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: bernold
cipher variations:
cfsopme dgtpqnf ehuqrog fivrsph gjwstqi
hkxturj ilyuvsk jmzvwtl knawxum lobxyvn
mpcyzwo nqdzaxp oreabyq psfbczr qtgcdas
ruhdebt sviefcu twjfgdv uxkghew vylhifx
wzmijgy xanjkhz yboklia zcplmjb adqmnkc

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: bernold
Cipher: yvimlow

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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: bernold

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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: bernold
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: bernold
Cipher: oreabyq

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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: bernold
Cipher: 21512433431341

Extended Methods:
Method #1

Plaintext: bernold
method variations:

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

Read more ...
Method #3

Plaintext: bernold
method variations:
vfoscsf foscsfv oscsfvf
scsfvfo csfvfos sfvfosc

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: bernold

all 5040 cipher variations:
bernold bernodl bernlod bernldo berndlo berndol beronld berondl berolnd beroldn berodln
berodnl berlond berlodn berlnod berlndo berldno berldon berdoln berdonl berdlon berdlno
berdnlo berdnol benrold benrodl benrlod benrldo benrdlo benrdol benorld benordl benolrd
benoldr benodlr benodrl benlord benlodr benlrod benlrdo benldro benldor bendolr bendorl
bendlor bendlro bendrlo bendrol beonrld beonrdl beonlrd beonldr beondlr beondrl beornld
beorndl beorlnd beorldn beordln beordnl beolrnd beolrdn beolnrd beolndr beoldnr beoldrn
beodrln beodrnl beodlrn beodlnr beodnlr beodnrl belnord belnodr belnrod belnrdo belndro
belndor belonrd belondr belornd belordn belodrn belodnr belrond belrodn belrnod belrndo
belrdno belrdon beldorn beldonr beldron beldrno beldnro beldnor bednolr bednorl bednlor
bednlro bednrlo bednrol bedonlr bedonrl bedolnr bedolrn bedorln bedornl bedlonr bedlorn
bedlnor bedlnro bedlrno bedlron bedroln bedronl bedrlon bedrlno bedrnlo bedrnol brenold
brenodl brenlod brenldo brendlo brendol breonld breondl breolnd breoldn breodln breodnl
brelond brelodn brelnod brelndo breldno breldon bredoln bredonl bredlon bredlno brednlo
brednol brneold brneodl brnelod brneldo brnedlo brnedol brnoeld brnoedl brnoled brnolde
brnodle brnodel brnloed brnlode brnleod brnledo brnldeo brnldoe brndole brndoel brndloe
brndleo brndelo brndeol broneld bronedl bronled bronlde brondle brondel broenld broendl
broelnd broeldn broedln broednl brolend broledn brolned brolnde broldne brolden brodeln
brodenl brodlen brodlne brodnle brodnel brlnoed brlnode brlneod brlnedo brlndeo brlndoe
brloned brlonde brloend brloedn brloden brlodne brleond brleodn brlenod brlendo brledno
brledon brldoen brldone brldeon brldeno brldneo brldnoe brdnole brdnoel brdnloe brdnleo
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brdlneo brdleno brdleon brdeoln brdeonl brdelon brdelno brdenlo brdenol bnreold bnreodl
bnrelod bnreldo bnredlo bnredol bnroeld bnroedl bnroled bnrolde bnrodle bnrodel bnrloed
bnrlode bnrleod bnrledo bnrldeo bnrldoe bnrdole bnrdoel bnrdloe bnrdleo bnrdelo bnrdeol
bnerold bnerodl bnerlod bnerldo bnerdlo bnerdol bneorld bneordl bneolrd bneoldr bneodlr
bneodrl bnelord bnelodr bnelrod bnelrdo bneldro bneldor bnedolr bnedorl bnedlor bnedlro
bnedrlo bnedrol bnoerld bnoerdl bnoelrd bnoeldr bnoedlr bnoedrl bnoreld bnoredl bnorled
bnorlde bnordle bnordel bnolred bnolrde bnolerd bnoledr bnolder bnoldre bnodrle bnodrel
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bnldore bnldoer bnldroe bnldreo bnldero bnldeor bndeolr bndeorl bndelor bndelro bnderlo
bnderol bndoelr bndoerl bndoler bndolre bndorle bndorel bndloer bndlore bndleor bndlero
bndlreo bndlroe bndrole bndroel bndrloe bndrleo bndrelo bndreol borneld bornedl bornled
bornlde borndle borndel borenld borendl borelnd boreldn boredln borednl borlend borledn
borlned borlnde borldne borlden bordeln bordenl bordlen bordlne bordnle bordnel bonreld
bonredl bonrled bonrlde bonrdle bonrdel bonerld bonerdl bonelrd boneldr bonedlr bonedrl
bonlerd bonledr bonlred bonlrde bonldre bonlder bondelr bonderl bondler bondlre bondrle
bondrel boenrld boenrdl boenlrd boenldr boendlr boendrl boernld boerndl boerlnd boerldn
boerdln boerdnl boelrnd boelrdn boelnrd boelndr boeldnr boeldrn boedrln boedrnl boedlrn
boedlnr boednlr boednrl bolnerd bolnedr bolnred bolnrde bolndre bolnder bolenrd bolendr
bolernd bolerdn boledrn bolednr bolrend bolredn bolrned bolrnde bolrdne bolrden boldern
boldenr boldren boldrne boldnre boldner bodnelr bodnerl bodnler bodnlre bodnrle bodnrel
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ernbdol ernobld ernobdl ernolbd ernoldb ernodlb ernodbl ernlobd ernlodb ernlbod ernlbdo
ernldbo ernldob erndolb erndobl erndlob erndlbo erndblo erndbol eronbld eronbdl eronlbd
eronldb erondlb erondbl erobnld erobndl eroblnd erobldn erobdln erobdnl erolbnd erolbdn
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enrolbd enroldb enrodlb enrodbl enrlobd enrlodb enrlbod enrlbdo enrldbo enrldob enrdolb
enrdobl enrdlob enrdlbo enrdblo enrdbol enbrold enbrodl enbrlod enbrldo enbrdlo enbrdol
enborld enbordl enbolrd enboldr enbodlr enbodrl enblord enblodr enblrod enblrdo enbldro
enbldor enbdolr enbdorl enbdlor enbdlro enbdrlo enbdrol enobrld enobrdl enoblrd enobldr
enobdlr enobdrl enorbld enorbdl enorlbd enorldb enordlb enordbl enolrbd enolrdb enolbrd
enolbdr enoldbr enoldrb enodrlb enodrbl enodlrb enodlbr enodblr enodbrl enlbord enlbodr
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endbolr endborl endblor endblro endbrlo endbrol endoblr endobrl endolbr endolrb endorlb
endorbl endlobr endlorb endlbor endlbro endlrbo endlrob endrolb endrobl endrlob endrlbo
endrblo endrbol eornbld eornbdl eornlbd eornldb eorndlb eorndbl eorbnld eorbndl eorblnd
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eordlbn eordlnb eordnlb eordnbl eonrbld eonrbdl eonrlbd eonrldb eonrdlb eonrdbl eonbrld
eonbrdl eonblrd eonbldr eonbdlr eonbdrl eonlbrd eonlbdr eonlrbd eonlrdb eonldrb eonldbr
eondblr eondbrl eondlbr eondlrb eondrlb eondrbl eobnrld eobnrdl eobnlrd eobnldr eobndlr
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eolnrdb eolndrb eolndbr eolbnrd eolbndr eolbrnd eolbrdn eolbdrn eolbdnr eolrbnd eolrbdn
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reblond reblodn reblnod reblndo rebldno rebldon rebdoln rebdonl rebdlon rebdlno rebdnlo
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rendlbo rendblo rendbol reonbld reonbdl reonlbd reonldb reondlb reondbl reobnld reobndl
reoblnd reobldn reobdln reobdnl reolbnd reolbdn reolnbd reolndb reoldnb reoldbn reodbln
reodbnl reodlbn reodlnb reodnlb reodnbl relnobd relnodb relnbod relnbdo relndbo relndob
relonbd relondb relobnd relobdn relodbn relodnb relbond relbodn relbnod relbndo relbdno
relbdon reldobn reldonb reldbon reldbno reldnbo reldnob rednolb rednobl rednlob rednlbo
rednblo rednbol redonlb redonbl redolnb redolbn redobln redobnl redlonb redlobn redlnob
redlnbo redlbno redlbon redboln redbonl redblon redblno redbnlo redbnol rbenold rbenodl
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rbndelo rbndeol rboneld rbonedl rbonled rbonlde rbondle rbondel rboenld rboendl rboelnd
rboeldn rboedln rboednl rbolend rboledn rbolned rbolnde rboldne rbolden rbodeln rbodenl
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rblonde rbloend rbloedn rbloden rblodne rbleond rbleodn rblenod rblendo rbledno rbledon
rbldoen rbldone rbldeon rbldeno rbldneo rbldnoe rbdnole rbdnoel rbdnloe rbdnleo rbdnelo
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lrbnedo lrbndeo lrbndoe lrboned lrbonde lrboend lrboedn lrboden lrbodne lrbeond lrbeodn
lrbenod lrbendo lrbedno lrbedon lrbdoen lrbdone lrbdeon lrbdeno lrbdneo lrbdnoe lrdnobe
lrdnoeb lrdnboe lrdnbeo lrdnebo lrdneob lrdonbe lrdoneb lrdobne lrdoben lrdoebn lrdoenb
lrdbone lrdboen lrdbnoe lrdbneo lrdbeno lrdbeon lrdeobn lrdeonb lrdebon lrdebno lrdenbo
lrdenob lnreobd lnreodb lnrebod lnrebdo lnredbo lnredob lnroebd lnroedb lnrobed lnrobde
lnrodbe lnrodeb lnrboed lnrbode lnrbeod lnrbedo lnrbdeo lnrbdoe lnrdobe lnrdoeb lnrdboe
lnrdbeo lnrdebo lnrdeob lnerobd lnerodb lnerbod lnerbdo lnerdbo lnerdob lneorbd lneordb
lneobrd lneobdr lneodbr lneodrb lnebord lnebodr lnebrod lnebrdo lnebdro lnebdor lnedobr
lnedorb lnedbor lnedbro lnedrbo lnedrob lnoerbd lnoerdb lnoebrd lnoebdr lnoedbr lnoedrb
lnorebd lnoredb lnorbed lnorbde lnordbe lnordeb lnobred lnobrde lnoberd lnobedr lnobder
lnobdre lnodrbe lnodreb lnodbre lnodber lnodebr lnoderb lnbeord lnbeodr lnberod lnberdo
lnbedro lnbedor lnboerd lnboedr lnbored lnborde lnbodre lnboder lnbroed lnbrode lnbreod
lnbredo lnbrdeo lnbrdoe lnbdore lnbdoer lnbdroe lnbdreo lnbdero lnbdeor lndeobr lndeorb
lndebor lndebro lnderbo lnderob lndoebr lndoerb lndober lndobre lndorbe lndoreb lndboer
lndbore lndbeor lndbero lndbreo lndbroe lndrobe lndroeb lndrboe lndrbeo lndrebo lndreob
lornebd lornedb lornbed lornbde lorndbe lorndeb lorenbd lorendb lorebnd lorebdn loredbn
lorednb lorbend lorbedn lorbned lorbnde lorbdne lorbden lordebn lordenb lordben lordbne
lordnbe lordneb lonrebd lonredb lonrbed lonrbde lonrdbe lonrdeb lonerbd lonerdb lonebrd
lonebdr lonedbr lonedrb lonberd lonbedr lonbred lonbrde lonbdre lonbder londebr londerb
londber londbre londrbe londreb loenrbd loenrdb loenbrd loenbdr loendbr loendrb loernbd
loerndb loerbnd loerbdn loerdbn loerdnb loebrnd loebrdn loebnrd loebndr loebdnr loebdrn
loedrbn loedrnb loedbrn loedbnr loednbr loednrb lobnerd lobnedr lobnred lobnrde lobndre
lobnder lobenrd lobendr lobernd loberdn lobedrn lobednr lobrend lobredn lobrned lobrnde
lobrdne lobrden lobdern lobdenr lobdren lobdrne lobdnre lobdner lodnebr lodnerb lodnber
lodnbre lodnrbe lodnreb lodenbr lodenrb lodebnr lodebrn loderbn lodernb lodbenr lodbern
lodbner lodbnre lodbrne lodbren lodrebn lodrenb lodrben lodrbne lodrnbe lodrneb lbrnoed
lbrnode lbrneod lbrnedo lbrndeo lbrndoe lbroned lbronde lbroend lbroedn lbroden lbrodne
lbreond lbreodn lbrenod lbrendo lbredno lbredon lbrdoen lbrdone lbrdeon lbrdeno lbrdneo
lbrdnoe lbnroed lbnrode lbnreod lbnredo lbnrdeo lbnrdoe lbnored lbnorde lbnoerd lbnoedr
lbnoder lbnodre lbneord lbneodr lbnerod lbnerdo lbnedro lbnedor lbndoer lbndore lbndeor
lbndero lbndreo lbndroe lbonred lbonrde lbonerd lbonedr lbonder lbondre lborned lbornde
lborend lboredn lborden lbordne lboernd lboerdn lboenrd lboendr lboednr lboedrn lbodren
lbodrne lbodern lbodenr lbodner lbodnre lbenord lbenodr lbenrod lbenrdo lbendro lbendor
lbeonrd lbeondr lbeornd lbeordn lbeodrn lbeodnr lberond lberodn lbernod lberndo lberdno
lberdon lbedorn lbedonr lbedron lbedrno lbednro lbednor lbdnoer lbdnore lbdneor lbdnero
lbdnreo lbdnroe lbdoner lbdonre lbdoenr lbdoern lbdoren lbdorne lbdeonr lbdeorn lbdenor
lbdenro lbderno lbderon lbdroen lbdrone lbdreon lbdreno lbdrneo lbdrnoe ldrnobe ldrnoeb
ldrnboe ldrnbeo ldrnebo ldrneob ldronbe ldroneb ldrobne ldroben ldroebn ldroenb ldrbone
ldrboen ldrbnoe ldrbneo ldrbeno ldrbeon ldreobn ldreonb ldrebon ldrebno ldrenbo ldrenob
ldnrobe ldnroeb ldnrboe ldnrbeo ldnrebo ldnreob ldnorbe ldnoreb ldnobre ldnober ldnoebr
ldnoerb ldnbore ldnboer ldnbroe ldnbreo ldnbero ldnbeor ldneobr ldneorb ldnebor ldnebro
ldnerbo ldnerob ldonrbe ldonreb ldonbre ldonber ldonebr ldonerb ldornbe ldorneb ldorbne
ldorben ldorebn ldorenb ldobrne ldobren ldobnre ldobner ldobenr ldobern ldoerbn ldoernb
ldoebrn ldoebnr ldoenbr ldoenrb ldbnore ldbnoer ldbnroe ldbnreo ldbnero ldbneor ldbonre
ldboner ldborne ldboren ldboern ldboenr ldbrone ldbroen ldbrnoe ldbrneo ldbreno ldbreon
ldbeorn ldbeonr ldberon ldberno ldbenro ldbenor ldenobr ldenorb ldenbor ldenbro ldenrbo
ldenrob ldeonbr ldeonrb ldeobnr ldeobrn ldeorbn ldeornb ldebonr ldeborn ldebnor ldebnro
ldebrno ldebron lderobn lderonb lderbon lderbno ldernbo ldernob dernolb dernobl dernlob
dernlbo dernblo dernbol deronlb deronbl derolnb derolbn derobln derobnl derlonb derlobn
derlnob derlnbo derlbno derlbon derboln derbonl derblon derblno derbnlo derbnol denrolb
denrobl denrlob denrlbo denrblo denrbol denorlb denorbl denolrb denolbr denoblr denobrl
denlorb denlobr denlrob denlrbo denlbro denlbor denbolr denborl denblor denblro denbrlo
denbrol deonrlb deonrbl deonlrb deonlbr deonblr deonbrl deornlb deornbl deorlnb deorlbn
deorbln deorbnl deolrnb deolrbn deolnrb deolnbr deolbnr deolbrn deobrln deobrnl deoblrn
deoblnr deobnlr deobnrl delnorb delnobr delnrob delnrbo delnbro delnbor delonrb delonbr
delornb delorbn delobrn delobnr delronb delrobn delrnob delrnbo delrbno delrbon delborn
delbonr delbron delbrno delbnro delbnor debnolr debnorl debnlor debnlro debnrlo debnrol
debonlr debonrl debolnr debolrn deborln debornl deblonr deblorn deblnor deblnro deblrno
deblron debroln debronl debrlon debrlno debrnlo debrnol drenolb drenobl drenlob drenlbo
drenblo drenbol dreonlb dreonbl dreolnb dreolbn dreobln dreobnl drelonb drelobn drelnob
drelnbo drelbno drelbon dreboln drebonl dreblon dreblno drebnlo drebnol drneolb drneobl
drnelob drnelbo drneblo drnebol drnoelb drnoebl drnoleb drnolbe drnoble drnobel drnloeb
drnlobe drnleob drnlebo drnlbeo drnlboe drnbole drnboel drnbloe drnbleo drnbelo drnbeol
dronelb dronebl dronleb dronlbe dronble dronbel droenlb droenbl droelnb droelbn droebln
droebnl drolenb drolebn drolneb drolnbe drolbne drolben drobeln drobenl droblen droblne
drobnle drobnel drlnoeb drlnobe drlneob drlnebo drlnbeo drlnboe drloneb drlonbe drloenb
drloebn drloben drlobne drleonb drleobn drlenob drlenbo drlebno drlebon drlboen drlbone
drlbeon drlbeno drlbneo drlbnoe drbnole drbnoel drbnloe drbnleo drbnelo drbneol drbonle
drbonel drbolne drbolen drboeln drboenl drblone drbloen drblnoe drblneo drbleno drbleon
drbeoln drbeonl drbelon drbelno drbenlo drbenol dnreolb dnreobl dnrelob dnrelbo dnreblo
dnrebol dnroelb dnroebl dnroleb dnrolbe dnroble dnrobel dnrloeb dnrlobe dnrleob dnrlebo
dnrlbeo dnrlboe dnrbole dnrboel dnrbloe dnrbleo dnrbelo dnrbeol dnerolb dnerobl dnerlob
dnerlbo dnerblo dnerbol dneorlb dneorbl dneolrb dneolbr dneoblr dneobrl dnelorb dnelobr
dnelrob dnelrbo dnelbro dnelbor dnebolr dneborl dneblor dneblro dnebrlo dnebrol dnoerlb
dnoerbl dnoelrb dnoelbr dnoeblr dnoebrl dnorelb dnorebl dnorleb dnorlbe dnorble dnorbel
dnolreb dnolrbe dnolerb dnolebr dnolber dnolbre dnobrle dnobrel dnoblre dnobler dnobelr
dnoberl dnleorb dnleobr dnlerob dnlerbo dnlebro dnlebor dnloerb dnloebr dnloreb dnlorbe
dnlobre dnlober dnlroeb dnlrobe dnlreob dnlrebo dnlrbeo dnlrboe dnlbore dnlboer dnlbroe
dnlbreo dnlbero dnlbeor dnbeolr dnbeorl dnbelor dnbelro dnberlo dnberol dnboelr dnboerl
dnboler dnbolre dnborle dnborel dnbloer dnblore dnbleor dnblero dnblreo dnblroe dnbrole
dnbroel dnbrloe dnbrleo dnbrelo dnbreol dornelb dornebl dornleb dornlbe dornble dornbel
dorenlb dorenbl dorelnb dorelbn dorebln dorebnl dorlenb dorlebn dorlneb dorlnbe dorlbne
dorlben dorbeln dorbenl dorblen dorblne dorbnle dorbnel donrelb donrebl donrleb donrlbe
donrble donrbel donerlb donerbl donelrb donelbr doneblr donebrl donlerb donlebr donlreb
donlrbe donlbre donlber donbelr donberl donbler donblre donbrle donbrel doenrlb doenrbl
doenlrb doenlbr doenblr doenbrl doernlb doernbl doerlnb doerlbn doerbln doerbnl doelrnb
doelrbn doelnrb doelnbr doelbnr doelbrn doebrln doebrnl doeblrn doeblnr doebnlr doebnrl
dolnerb dolnebr dolnreb dolnrbe dolnbre dolnber dolenrb dolenbr dolernb dolerbn dolebrn
dolebnr dolrenb dolrebn dolrneb dolrnbe dolrbne dolrben dolbern dolbenr dolbren dolbrne
dolbnre dolbner dobnelr dobnerl dobnler dobnlre dobnrle dobnrel dobenlr dobenrl dobelnr
dobelrn doberln dobernl doblenr doblern doblner doblnre doblrne doblren dobreln dobrenl
dobrlen dobrlne dobrnle dobrnel dlrnoeb dlrnobe dlrneob dlrnebo dlrnbeo dlrnboe dlroneb
dlronbe dlroenb dlroebn dlroben dlrobne dlreonb dlreobn dlrenob dlrenbo dlrebno dlrebon
dlrboen dlrbone dlrbeon dlrbeno dlrbneo dlrbnoe dlnroeb dlnrobe dlnreob dlnrebo dlnrbeo
dlnrboe dlnoreb dlnorbe dlnoerb dlnoebr dlnober dlnobre dlneorb dlneobr dlnerob dlnerbo
dlnebro dlnebor dlnboer dlnbore dlnbeor dlnbero dlnbreo dlnbroe dlonreb dlonrbe dlonerb
dlonebr dlonber dlonbre dlorneb dlornbe dlorenb dlorebn dlorben dlorbne dloernb dloerbn
dloenrb dloenbr dloebnr dloebrn dlobren dlobrne dlobern dlobenr dlobner dlobnre dlenorb
dlenobr dlenrob dlenrbo dlenbro dlenbor dleonrb dleonbr dleornb dleorbn dleobrn dleobnr
dleronb dlerobn dlernob dlernbo dlerbno dlerbon dleborn dlebonr dlebron dlebrno dlebnro
dlebnor dlbnoer dlbnore dlbneor dlbnero dlbnreo dlbnroe dlboner dlbonre dlboenr dlboern
dlboren dlborne dlbeonr dlbeorn dlbenor dlbenro dlberno dlberon dlbroen dlbrone dlbreon
dlbreno dlbrneo dlbrnoe dbrnole dbrnoel dbrnloe dbrnleo dbrnelo dbrneol dbronle dbronel
dbrolne dbrolen dbroeln dbroenl dbrlone dbrloen dbrlnoe dbrlneo dbrleno dbrleon dbreoln
dbreonl dbrelon dbrelno dbrenlo dbrenol dbnrole dbnroel dbnrloe dbnrleo dbnrelo dbnreol
dbnorle dbnorel dbnolre dbnoler dbnoelr dbnoerl dbnlore dbnloer dbnlroe dbnlreo dbnlero
dbnleor dbneolr dbneorl dbnelor dbnelro dbnerlo dbnerol dbonrle dbonrel dbonlre dbonler
dbonelr dbonerl dbornle dbornel dborlne dborlen dboreln dborenl dbolrne dbolren dbolnre
dbolner dbolenr dbolern dboerln dboernl dboelrn dboelnr dboenlr dboenrl dblnore dblnoer
dblnroe dblnreo dblnero dblneor dblonre dbloner dblorne dbloren dbloern dbloenr dblrone
dblroen dblrnoe dblrneo dblreno dblreon dbleorn dbleonr dbleron dblerno dblenro dblenor
dbenolr dbenorl dbenlor dbenlro dbenrlo dbenrol dbeonlr dbeonrl dbeolnr dbeolrn dbeorln
dbeornl dbelonr dbelorn dbelnor dbelnro dbelrno dbelron dberoln dberonl dberlon dberlno
dbernlo dbernol

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History of cryptography
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