easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

orangesprings

multifidly

vitalizing

berrigan

plaudimus

unswathed

bennitt

rueckert

uncharitableness

wongpc

disluster

horrerem

heung

underbought

tricosanone

poplared

whamp

waxiness


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: unringed
cipher variations:
vosjohfe wptkpigf xqulqjhg yrvmrkih zswnslji
atxotmkj buypunlk cvzqvoml dwarwpnm exbsxqon
fyctyrpo gzduzsqp haevatrq ibfwbusr jcgxcvts
kdhydwut leizexvu mfjafywv ngkbgzxw ohlchayx
pimdibzy qjnejcaz rkofkdba slpglecb tmqhmfdc

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: unringed
Cipher: fmirmtvw

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: unringed
Cipher: BAABB ABBAA BAAAA ABAAA ABBAA AABBA AABAA AAABB

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: unringed
cipher variations:
vosjohfejoazotnkxoipofvqloqfordwzoyvodlcnogloptipowronjudoehozra
romxolzgfounoxhmtocdojpshoktovxywptkpigfkpbapuolypjqpgwrmprgpsex
apzwpemdophmpqujqpxspokvepfipasbspnypmahgpvopyinupdepkqtiplupwyz
xqulqjhglqcbqvpmzqkrqhxsnqshqtfybqaxqfnepqinqrvkrqytqplwfqgjqbtc
tqozqnbihqwpqzjovqefqlrujqmvqxzayrvmrkihmrdcrwqnarlsriytortirugz
crbyrgofqrjorswlsrzurqmxgrhkrcudurparocjirxqrakpwrfgrmsvkrnwryab
zswnsljinsedsxrobsmtsjzupsujsvhadsczshpgrskpstxmtsavsrnyhsilsdve
vsqbspdkjsyrsblqxsghsntwlsoxszbcatxotmkjotfetyspctnutkavqtvktwib
etdatiqhstlqtuynutbwtsozitjmtewfwtrctqelktzstcmrythitouxmtpytacd
buypunlkpugfuztqduovulbwruwluxjcfuebujritumruvzovucxutpajuknufxg
xusdurfmluatudnszuijupvynuqzubdecvzqvomlqvhgvaurevpwvmcxsvxmvykd
gvfcvksjuvnsvwapwvdyvuqbkvlovgyhyvtevsgnmvbuveotavjkvqwzovravcef
dwarwpnmrwihwbvsfwqxwndytwynwzlehwgdwltkvwotwxbqxwezwvrclwmpwhzi
zwufwthonwcvwfpubwklwrxapwsbwdfgexbsxqonsxjixcwtgxryxoezuxzoxamf
ixhexmulwxpuxycryxfaxwsdmxnqxiajaxvgxuipoxdwxgqvcxlmxsybqxtcxegh
fyctyrpotykjydxuhyszypfavyapybngjyifynvmxyqvyzdszygbyxtenyoryjbk
bywhyvjqpyexyhrwdymnytzcryudyfhigzduzsqpuzlkzeyviztazqgbwzbqzcoh
kzjgzownyzrwzaetazhczyufozpszkclczxizwkrqzfyzisxeznozuadszvezgij
haevatrqvamlafzwjaubarhcxacradpilakhapxozasxabfubaidazvgpaqtaldm
dayjaxlsragzajtyfaopavbetawfahjkibfwbusrwbnmbgaxkbvcbsidybdsbeqj
mblibqypabtybcgvcbjebawhqbrubmenebzkbymtsbhabkuzgbpqbwcfubxgbikl
jcgxcvtsxconchbylcwdctjezcetcfrkncmjcrzqbcuzcdhwdckfcbxircsvcnfo
fcalcznutcibclvahcqrcxdgvcyhcjlmkdhydwutydpodiczmdxedukfadfudgsl
odnkdsarcdvadeixedlgdcyjsdtwdogpgdbmdaovudjcdmwbidrsdyehwdzidkmn
leizexvuzeqpejdaneyfevlgbegvehtmpeoletbsdewbefjyfemhedzkteuxephq
hecnebpwvekdenxcjestezfixeajelnomfjafywvafrqfkebofzgfwmhcfhwfiun
qfpmfuctefxcfgkzgfnifealufvyfqirifdofcqxwflefoydkftufagjyfbkfmop
ngkbgzxwbgsrglfcpgahgxnidgixgjvorgqngvdufgydghlahgojgfbmvgwzgrjs
jgepgdryxgmfgpzelguvgbhkzgclgnpqohlchayxchtshmgdqhbihyojehjyhkwp
shrohwevghzehimbihpkhgcnwhxahsktkhfqheszyhnghqafmhvwhcilahdmhoqr
pimdibzydiutinhericjizpkfikzilxqtispixfwhiafijncjiqlihdoxiybitlu
ligriftaziohirbgniwxidjmbieniprsqjnejcazejvujoifsjdkjaqlgjlajmyr
ujtqjygxijbgjkodkjrmjiepyjzcjumvmjhsjgubajpijschojxyjekncjfojqst
rkofkdbafkwvkpjgtkelkbrmhkmbknzsvkurkzhyjkchklpelksnkjfqzkadkvnw
nkitkhvcbkqjktdipkyzkflodkgpkrtuslpglecbglxwlqkhulfmlcsnilncloat
wlvslaizkldilmqfmltolkgralbelwoxoljuliwdclrkluejqlzalgmpelhqlsuv
tmqhmfdchmyxmrlivmgnmdtojmodmpbuxmwtmbjalmejmnrgnmupmlhsbmcfmxpy
pmkvmjxedmslmvfkrmabmhnqfmirmtvwunringedinzynsmjwnhoneupknpenqcv
ynxunckbmnfknoshonvqnmitcndgnyqzqnlwnkyfentmnwglsnbcniorgnjsnuwx

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: unringed
Cipher: haevatrq

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: unringed
Cipher: 5433244233225141

Extended Methods:
Method #1

Plaintext: unringed
method variations:
zswosmkiexbtxrpokcgycwutphmdhbzy

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
u n r i n g e d 
5 3 2 4 3 2 5 4 
4 3 4 2 3 2 1 1 
They are then read out in rows:
5324325443423211
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: unringed
Cipher: prhuoiha

Read more ...
Method #3

Plaintext: unringed
method variations:
ohtmhwqv htmhwqvo tmhwqvoh
mhwqvoht hwqvohtm wqvohtmh
qvohtmhw vohtmhwq

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: unringed

first 5040 cipher variations(40320 total)
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ugnrendi ugnreind ugnreidn ugnredin ugnredni ugnrdnei ugnrdnie ugnrdeni ugnrdein ugnrdien ugnrdine
ugnnried ugnnride ugnnreid ugnnredi ugnnrdei ugnnrdie ugnnired ugnnirde ugnnierd ugnniedr ugnnider
ugnnidre ugnneird ugnneidr ugnnerid ugnnerdi ugnnedri ugnnedir ugnndier ugnndire ugnndeir ugnnderi
ugnndrei ugnndrie ugnernid ugnerndi ugnerind ugneridn ugnerdin ugnerdni ugnenrid ugnenrdi ugnenird
ugnenidr ugnendir ugnendri ugneinrd ugneindr ugneirnd ugneirdn ugneidrn ugneidnr ugnednir ugnednri
ugnedinr ugnedirn ugnedrin ugnedrni ugndrnei ugndrnie ugndreni ugndrein ugndrien ugndrine ugndnrei
ugndnrie ugndneri ugndneir ugndnier ugndnire ugndenri ugndenir ugnderni ugnderin ugndeirn ugndeinr
ugndiner ugndinre ugndienr ugndiern ugndiren ugndirne ugninred ugninrde ugninerd ugninedr ugninder
ugnindre ugnirned ugnirnde ugnirend ugniredn ugnirden ugnirdne ugniernd ugnierdn ugnienrd ugniendr
ugniednr ugniedrn ugnidren ugnidrne ugnidern ugnidenr ugnidner ugnidnre ugnnired ugnnirde ugnnierd
ugnniedr ugnnider ugnnidre ugnnried ugnnride ugnnreid ugnnredi ugnnrdei ugnnrdie ugnnerid ugnnerdi
ugnneird ugnneidr ugnnedir ugnnedri ugnndrei ugnndrie ugnnderi ugnndeir ugnndier ugnndire ugnrnied
ugnrnide ugnrneid ugnrnedi ugnrndei ugnrndie ugnrined ugnrinde ugnriend ugnriedn ugnriden ugnridne
ugnreind ugnreidn ugnrenid ugnrendi ugnredni ugnredin ugnrdien ugnrdine ugnrdein ugnrdeni ugnrdnei
ugnrdnie ugnenrid ugnenrdi ugnenird ugnenidr ugnendir ugnendri ugnernid ugnerndi ugnerind ugneridn
ugnerdin ugnerdni ugneirnd ugneirdn ugneinrd ugneindr ugneidnr ugneidrn ugnedrin ugnedrni ugnedirn
ugnedinr ugnednir ugnednri ugndnrei ugndnrie ugndneri ugndneir ugndnier ugndnire ugndrnei ugndrnie
ugndreni ugndrein ugndrien ugndrine ugnderni ugnderin ugndenri ugndenir ugndeinr ugndeirn ugndiren
ugndirne ugndiern ugndienr ugndiner ugndinre ugeinnrd ugeinndr ugeinrnd ugeinrdn ugeindrn ugeindnr
ugeinnrd ugeinndr ugeinrnd ugeinrdn ugeindrn ugeindnr ugeirnnd ugeirndn ugeirnnd ugeirndn ugeirdnn
ugeirdnn ugeidnrn ugeidnnr ugeidrnn ugeidrnn ugeidnrn ugeidnnr ugeninrd ugenindr ugenirnd ugenirdn
ugenidrn ugenidnr ugennird ugennidr ugennrid ugennrdi ugenndri ugenndir ugenrnid ugenrndi ugenrind
ugenridn ugenrdin ugenrdni ugendnri ugendnir ugendrni ugendrin ugendirn ugendinr ugennird ugennidr
ugennrid ugennrdi ugenndri ugenndir ugeninrd ugenindr ugenirnd ugenirdn ugenidrn ugenidnr ugenrind
ugenridn ugenrnid ugenrndi ugenrdni ugenrdin ugendirn ugendinr ugendrin ugendrni ugendnri ugendnir
ugernnid ugernndi ugernind ugernidn ugerndin ugerndni ugernnid ugernndi ugernind ugernidn ugerndin
ugerndni ugerinnd ugerindn ugerinnd ugerindn ugeridnn ugeridnn ugerdnin ugerdnni ugerdinn ugerdinn
ugerdnin ugerdnni ugednnri ugednnir ugednrni ugednrin ugednirn ugedninr ugednnri ugednnir ugednrni
ugednrin ugednirn ugedninr ugedrnni ugedrnin ugedrnni ugedrnin ugedrinn ugedrinn ugedinrn ugedinnr
ugedirnn ugedirnn ugedinrn ugedinnr ugdinner ugdinnre ugdinenr ugdinern ugdinren ugdinrne ugdinner
ugdinnre ugdinenr ugdinern ugdinren ugdinrne ugdiennr ugdienrn ugdiennr ugdienrn ugdiernn ugdiernn
ugdirnen ugdirnne ugdirenn ugdirenn ugdirnen ugdirnne ugdniner ugdninre ugdnienr ugdniern ugdniren
ugdnirne ugdnnier ugdnnire ugdnneir ugdnneri ugdnnrei ugdnnrie ugdnenir ugdnenri ugdneinr ugdneirn
ugdnerin ugdnerni ugdnrnei ugdnrnie ugdnreni ugdnrein ugdnrien ugdnrine ugdnnier ugdnnire ugdnneir
ugdnneri ugdnnrei ugdnnrie ugdniner ugdninre ugdnienr ugdniern ugdniren ugdnirne ugdneinr ugdneirn
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ugdrienn ugdrinen ugdrinne ueringnd ueringdn uerinngd uerinndg uerindng uerindgn uerignnd uerigndn
uerignnd uerigndn uerigdnn uerigdnn ueringnd ueringdn uerinngd uerinndg uerindng uerindgn ueridgnn
ueridgnn ueridngn ueridnng ueridnng ueridngn uernignd uernigdn uerningd uernindg uernidng uernidgn
uerngind uerngidn uerngnid uerngndi uerngdni uerngdin uernngid uernngdi uernnigd uernnidg uernndig
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uergndni uergndin uerginnd uergindn uerginnd uergindn uergidnn uergidnn uergnind uergnidn uergnnid
uergnndi uergndni uergndin uergdinn uergdinn uergdnin uergdnni uergdnni uergdnin uernngid uernngdi
uernnigd uernnidg uernndig uernndgi uerngnid uerngndi uerngind uerngidn uerngdin uerngdni uernignd
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uerdginn uerdngni uerdngin uerdnngi uerdnnig uerdning uerdnign uerdignn uerdignn uerdingn uerdinng
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ueigndnr ueigndrn ueigdrnn ueigdrnn ueigdnrn ueigdnnr ueigdnnr ueigdnrn ueinngrd ueinngdr ueinnrgd
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ueidrngn uenirgnd uenirgdn uenirngd uenirndg uenirdng uenirdgn uenigrnd uenigrdn uenignrd uenigndr
uenigdnr uenigdrn ueningrd ueningdr ueninrgd ueninrdg uenindrg uenindgr uenidgnr uenidgrn uenidngr
uenidnrg uenidrng uenidrgn uenrignd uenrigdn uenringd uenrindg uenridng uenridgn uenrgind uenrgidn
uenrgnid uenrgndi uenrgdni uenrgdin uenrngid uenrngdi uenrnigd uenrnidg uenrndig uenrndgi uenrdgni
uenrdgin uenrdngi uenrdnig uenrding uenrdign uengrind uengridn uengrnid uengrndi uengrdni uengrdin
uengirnd uengirdn uenginrd uengindr uengidnr uengidrn uengnird uengnidr uengnrid uengnrdi uengndri
uengndir uengdinr uengdirn uengdnir uengdnri uengdrni uengdrin uennrgid uennrgdi uennrigd uennridg
uennrdig uennrdgi uenngrid uenngrdi uenngird uenngidr uenngdir uenngdri uennigrd uennigdr uennirgd
uennirdg uennidrg uennidgr uenndgir uenndgri uenndigr uenndirg uenndrig uenndrgi uendrgni uendrgin
uendrngi uendrnig uendring uendrign uendgrni uendgrin uendgnri uendgnir uendginr uendgirn uendngri
uendngir uendnrgi uendnrig uendnirg uendnigr uendignr uendigrn uendingr uendinrg uendirng uendirgn
ueginrnd ueginrdn ueginnrd ueginndr uegindnr uegindrn uegirnnd uegirndn uegirnnd uegirndn uegirdnn
uegirdnn ueginrnd ueginrdn ueginnrd ueginndr uegindnr uegindrn uegidrnn uegidrnn uegidnrn uegidnnr
uegidnnr uegidnrn uegnirnd uegnirdn uegninrd uegnindr uegnidnr uegnidrn uegnrind uegnridn uegnrnid
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uegnidnr uegnidrn uegndrin uegndrni uegndirn uegndinr uegndnir uegndnri uegdnrni uegdnrin uegdnnri
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ueningdr ueninrgd ueninrdg uenindrg uenindgr uenignrd uenigndr uenigrnd uenigrdn uenigdrn uenigdnr
uenirgnd uenirgdn uenirngd uenirndg uenirdng uenirdgn uenidgrn uenidgnr uenidrgn uenidrng uenidnrg
uenidngr uennigrd uennigdr uennirgd uennirdg uennidrg uennidgr uenngird uenngidr uenngrid uenngrdi
uenngdri uenngdir uennrgid uennrgdi uennrigd uennridg uennrdig uennrdgi uenndgri uenndgir uenndrgi
uenndrig uenndirg uenndigr uengnird uengnidr uengnrid uengnrdi uengndri uengndir uenginrd uengindr
uengirnd uengirdn uengidrn uengidnr uengrind uengridn uengrnid uengrndi uengrdni uengrdin uengdirn
uengdinr uengdrin uengdrni uengdnri uengdnir uenrngid uenrngdi uenrnigd uenrnidg uenrndig uenrndgi
uenrgnid uenrgndi uenrgind uenrgidn uenrgdin uenrgdni uenrignd uenrigdn uenringd uenrindg uenridng
uenridgn uenrdgin uenrdgni uenrdign uenrding uenrdnig uenrdngi uendngri uendngir uendnrgi uendnrig
uendnirg uendnigr uendgnri uendgnir uendgrni uendgrin uendgirn uendginr uendrgni uendrgin uendrngi
uendrnig uendring uendrign uendigrn uendignr uendirgn uendirng uendinrg uendingr uedingnr uedingrn
uedinngr uedinnrg uedinrng uedinrgn uedignnr uedignrn uedignnr uedignrn uedigrnn uedigrnn uedingnr
uedingrn uedinngr uedinnrg uedinrng uedinrgn uedirgnn uedirgnn uedirngn uedirnng uedirnng uedirngn
uednignr uednigrn uedningr uedninrg uednirng uednirgn uednginr uedngirn uedngnir uedngnri uedngrni
uedngrin uednngir uednngri uednnigr uednnirg uednnrig uednnrgi uednrgni uednrgin uednrngi uednrnig
uednring uednrign uedgninr uedgnirn uedgnnir uedgnnri uedgnrni uedgnrin uedginnr uedginrn uedginnr
uedginrn uedgirnn uedgirnn uedgninr uedgnirn uedgnnir uedgnnri uedgnrni uedgnrin uedgrinn uedgrinn
uedgrnin uedgrnni uedgrnni uedgrnin uednngir uednngri uednnigr uednnirg uednnrig uednnrgi uedngnir
uedngnri uednginr uedngirn uedngrin uedngrni uednignr uednigrn uedningr uedninrg uednirng uednirgn
uednrgin uednrgni uednrign uednring uednrnig uednrngi uedrngni uedrngin uedrnngi uedrnnig uedrning
uedrnign uedrgnni uedrgnin uedrgnni uedrgnin uedrginn uedrginn uedrngni uedrngin uedrnngi uedrnnig
uedrning uedrnign uedrignn uedrignn uedringn uedrinng uedrinng uedringn udringen udringne udrinegn
udrineng udrinneg udrinnge udrignen udrignne udrigenn udrigenn udrignen udrignne udriegnn udriegnn
udriengn udrienng udrienng udriengn udringen udringne udrinegn udrineng udrinneg udrinnge udrnigen
udrnigne udrniegn udrnieng udrnineg udrninge udrngien udrngine udrngein udrngeni udrngnei udrngnie
udrnegin udrnegni udrneign udrneing udrnenig udrnengi udrnngei udrnngie udrnnegi udrnneig udrnnieg
udrnnige udrgnien udrgnine udrgnein udrgneni udrgnnei udrgnnie udrginen udrginne udrgienn udrgienn
udrginen udrginne udrgeinn udrgeinn udrgenin udrgenni udrgenni udrgenin udrgnien udrgnine udrgnein
udrgneni udrgnnei udrgnnie udrengin udrengni udrenign udrening udrennig udrenngi udregnin udregnni
udreginn udreginn udregnin udregnni udreignn udreignn udreingn udreinng udreinng udreingn udrengin
udrengni udrenign udrening udrennig udrenngi udrnngei udrnngie udrnnegi udrnneig udrnnieg udrnnige
udrngnei udrngnie udrngeni udrngein udrngien udrngine udrnegni udrnegin udrnengi udrnenig udrneing
udrneign udrnigen udrnigne udrniegn udrnieng udrnineg udrninge udirngen udirngne udirnegn udirneng
udirnneg udirnnge udirgnen udirgnne udirgenn udirgenn udirgnen udirgnne udiregnn udiregnn udirengn
udirenng udirenng udirengn udirngen udirngne udirnegn udirneng udirnneg udirnnge udinrgen udinrgne
udinregn udinreng udinrneg udinrnge udingren udingrne udingern udingenr udingner udingnre udinegrn
udinegnr udinergn udinerng udinenrg udinengr udinnger udinngre udinnegr udinnerg udinnreg udinnrge
udignren udignrne udignern udignenr udignner udignnre udigrnen udigrnne udigrenn udigrenn udigrnen
udigrnne udigernn udigernn udigenrn udigennr udigennr udigenrn udignren udignrne udignern udignenr
udignner udignnre udiengrn udiengnr udienrgn udienrng udiennrg udienngr udiegnrn udiegnnr udiegrnn
udiegrnn udiegnrn udiegnnr udiergnn udiergnn udierngn udiernng udiernng udierngn udiengrn udiengnr
udienrgn udienrng udiennrg udienngr udinnger udinngre udinnegr udinnerg udinnreg udinnrge udingner
udingnre udingenr udingern udingren udingrne udinegnr udinegrn udinengr udinenrg udinerng udinergn
udinrgen udinrgne udinregn udinreng udinrneg udinrnge udnirgen udnirgne udniregn udnireng udnirneg
udnirnge udnigren udnigrne udnigern udnigenr udnigner udnignre udniegrn udniegnr udniergn udnierng
udnienrg udniengr udninger udningre udninegr udninerg udninreg udninrge udnrigen udnrigne udnriegn
udnrieng udnrineg udnringe udnrgien udnrgine udnrgein udnrgeni udnrgnei udnrgnie udnregin udnregni
udnreign udnreing udnrenig udnrengi udnrngei udnrngie udnrnegi udnrneig udnrnieg udnrnige udngrien
udngrine udngrein udngreni udngrnei udngrnie udngiren udngirne udngiern udngienr udnginer udnginre
udngeirn udngeinr udngerin udngerni udngenri udngenir udngnier udngnire udngneir udngneri udngnrei
udngnrie udnergin udnergni udnerign udnering udnernig udnerngi udnegrin udnegrni udnegirn udneginr
udnegnir udnegnri udneigrn udneignr udneirgn udneirng udneinrg udneingr udnengir udnengri udnenigr
udnenirg udnenrig udnenrgi udnnrgei udnnrgie udnnregi udnnreig udnnrieg udnnrige udnngrei udnngrie
udnngeri udnngeir udnngier udnngire udnnegri udnnegir udnnergi udnnerig udnneirg udnneigr udnniger
udnnigre udnniegr udnnierg udnnireg udnnirge udginren udginrne udginern udginenr udginner udginnre
udgirnen udgirnne udgirenn udgirenn udgirnen udgirnne udgiernn udgiernn udgienrn udgiennr udgiennr
udgienrn udginren udginrne udginern udginenr udginner udginnre udgniren udgnirne udgniern udgnienr
udgniner udgninre udgnrien udgnrine udgnrein udgnreni udgnrnei udgnrnie udgnerin udgnerni udgneirn
udgneinr udgnenir udgnenri udgnnrei udgnnrie udgnneri udgnneir udgnnier udgnnire udgrnien udgrnine
udgrnein udgrneni udgrnnei udgrnnie udgrinen udgrinne udgrienn udgrienn udgrinen udgrinne udgreinn
udgreinn udgrenin udgrenni udgrenni udgrenin udgrnien udgrnine udgrnein udgrneni udgrnnei udgrnnie
udgenrin udgenrni udgenirn udgeninr udgennir udgennri udgernin udgernni udgerinn udgerinn udgernin
udgernni udgeirnn udgeirnn udgeinrn udgeinnr udgeinnr udgeinrn udgenrin udgenrni udgenirn udgeninr
udgennir udgennri udgnnrei udgnnrie udgnneri udgnneir udgnnier udgnnire udgnrnei udgnrnie udgnreni
udgnrein udgnrien udgnrine udgnerni udgnerin udgnenri udgnenir udgneinr udgneirn udgniren udgnirne
udgniern udgnienr udgniner udgninre udeingrn udeingnr udeinrgn udeinrng udeinnrg udeinngr udeignrn
udeignnr udeigrnn udeigrnn udeignrn udeignnr udeirgnn udeirgnn udeirngn udeirnng udeirnng udeirngn
udeingrn udeingnr udeinrgn udeinrng udeinnrg udeinngr udenigrn udenignr udenirgn udenirng udeninrg
udeningr udengirn udenginr udengrin udengrni udengnri udengnir udenrgin udenrgni udenrign udenring
udenrnig udenrngi udenngri udenngir udennrgi udennrig udennirg udennigr udegnirn udegninr udegnrin
udegnrni udegnnri udegnnir udeginrn udeginnr udegirnn udegirnn udeginrn udeginnr udegrinn udegrinn
udegrnin udegrnni udegrnni udegrnin udegnirn udegninr udegnrin udegnrni udegnnri udegnnir uderngin
uderngni udernign uderning udernnig udernngi udergnin udergnni uderginn uderginn udergnin udergnni
uderignn uderignn uderingn uderinng uderinng uderingn uderngin uderngni udernign uderning udernnig
udernngi udenngri udenngir udennrgi udennrig udennirg udennigr udengnri udengnir udengrni udengrin
udengirn udenginr udenrgni udenrgin udenrngi udenrnig udenring udenrign udenigrn udenignr udenirgn
udenirng udeninrg udeningr udninger udningre udninegr udninerg udninreg udninrge udnigner udnignre
udnigenr udnigern udnigren udnigrne udniegnr udniegrn udniengr udnienrg udnierng udniergn udnirgen
udnirgne udniregn udnireng udnirneg udnirnge udnniger udnnigre udnniegr udnnierg udnnireg udnnirge
udnngier udnngire udnngeir udnngeri udnngrei udnngrie udnnegir udnnegri udnneigr udnneirg udnnerig
udnnergi udnnrgei udnnrgie udnnregi udnnreig udnnrieg udnnrige udngnier udngnire udngneir udngneri
udngnrei udngnrie udnginer udnginre udngienr udngiern udngiren udngirne udngeinr udngeirn udngenir
udngenri udngerni udngerin udngrien udngrine udngrein udngreni udngrnei udngrnie udnengir udnengri
udnenigr udnenirg udnenrig udnenrgi udnegnir udnegnri udneginr udnegirn udnegrin udnegrni udneignr
udneigrn udneingr udneinrg udneirng udneirgn udnergin udnergni udnerign udnering udnernig udnerngi
udnrngei udnrngie udnrnegi udnrneig udnrnieg udnrnige udnrgnei udnrgnie udnrgeni udnrgein udnrgien
udnrgine udnregni udnregin udnrengi udnrenig udnreing udnreign udnrigen udnrigne udnriegn udnrieng
udnrineg udnringe

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History of cryptography
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