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- Generate CD-keys and license keys for software distribution and activation. Mirrakey is an ActiveX DLL that enables software developers to generate, validate and manage license keys for registration and activation of their software. Mirrakey is compatible with any development environment that supports COM ActiveX components.
- 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.
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A key generator (key-gen) is a computer program that generates a product licensing key, such as a serial number, necessary to activate for use of a software application. Keygens may be legitimately distributed by software manufacturers for licensing software in commercial environments where software has been licensed in bulk for an entire site or enterprise, or they may be distributed illegitimately in circumstances of copyright infringement or software piracy. Illegitimate key generators are typically distributed by software crackers in the warez scene and demoscene. These keygens often play 'Keygen music', which may include the genres dubstep or chiptunes[1] in the background and have artistic user interfaces.
Software licensing[edit]
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A software license is a legal instrument that governs the usage and distribution of computer software.[2] Often, such licenses are enforced by implementing in the software a product activation or digital rights management (DRM) mechanism,[3] seeking to prevent unauthorized use of the software by issuing a code sequence that must be entered into the application when prompted or stored in its configuration.[better source needed]
Key verification[edit]
Many programs attempt to verify or validate licensing keys over the Internet by establishing a session with a licensing application of the software publisher. Advanced keygens bypass this mechanism, and include additional features for key verification, for example by generating the validation data which would otherwise be returned by an activation server. If the software offers phone activation then the keygen could generate the correct activation code to finish activation. Another method that has been used is activation server emulation, which patches the program memory to 'see' the keygen as the de facto activation server.
Multi-keygen[edit]
A multi-keygen is a keygen that offers key generation for multiple software applications. Multi-keygens are sometimes released over singular keygens if a series of products requires the same algorithm for generating product keys. In this case, only a single value encoded within the key has to be changed in order to target a different product.
Authors and distribution[edit]
Unauthorised keygens that typically violate software licensing terms are written by programmers who engage in reverse engineering and software cracking, often called crackers, to circumvent copy protection of software or digital rights management for multimedia.
Keygens are available for download on warez sites or through peer-to-peer (P2P) networks.
Malware keygens[edit]
Many unauthorised keygens, available through P2P networks or otherwise, contain malicious payloads.[4] These key generators may or may not generate a valid key, but the embedded malware loaded invisibly at the same time may, for example, be a version of CryptoLocker (ransomware).[5][6]
Antivirus software may discover malware embedded in keygens; such software often also identifies unauthorised keygens which do not contain a payload as potentially unwanted software, often labelling them with a name such as Win32/Keygen or Win32/Gendows.[4]
Keychan[edit]
A key changer or keychan is a variation of a keygen. A keychan is a small piece of software that changes the license key or serial number of a particular piece of proprietary software installed on a computer.
See also[edit]
References[edit]
- ^Driscoll et. Diaz, Kevin et. Joshua. 'Endless loop: A brief history of chiptunes'. Transformative Works and Cultures. Transformative Works and Cultures. Retrieved 22 December 2017.
- ^https://web.archive.org/web/20110514103947/http://knol.google.com/k/jon-gillespie-brown/what-is-software-licensing/3v64x901bjfe2/2%23 What is Software licensing?
- ^https://web.archive.org/web/20111121001926/http://knol.google.com/k/why-product-activation-for-software-is-becoming-widespread%23
- ^ abMicrosoft Security Intelligence Report Volume 13, p14
- ^'Cryptolocker 2.0 – new version, or copycat?'. WeLiveSecurity. ESET. Retrieved 18 January 2014.
- ^'New CryptoLocker Spreads via Removable Drives'. Trend Micro. Retrieved 18 January 2014.
External links[edit]
Retrieved from 'https://en.wikipedia.org/w/index.php?title=Keygen&oldid=936926749'
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: - AES (128)
- DES (56)
- DESede (168)
- HmacSHA1
- HmacSHA256
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