easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

indistinctly

alouatte

peruenero

splat

clanned

oiseleur

acinicolor

pugnent

derivation

seropurulent

festinaverintque

deuerticuli

stutter

conoy

extruded

mclachlan

outbeam

slavs


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: andorian
cipher variations:
boepsjbo cpfqtkcp dqgruldq erhsvmer fsitwnfs
gtjuxogt hukvyphu ivlwzqiv jwmxarjw kxnybskx
lyozctly mzpadumz naqbevna obrcfwob pcsdgxpc
qdtehyqd reufizre sfvgjasf tgwhkbtg uhxilcuh
viyjmdvi wjzknewj xkalofxk ylbmpgyl zmcnqhzm

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: andorian
Cipher: zmwlirzm

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: andorian
Cipher: AAAAA ABBAA AAABB ABBAB BAAAA ABAAA AAAAA ABBAA

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: andorian
cipher variations:
boepsjbobokrazboboqtipbobowvqfbobocxyvboboizglboboudwrboboafehbo
boghmxbobomjunboboslcdboboynktbocpfqtkcpcplsbacpcprujqcpcpxwrgcp
cpdyzwcpcpjahmcpcpvexscpcpbgficpcphinycpcpnkvocpcptmdecpcpzolucp
dqgruldqdqmtcbdqdqsvkrdqdqyxshdqdqezaxdqdqkbindqdqwfytdqdqchgjdq
dqijozdqdqolwpdqdqunefdqdqapmvdqerhsvmerernudcerertwlsererzytier
erfabyererlcjoererxgzuererdihkererjkpaererpmxqerervofgererbqnwer
fsitwnfsfsovedfsfsuxmtfsfsazujfsfsgbczfsfsmdkpfsfsyhavfsfsejilfs
fsklqbfsfsqnyrfsfswpghfsfscroxfsgtjuxogtgtpwfegtgtvynugtgtbavkgt
gthcdagtgtnelqgtgtzibwgtgtfkjmgtgtlmrcgtgtrozsgtgtxqhigtgtdspygt
hukvyphuhuqxgfhuhuwzovhuhucbwlhuhuidebhuhuofmrhuhuajcxhuhuglknhu
humnsdhuhuspathuhuyrijhuhuetqzhuivlwzqivivryhgivivxapwivivdcxmiv
ivjefcivivpgnsivivbkdyivivhmloivivnoteivivtqbuivivzsjkivivfuraiv
jwmxarjwjwszihjwjwybqxjwjwedynjwjwkfgdjwjwqhotjwjwclezjwjwinmpjw
jwopufjwjwurcvjwjwatkljwjwgvsbjwkxnybskxkxtajikxkxzcrykxkxfezokx
kxlghekxkxripukxkxdmfakxkxjonqkxkxpqvgkxkxvsdwkxkxbulmkxkxhwtckx
lyozctlylyubkjlylyadszlylygfaplylymhiflylysjqvlylyengblylykporly
lyqrwhlylywtexlylycvmnlylyixudlymzpadumzmzvclkmzmzbetamzmzhgbqmz
mznijgmzmztkrwmzmzfohcmzmzlqpsmzmzrsximzmzxufymzmzdwnomzmzjyvemz
naqbevnanawdmlnanacfubnanaihcrnanaojkhnanaulsxnanagpidnanamrqtna
nastyjnanayvgznanaexopnanakzwfnaobrcfwobobxenmobobdgvcobobjidsob
obpkliobobvmtyobobhqjeobobnsruobobtuzkobobzwhaobobfypqoboblaxgob
pcsdgxpcpcyfonpcpcehwdpcpckjetpcpcqlmjpcpcwnuzpcpcirkfpcpcotsvpc
pcuvalpcpcaxibpcpcgzqrpcpcmbyhpcqdtehyqdqdzgpoqdqdfixeqdqdlkfuqd
qdrmnkqdqdxovaqdqdjslgqdqdputwqdqdvwbmqdqdbyjcqdqdharsqdqdncziqd
reufizrereahqpreregjyfreremlgvreresnolrereypwbrerektmhrereqvuxre
rewxcnrereczkdrereibstrereodajresfvgjasfsfbirqsfsfhkzgsfsfnmhwsf
sftopmsfsfzqxcsfsflunisfsfrwvysfsfxydosfsfdalesfsfjctusfsfpebksf
tgwhkbtgtgcjsrtgtgilahtgtgonixtgtgupqntgtgarydtgtgmvojtgtgsxwztg
tgyzeptgtgebmftgtgkduvtgtgqfcltguhxilcuhuhdktsuhuhjmbiuhuhpojyuh
uhvqrouhuhbszeuhuhnwpkuhuhtyxauhuhzafquhuhfcnguhuhlevwuhuhrgdmuh
viyjmdvivielutvivikncjviviqpkzviviwrspvivictafvivioxqlviviuzybvi
viabgrvivigdohvivimfwxvivishenviwjzknewjwjfmvuwjwjlodkwjwjrqlawj
wjxstqwjwjdubgwjwjpyrmwjwjvazcwjwjbchswjwjhepiwjwjngxywjwjtifowj
xkalofxkxkgnwvxkxkmpelxkxksrmbxkxkyturxkxkevchxkxkqzsnxkxkwbadxk
xkcditxkxkifqjxkxkohyzxkxkujgpxkylbmpgylylhoxwylylnqfmylyltsncyl
ylzuvsylylfwdiylylratoylylxcbeylyldejuylyljgrkylylpizaylylvkhqyl
zmcnqhzmzmipyxzmzmorgnzmzmutodzmzmavwtzmzmgxejzmzmsbupzmzmydcfzm
zmefkvzmzmkhslzmzmqjabzmzmwlirzmandoriananjqzyananpshoananvupean
anbwxuananhyfkanantcvqananzedgananfglwananlitmananrkbcananxmjsan

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: andorian
Cipher: naqbevna

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: andorian
Cipher: 1133414324421133

Extended Methods:
Method #1

Plaintext: andorian
method variations:
fsitwofslxoybtlxqctdgyqcvhyimdvh

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
a n d o r i a n 
1 3 4 4 2 4 1 3 
1 3 1 3 4 2 1 3 
They are then read out in rows:
1344241313134213
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: andorian
Cipher: ltrlllil

Read more ...
Method #3

Plaintext: andorian
method variations:
lsqhtblc sqhtblcl qhtblcls
htblclsq tblclsqh blclsqht
lclsqhtb clsqhtbl

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: andorian

first 5040 cipher variations(40320 total)
andorian andorina andorain andorani andornai andornia andoiran andoirna andoiarn andoianr andoinar
andoinra andoairn andoainr andoarin andoarni andoanri andoanir andoniar andonira andonair andonari
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andriano andrinao andrinoa andraion andraino andraoin andraoni andranoi andranio andrniao andrnioa
andrnaio andrnaoi andrnoai andrnoia andiroan andirona andiraon andirano andirnao andirnoa andioran
andiorna andioarn andioanr andionar andionra andiaorn andiaonr andiaron andiarno andianro andianor
andinoar andinora andinaor andinaro andinrao andinroa andarion andarino andaroin andaroni andarnoi
andarnio andairon andairno andaiorn andaionr andainor andainro andaoirn andaoinr andaorin andaorni
andaonri andaonir andanior andaniro andanoir andanori andanroi andanrio andnriao andnrioa andnraio
andnraoi andnroai andnroia andnirao andniroa andniaro andniaor andnioar andniora andnairo andnaior
andnario andnaroi andnaori andnaoir andnoiar andnoira andnoair andnoari andnorai andnoria anodrian
anodrina anodrain anodrani anodrnai anodrnia anodiran anodirna anodiarn anodianr anodinar anodinra
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airnonad airnonda airnoand airnoadn airnodan airnodna ainordan ainordna ainoradn ainorand ainornad
ainornda ainodran ainodrna ainodarn ainodanr ainodnar ainodnra ainoadrn ainoadnr ainoardn ainoarnd
ainoanrd ainoandr ainondar ainondra ainonadr ainonard ainonrad ainonrda ainrodan ainrodna ainroadn
ainroand ainronad ainronda ainrdoan ainrdona ainrdaon ainrdano ainrdnao ainrdnoa ainradon ainradno
ainraodn ainraond ainranod ainrando ainrndao ainrndoa ainrnado ainrnaod ainrnoad ainrnoda aindroan
aindrona aindraon aindrano aindrnao aindrnoa aindoran aindorna aindoarn aindoanr aindonar aindonra
aindaorn aindaonr aindaron aindarno aindanro aindanor aindnoar aindnora aindnaor aindnaro aindnrao
aindnroa ainardon ainardno ainarodn ainarond ainarnod ainarndo ainadron ainadrno ainadorn ainadonr
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ainndaro ainndaor ainndoar ainndora ainnadro ainnador ainnardo ainnarod ainnaord ainnaodr ainnodar
ainnodra ainnoadr ainnoard ainnorad ainnorda aiaorndn aiaornnd aiaordnn aiaordnn aiaorndn aiaornnd
aiaonrdn aiaonrnd aiaondrn aiaondnr aiaonndr aiaonnrd aiaodnrn aiaodnnr aiaodrnn aiaodrnn aiaodnrn
aiaodnnr aiaonndr aiaonnrd aiaondnr aiaondrn aiaonrdn aiaonrnd aiarondn aiaronnd aiarodnn aiarodnn
aiarondn aiaronnd aiarnodn aiarnond aiarndon aiarndno aiarnndo aiarnnod aiardnon aiardnno aiardonn
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aiadrnon aiadrnno aiadronn aiadronn aiadrnon aiadrnno aiadnron aiadnrno aiadnorn aiadnonr aiadnnor
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aianndor aiannodr aiannord aiandnro aiandnor aiandrno aiandron aiandorn aiandonr aianondr aianonrd
aianodnr aianodrn aianordn aianornd ainornad ainornda ainorand ainoradn ainordan ainordna ainonrad
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ainodnar ainodnra ainodanr ainodarn ainodran ainodrna ainronad ainronda ainroand ainroadn ainrodan
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ainnrado ainnrdao ainnrdoa ainnorad ainnorda ainnoard ainnoadr ainnodar ainnodra ainnaord ainnaodr
ainnarod ainnardo ainnadro ainnador ainndoar ainndora ainndaor ainndaro ainndrao ainndroa ainarnod
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aindnoar aindnora aindanro aindanor aindarno aindaron aindaorn aindaonr aindonar aindonra aindoanr
aindoarn aindoran aindorna aadorinn aadorinn aadornin aadornni aadornni aadornin aadoirnn aadoirnn
aadoinrn aadoinnr aadoinnr aadoinrn aadonirn aadoninr aadonrin aadonrni aadonnri aadonnir aadoninr
aadonirn aadonnir aadonnri aadonrni aadonrin aadroinn aadroinn aadronin aadronni aadronni aadronin
aadrionn aadrionn aadrinon aadrinno aadrinno aadrinon aadrnion aadrnino aadrnoin aadrnoni aadrnnoi
aadrnnio aadrnino aadrnion aadrnnio aadrnnoi aadrnoni aadrnoin aadironn aadironn aadirnon aadirnno
aadirnno aadirnon aadiornn aadiornn aadionrn aadionnr aadionnr aadionrn aadinorn aadinonr aadinron
aadinrno aadinnro aadinnor aadinonr aadinorn aadinnor aadinnro aadinrno aadinron aadnrion aadnrino
aadnroin aadnroni aadnrnoi aadnrnio aadniron aadnirno aadniorn aadnionr aadninor aadninro aadnoirn
aadnoinr aadnorin aadnorni aadnonri aadnonir aadnnior aadnniro aadnnoir aadnnori aadnnroi aadnnrio
aadnrino aadnrion aadnrnio aadnrnoi aadnroni aadnroin aadnirno aadniron aadninro aadninor aadnionr
aadniorn aadnniro aadnnior aadnnrio aadnnroi aadnnori aadnnoir aadnoinr aadnoirn aadnonir aadnonri
aadnorni aadnorin aaodrinn aaodrinn aaodrnin aaodrnni aaodrnni aaodrnin aaodirnn aaodirnn aaodinrn
aaodinnr aaodinnr aaodinrn aaodnirn aaodninr aaodnrin aaodnrni aaodnnri aaodnnir aaodninr aaodnirn
aaodnnir aaodnnri aaodnrni aaodnrin aaordinn aaordinn aaordnin aaordnni aaordnni aaordnin aaoridnn
aaoridnn aaorindn aaorinnd aaorinnd aaorindn aaornidn aaornind aaorndin aaorndni aaornndi aaornnid
aaornind aaornidn aaornnid aaornndi aaorndni aaorndin aaoirdnn aaoirdnn aaoirndn aaoirnnd aaoirnnd
aaoirndn aaoidrnn aaoidrnn aaoidnrn aaoidnnr aaoidnnr aaoidnrn aaoindrn aaoindnr aaoinrdn aaoinrnd
aaoinnrd aaoinndr aaoindnr aaoindrn aaoinndr aaoinnrd aaoinrnd aaoinrdn aaonridn aaonrind aaonrdin
aaonrdni aaonrndi aaonrnid aaonirdn aaonirnd aaonidrn aaonidnr aaonindr aaoninrd aaondirn aaondinr
aaondrin aaondrni aaondnri aaondnir aaonnidr aaonnird aaonndir aaonndri aaonnrdi aaonnrid aaonrind
aaonridn aaonrnid aaonrndi aaonrdni aaonrdin aaonirnd aaonirdn aaoninrd aaonindr aaonidnr aaonidrn
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aaondrin aarodinn aarodinn aarodnin aarodnni aarodnni aarodnin aaroidnn aaroidnn aaroindn aaroinnd
aaroinnd aaroindn aaronidn aaronind aarondin aarondni aaronndi aaronnid aaronind aaronidn aaronnid
aaronndi aarondni aarondin aardoinn aardoinn aardonin aardonni aardonni aardonin aardionn aardionn
aardinon aardinno aardinno aardinon aardnion aardnino aardnoin aardnoni aardnnoi aardnnio aardnino
aardnion aardnnio aardnnoi aardnoni aardnoin aaridonn aaridonn aaridnon aaridnno aaridnno aaridnon
aariodnn aariodnn aariondn aarionnd aarionnd aariondn aarinodn aarinond aarindon aarindno aarinndo
aarinnod aarinond aarinodn aarinnod aarinndo aarindno aarindon aarndion aarndino aarndoin aarndoni
aarndnoi aarndnio aarnidon aarnidno aarniodn aarniond aarninod aarnindo aarnoidn aarnoind aarnodin
aarnodni aarnondi aarnonid aarnniod aarnnido aarnnoid aarnnodi aarnndoi aarnndio aarndino aarndion
aarndnio aarndnoi aarndoni aarndoin aarnidno aarnidon aarnindo aarninod aarniond aarniodn aarnnido
aarnniod aarnndio aarnndoi aarnnodi aarnnoid aarnoind aarnoidn aarnonid aarnondi aarnodni aarnodin
aaiordnn aaiordnn aaiorndn aaiornnd aaiornnd aaiorndn aaiodrnn aaiodrnn aaiodnrn aaiodnnr aaiodnnr
aaiodnrn aaiondrn aaiondnr aaionrdn aaionrnd aaionnrd aaionndr aaiondnr aaiondrn aaionndr aaionnrd
aaionrnd aaionrdn aairodnn aairodnn aairondn aaironnd aaironnd aairondn aairdonn aairdonn aairdnon
aairdnno aairdnno aairdnon aairndon aairndno aairnodn aairnond aairnnod aairnndo aairndno aairndon
aairnndo aairnnod aairnond aairnodn aaidronn aaidronn aaidrnon aaidrnno aaidrnno aaidrnon aaidornn
aaidornn aaidonrn aaidonnr aaidonnr aaidonrn aaidnorn aaidnonr aaidnron aaidnrno aaidnnro aaidnnor
aaidnonr aaidnorn aaidnnor aaidnnro aaidnrno aaidnron aainrdon aainrdno aainrodn aainrond aainrnod
aainrndo aaindron aaindrno aaindorn aaindonr aaindnor aaindnro aainodrn aainodnr aainordn aainornd
aainonrd aainondr aainndor aainndro aainnodr aainnord aainnrod aainnrdo aainrdno aainrdon aainrndo
aainrnod aainrond aainrodn aaindrno aaindron aaindnro aaindnor aaindonr aaindorn aainndro aainndor
aainnrdo aainnrod aainnord aainnodr aainodnr aainodrn aainondr aainonrd aainornd aainordn aanoridn
aanorind aanordin aanordni aanorndi aanornid aanoirdn aanoirnd aanoidrn aanoidnr aanoindr aanoinrd
aanodirn aanodinr aanodrin aanodrni aanodnri aanodnir aanonidr aanonird aanondir aanondri aanonrdi
aanonrid aanroidn aanroind aanrodin aanrodni aanrondi aanronid aanriodn aanriond aanridon aanridno
aanrindo aanrinod aanrdion aanrdino aanrdoin aanrdoni aanrdnoi aanrdnio aanrnido aanrniod aanrndio
aanrndoi aanrnodi aanrnoid aanirodn aanirond aanirdon aanirdno aanirndo aanirnod aaniordn aaniornd
aaniodrn aaniodnr aaniondr aanionrd aanidorn aanidonr aanidron aanidrno aanidnro aanidnor aaninodr
aaninord aanindor aanindro aaninrdo aaninrod aandrion aandrino aandroin aandroni aandrnoi aandrnio
aandiron aandirno aandiorn aandionr aandinor aandinro aandoirn aandoinr aandorin aandorni aandonri
aandonir aandnior aandniro aandnoir aandnori aandnroi aandnrio aannrido aannriod aannrdio aannrdoi
aannrodi aannroid aannirdo aannirod aannidro aannidor aanniodr aanniord aanndiro aanndior aanndrio
aanndroi aanndori aanndoir aannoidr aannoird aannodir aannodri aannordi aannorid aanorind aanoridn
aanornid aanorndi aanordni aanordin aanoirnd aanoirdn aanoinrd aanoindr aanoidnr aanoidrn aanonird
aanonidr aanonrid aanonrdi aanondri aanondir aanodinr aanodirn aanodnir aanodnri aanodrni aanodrin
aanroind aanroidn aanronid aanrondi aanrodni aanrodin aanriond aanriodn aanrinod aanrindo aanridno
aanridon aanrniod aanrnido aanrnoid aanrnodi aanrndoi aanrndio aanrdino aanrdion aanrdnio aanrdnoi
aanrdoni aanrdoin aanirond aanirodn aanirnod aanirndo aanirdno aanirdon aaniornd aaniordn aanionrd
aaniondr aaniodnr aaniodrn aaninord aaninodr aaninrod aaninrdo aanindro aanindor aanidonr aanidorn
aanidnor aanidnro aanidrno aanidron aannriod aannrido aannroid aannrodi aannrdoi aannrdio aannirod
aannirdo aanniord aanniodr aannidor aannidro aannoird aannoidr aannorid aannordi aannodri aannodir
aanndior aanndiro aanndoir aanndori aanndroi aanndrio aandrino aandrion aandrnio aandrnoi aandroni
aandroin aandirno aandiron aandinro aandinor aandionr aandiorn aandniro aandnior aandnrio aandnroi
aandnori aandnoir aandoinr aandoirn aandonir aandonri aandorni aandorin andorian andorina andorain
andorani andornai andornia andoiran andoirna andoiarn andoianr andoinar andoinra andoairn andoainr
andoarin andoarni andoanri andoanir andoniar andonira andonair andonari andonrai andonria androian
androina androain androani andronai andronia andrioan andriona andriaon andriano andrinao andrinoa
andraion andraino andraoin andraoni andranoi andranio andrniao andrnioa andrnaio andrnaoi andrnoai
andrnoia andiroan andirona andiraon andirano andirnao andirnoa andioran andiorna andioarn andioanr
andionar andionra andiaorn andiaonr andiaron andiarno andianro andianor andinoar andinora andinaor
andinaro andinrao andinroa andarion andarino andaroin andaroni andarnoi andarnio andairon andairno
andaiorn andaionr andainor andainro andaoirn andaoinr andaorin andaorni andaonri andaonir andanior
andaniro andanoir andanori andanroi andanrio andnriao andnrioa andnraio andnraoi andnroai andnroia
andnirao andniroa andniaro andniaor andnioar andniora andnairo andnaior andnario andnaroi andnaori
andnaoir andnoiar andnoira andnoair andnoari andnorai andnoria anodrian anodrina anodrain anodrani
anodrnai anodrnia anodiran anodirna anodiarn anodianr anodinar anodinra anodairn anodainr anodarin
anodarni anodanri anodanir anodniar anodnira anodnair anodnari anodnrai anodnria anordian anordina
anordain anordani anordnai anordnia anoridan anoridna anoriadn anoriand anorinad anorinda anoraidn
anoraind anoradin anoradni anorandi anoranid anorniad anornida anornaid anornadi anorndai anorndia
anoirdan anoirdna anoiradn anoirand anoirnad anoirnda anoidran anoidrna anoidarn anoidanr anoidnar
anoidnra anoiadrn anoiadnr anoiardn anoiarnd anoianrd anoiandr anoindar anoindra anoinadr anoinard
anoinrad anoinrda anoaridn anoarind anoardin anoardni anoarndi anoarnid anoairdn anoairnd anoaidrn
anoaidnr anoaindr anoainrd anoadirn anoadinr anoadrin anoadrni anoadnri anoadnir anoanidr anoanird
anoandir anoandri anoanrdi anoanrid anonriad anonrida anonraid anonradi anonrdai anonrdia anonirad
anonirda anoniard anoniadr anonidar anonidra anonaird anonaidr anonarid anonardi anonadri anonadir
anondiar anondira anondair anondari anondrai anondria anrodian anrodina anrodain anrodani anrodnai
anrodnia anroidan anroidna anroiadn anroiand anroinad anroinda anroaidn anroaind anroadin anroadni
anroandi anroanid anroniad anronida anronaid anronadi anrondai anrondia anrdoian anrdoina anrdoain
anrdoani anrdonai anrdonia anrdioan anrdiona anrdiaon anrdiano anrdinao anrdinoa anrdaion anrdaino
anrdaoin anrdaoni anrdanoi anrdanio anrdniao anrdnioa anrdnaio anrdnaoi anrdnoai anrdnoia anridoan
anridona anridaon anridano anridnao anridnoa anriodan anriodna anrioadn anrioand anrionad anrionda
anriaodn anriaond anriadon anriadno anriando anrianod anrinoad anrinoda anrinaod anrinado anrindao
anrindoa anradion anradino anradoin anradoni anradnoi anradnio anraidon anraidno anraiodn anraiond
anrainod anraindo anraoidn anraoind anraodin anraodni anraondi anraonid anraniod anranido anranoid
anranodi anrandoi anrandio anrndiao anrndioa anrndaio anrndaoi anrndoai anrndoia anrnidao anrnidoa
anrniado anrniaod anrnioad anrnioda anrnaido anrnaiod anrnadio anrnadoi anrnaodi anrnaoid anrnoiad
anrnoida anrnoaid anrnoadi anrnodai anrnodia aniordan aniordna anioradn aniorand aniornad aniornda
aniodran aniodrna aniodarn aniodanr aniodnar aniodnra anioadrn anioadnr anioardn anioarnd anioanrd
anioandr aniondar aniondra anionadr anionard anionrad anionrda anirodan anirodna aniroadn aniroand
anironad anironda anirdoan anirdona anirdaon anirdano anirdnao anirdnoa aniradon aniradno aniraodn
aniraond aniranod anirando anirndao anirndoa anirnado anirnaod anirnoad anirnoda anidroan anidrona
anidraon anidrano anidrnao anidrnoa anidoran anidorna anidoarn anidoanr anidonar anidonra anidaorn
anidaonr anidaron anidarno anidanro anidanor anidnoar anidnora anidnaor anidnaro anidnrao anidnroa
aniardon aniardno aniarodn aniarond aniarnod aniarndo aniadron aniadrno aniadorn aniadonr aniadnor
aniadnro aniaodrn aniaodnr aniaordn aniaornd aniaonrd aniaondr aniandor aniandro anianodr anianord
anianrod anianrdo aninrdao aninrdoa aninrado aninraod aninroad aninroda anindrao anindroa anindaro
anindaor anindoar anindora aninadro aninador aninardo aninarod aninaord aninaodr aninodar aninodra
aninoadr aninoard aninorad aninorda anaoridn anaorind anaordin anaordni anaorndi anaornid anaoirdn
anaoirnd anaoidrn anaoidnr anaoindr anaoinrd anaodirn anaodinr anaodrin anaodrni anaodnri anaodnir
anaonidr anaonird anaondir anaondri anaonrdi anaonrid anaroidn anaroind anarodin anarodni anarondi
anaronid anariodn anariond anaridon anaridno anarindo anarinod anardion anardino anardoin anardoni
anardnoi anardnio anarnido anarniod anarndio anarndoi anarnodi anarnoid anairodn anairond anairdon
anairdno anairndo anairnod anaiordn anaiornd anaiodrn anaiodnr anaiondr anaionrd anaidorn anaidonr
anaidron anaidrno anaidnro anaidnor anainodr anainord anaindor anaindro anainrdo anainrod anadrion
anadrino anadroin anadroni anadrnoi anadrnio anadiron anadirno anadiorn anadionr anadinor anadinro
anadoirn anadoinr anadorin anadorni anadonri anadonir anadnior anadniro anadnoir anadnori anadnroi
anadnrio ananrido ananriod ananrdio ananrdoi ananrodi ananroid ananirdo ananirod ananidro ananidor
ananiodr ananiord anandiro anandior anandrio anandroi anandori anandoir ananoidr ananoird ananodir
ananodri ananordi ananorid annoriad annorida annoraid annoradi annordai annordia annoirad annoirda
annoiard annoiadr annoidar annoidra annoaird annoaidr annoarid annoardi annoadri annoadir annodiar
annodira annodair annodari annodrai annodria annroiad annroida annroaid annroadi annrodai annrodia
annrioad annrioda annriaod annriado annridao annridoa annraiod annraido annraoid annraodi annradoi
annradio annrdiao annrdioa annrdaio annrdaoi annrdoai annrdoia anniroad anniroda anniraod annirado
annirdao annirdoa anniorad anniorda annioard annioadr anniodar anniodra anniaord anniaodr anniarod
anniardo anniadro anniador annidoar annidora annidaor annidaro annidrao annidroa annariod annarido
annaroid annarodi annardoi annardio annairod annairdo annaiord annaiodr annaidor annaidro annaoird
annaoidr annaorid annaordi annaodri annaodir annadior annadiro annadoir annadori annadroi annadrio
anndriao anndrioa anndraio anndraoi anndroai anndroia anndirao anndiroa anndiaro anndiaor anndioar
anndiora anndairo anndaior anndario anndaroi anndaori anndaoir anndoiar anndoira anndoair anndoari
anndorai anndoria

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History of cryptography
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