easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

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roperite

unremonstrating

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cardiovisceral

cinereoru

unliquidatable

labrums

cariker

disinterment

preconcession

diazide

loveblows


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: swindlery
cipher variations:
txjoemfsz uykpfngta vzlqgohub wamrhpivc xbnsiqjwd
ycotjrkxe zdpukslyf aeqvltmzg bfrwmunah cgsxnvobi
dhtyowpcj eiuzpxqdk fjvaqyrel gkwbrzsfm hlxcsatgn
imydtbuho jnzeucvip koafvdwjq lpbgwexkr mqchxfyls
nrdiygzmt osejzhanu ptfkaibov quglbjcpw rvhmckdqx

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.)
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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: swindlery
Cipher: hdrmwovib

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: swindlery
Cipher: BAAAB BABAA ABAAA ABBAA AAABB ABABA AABAA BAAAA BABBA

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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: swindlery
cipher variations:
txjoemfszdpzokinavnhpoqevirxzfowadqnhrvocwlyjrjloistgfltroukjwxvlhoagret
fdxogczmppvnomyhulzndosupchjftoyqxkduykpfngtaeqapljobwoiqprfwjsyagpxbero
iswpdxmzkskmpjtuhgmuspvlkxywmipbhsfugeyphdanqqwopnzivmaoeptvqdikgupzryle
vzlqgohubfrbqmkpcxpjrqsgxktzbhqycfspjtxqeynaltlnqkuvihnvtqwmlyzxnjqcitgv
hfzqieborrxpqoajwnbpfquwrejlhvqaszmfwamrhpivcgscrnlqdyqksrthyluacirzdgtq
kuyrfzobmumorlvwjiowurxnmzayokrdjuhwigarjfcpssyqrpbkxocqgrvxsfkmiwrbtang
xbnsiqjwdhtdsomrezrltsuizmvbdjsaehurlvzsgapcnvnpsmwxkjpxvsyonabzplsekvix
jhbskgdqttzrsqclypdrhswytglnjxscubohycotjrkxeiuetpnsfasmutvjanwcektbfivs
mwathbqdowoqtnxylkqywtzpobcaqmtflwjykictlheruuastrdmzqesitxzuhmokytdvcpi
zdpukslyfjvfuqotgbtnvuwkboxdflucgjwtnxbuicrepxpruoyzmlrzxuaqpcdbrnugmxkz
ljdumifsvvbtusenarftjuyavinplzuewdqjaeqvltmzgkwgvrpuhcuowvxlcpyegmvdhkxu
oycvjdsfqyqsvpzanmsayvbrqdecsovhnylamkevnjgtwwcuvtfobsgukvzbwjoqmavfxerk
bfrwmunahlxhwsqvidvpxwymdqzfhnweilyvpzdwketgrzrtwqabontbzwcsrefdtpwiozmb
nlfwokhuxxdvwugpcthvlwacxkprnbwgyfslcgsxnvobimyixtrwjewqyxzneragioxfjmzw
qaexlfuhsasuxrbcpoucaxdtsfgeuqxjpancomgxplivyyewxvhqduiwmxbdylqsocxhzgtm
dhtyowpcjnzjyusxkfxrzyaofsbhjpygknaxrbfymgvitbtvyscdqpvdbyeutghfvrykqbod
pnhyqmjwzzfxywirevjxnycezmrtpdyiahuneiuzpxqdkoakzvtylgysazbpgtcikqzhloby
scgznhwjucuwztderqweczfvuhigwszlrcpeqoizrnkxaagyzxjsfwkyozdfansuqezjbivo
fjvaqyrelpblawuzmhztbacqhudjlraimpcztdhaoixkvdvxauefsrxfdagwvijhxtamsdqf
rpjasolybbhzayktgxlzpaegbotvrfakcjwpgkwbrzsfmqcmbxvaniaucbdrivekmsbjnqda
ueibpjylwewybvfgtsygebhxwjkiyubntergsqkbtpmzcciabzluhymaqbfhcpuwsgbldkxq
hlxcsatgnrdncywbojbvdcesjwflntckorebvfjcqkzmxfxzcwghutzhfciyxkljzvcoufsh
trlcuqnaddjbcamviznbrcgidqvxthcmelyrimydtbuhoseodzxcpkcwedftkxgmoudlpsfc
wgkdrlanygyadxhivuaigdjzylmkawdpvgtiusmdvrobeekcdbnwjaocsdhjerwyuidnfmzs
jnzeucviptfpeaydqldxfegulyhnpvemqtgdxhlesmbozhzbeyijwvbjhekazmnlbxeqwhuj
vtnewspcffldecoxkbpdteikfsxzvjeognatkoafvdwjqugqfbzermeygfhvmzioqwfnruhe
yimftncpaiacfzjkxwckiflbanomcyfrxivkwuofxtqdggmefdpylcqeufjlgtyawkfphobu
lpbgwexkrvhrgcafsnfzhgiwnajprxgosvifzjnguodqbjbdgaklyxdljgmcbopndzgsyjwl
xvpgyurehhnfgeqzmdrfvgkmhuzbxlgqipcvmqchxfylswishdbgtogaihjxobkqsyhptwjg
akohvperckcehblmzyemkhndcpqoeahtzkxmywqhzvsfiioghfranesgwhlnivacymhrjqdw
nrdiygzmtxjtiechuphbjikypclrtziquxkhblpiwqfsdldficmnazfnlioedqrpfbiualyn
zxriawtgjjphigsbofthximojwbdzniskrexosejzhanuykujfdivqickjlzqdmsuajrvyli
cmqjxrgtemegjdnobagomjpfersqgcjvbmzoaysjbxuhkkqijhtcpguiyjnpkxceaojtlsfy
ptfkaibovzlvkgejwrjdlkmarentvbkswzmjdnrkyshufnfhkeopcbhpnkqgfstrhdkwcnap
bztkcyvillrjkiudqhvjzkoqlydfbpkumtgzquglbjcpwamwlhfkxskemlnbsfouwcltxank
eoslztivgogilfpqdciqolrhgtusielxdobqcauldzwjmmskljveriwkalprmzegcqlvnuha
rvhmckdqxbnxmiglytlfnmoctgpvxdmuybolfptmaujwhphjmgqredjrpmsihuvtjfmyepcr
dbvmeaxknntlmkwfsjxlbmqsnafhdrmwovibswindlerycoynjhmzumgonpduhqwyenvzcpm
gqunbvkxiqiknhrsfeksqntjivwukgnzfqdsecwnfbylooumnlxgtkymcnrtobgiesnxpwjc

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,

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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: swindlery
Cipher: fjvaqyrel

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: swindlery
Cipher: 342542334113512445

Extended Methods:
Method #1

Plaintext: swindlery
method variations:
xbosiqkwdcgtxovpbihmyctaugonrdhyfzmt

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
s w i n d l e r y 
3 2 4 3 4 1 5 2 4 
4 5 2 3 1 3 1 4 5 
They are then read out in rows:
324341524452313145
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: swindlery
Cipher: hodktkccy

Read more ...
Method #3

Plaintext: swindlery
method variations:
iumsaxftp umsaxftpi msaxftpiu
saxftpium axftpiums xftpiumsa
ftpiumsax tpiumsaxf piumsaxft

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: swindlery

first 5040 cipher variations(362880 total)
swindlery swindleyr swindlrey swindlrye swindlyre swindlyer swindelry swindelyr swinderly swinderyl swindeyrl
swindeylr swindrely swindreyl swindrley swindrlye swindryle swindryel swindyerl swindyelr swindyrel swindyrle
swindylre swindyler swinldery swinldeyr swinldrey swinldrye swinldyre swinldyer swinledry swinledyr swinlerdy
swinleryd swinleyrd swinleydr swinlredy swinlreyd swinlrdey swinlrdye swinlryde swinlryed swinlyerd swinlyedr
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swndrylei swndyleri swndyleir swndylrei swndylrie swndylire swndylier swndyelri swndyelir swndyerli swndyeril
swndyeirl swndyeilr swndyreli swndyreil swndyrlei swndyrlie swndyrile swndyriel swndyierl swndyielr swndyirel
swndyirle swndyilre swndyiler swnldiery swnldieyr swnldirey swnldirye swnldiyre swnldiyer swnldeiry swnldeiyr
swnlderiy swnlderyi swnldeyri swnldeyir swnldreiy swnldreyi swnldriey swnldriye swnldryie swnldryei swnldyeri
swnldyeir swnldyrei swnldyrie swnldyire swnldyier swnlidery swnlideyr swnlidrey swnlidrye swnlidyre swnlidyer
swnliedry swnliedyr swnlierdy swnlieryd swnlieyrd swnlieydr swnliredy swnlireyd swnlirdey swnlirdye swnliryde
swnliryed swnliyerd swnliyedr swnliyred swnliyrde swnliydre swnliyder swnleidry swnleidyr swnleirdy swnleiryd
swnleiyrd swnleiydr swnlediry swnlediyr swnledriy swnledryi swnledyri swnledyir swnlerdiy swnlerdyi swnleridy
swnleriyd swnleryid swnlerydi swnleydri swnleydir swnleyrdi swnleyrid swnleyird swnleyidr swnlriedy swnlrieyd
swnlridey swnlridye swnlriyde swnlriyed swnlreidy swnlreiyd swnlrediy swnlredyi swnlreydi swnlreyid swnlrdeiy
swnlrdeyi swnlrdiey swnlrdiye swnlrdyie swnlrdyei swnlryedi swnlryeid swnlrydei swnlrydie swnlryide swnlryied
swnlyierd swnlyiedr swnlyired swnlyirde swnlyidre swnlyider swnlyeird swnlyeidr swnlyerid swnlyerdi swnlyedri
swnlyedir swnlyreid swnlyredi swnlyried swnlyride swnlyrdie swnlyrdei swnlyderi swnlydeir swnlydrei swnlydrie
swnlydire swnlydier swnedliry swnedliyr swnedlriy swnedlryi swnedlyri swnedlyir swnedilry swnedilyr swnedirly
swnediryl swnediyrl swnediylr swnedrily swnedriyl swnedrliy swnedrlyi swnedryli swnedryil swnedyirl swnedyilr
swnedyril swnedyrli swnedylri swnedylir swneldiry swneldiyr swneldriy swneldryi swneldyri swneldyir swnelidry
swnelidyr swnelirdy swneliryd swneliyrd swneliydr swnelridy swnelriyd swnelrdiy swnelrdyi swnelrydi swnelryid
swnelyird swnelyidr swnelyrid swnelyrdi swnelydri swnelydir swneildry swneildyr swneilrdy swneilryd swneilyrd
swneilydr swneidlry swneidlyr swneidrly swneidryl swneidyrl swneidylr swneirdly swneirdyl swneirldy swneirlyd
swneiryld swneirydl swneiydrl swneiydlr swneiyrdl swneiyrld swneiylrd swneiyldr swnerlidy swnerliyd swnerldiy
swnerldyi swnerlydi swnerlyid swnerildy swnerilyd swneridly swneridyl swneriydl swneriyld swnerdily swnerdiyl
swnerdliy swnerdlyi swnerdyli swnerdyil swneryidl swneryild swnerydil swnerydli swneryldi swnerylid swneylird
swneylidr swneylrid swneylrdi swneyldri swneyldir swneyilrd swneyildr swneyirld swneyirdl swneyidrl swneyidlr
swneyrild swneyridl swneyrlid swneyrldi swneyrdli swneyrdil swneydirl swneydilr swneydril swneydrli swneydlri
swneydlir swnrdleiy swnrdleyi swnrdliey swnrdliye swnrdlyie swnrdlyei swnrdeliy swnrdelyi swnrdeily swnrdeiyl
swnrdeyil swnrdeyli swnrdiely swnrdieyl swnrdiley swnrdilye swnrdiyle swnrdiyel swnrdyeil swnrdyeli swnrdyiel
swnrdyile swnrdylie swnrdylei swnrldeiy swnrldeyi swnrldiey swnrldiye swnrldyie swnrldyei swnrlediy swnrledyi
swnrleidy swnrleiyd swnrleyid swnrleydi swnrliedy swnrlieyd swnrlidey swnrlidye swnrliyde swnrliyed swnrlyeid
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swnredliy swnredlyi swnredily swnrediyl swnredyil swnredyli swnreidly swnreidyl swnreildy swnreilyd swnreiyld
swnreiydl swnreydil swnreydli swnreyidl swnreyild swnreylid swnreyldi swnriledy swnrileyd swnrildey swnrildye
swnrilyde swnrilyed swnrieldy swnrielyd swnriedly swnriedyl swnrieydl swnrieyld swnridely swnrideyl swnridley
swnridlye swnridyle swnridyel swnriyedl swnriyeld swnriydel swnriydle swnriylde swnriyled swnryleid swnryledi
swnrylied swnrylide swnryldie swnryldei swnryelid swnryeldi swnryeild swnryeidl swnryedil swnryedli swnryield
swnryiedl swnryiled swnryilde swnryidle swnryidel swnrydeil swnrydeli swnrydiel swnrydile swnrydlie swnrydlei
swnydleri swnydleir swnydlrei swnydlrie swnydlire swnydlier swnydelri swnydelir swnyderli swnyderil swnydeirl
swnydeilr swnydreli swnydreil swnydrlei swnydrlie swnydrile swnydriel swnydierl swnydielr swnydirel swnydirle
swnydilre swnydiler swnylderi swnyldeir swnyldrei swnyldrie swnyldire swnyldier swnyledri swnyledir swnylerdi
swnylerid swnyleird swnyleidr swnylredi swnylreid swnylrdei swnylrdie swnylride swnylried swnylierd swnyliedr
swnylired swnylirde swnylidre swnylider swnyeldri swnyeldir swnyelrdi swnyelrid swnyelird swnyelidr swnyedlri
swnyedlir swnyedrli swnyedril swnyedirl swnyedilr swnyerdli swnyerdil swnyerldi swnyerlid swnyerild swnyeridl
swnyeidrl swnyeidlr swnyeirdl swnyeirld swnyeilrd swnyeildr swnyrledi swnyrleid swnyrldei swnyrldie swnyrlide
swnyrlied swnyreldi swnyrelid swnyredli swnyredil swnyreidl swnyreild swnyrdeli swnyrdeil swnyrdlei swnyrdlie
swnyrdile swnyrdiel swnyriedl swnyrield swnyridel swnyridle swnyrilde swnyriled swnyilerd swnyiledr swnyilred
swnyilrde swnyildre swnyilder swnyielrd swnyieldr swnyierld swnyierdl swnyiedrl swnyiedlr swnyireld swnyiredl
swnyirled swnyirlde swnyirdle swnyirdel swnyiderl swnyidelr swnyidrel swnyidrle swnyidlre swnyidler swdnilery
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swdniyler swdnliery swdnlieyr swdnlirey swdnlirye swdnliyre swdnliyer swdnleiry swdnleiyr swdnleriy swdnleryi
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swdneyilr swdneyril swdneyrli swdneylri swdneylir swdnrleiy swdnrleyi swdnrliey swdnrliye swdnrlyie swdnrlyei
swdnreliy swdnrelyi swdnreily swdnreiyl swdnreyil swdnreyli swdnriely swdnrieyl swdnriley swdnrilye swdnriyle
swdnriyel swdnryeil swdnryeli swdnryiel swdnryile swdnrylie swdnrylei swdnyleri swdnyleir swdnylrei swdnylrie
swdnylire swdnylier swdnyelri swdnyelir swdnyerli swdnyeril swdnyeirl swdnyeilr swdnyreli swdnyreil swdnyrlei
swdnyrlie swdnyrile swdnyriel swdnyierl swdnyielr swdnyirel swdnyirle swdnyilre swdnyiler swdinlery swdinleyr
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swdinreyl swdinrley swdinrlye swdinryle swdinryel swdinyerl swdinyelr swdinyrel swdinyrle swdinylre swdinyler
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swdieyrnl swdieyrln swdieylrn swdieylnr swdirleny swdirleyn swdirlney swdirlnye swdirlyne swdirlyen swdirelny
swdirelyn swdirenly swdirenyl swdireynl swdireyln swdirnely swdirneyl swdirnley swdirnlye swdirnyle swdirnyel
swdiryenl swdiryeln swdirynel swdirynle swdirylne swdirylen swdiylern swdiylenr swdiylren swdiylrne swdiylnre
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swdiyrnle swdiyrnel swdiynerl swdiynelr swdiynrel swdiynrle swdiynlre swdiynler swdlinery swdlineyr swdlinrey
swdlinrye swdlinyre swdlinyer swdlienry swdlienyr swdlierny swdlieryn swdlieyrn swdlieynr swdlireny swdlireyn
swdlirney swdlirnye swdliryne swdliryen swdliyern swdliyenr swdliyren swdliyrne swdliynre swdliyner swdlniery
swdlnieyr swdlnirey swdlnirye swdlniyre swdlniyer swdlneiry swdlneiyr swdlneriy swdlneryi swdlneyri swdlneyir
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swdlnyier swdleniry swdleniyr swdlenriy swdlenryi swdlenyri swdlenyir swdleinry swdleinyr swdleirny swdleiryn
swdleiyrn swdleiynr swdleriny swdleriyn swdlerniy swdlernyi swdleryni swdleryin swdleyirn swdleyinr swdleyrin
swdleyrni swdleynri swdleynir swdlrneiy swdlrneyi swdlrniey swdlrniye swdlrnyie swdlrnyei swdlreniy swdlrenyi
swdlreiny swdlreiyn swdlreyin swdlreyni swdlrieny swdlrieyn swdlriney swdlrinye swdlriyne swdlriyen swdlryein
swdlryeni swdlryien swdlryine swdlrynie swdlrynei swdlyneri swdlyneir swdlynrei swdlynrie swdlynire swdlynier
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swdeilyrn swdeilynr swdeinlry swdeinlyr swdeinrly swdeinryl swdeinyrl swdeinylr swdeirnly swdeirnyl swdeirlny
swdeirlyn swdeiryln swdeirynl swdeiynrl swdeiynlr swdeiyrnl swdeiyrln swdeiylrn swdeiylnr swdelinry swdelinyr
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swdenliry swdenliyr swdenlriy swdenlryi swdenlyri swdenlyir swdenilry swdenilyr swdenirly swdeniryl swdeniyrl
swdeniylr swdenrily swdenriyl swdenrliy swdenrlyi swdenryli swdenryil swdenyirl swdenyilr swdenyril swdenyrli
swdenylri swdenylir swderlniy swderlnyi swderliny swderliyn swderlyin swderlyni swdernliy swdernlyi swdernily
swderniyl swdernyil swdernyli swderinly swderinyl swderilny swderilyn swderiyln swderiynl swderynil swderynli
swderyinl swderyiln swderylin swderylni swdeylnri swdeylnir swdeylrni swdeylrin swdeylirn swdeylinr swdeynlri
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swdreliyn swdrelniy swdrelnyi swdrelyni swdrelyin swdreilny swdreilyn swdreinly swdreinyl swdreiynl swdreiyln
swdrenily swdreniyl swdrenliy swdrenlyi swdrenyli swdrenyil swdreyinl swdreyiln swdreynil swdreynli swdreylni
swdreylin swdrnleiy swdrnleyi swdrnliey swdrnliye swdrnlyie swdrnlyei swdrneliy swdrnelyi swdrneily swdrneiyl
swdrneyil swdrneyli swdrniely swdrnieyl swdrniley swdrnilye swdrniyle swdrniyel swdrnyeil swdrnyeli swdrnyiel
swdrnyile swdrnylie swdrnylei swdryleni swdrylein swdrylnei swdrylnie swdryline swdrylien swdryelni swdryelin
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swdryieln swdryinel swdryinle swdryilne swdryilen swdyilern swdyilenr swdyilren swdyilrne swdyilnre swdyilner
swdyielrn swdyielnr swdyierln swdyiernl swdyienrl swdyienlr swdyireln swdyirenl swdyirlen swdyirlne swdyirnle
swdyirnel swdyinerl swdyinelr swdyinrel swdyinrle swdyinlre swdyinler swdyliern swdylienr swdyliren swdylirne
swdylinre swdyliner swdyleirn swdyleinr swdylerin swdylerni swdylenri swdylenir swdylrein swdylreni swdylrien
swdylrine swdylrnie swdylrnei swdylneri swdylneir swdylnrei swdylnrie swdylnire swdylnier swdyelirn swdyelinr
swdyelrin swdyelrni swdyelnri swdyelnir swdyeilrn swdyeilnr swdyeirln swdyeirnl swdyeinrl swdyeinlr swdyeriln
swdyerinl swdyerlin swdyerlni swdyernli swdyernil swdyenirl swdyenilr swdyenril swdyenrli swdyenlri swdyenlir
swdyrlein swdyrleni swdyrlien swdyrline swdyrlnie swdyrlnei swdyrelin swdyrelni swdyreiln swdyreinl swdyrenil
swdyrenli swdyrieln swdyrienl swdyrilen swdyrilne swdyrinle swdyrinel swdyrneil swdyrneli swdyrniel swdyrnile
swdyrnlie swdyrnlei swdynleri swdynleir swdynlrei swdynlrie swdynlire swdynlier swdynelri swdynelir swdynerli
swdyneril swdyneirl swdyneilr swdynreli swdynreil swdynrlei swdynrlie swdynrile swdynriel swdynierl swdynielr
swdynirel swdynirle swdynilre swdyniler swlndiery swlndieyr swlndirey swlndirye swlndiyre swlndiyer swlndeiry
swlndeiyr swlnderiy swlnderyi swlndeyri swlndeyir swlndreiy swlndreyi swlndriey swlndriye swlndryie swlndryei
swlndyeri swlndyeir swlndyrei swlndyrie swlndyire swlndyier swlnidery swlnideyr swlnidrey swlnidrye swlnidyre
swlnidyer swlniedry swlniedyr swlnierdy swlnieryd swlnieyrd swlnieydr swlniredy swlnireyd swlnirdey swlnirdye
swlniryde swlniryed swlniyerd swlniyedr swlniyred swlniyrde swlniydre swlniyder swlneidry swlneidyr swlneirdy
swlneiryd swlneiyrd swlneiydr swlnediry swlnediyr swlnedriy swlnedryi swlnedyri swlnedyir swlnerdiy swlnerdyi
swlneridy swlneriyd swlneryid swlnerydi swlneydri swlneydir swlneyrdi swlneyrid swlneyird swlneyidr swlnriedy
swlnrieyd swlnridey swlnridye swlnriyde swlnriyed swlnreidy swlnreiyd swlnrediy swlnredyi swlnreydi swlnreyid
swlnrdeiy swlnrdeyi swlnrdiey swlnrdiye swlnrdyie swlnrdyei swlnryedi swlnryeid swlnrydei swlnrydie swlnryide
swlnryied swlnyierd swlnyiedr swlnyired swlnyirde swlnyidre swlnyider swlnyeird swlnyeidr swlnyerid swlnyerdi
swlnyedri swlnyedir swlnyreid swlnyredi swlnyried swlnyride swlnyrdie swlnyrdei swlnyderi swlnydeir swlnydrei
swlnydrie swlnydire swlnydier swldniery swldnieyr swldnirey swldnirye swldniyre swldniyer swldneiry swldneiyr
swldneriy swldneryi swldneyri swldneyir swldnreiy swldnreyi swldnriey swldnriye swldnryie swldnryei swldnyeri
swldnyeir swldnyrei swldnyrie swldnyire swldnyier swldinery swldineyr swldinrey swldinrye swldinyre swldinyer
swldienry swldienyr swldierny swldieryn swldieyrn swldieynr swldireny swldireyn swldirney swldirnye swldiryne
swldiryen swldiyern swldiyenr swldiyren swldiyrne swldiynre swldiyner swldeinry swldeinyr swldeirny swldeiryn
swldeiyrn swldeiynr swldeniry swldeniyr swldenriy swldenryi swldenyri swldenyir swlderniy swldernyi swlderiny
swlderiyn swlderyin swlderyni swldeynri swldeynir swldeyrni swldeyrin swldeyirn swldeyinr swldrieny swldrieyn
swldriney swldrinye swldriyne swldriyen swldreiny swldreiyn swldreniy swldrenyi swldreyni swldreyin swldrneiy
swldrneyi swldrniey swldrniye swldrnyie swldrnyei swldryeni swldryein swldrynei swldrynie swldryine swldryien
swldyiern swldyienr swldyiren swldyirne swldyinre swldyiner swldyeirn swldyeinr swldyerin swldyerni swldyenri
swldyenir swldyrein swldyreni swldyrien swldyrine swldyrnie swldyrnei swldyneri swldyneir swldynrei swldynrie
swldynire swldynier swlidnery swlidneyr swlidnrey swlidnrye swlidnyre swlidnyer swlidenry swlidenyr swliderny
swlideryn swlideyrn swlideynr swlidreny swlidreyn swlidrney swlidrnye swlidryne swlidryen swlidyern swlidyenr
swlidyren swlidyrne swlidynre swlidyner swlindery swlindeyr swlindrey swlindrye swlindyre swlindyer swlinedry
swlinedyr swlinerdy swlineryd swlineyrd swlineydr swlinredy swlinreyd swlinrdey swlinrdye swlinryde swlinryed
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swliynedr swliynred swliynrde swliyndre swliynder swliyenrd swliyendr swliyernd swliyerdn swliyedrn swliyednr
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swleiyndr swleiyrnd swleiyrdn swleiydrn swleiydnr swlenidry swlenidyr swlenirdy swleniryd swleniyrd swleniydr
swlendiry swlendiyr swlendriy swlendryi swlendyri swlendyir swlenrdiy swlenrdyi swlenridy swlenriyd swlenryid
swlenrydi swlenydri swlenydir swlenyrdi swlenyrid swlenyird swlenyidr swlerindy swlerinyd swleridny swleridyn
swleriydn swleriynd swlernidy swlerniyd swlerndiy swlerndyi swlernydi swlernyid swlerdniy swlerdnyi swlerdiny
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swleyirnd swleyirdn swleyidrn swleyidnr swleynird swleynidr swleynrid swleynrdi swleyndri swleyndir swleyrnid
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sweynidrl sweynidlr sweynrild sweynridl sweynrlid sweynrldi sweynrdli sweynrdil sweyndirl sweyndilr sweyndril
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swryinedl swryineld swryindel swryindle swryinlde swryinled swrynleid swrynledi swrynlied swrynlide swrynldie
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swyndrlei swyndrlie swyndrile swyndriel swyndierl swyndielr swyndirel swyndirle swyndilre swyndiler swynlderi
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swynlider swyneldri swyneldir swynelrdi swynelrid swynelird swynelidr swynedlri swynedlir swynedrli swynedril
swynedirl swynedilr swynerdli swynerdil swynerldi swynerlid swynerild swyneridl swyneidrl swyneidlr swyneirdl
swyneirld swyneilrd swyneildr swynrledi swynrleid swynrldei swynrldie swynrlide swynrlied swynreldi swynrelid
swynredli swynredil swynreidl swynreild swynrdeli swynrdeil swynrdlei swynrdlie swynrdile swynrdiel swynriedl
swynrield swynridel swynridle swynrilde swynriled swynilerd swyniledr swynilred swynilrde swynildre swynilder
swynielrd swynieldr swynierld swynierdl swyniedrl swyniedlr swynireld swyniredl swynirled swynirlde swynirdle
swynirdel swyniderl swynidelr swynidrel swynidrle swynidlre swynidler swydnleri swydnleir swydnlrei swydnlrie
swydnlire swydnlier swydnelri swydnelir swydnerli swydneril swydneirl swydneilr swydnreli swydnreil swydnrlei
swydnrlie swydnrile swydnriel swydnierl swydnielr swydnirel swydnirle swydnilre swydniler swydlneri swydlneir
swydlnrei swydlnrie swydlnire swydlnier swydlenri swydlenir swydlerni swydlerin swydleirn swydleinr swydlreni
swydlrein swydlrnei swydlrnie swydlrine swydlrien swydliern swydlienr swydliren swydlirne swydlinre swydliner
swydelnri swydelnir swydelrni swydelrin swydelirn swydelinr swydenlri swydenlir swydenrli swydenril swydenirl
swydenilr swydernli swydernil swyderlni swyderlin swyderiln swyderinl swydeinrl swydeinlr swydeirnl swydeirln
swydeilrn swydeilnr swydrleni swydrlein swydrlnei swydrlnie swydrline swydrlien swydrelni swydrelin swydrenli
swydrenil swydreinl swydreiln swydrneli swydrneil swydrnlei swydrnlie swydrnile swydrniel swydrienl swydrieln
swydrinel swydrinle swydrilne swydrilen swydilern swydilenr swydilren swydilrne swydilnre swydilner swydielrn
swydielnr swydierln swydiernl swydienrl swydienlr swydireln swydirenl swydirlen swydirlne swydirnle swydirnel
swydinerl swydinelr swydinrel swydinrle swydinlre swydinler swyldneri swyldneir swyldnrei swyldnrie swyldnire
swyldnier swyldenri swyldenir swylderni swylderin swyldeirn swyldeinr swyldreni swyldrein swyldrnei swyldrnie
swyldrine swyldrien swyldiern swyldienr swyldiren swyldirne swyldinre swyldiner swylnderi swylndeir swylndrei
swylndrie swylndire swylndier swylnedri swylnedir swylnerdi swylnerid swylneird swylneidr swylnredi swylnreid
swylnrdei swylnrdie swylnride swylnried swylnierd swylniedr swylnired swylnirde swylnidre swylnider swylendri
swylendir swylenrdi swylenrid swylenird swylenidr swylednri swylednir swyledrni swyledrin swyledirn swyledinr
swylerdni swylerdin swylerndi swylernid swylerind swyleridn swyleidrn swyleidnr swyleirdn swyleirnd swyleinrd
swyleindr swylrnedi swylrneid swylrndei swylrndie swylrnide swylrnied swylrendi swylrenid swylredni swylredin
swylreidn swylreind swylrdeni swylrdein swylrdnei swylrdnie swylrdine swylrdien swylriedn swylriend swylriden
swylridne swylrinde swylrined swylinerd swylinedr swylinred swylinrde swylindre swylinder swylienrd swyliendr
swyliernd swylierdn swyliedrn swyliednr swylirend swyliredn swylirned swylirnde swylirdne swylirden swylidern
swylidenr swylidren swylidrne swylidnre swylidner swyedlnri swyedlnir swyedlrni swyedlrin swyedlirn swyedlinr
swyednlri swyednlir swyednrli swyednril swyednirl swyednilr swyedrnli swyedrnil swyedrlni swyedrlin swyedriln
swyedrinl swyedinrl swyedinlr swyedirnl swyedirln swyedilrn swyedilnr swyeldnri swyeldnir swyeldrni swyeldrin
swyeldirn swyeldinr swyelndri swyelndir swyelnrdi swyelnrid swyelnird swyelnidr swyelrndi swyelrnid swyelrdni
swyelrdin swyelridn swyelrind swyelinrd swyelindr swyelirnd swyelirdn swyelidrn swyelidnr swyenldri swyenldir
swyenlrdi swyenlrid swyenlird swyenlidr swyendlri swyendlir swyendrli swyendril swyendirl swyendilr swyenrdli
swyenrdil swyenrldi swyenrlid swyenrild swyenridl swyenidrl swyenidlr swyenirdl swyenirld swyenilrd swyenildr
swyerlndi swyerlnid swyerldni swyerldin swyerlidn swyerlind swyernldi swyernlid swyerndli swyerndil swyernidl
swyernild swyerdnli swyerdnil swyerdlni swyerdlin swyerdiln swyerdinl swyerindl swyerinld swyeridnl swyeridln
swyerildn swyerilnd swyeilnrd swyeilndr swyeilrnd swyeilrdn swyeildrn swyeildnr swyeinlrd swyeinldr swyeinrld
swyeinrdl swyeindrl swyeindlr swyeirnld swyeirndl swyeirlnd swyeirldn swyeirdln swyeirdnl swyeidnrl swyeidnlr
swyeidrnl swyeidrln swyeidlrn swyeidlnr swyrdleni swyrdlein swyrdlnei swyrdlnie swyrdline swyrdlien swyrdelni
swyrdelin swyrdenli swyrdenil swyrdeinl swyrdeiln swyrdneli swyrdneil swyrdnlei swyrdnlie swyrdnile swyrdniel
swyrdienl swyrdieln swyrdinel swyrdinle swyrdilne swyrdilen swyrldeni swyrldein swyrldnei swyrldnie swyrldine
swyrldien swyrledni swyrledin swyrlendi swyrlenid swyrleind swyrleidn swyrlnedi swyrlneid swyrlndei swyrlndie
swyrlnide swyrlnied swyrliend swyrliedn swyrlined swyrlinde swyrlidne swyrliden swyreldni swyreldin swyrelndi
swyrelnid swyrelind swyrelidn swyredlni swyredlin swyrednli swyrednil swyredinl swyrediln swyrendli swyrendil
swyrenldi swyrenlid swyrenild swyrenidl swyreidnl swyreidln swyreindl swyreinld swyreilnd swyreildn swyrnledi
swyrnleid swyrnldei swyrnldie swyrnlide swyrnlied swyrneldi swyrnelid swyrnedli swyrnedil swyrneidl swyrneild
swyrndeli swyrndeil swyrndlei swyrndlie swyrndile swyrndiel swyrniedl swyrnield swyrnidel swyrnidle swyrnilde
swyrniled swyrilend swyriledn swyrilned swyrilnde swyrildne swyrilden swyrielnd swyrieldn swyrienld swyriendl
swyriednl swyriedln swyrineld swyrinedl swyrinled swyrinlde swyrindle swyrindel swyridenl swyrideln swyridnel
swyridnle swyridlne swyridlen swyidlern swyidlenr swyidlren swyidlrne swyidlnre swyidlner swyidelrn swyidelnr
swyiderln swyidernl swyidenrl swyidenlr swyidreln swyidrenl swyidrlen swyidrlne swyidrnle swyidrnel swyidnerl
swyidnelr swyidnrel swyidnrle swyidnlre swyidnler swyildern swyildenr swyildren swyildrne swyildnre swyildner
swyiledrn swyilednr swyilerdn swyilernd swyilenrd swyilendr swyilredn swyilrend swyilrden swyilrdne swyilrnde
swyilrned swyilnerd swyilnedr swyilnred swyilnrde swyilndre swyilnder swyieldrn swyieldnr swyielrdn swyielrnd
swyielnrd swyielndr swyiedlrn swyiedlnr swyiedrln swyiedrnl swyiednrl swyiednlr swyierdln swyierdnl swyierldn
swyierlnd swyiernld swyierndl swyiendrl swyiendlr swyienrdl swyienrld swyienlrd swyienldr swyirledn swyirlend
swyirlden swyirldne swyirlnde swyirlned swyireldn swyirelnd swyiredln swyirednl swyirendl swyirenld swyirdeln
swyirdenl swyirdlen swyirdlne swyirdnle swyirdnel swyirnedl swyirneld swyirndel swyirndle swyirnlde swyirnled
swyinlerd swyinledr swyinlred swyinlrde swyinldre swyinlder swyinelrd swyineldr swyinerld swyinerdl swyinedrl
swyinedlr swyinreld swyinredl swyinrled swyinrlde swyinrdle swyinrdel swyinderl swyindelr swyindrel swyindrle
swyindlre swyindler

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History of cryptography
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