easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

forgettest

inoxidability

venostasis

danek

ferdinande

overready

persaud

abandonments

oppugnation

complexioned

breadthen

checof

mysinsky

cestraciontidae

newlywed

amargo

poundingmill

attitash


Caesar cipher

Caesar cipher, is one of the simplest and most widely known encryption techniques. The transformation can be represented by aligning two alphabets, the cipher alphabet is the plain alphabet rotated left or right by some number of positions.

When encrypting, a person looks up each letter of the message in the 'plain' line and writes down the corresponding letter in the 'cipher' line. Deciphering is done in reverse.
The encryption can also be represented using modular arithmetic by first transforming the letters into numbers, according to the scheme, A = 0, B = 1,..., Z = 25. Encryption of a letter x by a shift n can be described mathematically as

Plaintext: pedicabs
cipher variations:
qfejdbct rgfkecdu shglfdev tihmgefw ujinhfgx
vkjoighy wlkpjhiz xmlqkija ynmrljkb zonsmklc
apotnlmd bqpuomne crqvpnof dsrwqopg etsxrpqh
futysqri gvuztrsj hwvaustk ixwbvtul jyxcwuvm
kzydxvwn lazeywxo mbafzxyp ncbgayzq odchbzar

Decryption is performed similarly,

(There are different definitions for the modulo operation. In the above, the result is in the range 0...25. I.e., if x+n or x-n are not in the range 0...25, we have to subtract or add 26.)
Read more ...
Atbash Cipher

Atbash is an ancient encryption system created in the Middle East. It was originally used in the Hebrew language.
The Atbash cipher is a simple substitution cipher that relies on transposing all the letters in the alphabet such that the resulting alphabet is backwards.
The first letter is replaced with the last letter, the second with the second-last, and so on.
An example plaintext to ciphertext using Atbash:
Plain: pedicabs
Cipher: kvwrxzyh

Read more ...

 

Baconian Cipher

To encode a message, each letter of the plaintext is replaced by a group of five of the letters 'A' or 'B'. This replacement is done according to the alphabet of the Baconian cipher, shown below.
a   AAAAA   g    AABBA     m    ABABB   s    BAAAB     y    BABBA
b   AAAAB   h    AABBB     n    ABBAA   t    BAABA     z    BABBB
c   AAABA   i    ABAAA     o    ABBAB   u    BAABB 
d   AAABB   j    BBBAA     p    ABBBA   v    BBBAB
e   AABAA   k    ABAAB     q    ABBBB   w    BABAA
f   AABAB   l    ABABA     r    BAAAA   x    BABAB

Plain: pedicabs
Cipher: ABBBA AABAA AAABB ABAAA AAABA AAAAA AAAAB BAAAB

Read more ...

 

Affine Cipher
In the affine cipher the letters of an alphabet of size m are first mapped to the integers in the range 0..m - 1. It then uses modular arithmetic to transform the integer that each plaintext letter corresponds to into another integer that correspond to a ciphertext letter. The encryption function for a single letter is

where modulus m is the size of the alphabet and a and b are the key of the cipher. The value a must be chosen such that a and m are coprime.
Considering the specific case of encrypting messages in English (i.e. m = 26), there are a total of 286 non-trivial affine ciphers, not counting the 26 trivial Caesar ciphers. This number comes from the fact there are 12 numbers that are coprime with 26 that are less than 26 (these are the possible values of a). Each value of a can have 26 different addition shifts (the b value) ; therefore, there are 12*26 or 312 possible keys.
Plaintext: pedicabs
cipher variations:
qfejdbctunkzhbedyvqplbgncdwfpbixglcvtbkhktilxbmrsjurfbqlwrahjbsv
azgxnbufehmnrbwpipsdvbyzmxytzbajrgfkecduvolaicfezwrqmchodexgqcjy
hmdwuclilujmycnstkvsgcrmxsbikctwbahyocvgfinoscxqjqtewczanyzuacbk
shglfdevwpmbjdgfaxsrndipefyhrdkzinexvdmjmvknzdotulwthdsnytcjldux
cbizpdwhgjoptdyrkrufxdabozavbdcltihmgefwxqnckehgbytsoejqfgzisela
jofywenknwloaepuvmxuietozudkmevydcjaqexihkpquezslsvgyebcpabwcedm
ujinhfgxyrodlfihczutpfkrghajtfmbkpgzxfoloxmpbfqvwnyvjfupavelnfwz
edkbrfyjilqrvfatmtwhzfcdqbcxdfenvkjoighyzspemgjidavuqglshibkugnc
lqhaygpmpynqcgrwxozwkgvqbwfmogxafelcsgzkjmrswgbunuxiagdercdyegfo
wlkpjhizatqfnhkjebwvrhmtijclvhodmribzhqnqzordhsxypaxlhwrcxgnphyb
gfmdthalknstxhcvovyjbhefsdezfhgpxmlqkijaburgoilkfcxwsinujkdmwipe
nsjcairorapseityzqbymixsdyhoqizchgneuibmlotuyidwpwzkcifgtefagihq
ynmrljkbcvshpjmlgdyxtjovklenxjqfotkdbjspsbqtfjuzarcznjyteziprjad
ihofvjcnmpuvzjexqxaldjghufgbhjirzonsmklcdwtiqknmhezyukpwlmfoykrg
pulecktqtcrugkvabsdaokzufajqskbejipgwkdonqvwakfyrybmekhivghcikjs
apotnlmdexujrlonifazvlqxmngpzlshqvmfdlurudsvhlwbctebplavgbkrtlcf
kjqhxleporwxblgzszcnflijwhidjlktbqpuomnefyvksmpojgbawmrynohqamti
rwngemvsvetwimxcdufcqmbwhclsumdglkriymfqpsxycmhatadogmjkxijekmlu
crqvpnofgzwltnqpkhcbxnszopirbnujsxohfnwtwfuxjnydevgdrncxidmtvneh
mlsjzngrqtyzdnibubephnklyjkflnmvdsrwqopghaxmuorqlidcyotapqjscovk
typigoxuxgvykozefwhesodyjenuwofinmtkaohsruzaeojcvcfqiolmzklgmonw
etsxrpqhibynvpsrmjedzpubqrktdpwluzqjhpyvyhwzlpafgxiftpezkfovxpgj
onulbpitsvabfpkdwdgrjpmnalmhnpoxfutysqrijczowqtsnkfeaqvcrslueqxm
varkiqzwzixamqbghyjguqfalgpwyqhkpovmcqjutwbcgqlexehskqnobmnioqpy
gvuztrsjkdapxrutolgfbrwdstmvfrynwbsljraxajybnrchizkhvrgbmhqxzril
qpwndrkvuxcdhrmfyfitlropcnojprqzhwvaustklebqysvupmhgcsxetunwgszo
xctmksbybkzcosdijaliwshcniryasjmrqxoeslwvydeisngzgjumspqdopkqsra
ixwbvtulmfcrztwvqnihdtyfuvoxhtapydunltczcladptejkbmjxtidojszbtkn
srypftmxwzefjtohahkvntqrepqlrtsbjyxcwuvmngdsauxwrojieuzgvwpyiubq
zevomudadmbequfklcnkyujepktaculotszqgunyxafgkupibilwoursfqrmsutc
kzydxvwnohetbvyxspkjfvahwxqzjvcrafwpnvebencfrvglmdolzvkfqlubdvmp
utarhvozybghlvqjcjmxpvstgrsntvudlazeywxopifucwzytqlkgwbixyrakwds
bgxqowfcfodgswhmnepmawlgrmvcewnqvubsiwpazchimwrkdknyqwtuhstouwve
mbafzxypqjgvdxazurmlhxcjyzsblxetchyrpxgdgpehtxinofqnbxmhsnwdfxor
wvctjxqbadijnxslelozrxuvitupvxwfncbgayzqrkhweybavsnmiydkzatcmyfu
dizsqyhehqfiuyjopgrocynitoxegypsxwdukyrcbejkoytmfmpasyvwjuvqwyxg
odchbzarslixfzcbwtonjzelabudnzgvejatrzifirgjvzkpqhspdzojupyfhzqt
yxevlzsdcfklpzungnqbtzwxkvwrxzyhpedicabstmjygadcxupokafmbcveoahw
fkbusajgjshkwalqritqeapkvqzgiaruzyfwmatedglmqavohorcuaxylwxsyazi

The decryption function is

where a - 1 is the modular multiplicative inverse of a modulo m. I.e., it satisfies the equation

The multiplicative inverse of a only exists if a and m are coprime. Hence without the restriction on a decryption might not be possible. It can be shown as follows that decryption function is the inverse of the encryption function,

Read more ...

 

ROT13 Cipher
Applying ROT13 to a piece of text merely requires examining its alphabetic characters and replacing each one by the letter 13 places further along in the alphabet, wrapping back to the beginning if necessary. A becomes N, B becomes O, and so on up to M, which becomes Z, then the sequence continues at the beginning of the alphabet: N becomes A, O becomes B, and so on to Z, which becomes M. Only those letters which occur in the English alphabet are affected; numbers, symbols, whitespace, and all other characters are left unchanged. Because there are 26 letters in the English alphabet and 26 = 2 * 13, the ROT13 function is its own inverse:

ROT13(ROT13(x)) = x for any basic Latin-alphabet text x


An example plaintext to ciphertext using ROT13:

Plain: pedicabs
Cipher: crqvpnof

Read more ...

 

Polybius Square

A Polybius Square is a table that allows someone to translate letters into numbers. To give a small level of encryption, this table can be randomized and shared with the recipient. In order to fit the 26 letters of the alphabet into the 25 spots created by the table, the letters i and j are usually combined.
1 2 3 4 5
1 A B C D E
2 F G H I/J K
3 L M N O P
4 Q R S T U
5 V W X Y Z

Basic Form:
Plain: pedicabs
Cipher: 5351414231112134

Extended Methods:
Method #1

Plaintext: pedicabs
method variations:
ukiohfgxzpotnlmceutysqrhkzydxvwn

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
p e d i c a b s 
5 5 4 4 3 1 2 3 
3 1 1 2 1 1 1 4 
They are then read out in rows:
5544312331121114
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: pedicabs
Cipher: ztcmcfaq

Read more ...
Method #3

Plaintext: pedicabs
method variations:
xqqmafly qqmaflyx qmaflyxq
maflyxqq aflyxqqm flyxqqma
lyxqqmaf yxqqmafl

Read more ...[RUS] , [EN]

 

Permutation Cipher
In classical cryptography, a permutation cipher is a transposition cipher in which the key is a permutation. To apply a cipher, a random permutation of size E is generated (the larger the value of E the more secure the cipher). The plaintext is then broken into segments of size E and the letters within that segment are permuted according to this key.
In theory, any transposition cipher can be viewed as a permutation cipher where E is equal to the length of the plaintext; this is too cumbersome a generalisation to use in actual practice, however.
The idea behind a permutation cipher is to keep the plaintext characters unchanged, butalter their positions by rearrangement using a permutation
This cipher is defined as:
Let m be a positive integer, and K consist of all permutations of {1,...,m}
For a key (permutation) , define:
The encryption function
The decryption function
A small example, assuming m = 6, and the key is the permutation :

The first row is the value of i, and the second row is the corresponding value of (i)
The inverse permutation, is constructed by interchanging the two rows, andrearranging the columns so that the first row is in increasing order, Therefore, is:

Total variation formula:

e = 2,718281828 , n - plaintext length

Plaintext: pedicabs

first 5040 cipher variations(40320 total)
pedicabs pedicasb pedicbas pedicbsa pedicsba pedicsab pediacbs pediacsb pediabcs pediabsc pediasbc
pediascb pedibacs pedibasc pedibcas pedibcsa pedibsca pedibsac pedisabc pedisacb pedisbac pedisbca
pediscba pediscab pedciabs pedciasb pedcibas pedcibsa pedcisba pedcisab pedcaibs pedcaisb pedcabis
pedcabsi pedcasbi pedcasib pedcbais pedcbasi pedcbias pedcbisa pedcbsia pedcbsai pedcsabi pedcsaib
pedcsbai pedcsbia pedcsiba pedcsiab pedacibs pedacisb pedacbis pedacbsi pedacsbi pedacsib pedaicbs
pedaicsb pedaibcs pedaibsc pedaisbc pedaiscb pedabics pedabisc pedabcis pedabcsi pedabsci pedabsic
pedasibc pedasicb pedasbic pedasbci pedascbi pedascib pedbcais pedbcasi pedbcias pedbcisa pedbcsia
pedbcsai pedbacis pedbacsi pedbaics pedbaisc pedbasic pedbasci pedbiacs pedbiasc pedbicas pedbicsa
pedbisca pedbisac pedbsaic pedbsaci pedbsiac pedbsica pedbscia pedbscai pedscabi pedscaib pedscbai
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pedsbcai pedsbcia pedsbica pedsbiac pedsiabc pedsiacb pedsibac pedsibca pedsicba pedsicab peidcabs
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peidscab peicdabs peicdasb peicdbas peicdbsa peicdsba peicdsab peicadbs peicadsb peicabds peicabsd
peicasbd peicasdb peicbads peicbasd peicbdas peicbdsa peicbsda peicbsad peicsabd peicsadb peicsbad
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peiadbcs peiadbsc peiadsbc peiadscb peiabdcs peiabdsc peiabcds peiabcsd peiabscd peiabsdc peiasdbc
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pdcebsai pdcesabi pdcesaib pdcesbai pdcesbia pdcesiba pdcesiab pdcaeibs pdcaeisb pdcaebis pdcaebsi
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psbeidca psbeicda psbeicad pseicabd pseicadb pseicbad pseicbda pseicdba pseicdab pseiacbd pseiacdb
pseiabcd pseiabdc pseiadbc pseiadcb pseibacd pseibadc pseibcad pseibcda pseibdca pseibdac pseidabc
pseidacb pseidbac pseidbca pseidcba pseidcab pseciabd pseciadb psecibad psecibda psecidba psecidab
psecaibd psecaidb psecabid psecabdi psecadbi psecadib psecbaid psecbadi psecbiad psecbida psecbdia
psecbdai psecdabi psecdaib psecdbai psecdbia psecdiba psecdiab pseacibd pseacidb pseacbid pseacbdi
pseacdbi pseacdib pseaicbd pseaicdb pseaibcd pseaibdc pseaidbc pseaidcb pseabicd pseabidc pseabcid
pseabcdi pseabdci pseabdic pseadibc pseadicb pseadbic pseadbci pseadcbi pseadcib psebcaid psebcadi
psebciad psebcida psebcdia psebcdai psebacid psebacdi psebaicd psebaidc psebadic psebadci psebiacd
psebiadc psebicad psebicda psebidca psebidac psebdaic psebdaci psebdiac psebdica psebdcia psebdcai
psedcabi psedcaib psedcbai psedcbia psedciba psedciab psedacbi psedacib psedabci psedabic psedaibc
psedaicb psedbaci psedbaic psedbcai psedbcia psedbica psedbiac psediabc psediacb psedibac psedibca
psedicba psedicab

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History of cryptography
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