interface shown in Fig. 8(b).
- the entire gradual process of the blue horizontal ellipsoidal gradient animation effect generated around the fingerprint of the interface shown in FIG. 8(a) can be seen in FIGS. 9(a) to 9(f), and FIG. 8(b).
- the entire gradual process of the yellow longitudinal elliptical gradient animation effect around the fingerprint of the interface can be seen in Figures 10(a)-10(f).
- the case where the quantized value of the above embodiment is the input time-consuming value is as shown in FIGS. 11(a) to 11(d).
- the second key code input as the line in the interface corresponds to the yellow stripe gradient animation corresponding to the input operation of the finger shown in FIG. 11(a) to 11(d) effect.
- the scheme of the animation effect of the identification process of the corresponding key code of the present embodiment may be the key code corresponding to the display of the previous embodiment.
- the scheme can be used together to facilitate the user to confirm whether the identified first key code or second key code is correct in any desired manner.
- the present application identifies a key code corresponding to an input operation of each of the acquired passwords, wherein the key code includes a first key code or a second key code, and when all the recognized bit codes are When the corresponding first key code and/or the second key code are combined, the password input is judged to be correct, thereby avoiding setting a button corresponding to too many key codes on the screen, especially on a small screen, resulting in The area of each button is small, the user is not easy to recognize, and it is easy to accidentally touch other buttons, which causes input errors.
- the button is not set on the screen, the password confidentiality can be improved, and the conventional numbers and/or Or the problem that the letter password is not confidential.
- the first key code is set as a point
- the second key code is set as a line, so that only a key code similar to "drop, ⁇ (point, line)" is used, which is similar to a Morse code.
- the combination of passwords of various meanings, length and complexity can be defined according to the user's own, the password setting can be simple and complicated, and can be combined with the corresponding input mode on the screen or the corresponding input mode, so that the operator can complete the password quickly and easily. Input.
- the present application calculates a quantized value of an input operation of each bit of the obtained password, and identifies a key code corresponding to the input operation of the bit code according to the quantized value, and can correspond to different classes according to different types of input operations.
- the quantized value since there are only two corresponding key codes to be identified according to each type of quantized value, either the first key code or the second key code, each type of quantized value can be correspondingly divided into two types, and the type is quantized.
- the first type of quantized value of the value corresponds to the first key code
- the second type of quantized value of the type of quantized value corresponds to the second key code, so that the identification and difference of the first key code and the second key code are more efficient and more accurate.
- the present application can be implemented in software and/or a combination of software and hardware, for example, using an application specific integrated circuit (ASIC), a general purpose computer, or any other similar hardware device.
- the software program of the present application can be executed by a processor to implement the steps or functions described above.
- the software programs (including related data structures) of the present application can be stored in a computer readable recording medium such as a RAM memory, a magnetic or optical drive or a floppy disk and the like.
- some of the steps or functions of the present application may be implemented in hardware, for example, as a circuit that cooperates with a processor to perform various steps or functions.
- a portion of the present application can be applied as a computer program product, such as computer program instructions, which, when executed by a computer, can invoke or provide a method and/or technical solution in accordance with the present application.
- the program instructions for invoking the method of the present application may be stored in a fixed or removable recording medium, and/or transmitted by a data stream in a broadcast or other signal bearing medium, and/or stored in a The working memory of the computer device in which the program instructions are run.
- an embodiment in accordance with the present application includes a device including a memory for storing computer program instructions and a processor for executing program instructions, wherein when the computer program instructions are executed by the processor, triggering
- the apparatus operates based on the aforementioned methods and/or technical solutions in accordance with various embodiments of the present application.
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Abstract
本申请提供一种密码识别方法与设备,本申请通过识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码,当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确,从而可以避免在屏幕上尤其是较小的屏幕上设置过多的键码所对应的按键,导致每个按键的面积较小,用户不容易识别,容易误触碰其它按键,造成输入失误的问题,另外,如果不在屏幕上设置按键案,还可以提高密码的保密性,解决常规的数字和/或字母密码保密性不高的问题。
Description
本申请涉及计算机领域,尤其涉及一种分布式缓存集群的升级方法与设备。
现有的密码输入,多是采用字母和/或按键的选择的输入方式,对于小屏幕设备来说,由于屏幕面积较小,且在屏幕上显示的供选择的按键过多,用户在输入密码时需要盯紧屏幕分辨数字或字母后按下对应较小面积的按键,且容易误触碰其它按键,造成输入失误,另外,此类密码容易轻易描述告知他人,会造成密码泄露的问题,保密性不高。
发明内容
本申请的一个目的是提供一种密码识别方法与设备,能够解决密码输入失误和保密性不高的问题。
根据本申请的一个方面,提供了一种密码识别方法,该方法包括:
识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码;
当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确。
进一步的,上述方法中,所述第一键码为点,所述第二键码为线。
进一步的,上述方法中,识别获取到的每一位密码的输入操作所对应的键码,包括:
计算获取到的每一位密码的输入操作的量化值;
根据所述量化值识别该位密码的输入操作所对应的键码。
进一步的,上述方法中,根据所述量化值识别该位密码的输入操作所对应的键码,包括:
判断所述量化值是否超过预设阈值,
若是,则识别该位密码的输入操作所对应的键码为第一键码;
若否,则识别该位密码的输入操作所对应的键码为第二键码。
进一步的,上述方法中,判断所述量化值是否超过所述预设阈值,包括:
判断手指的指肚面积值是否超过预设面积阈值。
进一步的,上述方法中,判断所述量化值是否超过所述预设阈值,包括:
判断手指的点按力度值是否超过预设点按力度阈值。
进一步的,上述方法中,判断所述量化值是否超过所述预设阈值,包括:
判断输入耗时值是否超过预设输入耗时阈值。
进一步的,上述方法中,识别获取到的每一位密码的输入操作所对应的键码的同时,还包括:
显示对应的键码。
进一步的,上述方法中,识别获取到的每一位密码的输入操作所对应的键码的同时,还包括:
显示对应的键码的识别过程的动画效果。
根据本申请的另一个方面,提供了一种密码识别设备,该设备包括:
识别装置,用于识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码;
判断装置,用于当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确。
进一步的,上述设备中,所述第一键码为点,所述第二键码为线。
进一步的,上述设备中,所述识别装置包括:
用于计算获取到的每一位密码的输入操作的量化值的模块;
用于根据所述量化值识别该位密码的输入操作所对应的键码的模块。
进一步的,上述设备中,所述用于根据所述量化值识别该位密码的输入操作所对应的键码的模块,包括:
用于判断所述量化值是否超过所述预设阈值的单元,
用于若所述量化值超过所述预设阈值,则识别该位密码的输入操作所
对应的键码为第一键码的单元;
用于若所述量化值未超过所述预设阈值,则识别该位密码的输入操作所对应的键码为第二键码的单元。
进一步的,上述设备中,所述用于判断所述量化值是否超过所述预设阈值的单元,用于判断手指的指肚面积值是否超过预设面积阈值。
进一步的,上述设备中,用于判断所述量化值是否超过所述预设阈值的单元,用于判断手指的点按力度值是否超过预设点按力度阈值。
进一步的,上述设备中,用于判断所述量化值是否超过所述预设阈值的单元,用于判断输入耗时值是否超过预设输入耗时阈值。
进一步的,上述设备中,所述设备还包括显示键码装置,用于在识别获取到的每一位密码的输入操作所对应的键码的同时,显示对应的键码。
进一步的,上述设备中,所述设备还包括显示动效装置,用于在识别获取到的每一位密码的输入操作所对应的键码的同时,显示对应的键码的识别过程的动画效果。
与现有技术相比,本申请通过识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码,当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确,从而可以避免在屏幕上尤其是较小的屏幕上设置过多的键码所对应的按键,导致每个按键的面积较小,用户不容易识别,容易误触碰其它按键,造成输入失误的问题,另外,如果不在屏幕上设置按键案,还可以提高密码的保密性,解决常规的数字和/或字母密码保密性不高的问题。
进一步的,本申请通过将所述第一键码设置为点,所述第二键码设置为线,从而利用类似摩斯码只有“滴、嗒(点、线)”两种形式的键码,组合出各种含义的密码,长短及复杂程度可根据用户自己来定义,密码设置可简单可复杂,可以结合屏幕上有对应按键或无对应按键的输入方式,使操作者迅速简单的完成密码输入。
进一步的,本申请通过计算获取到的每一位密码的输入操作的量化值,根据所述量化值识别该位密码的输入操作所对应的键码,可以根据不同类的输入操作对应不同类的量化值,由于根据每类量化值需要识别的对
应键码只有两个,要么是第一键码,要么是第二键码,可以将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码,从而使第一键码和第二键码的识别和区别更高效、更精确。
通过阅读参照以下附图所作的对非限制性实施例所作的详细描述,本申请的其它特征、目的和优点将会变得更明显:
图1为根据本申请一个方面的一种密码识别方法的流程图;
图2为本申请个一实施例的界面激活密码输入图;
图3为根据本申请一个实施例的密码输入界面图;
图4为根据本申请一个实施例的初始密码设置界面图;
图5为根据本申请一个实施例的当单只手指肚面积在屏幕的接触面积小余等于所述最大接触面积的45%时的界面图;
图6为根据本申请一个实施例的单只手指肚面积在屏幕的接触面积大于所述最大接触面积的45%的界面图;
图7为根据本申请一个实施例的密码输入错误的识别过程界面图;
图8(a)为根据本申请一个实施例的输入为点的渐变动画效果界面图;
图8(b)为根据本申请一个实施例的输入为线的渐变动画效果的界面图;
图9为图8(a)的详细输入为点的渐变动画效果的界面图;
图10为图8(b)的详细输入为线的渐变动画效果的界面图;
图11为根据本申请另一个实施例的输入为线的渐变动画效果的界面图;
图12为根据本申请另一个方面的一种密码识别设备的结构图;
图13为根据本申请一个优选的实施例的密码识别设备的结构图;
图14为根据本申请另一个优选的实施例的密码识别设备的结构图;
图15为根据本申请又一个优选的实施例的密码识别设备的结构图;
图16为根据本申请再一个优选的实施例的密码识别设备的结构图。
附图中相同或相似的附图标记代表相同或相似的部件。
下面结合附图对本申请作进一步详细描述。
在本申请一个典型的配置中,终端、服务网络的设备和可信方均包括一个或多个处理器(CPU)、输入/输出接口、网络接口和内存。
内存可能包括计算机可读介质中的非永久性存储器,随机存取存储器(RAM)和/或非易失性内存等形式,如只读存储器(ROM)或闪存(flash RAM)。内存是计算机可读介质的示例。
计算机可读介质包括永久性和非永久性、可移动和非可移动媒体可以由任何方法或技术来实现信息存储。信息可以是计算机可读指令、数据结构、程序的模块或其他数据。计算机的存储介质的例子包括,但不限于相变内存(PRAM)、静态随机存取存储器(SRAM)、动态随机存取存储器(DRAM)、其他类型的随机存取存储器(RAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、快闪记忆体或其他内存技术、只读光盘只读存储器(CD-ROM)、数字多功能光盘(DVD)或其他光学存储、磁盒式磁带,磁带磁盘存储或其他磁性存储设备或任何其他非传输介质,可用于存储可以被计算设备访问的信息。按照本文中的界定,计算机可读介质不包括非暂存电脑可读媒体(transitory media),如调制的数据信号和载波。
如图1所示,本申请提供一种密码识别方法,其中,该方法包括:
步骤S1,识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码;
步骤S2,当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确。在此,不同于现有的通常键码包含有26个字母和10个数字等,而本实施例中所述键码只有两个选择,要么是第一键码,要么是第二键码,从而可以避免在屏幕上尤其是较小的屏幕上设置过多的键码所对应的按键,导致每个按键的面积较小,用户不容易识别,容易误触碰其它按键,造成输入失误,本实施例可以只在屏幕上只设置两
个按键或者根本不设置按键,所述第一键码和第二键码例如可以分别对应任意两个预设的符号中的其中一个,所述符号可以是字母、数字、标记或图形等任意类型,所述第一键码和第二键码没有排序上的限制,只要第一键码和第二键码不同,能够加以区别即可,例如,第一键码和第二键码可分别为26个字母中的任意两个,还可以是0~9数字中的任意两个,第一键码和第二键码中的其中一个键码也可以是26个字母中的任意一个字母,另一个键码是0~9数字中的任意一个数字,还或者第一键码和第二键码可以分别为其它的任意两个不同字符的其中一。可以通过控制密码的位数来调节密码的复杂度,其中,密码位数越少,由第一键码和第二键码排列组合成的密码越简单,密码位数越多,由第一键码和第二键码排列组合成的密码越复杂,可以满足不同用户对简单或复杂密码的需求。当在屏幕上设置按键时,由于只要设置两个按键来对应第一键码或第二键码,所以即使在很小的屏幕上,这两个按键也可以设置得足够大,以方便用户辨识和选择,避免输入失误的发生;当在屏幕上不设置按键时,可以预先定义两个不同的输入操作来分别对应第一键码和第二键码,由于只有两个不同的键码,所以由输入操作识别到对应的键码只有两种可能,要么是第一键码,要么是第二键码,例如输入操作为分为第一操作和第二操作,当输入第一操作时,对应识别到的是第一键码,当输入第二操作时,对应识别到的是第二键码,除此之外由输入操作不会对应到其它键码,识别到的内容只要从第一键码和第二键码中选择其一即可,识别速度会非常快,从而可以保证第一键码或第二键码比较高的识别准确率和识别效率,另外此类不在屏幕上设置按键的方案,还可以提高密码的保密性,解决常规的数字和/或字母密码保密性不高的问题。
本申请的密码识别方法一优选的实施例中,所述第一键码为点,所述第二键码为线。在此,本实施例引入摩斯码的概念,利用类似摩斯码只有“滴、嗒(点、线)”两种形式的键码,组合出各种含义的密码,长短及复杂程度可根据用户自己来定义,密码设置可简单可复杂,可以结合屏幕上有对应按键或无对应按键的输入方式,使操作者迅速简单的完成密码输入,例如,可以预先定义输入操作有两种,即第一输入操作和第二操作,
第一操作对应识别为点,第二操作对应识别为线,操作者可在如图2所示的界面激活密码输入流程后,操作者只需要按记忆点和线的排列组合顺序,在屏幕上有按键的情况下用手指点或按屏幕上的按键,在如图3所示,屏幕上无按键的情况下用手指点或按屏幕,来输入密码,不需操作者盯紧屏幕分辨屏幕上的大量字母或数字,提高输入操作和识别键码的效率和准确率。另外,操作者可在如图4所示的界面中设置2~16位点和/或线组合成的密码,其中,图4(a)所示的界面中提示操作者设置2~16位点和/或线组合成的密码,然后在4(b)所示的界面中第一遍输入需要设置的密码,最后在4(c)所示的界面中第二遍输入需要设置的密码,从而完成初始密码的设置。本领域技术人员应能理解上述第一和第二键码的描述仅为举例,其他现有的或今后可能出现的第一和第二键码的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别方法一优选的实施例中,识别获取到的每一位密码的输入操作所对应的键码,包括:
计算获取到的每一位密码的输入操作的量化值;
根据所述量化值识别该位密码的输入操作所对应的键码。在此,通过将输入操作计算转化为对应的量化值,可以根据不同类的输入操作对应不同类的量化值,以上述第一键码为点,所述第二键码为线为例,由于根据每类量化值需要识别的对应键码只有两个,要么是点,要么是线,可以将每类量化值对应分为两种,并将该类量化值的第一种量化值对应点,另将该类量化值的第二种量化值对应线,从而使第一键码和第二键码的识别和区别更高效、更精确。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别方法一较佳的实施例中,根据所述量化值识别该位密码的输入操作所对应的键码,包括:
判断所述量化值是否超过预设阈值,
若是,则识别该位密码的输入操作所对应的键码为第一键码;
若否,则识别该位密码的输入操作所对应的键码为第二键码。在此,
接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,以上述第一键码为点,所述第二键码为线为例,本实施例中,某类量化值对应分为两种,第一种未超过预设阈值的量化值对应点,另将该类量化值的第二种超过所述预设阈值的量化值对应线,从而使识别第点和线的量化值范围有一个共同的边界即预设阈值,以此边界能够高效、精确识别第一键码和第二键码。本领域技术人员应能理解上述预设阈值的描述仅为举例,其他现有的或今后可能出现的预设阈值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别方法一较佳的实施例中,判断所述量化值是否超过所述预设阈值,包括:
判断手指的指肚面积值是否超过预设面积阈值。在此,接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,以上述第一键码为点,所述第二键码为线为例,本实施例中,量化值的类别为手指的指肚面积值,另外,将手指的指肚面积值对应分为两种,第一种未超过预设面积阈值的量化值对应点,另将该类量化值的第二种超过所述预设面积阈值的量化值对应线,从而使识别点和线的量化值范围有一个共同的边界即预设面积阈值,以此边界能够高效、精确识别第一键码和第二键码。例如,可以利用电容屏的扫描原理,如图5和6所示,把屏幕整体分为平均大小的格子,从X、Y轴扫描接触点来计算接触面积,具体来说,根据普遍情况下操作者的单只手指肚面积在屏幕的最大接触面积为2cm*3cm,如图5所示,当单只手指肚面积在屏幕的接触面积小余等于所述最大接触面积的45%时(第一种未超过预设面积阈值的量化值),则判定为输入的是第一键码例如是“点”,如图6所示,当单只手指肚面积在屏幕的接触面积大于所述最大接触面积的45%(第二种超过所述预设面积阈值的量化值),则判定为输入的是“线”。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别方法一较佳的实施例中,判断所述量化值是否超过所述预设阈值,包括:
判断手指的点按力度值是否超过预设点按力度阈值。在此,接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,以上述第一键码为点,所述第二键码为线为例,本实施例中,量化值的类别为手指的点按力度值,本实施例可以在触屏上不设置对应的按键,操作者可以在触屏上的任何位置进行输入操作,另外,将手指的点按力度值对应分为两种,第一种未超过预设点按力度阈值的量化值对应点,另将该类量化值的第二种超过所述预设点按力度阈值的量化值对应线,从而使识别点和线的量化值范围有一个共同的边界即预设点按力度阈值,以此边界能够高效、精确识别第一键码和第二键码。例如,可以利用压感触控技术,感知操作者的手指在触屏的轻压或重压的力度,并调出不同的对应的点或线,如轻按为“点”、重按为“线”。具体来说,当操作者的手指在触屏的轻压产生小余等于所述预设点按力度阈值的点按力度值时(第一种未超过预设点按力度阈值的量化值),则判定为输入的是第一键码例如是“点”,当操作者的手指在触屏的轻压产生大于所述预设点按力度阈值的点按力度值时(第二种超过所述预设点按力度阈值的量化值),则判定为输入的是“线”。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别方法一较佳的实施例中,判断所述量化值是否超过所述预设阈值,包括:
判断输入耗时值是否超过预设输入耗时阈值。在此,接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,本实施例中,量化值的类别为输入操作的输入耗时值,例如可以是手指在触屏的点按时长,以上述第一键码为点,所述第二键码为线为例,本实施例可以在触屏上不设置对应的按键,操作者可以在触屏上的任何位置进行输入操作,另外,将
输入操作的输入耗时值对应分为两种,第一种未超过预设输入耗时阈值的量化值对应点,另将该类量化值的第二种超过所述预设输入耗时阈值的量化值对应线,从而使识别点和线的量化值范围有一个共同的边界即预设输入耗时阈值,以此边界能够高效、精确识别第一键码和第二键码。例如,可以利用压感触控技术,感知操作者的手指在触屏的轻压或重压的力度,并调出不同的对应的点或线,即可以利用手指与触屏接触的时间长短来判定,短时间点按为“点”,长按为“线”,如长按满足500毫秒的时长,具体来说,当操作者的手指在触屏的点按时长小余等于所述预设输入耗时阈值时(第一种未超过预设输入耗时阈值的量化值),则判定为输入的是第一键码例如是“点”,当操作者的手指在触屏的点按时长大于所述预设输入耗时阈值时(第二种超过所述预设输入耗时阈值的量化值),则判定为输入的是“线”。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别方法一优选的实施例中,识别获取到的每一位密码的输入操作所对应的键码的同时,还包括:
显示对应的键码。在此,以上述第一键码为点,所述第二键码为线为例,为了方便用户确认识别到的点或线是否正确,可以在屏幕的部分区域显示识别到的对应的点或线,在识别不正确的情况下,操作者可以及时发现,并重新进行输入操作。另外,为了保证密码的保密性,屏幕上显示第一键码或第二键码的大小不宜过大,以操作人本人能够清楚看清为限即可,以避免操作者周围的人偷窥到密码。例如,如图7所示,可在图7(a)的界面中依次进行对应点和线的输入操作,每输入一位密码,就在屏幕的底部显示当前识别到的各位密码,当所有密码输入完毕,可在图7(b)的界面中显示所有位的密码,以方便用户确认密码是否输入正确,如果输入正确,操作者可以在图7(b)的屏幕界面上向上滑动手指,以确认所输入的密码,如果输入不正确,得到图7(c)输入密码错误的界面,操作者可以在图7(c)的界面屏幕上向下滑动手指,以重新输入密码。本领域技术人员应能理解上述显示对应的键码的描述仅为举例,其他现有的或今后可
能出现的显示对应的键码的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别方法一优选的实施例中,识别获取到的每一位密码的输入操作所对应的键码的同时,还包括:
显示对应的键码的识别过程的动画效果。在此,以上述第一键码为点,所述第二键码为线为例,为了方便用户确认识别到的点或线是否正确,可以设置对应于识别到的点或线的不同的动画效果,无需在屏幕显示对应的键码,以保护密码不外泄,由于键码只有两种,即点和线,所以动画效果也对应设置为两种,所以用户根据显示的不同的动画效果可以快速辨别识别出的键码是否正确,在识别不正确的情况下,操作者可以及时发现,并重新进行输入操作。例如,针对上述实施例的量化值为手指的点按力度值或手指的指肚面积值的情况,当在如图8(a)所示的界面中输入为点的第一键码,则对应会在图8(a)所示的界面的指纹周围产生蓝色的横向椭环形渐变动画效果,当在如图8(b)所示的界面中输入为线的第二键码,则对应会在图8(b)所示的界面的指纹周围产生黄色的纵向椭环形渐变动画效果。再如,图8(a)所示的界面的指纹周围产生蓝色的横向椭环形渐变动画效果的整个渐变过程对应可参见图9(a)~9(f),图8(b)所示的界面的指纹周围产生黄色的纵向椭环形渐变动画效果的整个渐变过程对应可参见图10(a)~10(f)。再如,例如,针对上述实施例的量化值为输入耗时值的情况,当在如图11(a)~11(d)所示的界面中输入为线的第二键码,则对应会在图11(a)~11(d)所示的界面的依次显示手指长按屏幕并移动的输入操作所对应的黄色条状渐变动画效果。另外,在获取到的每一位密码的输入操作所对应的键码的同时,本实施例的显示对应的键码的识别过程的动画效果的方案可与上一实施例的显示对应的键码的方案可以一起使用,以方便用户以任一喜欢的方式确认识别到的第一键码或第二键码是否正确。本领域技术人员应能理解上述动画效果的描述仅为举例,其他现有的或今后可能出现的动画效果的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
如图12所示,根据本申请的另一面还提供一种密码识别设备100,该
设备100包括:
识别装置1,用于识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码;
判断装置2,用于当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确。在此,不同于现有的通常键码包含有26个字母和10个数字等,而本实施例中所述键码只有两个选择,要么是第一键码,要么是第二键码,从而可以避免在屏幕上尤其是较小的屏幕上设置过多的键码所对应的按键,导致每个按键的面积较小,用户不容易识别,容易误触碰其它按键,造成输入失误,本实施例可以只在屏幕上只设置两个按键或者根本不设置按键,所述第一键码和第二键码例如可以分别对应任意两个预设的符号中的其中一个,所述符号可以是字母、数字、标记或图形等任意类型,所述第一键码和第二键码没有排序上的限制,只要第一键码和第二键码不同,能够加以区别即可,例如,第一键码和第二键码可分别为26个字母中的任意两个,还可以是0~9数字中的任意两个,第一键码和第二键码中的其中一个键码也可以是26个字母中的任意一个字母,另一个键码是0~9数字中的任意一个数字,还或者第一键码和第二键码可以分别为其它的任意两个不同字符的其中一。可以通过控制密码的位数来调节密码的复杂度,其中,密码位数越少,由第一键码和第二键码排列组合成的密码越简单,密码位数越多,由第一键码和第二键码排列组合成的密码越复杂,可以满足不同用户对简单或复杂密码的需求。当在屏幕上设置按键时,由于只要设置两个按键来对应第一键码或第二键码,所以即使在很小的屏幕上,这两个按键也可以设置得足够大,以方便用户辨识和选择,避免输入失误的发生;当在屏幕上不设置按键时,可以预先定义两个不同的输入操作来分别对应第一键码和第二键码,由于只有两个不同的键码,所以由输入操作识别到对应的键码只有两种可能,要么是第一键码,要么是第二键码,例如输入操作为分为第一操作和第二操作,当输入第一操作时,对应识别到的是第一键码,当输入第二操作时,对应识别到的是第二键码,除此之外由输入操作不会对应到其它键码,识别到的内容只要从第一键码和第二键码中选择其一即可,识别速度会非常快,从而
可以保证第一键码或第二键码比较高的识别准确率和识别效率,另外此类不在屏幕上设置按键的方案,还可以提高密码的保密性,解决常规的数字和/或字母密码保密性不高的问题。
本申请的密码识别设备一优选的实施例中,所述第一键码为点,所述第二键码为线。在此,本实施例引入摩斯码的概念,利用类似摩斯码只有“滴、嗒(点、线)”两种形式的键码,组合出各种含义的密码,长短及复杂程度可根据用户自己来定义,密码设置可简单可复杂,可以结合屏幕上有对应按键或无对应按键的输入方式,使操作者迅速简单的完成密码输入,例如,可以预先定义输入操作有两种,即第一输入操作和第二操作,第一操作对应识别为点,第二操作对应识别为线,操作者可在如图2所示的界面激活密码输入流程后,操作者只需要按记忆点和线的排列组合顺序,在屏幕上有按键的情况下用手指点或按屏幕上的按键,在如图3所示,屏幕上无按键的情况下用手指点或按屏幕,来输入密码,不需操作者盯紧屏幕分辨屏幕上的大量字母或数字,提高输入操作和识别键码的效率和准确率。另外,操作者可在如图4所示的界面中设置2~16位点和/或线组合成的密码,其中,图4(a)所示的界面中提示操作者设置2~16位点和/或线组合成的密码,然后在4(b)所示的界面中第一遍输入需要设置的密码,最后在4(c)所示的界面中第二遍输入需要设置的密码,从而完成初始密码的设置。本领域技术人员应能理解上述第一和第二键码的描述仅为举例,其他现有的或今后可能出现的第一和第二键码的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
如图13所示,本申请的密码识别设备一优选的实施例中,所述识别装置1,用于计算获取到的每一位密码的输入操作的量化值的模块11;
,用于根据所述量化值识别该位密码的输入操作所对应的键码的模块12。在此,通过将输入操作计算转化为对应的量化值,可以根据不同类的输入操作对应不同类的量化值,以上述第一键码为点,所述第二键码为线为例,由于根据每类量化值需要识别的对应键码只有两个,要么是点,要么是线,可以将每类量化值对应分为两种,并将该类量化值的第一种量化值对应点,另将该类量化值的第二种量化值对应线,从而使第一键码和第
二键码的识别和区别更高效、更精确。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
如图14所示,本申请的密码识别设备一优选的实施例中,所述用于根据所述量化值识别该位密码的输入操作所对应的键码的模块12,包括:
用于判断所述量化值是否超过所述预设阈值的单元121,
用于若所述量化值超过所述预设阈值,则识别该位密码的输入操作所对应的键码为第一键码的单元122;
用于若所述量化值未超过所述预设阈值,则识别该位密码的输入操作所对应的键码为第二键码的单元123。在此,接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,以上述第一键码为点,所述第二键码为线为例,本实施例中,某类量化值对应分为两种,第一种未超过预设阈值的量化值对应点,另将该类量化值的第二种超过所述预设阈值的量化值对应线,从而使识别第点和线的量化值范围有一个共同的边界即预设阈值,以此边界能够高效、精确识别第一键码和第二键码。本领域技术人员应能理解上述预设阈值的描述仅为举例,其他现有的或今后可能出现的预设阈值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别设备一较优的实施例中,所述用于判断所述量化值是否超过所述预设阈值的单元121,用于判断手指的指肚面积值是否超过预设面积阈值。在此,接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,以上述第一键码为点,所述第二键码为线为例,本实施例中,量化值的类别为手指的指肚面积值,另外,将手指的指肚面积值对应分为两种,第一种未超过预设面积阈值的量化值对应点,另将该类量化值的第二种超过所述预设面积阈值的量化值对应线,从而使识别点和线的量化值范围有一个共同的边界即预设面积阈值,以此边界能够高效、精确识别第一键码和第二键码。例如,可以利用电容屏的扫描原理,如图5和
6所示,把屏幕整体分为平均大小的格子,从X、Y轴扫描接触点来计算接触面积,具体来说,根据普遍情况下操作者的单只手指肚面积在屏幕的最大接触面积为2cm*3cm,如图5所示,当单只手指肚面积在屏幕的接触面积小余等于所述最大接触面积的45%时(第一种未超过预设面积阈值的量化值),则判定为输入的是第一键码例如是“点”,如图6所示,当单只手指肚面积在屏幕的接触面积大于所述最大接触面积的45%(第二种超过所述预设面积阈值的量化值),则判定为输入的是“线”。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别设备一较优的实施例中,所述用于判断所述量化值是否超过所述预设阈值的单元121,,用于判断手指的点按力度值是否超过预设点按力度阈值。在此,接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,以上述第一键码为点,所述第二键码为线为例,本实施例中,量化值的类别为手指的点按力度值,本实施例可以在触屏上不设置对应的按键,操作者可以在触屏上的任何位置进行输入操作,另外,将手指的点按力度值对应分为两种,第一种未超过预设点按力度阈值的量化值对应点,另将该类量化值的第二种超过所述预设点按力度阈值的量化值对应线,从而使识别点和线的量化值范围有一个共同的边界即预设点按力度阈值,以此边界能够高效、精确识别第一键码和第二键码。例如,可以利用压感触控技术,感知操作者的手指在触屏的轻压或重压的力度,并调出不同的对应的点或线,如轻按为“点”、重按为“线”。具体来说,当操作者的手指在触屏的轻压产生小余等于所述预设点按力度阈值的点按力度值时(第一种未超过预设点按力度阈值的量化值),则判定为输入的是第一键码例如是“点”,当操作者的手指在触屏的轻压产生大于所述预设点按力度阈值的点按力度值时(第二种超过所述预设点按力度阈值的量化值),则判定为输入的是“线”。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申
请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
本申请的密码识别设备一较优的实施例中,所述用于判断所述量化值是否超过所述预设阈值的单元121,用于判断输入耗时值是否超过预设输入耗时阈值。在此,接上一将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码的实施例,本实施例中,量化值的类别为输入操作的输入耗时值,例如可以是手指在触屏的点按时长,以上述第一键码为点,所述第二键码为线为例,本实施例可以在触屏上不设置对应的按键,操作者可以在触屏上的任何位置进行输入操作,另外,将输入操作的输入耗时值对应分为两种,第一种未超过预设输入耗时阈值的量化值对应点,另将该类量化值的第二种超过所述预设输入耗时阈值的量化值对应线,从而使识别点和线的量化值范围有一个共同的边界即预设输入耗时阈值,以此边界能够高效、精确识别第一键码和第二键码。例如,可以利用压感触控技术,感知操作者的手指在触屏的轻压或重压的力度,并调出不同的对应的点或线,即可以利用手指与触屏接触的时间长短来判定,短时间点按为“点”,长按为“线”,如长按满足500毫秒的时长,具体来说,当操作者的手指在触屏的点按时长小余等于所述预设输入耗时阈值时(第一种未超过预设输入耗时阈值的量化值),则判定为输入的是第一键码例如是“点”,当操作者的手指在触屏的点按时长大于所述预设输入耗时阈值时(第二种超过所述预设输入耗时阈值的量化值),则判定为输入的是“线”。本领域技术人员应能理解上述量化值的描述仅为举例,其他现有的或今后可能出现的量化值的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
如图15所示,本申请的密码识别设备一优选的实施例中,所述设备还包括显示键码装置3,用于在识别获取到的每一位密码的输入操作所对应的键码的同时,显示对应的键码。在此,以上述第一键码为点,所述第二键码为线为例,为了方便用户确认识别到的点或线是否正确,可以在屏幕的部分区域显示识别到的对应的点或线,在识别不正确的情况下,操作者可以及时发现,并重新进行输入操作。另外,为了保证密码的保密性,
屏幕上显示第一键码或第二键码的大小不宜过大,以操作人本人能够清楚看清为限即可,以避免操作者周围的人偷窥到密码。例如,如图7所示,可在图7(a)的界面中依次进行对应点和线的输入操作,每输入一位密码,就在屏幕的底部显示当前识别到的各位密码,当所有密码输入完毕,可在图7(b)的界面中显示所有位的密码,以方便用户确认密码是否输入正确,如果输入正确,操作者可以在图7(b)的屏幕界面上向上滑动手指,以确认所输入的密码,如果输入不正确,得到图7(c)输入密码错误的界面,操作者可以在图7(c)的界面屏幕上向下滑动手指,以重新输入密码。本领域技术人员应能理解上述显示对应的键码的描述仅为举例,其他现有的或今后可能出现的显示对应的键码的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
如图16所示,本申请的密码识别设备一优选的实施例中,所述设备还包括显示动效装置4,用于在识别获取到的每一位密码的输入操作所对应的键码的同时,显示对应的键码的识别过程的动画效果。在此,在此,以上述第一键码为点,所述第二键码为线为例,为了方便用户确认识别到的点或线是否正确,可以设置对应于识别到的点或线的不同的动画效果,无需在屏幕显示对应的键码,以保护密码不外泄,由于键码只有两种,即点和线,所以动画效果也对应设置为两种,所以用户根据显示的不同的动画效果可以快速辨别识别出的键码是否正确,在识别不正确的情况下,操作者可以及时发现,并重新进行输入操作。例如,针对上述实施例的量化值为手指的点按力度值或手指的指肚面积值的情况,当在如图8(a)所示的界面中输入为点的第一键码,则对应会在图8(a)所示的界面的指纹周围产生蓝色的横向椭环形渐变动画效果,当在如图8(b)所示的界面中输入为线的第二键码,则对应会在图8(b)所示的界面的指纹周围产生黄色的纵向椭环形渐变动画效果。再如,图8(a)所示的界面的指纹周围产生蓝色的横向椭环形渐变动画效果的整个渐变过程对应可参见图9(a)~9(f),图8(b)所示的界面的指纹周围产生黄色的纵向椭环形渐变动画效果的整个渐变过程对应可参见图10(a)~10(f)。再如,例如,针对上述实施例的量化值为输入耗时值的情况,当在如图11(a)~11(d)所示
的界面中输入为线的第二键码,则对应会在图11(a)~11(d)所示的界面的依次显示手指长按屏幕并移动的输入操作所对应的黄色条状渐变动画效果。另外,在获取到的每一位密码的输入操作所对应的键码的同时,本实施例的显示对应的键码的识别过程的动画效果的方案可与上一实施例的显示对应的键码的方案可以一起使用,以方便用户以任一喜欢的方式确认识别到的第一键码或第二键码是否正确。本领域技术人员应能理解上述动画效果的描述仅为举例,其他现有的或今后可能出现的动画效果的描述如可适用于本申请,也应包含在本申请保护范围以内,并在此以引用方式包含于此。
综上所述,本申请通过识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码,当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确,从而可以避免在屏幕上尤其是较小的屏幕上设置过多的键码所对应的按键,导致每个按键的面积较小,用户不容易识别,容易误触碰其它按键,造成输入失误的问题,另外,如果不在屏幕上设置按键案,还可以提高密码的保密性,解决常规的数字和/或字母密码保密性不高的问题。
进一步的,本申请通过将所述第一键码设置为点,所述第二键码设置为线,从而利用类似摩斯码只有“滴、嗒(点、线)”两种形式的键码,组合出各种含义的密码,长短及复杂程度可根据用户自己来定义,密码设置可简单可复杂,可以结合屏幕上有对应按键或无对应按键的输入方式,使操作者迅速简单的完成密码输入。
进一步的,本申请通过计算获取到的每一位密码的输入操作的量化值,根据所述量化值识别该位密码的输入操作所对应的键码,可以根据不同类的输入操作对应不同类的量化值,由于根据每类量化值需要识别的对应键码只有两个,要么是第一键码,要么是第二键码,可以将每类量化值对应分为两种,并将该类量化值的第一种量化值对应第一键码,另将该类量化值的第二种量化值对应第二键码,从而使第一键码和第二键码的识别和区别更高效、更精确。
显然,本领域的技术人员可以对本申请进行各种改动和变型而不脱离
本申请的精神和范围。这样,倘若本申请的这些修改和变型属于本申请权利要求及其等同技术的范围之内,则本申请也意图包含这些改动和变型在内。
需要注意的是,本申请可在软件和/或软件与硬件的组合体中被实施,例如,可采用专用集成电路(ASIC)、通用目的计算机或任何其他类似硬件设备来实现。在一个实施例中,本申请的软件程序可以通过处理器执行以实现上文所述步骤或功能。同样地,本申请的软件程序(包括相关的数据结构)可以被存储到计算机可读记录介质中,例如,RAM存储器,磁或光驱动器或软磁盘及类似设备。另外,本申请的一些步骤或功能可采用硬件来实现,例如,作为与处理器配合从而执行各个步骤或功能的电路。
另外,本申请的一部分可被应用为计算机程序产品,例如计算机程序指令,当其被计算机执行时,通过该计算机的操作,可以调用或提供根据本申请的方法和/或技术方案。而调用本申请的方法的程序指令,可能被存储在固定的或可移动的记录介质中,和/或通过广播或其他信号承载媒体中的数据流而被传输,和/或被存储在根据所述程序指令运行的计算机设备的工作存储器中。在此,根据本申请的一个实施例包括一个装置,该装置包括用于存储计算机程序指令的存储器和用于执行程序指令的处理器,其中,当该计算机程序指令被该处理器执行时,触发该装置运行基于前述根据本申请的多个实施例的方法和/或技术方案。
对于本领域技术人员而言,显然本申请不限于上述示范性实施例的细节,而且在不背离本申请的精神或基本特征的情况下,能够以其他的具体形式实现本申请。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本申请的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化涵括在本申请内。不应将权利要求中的任何附图标记视为限制所涉及的权利要求。此外,显然“包括”一词不排除其他单元或步骤,单数不排除复数。装置权利要求中陈述的多个单元或装置也可以由一个单元或装置通过软件或者硬件来实现。第一,第二等词语用来表示名称,而并不表示任何特定的顺序。
Claims (18)
- 一种密码识别方法,其中,该方法包括:识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码;当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确。
- 如权利要求1所述的方法,其中,所述第一键码为点,所述第二键码为线。
- 如权利要求1或2所述的方法,其中,识别获取到的每一位密码的输入操作所对应的键码,包括:计算获取到的每一位密码的输入操作的量化值;根据所述量化值识别该位密码的输入操作所对应的键码。
- 如权利要求3所述的方法,其中,根据所述量化值识别该位密码的输入操作所对应的键码,包括:判断所述量化值是否超过预设阈值,若是,则识别该位密码的输入操作所对应的键码为第一键码;若否,则识别该位密码的输入操作所对应的键码为第二键码。
- 如权利要求4所述的方法,其中,判断所述量化值是否超过所述预设阈值,包括:判断手指的指肚面积值是否超过预设面积阈值。
- 如权利要求4所述的方法,其中,判断所述量化值是否超过所述预设阈值,包括:判断手指的点按力度值是否超过预设点按力度阈值。
- 如权利要求4所述的方法,其中,判断所述量化值是否超过所述预设阈值,包括:判断输入耗时值是否超过预设输入耗时阈值。
- 如权利要求1至7任一项所述的方法,其中,识别获取到的每一位密码的输入操作所对应的键码的同时,还包括:显示对应的键码。
- 如权利要求1至8任一项所述的方法,其中,识别获取到的每一位密码的输入操作所对应的键码的同时,还包括:显示对应的键码的识别过程的动画效果。
- 一种密码识别设备,其中,该设备包括:识别装置,用于识别获取到的每一位密码的输入操作所对应的键码,其中,所述键码包括第一键码或第二键码;判断装置,用于当识别到的所有位密码为对应的预设的第一键码和/或第二键码的组合时,判断密码输入正确。
- 如权利要求10所述的设备,其中,所述第一键码为点,所述第二键码为线。
- 如权利要求10或11所述的设备,其中,所述识别装置包括:用于计算获取到的每一位密码的输入操作的量化值的模块;用于根据所述量化值识别该位密码的输入操作所对应的键码的模块。
- 如权利要求12所述的设备,其中,所述用于根据所述量化值识别该位密码的输入操作所对应的键码的模块包括:用于判断所述量化值是否超过所述预设阈值的单元,用于若所述量化值超过所述预设阈值,则识别该位密码的输入操作所对应的键码为第一键码的单元;用于若所述量化值未超过所述预设阈值,则识别该位密码的输入操作所对应的键码为第二键码的单元。
- 如权利要求13所述的设备,其中,所述用于判断所述量化值是否超过所述预设阈值的单元,用于判断手指的指肚面积值是否超过预设面积阈值。
- 如权利要求13所述的设备,其中,所述用于判断所述量化值是否超过所述预设阈值的单元,用于判断手指的点按力度值是否超过预设点按力度阈值。
- 如权利要求13所述的方法,其中,所述用于判断所述量化值是否超过所述预设阈值的单元,用于判断输入耗时值是否超过预设输入耗时阈值。
- 如权利要求10至16任一项所述的设备,其中,所述设备还包括显示键码装置,用于在识别获取到的每一位密码的输入操作所对应的键码的同时,显示对应的键码。
- 如权利要求10至16任一项所述的设备,其中,所述设备还包括显示动效装置,用于在识别获取到的每一位密码的输入操作所对应的键码的同时,显示对应的键码的识别过程的动画效果。
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| CN101677399A (zh) * | 2008-09-18 | 2010-03-24 | 香港科技大学 | 基于流密码的安全编码方案的多媒体内容编码方法和系统 |
| WO2015055147A1 (zh) * | 2013-10-17 | 2015-04-23 | 数高科技有限公司 | 标签、信息验证系统及信息验证方法 |
| CN105260632A (zh) * | 2015-10-16 | 2016-01-20 | 宇龙计算机通信科技(深圳)有限公司 | 一种鉴权方法及终端 |
| CN105302439A (zh) * | 2015-10-16 | 2016-02-03 | 宇龙计算机通信科技(深圳)有限公司 | 一种快捷操作方法及终端 |
| CN105678130A (zh) * | 2015-12-31 | 2016-06-15 | 北京元心科技有限公司 | 一种移动终端锁屏解锁配置方法和装置 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN101677399A (zh) * | 2008-09-18 | 2010-03-24 | 香港科技大学 | 基于流密码的安全编码方案的多媒体内容编码方法和系统 |
| WO2015055147A1 (zh) * | 2013-10-17 | 2015-04-23 | 数高科技有限公司 | 标签、信息验证系统及信息验证方法 |
| CN105260632A (zh) * | 2015-10-16 | 2016-01-20 | 宇龙计算机通信科技(深圳)有限公司 | 一种鉴权方法及终端 |
| CN105302439A (zh) * | 2015-10-16 | 2016-02-03 | 宇龙计算机通信科技(深圳)有限公司 | 一种快捷操作方法及终端 |
| CN105678130A (zh) * | 2015-12-31 | 2016-06-15 | 北京元心科技有限公司 | 一种移动终端锁屏解锁配置方法和装置 |
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