easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

drahos

picotte

nonapprehension

palmospasmus

delph

circumcinct

shogren

yeaddiss

upswell

minarer

implicados

teutonophobia

breamer

badmen

librarian

tiptoed

gehazi

biddance


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: unpruned
cipher variations:
voqsvofe wprtwpgf xqsuxqhg yrtvyrih zsuwzsji
atvxatkj buwybulk cvxzcvml dwyadwnm exzbexon
fyacfypo gzbdgzqp haceharq ibdfibsr jcegjcts
kdfhkdut legilevu mfhjmfwv ngikngxw ohjlohyx
pikmpizy qjlnqjaz rkmorkba slnpslcb tmoqtmdc

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: unpruned
Cipher: fmkifmvw

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: unpruned
Cipher: BAABB ABBAA ABBBA BAAAA BAABB ABBAA AABAA AAABB

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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: unpruned
cipher variations:
voqsvofejouajonkxoyixovqlocqlodwzogyzolcnokgnotiposwpojudowedora
roamrozgfoeufohmtoictopshomkhoxywprtwpgfkpvbkpolypzjypwrmpdrmpex
aphzapmdoplhopujqptxqpkvepxfepsbspbnspahgpfvgpinupjdupqtipnlipyz
xqsuxqhglqwclqpmzqakzqxsnqesnqfybqiabqnepqmipqvkrquyrqlwfqygfqtc
tqcotqbihqgwhqjovqkevqrujqomjqzayrtvyrihmrxdmrqnarblarytorftorgz
crjbcrofqrnjqrwlsrvzsrmxgrzhgrudurdpurcjirhxirkpwrlfwrsvkrpnkrab
zsuwzsjinsyensrobscmbszupsgupshadskcdspgrsokrsxmtswatsnyhsaihsve
vseqvsdkjsiyjslqxsmgxstwlsqolsbcatvxatkjotzfotspctdnctavqthvqtib
etldetqhstplstynutxbutozitbjitwfwtfrwtelktjzktmrytnhytuxmtrpmtcd
buwybulkpuagputqdueodubwruiwrujcfumefurituqmtuzovuycvupajuckjuxg
xugsxufmlukalunszuoizuvynusqnudecvxzcvmlqvbhqvurevfpevcxsvjxsvkd
gvnfgvsjuvrnuvapwvzdwvqbkvdlkvyhyvhtyvgnmvlbmvotavpjavwzovtrovef
dwyadwnmrwcirwvsfwgqfwdytwkytwlehwoghwtkvwsovwbqxwaexwrclwemlwzi
zwiuzwhonwmcnwpubwqkbwxapwuspwfgexzbexonsxdjsxwtgxhrgxezuxlzuxmf
ixphixulwxtpwxcryxbfyxsdmxfnmxajaxjvaxipoxndoxqvcxrlcxybqxvtqxgh
fyacfypotyektyxuhyishyfavymavyngjyqijyvmxyuqxydszycgzytenygonybk
bykwbyjqpyoepyrwdysmdyzcrywuryhigzbdgzqpuzfluzyvizjtizgbwznbwzoh
kzrjkzwnyzvryzetazdhazufozhpozclczlxczkrqzpfqzsxeztnezadszxvszij
haceharqvagmvazwjakujahcxaocxapilasklaxozawszafubaeibavgpaiqpadm
damydalsraqgratyfauofabetaywtajkibdfibsrwbhnwbaxkblvkbidybpdybqj
mbtlmbypabxtabgvcbfjcbwhqbjrqbenebnzebmtsbrhsbuzgbvpgbcfubzxubkl
jcegjctsxcioxcbylcmwlcjezcqezcrkncumnczqbcyubchwdcgkdcxircksrcfo
fcoafcnutcsitcvahcwqhcdgvcayvclmkdfhkdutydjpydczmdnxmdkfadrfadsl
odvnodarcdzvcdixedhledyjsdltsdgpgdpbgdovudtjudwbidxridehwdbzwdmn
legilevuzekqzedaneoynelgbesgbetmpewopebsdeawdejyfeimfezktemutehq
heqchepwveukvexcjeysjefixecaxenomfhjmfwvaflrafebofpzofmhcfthcfun
qfxpqfctefbxefkzgfjngfalufnvufirifrdifqxwfvlwfydkfztkfgjyfdbyfop
ngikngxwbgmsbgfcpgqapgnidguidgvorgyqrgdufgcyfglahgkohgbmvgowvgjs
jgsejgryxgwmxgzelgaulghkzgeczgpqohjlohyxchntchgdqhrbqhojehvjehwp
shzrshevghdzghmbihlpihcnwhpxwhktkhtfkhszyhxnyhafmhbvmhilahfdahqr
pikmpizydioudiheriscripkfiwkfixqtiastifwhieahincjimqjidoxiqyxilu
liuglitaziyozibgnicwnijmbigebirsqjlnqjazejpvejifsjtdsjqlgjxlgjyr
ujbtujgxijfbijodkjnrkjepyjrzyjmvmjvhmjubajzpajchojdxojkncjhfcjst
rkmorkbafkqwfkjgtkuetkrmhkymhkzsvkcuvkhyjkgcjkpelkoslkfqzksazknw
nkwinkvcbkaqbkdipkeypklodkigdktuslnpslcbglrxglkhulvfulsnilznilat
wldvwlizklhdklqfmlptmlgraltbaloxolxjolwdclbrclejqlfzqlmpeljheluv
tmoqtmdchmsyhmlivmwgvmtojmaojmbuxmewxmjalmielmrgnmqunmhsbmucbmpy
pmykpmxedmcsdmfkrmgarmnqfmkifmvwunprunedintzinmjwnxhwnupknbpkncv
ynfxynkbmnjfmnshonrvonitcnvdcnqzqnzlqnyfendtenglsnhbsnorgnljgnwx

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: unpruned
Cipher: haceharq

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: unpruned
Cipher: 5433532454335141

Extended Methods:
Method #1

Plaintext: unpruned
method variations:
zsuwzskiexzbexpokcegkcutphkmphzy

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
u n p r u n e d 
5 3 5 2 5 3 5 4 
4 3 3 4 4 3 1 1 
They are then read out in rows:
5352535443344311
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: unpruned
Cipher: pkpuosoa

Read more ...
Method #3

Plaintext: unpruned
method variations:
oxhyoxqv xhyoxqvo hyoxqvox
yoxqvoxh oxqvoxhy xqvoxhyo
qvoxhyox voxhyoxq

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: unpruned

first 5040 cipher variations(40320 total)
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urndnpeu urndnpue urndnepu urndneup urndnuep urndnupe urenunpd urenundp urenupnd urenupdn urenudpn
urenudnp urennupd urennudp urennpud urennpdu urenndpu urenndup urenpnud urenpndu urenpund urenpudn
urenpdun urenpdnu urendnpu urendnup urendpnu urendpun urendupn urendunp ureunnpd ureunndp ureunpnd
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urednpun urednpnu urednnpu urednnup uredpnun uredpnnu uredpunn uredpunn uredpnun uredpnnu urednnpu
urednnup urednpnu urednpun urednupn urednunp urdnunep urdnunpe urdnuenp urdnuepn urdnupen urdnupne
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urdnuenp urdnuepn urdnupen urdnupne urdnnuep urdnnupe urdnneup urdnnepu urdnnpeu urdnnpue urdnenup
urdnenpu urdneunp urdneupn urdnepun urdnepnu urdnpneu urdnpnue urdnpenu urdnpeun urdnpuen urdnpune
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uurnednp uurndnep uurndnpe uurndenp uurndepn uurndpen uurndpne uurnnped uurnnpde uurnnepd uurnnedp
uurnndep uurnndpe uurnpned uurnpnde uurnpend uurnpedn uurnpden uurnpdne uurnepnd uurnepdn uurnenpd
uurnendp uurnednp uurnedpn uurndpen uurndpne uurndepn uurndenp uurndnep uurndnpe uurennpd uurenndp
uurenpnd uurenpdn uurendpn uurendnp uurennpd uurenndp uurenpnd uurenpdn uurendpn uurendnp uurepnnd
uurepndn uurepnnd uurepndn uurepdnn uurepdnn uurednpn uurednnp uuredpnn uuredpnn uurednpn uurednnp
uurdnnep uurdnnpe uurdnenp uurdnepn uurdnpen uurdnpne uurdnnep uurdnnpe uurdnenp uurdnepn uurdnpen
uurdnpne uurdennp uurdenpn uurdennp uurdenpn uurdepnn uurdepnn uurdpnen uurdpnne uurdpenn uurdpenn
uurdpnen uurdpnne uunrpned uunrpnde uunrpend uunrpedn uunrpden uunrpdne uunrnped uunrnpde uunrnepd
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uunrdenp uunrdepn uunrdpen uunrdpne uunprned uunprnde uunprend uunpredn uunprden uunprdne uunpnred
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uunpdner uunpdnre uunpdenr uunpdern uunpdren uunpdrne uunnpred uunnprde uunnperd uunnpedr uunnpder
uunnpdre uunnrped uunnrpde uunnrepd uunnredp uunnrdep uunnrdpe uunnerpd uunnerdp uunneprd uunnepdr
uunnedpr uunnedrp uunndrep uunndrpe uunnderp uunndepr uunndper uunndpre uunepnrd uunepndr uuneprnd
uuneprdn uunepdrn uunepdnr uunenprd uunenpdr uunenrpd uunenrdp uunendrp uunendpr uunernpd uunerndp
uunerpnd uunerpdn uunerdpn uunerdnp uunednrp uunednpr uunedrnp uunedrpn uunedprn uunedpnr uundpner
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uundenpr uundenrp uundepnr uundeprn uunderpn uundernp uundrnep uundrnpe uundrenp uundrepn uundrpen
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uunrdenp uunrdnep uunrdnpe uunnrped uunnrpde uunnrepd uunnredp uunnrdep uunnrdpe uunnpred uunnprde
uunnperd uunnpedr uunnpder uunnpdre uunneprd uunnepdr uunnerpd uunnerdp uunnedrp uunnedpr uunndper
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uunendrp uunendpr uunepnrd uunepndr uuneprnd uuneprdn uunepdrn uunepdnr uunerpnd uunerpdn uunernpd
uunerndp uunerdnp uunerdpn uunedprn uunedpnr uunedrpn uunedrnp uunednrp uunednpr uundnper uundnpre
uundnepr uundnerp uundnrep uundnrpe uundpner uundpnre uundpenr uundpern uundpren uundprne uundepnr
uundeprn uundenpr uundenrp uundernp uunderpn uundrpen uundrpne uundrepn uundrenp uundrnep uundrnpe
uuernnpd uuernndp uuernpnd uuernpdn uuerndpn uuerndnp uuernnpd uuernndp uuernpnd uuernpdn uuerndpn
uuerndnp uuerpnnd uuerpndn uuerpnnd uuerpndn uuerpdnn uuerpdnn uuerdnpn uuerdnnp uuerdpnn uuerdpnn
uuerdnpn uuerdnnp uuenrnpd uuenrndp uuenrpnd uuenrpdn uuenrdpn uuenrdnp uuennrpd uuennrdp uuennprd
uuennpdr uuenndpr uuenndrp uuenpnrd uuenpndr uuenprnd uuenprdn uuenpdrn uuenpdnr uuendnpr uuendnrp
uuendpnr uuendprn uuendrpn uuendrnp uuennrpd uuennrdp uuennprd uuennpdr uuenndpr uuenndrp uuenrnpd
uuenrndp uuenrpnd uuenrpdn uuenrdpn uuenrdnp uuenprnd uuenprdn uuenpnrd uuenpndr uuenpdnr uuenpdrn
uuendrpn uuendrnp uuendprn uuendpnr uuendnpr uuendnrp uuepnnrd uuepnndr uuepnrnd uuepnrdn uuepndrn
uuepndnr uuepnnrd uuepnndr uuepnrnd uuepnrdn uuepndrn uuepndnr uueprnnd uueprndn uueprnnd uueprndn
uueprdnn uueprdnn uuepdnrn uuepdnnr uuepdrnn uuepdrnn uuepdnrn uuepdnnr uuednnpr uuednnrp uuednpnr
uuednprn uuednrpn uuednrnp uuednnpr uuednnrp uuednpnr uuednprn uuednrpn uuednrnp uuedpnnr uuedpnrn
uuedpnnr uuedpnrn uuedprnn uuedprnn uuedrnpn uuedrnnp uuedrpnn uuedrpnn uuedrnpn uuedrnnp uudrnnep
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uudrpnne uudnrnep uudnrnpe uudnrenp uudnrepn uudnrpen uudnrpne uudnnrep uudnnrpe uudnnerp uudnnepr
uudnnper uudnnpre uudnenrp uudnenpr uudnernp uudnerpn uudneprn uudnepnr uudnpner uudnpnre uudnpenr
uudnpern uudnpren uudnprne uudnnrep uudnnrpe uudnnerp uudnnepr uudnnper uudnnpre uudnrnep uudnrnpe
uudnrenp uudnrepn uudnrpen uudnrpne uudnernp uudnerpn uudnenrp uudnenpr uudnepnr uudneprn uudnpren
uudnprne uudnpern uudnpenr uudnpner uudnpnre uudennrp uudennpr uudenrnp uudenrpn uudenprn uudenpnr
uudennrp uudennpr uudenrnp uudenrpn uudenprn uudenpnr uudernnp uudernpn uudernnp uudernpn uuderpnn
uuderpnn uudepnrn uudepnnr uudeprnn uudeprnn uudepnrn uudepnnr uudpnner uudpnnre uudpnenr uudpnern
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uudpenrn uudpernn uudpernn uudprnen uudprnne uudprenn uudprenn uudprnen uudprnne unpruned unprunde
unpruend unpruedn unpruden unprudne unprnued unprnude unprneud unprnedu unprndeu unprndue unprenud
unprendu unpreund unpreudn unpredun unprednu unprdneu unprdnue unprdenu unprdeun unprduen unprdune
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unpnderu unpndeur unpnduer unpndure unpeunrd unpeundr unpeurnd unpeurdn unpeudrn unpeudnr unpenurd
unpenudr unpenrud unpenrdu unpendru unpendur unpernud unperndu unperund unperudn unperdun unperdnu
unpednru unpednur unpedrnu unpedrun unpedurn unpedunr unpduner unpdunre unpduenr unpduern unpduren
unpdurne unpdnuer unpdnure unpdneur unpdneru unpdnreu unpdnrue unpdenur unpdenru unpdeunr unpdeurn
unpderun unpdernu unpdrneu unpdrnue unpdrenu unpdreun unpdruen unpdrune unrpuned unrpunde unrpuend
unrpuedn unrpuden unrpudne unrpnued unrpnude unrpneud unrpnedu unrpndeu unrpndue unrpenud unrpendu
unrpeund unrpeudn unrpedun unrpednu unrpdneu unrpdnue unrpdenu unrpdeun unrpduen unrpdune unrupned
unrupnde unrupend unrupedn unrupden unrupdne unrunped unrunpde unrunepd unrunedp unrundep unrundpe
unruenpd unruendp unruepnd unruepdn unruedpn unruednp unrudnep unrudnpe unrudenp unrudepn unrudpen
unrudpne unrnuped unrnupde unrnuepd unrnuedp unrnudep unrnudpe unrnpued unrnpude unrnpeud unrnpedu
unrnpdeu unrnpdue unrnepud unrnepdu unrneupd unrneudp unrnedup unrnedpu unrndpeu unrndpue unrndepu
unrndeup unrnduep unrndupe unreunpd unreundp unreupnd unreupdn unreudpn unreudnp unrenupd unrenudp
unrenpud unrenpdu unrendpu unrendup unrepnud unrepndu unrepund unrepudn unrepdun unrepdnu unrednpu
unrednup unredpnu unredpun unredupn unredunp unrdunep unrdunpe unrduenp unrduepn unrdupen unrdupne
unrdnuep unrdnupe unrdneup unrdnepu unrdnpeu unrdnpue unrdenup unrdenpu unrdeunp unrdeupn unrdepun
unrdepnu unrdpneu unrdpnue unrdpenu unrdpeun unrdpuen unrdpune unurpned unurpnde unurpend unurpedn
unurpden unurpdne unurnped unurnpde unurnepd unurnedp unurndep unurndpe unurenpd unurendp unurepnd
unurepdn unuredpn unurednp unurdnep unurdnpe unurdenp unurdepn unurdpen unurdpne unuprned unuprnde
unuprend unupredn unuprden unuprdne unupnred unupnrde unupnerd unupnedr unupnder unupndre unupenrd
unupendr unupernd unuperdn unupedrn unupednr unupdner unupdnre unupdenr unupdern unupdren unupdrne
ununpred ununprde ununperd ununpedr ununpder ununpdre ununrped ununrpde ununrepd ununredp ununrdep
ununrdpe ununerpd ununerdp ununeprd ununepdr ununedpr ununedrp unundrep unundrpe ununderp unundepr
unundper unundpre unuepnrd unuepndr unueprnd unueprdn unuepdrn unuepdnr unuenprd unuenpdr unuenrpd
unuenrdp unuendrp unuendpr unuernpd unuerndp unuerpnd unuerpdn unuerdpn unuerdnp unuednrp unuednpr
unuedrnp unuedrpn unuedprn unuedpnr unudpner unudpnre unudpenr unudpern unudpren unudprne unudnper
unudnpre unudnepr unudnerp unudnrep unudnrpe unudenpr unudenrp unudepnr unudeprn unuderpn unudernp
unudrnep unudrnpe unudrenp unudrepn unudrpen unudrpne unnruped unnrupde unnruepd unnruedp unnrudep
unnrudpe unnrpued unnrpude unnrpeud unnrpedu unnrpdeu unnrpdue unnrepud unnrepdu unnreupd unnreudp
unnredup unnredpu unnrdpeu unnrdpue unnrdepu unnrdeup unnrduep unnrdupe unnurped unnurpde unnurepd
unnuredp unnurdep unnurdpe unnupred unnuprde unnuperd unnupedr unnupder unnupdre unnueprd unnuepdr
unnuerpd unnuerdp unnuedrp unnuedpr unnudper unnudpre unnudepr unnuderp unnudrep unnudrpe unnpured
unnpurde unnpuerd unnpuedr unnpuder unnpudre unnprued unnprude unnpreud unnpredu unnprdeu unnprdue
unnperud unnperdu unnpeurd unnpeudr unnpedur unnpedru unnpdreu unnpdrue unnpderu unnpdeur unnpduer
unnpdure unneuprd unneupdr unneurpd unneurdp unneudrp unneudpr unnepurd unnepudr unneprud unneprdu
unnepdru unnepdur unnerpud unnerpdu unnerupd unnerudp unnerdup unnerdpu unnedpru unnedpur unnedrpu
unnedrup unnedurp unnedupr unnduper unndupre unnduepr unnduerp unndurep unndurpe unndpuer unndpure
unndpeur unndperu unndpreu unndprue unndepur unndepru unndeupr unndeurp unnderup unnderpu unndrpeu
unndrpue unndrepu unndreup unndruep unndrupe unerunpd unerundp unerupnd unerupdn unerudpn unerudnp
unernupd unernudp unernpud unernpdu unerndpu unerndup unerpnud unerpndu unerpund unerpudn unerpdun
unerpdnu unerdnpu unerdnup unerdpnu unerdpun unerdupn unerdunp uneurnpd uneurndp uneurpnd uneurpdn
uneurdpn uneurdnp uneunrpd uneunrdp uneunprd uneunpdr uneundpr uneundrp uneupnrd uneupndr uneuprnd
uneuprdn uneupdrn uneupdnr uneudnpr uneudnrp uneudpnr uneudprn uneudrpn uneudrnp unenurpd unenurdp
unenuprd unenupdr unenudpr unenudrp unenrupd unenrudp unenrpud unenrpdu unenrdpu unenrdup unenprud
unenprdu unenpurd unenpudr unenpdur unenpdru unendrpu unendrup unendpru unendpur unendupr unendurp
unepunrd unepundr unepurnd unepurdn unepudrn unepudnr unepnurd unepnudr unepnrud unepnrdu unepndru
unepndur uneprnud uneprndu uneprund uneprudn uneprdun uneprdnu unepdnru unepdnur unepdrnu unepdrun
unepdurn unepdunr unedunpr unedunrp unedupnr uneduprn unedurpn unedurnp unednupr unednurp unednpur
unednpru unednrpu unednrup unedpnur unedpnru unedpunr unedpurn unedprun unedprnu unedrnpu unedrnup
unedrpnu unedrpun unedrupn unedrunp undrunep undrunpe undruenp undruepn undrupen undrupne undrnuep
undrnupe undrneup undrnepu undrnpeu undrnpue undrenup undrenpu undreunp undreupn undrepun undrepnu
undrpneu undrpnue undrpenu undrpeun undrpuen undrpune undurnep undurnpe undurenp undurepn undurpen
undurpne undunrep undunrpe undunerp undunepr undunper undunpre unduenrp unduenpr unduernp unduerpn
undueprn unduepnr undupner undupnre undupenr undupern undupren unduprne undnurep undnurpe undnuerp
undnuepr undnuper undnupre undnruep undnrupe undnreup undnrepu undnrpeu undnrpue undnerup undnerpu
undneurp undneupr undnepur undnepru undnpreu undnprue undnperu undnpeur undnpuer undnpure undeunrp
undeunpr undeurnp undeurpn undeuprn undeupnr undenurp undenupr undenrup undenrpu undenpru undenpur
undernup undernpu underunp underupn underpun underpnu undepnru undepnur undeprnu undeprun undepurn
undepunr undpuner undpunre undpuenr undpuern undpuren undpurne undpnuer undpnure undpneur undpneru
undpnreu undpnrue undpenur undpenru undpeunr undpeurn undperun undpernu undprneu undprnue undprenu
undpreun undpruen undprune ueprunnd ueprundn ueprunnd ueprundn ueprudnn ueprudnn ueprnund ueprnudn
ueprnnud ueprnndu ueprndnu ueprndun ueprnnud ueprnndu ueprnund ueprnudn ueprndun ueprndnu ueprdnnu
ueprdnun ueprdnnu ueprdnun ueprdunn ueprdunn uepurnnd uepurndn uepurnnd uepurndn uepurdnn uepurdnn
uepunrnd uepunrdn uepunnrd uepunndr uepundnr uepundrn uepunnrd uepunndr uepunrnd uepunrdn uepundrn
uepundnr uepudnnr uepudnrn uepudnnr uepudnrn uepudrnn uepudrnn uepnurnd uepnurdn uepnunrd uepnundr
uepnudnr uepnudrn uepnrund uepnrudn uepnrnud uepnrndu uepnrdnu uepnrdun uepnnrud uepnnrdu uepnnurd
uepnnudr uepnndur uepnndru uepndrnu uepndrun uepndnru uepndnur uepndunr uepndurn uepnunrd uepnundr
uepnurnd uepnurdn uepnudrn uepnudnr uepnnurd uepnnudr uepnnrud uepnnrdu uepnndru uepnndur uepnrnud
uepnrndu uepnrund uepnrudn uepnrdun uepnrdnu uepndnru uepndnur uepndrnu uepndrun uepndurn uepndunr
uepdunnr uepdunrn uepdunnr uepdunrn uepdurnn uepdurnn uepdnunr uepdnurn uepdnnur uepdnnru uepdnrnu
uepdnrun uepdnnur uepdnnru uepdnunr uepdnurn uepdnrun uepdnrnu uepdrnnu uepdrnun uepdrnnu uepdrnun
uepdrunn uepdrunn uerpunnd uerpundn uerpunnd uerpundn uerpudnn uerpudnn uerpnund uerpnudn uerpnnud
uerpnndu uerpndnu uerpndun uerpnnud uerpnndu uerpnund uerpnudn uerpndun uerpndnu uerpdnnu uerpdnun
uerpdnnu uerpdnun uerpdunn uerpdunn uerupnnd uerupndn uerupnnd uerupndn uerupdnn uerupdnn uerunpnd
uerunpdn uerunnpd uerunndp uerundnp uerundpn uerunnpd uerunndp uerunpnd uerunpdn uerundpn uerundnp
uerudnnp uerudnpn uerudnnp uerudnpn uerudpnn uerudpnn uernupnd uernupdn uernunpd uernundp uernudnp
uernudpn uernpund uernpudn uernpnud uernpndu uernpdnu uernpdun uernnpud uernnpdu uernnupd uernnudp
uernndup uernndpu uerndpnu uerndpun uerndnpu uerndnup uerndunp uerndupn uernunpd uernundp uernupnd
uernupdn uernudpn uernudnp uernnupd uernnudp uernnpud uernnpdu uernndpu uernndup uernpnud uernpndu
uernpund uernpudn uernpdun uernpdnu uerndnpu uerndnup uerndpnu uerndpun uerndupn uerndunp uerdunnp
uerdunpn uerdunnp uerdunpn uerdupnn uerdupnn uerdnunp uerdnupn uerdnnup uerdnnpu uerdnpnu uerdnpun
uerdnnup uerdnnpu uerdnunp uerdnupn uerdnpun uerdnpnu uerdpnnu uerdpnun uerdpnnu uerdpnun uerdpunn
uerdpunn ueurpnnd ueurpndn ueurpnnd ueurpndn ueurpdnn ueurpdnn ueurnpnd ueurnpdn ueurnnpd ueurnndp
ueurndnp ueurndpn ueurnnpd ueurnndp ueurnpnd ueurnpdn ueurndpn ueurndnp ueurdnnp ueurdnpn ueurdnnp
ueurdnpn ueurdpnn ueurdpnn ueuprnnd ueuprndn ueuprnnd ueuprndn ueuprdnn ueuprdnn ueupnrnd ueupnrdn
ueupnnrd ueupnndr ueupndnr ueupndrn ueupnnrd ueupnndr ueupnrnd ueupnrdn ueupndrn ueupndnr ueupdnnr
ueupdnrn ueupdnnr ueupdnrn ueupdrnn ueupdrnn ueunprnd ueunprdn ueunpnrd ueunpndr ueunpdnr ueunpdrn
ueunrpnd ueunrpdn ueunrnpd ueunrndp ueunrdnp ueunrdpn ueunnrpd ueunnrdp ueunnprd ueunnpdr ueunndpr
ueunndrp ueundrnp ueundrpn ueundnrp ueundnpr ueundpnr ueundprn ueunpnrd ueunpndr ueunprnd ueunprdn
ueunpdrn ueunpdnr ueunnprd ueunnpdr ueunnrpd ueunnrdp ueunndrp ueunndpr ueunrnpd ueunrndp ueunrpnd
ueunrpdn ueunrdpn ueunrdnp ueundnrp ueundnpr ueundrnp ueundrpn ueundprn ueundpnr ueudpnnr ueudpnrn
ueudpnnr ueudpnrn ueudprnn ueudprnn ueudnpnr ueudnprn ueudnnpr ueudnnrp ueudnrnp ueudnrpn ueudnnpr
ueudnnrp ueudnpnr ueudnprn ueudnrpn ueudnrnp ueudrnnp ueudrnpn ueudrnnp ueudrnpn ueudrpnn ueudrpnn
uenrupnd uenrupdn uenrunpd uenrundp uenrudnp uenrudpn uenrpund uenrpudn uenrpnud uenrpndu uenrpdnu
uenrpdun uenrnpud uenrnpdu uenrnupd uenrnudp uenrndup uenrndpu uenrdpnu uenrdpun uenrdnpu uenrdnup
uenrdunp uenrdupn uenurpnd uenurpdn uenurnpd uenurndp uenurdnp uenurdpn uenuprnd uenuprdn uenupnrd
uenupndr uenupdnr uenupdrn uenunprd uenunpdr uenunrpd uenunrdp uenundrp uenundpr uenudpnr uenudprn
uenudnpr uenudnrp uenudrnp uenudrpn uenpurnd uenpurdn uenpunrd uenpundr uenpudnr uenpudrn uenprund
uenprudn uenprnud uenprndu uenprdnu uenprdun uenpnrud uenpnrdu uenpnurd uenpnudr uenpndur uenpndru
uenpdrnu uenpdrun uenpdnru uenpdnur uenpdunr uenpdurn uennuprd uennupdr uennurpd uennurdp uennudrp
uennudpr uennpurd uennpudr uennprud uennprdu uennpdru uennpdur uennrpud uennrpdu uennrupd uennrudp
uennrdup uennrdpu uenndpru uenndpur uenndrpu uenndrup uenndurp uenndupr uendupnr uenduprn uendunpr
uendunrp uendurnp uendurpn uendpunr uendpurn uendpnur uendpnru uendprnu uendprun uendnpur uendnpru
uendnupr uendnurp uendnrup uendnrpu uendrpnu uendrpun uendrnpu uendrnup uendrunp uendrupn uenrunpd
uenrundp uenrupnd uenrupdn uenrudpn uenrudnp uenrnupd uenrnudp uenrnpud uenrnpdu uenrndpu uenrndup
uenrpnud uenrpndu uenrpund uenrpudn uenrpdun uenrpdnu uenrdnpu uenrdnup uenrdpnu uenrdpun uenrdupn
uenrdunp uenurnpd uenurndp uenurpnd uenurpdn uenurdpn uenurdnp uenunrpd uenunrdp uenunprd uenunpdr
uenundpr uenundrp uenupnrd uenupndr uenuprnd uenuprdn uenupdrn uenupdnr uenudnpr uenudnrp uenudpnr
uenudprn uenudrpn uenudrnp uennurpd uennurdp uennuprd uennupdr uennudpr uennudrp uennrupd uennrudp
uennrpud uennrpdu uennrdpu uennrdup uennprud uennprdu uennpurd uennpudr uennpdur uennpdru uenndrpu
uenndrup uenndpru uenndpur uenndupr uenndurp uenpunrd uenpundr uenpurnd uenpurdn uenpudrn uenpudnr
uenpnurd uenpnudr uenpnrud uenpnrdu uenpndru uenpndur uenprnud uenprndu uenprund uenprudn uenprdun
uenprdnu uenpdnru uenpdnur uenpdrnu uenpdrun uenpdurn uenpdunr uendunpr uendunrp uendupnr uenduprn
uendurpn uendurnp uendnupr uendnurp uendnpur uendnpru uendnrpu uendnrup uendpnur uendpnru uendpunr
uendpurn uendprun uendprnu uendrnpu uendrnup uendrpnu uendrpun uendrupn uendrunp uedrunnp uedrunpn
uedrunnp uedrunpn uedrupnn uedrupnn uedrnunp uedrnupn uedrnnup uedrnnpu uedrnpnu uedrnpun uedrnnup
uedrnnpu uedrnunp uedrnupn uedrnpun uedrnpnu uedrpnnu uedrpnun uedrpnnu uedrpnun uedrpunn uedrpunn
uedurnnp uedurnpn uedurnnp uedurnpn uedurpnn uedurpnn uedunrnp uedunrpn uedunnrp uedunnpr uedunpnr
uedunprn uedunnrp uedunnpr uedunrnp uedunrpn uedunprn uedunpnr uedupnnr uedupnrn uedupnnr uedupnrn
ueduprnn ueduprnn uednurnp uednurpn uednunrp uednunpr uednupnr uednuprn uednrunp uednrupn uednrnup
uednrnpu uednrpnu uednrpun uednnrup uednnrpu uednnurp uednnupr uednnpur uednnpru uednprnu uednprun
uednpnru uednpnur uednpunr uednpurn uednunrp uednunpr uednurnp uednurpn uednuprn uednupnr uednnurp
uednnupr uednnrup uednnrpu uednnpru uednnpur uednrnup uednrnpu uednrunp uednrupn uednrpun uednrpnu
uednpnru uednpnur uednprnu uednprun uednpurn uednpunr uedpunnr uedpunrn uedpunnr uedpunrn uedpurnn
uedpurnn uedpnunr uedpnurn uedpnnur uedpnnru uedpnrnu uedpnrun uedpnnur uedpnnru uedpnunr uedpnurn
uedpnrun uedpnrnu uedprnnu uedprnun uedprnnu uedprnun uedprunn uedprunn udprunen udprunne udpruenn
udpruenn udprunen udprunne udprnuen udprnune udprneun udprnenu udprnneu udprnnue udprenun udprennu
udpreunn udpreunn udprenun udprennu udprnneu udprnnue udprnenu udprneun udprnuen udprnune udpurnen
udpurnne udpurenn udpurenn udpurnen udpurnne udpunren udpunrne udpunern udpunenr udpunner udpunnre
udpuenrn udpuennr udpuernn udpuernn udpuenrn udpuennr udpunner udpunnre udpunenr udpunern udpunren
udpunrne udpnuren udpnurne udpnuern udpnuenr udpnuner udpnunre udpnruen udpnrune udpnreun udpnrenu
udpnrneu udpnrnue udpnerun udpnernu udpneurn udpneunr udpnenur udpnenru udpnnreu udpnnrue udpnneru
udpnneur udpnnuer udpnnure udpeunrn udpeunnr udpeurnn udpeurnn udpeunrn udpeunnr udpenurn udpenunr
udpenrun udpenrnu udpennru udpennur udpernun udpernnu udperunn udperunn udpernun udpernnu udpennru
udpennur udpenrnu udpenrun udpenurn udpenunr udpnuner udpnunre udpnuenr udpnuern udpnuren udpnurne
udpnnuer udpnnure udpnneur udpnneru udpnnreu udpnnrue udpnenur udpnenru udpneunr udpneurn udpnerun
udpnernu udpnrneu udpnrnue udpnrenu udpnreun udpnruen udpnrune udrpunen udrpunne udrpuenn udrpuenn
udrpunen udrpunne udrpnuen udrpnune udrpneun udrpnenu udrpnneu udrpnnue udrpenun udrpennu udrpeunn
udrpeunn udrpenun udrpennu udrpnneu udrpnnue udrpnenu udrpneun udrpnuen udrpnune udrupnen udrupnne
udrupenn udrupenn udrupnen udrupnne udrunpen udrunpne udrunepn udrunenp udrunnep udrunnpe udruenpn
udruennp udruepnn udruepnn udruenpn udruennp udrunnep udrunnpe udrunenp udrunepn udrunpen udrunpne
udrnupen udrnupne udrnuepn udrnuenp udrnunep udrnunpe udrnpuen udrnpune udrnpeun udrnpenu udrnpneu
udrnpnue udrnepun udrnepnu udrneupn udrneunp udrnenup udrnenpu udrnnpeu udrnnpue udrnnepu udrnneup
udrnnuep udrnnupe udreunpn udreunnp udreupnn udreupnn udreunpn udreunnp udrenupn udrenunp udrenpun
udrenpnu udrennpu udrennup udrepnun udrepnnu udrepunn udrepunn udrepnun udrepnnu udrennpu udrennup
udrenpnu udrenpun udrenupn udrenunp udrnunep udrnunpe udrnuenp udrnuepn udrnupen udrnupne udrnnuep
udrnnupe udrnneup udrnnepu udrnnpeu udrnnpue udrnenup udrnenpu udrneunp udrneupn udrnepun udrnepnu
udrnpneu udrnpnue udrnpenu udrnpeun udrnpuen udrnpune udurpnen udurpnne udurpenn udurpenn udurpnen
udurpnne udurnpen udurnpne udurnepn udurnenp udurnnep udurnnpe udurenpn udurennp udurepnn udurepnn
udurenpn udurennp udurnnep udurnnpe udurnenp udurnepn udurnpen udurnpne uduprnen uduprnne uduprenn
uduprenn uduprnen uduprnne udupnren udupnrne udupnern udupnenr udupnner udupnnre udupenrn udupennr
udupernn udupernn udupenrn udupennr udupnner udupnnre udupnenr udupnern udupnren udupnrne udunpren
udunprne udunpern udunpenr udunpner udunpnre udunrpen udunrpne udunrepn udunrenp udunrnep udunrnpe
udunerpn udunernp uduneprn udunepnr udunenpr udunenrp udunnrep udunnrpe udunnerp udunnepr udunnper
udunnpre uduepnrn uduepnnr udueprnn udueprnn uduepnrn uduepnnr uduenprn uduenpnr uduenrpn uduenrnp
uduennrp uduennpr uduernpn uduernnp uduerpnn uduerpnn uduernpn uduernnp uduennrp uduennpr uduenrnp
uduenrpn uduenprn uduenpnr udunpner udunpnre udunpenr udunpern udunpren udunprne udunnper udunnpre
udunnepr udunnerp udunnrep udunnrpe udunenpr udunenrp udunepnr uduneprn udunerpn udunernp udunrnep
udunrnpe udunrenp udunrepn udunrpen udunrpne udnrupen udnrupne udnruepn udnruenp udnrunep udnrunpe
udnrpuen udnrpune udnrpeun udnrpenu udnrpneu udnrpnue udnrepun udnrepnu udnreupn udnreunp udnrenup
udnrenpu udnrnpeu udnrnpue udnrnepu udnrneup udnrnuep udnrnupe udnurpen udnurpne udnurepn udnurenp
udnurnep udnurnpe udnupren udnuprne udnupern udnupenr udnupner udnupnre udnueprn udnuepnr udnuerpn
udnuernp udnuenrp udnuenpr udnunper udnunpre udnunepr udnunerp udnunrep udnunrpe udnpuren udnpurne
udnpuern udnpuenr udnpuner udnpunre udnpruen udnprune udnpreun udnprenu udnprneu udnprnue udnperun
udnpernu udnpeurn udnpeunr udnpenur udnpenru udnpnreu udnpnrue udnpneru udnpneur udnpnuer udnpnure
udneuprn udneupnr udneurpn udneurnp udneunrp udneunpr udnepurn udnepunr udneprun udneprnu udnepnru
udnepnur udnerpun udnerpnu udnerupn udnerunp udnernup udnernpu udnenpru udnenpur udnenrpu udnenrup
udnenurp udnenupr udnnuper udnnupre udnnuepr udnnuerp udnnurep udnnurpe udnnpuer udnnpure udnnpeur
udnnperu udnnpreu udnnprue udnnepur udnnepru udnneupr udnneurp udnnerup udnnerpu udnnrpeu udnnrpue
udnnrepu udnnreup udnnruep udnnrupe uderunpn uderunnp uderupnn uderupnn uderunpn uderunnp udernupn
udernunp udernpun udernpnu udernnpu udernnup uderpnun uderpnnu uderpunn uderpunn uderpnun uderpnnu
udernnpu udernnup udernpnu udernpun udernupn udernunp udeurnpn udeurnnp udeurpnn udeurpnn udeurnpn
udeurnnp udeunrpn udeunrnp udeunprn udeunpnr udeunnpr udeunnrp udeupnrn udeupnnr udeuprnn udeuprnn
udeupnrn udeupnnr udeunnpr udeunnrp udeunpnr udeunprn udeunrpn udeunrnp udenurpn udenurnp udenuprn
udenupnr udenunpr udenunrp udenrupn udenrunp udenrpun udenrpnu udenrnpu udenrnup udenprun udenprnu
udenpurn udenpunr udenpnur udenpnru udennrpu udennrup udennpru udennpur udennupr udennurp udepunrn
udepunnr udepurnn udepurnn udepunrn udepunnr udepnurn udepnunr udepnrun udepnrnu udepnnru udepnnur
udeprnun udeprnnu udeprunn udeprunn udeprnun udeprnnu udepnnru udepnnur udepnrnu udepnrun udepnurn
udepnunr udenunpr udenunrp udenupnr udenuprn udenurpn udenurnp udennupr udennurp udennpur udennpru
udennrpu udennrup udenpnur udenpnru udenpunr udenpurn udenprun udenprnu udenrnpu udenrnup udenrpnu
udenrpun udenrupn udenrunp udnrunep udnrunpe udnruenp udnruepn udnrupen udnrupne udnrnuep udnrnupe
udnrneup udnrnepu udnrnpeu udnrnpue udnrenup udnrenpu udnreunp udnreupn udnrepun udnrepnu udnrpneu
udnrpnue udnrpenu udnrpeun udnrpuen udnrpune udnurnep udnurnpe udnurenp udnurepn udnurpen udnurpne
udnunrep udnunrpe udnunerp udnunepr udnunper udnunpre udnuenrp udnuenpr udnuernp udnuerpn udnueprn
udnuepnr udnupner udnupnre udnupenr udnupern udnupren udnuprne udnnurep udnnurpe udnnuerp udnnuepr
udnnuper udnnupre udnnruep udnnrupe udnnreup udnnrepu udnnrpeu udnnrpue udnnerup udnnerpu udnneurp
udnneupr udnnepur udnnepru udnnpreu udnnprue udnnperu udnnpeur udnnpuer udnnpure udneunrp udneunpr
udneurnp udneurpn udneuprn udneupnr udnenurp udnenupr udnenrup udnenrpu udnenpru udnenpur udnernup
udnernpu udnerunp udnerupn udnerpun udnerpnu udnepnru udnepnur udneprnu udneprun udnepurn udnepunr
udnpuner udnpunre udnpuenr udnpuern udnpuren udnpurne udnpnuer udnpnure udnpneur udnpneru udnpnreu
udnpnrue udnpenur udnpenru udnpeunr udnpeurn udnperun udnpernu udnprneu udnprnue udnprenu udnpreun
udnpruen udnprune

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History of cryptography
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