easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

youthfulnesses

impetremus

prahus

pnguyen

unforfeit

ladlefuls

admiror

kesten

premimusque

malachitorectus

pigboat

unwelded

peracv

disenable

referendaryship

pillions

rovaniemi

avectorum


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: bridler
cipher variations:
csjemfs dtkfngt eulgohu fvmhpiv gwniqjw
hxojrkx iypksly jzqltmz karmuna lbsnvob
mctowpc ndupxqd oevqyre pfwrzsf qgxsatg
rhytbuh sizucvi tjavdwj ukbwexk vlcxfyl
wmdygzm xnezhan yofaibo zpgbjcp aqhckdq

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: bridler
Cipher: yirwovi

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: bridler
Cipher: AAAAB BAAAA ABAAA AAABB ABABA AABAA BAAAA

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: bridler
cipher variations:
csjemfseazkinagipqeviiqfwadqkyvcwlymglistgqwrukjwsehagre
umxgczmwunmyhuycdsupcaktyqxkdtkfngtfbaljobhjqrfwjjrgxber
lzwdxmznhmjtuhrxsvlkxtfibhsfvnyhdanxvonzivzdetvqdbluzryl
eulgohugcbmkpcikrsgxkkshycfsmaxeynaoinkuvisytwmlyugjcitg
wozieboywpoajwaefuwrecmvaszmfvmhpivhdcnlqdjlsthylltizdgt
nbyfzobpjolvwjtzuxnmzvhkdjuhxpajfcpzxqpbkxbfgvxsfdnwbtan
gwniqjwiedomrekmtuizmmujaehuoczgapcqkpmwxkuavyonawilekvi
yqbkgdqayrqclycghwytgeoxcubohxojrkxjfepnsflnuvjannvkbfiv
pdahbqdrlqnxylvbwzpobxjmflwjzrclherbzsrdmzdhixzuhfpydvcp
iypkslykgfqotgmovwkboowlcgjwqebicresmroyzmwcxaqpcykngmxk
asdmifscatsenaeijyavigqzewdqjzqltmzlhgrpuhnpwxlcppxmdhkx
rfcjdsftnspzanxdybrqdzlohnylbtenjgtdbutfobfjkzbwjhrafxer
karmunamihsqvioqxymdqqyneilysgdketguotqaboyezcsreampiozm
cufokhuecvugpcgklacxkisbgyfslbsnvobnjitrwjpryznerrzofjmz
thelfuhvpurbcpzfadtsfbnqjpandvgplivfdwvhqdhlmbdyljtchzgt
mctowpcokjusxkqszaofssapgknauifmgviwqvscdqagbeutgcorkqbo
ewhqmjwgexwireimncezmkudiahundupxqdplkvtylrtabpgttbqhlob
vjgnhwjxrwtderbhcfvuhdpslrcpfxirnkxhfyxjsfjnodfanlvejbiv
oevqyreqmlwuzmsubcqhuucrimpcwkhoixkysxuefscidgwvieqtmsdq
gyjsolyigzyktgkopegbomwfkcjwpfwrzsfrnmxvantvcdrivvdsjnqd
xlipjylztyvfgtdjehxwjfrunterhzktpmzjhazluhlpqfhcpnxgldkx
qgxsatgsonywbouwdesjwwetkoreymjqkzmauzwghuekfiyxkgsvoufs
ialuqnakibamvimqrgidqoyhmelyrhytbuhtpozxcpvxeftkxxfulpsf
znkrlanbvaxhivflgjzylhtwpvgtjbmvrobljcbnwjnrshjerpzinfmz
sizucviuqpaydqwyfgulyygvmqtgaolsmbocwbyijwgmhkazmiuxqwhu
kcnwspcmkdcoxkostikfsqajognatjavdwjvrqbzerxzghvmzzhwnruh
bpmtncpdxczjkxhnilbanjvyrxivldoxtqdnledpylptujlgtrbkphob
ukbwexkwsrcafsyahiwnaaixosvicqnuodqeydaklyiojmcbokwzsyjw
mepyureomfeqzmquvkmhusclqipcvlcxfylxtsdbgtzbijxobbjyptwj
drovperfzeblmzjpkndcplxatzkxnfqzvsfpngfranrvwlnivtdmrjqd
wmdygzmyutechuacjkypcckzquxkespwqfsgafcmnakqloedqmybualy
ograwtgqohgsboswxmojwuenskrexnezhanzvufdivbdklzqddlarvyl
ftqxrgthbgdnoblrmpfernzcvbmzphsbxuhrpihtcptxynpkxvfotlsf
yofaiboawvgejwcelmareembswzmguryshuicheopcmsnqgfsoadwcna
qitcyvisqjiudquyzoqlywgpumtgzpgbjcpbxwhfkxdfmnbsffnctxan
hvsztivjdifpqdntorhgtpbexdobrjudzwjtrkjvervzaprmzxhqvnuh
aqhckdqcyxiglyegnoctggoduyboiwtaujwkejgqreoupsihuqcfyepc
skveaxkuslkwfswabqsnayirwovibridlerdzyjhmzfhopduhhpevzcp
jxubvkxlfkhrsfpvqtjivrdgzfqdtlwfbylvtmlxgtxbcrtobzjsxpwj

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: bridler
Cipher: oevqyre

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: bridler
Cipher: 21244241135124

Extended Methods:
Method #1

Plaintext: bridler
method variations:
gwoiqkwmbtovpbrgytaugwmdyfzm

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
b r i d l e r 
2 2 4 4 1 5 2 
1 4 2 1 3 1 4 
They are then read out in rows:
22441521421314
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: bridler
Cipher: gtvbilq

Read more ...
Method #3

Plaintext: bridler
method variations:
ftraxfi traxfif raxfift
axfiftr xfiftra fiftrax
iftraxf

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: bridler

all 5040 cipher variations:
bridler bridlre bridelr briderl bridrel bridrle brilder brildre briledr brilerd brilred
brilrde brieldr brielrd briedlr briedrl brierdl brierld brirled brirlde brireld briredl
brirdel brirdle brdiler brdilre brdielr brdierl brdirel brdirle brdlier brdlire brdleir
brdleri brdlrei brdlrie brdelir brdelri brdeilr brdeirl brderil brderli brdrlei brdrlie
brdreli brdreil brdriel brdrile brldier brldire brldeir brlderi brldrei brldrie brlider
brlidre brliedr brlierd brlired brlirde brleidr brleird brledir brledri brlerdi brlerid
brlried brlride brlreid brlredi brlrdei brlrdie bredlir bredlri bredilr bredirl bredril
bredrli breldir breldri brelidr brelird brelrid brelrdi breildr breilrd breidlr breidrl
breirdl breirld brerlid brerldi brerild breridl brerdil brerdli brrdlei brrdlie brrdeli
brrdeil brrdiel brrdile brrldei brrldie brrledi brrleid brrlied brrlide brreldi brrelid
brredli brredil brreidl brreild brriled brrilde brrield brriedl brridel brridle birdler
birdlre birdelr birderl birdrel birdrle birlder birldre birledr birlerd birlred birlrde
bireldr birelrd biredlr biredrl birerdl birerld birrled birrlde birreld birredl birrdel
birrdle bidrler bidrlre bidrelr bidrerl bidrrel bidrrle bidlrer bidlrre bidlerr bidlerr
bidlrer bidlrre bidelrr bidelrr biderlr biderrl biderrl biderlr bidrler bidrlre bidrelr
bidrerl bidrrel bidrrle bildrer bildrre bilderr bilderr bildrer bildrre bilrder bilrdre
bilredr bilrerd bilrred bilrrde bilerdr bilerrd biledrr biledrr bilerdr bilerrd bilrred
bilrrde bilrerd bilredr bilrder bilrdre biedlrr biedlrr biedrlr biedrrl biedrrl biedrlr
bieldrr bieldrr bielrdr bielrrd bielrrd bielrdr bierldr bierlrd bierdlr bierdrl bierrdl
bierrld bierlrd bierldr bierrld bierrdl bierdrl bierdlr birdler birdlre birdelr birderl
birdrel birdrle birlder birldre birledr birlerd birlred birlrde bireldr birelrd biredlr
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beidrrl beidrlr beildrr beildrr beilrdr beilrrd beilrrd beilrdr beirldr beirlrd beirdlr
beirdrl beirrdl beirrld beirlrd beirldr beirrld beirrdl beirdrl beirdlr bedilrr bedilrr
bedirlr bedirrl bedirrl bedirlr bedlirr bedlirr bedlrir bedlrri bedlrri bedlrir bedrlir
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berldir berlrdi berlrid berlird berlidr berrldi berrlid berrdli berrdil berridl berrild
berilrd berildr berirld berirdl beridrl beridlr bridler bridlre bridelr briderl bridrel
bridrle brilder brildre briledr brilerd brilred brilrde brieldr brielrd briedlr briedrl
brierdl brierld brirled brirlde brireld briredl brirdel brirdle brdiler brdilre brdielr
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brrilde brrield brriedl brridel brridle rbidler rbidlre rbidelr rbiderl rbidrel rbidrle
rbilder rbildre rbiledr rbilerd rbilred rbilrde rbieldr rbielrd rbiedlr rbiedrl rbierdl
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rlridbe reidlbr reidlrb reidblr reidbrl reidrbl reidrlb reildbr reildrb reilbdr reilbrd
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reirbdl reirdbl reirdlb redilbr redilrb rediblr redibrl redirbl redirlb redlibr redlirb
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lrbderi lrbdrei lrbdrie lrbider lrbidre lrbiedr lrbierd lrbired lrbirde lrbeidr lrbeird
lrbedir lrbedri lrberdi lrberid lrbried lrbride lrbreid lrbredi lrbrdei lrbrdie lredbir
lredbri lredibr lredirb lredrib lredrbi lrebdir lrebdri lrebidr lrebird lrebrid lrebrdi
lreibdr lreibrd lreidbr lreidrb lreirdb lreirbd lrerbid lrerbdi lreribd lreridb lrerdib
lrerdbi lrrdbei lrrdbie lrrdebi lrrdeib lrrdieb lrrdibe lrrbdei lrrbdie lrrbedi lrrbeid
lrrbied lrrbide lrrebdi lrrebid lrredbi lrredib lrreidb lrreibd lrribed lrribde lrriebd
lrriedb lrrideb lrridbe eridlbr eridlrb eridblr eridbrl eridrbl eridrlb erildbr erildrb
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erdlibr erdlirb erdlbir erdlbri erdlrbi erdlrib erdblir erdblri erdbilr erdbirl erdbril
erdbrli erdrlbi erdrlib erdrbli erdrbil erdribl erdrilb erldibr erldirb erldbir erldbri
erldrbi erldrib erlidbr erlidrb erlibdr erlibrd erlirbd erlirdb erlbidr erlbird erlbdir
erlbdri erlbrdi erlbrid erlribd erlridb erlrbid erlrbdi erlrdbi erlrdib erbdlir erbdlri
erbdilr erbdirl erbdril erbdrli erbldir erbldri erblidr erblird erblrid erblrdi erbildr
erbilrd erbidlr erbidrl erbirdl erbirld erbrlid erbrldi erbrild erbridl erbrdil erbrdli
errdlbi errdlib errdbli errdbil errdibl errdilb errldbi errldib errlbdi errlbid errlibd
errlidb errbldi errblid errbdli errbdil errbidl errbild errilbd errildb erribld erribdl
erridbl erridlb eirdlbr eirdlrb eirdblr eirdbrl eirdrbl eirdrlb eirldbr eirldrb eirlbdr
eirlbrd eirlrbd eirlrdb eirbldr eirblrd eirbdlr eirbdrl eirbrdl eirbrld eirrlbd eirrldb
eirrbld eirrbdl eirrdbl eirrdlb eidrlbr eidrlrb eidrblr eidrbrl eidrrbl eidrrlb eidlrbr
eidlrrb eidlbrr eidlbrr eidlrbr eidlrrb eidblrr eidblrr eidbrlr eidbrrl eidbrrl eidbrlr
eidrlbr eidrlrb eidrblr eidrbrl eidrrbl eidrrlb eildrbr eildrrb eildbrr eildbrr eildrbr
eildrrb eilrdbr eilrdrb eilrbdr eilrbrd eilrrbd eilrrdb eilbrdr eilbrrd eilbdrr eilbdrr
eilbrdr eilbrrd eilrrbd eilrrdb eilrbrd eilrbdr eilrdbr eilrdrb eibdlrr eibdlrr eibdrlr
eibdrrl eibdrrl eibdrlr eibldrr eibldrr eiblrdr eiblrrd eiblrrd eiblrdr eibrldr eibrlrd
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eirdlrb eirdblr eirdbrl eirdrbl eirdrlb eirldbr eirldrb eirlbdr eirlbrd eirlrbd eirlrdb
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eirrdlb edirlbr edirlrb edirblr edirbrl edirrbl edirrlb edilrbr edilrrb edilbrr edilbrr
edilrbr edilrrb ediblrr ediblrr edibrlr edibrrl edibrrl edibrlr edirlbr edirlrb edirblr
edirbrl edirrbl edirrlb edrilbr edrilrb edriblr edribrl edrirbl edrirlb edrlibr edrlirb
edrlbir edrlbri edrlrbi edrlrib edrblir edrblri edrbilr edrbirl edrbril edrbrli edrrlbi
edrrlib edrrbli edrrbil edrribl edrrilb edlribr edlrirb edlrbir edlrbri edlrrbi edlrrib
edlirbr edlirrb edlibrr edlibrr edlirbr edlirrb edlbirr edlbirr edlbrir edlbrri edlbrri
edlbrir edlribr edlrirb edlrbir edlrbri edlrrbi edlrrib edbrlir edbrlri edbrilr edbrirl
edbrril edbrrli edblrir edblrri edblirr edblirr edblrir edblrri edbilrr edbilrr edbirlr
edbirrl edbirrl edbirlr edbrlir edbrlri edbrilr edbrirl edbrril edbrrli edrrlbi edrrlib
edrrbli edrrbil edrribl edrrilb edrlrbi edrlrib edrlbri edrlbir edrlibr edrlirb edrblri
edrblir edrbrli edrbril edrbirl edrbilr edrilbr edrilrb edriblr edribrl edrirbl edrirlb
elidrbr elidrrb elidbrr elidbrr elidrbr elidrrb elirdbr elirdrb elirbdr elirbrd elirrbd
elirrdb elibrdr elibrrd elibdrr elibdrr elibrdr elibrrd elirrbd elirrdb elirbrd elirbdr
elirdbr elirdrb eldirbr eldirrb eldibrr eldibrr eldirbr eldirrb eldribr eldrirb eldrbir
eldrbri eldrrbi eldrrib eldbrir eldbrri eldbirr eldbirr eldbrir eldbrri eldrrbi eldrrib
eldrbri eldrbir eldribr eldrirb elrdibr elrdirb elrdbir elrdbri elrdrbi elrdrib elridbr
elridrb elribdr elribrd elrirbd elrirdb elrbidr elrbird elrbdir elrbdri elrbrdi elrbrid
elrribd elrridb elrrbid elrrbdi elrrdbi elrrdib elbdrir elbdrri elbdirr elbdirr elbdrir
elbdrri elbrdir elbrdri elbridr elbrird elbrrid elbrrdi elbirdr elbirrd elbidrr elbidrr
elbirdr elbirrd elbrrid elbrrdi elbrird elbridr elbrdir elbrdri elrdrbi elrdrib elrdbri
elrdbir elrdibr elrdirb elrrdbi elrrdib elrrbdi elrrbid elrribd elrridb elrbrdi elrbrid
elrbdri elrbdir elrbidr elrbird elrirbd elrirdb elribrd elribdr elridbr elridrb ebidlrr
ebidlrr ebidrlr ebidrrl ebidrrl ebidrlr ebildrr ebildrr ebilrdr ebilrrd ebilrrd ebilrdr
ebirldr ebirlrd ebirdlr ebirdrl ebirrdl ebirrld ebirlrd ebirldr ebirrld ebirrdl ebirdrl
ebirdlr ebdilrr ebdilrr ebdirlr ebdirrl ebdirrl ebdirlr ebdlirr ebdlirr ebdlrir ebdlrri
ebdlrri ebdlrir ebdrlir ebdrlri ebdrilr ebdrirl ebdrril ebdrrli ebdrlri ebdrlir ebdrrli
ebdrril ebdrirl ebdrilr ebldirr ebldirr ebldrir ebldrri ebldrri ebldrir eblidrr eblidrr
eblirdr eblirrd eblirrd eblirdr eblridr eblrird eblrdir eblrdri eblrrdi eblrrid eblrird
eblridr eblrrid eblrrdi eblrdri eblrdir ebrdlir ebrdlri ebrdilr ebrdirl ebrdril ebrdrli
ebrldir ebrldri ebrlidr ebrlird ebrlrid ebrlrdi ebrildr ebrilrd ebridlr ebridrl ebrirdl
ebrirld ebrrlid ebrrldi ebrrild ebrridl ebrrdil ebrrdli ebrdlri ebrdlir ebrdrli ebrdril
ebrdirl ebrdilr ebrldri ebrldir ebrlrdi ebrlrid ebrlird ebrlidr ebrrldi ebrrlid ebrrdli
ebrrdil ebrridl ebrrild ebrilrd ebrildr ebrirld ebrirdl ebridrl ebridlr eridlbr eridlrb
eridblr eridbrl eridrbl eridrlb erildbr erildrb erilbdr erilbrd erilrbd erilrdb eribldr
eriblrd eribdlr eribdrl eribrdl eribrld erirlbd erirldb erirbld erirbdl erirdbl erirdlb
erdilbr erdilrb erdiblr erdibrl erdirbl erdirlb erdlibr erdlirb erdlbir erdlbri erdlrbi
erdlrib erdblir erdblri erdbilr erdbirl erdbril erdbrli erdrlbi erdrlib erdrbli erdrbil
erdribl erdrilb erldibr erldirb erldbir erldbri erldrbi erldrib erlidbr erlidrb erlibdr
erlibrd erlirbd erlirdb erlbidr erlbird erlbdir erlbdri erlbrdi erlbrid erlribd erlridb
erlrbid erlrbdi erlrdbi erlrdib erbdlir erbdlri erbdilr erbdirl erbdril erbdrli erbldir
erbldri erblidr erblird erblrid erblrdi erbildr erbilrd erbidlr erbidrl erbirdl erbirld
erbrlid erbrldi erbrild erbridl erbrdil erbrdli errdlbi errdlib errdbli errdbil errdibl
errdilb errldbi errldib errlbdi errlbid errlibd errlidb errbldi errblid errbdli errbdil
errbidl errbild errilbd errildb erribld erribdl erridbl erridlb rridleb rridlbe rridelb
rridebl rridbel rridble rrildeb rrildbe rriledb rrilebd rrilbed rrilbde rrieldb rrielbd
rriedlb rriedbl rriebdl rriebld rribled rriblde rribeld rribedl rribdel rribdle rrdileb
rrdilbe rrdielb rrdiebl rrdibel rrdible rrdlieb rrdlibe rrdleib rrdlebi rrdlbei rrdlbie
rrdelib rrdelbi rrdeilb rrdeibl rrdebil rrdebli rrdblei rrdblie rrdbeli rrdbeil rrdbiel
rrdbile rrldieb rrldibe rrldeib rrldebi rrldbei rrldbie rrlideb rrlidbe rrliedb rrliebd
rrlibed rrlibde rrleidb rrleibd rrledib rrledbi rrlebdi rrlebid rrlbied rrlbide rrlbeid
rrlbedi rrlbdei rrlbdie rredlib rredlbi rredilb rredibl rredbil rredbli rreldib rreldbi
rrelidb rrelibd rrelbid rrelbdi rreildb rreilbd rreidlb rreidbl rreibdl rreibld rreblid
rrebldi rrebild rrebidl rrebdil rrebdli rrbdlei rrbdlie rrbdeli rrbdeil rrbdiel rrbdile
rrbldei rrbldie rrbledi rrbleid rrblied rrblide rrbeldi rrbelid rrbedli rrbedil rrbeidl
rrbeild rrbiled rrbilde rrbield rrbiedl rrbidel rrbidle rirdleb rirdlbe rirdelb rirdebl
rirdbel rirdble rirldeb rirldbe rirledb rirlebd rirlbed rirlbde rireldb rirelbd riredlb
riredbl rirebdl rirebld rirbled rirblde rirbeld rirbedl rirbdel rirbdle ridrleb ridrlbe
ridrelb ridrebl ridrbel ridrble ridlreb ridlrbe ridlerb ridlebr ridlber ridlbre ridelrb
ridelbr riderlb riderbl ridebrl rideblr ridbler ridblre ridbelr ridberl ridbrel ridbrle
rildreb rildrbe rilderb rildebr rildber rildbre rilrdeb rilrdbe rilredb rilrebd rilrbed
rilrbde rilerdb rilerbd riledrb riledbr rilebdr rilebrd rilbred rilbrde rilberd rilbedr
rilbder rilbdre riedlrb riedlbr riedrlb riedrbl riedbrl riedblr rieldrb rieldbr rielrdb
rielrbd rielbrd rielbdr rierldb rierlbd rierdlb rierdbl rierbdl rierbld rieblrd riebldr
riebrld riebrdl riebdrl riebdlr ribdler ribdlre ribdelr ribderl ribdrel ribdrle riblder
ribldre ribledr riblerd riblred riblrde ribeldr ribelrd ribedlr ribedrl riberdl riberld
ribrled ribrlde ribreld ribredl ribrdel ribrdle rdirleb rdirlbe rdirelb rdirebl rdirbel
rdirble rdilreb rdilrbe rdilerb rdilebr rdilber rdilbre rdielrb rdielbr rdierlb rdierbl
rdiebrl rdieblr rdibler rdiblre rdibelr rdiberl rdibrel rdibrle rdrileb rdrilbe rdrielb
rdriebl rdribel rdrible rdrlieb rdrlibe rdrleib rdrlebi rdrlbei rdrlbie rdrelib rdrelbi
rdreilb rdreibl rdrebil rdrebli rdrblei rdrblie rdrbeli rdrbeil rdrbiel rdrbile rdlrieb
rdlribe rdlreib rdlrebi rdlrbei rdlrbie rdlireb rdlirbe rdlierb rdliebr rdliber rdlibre
rdleirb rdleibr rdlerib rdlerbi rdlebri rdlebir rdlbier rdlbire rdlbeir rdlberi rdlbrei
rdlbrie rderlib rderlbi rderilb rderibl rderbil rderbli rdelrib rdelrbi rdelirb rdelibr
rdelbir rdelbri rdeilrb rdeilbr rdeirlb rdeirbl rdeibrl rdeiblr rdeblir rdeblri rdebilr
rdebirl rdebril rdebrli rdbrlei rdbrlie rdbreli rdbreil rdbriel rdbrile rdblrei rdblrie
rdbleri rdbleir rdblier rdblire rdbelri rdbelir rdberli rdberil rdbeirl rdbeilr rdbiler
rdbilre rdbielr rdbierl rdbirel rdbirle rlidreb rlidrbe rliderb rlidebr rlidber rlidbre
rlirdeb rlirdbe rliredb rlirebd rlirbed rlirbde rlierdb rlierbd rliedrb rliedbr rliebdr
rliebrd rlibred rlibrde rliberd rlibedr rlibder rlibdre rldireb rldirbe rldierb rldiebr
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rldeibr rldebir rldebri rldbrei rldbrie rldberi rldbeir rldbier rldbire rlrdieb rlrdibe
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rlreibd rlredib rlredbi rlrebdi rlrebid rlrbied rlrbide rlrbeid rlrbedi rlrbdei rlrbdie
rledrib rledrbi rledirb rledibr rledbir rledbri rlerdib rlerdbi rleridb rleribd rlerbid
rlerbdi rleirdb rleirbd rleidrb rleidbr rleibdr rleibrd rlebrid rlebrdi rlebird rlebidr
rlebdir rlebdri rlbdrei rlbdrie rlbderi rlbdeir rlbdier rlbdire rlbrdei rlbrdie rlbredi
rlbreid rlbried rlbride rlberdi rlberid rlbedri rlbedir rlbeidr rlbeird rlbired rlbirde
rlbierd rlbiedr rlbider rlbidre reidlrb reidlbr reidrlb reidrbl reidbrl reidblr reildrb
reildbr reilrdb reilrbd reilbrd reilbdr reirldb reirlbd reirdlb reirdbl reirbdl reirbld
reiblrd reibldr reibrld reibrdl reibdrl reibdlr redilrb redilbr redirlb redirbl redibrl
rediblr redlirb redlibr redlrib redlrbi redlbri redlbir redrlib redrlbi redrilb redribl
redrbil redrbli redblri redblir redbrli redbril redbirl redbilr reldirb reldibr reldrib
reldrbi reldbri reldbir relidrb relidbr relirdb relirbd relibrd relibdr relridb relribd
relrdib relrdbi relrbdi relrbid relbird relbidr relbrid relbrdi relbdri relbdir rerdlib
rerdlbi rerdilb rerdibl rerdbil rerdbli rerldib rerldbi rerlidb rerlibd rerlbid rerlbdi
rerildb rerilbd reridlb reridbl reribdl reribld rerblid rerbldi rerbild rerbidl rerbdil
rerbdli rebdlri rebdlir rebdrli rebdril rebdirl rebdilr rebldri rebldir reblrdi reblrid
reblird reblidr rebrldi rebrlid rebrdli rebrdil rebridl rebrild rebilrd rebildr rebirld
rebirdl rebidrl rebidlr rbidler rbidlre rbidelr rbiderl rbidrel rbidrle rbilder rbildre
rbiledr rbilerd rbilred rbilrde rbieldr rbielrd rbiedlr rbiedrl rbierdl rbierld rbirled
rbirlde rbireld rbiredl rbirdel rbirdle rbdiler rbdilre rbdielr rbdierl rbdirel rbdirle
rbdlier rbdlire rbdleir rbdleri rbdlrei rbdlrie rbdelir rbdelri rbdeilr rbdeirl rbderil
rbderli rbdrlei rbdrlie rbdreli rbdreil rbdriel rbdrile rbldier rbldire rbldeir rblderi
rbldrei rbldrie rblider rblidre rbliedr rblierd rblired rblirde rbleidr rbleird rbledir
rbledri rblerdi rblerid rblried rblride rblreid rblredi rblrdei rblrdie rbedlir rbedlri
rbedilr rbedirl rbedril rbedrli rbeldir rbeldri rbelidr rbelird rbelrid rbelrdi rbeildr
rbeilrd rbeidlr rbeidrl rbeirdl rbeirld rberlid rberldi rberild rberidl rberdil rberdli
rbrdlei rbrdlie rbrdeli rbrdeil rbrdiel rbrdile rbrldei rbrldie rbrledi rbrleid rbrlied
rbrlide rbreldi rbrelid rbredli rbredil rbreidl rbreild rbriled rbrilde rbrield rbriedl
rbridel rbridle

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History of cryptography
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