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: foughty
cipher variations:
gpvhiuz hqwijva irxjkwb jsyklxc ktzlmyd
luamnze mvbnoaf nwcopbg oxdpqch pyeqrdi
qzfrsej ragstfk sbhtugl tciuvhm udjvwin
vekwxjo wflxykp xgmyzlq yhnzamr zioabns
ajpbcot bkqcdpu clrdeqv dmsefrw entfgsx

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: foughty
Cipher: ulftsgb

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: foughty

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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: foughty
cipher variations:

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: foughty
Cipher: sbhtugl

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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: foughty
Cipher: 12435422324445

Extended Methods:
Method #1

Plaintext: foughty
method variations:

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
f o u g h t y 
1 4 5 2 3 4 4 
2 3 4 2 2 4 5 
They are then read out in rows:
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: foughty
Cipher: qksisgy

Read more ...
Method #3

Plaintext: foughty
method variations:
rximrte ximrter imrterx
mrterxi rterxim terximr

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: foughty

all 5040 cipher variations:
foughty foughyt fougthy fougtyh fougyth fougyht fouhgty fouhgyt fouhtgy fouhtyg fouhytg
fouhygt fouthgy fouthyg foutghy foutgyh foutygh foutyhg fouyhtg fouyhgt fouythg fouytgh
fouygth fouyght foguhty foguhyt foguthy fogutyh foguyth foguyht foghuty foghuyt foghtuy
foghtyu foghytu foghyut fogthuy fogthyu fogtuhy fogtuyh fogtyuh fogtyhu fogyhtu fogyhut
fogythu fogytuh fogyuth fogyuht fohguty fohguyt fohgtuy fohgtyu fohgytu fohgyut fohugty
fohugyt fohutgy fohutyg fohuytg fohuygt fohtugy fohtuyg fohtguy fohtgyu fohtygu fohtyug
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fotgyhu fothguy fothgyu fothugy fothuyg fothyug fothygu fotuhgy fotuhyg fotughy fotugyh
fotuygh fotuyhg fotyhug fotyhgu fotyuhg fotyugh fotyguh fotyghu foyghtu foyghut foygthu
foygtuh foyguth foyguht foyhgtu foyhgut foyhtgu foyhtug foyhutg foyhugt foythgu foythug
foytghu foytguh foytugh foytuhg foyuhtg foyuhgt foyuthg foyutgh foyugth foyught fuoghty
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htufgoy htufgyo htufogy htufoyg htufyog htufygo htuofgy htuofyg htuogfy htuogyf htuoygf
htuoyfg htuyfog htuyfgo htuyofg htuyogf htuygof htuygfo htgufoy htgufyo htguofy htguoyf
htguyof htguyfo htgfuoy htgfuyo htgfouy htgfoyu htgfyou htgfyuo htgofuy htgofyu htgoufy
htgouyf htgoyuf htgoyfu htgyfou htgyfuo htgyofu htgyouf htgyuof htgyufo htfguoy htfguyo
htfgouy htfgoyu htfgyou htfgyuo htfugoy htfugyo htfuogy htfuoyg htfuyog htfuygo htfougy
htfouyg htfoguy htfogyu htfoygu htfoyug htfyuog htfyugo htfyoug htfyogu htfygou htfyguo
htogfuy htogfyu htogufy htoguyf htogyuf htogyfu htofguy htofgyu htofugy htofuyg htofyug
htofygu htoufgy htoufyg htougfy htougyf htouygf htouyfg htoyfug htoyfgu htoyufg htoyugf
htoyguf htoygfu htygfou htygfuo htygofu htygouf htyguof htygufo htyfgou htyfguo htyfogu
htyfoug htyfuog htyfugo htyofgu htyofug htyogfu htyoguf htyougf htyoufg htyufog htyufgo
htyuofg htyuogf htyugof htyugfo hyugfto hyugfot hyugtfo hyugtof hyugotf hyugoft hyufgto
hyufgot hyuftgo hyuftog hyufotg hyufogt hyutfgo hyutfog hyutgfo hyutgof hyutogf hyutofg
hyuoftg hyuofgt hyuotfg hyuotgf hyuogtf hyuogft hygufto hygufot hygutfo hygutof hyguotf
hyguoft hygfuto hygfuot hygftuo hygftou hygfotu hygfout hygtfuo hygtfou hygtufo hygtuof
hygtouf hygtofu hygoftu hygofut hygotfu hygotuf hygoutf hygouft hyfguto hyfguot hyfgtuo
hyfgtou hyfgotu hyfgout hyfugto hyfugot hyfutgo hyfutog hyfuotg hyfuogt hyftugo hyftuog
hyftguo hyftgou hyftogu hyftoug hyfoutg hyfougt hyfotug hyfotgu hyfogtu hyfogut hytgfuo
hytgfou hytgufo hytguof hytgouf hytgofu hytfguo hytfgou hytfugo hytfuog hytfoug hytfogu
hytufgo hytufog hytugfo hytugof hytuogf hytuofg hytofug hytofgu hytoufg hytougf hytoguf
hytogfu hyogftu hyogfut hyogtfu hyogtuf hyogutf hyoguft hyofgtu hyofgut hyoftgu hyoftug
hyofutg hyofugt hyotfgu hyotfug hyotgfu hyotguf hyotugf hyotufg hyouftg hyoufgt hyoutfg
hyoutgf hyougtf hyougft toughfy toughyf tougfhy tougfyh tougyfh tougyhf touhgfy touhgyf
touhfgy touhfyg touhyfg touhygf toufhgy toufhyg toufghy toufgyh toufygh toufyhg touyhfg
touyhgf touyfhg touyfgh touygfh touyghf toguhfy toguhyf togufhy togufyh toguyfh toguyhf
toghufy toghuyf toghfuy toghfyu toghyfu toghyuf togfhuy togfhyu togfuhy togfuyh togfyuh
togfyhu togyhfu togyhuf togyfhu togyfuh togyufh togyuhf tohgufy tohguyf tohgfuy tohgfyu
tohgyfu tohgyuf tohugfy tohugyf tohufgy tohufyg tohuyfg tohuygf tohfugy tohfuyg tohfguy
tohfgyu tohfygu tohfyug tohyufg tohyugf tohyfug tohyfgu tohygfu tohyguf tofghuy tofghyu
tofguhy tofguyh tofgyuh tofgyhu tofhguy tofhgyu tofhugy tofhuyg tofhyug tofhygu tofuhgy
tofuhyg tofughy tofugyh tofuygh tofuyhg tofyhug tofyhgu tofyuhg tofyugh tofyguh tofyghu
toyghfu toyghuf toygfhu toygfuh toygufh toyguhf toyhgfu toyhguf toyhfgu toyhfug toyhufg
toyhugf toyfhgu toyfhug toyfghu toyfguh toyfugh toyfuhg toyuhfg toyuhgf toyufhg toyufgh
toyugfh toyughf tuoghfy tuoghyf tuogfhy tuogfyh tuogyfh tuogyhf tuohgfy tuohgyf tuohfgy
tuohfyg tuohyfg tuohygf tuofhgy tuofhyg tuofghy tuofgyh tuofygh tuofyhg tuoyhfg tuoyhgf
tuoyfhg tuoyfgh tuoygfh tuoyghf tugohfy tugohyf tugofhy tugofyh tugoyfh tugoyhf tughofy
tughoyf tughfoy tughfyo tughyfo tughyof tugfhoy tugfhyo tugfohy tugfoyh tugfyoh tugfyho
tugyhfo tugyhof tugyfho tugyfoh tugyofh tugyohf tuhgofy tuhgoyf tuhgfoy tuhgfyo tuhgyfo
tuhgyof tuhogfy tuhogyf tuhofgy tuhofyg tuhoyfg tuhoygf tuhfogy tuhfoyg tuhfgoy tuhfgyo
tuhfygo tuhfyog tuhyofg tuhyogf tuhyfog tuhyfgo tuhygfo tuhygof tufghoy tufghyo tufgohy
tufgoyh tufgyoh tufgyho tufhgoy tufhgyo tufhogy tufhoyg tufhyog tufhygo tufohgy tufohyg
tufoghy tufogyh tufoygh tufoyhg tufyhog tufyhgo tufyohg tufyogh tufygoh tufygho tuyghfo
tuyghof tuygfho tuygfoh tuygofh tuygohf tuyhgfo tuyhgof tuyhfgo tuyhfog tuyhofg tuyhogf
tuyfhgo tuyfhog tuyfgho tuyfgoh tuyfogh tuyfohg tuyohfg tuyohgf tuyofhg tuyofgh tuyogfh
tuyoghf tguohfy tguohyf tguofhy tguofyh tguoyfh tguoyhf tguhofy tguhoyf tguhfoy tguhfyo
tguhyfo tguhyof tgufhoy tgufhyo tgufohy tgufoyh tgufyoh tgufyho tguyhfo tguyhof tguyfho
tguyfoh tguyofh tguyohf tgouhfy tgouhyf tgoufhy tgoufyh tgouyfh tgouyhf tgohufy tgohuyf
tgohfuy tgohfyu tgohyfu tgohyuf tgofhuy tgofhyu tgofuhy tgofuyh tgofyuh tgofyhu tgoyhfu
tgoyhuf tgoyfhu tgoyfuh tgoyufh tgoyuhf tghoufy tghouyf tghofuy tghofyu tghoyfu tghoyuf
tghuofy tghuoyf tghufoy tghufyo tghuyfo tghuyof tghfuoy tghfuyo tghfouy tghfoyu tghfyou
tghfyuo tghyufo tghyuof tghyfuo tghyfou tghyofu tghyouf tgfohuy tgfohyu tgfouhy tgfouyh
tgfoyuh tgfoyhu tgfhouy tgfhoyu tgfhuoy tgfhuyo tgfhyuo tgfhyou tgfuhoy tgfuhyo tgfuohy
tgfuoyh tgfuyoh tgfuyho tgfyhuo tgfyhou tgfyuho tgfyuoh tgfyouh tgfyohu tgyohfu tgyohuf
tgyofhu tgyofuh tgyoufh tgyouhf tgyhofu tgyhouf tgyhfou tgyhfuo tgyhufo tgyhuof tgyfhou
tgyfhuo tgyfohu tgyfouh tgyfuoh tgyfuho tgyuhfo tgyuhof tgyufho tgyufoh tgyuofh tgyuohf
thugofy thugoyf thugfoy thugfyo thugyfo thugyof thuogfy thuogyf thuofgy thuofyg thuoyfg
thuoygf thufogy thufoyg thufgoy thufgyo thufygo thufyog thuyofg thuyogf thuyfog thuyfgo
thuygfo thuygof thguofy thguoyf thgufoy thgufyo thguyfo thguyof thgoufy thgouyf thgofuy
thgofyu thgoyfu thgoyuf thgfouy thgfoyu thgfuoy thgfuyo thgfyuo thgfyou thgyofu thgyouf
thgyfou thgyfuo thgyufo thgyuof thogufy thoguyf thogfuy thogfyu thogyfu thogyuf thougfy
thougyf thoufgy thoufyg thouyfg thouygf thofugy thofuyg thofguy thofgyu thofygu thofyug
thoyufg thoyugf thoyfug thoyfgu thoygfu thoyguf thfgouy thfgoyu thfguoy thfguyo thfgyuo
thfgyou thfoguy thfogyu thfougy thfouyg thfoyug thfoygu thfuogy thfuoyg thfugoy thfugyo
thfuygo thfuyog thfyoug thfyogu thfyuog thfyugo thfyguo thfygou thygofu thygouf thygfou
thygfuo thygufo thyguof thyogfu thyoguf thyofgu thyofug thyoufg thyougf thyfogu thyfoug
thyfgou thyfguo thyfugo thyfuog thyuofg thyuogf thyufog thyufgo thyugfo thyugof tfughoy
tfughyo tfugohy tfugoyh tfugyoh tfugyho tfuhgoy tfuhgyo tfuhogy tfuhoyg tfuhyog tfuhygo
tfuohgy tfuohyg tfuoghy tfuogyh tfuoygh tfuoyhg tfuyhog tfuyhgo tfuyohg tfuyogh tfuygoh
tfuygho tfguhoy tfguhyo tfguohy tfguoyh tfguyoh tfguyho tfghuoy tfghuyo tfghouy tfghoyu
tfghyou tfghyuo tfgohuy tfgohyu tfgouhy tfgouyh tfgoyuh tfgoyhu tfgyhou tfgyhuo tfgyohu
tfgyouh tfgyuoh tfgyuho tfhguoy tfhguyo tfhgouy tfhgoyu tfhgyou tfhgyuo tfhugoy tfhugyo
tfhuogy tfhuoyg tfhuyog tfhuygo tfhougy tfhouyg tfhoguy tfhogyu tfhoygu tfhoyug tfhyuog
tfhyugo tfhyoug tfhyogu tfhygou tfhyguo tfoghuy tfoghyu tfoguhy tfoguyh tfogyuh tfogyhu
tfohguy tfohgyu tfohugy tfohuyg tfohyug tfohygu tfouhgy tfouhyg tfoughy tfougyh tfouygh
tfouyhg tfoyhug tfoyhgu tfoyuhg tfoyugh tfoyguh tfoyghu tfyghou tfyghuo tfygohu tfygouh
tfyguoh tfyguho tfyhgou tfyhguo tfyhogu tfyhoug tfyhuog tfyhugo tfyohgu tfyohug tfyoghu
tfyoguh tfyough tfyouhg tfyuhog tfyuhgo tfyuohg tfyuogh tfyugoh tfyugho tyughfo tyughof
tyugfho tyugfoh tyugofh tyugohf tyuhgfo tyuhgof tyuhfgo tyuhfog tyuhofg tyuhogf tyufhgo
tyufhog tyufgho tyufgoh tyufogh tyufohg tyuohfg tyuohgf tyuofhg tyuofgh tyuogfh tyuoghf
tyguhfo tyguhof tygufho tygufoh tyguofh tyguohf tyghufo tyghuof tyghfuo tyghfou tyghofu
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tygoufh tygouhf tyhgufo tyhguof tyhgfuo tyhgfou tyhgofu tyhgouf tyhugfo tyhugof tyhufgo
tyhufog tyhuofg tyhuogf tyhfugo tyhfuog tyhfguo tyhfgou tyhfogu tyhfoug tyhoufg tyhougf
tyhofug tyhofgu tyhogfu tyhoguf tyfghuo tyfghou tyfguho tyfguoh tyfgouh tyfgohu tyfhguo
tyfhgou tyfhugo tyfhuog tyfhoug tyfhogu tyfuhgo tyfuhog tyfugho tyfugoh tyfuogh tyfuohg
tyfohug tyfohgu tyfouhg tyfough tyfoguh tyfoghu tyoghfu tyoghuf tyogfhu tyogfuh tyogufh
tyoguhf tyohgfu tyohguf tyohfgu tyohfug tyohufg tyohugf tyofhgu tyofhug tyofghu tyofguh
tyofugh tyofuhg tyouhfg tyouhgf tyoufhg tyoufgh tyougfh tyoughf youghtf youghft yougthf
yougtfh yougfth yougfht youhgtf youhgft youhtgf youhtfg youhftg youhfgt youthgf youthfg
youtghf youtgfh youtfgh youtfhg youfhtg youfhgt youfthg youftgh youfgth youfght yoguhtf
yoguhft yoguthf yogutfh yogufth yogufht yoghutf yoghuft yoghtuf yoghtfu yoghftu yoghfut
yogthuf yogthfu yogtuhf yogtufh yogtfuh yogtfhu yogfhtu yogfhut yogfthu yogftuh yogfuth
yogfuht yohgutf yohguft yohgtuf yohgtfu yohgftu yohgfut yohugtf yohugft yohutgf yohutfg
yohuftg yohufgt yohtugf yohtufg yohtguf yohtgfu yohtfgu yohtfug yohfutg yohfugt yohftug
yohftgu yohfgtu yohfgut yotghuf yotghfu yotguhf yotgufh yotgfuh yotgfhu yothguf yothgfu
yothugf yothufg yothfug yothfgu yotuhgf yotuhfg yotughf yotugfh yotufgh yotufhg yotfhug
yotfhgu yotfuhg yotfugh yotfguh yotfghu yofghtu yofghut yofgthu yofgtuh yofguth yofguht
yofhgtu yofhgut yofhtgu yofhtug yofhutg yofhugt yofthgu yofthug yoftghu yoftguh yoftugh
yoftuhg yofuhtg yofuhgt yofuthg yofutgh yofugth yofught yuoghtf yuoghft yuogthf yuogtfh
yuogfth yuogfht yuohgtf yuohgft yuohtgf yuohtfg yuohftg yuohfgt yuothgf yuothfg yuotghf
yuotgfh yuotfgh yuotfhg yuofhtg yuofhgt yuofthg yuoftgh yuofgth yuofght yugohtf yugohft
yugothf yugotfh yugofth yugofht yughotf yughoft yughtof yughtfo yughfto yughfot yugthof
yugthfo yugtohf yugtofh yugtfoh yugtfho yugfhto yugfhot yugftho yugftoh yugfoth yugfoht
yuhgotf yuhgoft yuhgtof yuhgtfo yuhgfto yuhgfot yuhogtf yuhogft yuhotgf yuhotfg yuhoftg
yuhofgt yuhtogf yuhtofg yuhtgof yuhtgfo yuhtfgo yuhtfog yuhfotg yuhfogt yuhftog yuhftgo
yuhfgto yuhfgot yutghof yutghfo yutgohf yutgofh yutgfoh yutgfho yuthgof yuthgfo yuthogf
yuthofg yuthfog yuthfgo yutohgf yutohfg yutoghf yutogfh yutofgh yutofhg yutfhog yutfhgo
yutfohg yutfogh yutfgoh yutfgho yufghto yufghot yufgtho yufgtoh yufgoth yufgoht yufhgto
yufhgot yufhtgo yufhtog yufhotg yufhogt yufthgo yufthog yuftgho yuftgoh yuftogh yuftohg
yufohtg yufohgt yufothg yufotgh yufogth yufoght yguohtf yguohft yguothf yguotfh yguofth
yguofht yguhotf yguhoft yguhtof yguhtfo yguhfto yguhfot yguthof yguthfo ygutohf ygutofh
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ygoutfh ygoufth ygoufht ygohutf ygohuft ygohtuf ygohtfu ygohftu ygohfut ygothuf ygothfu
ygotuhf ygotufh ygotfuh ygotfhu ygofhtu ygofhut ygofthu ygoftuh ygofuth ygofuht yghoutf
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yghtuof yghtufo yghtouf yghtofu yghtfou yghtfuo yghfuto yghfuot yghftuo yghftou yghfotu
yghfout ygtohuf ygtohfu ygtouhf ygtoufh ygtofuh ygtofhu ygthouf ygthofu ygthuof ygthufo
ygthfuo ygthfou ygtuhof ygtuhfo ygtuohf ygtuofh ygtufoh ygtufho ygtfhuo ygtfhou ygtfuho
ygtfuoh ygtfouh ygtfohu ygfohtu ygfohut ygfothu ygfotuh ygfouth ygfouht ygfhotu ygfhout
ygfhtou ygfhtuo ygfhuto ygfhuot ygfthou ygfthuo ygftohu ygftouh ygftuoh ygftuho ygfuhto
ygfuhot ygfutho ygfutoh ygfuoth ygfuoht yhugotf yhugoft yhugtof yhugtfo yhugfto yhugfot
yhuogtf yhuogft yhuotgf yhuotfg yhuoftg yhuofgt yhutogf yhutofg yhutgof yhutgfo yhutfgo
yhutfog yhufotg yhufogt yhuftog yhuftgo yhufgto yhufgot yhguotf yhguoft yhgutof yhgutfo
yhgufto yhgufot yhgoutf yhgouft yhgotuf yhgotfu yhgoftu yhgofut yhgtouf yhgtofu yhgtuof
yhgtufo yhgtfuo yhgtfou yhgfotu yhgfout yhgftou yhgftuo yhgfuto yhgfuot yhogutf yhoguft
yhogtuf yhogtfu yhogftu yhogfut yhougtf yhougft yhoutgf yhoutfg yhouftg yhoufgt yhotugf
yhotufg yhotguf yhotgfu yhotfgu yhotfug yhofutg yhofugt yhoftug yhoftgu yhofgtu yhofgut
yhtgouf yhtgofu yhtguof yhtgufo yhtgfuo yhtgfou yhtoguf yhtogfu yhtougf yhtoufg yhtofug
yhtofgu yhtuogf yhtuofg yhtugof yhtugfo yhtufgo yhtufog yhtfoug yhtfogu yhtfuog yhtfugo
yhtfguo yhtfgou yhfgotu yhfgout yhfgtou yhfgtuo yhfguto yhfguot yhfogtu yhfogut yhfotgu
yhfotug yhfoutg yhfougt yhftogu yhftoug yhftgou yhftguo yhftugo yhftuog yhfuotg yhfuogt
yhfutog yhfutgo yhfugto yhfugot ytughof ytughfo ytugohf ytugofh ytugfoh ytugfho ytuhgof
ytuhgfo ytuhogf ytuhofg ytuhfog ytuhfgo ytuohgf ytuohfg ytuoghf ytuogfh ytuofgh ytuofhg
ytufhog ytufhgo ytufohg ytufogh ytufgoh ytufgho ytguhof ytguhfo ytguohf ytguofh ytgufoh
ytgufho ytghuof ytghufo ytghouf ytghofu ytghfou ytghfuo ytgohuf ytgohfu ytgouhf ytgoufh
ytgofuh ytgofhu ytgfhou ytgfhuo ytgfohu ytgfouh ytgfuoh ytgfuho ythguof ythgufo ythgouf
ythgofu ythgfou ythgfuo ythugof ythugfo ythuogf ythuofg ythufog ythufgo ythougf ythoufg
ythoguf ythogfu ythofgu ythofug ythfuog ythfugo ythfoug ythfogu ythfgou ythfguo ytoghuf
ytoghfu ytoguhf ytogufh ytogfuh ytogfhu ytohguf ytohgfu ytohugf ytohufg ytohfug ytohfgu
ytouhgf ytouhfg ytoughf ytougfh ytoufgh ytoufhg ytofhug ytofhgu ytofuhg ytofugh ytofguh
ytofghu ytfghou ytfghuo ytfgohu ytfgouh ytfguoh ytfguho ytfhgou ytfhguo ytfhogu ytfhoug
ytfhuog ytfhugo ytfohgu ytfohug ytfoghu ytfoguh ytfough ytfouhg ytfuhog ytfuhgo ytfuohg
ytfuogh ytfugoh ytfugho yfughto yfughot yfugtho yfugtoh yfugoth yfugoht yfuhgto yfuhgot
yfuhtgo yfuhtog yfuhotg yfuhogt yfuthgo yfuthog yfutgho yfutgoh yfutogh yfutohg yfuohtg
yfuohgt yfuothg yfuotgh yfuogth yfuoght yfguhto yfguhot yfgutho yfgutoh yfguoth yfguoht
yfghuto yfghuot yfghtuo yfghtou yfghotu yfghout yfgthuo yfgthou yfgtuho yfgtuoh yfgtouh
yfgtohu yfgohtu yfgohut yfgothu yfgotuh yfgouth yfgouht yfhguto yfhguot yfhgtuo yfhgtou
yfhgotu yfhgout yfhugto yfhugot yfhutgo yfhutog yfhuotg yfhuogt yfhtugo yfhtuog yfhtguo
yfhtgou yfhtogu yfhtoug yfhoutg yfhougt yfhotug yfhotgu yfhogtu yfhogut yftghuo yftghou
yftguho yftguoh yftgouh yftgohu yfthguo yfthgou yfthugo yfthuog yfthoug yfthogu yftuhgo
yftuhog yftugho yftugoh yftuogh yftuohg yftohug yftohgu yftouhg yftough yftoguh yftoghu
yfoghtu yfoghut yfogthu yfogtuh yfoguth yfoguht yfohgtu yfohgut yfohtgu yfohtug yfohutg
yfohugt yfothgu yfothug yfotghu yfotguh yfotugh yfotuhg yfouhtg yfouhgt yfouthg yfoutgh
yfougth yfought

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History of cryptography
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