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This class provides the functionality of a secret (symmetric) key generator. Key generators are constructed using one of the
getInstance
class methods of this class. KeyGenerator objects are reusable, i.e., after a key has been generated, the same KeyGenerator object can be re-used to generate further keys.
There are two ways to generate a key: in an algorithm-independent manner, and in an algorithm-specific manner. The only difference between the two is the initialization of the object:
- Algorithm-Independent InitializationAll key generators share the concepts of a keysize and a source of randomness. There is an
init
method in this KeyGenerator class that takes these two universally shared types of arguments. There is also one that takes just akeysize
argument, and uses the SecureRandom implementation of the highest-priority installed provider as the source of randomness (or a system-provided source of randomness if none of the installed providers supply a SecureRandom implementation), and one that takes just a source of randomness.Since no other parameters are specified when you call the above algorithm-independentinit
methods, it is up to the provider what to do about the algorithm-specific parameters (if any) to be associated with each of the keys. - Algorithm-Specific InitializationFor situations where a set of algorithm-specific parameters already exists, there are two
init
methods that have anAlgorithmParameterSpec
argument. One also has aSecureRandom
argument, while the other uses the SecureRandom implementation of the highest-priority installed provider as the source of randomness (or a system-provided source of randomness if none of the installed providers supply a SecureRandom implementation).
In case the client does not explicitly initialize the KeyGenerator (via a call to an
init
method), each provider must supply (and document) a default initialization. Every implementation of the Java platform is required to support the following standard
KeyGenerator
algorithms with the keysizes in parentheses: ![Easybox Easybox](http://screenshots.fr.sftcdn.net/fr/scrn/3338000/3338764/wireless-key-generator-01-700x337.png)
- AES (128)
- DES (56)
- DESede (168)
- HmacSHA1
- HmacSHA256
Home » Broadband Tools » SG WLAN Key Generator
About the WLAN Key Generator
The SG WLAN Key Generator is a tool that allows for quick, valid, and strong WEP/WPA key generation. It uses the 94 standard ASCII characters (with codes 32 to 126) for maximum compatability.
To generate a random WEP or WPA key, simply choose the desired key length and one will be generated for you. To generate a key based on a custom passphrase, enter your phrase into either the Custom Key text fields, and its HEX or ASCII equivalent will be generated for you automatically in the other custom text field.
To use any of the generated WEP keys, simply right-click on the appropriate text field (highlight the text if necessary), then choose copy from the pull-down menu, and paste the text whesre applicable.
The SG WLAN Key Generator is a tool that allows for quick, valid, and strong WEP/WPA key generation. It uses the 94 standard ASCII characters (with codes 32 to 126) for maximum compatability.
To generate a random WEP or WPA key, simply choose the desired key length and one will be generated for you. To generate a key based on a custom passphrase, enter your phrase into either the Custom Key text fields, and its HEX or ASCII equivalent will be generated for you automatically in the other custom text field.
To use any of the generated WEP keys, simply right-click on the appropriate text field (highlight the text if necessary), then choose copy from the pull-down menu, and paste the text whesre applicable.
Notes: WEP encryption uses 24 bit 'Initilization Vector' in addition to the 'secret key'. Therefore, 40 bit WEP can be refered to as 64 bit WEP, and 104 bit can be referedo to as 128 bit, depending on whether the 'initialization vector' is counted or not.
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