easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

hainan

cymographic

disloyalties

ammonocarbonic

alfonso

cingereminique

macroeconomics

mutant

stepdaughters

proteanly

comanagement

nobilitauit

gumweeds

angelino

outtricked

undersupplying

laevam

katogle


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: pebbels
cipher variations:
qfccfmt rgddgnu sheehov tiffipw ujggjqx
vkhhkry wliilsz xmjjmta ynkknub zollovc
apmmpwd bqnnqxe crooryf dsppszg etqqtah
furrubi gvssvcj hwttwdk ixuuxel jyvvyfm
kzwwzgn laxxaho mbyybip nczzcjq odaadkr

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: pebbels
Cipher: kvyyvoh

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: pebbels
Cipher: ABBBA AABAA AAAAB AAAAB AABAA 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: pebbels
cipher variations:
qfccfmtuneenidyvggvencdiidaxglkklwhktmmtsrsjqqjklwrssrgv
azuuzcfehwwhypipyypuzmxaaxqjrgddgnuvoffojezwhhwfodejjeby
hmllmxilunnutstkrrklmxsttshwbavvadgfixxizqjqzzqvanybbyrk
sheehovwpggpkfaxiixgpefkkfczinmmnyjmvoovutulsslmnytuutix
cbwwbehgjyyjarkraarwbozcczsltiffipwxqhhqlgbyjjyhqfgllgda
jonnozknwppwvuvmttmnozuvvujydcxxcfihkzzkbslsbbsxcpaddatm
ujggjqxyriirmhczkkzirghmmhebkpoopaloxqqxwvwnuunopavwwvkz
edyydgjilaalctmtcctydqbeebunvkhhkryzsjjsnidallajshinnifc
lqppqbmpyrryxwxovvopqbwxxwlafezzehkjmbbmdunudduzercffcvo
wliilszatkktojebmmbktijoojgdmrqqrcnqzsszyxypwwpqrcxyyxmb
gfaafilknccnevoveevafsdggdwpxmjjmtabullupkfcnnclujkppkhe
nsrrsdorattazyzqxxqrsdyzzynchgbbgjmloddofwpwffwbgtehhexq
ynkknubcvmmvqlgdoodmvklqqlifotsstepsbuubazaryyrstezaazod
ihcchknmpeepgxqxggxchufiifyrzollovcdwnnwrmheppenwlmrrmjg
puttufqtcvvcbabszzstufabbapejiddilonqffqhyryhhydivgjjgzs
apmmpwdexooxsnifqqfoxmnssnkhqvuuvgrudwwdcbctaatuvgbccbqf
kjeejmporggrizsziizejwhkkhatbqnnqxefyppytojgrrgpynottoli
rwvvwhsvexxedcdubbuvwhcddcrglkffknqpshhsjatajjafkxillibu
crooryfgzqqzupkhsshqzopuupmjsxwwxitwfyyfedevccvwxideedsh
mlgglorqtiitkbubkkbglyjmmjcvdsppszgharravqlittirapqvvqnk
tyxxyjuxgzzgfefwddwxyjeffetinmhhmpsrujjulcvcllchmzknnkdw
etqqtahibssbwrmjuujsbqrwwroluzyyzkvyhaahgfgxeexyzkfggfuj
oniinqtsvkkvmdwdmmdinaloolexfurrubijcttcxsnkvvktcrsxxspm
vazzalwzibbihghyffyzalghhgvkpojjorutwllwnexennejobmppmfy
gvssvcjkduudytolwwludstyytqnwbaabmxajccjihizggzabmhiihwl
qpkkpsvuxmmxofyfoofkpcnqqngzhwttwdklevvezupmxxmvetuzzuro
xcbbcnybkddkjijahhabcnijjixmrqllqtwvynnypgzgppglqdorroha
ixuuxelmfwwfavqnyynwfuvaavspydccdozcleelkjkbiibcdojkkjyn
srmmruxwzoozqhahqqhmrepsspibjyvvyfmngxxgbwrozzoxgvwbbwtq
zeddepadmffmlklcjjcdepkllkzotsnnsvyxapparibirrinsfqttqjc
kzwwzgnohyyhcxspaapyhwxccxurafeefqbenggnmlmdkkdefqlmmlap
utootwzybqqbsjcjssjotgruurkdlaxxahopizzidytqbbqzixyddyvs
bgffgrcfohhonmnellefgrmnnmbqvuppuxazcrrctkdkttkpuhsvvsle
mbyybipqjaajezurccrajyzeezwtchgghsdgpiiponofmmfghsnooncr
wvqqvybadssduleluulqvitwwtmfnczzcjqrkbbkfavsddsbkzaffaxu
dihhitehqjjqpopgnnghitoppodsxwrrwzcbettevmfmvvmrwjuxxung
odaadkrslcclgbwteetclabggbyvejiijufirkkrqpqhoohijupqqpet
yxssxadcfuufwngnwwnsxkvyyvohpebbelstmddmhcxuffudmbchhczw
fkjjkvgjsllsrqrippijkvqrrqfuzyttybedgvvgxohoxxotylwzzwpi

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: pebbels
Cipher: crooryf

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: pebbels
Cipher: 53512121511334

Extended Methods:
Method #1

Plaintext: pebbels
method variations:
ukggkqxzpmmpvceurruahkzwwzfn

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
p e b b e l s 
5 5 2 2 5 1 3 
3 1 1 1 1 3 4 
They are then read out in rows:
55225133111134
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: pebbels
Cipher: zgenaas

Read more ...
Method #3

Plaintext: pebbels
method variations:
xffvany ffvanyx fvanyxf
vanyxff anyxffv nyxffva
yxffvan

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: pebbels

all 5040 cipher variations:
pebbels pebbesl pebbles pebblse pebbsle pebbsel pebebls pebebsl pebelbs pebelsb pebeslb
pebesbl peblebs peblesb peblbes peblbse peblsbe peblseb pebselb pebsebl pebsleb pebslbe
pebsble pebsbel pebbels pebbesl pebbles pebblse pebbsle pebbsel pebebls pebebsl pebelbs
pebelsb pebeslb pebesbl peblebs peblesb peblbes peblbse peblsbe peblseb pebselb pebsebl
pebsleb pebslbe pebsble pebsbel peebbls peebbsl peeblbs peeblsb peebslb peebsbl peebbls
peebbsl peeblbs peeblsb peebslb peebsbl peelbbs peelbsb peelbbs peelbsb peelsbb peelsbb
peesblb peesbbl peeslbb peeslbb peesblb peesbbl pelbebs pelbesb pelbbes pelbbse pelbsbe
pelbseb pelebbs pelebsb pelebbs pelebsb pelesbb pelesbb pelbebs pelbesb pelbbes pelbbse
pelbsbe pelbseb pelsebb pelsebb pelsbeb pelsbbe pelsbbe pelsbeb pesbelb pesbebl pesbleb
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peslbeb peslbbe peslbbe peslbeb pesbelb pesbebl pesbleb pesblbe pesbble pesbbel pbebels
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elbespb elbspeb elbspbe elbsepb elbsebp elbsbep elbsbpe elbbpes elbbpse elbbeps elbbesp
elbbsep elbbspe elbpbes elbpbse elbpebs elbpesb elbpseb elbpsbe elbepbs elbepsb elbebps
elbebsp elbesbp elbespb elbspeb elbspbe elbsepb elbsebp elbsbep elbsbpe elpbbes elpbbse
elpbebs elpbesb elpbseb elpbsbe elpbbes elpbbse elpbebs elpbesb elpbseb elpbsbe elpebbs
elpebsb elpebbs elpebsb elpesbb elpesbb elpsbeb elpsbbe elpsebb elpsebb elpsbeb elpsbbe
elebpbs elebpsb elebbps elebbsp elebsbp elebspb elepbbs elepbsb elepbbs elepbsb elepsbb
elepsbb elebpbs elebpsb elebbps elebbsp elebsbp elebspb elespbb elespbb elesbpb elesbbp
elesbbp elesbpb elsbpeb elsbpbe elsbepb elsbebp elsbbep elsbbpe elspbeb elspbbe elspebb
elspebb elspbeb elspbbe elsepbb elsepbb elsebpb elsebbp elsebbp elsebpb elsbpeb elsbpbe
elsbepb elsbebp elsbbep elsbbpe esbbple esbbpel esbblpe esbblep esbbelp esbbepl esbpble
esbpbel esbplbe esbpleb esbpelb esbpebl esblpbe esblpeb esblbpe esblbep esblebp esblepb
esbeplb esbepbl esbelpb esbelbp esbeblp esbebpl esbbple esbbpel esbblpe esbblep esbbelp
esbbepl esbpble esbpbel esbplbe esbpleb esbpelb esbpebl esblpbe esblpeb esblbpe esblbep
esblebp esblepb esbeplb esbepbl esbelpb esbelbp esbeblp esbebpl espbble espbbel espblbe
espbleb espbelb espbebl espbble espbbel espblbe espbleb espbelb espbebl esplbbe esplbeb
esplbbe esplbeb esplebb esplebb espeblb espebbl espelbb espelbb espeblb espebbl eslbpbe
eslbpeb eslbbpe eslbbep eslbebp eslbepb eslpbbe eslpbeb eslpbbe eslpbeb eslpebb eslpebb
eslbpbe eslbpeb eslbbpe eslbbep eslbebp eslbepb eslepbb eslepbb eslebpb eslebbp eslebbp
eslebpb esebplb esebpbl eseblpb eseblbp esebblp esebbpl esepblb esepbbl eseplbb eseplbb
esepblb esepbbl eselpbb eselpbb eselbpb eselbbp eselbbp eselbpb esebplb esebpbl eseblpb
eseblbp esebblp esebbpl lebbeps lebbesp lebbpes lebbpse lebbspe lebbsep lebebps lebebsp
lebepbs lebepsb lebespb lebesbp lebpebs lebpesb lebpbes lebpbse lebpsbe lebpseb lebsepb
lebsebp lebspeb lebspbe lebsbpe lebsbep lebbeps lebbesp lebbpes lebbpse lebbspe lebbsep
lebebps lebebsp lebepbs lebepsb lebespb lebesbp lebpebs lebpesb lebpbes lebpbse lebpsbe
lebpseb lebsepb lebsebp lebspeb lebspbe lebsbpe lebsbep leebbps leebbsp leebpbs leebpsb
leebspb leebsbp leebbps leebbsp leebpbs leebpsb leebspb leebsbp leepbbs leepbsb leepbbs
leepbsb leepsbb leepsbb leesbpb leesbbp leespbb leespbb leesbpb leesbbp lepbebs lepbesb
lepbbes lepbbse lepbsbe lepbseb lepebbs lepebsb lepebbs lepebsb lepesbb lepesbb lepbebs
lepbesb lepbbes lepbbse lepbsbe lepbseb lepsebb lepsebb lepsbeb lepsbbe lepsbbe lepsbeb
lesbepb lesbebp lesbpeb lesbpbe lesbbpe lesbbep lesebpb lesebbp lesepbb lesepbb lesebpb
lesebbp lespebb lespebb lespbeb lespbbe lespbbe lespbeb lesbepb lesbebp lesbpeb lesbpbe
lesbbpe lesbbep lbebeps lbebesp lbebpes lbebpse lbebspe lbebsep lbeebps lbeebsp lbeepbs
lbeepsb lbeespb lbeesbp lbepebs lbepesb lbepbes lbepbse lbepsbe lbepseb lbesepb lbesebp
lbespeb lbespbe lbesbpe lbesbep lbbeeps lbbeesp lbbepes lbbepse lbbespe lbbesep lbbeeps
lbbeesp lbbepes lbbepse lbbespe lbbesep lbbpees lbbpese lbbpees lbbpese lbbpsee lbbpsee
lbbsepe lbbseep lbbspee lbbspee lbbsepe lbbseep lbebeps lbebesp lbebpes lbebpse lbebspe
lbebsep lbeebps lbeebsp lbeepbs lbeepsb lbeespb lbeesbp lbepebs lbepesb lbepbes lbepbse
lbepsbe lbepseb lbesepb lbesebp lbespeb lbespbe lbesbpe lbesbep lbpbees lbpbese lbpbees
lbpbese lbpbsee lbpbsee lbpebes lbpebse lbpeebs lbpeesb lbpeseb lbpesbe lbpeebs lbpeesb
lbpebes lbpebse lbpesbe lbpeseb lbpseeb lbpsebe lbpseeb lbpsebe lbpsbee lbpsbee lbsbepe
lbsbeep lbsbpee lbsbpee lbsbepe lbsbeep lbsebpe lbsebep lbsepbe lbsepeb lbseepb lbseebp
lbspebe lbspeeb lbspbee lbspbee lbspebe lbspeeb lbseepb lbseebp lbsepeb lbsepbe lbsebpe
lbsebep lbbeeps lbbeesp lbbepes lbbepse lbbespe lbbesep lbbeeps lbbeesp lbbepes lbbepse
lbbespe lbbesep lbbpees lbbpese lbbpees lbbpese lbbpsee lbbpsee lbbsepe lbbseep lbbspee
lbbspee lbbsepe lbbseep lbebeps lbebesp lbebpes lbebpse lbebspe lbebsep lbeebps lbeebsp
lbeepbs lbeepsb lbeespb lbeesbp lbepebs lbepesb lbepbes lbepbse lbepsbe lbepseb lbesepb
lbesebp lbespeb lbespbe lbesbpe lbesbep lbeebps lbeebsp lbeepbs lbeepsb lbeespb lbeesbp
lbebeps lbebesp lbebpes lbebpse lbebspe lbebsep lbepbes lbepbse lbepebs lbepesb lbepseb
lbepsbe lbesbpe lbesbep lbespbe lbespeb lbesepb lbesebp lbpeebs lbpeesb lbpebes lbpebse
lbpesbe lbpeseb lbpeebs lbpeesb lbpebes lbpebse lbpesbe lbpeseb lbpbees lbpbese lbpbees
lbpbese lbpbsee lbpbsee lbpsebe lbpseeb lbpsbee lbpsbee lbpsebe lbpseeb lbseepb lbseebp
lbsepeb lbsepbe lbsebpe lbsebep lbseepb lbseebp lbsepeb lbsepbe lbsebpe lbsebep lbspeeb
lbspebe lbspeeb lbspebe lbspbee lbspbee lbsbepe lbsbeep lbsbpee lbsbpee lbsbepe lbsbeep
lebbeps lebbesp lebbpes lebbpse lebbspe lebbsep lebebps lebebsp lebepbs lebepsb lebespb
lebesbp lebpebs lebpesb lebpbes lebpbse lebpsbe lebpseb lebsepb lebsebp lebspeb lebspbe
lebsbpe lebsbep lebbeps lebbesp lebbpes lebbpse lebbspe lebbsep lebebps lebebsp lebepbs
lebepsb lebespb lebesbp lebpebs lebpesb lebpbes lebpbse lebpsbe lebpseb lebsepb lebsebp
lebspeb lebspbe lebsbpe lebsbep leebbps leebbsp leebpbs leebpsb leebspb leebsbp leebbps
leebbsp leebpbs leebpsb leebspb leebsbp leepbbs leepbsb leepbbs leepbsb leepsbb leepsbb
leesbpb leesbbp leespbb leespbb leesbpb leesbbp lepbebs lepbesb lepbbes lepbbse lepbsbe
lepbseb lepebbs lepebsb lepebbs lepebsb lepesbb lepesbb lepbebs lepbesb lepbbes lepbbse
lepbsbe lepbseb lepsebb lepsebb lepsbeb lepsbbe lepsbbe lepsbeb lesbepb lesbebp lesbpeb
lesbpbe lesbbpe lesbbep lesebpb lesebbp lesepbb lesepbb lesebpb lesebbp lespebb lespebb
lespbeb lespbbe lespbbe lespbeb lesbepb lesbebp lesbpeb lesbpbe lesbbpe lesbbep lpbbees
lpbbese lpbbees lpbbese lpbbsee lpbbsee lpbebes lpbebse lpbeebs lpbeesb lpbeseb lpbesbe
lpbeebs lpbeesb lpbebes lpbebse lpbesbe lpbeseb lpbseeb lpbsebe lpbseeb lpbsebe lpbsbee
lpbsbee lpbbees lpbbese lpbbees lpbbese lpbbsee lpbbsee lpbebes lpbebse lpbeebs lpbeesb
lpbeseb lpbesbe lpbeebs lpbeesb lpbebes lpbebse lpbesbe lpbeseb lpbseeb lpbsebe lpbseeb
lpbsebe lpbsbee lpbsbee lpebbes lpebbse lpebebs lpebesb lpebseb lpebsbe lpebbes lpebbse
lpebebs lpebesb lpebseb lpebsbe lpeebbs lpeebsb lpeebbs lpeebsb lpeesbb lpeesbb lpesbeb
lpesbbe lpesebb lpesebb lpesbeb lpesbbe lpebebs lpebesb lpebbes lpebbse lpebsbe lpebseb
lpeebbs lpeebsb lpeebbs lpeebsb lpeesbb lpeesbb lpebebs lpebesb lpebbes lpebbse lpebsbe
lpebseb lpesebb lpesebb lpesbeb lpesbbe lpesbbe lpesbeb lpsbeeb lpsbebe lpsbeeb lpsbebe
lpsbbee lpsbbee lpsebeb lpsebbe lpseebb lpseebb lpsebeb lpsebbe lpseebb lpseebb lpsebeb
lpsebbe lpsebbe lpsebeb lpsbeeb lpsbebe lpsbeeb lpsbebe lpsbbee lpsbbee lsbbepe lsbbeep
lsbbpee lsbbpee lsbbepe lsbbeep lsbebpe lsbebep lsbepbe lsbepeb lsbeepb lsbeebp lsbpebe
lsbpeeb lsbpbee lsbpbee lsbpebe lsbpeeb lsbeepb lsbeebp lsbepeb lsbepbe lsbebpe lsbebep
lsbbepe lsbbeep lsbbpee lsbbpee lsbbepe lsbbeep lsbebpe lsbebep lsbepbe lsbepeb lsbeepb
lsbeebp lsbpebe lsbpeeb lsbpbee lsbpbee lsbpebe lsbpeeb lsbeepb lsbeebp lsbepeb lsbepbe
lsbebpe lsbebep lsebbpe lsebbep lsebpbe lsebpeb lsebepb lsebebp lsebbpe lsebbep lsebpbe
lsebpeb lsebepb lsebebp lsepbbe lsepbeb lsepbbe lsepbeb lsepebb lsepebb lseebpb lseebbp
lseepbb lseepbb lseebpb lseebbp lspbebe lspbeeb lspbbee lspbbee lspbebe lspbeeb lspebbe
lspebeb lspebbe lspebeb lspeebb lspeebb lspbebe lspbeeb lspbbee lspbbee lspbebe lspbeeb
lspeebb lspeebb lspebeb lspebbe lspebbe lspebeb lsebepb lsebebp lsebpeb lsebpbe lsebbpe
lsebbep lseebpb lseebbp lseepbb lseepbb lseebpb lseebbp lsepebb lsepebb lsepbeb lsepbbe
lsepbbe lsepbeb lsebepb lsebebp lsebpeb lsebpbe lsebbpe lsebbep sebbelp sebbepl sebblep
sebblpe sebbple sebbpel sebeblp sebebpl sebelbp sebelpb sebeplb sebepbl seblebp seblepb
seblbep seblbpe seblpbe seblpeb sebpelb sebpebl sebpleb sebplbe sebpble sebpbel sebbelp
sebbepl sebblep sebblpe sebbple sebbpel sebeblp sebebpl sebelbp sebelpb sebeplb sebepbl
seblebp seblepb seblbep seblbpe seblpbe seblpeb sebpelb sebpebl sebpleb sebplbe sebpble
sebpbel seebblp seebbpl seeblbp seeblpb seebplb seebpbl seebblp seebbpl seeblbp seeblpb
seebplb seebpbl seelbbp seelbpb seelbbp seelbpb seelpbb seelpbb seepblb seepbbl seeplbb
seeplbb seepblb seepbbl selbebp selbepb selbbep selbbpe selbpbe selbpeb selebbp selebpb
selebbp selebpb selepbb selepbb selbebp selbepb selbbep selbbpe selbpbe selbpeb selpebb
selpebb selpbeb selpbbe selpbbe selpbeb sepbelb sepbebl sepbleb sepblbe sepbble sepbbel
sepeblb sepebbl sepelbb sepelbb sepeblb sepebbl seplebb seplebb seplbeb seplbbe seplbbe
seplbeb sepbelb sepbebl sepbleb sepblbe sepbble sepbbel sbebelp sbebepl sbeblep sbeblpe
sbebple sbebpel sbeeblp sbeebpl sbeelbp sbeelpb sbeeplb sbeepbl sbelebp sbelepb sbelbep
sbelbpe sbelpbe sbelpeb sbepelb sbepebl sbepleb sbeplbe sbepble sbepbel sbbeelp sbbeepl
sbbelep sbbelpe sbbeple sbbepel sbbeelp sbbeepl sbbelep sbbelpe sbbeple sbbepel sbbleep
sbblepe sbbleep sbblepe sbblpee sbblpee sbbpele sbbpeel sbbplee sbbplee sbbpele sbbpeel
sbebelp sbebepl sbeblep sbeblpe sbebple sbebpel sbeeblp sbeebpl sbeelbp sbeelpb sbeeplb
sbeepbl sbelebp sbelepb sbelbep sbelbpe sbelpbe sbelpeb sbepelb sbepebl sbepleb sbeplbe
sbepble sbepbel sblbeep sblbepe sblbeep sblbepe sblbpee sblbpee sblebep sblebpe sbleebp
sbleepb sblepeb sblepbe sbleebp sbleepb sblebep sblebpe sblepbe sblepeb sblpeeb sblpebe
sblpeeb sblpebe sblpbee sblpbee sbpbele sbpbeel sbpblee sbpblee sbpbele sbpbeel sbpeble
sbpebel sbpelbe sbpeleb sbpeelb sbpeebl sbplebe sbpleeb sbplbee sbplbee sbplebe sbpleeb
sbpeelb sbpeebl sbpeleb sbpelbe sbpeble sbpebel sbbeelp sbbeepl sbbelep sbbelpe sbbeple
sbbepel sbbeelp sbbeepl sbbelep sbbelpe sbbeple sbbepel sbbleep sbblepe sbbleep sbblepe
sbblpee sbblpee sbbpele sbbpeel sbbplee sbbplee sbbpele sbbpeel sbebelp sbebepl sbeblep
sbeblpe sbebple sbebpel sbeeblp sbeebpl sbeelbp sbeelpb sbeeplb sbeepbl sbelebp sbelepb
sbelbep sbelbpe sbelpbe sbelpeb sbepelb sbepebl sbepleb sbeplbe sbepble sbepbel sbeeblp
sbeebpl sbeelbp sbeelpb sbeeplb sbeepbl sbebelp sbebepl sbeblep sbeblpe sbebple sbebpel
sbelbep sbelbpe sbelebp sbelepb sbelpeb sbelpbe sbepble sbepbel sbeplbe sbepleb sbepelb
sbepebl sbleebp sbleepb sblebep sblebpe sblepbe sblepeb sbleebp sbleepb sblebep sblebpe
sblepbe sblepeb sblbeep sblbepe sblbeep sblbepe sblbpee sblbpee sblpebe sblpeeb sblpbee
sblpbee sblpebe sblpeeb sbpeelb sbpeebl sbpeleb sbpelbe sbpeble sbpebel sbpeelb sbpeebl
sbpeleb sbpelbe sbpeble sbpebel sbpleeb sbplebe sbpleeb sbplebe sbplbee sbplbee sbpbele
sbpbeel sbpblee sbpblee sbpbele sbpbeel sebbelp sebbepl sebblep sebblpe sebbple sebbpel
sebeblp sebebpl sebelbp sebelpb sebeplb sebepbl seblebp seblepb seblbep seblbpe seblpbe
seblpeb sebpelb sebpebl sebpleb sebplbe sebpble sebpbel sebbelp sebbepl sebblep sebblpe
sebbple sebbpel sebeblp sebebpl sebelbp sebelpb sebeplb sebepbl seblebp seblepb seblbep
seblbpe seblpbe seblpeb sebpelb sebpebl sebpleb sebplbe sebpble sebpbel seebblp seebbpl
seeblbp seeblpb seebplb seebpbl seebblp seebbpl seeblbp seeblpb seebplb seebpbl seelbbp
seelbpb seelbbp seelbpb seelpbb seelpbb seepblb seepbbl seeplbb seeplbb seepblb seepbbl
selbebp selbepb selbbep selbbpe selbpbe selbpeb selebbp selebpb selebbp selebpb selepbb
selepbb selbebp selbepb selbbep selbbpe selbpbe selbpeb selpebb selpebb selpbeb selpbbe
selpbbe selpbeb sepbelb sepbebl sepbleb sepblbe sepbble sepbbel sepeblb sepebbl sepelbb
sepelbb sepeblb sepebbl seplebb seplebb seplbeb seplbbe seplbbe seplbeb sepbelb sepbebl
sepbleb sepblbe sepbble sepbbel slbbeep slbbepe slbbeep slbbepe slbbpee slbbpee slbebep
slbebpe slbeebp slbeepb slbepeb slbepbe slbeebp slbeepb slbebep slbebpe slbepbe slbepeb
slbpeeb slbpebe slbpeeb slbpebe slbpbee slbpbee slbbeep slbbepe slbbeep slbbepe slbbpee
slbbpee slbebep slbebpe slbeebp slbeepb slbepeb slbepbe slbeebp slbeepb slbebep slbebpe
slbepbe slbepeb slbpeeb slbpebe slbpeeb slbpebe slbpbee slbpbee slebbep slebbpe slebebp
slebepb slebpeb slebpbe slebbep slebbpe slebebp slebepb slebpeb slebpbe sleebbp sleebpb
sleebbp sleebpb sleepbb sleepbb slepbeb slepbbe slepebb slepebb slepbeb slepbbe slebebp
slebepb slebbep slebbpe slebpbe slebpeb sleebbp sleebpb sleebbp sleebpb sleepbb sleepbb
slebebp slebepb slebbep slebbpe slebpbe slebpeb slepebb slepebb slepbeb slepbbe slepbbe
slepbeb slpbeeb slpbebe slpbeeb slpbebe slpbbee slpbbee slpebeb slpebbe slpeebb slpeebb
slpebeb slpebbe slpeebb slpeebb slpebeb slpebbe slpebbe slpebeb slpbeeb slpbebe slpbeeb
slpbebe slpbbee slpbbee spbbele spbbeel spbblee spbblee spbbele spbbeel spbeble spbebel
spbelbe spbeleb spbeelb spbeebl spblebe spbleeb spblbee spblbee spblebe spbleeb spbeelb
spbeebl spbeleb spbelbe spbeble spbebel spbbele spbbeel spbblee spbblee spbbele spbbeel
spbeble spbebel spbelbe spbeleb spbeelb spbeebl spblebe spbleeb spblbee spblbee spblebe
spbleeb spbeelb spbeebl spbeleb spbelbe spbeble spbebel spebble spebbel speblbe spebleb
spebelb spebebl spebble spebbel speblbe spebleb spebelb spebebl spelbbe spelbeb spelbbe
spelbeb spelebb spelebb speeblb speebbl speelbb speelbb speeblb speebbl splbebe splbeeb
splbbee splbbee splbebe splbeeb splebbe splebeb splebbe splebeb spleebb spleebb splbebe
splbeeb splbbee splbbee splbebe splbeeb spleebb spleebb splebeb splebbe splebbe splebeb
spebelb spebebl spebleb speblbe spebble spebbel speeblb speebbl speelbb speelbb speeblb
speebbl spelebb spelebb spelbeb spelbbe spelbbe spelbeb spebelb spebebl spebleb speblbe
spebble spebbel

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History of cryptography
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