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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: borders
cipher variations:
cpsefst dqtfgtu erughuv fsvhivw gtwijwx
huxjkxy ivyklyz jwzlmza kxamnab lybnobc
mzcopcd nadpqde obeqref pcfrsfg qdgstgh
rehtuhi sfiuvij tgjvwjk uhkwxkl vilxylm
wjmyzmn xknzano yloabop zmpbcpq anqcdqr

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: borders
Cipher: yliwvih

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: borders
Cipher: AAAAB ABBAB BAAAA AAABB AABAA BAAAA 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: borders
cipher variations:
cpsefsteraknadgtiqvinivqwdqxkxyclyhmzgitgrqdwujwlsfearev
uhmgzmfwjumhupylcspczankyxkjdqtfgtufsblobehujrwjojwrxery
lyzdmzinahjuhsrexvkxmtgfbsfwvinhangxkvnivqzmdtqdabolzylk
erughuvgtcmpcfivksxkpkxsyfszmzaenajobikvitsfywlynuhgctgx
wjoibohylwojwraneurebcpmazmlfsvhivwhudnqdgjwltylqlytzgta
nabfobkpcjlwjutgzxmzovihduhyxkpjcpizmxpkxsbofvsfcdqnbanm
gtwijwxiveorehkxmuzmrmzuahubobcgpclqdkmxkvuhaynapwjieviz
ylqkdqjanyqlytcpgwtgderocbonhuxjkxyjwfpsfilynvansnavbivc
pcdhqdmrelnylwvibzobqxkjfwjazmrlerkbozrmzudqhxuhefspdcpo
ivyklyzkxgqtgjmzowbotobwcjwdqdeirensfmozmxwjcapcrylkgxkb
ansmfslcpasnaveriyvifgtqedqpjwzlmzalyhruhknapxcpupcxdkxe
refjsfotgnpanyxkdbqdszmlhylcbotngtmdqbtobwfsjzwjghurferq
kxamnabmzisvilobqydqvqdyelyfsfgktgpuhoqbozylecretanmizmd
cpuohunercupcxgtkaxkhivsgfsrlybnobcnajtwjmpcrzerwrezfmzg
tghluhqviprcpazmfdsfubonjanedqvpivofsdvqdyhulbylijwthgts
mzcopcdobkuxknqdsafsxsfagnahuhimvirwjqsdqbangetgvcpokbof
erwqjwpgtewrezivmczmjkxuihutnadpqdepclvyloretbgtytgbhobi
vijnwjsxkrtercbohfuhwdqplcpgfsxrkxqhufxsfajwndanklyvjivu
obeqrefqdmwzmpsfuchuzuhcipcjwjkoxktylsufsdcpigvixerqmdqh
gtyslyrivgytgbkxoebolmzwkjwvpcfrsfgrenxanqtgvdivavidjqdk
xklpyluzmtvgtedqjhwjyfsrnerihuztmzsjwhzuhclypfcpmnaxlkxw
qdgstghsfoyboruhwejwbwjekrelylmqzmvanuwhuferkixkzgtsofsj
ivaunatkxiavidmzqgdqnobymlyxrehtuhitgpzcpsvixfkxcxkflsfm
zmnranwbovxivgfsljylahutpgtkjwbvobulyjbwjenarheropcznmzy
sfiuvijuhqadqtwjyglydylgmtgnanosboxcpwyjwhgtmkzmbivuqhul
kxcwpcvmzkcxkfobsifspqdaonaztgjvwjkvirberuxkzhmzezmhnuho
boptcpydqxzkxihunlancjwvrivmlydxqdwnaldylgpctjgtqrebpoba
uhkwxklwjscfsvylainafaniovipcpqudqzeryalyjivombodkxwsjwn
mzeyrexobmezmhqdukhursfcqpcbvilxylmxktdgtwzmbjobgbojpwjq
dqrverafszbmzkjwpncpelyxtkxonafzsfypcnfanirevlivstgdrqdc
wjmyzmnyluehuxanckpchcpkqxkrerswfsbgtacnalkxqodqfmzyulyp
obgatgzqdogbojsfwmjwtuhesredxknzanozmvfivybodlqdidqlryls
fstxgtchubdobmlyrpergnazvmzqpchbuharephcpktgxnkxuviftsfe
yloabopanwgjwzcpemrejermszmtgtuyhudivcepcnmzsqfshobawnar
qdicvibsfqidqluhyolyvwjgutgfzmpbcpqboxhkxadqfnsfkfsntanu
huvzivejwdfqdonatrgtipcbxobsrejdwjctgrjermvizpmzwxkhvuhg
anqcdqrcpyilybergotglgtoubovivwajwfkxegrepobushujqdcypct
sfkexkduhskfsnwjaqnaxyliwvihbordersdqzjmzcfshpuhmhupvcpw
jwxbkxglyfhsfqpcvtivkredzqdutglfylevitlgtoxkbrobyzmjxwji

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: borders
Cipher: obeqref

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: borders
Cipher: 21432441512434

Extended Methods:
Method #1

Plaintext: borders
method variations:
gtwikwxmybopbcrdgtughwimyzmn

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
b o r d e r s 
2 4 2 4 5 2 3 
1 3 4 1 1 4 4 
They are then read out in rows:
24245231341144
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: borders
Cipher: rrkcsat

Read more ...
Method #3

Plaintext: borders
method variations:
qhtvfoi htvfoiq tvfoiqh
vfoiqht foiqhtv oiqhtvf
iqhtvfo

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: borders

all 5040 cipher variations:
borders bordesr bordres bordrse bordsre bordser boredrs boredsr borerds borersd boresrd
boresdr borreds borresd borrdes borrdse borrsde borrsed borserd borsedr borsred borsrde
borsdre borsder bodrers bodresr bodrres bodrrse bodrsre bodrser boderrs bodersr boderrs
bodersr bodesrr bodesrr bodrers bodresr bodrres bodrrse bodrsre bodrser bodserr bodserr
bodsrer bodsrre bodsrre bodsrer boedrrs boedrsr boedrrs boedrsr boedsrr boedsrr boerdrs
boerdsr boerrds boerrsd boersrd boersdr boerrds boerrsd boerdrs boerdsr boersdr boersrd
boesrrd boesrdr boesrrd boesrdr boesdrr boesdrr borders bordesr bordres bordrse bordsre
bordser boredrs boredsr borerds borersd boresrd boresdr borreds borresd borrdes borrdse
borrsde borrsed borserd borsedr borsred borsrde borsdre borsder bosderr bosderr bosdrer
bosdrre bosdrre bosdrer bosedrr bosedrr boserdr boserrd boserrd boserdr bosredr bosrerd
bosrder bosrdre bosrrde bosrred bosrerd bosredr bosrred bosrrde bosrdre bosrder broders
brodesr brodres brodrse brodsre brodser broedrs broedsr broerds broersd broesrd broesdr
broreds broresd brordes brordse brorsde brorsed broserd brosedr brosred brosrde brosdre
brosder brdoers brdoesr brdores brdorse brdosre brdoser brdeors brdeosr brderos brderso
brdesro brdesor brdreos brdreso brdroes brdrose brdrsoe brdrseo brdsero brdseor brdsreo
brdsroe brdsore brdsoer bredors bredosr bredros bredrso bredsro bredsor breodrs breodsr
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esdrorb esdrobr esdobrr esdobrr esdorbr esdorrb esdorrb esdorbr esbdrro esbdror esbdrro
esbdror esbdorr esbdorr esbrdro esbrdor esbrrdo esbrrod esbrord esbrodr esbrrdo esbrrod
esbrdro esbrdor esbrodr esbrord esborrd esbordr esborrd esbordr esbodrr esbodrr esrdbro
esrdbor esrdrbo esrdrob esrdorb esrdobr esrbdro esrbdor esrbrdo esrbrod esrbord esrbodr
esrrbdo esrrbod esrrdbo esrrdob esrrodb esrrobd esrobrd esrobdr esrorbd esrordb esrodrb
esrodbr esodbrr esodbrr esodrbr esodrrb esodrrb esodrbr esobdrr esobdrr esobrdr esobrrd
esobrrd esobrdr esorbdr esorbrd esordbr esordrb esorrdb esorrbd esorbrd esorbdr esorrbd
esorrdb esordrb esordbr rordebs rordesb rordbes rordbse rordsbe rordseb roredbs roredsb
rorebds rorebsd roresbd roresdb rorbeds rorbesd rorbdes rorbdse rorbsde rorbsed rorsebd
rorsedb rorsbed rorsbde rorsdbe rorsdeb rodrebs rodresb rodrbes rodrbse rodrsbe rodrseb
roderbs rodersb rodebrs rodebsr rodesbr rodesrb rodbers rodbesr rodbres rodbrse rodbsre
rodbser rodsebr rodserb rodsber rodsbre rodsrbe rodsreb roedrbs roedrsb roedbrs roedbsr
roedsbr roedsrb roerdbs roerdsb roerbds roerbsd roersbd roersdb roebrds roebrsd roebdrs
roebdsr roebsdr roebsrd roesrbd roesrdb roesbrd roesbdr roesdbr roesdrb robders robdesr
robdres robdrse robdsre robdser robedrs robedsr roberds robersd robesrd robesdr robreds
robresd robrdes robrdse robrsde robrsed robserd robsedr robsred robsrde robsdre robsder
rosdebr rosderb rosdber rosdbre rosdrbe rosdreb rosedbr rosedrb rosebdr rosebrd roserbd
roserdb rosbedr rosberd rosbder rosbdre rosbrde rosbred rosrebd rosredb rosrbed rosrbde
rosrdbe rosrdeb rrodebs rrodesb rrodbes rrodbse rrodsbe rrodseb rroedbs rroedsb rroebds
rroebsd rroesbd rroesdb rrobeds rrobesd rrobdes rrobdse rrobsde rrobsed rrosebd rrosedb
rrosbed rrosbde rrosdbe rrosdeb rrdoebs rrdoesb rrdobes rrdobse rrdosbe rrdoseb rrdeobs
rrdeosb rrdebos rrdebso rrdesbo rrdesob rrdbeos rrdbeso rrdboes rrdbose rrdbsoe rrdbseo
rrdsebo rrdseob rrdsbeo rrdsboe rrdsobe rrdsoeb rredobs rredosb rredbos rredbso rredsbo
rredsob rreodbs rreodsb rreobds rreobsd rreosbd rreosdb rrebods rrebosd rrebdos rrebdso
rrebsdo rrebsod rresobd rresodb rresbod rresbdo rresdbo rresdob rrbdeos rrbdeso rrbdoes
rrbdose rrbdsoe rrbdseo rrbedos rrbedso rrbeods rrbeosd rrbesod rrbesdo rrboeds rrboesd
rrbodes rrbodse rrbosde rrbosed rrbseod rrbsedo rrbsoed rrbsode rrbsdoe rrbsdeo rrsdebo
rrsdeob rrsdbeo rrsdboe rrsdobe rrsdoeb rrsedbo rrsedob rrsebdo rrsebod rrseobd rrseodb
rrsbedo rrsbeod rrsbdeo rrsbdoe rrsbode rrsboed rrsoebd rrsoedb rrsobed rrsobde rrsodbe
rrsodeb rdroebs rdroesb rdrobes rdrobse rdrosbe rdroseb rdreobs rdreosb rdrebos rdrebso
rdresbo rdresob rdrbeos rdrbeso rdrboes rdrbose rdrbsoe rdrbseo rdrsebo rdrseob rdrsbeo
rdrsboe rdrsobe rdrsoeb rdorebs rdoresb rdorbes rdorbse rdorsbe rdorseb rdoerbs rdoersb
rdoebrs rdoebsr rdoesbr rdoesrb rdobers rdobesr rdobres rdobrse rdobsre rdobser rdosebr
rdoserb rdosber rdosbre rdosrbe rdosreb rdeorbs rdeorsb rdeobrs rdeobsr rdeosbr rdeosrb
rderobs rderosb rderbos rderbso rdersbo rdersob rdebros rdebrso rdebors rdebosr rdebsor
rdebsro rdesrbo rdesrob rdesbro rdesbor rdesobr rdesorb rdboers rdboesr rdbores rdborse
rdbosre rdboser rdbeors rdbeosr rdberos rdberso rdbesro rdbesor rdbreos rdbreso rdbroes
rdbrose rdbrsoe rdbrseo rdbsero rdbseor rdbsreo rdbsroe rdbsore rdbsoer rdsoebr rdsoerb
rdsober rdsobre rdsorbe rdsoreb rdseobr rdseorb rdsebor rdsebro rdserbo rdserob rdsbeor
rdsbero rdsboer rdsbore rdsbroe rdsbreo rdsrebo rdsreob rdsrbeo rdsrboe rdsrobe rdsroeb
rerdobs rerdosb rerdbos rerdbso rerdsbo rerdsob rerodbs rerodsb rerobds rerobsd rerosbd
rerosdb rerbods rerbosd rerbdos rerbdso rerbsdo rerbsod rersobd rersodb rersbod rersbdo
rersdbo rersdob redrobs redrosb redrbos redrbso redrsbo redrsob redorbs redorsb redobrs
redobsr redosbr redosrb redbors redbosr redbros redbrso redbsro redbsor redsobr redsorb
redsbor redsbro redsrbo redsrob reodrbs reodrsb reodbrs reodbsr reodsbr reodsrb reordbs
reordsb reorbds reorbsd reorsbd reorsdb reobrds reobrsd reobdrs reobdsr reobsdr reobsrd
reosrbd reosrdb reosbrd reosbdr reosdbr reosdrb rebdors rebdosr rebdros rebdrso rebdsro
rebdsor rebodrs rebodsr rebords reborsd rebosrd rebosdr rebrods rebrosd rebrdos rebrdso
rebrsdo rebrsod rebsord rebsodr rebsrod rebsrdo rebsdro rebsdor resdobr resdorb resdbor
resdbro resdrbo resdrob resodbr resodrb resobdr resobrd resorbd resordb resbodr resbord
resbdor resbdro resbrdo resbrod resrobd resrodb resrbod resrbdo resrdbo resrdob rbrdeos
rbrdeso rbrdoes rbrdose rbrdsoe rbrdseo rbredos rbredso rbreods rbreosd rbresod rbresdo
rbroeds rbroesd rbrodes rbrodse rbrosde rbrosed rbrseod rbrsedo rbrsoed rbrsode rbrsdoe
rbrsdeo rbdreos rbdreso rbdroes rbdrose rbdrsoe rbdrseo rbderos rbderso rbdeors rbdeosr
rbdesor rbdesro rbdoers rbdoesr rbdores rbdorse rbdosre rbdoser rbdseor rbdsero rbdsoer
rbdsore rbdsroe rbdsreo rbedros rbedrso rbedors rbedosr rbedsor rbedsro rberdos rberdso
rberods rberosd rbersod rbersdo rbeords rbeorsd rbeodrs rbeodsr rbeosdr rbeosrd rbesrod
rbesrdo rbesord rbesodr rbesdor rbesdro rboders rbodesr rbodres rbodrse rbodsre rbodser
rboedrs rboedsr rboerds rboersd rboesrd rboesdr rboreds rboresd rbordes rbordse rborsde
rborsed rboserd rbosedr rbosred rbosrde rbosdre rbosder rbsdeor rbsdero rbsdoer rbsdore
rbsdroe rbsdreo rbsedor rbsedro rbseodr rbseord rbserod rbserdo rbsoedr rbsoerd rbsoder
rbsodre rbsorde rbsored rbsreod rbsredo rbsroed rbsrode rbsrdoe rbsrdeo rsrdebo rsrdeob
rsrdbeo rsrdboe rsrdobe rsrdoeb rsredbo rsredob rsrebdo rsrebod rsreobd rsreodb rsrbedo
rsrbeod rsrbdeo rsrbdoe rsrbode rsrboed rsroebd rsroedb rsrobed rsrobde rsrodbe rsrodeb
rsdrebo rsdreob rsdrbeo rsdrboe rsdrobe rsdroeb rsderbo rsderob rsdebro rsdebor rsdeobr
rsdeorb rsdbero rsdbeor rsdbreo rsdbroe rsdbore rsdboer rsdoebr rsdoerb rsdober rsdobre
rsdorbe rsdoreb rsedrbo rsedrob rsedbro rsedbor rsedobr rsedorb rserdbo rserdob rserbdo
rserbod rserobd rserodb rsebrdo rsebrod rsebdro rsebdor rsebodr rsebord rseorbd rseordb
rseobrd rseobdr rseodbr rseodrb rsbdero rsbdeor rsbdreo rsbdroe rsbdore rsbdoer rsbedro
rsbedor rsberdo rsberod rsbeord rsbeodr rsbredo rsbreod rsbrdeo rsbrdoe rsbrode rsbroed
rsboerd rsboedr rsbored rsborde rsbodre rsboder rsodebr rsoderb rsodber rsodbre rsodrbe
rsodreb rsoedbr rsoedrb rsoebdr rsoebrd rsoerbd rsoerdb rsobedr rsoberd rsobder rsobdre
rsobrde rsobred rsorebd rsoredb rsorbed rsorbde rsordbe rsordeb sorderb sordebr sordreb
sordrbe sordbre sordber soredrb soredbr sorerdb sorerbd sorebrd sorebdr sorredb sorrebd
sorrdeb sorrdbe sorrbde sorrbed sorberd sorbedr sorbred sorbrde sorbdre sorbder sodrerb
sodrebr sodrreb sodrrbe sodrbre sodrber soderrb soderbr soderrb soderbr sodebrr sodebrr
sodrerb sodrebr sodrreb sodrrbe sodrbre sodrber sodberr sodberr sodbrer sodbrre sodbrre
sodbrer soedrrb soedrbr soedrrb soedrbr soedbrr soedbrr soerdrb soerdbr soerrdb soerrbd
soerbrd soerbdr soerrdb soerrbd soerdrb soerdbr soerbdr soerbrd soebrrd soebrdr soebrrd
soebrdr soebdrr soebdrr sorderb sordebr sordreb sordrbe sordbre sordber soredrb soredbr
sorerdb sorerbd sorebrd sorebdr sorredb sorrebd sorrdeb sorrdbe sorrbde sorrbed sorberd
sorbedr sorbred sorbrde sorbdre sorbder sobderr sobderr sobdrer sobdrre sobdrre sobdrer
sobedrr sobedrr soberdr soberrd soberrd soberdr sobredr sobrerd sobrder sobrdre sobrrde
sobrred sobrerd sobredr sobrred sobrrde sobrdre sobrder sroderb srodebr srodreb srodrbe
srodbre srodber sroedrb sroedbr sroerdb sroerbd sroebrd sroebdr sroredb srorebd srordeb
srordbe srorbde srorbed sroberd srobedr srobred srobrde srobdre srobder srdoerb srdoebr
srdoreb srdorbe srdobre srdober srdeorb srdeobr srderob srderbo srdebro srdebor srdreob
srdrebo srdroeb srdrobe srdrboe srdrbeo srdbero srdbeor srdbreo srdbroe srdbore srdboer
sredorb sredobr sredrob sredrbo sredbro sredbor sreodrb sreodbr sreordb sreorbd sreobrd
sreobdr srerodb srerobd srerdob srerdbo srerbdo srerbod srebord srebodr srebrod srebrdo
srebdro srebdor srrdeob srrdebo srrdoeb srrdobe srrdboe srrdbeo srredob srredbo srreodb
srreobd srrebod srrebdo srroedb srroebd srrodeb srrodbe srrobde srrobed srrbeod srrbedo
srrboed srrbode srrbdoe srrbdeo srbdero srbdeor srbdreo srbdroe srbdore srbdoer srbedro
srbedor srberdo srberod srbeord srbeodr srbredo srbreod srbrdeo srbrdoe srbrode srbroed
srboerd srboedr srbored srborde srbodre srboder sdroerb sdroebr sdroreb sdrorbe sdrobre
sdrober sdreorb sdreobr sdrerob sdrerbo sdrebro sdrebor sdrreob sdrrebo sdrroeb sdrrobe
sdrrboe sdrrbeo sdrbero sdrbeor sdrbreo sdrbroe sdrbore sdrboer sdorerb sdorebr sdorreb
sdorrbe sdorbre sdorber sdoerrb sdoerbr sdoerrb sdoerbr sdoebrr sdoebrr sdorerb sdorebr
sdorreb sdorrbe sdorbre sdorber sdoberr sdoberr sdobrer sdobrre sdobrre sdobrer sdeorrb
sdeorbr sdeorrb sdeorbr sdeobrr sdeobrr sderorb sderobr sderrob sderrbo sderbro sderbor
sderrob sderrbo sderorb sderobr sderbor sderbro sdebrro sdebror sdebrro sdebror sdeborr
sdeborr sdroerb sdroebr sdroreb sdrorbe sdrobre sdrober sdreorb sdreobr sdrerob sdrerbo
sdrebro sdrebor sdrreob sdrrebo sdrroeb sdrrobe sdrrboe sdrrbeo sdrbero sdrbeor sdrbreo
sdrbroe sdrbore sdrboer sdboerr sdboerr sdborer sdborre sdborre sdborer sdbeorr sdbeorr
sdberor sdberro sdberro sdberor sdbreor sdbrero sdbroer sdbrore sdbrroe sdbrreo sdbrero
sdbreor sdbrreo sdbrroe sdbrore sdbroer serdorb serdobr serdrob serdrbo serdbro serdbor
serodrb serodbr serordb serorbd serobrd serobdr serrodb serrobd serrdob serrdbo serrbdo
serrbod serbord serbodr serbrod serbrdo serbdro serbdor sedrorb sedrobr sedrrob sedrrbo
sedrbro sedrbor sedorrb sedorbr sedorrb sedorbr sedobrr sedobrr sedrorb sedrobr sedrrob
sedrrbo sedrbro sedrbor sedborr sedborr sedbror sedbrro sedbrro sedbror seodrrb seodrbr
seodrrb seodrbr seodbrr seodbrr seordrb seordbr seorrdb seorrbd seorbrd seorbdr seorrdb
seorrbd seordrb seordbr seorbdr seorbrd seobrrd seobrdr seobrrd seobrdr seobdrr seobdrr
serdorb serdobr serdrob serdrbo serdbro serdbor serodrb serodbr serordb serorbd serobrd
serobdr serrodb serrobd serrdob serrdbo serrbdo serrbod serbord serbodr serbrod serbrdo
serbdro serbdor sebdorr sebdorr sebdror sebdrro sebdrro sebdror sebodrr sebodrr sebordr
seborrd seborrd sebordr sebrodr sebrord sebrdor sebrdro sebrrdo sebrrod sebrord sebrodr
sebrrod sebrrdo sebrdro sebrdor srrdeob srrdebo srrdoeb srrdobe srrdboe srrdbeo srredob
srredbo srreodb srreobd srrebod srrebdo srroedb srroebd srrodeb srrodbe srrobde srrobed
srrbeod srrbedo srrboed srrbode srrbdoe srrbdeo srdreob srdrebo srdroeb srdrobe srdrboe
srdrbeo srderob srderbo srdeorb srdeobr srdebor srdebro srdoerb srdoebr srdoreb srdorbe
srdobre srdober srdbeor srdbero srdboer srdbore srdbroe srdbreo sredrob sredrbo sredorb
sredobr sredbor sredbro srerdob srerdbo srerodb srerobd srerbod srerbdo sreordb sreorbd
sreodrb sreodbr sreobdr sreobrd srebrod srebrdo srebord srebodr srebdor srebdro sroderb
srodebr srodreb srodrbe srodbre srodber sroedrb sroedbr sroerdb sroerbd sroebrd sroebdr
sroredb srorebd srordeb srordbe srorbde srorbed sroberd srobedr srobred srobrde srobdre
srobder srbdeor srbdero srbdoer srbdore srbdroe srbdreo srbedor srbedro srbeodr srbeord
srberod srberdo srboedr srboerd srboder srbodre srborde srbored srbreod srbredo srbroed
srbrode srbrdoe srbrdeo sbrdero sbrdeor sbrdreo sbrdroe sbrdore sbrdoer sbredro sbredor
sbrerdo sbrerod sbreord sbreodr sbrredo sbrreod sbrrdeo sbrrdoe sbrrode sbrroed sbroerd
sbroedr sbrored sbrorde sbrodre sbroder sbdrero sbdreor sbdrreo sbdrroe sbdrore sbdroer
sbderro sbderor sbderro sbderor sbdeorr sbdeorr sbdrero sbdreor sbdrreo sbdrroe sbdrore
sbdroer sbdoerr sbdoerr sbdorer sbdorre sbdorre sbdorer sbedrro sbedror sbedrro sbedror
sbedorr sbedorr sberdro sberdor sberrdo sberrod sberord sberodr sberrdo sberrod sberdro
sberdor sberodr sberord sbeorrd sbeordr sbeorrd sbeordr sbeodrr sbeodrr sbrdero sbrdeor
sbrdreo sbrdroe sbrdore sbrdoer sbredro sbredor sbrerdo sbrerod sbreord sbreodr sbrredo
sbrreod sbrrdeo sbrrdoe sbrrode sbrroed sbroerd sbroedr sbrored sbrorde sbrodre sbroder
sboderr sboderr sbodrer sbodrre sbodrre sbodrer sboedrr sboedrr sboerdr sboerrd sboerrd
sboerdr sboredr sborerd sborder sbordre sborrde sborred sborerd sboredr sborred sborrde
sbordre sborder

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History of cryptography
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