easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

autotypography

persuadably

athyridae

untransfused

hardishrew

tranquiler

plowpoint

shuthalhites

microthamnion

meshullam

avitia

transgenerations

waired

mordecai

intinerario

tyrihans

speraretis

piute


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: delphifalls
cipher variations:
efmqijgbmmt fgnrjkhcnnu ghosklidoov hiptlmjeppw ijqumnkfqqx
jkrvnolgrry klswopmhssz lmtxpqnitta mnuyqrojuub novzrspkvvc
opwastqlwwd pqxbturmxxe qrycuvsnyyf rszdvwtozzg staewxupaah
tubfxyvqbbi uvcgyzwrccj vwdhzaxsddk wxeiabyteel xyfjbczuffm
yzgkcdavggn zahldebwhho abimefcxiip bcjnfgdyjjq cdkoghezkkr

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: delphifalls
Cipher: wvoksruzooh

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: delphifalls
Cipher: AAABB AABAA ABABA ABBBA AABBB ABAAA AABAB AAAAA ABABA ABABA BAAAB

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: delphifalls
cipher variations:
efmqijgbmmtkniuwzqbiidqveykpabeenwdacyfkbaaxclwgmvubwwhitskalebssrujkscrybkklargwqhibggv
gzcaexsbccfmhyesncbyypspuigdmbuuzyxqmutwbqqjfgnrjkhcnnulojvxarcjjerwfzlqbcffoxebdzglcbby
dmxhnwvcxxijutlbmfcttsvkltdszcllmbshxrijchhwhadbfytcddgnizftodczzqtqvjhencvvazyrnvuxcrrk
ghosklidoovmpkwybsdkkfsxgamrcdggpyfceahmdcczenyioxwdyyjkvumcngduutwlmuetadmmnctiysjkdiix
ibecgzudeehojagupedaarurwkifodwwbazsowvydsslhiptlmjeppwnqlxzctellgtyhbnsdehhqzgdfbinedda
fozjpyxezzklwvndohevvuxmnvfubennodujztklejjyjcfdhaveffipkbhvqfebbsvsxljgpexxcbatpxwzettm
ijqumnkfqqxormyadufmmhuzicotefiirahegcjofeebgpakqzyfaalmxwoepifwwvynowgvcfoopevkaulmfkkz
kdgeibwfggjqlciwrgfcctwtymkhqfyydcbuqyxafuunjkrvnolgrrypsnzbevgnnivajdpufgjjsbifhdkpgffc
hqblrazgbbmnyxpfqjgxxwzopxhwdgppqfwlbvmngllalehfjcxghhkrmdjxshgdduxuznlirgzzedcvrzybgvvo
klswopmhsszqtoacfwhoojwbkeqvghkktcjgielqhggdircmsbahccnozyqgrkhyyxapqyixehqqrgxmcwnohmmb
mfigkdyhiilsnekytiheevyvaomjshaafedwsazchwwplmtxpqnittarupbdgxippkxclfrwhilludkhjfmrihhe
jsdntcbiddopazrhslizzybqrzjyfirrshyndxopinncngjhlezijjmtoflzujiffwzwbpnktibbgfextbadixxq
mnuyqrojuubsvqcehyjqqlydmgsxijmmvelikgnsjiifkteoudcjeepqbasitmjaazcrsakzgjsstizoeypqjood
ohkimfajkknupgmavkjggxaxcqolujcchgfyucbejyyrnovzrspkvvctwrdfizkrrmzenhtyjknnwfmjlhotkjjg
lufpvedkffqrcbtjunkbbadstblahkttujapfzqrkppepiljngbkllovqhnbwlkhhybydrpmvkddihgzvdcfkzzs
opwastqlwwduxsegjalssnafoiuzklooxgnkmipulkkhmvgqwfelggrsdcukvolccbetucmbiluuvkbqgarslqqf
qjmkohclmmpwriocxmliizczesqnwleejihawedglaatpqxbturmxxevytfhkbmttobgpjvalmppyholnjqvmlli
nwhrxgfmhhstedvlwpmddcfuvdncjmvvwlcrhbstmrrgrknlpidmnnqxsjpdynmjjadaftroxmffkjibxfehmbbu
qrycuvsnyyfwzugilcnuupchqkwbmnqqzipmokrwnmmjoxisyhgniitufewmxqneedgvweodknwwxmdsictunssh
slomqjenoorytkqezonkkbebguspyngglkjcygfinccvrszdvwtozzgxavhjmdovvqdirlxcnorrajqnplsxonnk
pyjtzihojjuvgfxnyroffehwxfpeloxxynetjduvottitmpnrkfoppszulrfapollcfchvtqzohhmlkdzhgjoddw
staewxupaahybwiknepwwrejsmydopssbkroqmtypoolqzkuajipkkvwhgyozspggfixygqfmpyyzofukevwpuuj
unqoslgpqqtavmsgbqpmmdgdiwurapiinmleaihkpeextubfxyvqbbizcxjlofqxxsfktnzepqttclsprnuzqppm
ralvbkjqllwxihzpatqhhgjyzhrgnqzzapgvlfwxqvvkvorptmhqrrubwnthcrqnnehejxvsbqjjonmfbjilqffy
uvcgyzwrccjadykmpgryytgluoafqruudmtqsovarqqnsbmwclkrmmxyjiaqburiihkzaishoraabqhwmgxyrwwl
wpsqunirssvcxouidsroofifkywtcrkkpongckjmrggzvwdhzaxsddkbezlnqhszzuhmvpbgrsvvenurtpwbsrro
tcnxdmlsnnyzkjbrcvsjjilabjtipsbbcrixnhyzsxxmxqtrvojsttwdypvjetsppgjglzxudsllqpohdlknshha
wxeiabyteelcfamoritaavinwqchstwwfovsuqxctsspudoyenmtoozalkcsdwtkkjmbckujqtccdsjyoizatyyn
yruswpktuuxezqwkfutqqhkhmayvetmmrqpiemlotiibxyfjbczuffmdgbnpsjubbwjoxrdituxxgpwtvryduttq
vepzfonuppabmldtexullkncdlvkruddetkzpjabuzzozsvtxqluvvyfarxlgvurrilinbzwfunnsrqjfnmpujjc
yzgkcdavggnehcoqtkvccxkpysejuvyyhqxuwszevuurwfqagpovqqbcnmeufyvmmlodemwlsveefulaqkbcvaap
atwuyrmvwwzgbsymhwvssjmjocaxgvootsrkgonqvkkdzahldebwhhofidprulwddylqztfkvwzziryvxtafwvvs
xgrbhqpwrrcdonfvgzwnnmpefnxmtwffgvmbrlcdwbbqbuxvzsnwxxahctznixwttknkpdbyhwpputslhporwlle
abimefcxiipgjeqsvmxeezmrauglwxaajszwyubgxwwtyhscirqxssdepogwhaxoonqfgoynuxgghwncsmdexccr
cvywatoxyybiduaojyxuulolqeczixqqvutmiqpsxmmfbcjnfgdyjjqhkfrtwnyffansbvhmxybbktaxzvchyxxu
zitdjsryttefqphxibypporghpzovyhhixodtnefyddsdwzxbupyzzcjevbpkzyvvmpmrfdajyrrwvunjrqtynng
cdkoghezkkrilgsuxozggbotcwinyzcclubyawdizyyvajuektszuufgrqiyjczqqpshiqapwziijypeuofgzeet
exaycvqzaadkfwcqlazwwnqnsgebkzssxwvoksruzoohdelphifallsjmhtvypahhcpudxjozaddmvczbxejazzw
bkvflutavvghsrjzkdarrqtijrbqxajjkzqfvpghaffufybzdwrabbelgxdrmbaxxorothfclattyxwpltsvappi

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: delphifalls
Cipher: qrycuvsnyyf

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: delphifalls
Cipher: 4151135332421211131334

Extended Methods:
Method #1

Plaintext: delphifalls
method variations:
ikqunolfqqxopvzstqlvvctuaexyvqaahyzfkcdavffn

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
d e l p h i f a l l s 
4 5 1 5 3 4 1 1 1 1 3 
1 1 3 3 2 2 2 1 3 3 4 
They are then read out in rows:
4515341111311332221334
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: delphifalls
Cipher: yvsaaclhgls

Read more ...
Method #3

Plaintext: delphifalls
method variations:
vaxnrbbacnt axnrbbacntv xnrbbacntva
nrbbacntvax rbbacntvaxn bbacntvaxnr
bacntvaxnrb acntvaxnrbb cntvaxnrbba
ntvaxnrbbac tvaxnrbbacn

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: delphifalls

first 5040 cipher variations(39615626 total)
delphifalls delphifalsl delphifalls delphifalsl delphifasll delphifasll delphiflals delphiflasl delphifllas delphifllsa
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delphialsfl delphialslf delphiasllf delphiaslfl delphiasllf delphiaslfl delphiasfll delphiasfll delphilafls delphilafsl
delphilalfs delphilalsf delphilaslf delphilasfl delphilfals delphilfasl delphilflas delphilflsa delphilfsla delphilfsal
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delpihlalfs delpihlalsf delpihlaslf delpihlasfl delpihlfals delpihlfasl delpihlflas delpihlflsa delpihlfsla delpihlfsal
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delpfihlsla delpfihlsal delpfihllas delpfihllsa delpfihlals delpfihlasl delpfihlsal delpfihlsla delpfihslla delpfihslal
delpfihslla delpfihslal delpfihsall delpfihsall delpfiahlls delpfiahlsl delpfiahlls delpfiahlsl delpfiahsll delpfiahsll
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delpfislalh delpfislahl delpfislhal delpfislhla delpfishlla delpfishlal delpfishlla delpfishlal delpfishall delpfishall
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delpfhilsla delpfhilsal delpfhillas delpfhillsa delpfhilals delpfhilasl delpfhilsal delpfhilsla delpfhislla delpfhislal
delpfhislla delpfhislal delpfhisall delpfhisall delpfhaills delpfhailsl delpfhaills delpfhailsl delpfhaisll delpfhaisll
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delpfllihas delpfllihsa delpfllisha delpfllisah delpfllhias delpfllhisa delpfllhais delpfllhasi delpfllhsai delpfllhsia
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delpfslilha delpfslilah delpfslihla delpfslihal delpfsliahl delpfslialh delpfsiallh delpfsialhl delpfsiallh delpfsialhl
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delpfsilalh delpfsilahl delpfsilhal delpfsilhla delpfsihlla delpfsihlal delpfsihlla delpfsihlal delpfsihall delpfsihall
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delplflahis delplflahsi delplflashi delplflasih delplfliahs delplfliash delplflihas delplflihsa delplflisha delplflisah
delplflhias delplflhisa delplflhais delplflhasi delplflhsai delplflhsia delplflsiha delplflsiah delplflshia delplflshai
delplflsahi delplflsaih delplfhalis delplfhalsi delplfhails delplfhaisl delplfhasil delplfhasli delplfhlais delplfhlasi
delplfhlias delplfhlisa delplfhlsia delplfhlsai delplfhilas delplfhilsa delplfhials delplfhiasl delplfhisal delplfhisla
delplfhslia delplfhslai delplfhsila delplfhsial delplfhsail delplfhsali delplfsalhi delplfsalih delplfsahli delplfsahil
delplfsaihl delplfsailh delplfslahi delplfslaih delplfslhai delplfslhia delplfsliha delplfsliah delplfshlai delplfshlia
delplfshali delplfshail delplfshial delplfshila delplfsilha delplfsilah delplfsihla delplfsihal delplfsiahl delplfsialh
delplafilhs delplafilsh delplafihls delplafihsl delplafishl delplafislh delplaflihs delplaflish delplaflhis delplaflhsi
delplaflshi delplaflsih delplafhlis delplafhlsi delplafhils delplafhisl delplafhsil delplafhsli delplafslhi delplafslih
delplafshli delplafshil delplafsihl delplafsilh delplaiflhs delplaiflsh delplaifhls delplaifhsl delplaifshl delplaifslh
delplailfhs delplailfsh delplailhfs delplailhsf delplailshf delplailsfh delplaihlfs delplaihlsf delplaihfls delplaihfsl
delplaihsfl delplaihslf delplaislhf delplaislfh delplaishlf delplaishfl delplaisfhl delplaisflh delplalifhs delplalifsh
delplalihfs delplalihsf delplalishf delplalisfh delplalfihs delplalfish delplalfhis delplalfhsi delplalfshi delplalfsih
delplalhfis delplalhfsi delplalhifs delplalhisf delplalhsif delplalhsfi delplalsfhi delplalsfih delplalshfi delplalshif
delplalsihf delplalsifh delplahilfs delplahilsf delplahifls delplahifsl delplahisfl delplahislf delplahlifs delplahlisf
delplahlfis delplahlfsi delplahlsfi delplahlsif delplahflis delplahflsi delplahfils delplahfisl delplahfsil delplahfsli
delplahslfi delplahslif delplahsfli delplahsfil delplahsifl delplahsilf delplasilhf delplasilfh delplasihlf delplasihfl
delplasifhl delplasiflh delplaslihf delplaslifh delplaslhif delplaslhfi delplaslfhi delplaslfih delplashlif delplashlfi
delplashilf delplashifl delplashfil delplashfli delplasflhi delplasflih delplasfhli delplasfhil delplasfihl delplasfilh
delpllfaihs delpllfaish delpllfahis delpllfahsi delpllfashi delpllfasih delpllfiahs delpllfiash delpllfihas delpllfihsa
delpllfisha delpllfisah delpllfhias delpllfhisa delpllfhais delpllfhasi delpllfhsai delpllfhsia delpllfsiha delpllfsiah
delpllfshia delpllfshai delpllfsahi delpllfsaih delpllafihs delpllafish delpllafhis delpllafhsi delpllafshi delpllafsih
delpllaifhs delpllaifsh delpllaihfs delpllaihsf delpllaishf delpllaisfh delpllahifs delpllahisf delpllahfis delpllahfsi
delpllahsfi delpllahsif delpllasihf delpllasifh delpllashif delpllashfi delpllasfhi delpllasfih delplliafhs delplliafsh
delplliahfs delplliahsf delplliashf delplliasfh delpllifahs delpllifash delpllifhas delpllifhsa delpllifsha delpllifsah
delpllihfas delpllihfsa delpllihafs delpllihasf delpllihsaf delpllihsfa delpllisfha delpllisfah delpllishfa delpllishaf
delpllisahf delpllisafh delpllhaifs delpllhaisf delpllhafis delpllhafsi delpllhasfi delpllhasif delpllhiafs delpllhiasf
delpllhifas delpllhifsa delpllhisfa delpllhisaf delpllhfias delpllhfisa delpllhfais delpllhfasi delpllhfsai delpllhfsia
delpllhsifa delpllhsiaf delpllhsfia delpllhsfai delpllhsafi delpllhsaif delpllsaihf delpllsaifh delpllsahif delpllsahfi
delpllsafhi delpllsafih delpllsiahf delpllsiafh delpllsihaf delpllsihfa delpllsifha delpllsifah delpllshiaf delpllshifa
delpllshaif delpllshafi delpllshfai delpllshfia delpllsfiha delpllsfiah delpllsfhia delpllsfhai delpllsfahi delpllsfaih
delplhfalis delplhfalsi delplhfails delplhfaisl delplhfasil delplhfasli delplhflais delplhflasi delplhflias delplhflisa
delplhflsia delplhflsai delplhfilas delplhfilsa delplhfials delplhfiasl delplhfisal delplhfisla delplhfslia delplhfslai
delplhfsila delplhfsial delplhfsail delplhfsali delplhaflis delplhaflsi delplhafils delplhafisl delplhafsil delplhafsli
delplhalfis delplhalfsi delplhalifs delplhalisf delplhalsif delplhalsfi delplhailfs delplhailsf delplhaifls delplhaifsl
delplhaisfl delplhaislf delplhaslif delplhaslfi delplhasilf delplhasifl delplhasfil delplhasfli delplhlafis delplhlafsi
delplhlaifs delplhlaisf delplhlasif delplhlasfi delplhlfais delplhlfasi delplhlfias delplhlfisa delplhlfsia delplhlfsai
delplhlifas delplhlifsa delplhliafs delplhliasf delplhlisaf delplhlisfa delplhlsfia delplhlsfai delplhlsifa delplhlsiaf
delplhlsaif delplhlsafi delplhialfs delplhialsf delplhiafls delplhiafsl delplhiasfl delplhiaslf delplhilafs delplhilasf
delplhilfas delplhilfsa delplhilsfa delplhilsaf delplhiflas delplhiflsa delplhifals delplhifasl delplhifsal delplhifsla
delplhislfa delplhislaf delplhisfla delplhisfal delplhisafl delplhisalf delplhsalif delplhsalfi delplhsailf delplhsaifl
delplhsafil delplhsafli delplhslaif delplhslafi delplhsliaf delplhslifa delplhslfia delplhslfai delplhsilaf delplhsilfa
delplhsialf delplhsiafl delplhsifal delplhsifla delplhsflia delplhsflai delplhsfila delplhsfial delplhsfail delplhsfali
delplsfalhi delplsfalih delplsfahli delplsfahil delplsfaihl delplsfailh delplsflahi delplsflaih delplsflhai delplsflhia
delplsfliha delplsfliah delplsfhlai delplsfhlia delplsfhali delplsfhail delplsfhial delplsfhila delplsfilha delplsfilah
delplsfihla delplsfihal delplsfiahl delplsfialh delplsaflhi delplsaflih delplsafhli delplsafhil delplsafihl delplsafilh
delplsalfhi delplsalfih delplsalhfi delplsalhif delplsalihf delplsalifh delplsahlfi delplsahlif delplsahfli delplsahfil
delplsahifl delplsahilf delplsailhf delplsailfh delplsaihlf delplsaihfl delplsaifhl delplsaiflh delplslafhi delplslafih
delplslahfi delplslahif delplslaihf delplslaifh delplslfahi delplslfaih delplslfhai delplslfhia delplslfiha delplslfiah
delplslhfai delplslhfia delplslhafi delplslhaif delplslhiaf delplslhifa delplslifha delplslifah delplslihfa delplslihaf
delplsliahf delplsliafh delplshalfi delplshalif delplshafli delplshafil delplshaifl delplshailf delplshlafi delplshlaif
delplshlfai delplshlfia delplshlifa delplshliaf delplshflai delplshflia delplshfali delplshfail delplshfial delplshfila
delplshilfa delplshilaf delplshifla delplshifal delplshiafl delplshialf delplsialhf delplsialfh delplsiahlf delplsiahfl
delplsiafhl delplsiaflh delplsilahf delplsilafh delplsilhaf delplsilhfa delplsilfha delplsilfah delplsihlaf delplsihlfa
delplsihalf delplsihafl delplsihfal delplsihfla delplsiflha delplsiflah delplsifhla delplsifhal delplsifahl delplsifalh
delpsifallh delpsifalhl delpsifallh delpsifalhl delpsifahll delpsifahll delpsiflalh delpsiflahl delpsifllah delpsifllha
delpsiflhla delpsiflhal delpsifllah delpsifllha delpsiflalh delpsiflahl delpsiflhal delpsiflhla delpsifhlla delpsifhlal
delpsifhlla delpsifhlal delpsifhall delpsifhall delpsiafllh delpsiaflhl delpsiafllh delpsiaflhl delpsiafhll delpsiafhll
delpsialflh delpsialfhl delpsiallfh delpsiallhf delpsialhlf delpsialhfl delpsiallfh delpsiallhf delpsialflh delpsialfhl
delpsialhfl delpsialhlf delpsiahllf delpsiahlfl delpsiahllf delpsiahlfl delpsiahfll delpsiahfll delpsilaflh delpsilafhl
delpsilalfh delpsilalhf delpsilahlf delpsilahfl delpsilfalh delpsilfahl delpsilflah delpsilflha delpsilfhla delpsilfhal
delpsillfah delpsillfha delpsillafh delpsillahf delpsillhaf delpsillhfa delpsilhfla delpsilhfal delpsilhlfa delpsilhlaf
delpsilhalf delpsilhafl delpsilalfh delpsilalhf delpsilaflh delpsilafhl delpsilahfl delpsilahlf delpsillafh delpsillahf
delpsillfah delpsillfha delpsillhfa delpsillhaf delpsilflah delpsilflha delpsilfalh delpsilfahl delpsilfhal delpsilfhla
delpsilhlfa delpsilhlaf delpsilhfla delpsilhfal delpsilhafl delpsilhalf delpsihallf delpsihalfl delpsihallf delpsihalfl
delpsihafll delpsihafll delpsihlalf delpsihlafl delpsihllaf delpsihllfa delpsihlfla delpsihlfal delpsihllaf delpsihllfa
delpsihlalf delpsihlafl delpsihlfal delpsihlfla delpsihflla delpsihflal delpsihflla delpsihflal delpsihfall delpsihfall
delpsfiallh delpsfialhl delpsfiallh delpsfialhl delpsfiahll delpsfiahll delpsfilalh delpsfilahl delpsfillah delpsfillha
delpsfilhla delpsfilhal delpsfillah delpsfillha delpsfilalh delpsfilahl delpsfilhal delpsfilhla delpsfihlla delpsfihlal
delpsfihlla delpsfihlal delpsfihall delpsfihall delpsfaillh delpsfailhl delpsfaillh delpsfailhl delpsfaihll delpsfaihll
delpsfalilh delpsfalihl delpsfallih delpsfallhi delpsfalhli delpsfalhil delpsfallih delpsfallhi delpsfalilh delpsfalihl
delpsfalhil delpsfalhli delpsfahlli delpsfahlil delpsfahlli delpsfahlil delpsfahill delpsfahill delpsflailh delpsflaihl
delpsflalih delpsflalhi delpsflahli delpsflahil delpsflialh delpsfliahl delpsflilah delpsflilha delpsflihla delpsflihal
delpsflliah delpsflliha delpsfllaih delpsfllahi delpsfllhai delpsfllhia delpsflhila delpsflhial delpsflhlia delpsflhlai
delpsflhali delpsflhail delpsflalih delpsflalhi delpsflailh delpsflaihl delpsflahil delpsflahli delpsfllaih delpsfllahi
delpsflliah delpsflliha delpsfllhia delpsfllhai delpsflilah delpsflilha delpsflialh delpsfliahl delpsflihal delpsflihla
delpsflhlia delpsflhlai delpsflhila delpsflhial delpsflhail delpsflhali delpsfhalli delpsfhalil delpsfhalli delpsfhalil
delpsfhaill delpsfhaill delpsfhlali delpsfhlail delpsfhllai delpsfhllia delpsfhlila delpsfhlial delpsfhllai delpsfhllia
delpsfhlali delpsfhlail delpsfhlial delpsfhlila delpsfhilla delpsfhilal delpsfhilla delpsfhilal delpsfhiall delpsfhiall
delpsafillh delpsafilhl delpsafillh delpsafilhl delpsafihll delpsafihll delpsaflilh delpsaflihl delpsafllih delpsafllhi
delpsaflhli delpsaflhil delpsafllih delpsafllhi delpsaflilh delpsaflihl delpsaflhil delpsaflhli delpsafhlli delpsafhlil
delpsafhlli delpsafhlil delpsafhill delpsafhill delpsaifllh delpsaiflhl delpsaifllh delpsaiflhl delpsaifhll delpsaifhll
delpsailflh delpsailfhl delpsaillfh delpsaillhf delpsailhlf delpsailhfl delpsaillfh delpsaillhf delpsailflh delpsailfhl
delpsailhfl delpsailhlf delpsaihllf delpsaihlfl delpsaihllf delpsaihlfl delpsaihfll delpsaihfll delpsaliflh delpsalifhl
delpsalilfh delpsalilhf delpsalihlf delpsalihfl delpsalfilh delpsalfihl delpsalflih delpsalflhi delpsalfhli delpsalfhil
delpsallfih delpsallfhi delpsallifh delpsallihf delpsallhif delpsallhfi delpsalhfli delpsalhfil delpsalhlfi delpsalhlif
delpsalhilf delpsalhifl delpsalilfh delpsalilhf delpsaliflh delpsalifhl delpsalihfl delpsalihlf delpsallifh delpsallihf
delpsallfih delpsallfhi delpsallhfi delpsallhif delpsalflih delpsalflhi delpsalfilh delpsalfihl delpsalfhil delpsalfhli
delpsalhlfi delpsalhlif delpsalhfli delpsalhfil delpsalhifl delpsalhilf delpsahillf delpsahilfl delpsahillf delpsahilfl
delpsahifll delpsahifll delpsahlilf delpsahlifl delpsahllif delpsahllfi delpsahlfli delpsahlfil delpsahllif delpsahllfi
delpsahlilf delpsahlifl delpsahlfil delpsahlfli delpsahflli delpsahflil delpsahflli delpsahflil delpsahfill delpsahfill
delpslfailh delpslfaihl delpslfalih delpslfalhi delpslfahli delpslfahil delpslfialh delpslfiahl delpslfilah delpslfilha
delpslfihla delpslfihal delpslfliah delpslfliha delpslflaih delpslflahi delpslflhai delpslflhia delpslfhila delpslfhial
delpslfhlia delpslfhlai delpslfhali delpslfhail delpslafilh delpslafihl delpslaflih delpslaflhi delpslafhli delpslafhil
delpslaiflh delpslaifhl delpslailfh delpslailhf delpslaihlf delpslaihfl delpslalifh delpslalihf delpslalfih delpslalfhi
delpslalhfi delpslalhif delpslahilf delpslahifl delpslahlif delpslahlfi delpslahfli delpslahfil delpsliaflh delpsliafhl
delpslialfh delpslialhf delpsliahlf delpsliahfl delpslifalh delpslifahl delpsliflah delpsliflha delpslifhla delpslifhal
delpslilfah delpslilfha delpslilafh delpslilahf delpslilhaf delpslilhfa delpslihfla delpslihfal delpslihlfa delpslihlaf
delpslihalf delpslihafl delpsllaifh delpsllaihf delpsllafih delpsllafhi delpsllahfi delpsllahif delpslliafh delpslliahf
delpsllifah delpsllifha delpsllihfa delpsllihaf delpsllfiah delpsllfiha delpsllfaih delpsllfahi delpsllfhai delpsllfhia
delpsllhifa delpsllhiaf delpsllhfia delpsllhfai delpsllhafi delpsllhaif delpslhailf delpslhaifl delpslhalif delpslhalfi
delpslhafli delpslhafil delpslhialf delpslhiafl delpslhilaf delpslhilfa delpslhifla delpslhifal delpslhliaf delpslhlifa
delpslhlaif delpslhlafi delpslhlfai delpslhlfia delpslhfila delpslhfial delpslhflia delpslhflai delpslhfali delpslhfail
delpslfalih delpslfalhi delpslfailh delpslfaihl delpslfahil delpslfahli delpslflaih delpslflahi delpslfliah delpslfliha
delpslflhia delpslflhai delpslfilah delpslfilha delpslfialh delpslfiahl delpslfihal delpslfihla delpslfhlia delpslfhlai
delpslfhila delpslfhial delpslfhail delpslfhali delpslaflih delpslaflhi delpslafilh delpslafihl delpslafhil delpslafhli
delpslalfih delpslalfhi delpslalifh delpslalihf delpslalhif delpslalhfi delpslailfh delpslailhf delpslaiflh delpslaifhl
delpslaihfl delpslaihlf delpslahlif delpslahlfi delpslahilf delpslahifl delpslahfil delpslahfli delpsllafih delpsllafhi
delpsllaifh delpsllaihf delpsllahif delpsllahfi delpsllfaih delpsllfahi delpsllfiah delpsllfiha delpsllfhia delpsllfhai
delpsllifah delpsllifha delpslliafh delpslliahf delpsllihaf delpsllihfa delpsllhfia delpsllhfai delpsllhifa delpsllhiaf
delpsllhaif delpsllhafi delpslialfh delpslialhf delpsliaflh delpsliafhl delpsliahfl delpsliahlf delpslilafh delpslilahf
delpslilfah delpslilfha delpslilhfa delpslilhaf delpsliflah delpsliflha delpslifalh delpslifahl delpslifhal delpslifhla
delpslihlfa delpslihlaf delpslihfla delpslihfal delpslihafl delpslihalf delpslhalif delpslhalfi delpslhailf delpslhaifl
delpslhafil delpslhafli delpslhlaif delpslhlafi delpslhliaf delpslhlifa delpslhlfia delpslhlfai delpslhilaf delpslhilfa
delpslhialf delpslhiafl delpslhifal delpslhifla delpslhflia delpslhflai delpslhfila delpslhfial delpslhfail delpslhfali
delpshfalli delpshfalil delpshfalli delpshfalil delpshfaill delpshfaill delpshflali delpshflail delpshfllai delpshfllia
delpshflila delpshflial delpshfllai delpshfllia delpshflali delpshflail delpshflial delpshflila delpshfilla delpshfilal
delpshfilla delpshfilal delpshfiall delpshfiall delpshaflli delpshaflil delpshaflli delpshaflil delpshafill delpshafill
delpshalfli delpshalfil delpshallfi delpshallif delpshalilf delpshalifl delpshallfi delpshallif delpshalfli delpshalfil
delpshalifl delpshalilf delpshaillf delpshailfl delpshaillf delpshailfl delpshaifll delpshaifll delpshlafli delpshlafil
delpshlalfi delpshlalif delpshlailf delpshlaifl delpshlfali delpshlfail delpshlflai delpshlflia delpshlfila delpshlfial
delpshllfai delpshllfia delpshllafi delpshllaif delpshlliaf delpshllifa delpshlifla delpshlifal delpshlilfa delpshlilaf
delpshlialf delpshliafl delpshlalfi delpshlalif delpshlafli delpshlafil delpshlaifl delpshlailf delpshllafi delpshllaif
delpshllfai delpshllfia delpshllifa delpshlliaf delpshlflai delpshlflia delpshlfali delpshlfail delpshlfial delpshlfila
delpshlilfa delpshlilaf delpshlifla delpshlifal delpshliafl delpshlialf delpshiallf delpshialfl delpshiallf delpshialfl
delpshiafll delpshiafll delpshilalf delpshilafl delpshillaf delpshillfa delpshilfla delpshilfal delpshillaf delpshillfa
delpshilalf delpshilafl delpshilfal delpshilfla delpshiflla delpshiflal delpshiflla delpshiflal delpshifall delpshifall

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History of cryptography
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