easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

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sherwin

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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: decavit
cipher variations:
efdbwju fgecxkv ghfdylw higezmx ijhfany
jkigboz kljhcpa lmkidqb mnljerc nomkfsd
opnlgte pqomhuf qrpnivg rsqojwh strpkxi
tusqlyj uvtrmzk vwusnal wxvtobm xywupcn
yzxvqdo zaywrep abzxsfq bcaytgr cdbzuhs

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: decavit
Cipher: wvxzerg

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: decavit
Cipher: AAABB AABAA AAABA AAAAA BBBAB ABAAA BAABA

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: decavit
cipher variations:
efdbwjuknhbmzgqvlbcpswdpbsfecltbivqitxbylcujfberaarjbuhm
gznbkxymhrbankspvbqdwyxzbgtifgecxkvloicnahrwmcdqtxeqctgf
dmucjwrjuyczmdvkgcfsbbskcvinhaoclyzniscboltqwcrexzyachuj
ghfdylwmpjdobisxnderuyfrduhgenvdkxskvzdanewlhdgtcctldwjo
ibpdmzaojtdcpmurxdsfyazbdivkhigezmxnqkepcjtyoefsvzgsevih
fowelytlwaebofxmiehuddumexkpjcqenabpkuedqnvsyetgzbacejwl
ijhfanyorlfqdkuzpfgtwahtfwjigpxfmzumxbfcpgynjfiveevnfylq
kdrfobcqlvferowtzfuhacbdfkxmjkigbozpsmgrelvaqghuxbiugxkj
hqygnavnycgdqhzokgjwffwogzmrlesgpcdrmwgfspxuagvibdceglyn
kljhcpaqtnhsfmwbrhivycjvhylkirzhobwozdheriaplhkxggxphans
mfthqdesnxhgtqyvbhwjcedfhmzolmkidqbruoitgnxcsijwzdkwizml
jsaipcxpaeifsjbqmilyhhyqibotnguireftoyihurzwcixkdfeginap
mnljercsvpjuhoydtjkxaelxjanmktbjqdyqbfjgtkcrnjmziizrjcpu
ohvjsfgupzjivsaxdjylegfhjobqnomkfsdtwqkvipzeuklybfmykbon
luckrezrcgkhuldsoknajjaskdqvpiwktghvqakjwtbyekzmfhgikpcr
opnlgteuxrlwjqafvlmzcgnzlcpomvdlsfasdhlivmetplobkkbtlerw
qjxluhiwrblkxuczflangihjlqdspqomhufvysmxkrbgwmnadhoamdqp
nwemtgbteimjwnfuqmpcllcumfsxrkymvijxscmlyvdagmbohjikmret
qrpnivgwztnylschxnobeipbnerqoxfnuhcufjnkxogvrnqdmmdvngty
slznwjkytdnmzwebhncpikjlnsfursqojwhxauozmtdiyopcfjqcofsr
pygovidvgkolyphwsorennewohuztmaoxklzueonaxfciodqjlkmotgv
strpkxiybvpanuejzpqdgkrdpgtsqzhpwjewhlpmzqixtpsfoofxpiva
unbpylmavfpobygdjperkmlnpuhwtusqlyjzcwqbovfkaqrehlseqhut
raiqxkfximqnarjyuqtgppgyqjwbvocqzmnbwgqpczhekqfslnmoqvix
uvtrmzkadxrcpwglbrsfimtfrivusbjrylgyjnrobskzvruhqqhzrkxc
wpdranocxhrqdaiflrgtmonprwjyvwusnalbeysdqxhmcstgjnugsjwv
tckszmhzkospctlawsvirriaslydxqesbopdyisrebjgmshunpoqsxkz
wxvtobmcfzteryindtuhkovhtkxwudltanialptqdumbxtwjssjbtmze
yrftcpqezjtsfckhntivoqprtylaxywupcndgaufszjoeuvilpwiulyx
vemubojbmqurevncyuxkttkcunafzsgudqrfakutgdlioujwprqsuzmb
yzxvqdoehbvgtakpfvwjmqxjvmzywfnvcpkcnrvsfwodzvyluuldvobg
athversgblvuhemjpvkxqsrtvanczaywrepficwhublqgwxknrykwnaz
xgowdqldoswtgxpeawzmvvmewpchbuiwfsthcmwvifnkqwlyrtsuwbod
abzxsfqgjdxivcmrhxyloszlxobayhpxermeptxuhyqfbxanwwnfxqdi
cvjxgtuidnxwjgolrxmzsutvxcpebcaytgrhkeyjwdnsiyzmptamypcb
ziqyfsnfquyvizrgcyboxxogyrejdwkyhuvjeoyxkhpmsynatvuwydqf
cdbzuhsilfzkxeotjzanqubnzqdcajrzgtogrvzwjashdzcpyyphzsfk
exlzivwkfpzyliqntzobuwvxzergdecavitjmgalyfpukaborvcoared
bksahuphswaxkbtieadqzzqiatglfymajwxlgqazmjrouapcvxwyafsh

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: decavit
Cipher: qrpnivg

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: decavit
Cipher: 41513111154244

Extended Methods:
Method #1

Plaintext: decavit
method variations:
ikhfaoyopnlftdtusqlyiyzxvqdo

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
d e c a v i t 
4 5 3 1 1 4 4 
1 1 1 1 5 2 4 
They are then read out in rows:
45311441111524
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: decavit
Cipher: ycqdavr

Read more ...
Method #3

Plaintext: decavit
method variations:
vlaaurt laaurtv aaurtvl
aurtvla urtvlaa rtvlaau
tvlaaur

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: decavit

all 5040 cipher variations:
decavit decavti decaivt decaitv decativ decatvi decvait decvati decviat decvita decvtia
decvtai decivat decivta deciavt deciatv decitav decitva dectvia dectvai dectiva dectiav
dectaiv dectavi deacvit deacvti deacivt deacitv deactiv deactvi deavcit deavcti deavict
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deativc deaticv deatciv deatcvi devacit devacti devaict devaitc devatic devatci devcait
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devtcia devtcai devtica devtiac devtaic devtaci deiavct deiavtc deiacvt deiactv deiatcv
deiatvc deivact deivatc deivcat deivcta deivtca deivtac deicvat deicvta deicavt deicatv
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vitdeca vitdcea vitdcae vitedac vitedca viteadc viteacd vitecad vitecda vitcdea vitcdae
vitceda vitcead vitcaed vitcade vtcadie vtcadei vtcaide vtcaied vtcaeid vtcaedi vtcdaie
vtcdaei vtcdiae vtcdiea vtcdeia vtcdeai vtcidae vtcidea vtciade vtciaed vtciead vtcieda
vtcedia vtcedai vtceida vtceiad vtceaid vtceadi vtacdie vtacdei vtacide vtacied vtaceid
vtacedi vtadcie vtadcei vtadice vtadiec vtadeic vtadeci vtaidce vtaidec vtaicde vtaiced
vtaiecd vtaiedc vtaedic vtaedci vtaeidc vtaeicd vtaecid vtaecdi vtdacie vtdacei vtdaice
vtdaiec vtdaeic vtdaeci vtdcaie vtdcaei vtdciae vtdciea vtdceia vtdceai vtdicae vtdicea
vtdiace vtdiaec vtdieac vtdieca vtdecia vtdecai vtdeica vtdeiac vtdeaic vtdeaci vtiadce
vtiadec vtiacde vtiaced vtiaecd vtiaedc vtidace vtidaec vtidcae vtidcea vtideca vtideac
vticdae vticdea vticade vticaed vticead vticeda vtiedca vtiedac vtiecda vtiecad vtieacd
vtieadc vteadic vteadci vteaidc vteaicd vteacid vteacdi vtedaic vtedaci vtediac vtedica
vtedcia vtedcai vteidac vteidca vteiadc vteiacd vteicad vteicda vtecdia vtecdai vtecida
vteciad vtecaid vtecadi iecavdt iecavtd iecadvt iecadtv iecatdv iecatvd iecvadt iecvatd
iecvdat iecvdta iecvtda iecvtad iecdvat iecdvta iecdavt iecdatv iecdtav iecdtva iectvda
iectvad iectdva iectdav iectadv iectavd ieacvdt ieacvtd ieacdvt ieacdtv ieactdv ieactvd
ieavcdt ieavctd ieavdct ieavdtc ieavtdc ieavtcd ieadvct ieadvtc ieadcvt ieadctv ieadtcv
ieadtvc ieatvdc ieatvcd ieatdvc ieatdcv ieatcdv ieatcvd ievacdt ievactd ievadct ievadtc
ievatdc ievatcd ievcadt ievcatd ievcdat ievcdta ievctda ievctad ievdcat ievdcta ievdact
ievdatc ievdtac ievdtca ievtcda ievtcad ievtdca ievtdac ievtadc ievtacd iedavct iedavtc
iedacvt iedactv iedatcv iedatvc iedvact iedvatc iedvcat iedvcta iedvtca iedvtac iedcvat
iedcvta iedcavt iedcatv iedctav iedctva iedtvca iedtvac iedtcva iedtcav iedtacv iedtavc
ietavdc ietavcd ietadvc ietadcv ietacdv ietacvd ietvadc ietvacd ietvdac ietvdca ietvcda
ietvcad ietdvac ietdvca ietdavc ietdacv ietdcav ietdcva ietcvda ietcvad ietcdva ietcdav
ietcadv ietcavd iceavdt iceavtd iceadvt iceadtv iceatdv iceatvd icevadt icevatd icevdat
icevdta icevtda icevtad icedvat icedvta icedavt icedatv icedtav icedtva icetvda icetvad
icetdva icetdav icetadv icetavd icaevdt icaevtd icaedvt icaedtv icaetdv icaetvd icavedt
icavetd icavdet icavdte icavtde icavted icadvet icadvte icadevt icadetv icadtev icadtve
icatvde icatved icatdve icatdev icatedv icatevd icvaedt icvaetd icvadet icvadte icvatde
icvated icveadt icveatd icvedat icvedta icvetda icvetad icvdeat icvdeta icvdaet icvdate
icvdtae icvdtea icvteda icvtead icvtdea icvtdae icvtade icvtaed icdavet icdavte icdaevt
icdaetv icdatev icdatve icdvaet icdvate icdveat icdveta icdvtea icdvtae icdevat icdevta
icdeavt icdeatv icdetav icdetva icdtvea icdtvae icdteva icdteav icdtaev icdtave ictavde
ictaved ictadve ictadev ictaedv ictaevd ictvade ictvaed ictvdae ictvdea ictveda ictvead
ictdvae ictdvea ictdave ictdaev ictdeav ictdeva ictevda ictevad ictedva ictedav icteadv
icteavd iacevdt iacevtd iacedvt iacedtv iacetdv iacetvd iacvedt iacvetd iacvdet iacvdte
iacvtde iacvted iacdvet iacdvte iacdevt iacdetv iacdtev iacdtve iactvde iactved iactdve
iactdev iactedv iactevd iaecvdt iaecvtd iaecdvt iaecdtv iaectdv iaectvd iaevcdt iaevctd
iaevdct iaevdtc iaevtdc iaevtcd iaedvct iaedvtc iaedcvt iaedctv iaedtcv iaedtvc iaetvdc
iaetvcd iaetdvc iaetdcv iaetcdv iaetcvd iavecdt iavectd iavedct iavedtc iavetdc iavetcd
iavcedt iavcetd iavcdet iavcdte iavctde iavcted iavdcet iavdcte iavdect iavdetc iavdtec
iavdtce iavtcde iavtced iavtdce iavtdec iavtedc iavtecd iadevct iadevtc iadecvt iadectv
iadetcv iadetvc iadvect iadvetc iadvcet iadvcte iadvtce iadvtec iadcvet iadcvte iadcevt
iadcetv iadctev iadctve iadtvce iadtvec iadtcve iadtcev iadtecv iadtevc iatevdc iatevcd
iatedvc iatedcv iatecdv iatecvd iatvedc iatvecd iatvdec iatvdce iatvcde iatvced iatdvec
iatdvce iatdevc iatdecv iatdcev iatdcve iatcvde iatcved iatcdve iatcdev iatcedv iatcevd
ivcaedt ivcaetd ivcadet ivcadte ivcatde ivcated ivceadt ivceatd ivcedat ivcedta ivcetda
ivcetad ivcdeat ivcdeta ivcdaet ivcdate ivcdtae ivcdtea ivcteda ivctead ivctdea ivctdae
ivctade ivctaed ivacedt ivacetd ivacdet ivacdte ivactde ivacted ivaecdt ivaectd ivaedct
ivaedtc ivaetdc ivaetcd ivadect ivadetc ivadcet ivadcte ivadtce ivadtec ivatedc ivatecd
ivatdec ivatdce ivatcde ivatced iveacdt iveactd iveadct iveadtc iveatdc iveatcd ivecadt
ivecatd ivecdat ivecdta ivectda ivectad ivedcat ivedcta ivedact ivedatc ivedtac ivedtca
ivetcda ivetcad ivetdca ivetdac ivetadc ivetacd ivdaect ivdaetc ivdacet ivdacte ivdatce
ivdatec ivdeact ivdeatc ivdecat ivdecta ivdetca ivdetac ivdceat ivdceta ivdcaet ivdcate
ivdctae ivdctea ivdteca ivdteac ivdtcea ivdtcae ivdtace ivdtaec ivtaedc ivtaecd ivtadec
ivtadce ivtacde ivtaced ivteadc ivteacd ivtedac ivtedca ivtecda ivtecad ivtdeac ivtdeca
ivtdaec ivtdace ivtdcae ivtdcea ivtceda ivtcead ivtcdea ivtcdae ivtcade ivtcaed idcavet
idcavte idcaevt idcaetv idcatev idcatve idcvaet idcvate idcveat idcveta idcvtea idcvtae
idcevat idcevta idceavt idceatv idcetav idcetva idctvea idctvae idcteva idcteav idctaev
idctave idacvet idacvte idacevt idacetv idactev idactve idavcet idavcte idavect idavetc
idavtec idavtce idaevct idaevtc idaecvt idaectv idaetcv idaetvc idatvec idatvce idatevc
idatecv idatcev idatcve idvacet idvacte idvaect idvaetc idvatec idvatce idvcaet idvcate
idvceat idvceta idvctea idvctae idvecat idvecta idveact idveatc idvetac idvetca idvtcea
idvtcae idvteca idvteac idvtaec idvtace ideavct ideavtc ideacvt ideactv ideatcv ideatvc
idevact idevatc idevcat idevcta idevtca idevtac idecvat idecvta idecavt idecatv idectav
idectva idetvca idetvac idetcva idetcav idetacv idetavc idtavec idtavce idtaevc idtaecv
idtacev idtacve idtvaec idtvace idtveac idtveca idtvcea idtvcae idtevac idtevca idteavc
idteacv idtecav idtecva idtcvea idtcvae idtceva idtceav idtcaev idtcave itcavde itcaved
itcadve itcadev itcaedv itcaevd itcvade itcvaed itcvdae itcvdea itcveda itcvead itcdvae
itcdvea itcdave itcdaev itcdeav itcdeva itcevda itcevad itcedva itcedav itceadv itceavd
itacvde itacved itacdve itacdev itacedv itacevd itavcde itavced itavdce itavdec itavedc
itavecd itadvce itadvec itadcve itadcev itadecv itadevc itaevdc itaevcd itaedvc itaedcv
itaecdv itaecvd itvacde itvaced itvadce itvadec itvaedc itvaecd itvcade itvcaed itvcdae
itvcdea itvceda itvcead itvdcae itvdcea itvdace itvdaec itvdeac itvdeca itvecda itvecad
itvedca itvedac itveadc itveacd itdavce itdavec itdacve itdacev itdaecv itdaevc itdvace
itdvaec itdvcae itdvcea itdveca itdveac itdcvae itdcvea itdcave itdcaev itdceav itdceva
itdevca itdevac itdecva itdecav itdeacv itdeavc iteavdc iteavcd iteadvc iteadcv iteacdv
iteacvd itevadc itevacd itevdac itevdca itevcda itevcad itedvac itedvca itedavc itedacv
itedcav itedcva itecvda itecvad itecdva itecdav itecadv itecavd tecavid tecavdi tecaivd
tecaidv tecadiv tecadvi tecvaid tecvadi tecviad tecvida tecvdia tecvdai tecivad tecivda
teciavd teciadv tecidav tecidva tecdvia tecdvai tecdiva tecdiav tecdaiv tecdavi teacvid
teacvdi teacivd teacidv teacdiv teacdvi teavcid teavcdi teavicd teavidc teavdic teavdci
teaivcd teaivdc teaicvd teaicdv teaidcv teaidvc teadvic teadvci teadivc teadicv teadciv
teadcvi tevacid tevacdi tevaicd tevaidc tevadic tevadci tevcaid tevcadi tevciad tevcida
tevcdia tevcdai tevicad tevicda teviacd teviadc tevidac tevidca tevdcia tevdcai tevdica
tevdiac tevdaic tevdaci teiavcd teiavdc teiacvd teiacdv teiadcv teiadvc teivacd teivadc
teivcad teivcda teivdca teivdac teicvad teicvda teicavd teicadv teicdav teicdva teidvca
teidvac teidcva teidcav teidacv teidavc tedavic tedavci tedaivc tedaicv tedaciv tedacvi
tedvaic tedvaci tedviac tedvica tedvcia tedvcai tedivac tedivca tediavc tediacv tedicav
tedicva tedcvia tedcvai tedciva tedciav tedcaiv tedcavi tceavid tceavdi tceaivd tceaidv
tceadiv tceadvi tcevaid tcevadi tceviad tcevida tcevdia tcevdai tceivad tceivda tceiavd
tceiadv tceidav tceidva tcedvia tcedvai tcediva tcediav tcedaiv tcedavi tcaevid tcaevdi
tcaeivd tcaeidv tcaediv tcaedvi tcaveid tcavedi tcavied tcavide tcavdie tcavdei tcaived
tcaivde tcaievd tcaiedv tcaidev tcaidve tcadvie tcadvei tcadive tcadiev tcadeiv tcadevi
tcvaeid tcvaedi tcvaied tcvaide tcvadie tcvadei tcveaid tcveadi tcveiad tcveida tcvedia
tcvedai tcviead tcvieda tcviaed tcviade tcvidae tcvidea tcvdeia tcvdeai tcvdiea tcvdiae
tcvdaie tcvdaei tciaved tciavde tciaevd tciaedv tciadev tciadve tcivaed tcivade tcivead
tciveda tcivdea tcivdae tcievad tcievda tcieavd tcieadv tciedav tciedva tcidvea tcidvae
tcideva tcideav tcidaev tcidave tcdavie tcdavei tcdaive tcdaiev tcdaeiv tcdaevi tcdvaie
tcdvaei tcdviae tcdviea tcdveia tcdveai tcdivae tcdivea tcdiave tcdiaev tcdieav tcdieva
tcdevia tcdevai tcdeiva tcdeiav tcdeaiv tcdeavi tacevid tacevdi taceivd taceidv tacediv
tacedvi tacveid tacvedi tacvied tacvide tacvdie tacvdei tacived tacivde tacievd taciedv
tacidev tacidve tacdvie tacdvei tacdive tacdiev tacdeiv tacdevi taecvid taecvdi taecivd
taecidv taecdiv taecdvi taevcid taevcdi taevicd taevidc taevdic taevdci taeivcd taeivdc
taeicvd taeicdv taeidcv taeidvc taedvic taedvci taedivc taedicv taedciv taedcvi tavecid
tavecdi taveicd taveidc tavedic tavedci tavceid tavcedi tavcied tavcide tavcdie tavcdei
taviced tavicde taviecd taviedc tavidec tavidce tavdcie tavdcei tavdice tavdiec tavdeic
tavdeci taievcd taievdc taiecvd taiecdv taiedcv taiedvc taivecd taivedc taivced taivcde
taivdce taivdec taicved taicvde taicevd taicedv taicdev taicdve taidvce taidvec taidcve
taidcev taidecv taidevc tadevic tadevci tadeivc tadeicv tadeciv tadecvi tadveic tadveci
tadviec tadvice tadvcie tadvcei tadivec tadivce tadievc tadiecv tadicev tadicve tadcvie
tadcvei tadcive tadciev tadceiv tadcevi tvcaeid tvcaedi tvcaied tvcaide tvcadie tvcadei
tvceaid tvceadi tvceiad tvceida tvcedia tvcedai tvciead tvcieda tvciaed tvciade tvcidae
tvcidea tvcdeia tvcdeai tvcdiea tvcdiae tvcdaie tvcdaei tvaceid tvacedi tvacied tvacide
tvacdie tvacdei tvaecid tvaecdi tvaeicd tvaeidc tvaedic tvaedci tvaiecd tvaiedc tvaiced
tvaicde tvaidce tvaidec tvadeic tvadeci tvadiec tvadice tvadcie tvadcei tveacid tveacdi
tveaicd tveaidc tveadic tveadci tvecaid tvecadi tveciad tvecida tvecdia tvecdai tveicad
tveicda tveiacd tveiadc tveidac tveidca tvedcia tvedcai tvedica tvediac tvedaic tvedaci
tviaecd tviaedc tviaced tviacde tviadce tviadec tvieacd tvieadc tviecad tviecda tviedca
tviedac tvicead tviceda tvicaed tvicade tvicdae tvicdea tvideca tvideac tvidcea tvidcae
tvidace tvidaec tvdaeic tvdaeci tvdaiec tvdaice tvdacie tvdacei tvdeaic tvdeaci tvdeiac
tvdeica tvdecia tvdecai tvdieac tvdieca tvdiaec tvdiace tvdicae tvdicea tvdceia tvdceai
tvdciea tvdciae tvdcaie tvdcaei ticaved ticavde ticaevd ticaedv ticadev ticadve ticvaed
ticvade ticvead ticveda ticvdea ticvdae ticevad ticevda ticeavd ticeadv ticedav ticedva
ticdvea ticdvae ticdeva ticdeav ticdaev ticdave tiacved tiacvde tiacevd tiacedv tiacdev
tiacdve tiavced tiavcde tiavecd tiavedc tiavdec tiavdce tiaevcd tiaevdc tiaecvd tiaecdv
tiaedcv tiaedvc tiadvec tiadvce tiadevc tiadecv tiadcev tiadcve tivaced tivacde tivaecd
tivaedc tivadec tivadce tivcaed tivcade tivcead tivceda tivcdea tivcdae tivecad tivecda
tiveacd tiveadc tivedac tivedca tivdcea tivdcae tivdeca tivdeac tivdaec tivdace tieavcd
tieavdc tieacvd tieacdv tieadcv tieadvc tievacd tievadc tievcad tievcda tievdca tievdac
tiecvad tiecvda tiecavd tiecadv tiecdav tiecdva tiedvca tiedvac tiedcva tiedcav tiedacv
tiedavc tidavec tidavce tidaevc tidaecv tidacev tidacve tidvaec tidvace tidveac tidveca
tidvcea tidvcae tidevac tidevca tideavc tideacv tidecav tidecva tidcvea tidcvae tidceva
tidceav tidcaev tidcave tdcavie tdcavei tdcaive tdcaiev tdcaeiv tdcaevi tdcvaie tdcvaei
tdcviae tdcviea tdcveia tdcveai tdcivae tdcivea tdciave tdciaev tdcieav tdcieva tdcevia
tdcevai tdceiva tdceiav tdceaiv tdceavi tdacvie tdacvei tdacive tdaciev tdaceiv tdacevi
tdavcie tdavcei tdavice tdaviec tdaveic tdaveci tdaivce tdaivec tdaicve tdaicev tdaiecv
tdaievc tdaevic tdaevci tdaeivc tdaeicv tdaeciv tdaecvi tdvacie tdvacei tdvaice tdvaiec
tdvaeic tdvaeci tdvcaie tdvcaei tdvciae tdvciea tdvceia tdvceai tdvicae tdvicea tdviace
tdviaec tdvieac tdvieca tdvecia tdvecai tdveica tdveiac tdveaic tdveaci tdiavce tdiavec
tdiacve tdiacev tdiaecv tdiaevc tdivace tdivaec tdivcae tdivcea tdiveca tdiveac tdicvae
tdicvea tdicave tdicaev tdiceav tdiceva tdievca tdievac tdiecva tdiecav tdieacv tdieavc
tdeavic tdeavci tdeaivc tdeaicv tdeaciv tdeacvi tdevaic tdevaci tdeviac tdevica tdevcia
tdevcai tdeivac tdeivca tdeiavc tdeiacv tdeicav tdeicva tdecvia tdecvai tdeciva tdeciav
tdecaiv tdecavi

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History of cryptography
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