easy ciphers

Easy Ciphers Tools:
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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: vidovich
cipher variations:
wjepwjdi xkfqxkej ylgrylfk zmhszmgl anitanhm
bojuboin cpkvcpjo dqlwdqkp ermxerlq fsnyfsmr
gtozgtns hupahuot ivqbivpu jwrcjwqv kxsdkxrw
lytelysx mzufmzty navgnauz obwhobva pcxipcwb
qdyjqdxc rezkreyd sfalsfze tgbmtgaf uhcnuhbg

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: vidovich
Cipher: erwlerxs

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: vidovich
Cipher: BBBAB ABAAA AAABB ABBAB BBBAB ABAAA AAABA AABBB

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: vidovich
cipher variations: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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: vidovich
Cipher: ivqbivpu

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: vidovich
Cipher: 1542414315423132

Extended Methods:
Method #1

Plaintext: vidovich
method variations:
aoitaohnftoyftnslytdlysxqdyiqdxc

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
v i d o v i c h 
1 4 4 4 1 4 3 3 
5 2 1 3 5 2 1 2 
They are then read out in rows:
1444143352135212
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: vidovich
Cipher: qtqnklkf

Read more ...
Method #3

Plaintext: vidovich
method variations:
urqcumlb rqcumlbu qcumlbur
cumlburq umlburqc mlburqcu
lburqcum burqcuml

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: vidovich

first 5040 cipher variations(40320 total)
vidovich vidovihc vidovcih vidovchi vidovhci vidovhic vidoivch vidoivhc vidoicvh vidoichv vidoihcv
vidoihvc vidocivh vidocihv vidocvih vidocvhi vidochvi vidochiv vidohicv vidohivc vidohciv vidohcvi
vidohvci vidohvic vidvoich vidvoihc vidvocih vidvochi vidvohci vidvohic vidvioch vidviohc vidvicoh
vidvicho vidvihco vidvihoc vidvcioh vidvciho vidvcoih vidvcohi vidvchoi vidvchio vidvhico vidvhioc
vidvhcio vidvhcoi vidvhoci vidvhoic vidivoch vidivohc vidivcoh vidivcho vidivhco vidivhoc vidiovch
vidiovhc vidiocvh vidiochv vidiohcv vidiohvc vidicovh vidicohv vidicvoh vidicvho vidichvo vidichov
vidihocv vidihovc vidihcov vidihcvo vidihvco vidihvoc vidcvioh vidcviho vidcvoih vidcvohi vidcvhoi
vidcvhio vidcivoh vidcivho vidciovh vidciohv vidcihov vidcihvo vidcoivh vidcoihv vidcovih vidcovhi
vidcohvi vidcohiv vidchiov vidchivo vidchoiv vidchovi vidchvoi vidchvio vidhvico vidhvioc vidhvcio
vidhvcoi vidhvoci vidhvoic vidhivco vidhivoc vidhicvo vidhicov vidhiocv vidhiovc vidhcivo vidhciov
vidhcvio vidhcvoi vidhcovi vidhcoiv vidhoicv vidhoivc vidhociv vidhocvi vidhovci vidhovic viodvich
viodvihc viodvcih viodvchi viodvhci viodvhic viodivch viodivhc viodicvh viodichv viodihcv viodihvc
viodcivh viodcihv viodcvih viodcvhi viodchvi viodchiv viodhicv viodhivc viodhciv viodhcvi viodhvci
viodhvic viovdich viovdihc viovdcih viovdchi viovdhci viovdhic viovidch viovidhc viovicdh viovichd
viovihcd viovihdc viovcidh viovcihd viovcdih viovcdhi viovchdi viovchid viovhicd viovhidc viovhcid
viovhcdi viovhdci viovhdic vioivdch vioivdhc vioivcdh vioivchd vioivhcd vioivhdc vioidvch vioidvhc
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viocivdh viocivhd viocidvh viocidhv viocihdv viocihvd viocdivh viocdihv viocdvih viocdvhi viocdhvi
viocdhiv viochidv viochivd viochdiv viochdvi viochvdi viochvid viohvicd viohvidc viohvcid viohvcdi
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viohcvdi viohcdvi viohcdiv viohdicv viohdivc viohdciv viohdcvi viohdvci viohdvic vivodich vivodihc
vivodcih vivodchi vivodhci vivodhic vivoidch vivoidhc vivoicdh vivoichd vivoihcd vivoihdc vivocidh
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vivchiod vivchido vivchoid vivchodi vivchdoi vivchdio vivhdico vivhdioc vivhdcio vivhdcoi vivhdoci
vivhdoic vivhidco vivhidoc vivhicdo vivhicod vivhiocd vivhiodc vivhcido vivhciod vivhcdio vivhcdoi
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vdvhoici vdvhoiic vdiovich vdiovihc vdiovcih vdiovchi vdiovhci vdiovhic vdioivch vdioivhc vdioicvh
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voivihdc voivcidh voivcihd voivcdih voivcdhi voivchdi voivchid voivhicd voivhidc voivhcid voivhcdi
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voiicvhd voiichvd voiichdv voiihdcv voiihdvc voiihcdv voiihcvd voiihvcd voiihvdc voividch voividhc
voivicdh voivichd voivihcd voivihdc voivdich voivdihc voivdcih voivdchi voivdhci voivdhic voivcdih
voivcdhi voivcidh voivcihd voivchid voivchdi voivhdci voivhdic voivhcdi voivhcid voivhicd voivhidc
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voidhvci voidhvic voicvdih voicvdhi voicvidh voicvihd voicvhid voicvhdi voicdvih voicdvhi voicdivh
voicdihv voicdhiv voicdhvi voicidvh voicidhv voicivdh voicivhd voicihvd voicihdv voichdiv voichdvi
voichidv voichivd voichvid voichvdi voihvdci voihvdic voihvcdi voihvcid voihvicd voihvidc voihdvci
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vocivihd vocivdih vocivdhi vocivhdi vocivhid vociivdh vociivhd vociidvh vociidhv vociihdv vociihvd
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vocdhivi vocdhvii vocdhvii vochvidi vochviid vochvdii vochvdii vochvidi vochviid vochivdi vochivid
vochidvi vochidiv vochiidv vochiivd vochdivi vochdiiv vochdvii vochdvii vochdivi vochdiiv vochiidv
vochiivd vochidiv vochidvi vochivdi vochivid vohivicd vohividc vohivcid vohivcdi vohivdci vohivdic
vohiivcd vohiivdc vohiicvd vohiicdv vohiidcv vohiidvc vohicivd vohicidv vohicvid vohicvdi vohicdvi
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vohcidvi vohciivd vohciidv vohcivid vohcivdi vohcidvi vohcidiv vohcdiiv vohcdivi vohcdiiv vohcdivi
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vvdciiho vvdcioih vvdciohi vvdcihoi vvdcihio vvdciioh vvdciiho vvdcioih vvdciohi vvdcihoi vvdcihio
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vvdchiio vvdhiico vvdhiioc vvdhicio vvdhicoi vvdhioci vvdhioic vvdhiico vvdhiioc vvdhicio vvdhicoi
vvdhioci vvdhioic vvdhciio vvdhcioi vvdhciio vvdhcioi vvdhcoii vvdhcoii vvdhoici vvdhoiic vvdhocii
vvdhocii vvdhoici vvdhoiic vvodiich vvodiihc vvodicih vvodichi vvodihci vvodihic vvodiich vvodiihc
vvodicih vvodichi vvodihci vvodihic vvodciih vvodcihi vvodciih vvodcihi vvodchii vvodchii vvodhici
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vvoichid vvoihicd vvoihidc vvoihcid vvoihcdi vvoihdci vvoihdic vvoiidch vvoiidhc vvoiicdh vvoiichd
vvoiihcd vvoiihdc vvoidich vvoidihc vvoidcih vvoidchi vvoidhci vvoidhic vvoicdih vvoicdhi vvoicidh
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vvocidih vvocidhi vvocihdi vvocihid vvociidh vvociihd vvocidih vvocidhi vvocihdi vvocihid vvocdiih
vvocdihi vvocdiih vvocdihi vvocdhii vvocdhii vvochidi vvochiid vvochdii vvochdii vvochidi vvochiid
vvohiicd vvohiidc vvohicid vvohicdi vvohidci vvohidic vvohiicd vvohiidc vvohicid vvohicdi vvohidci
vvohidic vvohciid vvohcidi vvohciid vvohcidi vvohcdii vvohcdii vvohdici vvohdiic vvohdcii vvohdcii
vvohdici vvohdiic vviodich vviodihc vviodcih vviodchi vviodhci vviodhic vvioidch vvioidhc vvioicdh
vvioichd vvioihcd vvioihdc vviocidh vviocihd vviocdih vviocdhi vviochdi vviochid vviohicd vviohidc
vviohcid vviohcdi vviohdci vviohdic vvidoich vvidoihc vvidocih vvidochi vvidohci vvidohic vvidioch
vvidiohc vvidicoh vvidicho vvidihco vvidihoc vvidcioh vvidciho vvidcoih vvidcohi vvidchoi vvidchio
vvidhico vvidhioc vvidhcio vvidhcoi vvidhoci vvidhoic vviidoch vviidohc vviidcoh vviidcho vviidhco
vviidhoc vviiodch vviiodhc vviiocdh vviiochd vviiohcd vviiohdc vviicodh vviicohd vviicdoh vviicdho
vviichdo vviichod vviihocd vviihodc vviihcod vviihcdo vviihdco vviihdoc vvicdioh vvicdiho vvicdoih
vvicdohi vvicdhoi vvicdhio vvicidoh vvicidho vviciodh vviciohd vvicihod vvicihdo vvicoidh vvicoihd
vvicodih vvicodhi vvicohdi vvicohid vvichiod vvichido vvichoid vvichodi vvichdoi vvichdio vvihdico
vvihdioc vvihdcio vvihdcoi vvihdoci vvihdoic vvihidco vvihidoc vvihicdo vvihicod vvihiocd vvihiodc
vvihcido vvihciod vvihcdio vvihcdoi vvihcodi vvihcoid vvihoicd vvihoidc vvihocid vvihocdi vvihodci
vvihodic vvioidch vvioidhc vvioicdh vvioichd vvioihcd vvioihdc vviodich vviodihc vviodcih vviodchi
vviodhci vviodhic vviocdih vviocdhi vviocidh vviocihd vviochid vviochdi vviohdci vviohdic vviohcdi
vviohcid vviohicd vviohidc vviiodch vviiodhc vviiocdh vviiochd vviiohcd vviiohdc vviidoch vviidohc
vviidcoh vviidcho vviidhco vviidhoc vviicdoh vviicdho vviicodh vviicohd vviichod vviichdo vviihdco
vviihdoc vviihcdo vviihcod vviihocd vviihodc vvidioch vvidiohc vvidicoh vvidicho vvidihco vvidihoc
vvidoich vvidoihc vvidocih vvidochi vvidohci vvidohic vvidcoih vvidcohi vvidcioh vvidciho vvidchio
vvidchoi vvidhoci vvidhoic vvidhcoi vvidhcio vvidhico vvidhioc vvicidoh vvicidho vviciodh vviciohd
vvicihod vvicihdo vvicdioh vvicdiho vvicdoih vvicdohi vvicdhoi vvicdhio vvicodih vvicodhi vvicoidh
vvicoihd vvicohid vvicohdi vvichdoi vvichdio vvichodi vvichoid vvichiod vvichido vvihidco vvihidoc
vvihicdo vvihicod vvihiocd vvihiodc vvihdico vvihdioc vvihdcio vvihdcoi vvihdoci vvihdoic vvihcdio
vvihcdoi vvihcido vvihciod vvihcoid vvihcodi vvihodci vvihodic vvihocdi vvihocid vvihoicd vvihoidc
vvcoiidh vvcoiihd vvcoidih vvcoidhi vvcoihdi vvcoihid vvcoiidh vvcoiihd vvcoidih vvcoidhi vvcoihdi
vvcoihid vvcodiih vvcodihi vvcodiih vvcodihi vvcodhii vvcodhii vvcohidi vvcohiid vvcohdii vvcohdii
vvcohidi vvcohiid vvcioidh vvcioihd vvciodih vvciodhi vvciohdi vvciohid vvciiodh vvciiohd vvciidoh
vvciidho vvciihdo vvciihod vvcidioh vvcidiho vvcidoih vvcidohi vvcidhoi vvcidhio vvcihido vvcihiod
vvcihdio vvcihdoi vvcihodi vvcihoid vvciiodh vvciiohd vvciidoh vvciidho vvciihdo vvciihod vvcioidh
vvcioihd vvciodih vvciodhi vvciohdi vvciohid vvcidoih vvcidohi vvcidioh vvcidiho vvcidhio vvcidhoi
vvcihodi vvcihoid vvcihdoi vvcihdio vvcihido vvcihiod vvcdiioh vvcdiiho vvcdioih vvcdiohi vvcdihoi
vvcdihio vvcdiioh vvcdiiho vvcdioih vvcdiohi vvcdihoi vvcdihio vvcdoiih vvcdoihi vvcdoiih vvcdoihi
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vhovciid vhovcdii vhovcdii vhovcidi vhovciid vhoviicd vhoviidc vhovicid vhovicdi vhovidci vhovidic
vhoivdci vhoivdic vhoivcdi vhoivcid vhoivicd vhoividc vhoidvci vhoidvic vhoidcvi vhoidciv vhoidicv
vhoidivc vhoicdvi vhoicdiv vhoicvdi vhoicvid vhoicivd vhoicidv vhoiidcv vhoiidvc vhoiicdv vhoiicvd
vhoiivcd vhoiivdc vhocvidi vhocviid vhocvdii vhocvdii vhocvidi vhocviid vhocivdi vhocivid vhocidvi
vhocidiv vhociidv vhociivd vhocdivi vhocdiiv vhocdvii vhocdvii vhocdivi vhocdiiv vhociidv vhociivd
vhocidiv vhocidvi vhocivdi vhocivid vhoivicd vhoividc vhoivcid vhoivcdi vhoivdci vhoivdic vhoiivcd
vhoiivdc vhoiicvd vhoiicdv vhoiidcv vhoiidvc vhoicivd vhoicidv vhoicvid vhoicvdi vhoicdvi vhoicdiv
vhoidicv vhoidivc vhoidciv vhoidcvi vhoidvci vhoidvic vhvodici vhvodiic vhvodcii vhvodcii vhvodici
vhvodiic vhvoidci vhvoidic vhvoicdi vhvoicid vhvoiicd vhvoiidc vhvocidi vhvociid vhvocdii vhvocdii
vhvocidi vhvociid vhvoiicd vhvoiidc vhvoicid vhvoicdi vhvoidci vhvoidic vhvdoici vhvdoiic vhvdocii
vhvdocii vhvdoici vhvdoiic vhvdioci vhvdioic vhvdicoi vhvdicio vhvdiico vhvdiioc vhvdcioi vhvdciio
vhvdcoii vhvdcoii vhvdcioi vhvdciio vhvdiico vhvdiioc vhvdicio vhvdicoi vhvdioci vhvdioic vhvidoci
vhvidoic vhvidcoi vhvidcio vhvidico vhvidioc vhviodci vhviodic vhviocdi vhviocid vhvioicd vhvioidc
vhvicodi vhvicoid vhvicdoi vhvicdio vhvicido vhviciod vhviiocd vhviiodc vhviicod vhviicdo vhviidco
vhviidoc vhvcdioi vhvcdiio vhvcdoii vhvcdoii vhvcdioi vhvcdiio vhvcidoi vhvcidio vhvciodi vhvcioid
vhvciiod vhvciido vhvcoidi vhvcoiid vhvcodii vhvcodii vhvcoidi vhvcoiid vhvciiod vhvciido vhvcioid
vhvciodi vhvcidoi vhvcidio vhvidico vhvidioc vhvidcio vhvidcoi vhvidoci vhvidoic vhviidco vhviidoc
vhviicdo vhviicod vhviiocd vhviiodc vhvicido vhviciod vhvicdio vhvicdoi vhvicodi vhvicoid vhvioicd
vhvioidc vhviocid vhviocdi vhviodci vhviodic vhiovdci vhiovdic vhiovcdi vhiovcid vhiovicd vhiovidc
vhiodvci vhiodvic vhiodcvi vhiodciv vhiodicv vhiodivc vhiocdvi vhiocdiv vhiocvdi vhiocvid vhiocivd
vhiocidv vhioidcv vhioidvc vhioicdv vhioicvd vhioivcd vhioivdc vhivodci vhivodic vhivocdi vhivocid
vhivoicd vhivoidc vhivdoci vhivdoic vhivdcoi vhivdcio vhivdico vhivdioc vhivcdoi vhivcdio vhivcodi
vhivcoid vhivciod vhivcido vhividco vhividoc vhivicdo vhivicod vhiviocd vhiviodc vhidvoci vhidvoic
vhidvcoi vhidvcio vhidvico vhidvioc vhidovci vhidovic vhidocvi vhidociv vhidoicv vhidoivc vhidcovi
vhidcoiv vhidcvoi vhidcvio vhidcivo vhidciov vhidiocv vhidiovc vhidicov vhidicvo vhidivco vhidivoc
vhicvdoi vhicvdio vhicvodi vhicvoid vhicviod vhicvido vhicdvoi vhicdvio vhicdovi vhicdoiv vhicdiov
vhicdivo vhicodvi vhicodiv vhicovdi vhicovid vhicoivd vhicoidv vhicidov vhicidvo vhiciodv vhiciovd
vhicivod vhicivdo vhiivdco vhiivdoc vhiivcdo vhiivcod vhiivocd vhiivodc vhiidvco vhiidvoc vhiidcvo
vhiidcov vhiidocv vhiidovc vhiicdvo vhiicdov vhiicvdo vhiicvod vhiicovd vhiicodv vhiiodcv vhiiodvc
vhiiocdv vhiiocvd vhiiovcd vhiiovdc vhcovidi vhcoviid vhcovdii vhcovdii vhcovidi vhcoviid vhcoivdi
vhcoivid vhcoidvi vhcoidiv vhcoiidv vhcoiivd vhcodivi vhcodiiv vhcodvii vhcodvii vhcodivi vhcodiiv
vhcoiidv vhcoiivd vhcoidiv vhcoidvi vhcoivdi vhcoivid vhcvoidi vhcvoiid vhcvodii vhcvodii vhcvoidi
vhcvoiid vhcviodi vhcvioid vhcvidoi vhcvidio vhcviido vhcviiod vhcvdioi vhcvdiio vhcvdoii vhcvdoii
vhcvdioi vhcvdiio vhcviido vhcviiod vhcvidio vhcvidoi vhcviodi vhcvioid vhcivodi vhcivoid vhcivdoi
vhcivdio vhcivido vhciviod vhciovdi vhciovid vhciodvi vhciodiv vhcioidv vhcioivd vhcidovi vhcidoiv
vhcidvoi vhcidvio vhcidivo vhcidiov vhciiodv vhciiovd vhciidov vhciidvo vhciivdo vhciivod vhcdvioi
vhcdviio vhcdvoii vhcdvoii vhcdvioi vhcdviio vhcdivoi vhcdivio vhcdiovi vhcdioiv vhcdiiov vhcdiivo
vhcdoivi vhcdoiiv vhcdovii vhcdovii vhcdoivi vhcdoiiv vhcdiiov vhcdiivo vhcdioiv vhcdiovi vhcdivoi
vhcdivio vhcivido vhciviod vhcivdio vhcivdoi vhcivodi vhcivoid vhciivdo vhciivod vhciidvo vhciidov
vhciiodv vhciiovd vhcidivo vhcidiov vhcidvio vhcidvoi vhcidovi vhcidoiv vhcioidv vhcioivd vhciodiv
vhciodvi vhciovdi vhciovid vhiovicd vhiovidc vhiovcid vhiovcdi vhiovdci vhiovdic vhioivcd vhioivdc
vhioicvd vhioicdv vhioidcv vhioidvc vhiocivd vhiocidv vhiocvid vhiocvdi vhiocdvi vhiocdiv vhiodicv
vhiodivc vhiodciv vhiodcvi vhiodvci vhiodvic vhivoicd vhivoidc vhivocid vhivocdi vhivodci vhivodic
vhiviocd vhiviodc vhivicod vhivicdo vhividco vhividoc vhivciod vhivcido vhivcoid vhivcodi vhivcdoi
vhivcdio vhivdico vhivdioc vhivdcio vhivdcoi vhivdoci vhivdoic vhiivocd vhiivodc vhiivcod vhiivcdo
vhiivdco vhiivdoc vhiiovcd vhiiovdc vhiiocvd vhiiocdv vhiiodcv vhiiodvc vhiicovd vhiicodv vhiicvod
vhiicvdo vhiicdvo vhiicdov vhiidocv vhiidovc vhiidcov vhiidcvo vhiidvco vhiidvoc vhicviod vhicvido
vhicvoid vhicvodi vhicvdoi vhicvdio vhicivod vhicivdo vhiciovd vhiciodv vhicidov vhicidvo vhicoivd
vhicoidv vhicovid vhicovdi vhicodvi vhicodiv vhicdiov vhicdivo vhicdoiv vhicdovi vhicdvoi vhicdvio
vhidvico vhidvioc vhidvcio vhidvcoi vhidvoci vhidvoic vhidivco vhidivoc vhidicvo vhidicov vhidiocv
vhidiovc vhidcivo vhidciov vhidcvio vhidcvoi vhidcovi vhidcoiv vhidoicv vhidoivc vhidociv vhidocvi
vhidovci vhidovic

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History of cryptography
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