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: arnoldii
cipher variations:
bsopmejj ctpqnfkk duqrogll evrsphmm fwstqinn
gxturjoo hyuvskpp izvwtlqq jawxumrr kbxyvnss
lcyzwott mdzaxpuu neabyqvv ofbczrww pgcdasxx
qhdebtyy riefcuzz sjfgdvaa tkghewbb ulhifxcc
vmijgydd wnjkhzee xokliaff yplmjbgg zqmnkchh

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: arnoldii
Cipher: zimlowrr

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: arnoldii
Cipher: AAAAA BAAAA ABBAA ABBAB ABABA AAABB ABAAA ABAAA

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: arnoldii
cipher variations:
bsopmejjbaorikzzbioteqppbqovawffbyoxwcvvbgozsillbwodkurrbeofgahh
bmohcgxxbuojymnnbcolusddbkonqyttctpqnfkkcbpsjlaacjpufrqqcrpwbxgg
czpyxdwwchpatjmmcxpelvsscfpghbiicnpidhyycvpkznoocdpmvteeclporzuu
duqroglldcqtkmbbdkqvgsrrdsqxcyhhdaqzyexxdiqbuknndyqfmwttdgqhicjj
doqjeizzdwqlaoppdeqnwuffdmqpsavvevrsphmmedrulnccelrwhtssetrydzii
ebrazfyyejrcvlooezrgnxuuehrijdkkeprkfjaaexrmbpqqefroxvggenrqtbww
fwstqinnfesvmoddfmsxiuttfuszeajjfcsbagzzfksdwmppfashoyvvfisjkell
fqslgkbbfysncqrrfgspywhhfosrucxxgxturjoogftwnpeegntyjvuugvtafbkk
gdtcbhaagltexnqqgbtipzwwgjtklfmmgrtmhlccgztodrssghtqzxiigptsvdyy
hyuvskpphguxoqffhouzkwvvhwubgcllheudcibbhmufyorrhcujqaxxhkulmgnn
hsunimddhaupestthiurayjjhqutwezzizvwtlqqihvyprggipvalxwwixvchdmm
ifvedjccinvgzpssidvkrbyyilvmnhooitvojneeibvqftuuijvsbzkkirvuxfaa
jawxumrrjiwzqshhjqwbmyxxjywdiennjgwfekddjowhaqttjewlsczzjmwnoipp
juwpkoffjcwrguvvjkwtcalljswvygbbkbxyvnsskjxartiikrxcnzyykzxejfoo
khxgfleekpxibruukfxmtdaaknxopjqqkvxqlpggkdxshvwwklxudbmmktxwzhcc
lcyzwottlkybsujjlsydoazzlayfkgppliyhgmfflqyjcsvvlgynuebbloypqkrr
lwyrmqhhleytiwxxlmyvecnnluyxaiddmdzaxpuumlzctvkkmtzepbaambzglhqq
mjzihnggmrzkdtwwmhzovfccmpzqrlssmxzsnriimfzujxyymnzwfdoomvzybjee
neabyqvvnmaduwllnuafqcbbncahmirrnkajiohhnsaleuxxniapwgddnqarsmtt
nyatosjjngavkyzznoaxgeppnwazckffofbczrwwonbevxmmovbgrdccodbinjss
olbkjpiiotbmfvyyojbqxheeorbstnuuozbuptkkohbwlzaaopbyhfqqoxbadlgg
pgcdasxxpocfwynnpwchseddpecjokttpmclkqjjpucngwzzpkcryiffpsctuovv
pacvqullpicxmabbpqczigrrpycbemhhqhdebtyyqpdgxzooqxditfeeqfdkpluu
qndmlrkkqvdohxaaqldszjggqtduvpwwqbdwrvmmqjdynbccqrdajhssqzdcfnii
riefcuzzrqehyappryejugffrgelqmvvroenmsllrwepiybbrmetakhhruevwqxx
rcexswnnrkezocddrsebkittraedgojjsjfgdvaasrfizbqqszfkvhggshfmrnww
spfontmmsxfqjzccsnfubliisvfwxryysdfytxooslfapdeestfcljuusbfehpkk
tkghewbbtsgjacrrtaglwihhtignsoxxtqgpounntygrkaddtogvcmjjtwgxyszz
tegzuypptmgbqefftugdmkvvtcgfiqllulhifxccuthkbdssubhmxjiiujhotpyy
urhqpvoouzhslbeeuphwdnkkuxhyztaaufhavzqqunhcrfgguvhenlwwudhgjrmm
vmijgyddvuilcettvcinykjjvkipuqzzvsirqwppvaitmcffvqixeollvyizaubb
vgibwarrvoidsghhvwifomxxveihksnnwnjkhzeewvjmdfuuwdjozlkkwljqvraa
wtjsrxqqwbjundggwrjyfpmmwzjabvccwhjcxbsswpjethiiwxjgpnyywfjiltoo
xokliaffxwknegvvxekpamllxmkrwsbbxuktsyrrxckvoehhxskzgqnnxakbcwdd
xikdycttxqkfuijjxykhqozzxgkjmuppyplmjbggyxlofhwwyflqbnmmynlsxtcc
yvlutzssydlwpfiiytlahrooyblcdxeeyjlezduuyrlgvjkkyzlirpaayhlknvqq
zqmnkchhzympgixxzgmrconnzomtyuddzwmvuattzemxqgjjzumbisppzcmdeyff
zkmfaevvzsmhwkllzamjsqbbzimlowrrarnoldiiaznqhjyyahnsdpooapnuzvee
axnwvbuuafnyrhkkavncjtqqadnefzggalngbfwwatnixlmmabnktrccajnmpxss

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: arnoldii
Cipher: neabyqvv

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: arnoldii
Cipher: 1124334313414242

Extended Methods:
Method #1

Plaintext: arnoldii
method variations:
fwstqioolbxyvottqgcdatyyvmhifydd

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
a r n o l d i i 
1 2 3 4 1 4 4 4 
1 4 3 3 3 1 2 2 
They are then read out in rows:
1234144414333122
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: arnoldii
Cipher: fsqtqncg

Read more ...
Method #3

Plaintext: arnoldii
method variations:
foscsqrb oscsqrbf scsqrbfo
csqrbfos sqrbfosc qrbfoscs
rbfoscsq bfoscsqr

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: arnoldii

first 5040 cipher variations(40320 total)
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alndiroi alndirio alndiiro alndiior alndioir alndiori alndiior alndiiro alndirio alndiroi alnirdoi
alnirdio alnirodi alniroid alniriod alnirido alnidroi alnidrio alnidori alnidoir alnidior alnidiro
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alrinoid alriniod alrinido alridnoi alridnio alridoni alridoin alridion alridino alriodni alriodin
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aldniior aldnioir aldniori aldniior aldniiro aldnirio aldniroi aldirnoi aldirnio aldironi aldiroin
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alioirnd alioirdn alirodni alirodin alirondi alironid aliroind aliroidn alirdoni alirdoin alirdnoi
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alinrido alindroi alindrio alindori alindoir alindior alindiro alinodri alinodir alinordi alinorid
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aliinrdo aliinrod aliinord aliinodr aliiodnr aliiodrn aliiondr aliionrd aliiornd aliiordn aliordin
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alioidrn alioidnr alioirdn alioirnd alioinrd alioindr aliondir aliondri alionidr alionird alionrid
alionrdi alirodin alirodni aliroidn aliroind alironid alirondi alirdoin alirdoni alirdion alirdino
alirdnio alirdnoi aliridon aliridno aliriodn aliriond alirinod alirindo alirndio alirndoi alirnido
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alidoirn alidoinr alidonir alidonri alidiorn alidionr alidiron alidirno alidinro alidinor alidnoir
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aliiondr aliindor aliindro aliinodr aliinord aliinrod aliinrdo alinrdio alinrdoi alinrido alinriod
alinroid alinrodi alindrio alindroi alindiro alindior alindoir alindori alinidro alinidor alinirdo
alinirod aliniord aliniodr alinodir alinodri alinoidr alinoird alinorid alinordi adnolrii adnolrii
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adnoiril adnoilri adnoilir adnoiilr adnoiirl adnoiril adnoirli adnoiirl adnoiilr adnoilir adnoilri
adnlorii adnlorii adnloiri adnloiir adnloiir adnloiri adnlroii adnlroii adnlrioi adnlriio adnlriio
adnlrioi adnliroi adnlirio adnliori adnlioir adnliior adnliiro adnlirio adnliroi adnliiro adnliior
adnlioir adnliori adnrloii adnrloii adnrlioi adnrliio adnrliio adnrlioi adnrolii adnrolii adnroili
adnroiil adnroiil adnroili adnrioli adnrioil adnriloi adnrilio adnriilo adnriiol adnrioil adnrioli
adnriiol adnriilo adnrilio adnriloi adnilroi adnilrio adnilori adniloir adnilior adniliro adnirloi
adnirlio adniroli adniroil adniriol adnirilo adniorli adnioril adniolri adniolir adnioilr adnioirl
adniirol adniirlo adniiorl adniiolr adniilor adniilro adnilrio adnilroi adniliro adnilior adniloir
adnilori adnirlio adnirloi adnirilo adniriol adniroil adniroli adniirlo adniirol adniilro adniilor
adniiolr adniiorl adnioril adniorli adnioirl adnioilr adniolir adniolri adonlrii adonlrii adonliri
adonliir adonliir adonliri adonrlii adonrlii adonrili adonriil adonriil adonrili adonirli adoniril
adonilri adonilir adoniilr adoniirl adoniril adonirli adoniirl adoniilr adonilir adonilri adolnrii
adolnrii adolniri adolniir adolniir adolniri adolrnii adolrnii adolrini adolriin adolriin adolrini
adolirni adolirin adolinri adolinir adoliinr adoliirn adolirin adolirni adoliirn adoliinr adolinir
adolinri adorlnii adorlnii adorlini adorliin adorliin adorlini adornlii adornlii adornili adorniil
adorniil adornili adorinli adorinil adorilni adorilin adoriiln adoriinl adorinil adorinli adoriinl
adoriiln adorilin adorilni adoilrni adoilrin adoilnri adoilnir adoilinr adoilirn adoirlni adoirlin
adoirnli adoirnil adoirinl adoiriln adoinrli adoinril adoinlri adoinlir adoinilr adoinirl adoiirnl
adoiirln adoiinrl adoiinlr adoiilnr adoiilrn adoilrin adoilrni adoilirn adoilinr adoilnir adoilnri
adoirlin adoirlni adoiriln adoirinl adoirnil adoirnli adoiirln adoiirnl adoiilrn adoiilnr adoiinlr
adoiinrl adoinril adoinrli adoinirl adoinilr adoinlir adoinlri adlonrii adlonrii adloniri adloniir
adloniir adloniri adlornii adlornii adlorini adloriin adloriin adlorini adloirni adloirin adloinri
adloinir adloiinr adloiirn adloirin adloirni adloiirn adloiinr adloinir adloinri adlnorii adlnorii
adlnoiri adlnoiir adlnoiir adlnoiri adlnroii adlnroii adlnrioi adlnriio adlnriio adlnrioi adlniroi
adlnirio adlniori adlnioir adlniior adlniiro adlnirio adlniroi adlniiro adlniior adlnioir adlniori
adlrnoii adlrnoii adlrnioi adlrniio adlrniio adlrnioi adlronii adlronii adlroini adlroiin adlroiin
adlroini adlrioni adlrioin adlrinoi adlrinio adlriino adlriion adlrioin adlrioni adlriion adlriino
adlrinio adlrinoi adlinroi adlinrio adlinori adlinoir adlinior adliniro adlirnoi adlirnio adlironi
adliroin adlirion adlirino adliorni adliorin adlionri adlionir adlioinr adlioirn adliiron adliirno
adliiorn adliionr adliinor adliinro adlinrio adlinroi adliniro adlinior adlinoir adlinori adlirnio
adlirnoi adlirino adlirion adliroin adlironi adliirno adliiron adliinro adliinor adliionr adliiorn
adliorin adliorni adlioirn adlioinr adlionir adlionri adrolnii adrolnii adrolini adroliin adroliin
adrolini adronlii adronlii adronili adroniil adroniil adronili adroinli adroinil adroilni adroilin
adroiiln adroiinl adroinil adroinli adroiinl adroiiln adroilin adroilni adrlonii adrlonii adrloini
adrloiin adrloiin adrloini adrlnoii adrlnoii adrlnioi adrlniio adrlniio adrlnioi adrlinoi adrlinio
adrlioni adrlioin adrliion adrliino adrlinio adrlinoi adrliino adrliion adrlioin adrlioni adrnloii
adrnloii adrnlioi adrnliio adrnliio adrnlioi adrnolii adrnolii adrnoili adrnoiil adrnoiil adrnoili
adrnioli adrnioil adrniloi adrnilio adrniilo adrniiol adrnioil adrnioli adrniiol adrniilo adrnilio
adrniloi adrilnoi adrilnio adriloni adriloin adrilion adrilino adrinloi adrinlio adrinoli adrinoil
adriniol adrinilo adrionli adrionil adriolni adriolin adrioiln adrioinl adriinol adriinlo adriionl
adriioln adriilon adriilno adrilnio adrilnoi adrilino adrilion adriloin adriloni adrinlio adrinloi
adrinilo adriniol adrinoil adrinoli adriinlo adriinol adriilno adriilon adriioln adriionl adrionil
adrionli adrioinl adrioiln adriolin adriolni adiolrni adiolrin adiolnri adiolnir adiolinr adiolirn
adiorlni adiorlin adiornli adiornil adiorinl adioriln adionrli adionril adionlri adionlir adionilr
adionirl adioirnl adioirln adioinrl adioinlr adioilnr adioilrn adilorni adilorin adilonri adilonir
adiloinr adiloirn adilroni adilroin adilrnoi adilrnio adilrino adilrion adilnroi adilnrio adilnori
adilnoir adilnior adilniro adilirno adiliron adilinro adilinor adilionr adiliorn adirloni adirloin
adirlnoi adirlnio adirlino adirlion adirolni adirolin adironli adironil adiroinl adiroiln adirnoli
adirnoil adirnloi adirnlio adirnilo adirniol adirionl adirioln adirinol adirinlo adirilno adirilon
adinlroi adinlrio adinlori adinloir adinlior adinliro adinrloi adinrlio adinroli adinroil adinriol
adinrilo adinorli adinoril adinolri adinolir adinoilr adinoirl adinirol adinirlo adiniorl adiniolr
adinilor adinilro adiilrno adiilron adiilnro adiilnor adiilonr adiilorn adiirlno adiirlon adiirnlo
adiirnol adiironl adiiroln adiinrlo adiinrol adiinlro adiinlor adiinolr adiinorl adiiornl adiiorln
adiionrl adiionlr adiiolnr adiiolrn adiolrin adiolrni adiolirn adiolinr adiolnir adiolnri adiorlin
adiorlni adioriln adiorinl adiornil adiornli adioirln adioirnl adioilrn adioilnr adioinlr adioinrl
adionril adionrli adionirl adionilr adionlir adionlri adilorin adilorni adiloirn adiloinr adilonir
adilonri adilroin adilroni adilrion adilrino adilrnio adilrnoi adiliron adilirno adiliorn adilionr
adilinor adilinro adilnrio adilnroi adilniro adilnior adilnoir adilnori adirloin adirloni adirlion
adirlino adirlnio adirlnoi adirolin adirolni adiroiln adiroinl adironil adironli adirioln adirionl
adirilon adirilno adirinlo adirinol adirnoil adirnoli adirniol adirnilo adirnlio adirnloi adiilron
adiilrno adiilorn adiilonr adiilnor adiilnro adiirlon adiirlno adiiroln adiironl adiirnol adiirnlo
adiiorln adiiornl adiiolrn adiiolnr adiionlr adiionrl adiinrol adiinrlo adiinorl adiinolr adiinlor
adiinlro adinlrio adinlroi adinliro adinlior adinloir adinlori adinrlio adinrloi adinrilo adinriol
adinroil adinroli adinirlo adinirol adinilro adinilor adiniolr adiniorl adinoril adinorli adinoirl
adinoilr adinolir adinolri ainoldri ainoldir ainolrdi ainolrid ainolird ainolidr ainodlri ainodlir
ainodrli ainodril ainodirl ainodilr ainordli ainordil ainorldi ainorlid ainorild ainoridl ainoidrl
ainoidlr ainoirdl ainoirld ainoilrd ainoildr ainlodri ainlodir ainlordi ainlorid ainloird ainloidr
ainldori ainldoir ainldroi ainldrio ainldiro ainldior ainlrdoi ainlrdio ainlrodi ainlroid ainlriod
ainlrido ainlidro ainlidor ainlirdo ainlirod ainliord ainliodr aindlori aindloir aindlroi aindlrio
aindliro aindlior aindolri aindolir aindorli aindoril aindoirl aindoilr aindroli aindroil aindrloi
aindrlio aindrilo aindriol aindiorl aindiolr aindirol aindirlo aindilro aindilor ainrldoi ainrldio
ainrlodi ainrloid ainrliod ainrlido ainrdloi ainrdlio ainrdoli ainrdoil ainrdiol ainrdilo ainrodli
ainrodil ainroldi ainrolid ainroild ainroidl ainridol ainridlo ainriodl ainriold ainrilod ainrildo
ainildro ainildor ainilrdo ainilrod ainilord ainilodr ainidlro ainidlor ainidrlo ainidrol ainidorl
ainidolr ainirdlo ainirdol ainirldo ainirlod ainirold ainirodl ainiodrl ainiodlr ainiordl ainiorld
ainiolrd ainioldr aionldri aionldir aionlrdi aionlrid aionlird aionlidr aiondlri aiondlir aiondrli
aiondril aiondirl aiondilr aionrdli aionrdil aionrldi aionrlid aionrild aionridl aionidrl aionidlr
aionirdl aionirld aionilrd aionildr aiolndri aiolndir aiolnrdi aiolnrid aiolnird aiolnidr aioldnri
aioldnir aioldrni aioldrin aioldirn aioldinr aiolrdni aiolrdin aiolrndi aiolrnid aiolrind aiolridn
aiolidrn aiolidnr aiolirdn aiolirnd aiolinrd aiolindr aiodlnri aiodlnir aiodlrni aiodlrin aiodlirn
aiodlinr aiodnlri aiodnlir aiodnrli aiodnril aiodnirl aiodnilr aiodrnli aiodrnil aiodrlni aiodrlin
aiodriln aiodrinl aiodinrl aiodinlr aiodirnl aiodirln aiodilrn aiodilnr aiorldni aiorldin aiorlndi
aiorlnid aiorlind aiorlidn aiordlni aiordlin aiordnli aiordnil aiordinl aiordiln aiorndli aiorndil
aiornldi aiornlid aiornild aiornidl aioridnl aioridln aiorindl aiorinld aiorilnd aiorildn aioildrn
aioildnr aioilrdn aioilrnd aioilnrd aioilndr aioidlrn aioidlnr aioidrln aioidrnl aioidnrl aioidnlr
aioirdln aioirdnl aioirldn aioirlnd aioirnld aioirndl aioindrl aioindlr aioinrdl aioinrld aioinlrd
aioinldr ailondri ailondir ailonrdi ailonrid ailonird ailonidr ailodnri ailodnir ailodrni ailodrin
ailodirn ailodinr ailordni ailordin ailorndi ailornid ailorind ailoridn ailoidrn ailoidnr ailoirdn
ailoirnd ailoinrd ailoindr ailnodri ailnodir ailnordi ailnorid ailnoird ailnoidr ailndori ailndoir
ailndroi ailndrio ailndiro ailndior ailnrdoi ailnrdio ailnrodi ailnroid ailnriod ailnrido ailnidro
ailnidor ailnirdo ailnirod ailniord ailniodr aildnori aildnoir aildnroi aildnrio aildniro aildnior
aildonri aildonir aildorni aildorin aildoirn aildoinr aildroni aildroin aildrnoi aildrnio aildrino
aildrion aildiorn aildionr aildiron aildirno aildinro aildinor ailrndoi ailrndio ailrnodi ailrnoid
ailrniod ailrnido ailrdnoi ailrdnio ailrdoni ailrdoin ailrdion ailrdino ailrodni ailrodin ailrondi
ailronid ailroind ailroidn ailridon ailridno ailriodn ailriond ailrinod ailrindo ailindro ailindor
ailinrdo ailinrod ailinord ailinodr ailidnro ailidnor ailidrno ailidron ailidorn ailidonr ailirdno
ailirdon ailirndo ailirnod ailirond ailirodn ailiodrn ailiodnr ailiordn ailiornd ailionrd ailiondr
aidolnri aidolnir aidolrni aidolrin aidolirn aidolinr aidonlri aidonlir aidonrli aidonril aidonirl
aidonilr aidornli aidornil aidorlni aidorlin aidoriln aidorinl aidoinrl aidoinlr aidoirnl aidoirln
aidoilrn aidoilnr aidlonri aidlonir aidlorni aidlorin aidloirn aidloinr aidlnori aidlnoir aidlnroi
aidlnrio aidlniro aidlnior aidlrnoi aidlrnio aidlroni aidlroin aidlrion aidlrino aidlinro aidlinor
aidlirno aidliron aidliorn aidlionr aidnlori aidnloir aidnlroi aidnlrio aidnliro aidnlior aidnolri
aidnolir aidnorli aidnoril aidnoirl aidnoilr aidnroli aidnroil aidnrloi aidnrlio aidnrilo aidnriol
aidniorl aidniolr aidnirol aidnirlo aidnilro aidnilor aidrlnoi aidrlnio aidrloni aidrloin aidrlion
aidrlino aidrnloi aidrnlio aidrnoli aidrnoil aidrniol aidrnilo aidronli aidronil aidrolni aidrolin
aidroiln aidroinl aidrinol aidrinlo aidrionl aidrioln aidrilon aidrilno aidilnro aidilnor aidilrno
aidilron aidilorn aidilonr aidinlro aidinlor aidinrlo aidinrol aidinorl aidinolr aidirnlo aidirnol
aidirlno aidirlon aidiroln aidironl aidionrl aidionlr aidiornl aidiorln aidiolrn aidiolnr airoldni
airoldin airolndi airolnid airolind airolidn airodlni airodlin airodnli airodnil airodinl airodiln
airondli airondil aironldi aironlid aironild aironidl airoidnl airoidln airoindl airoinld airoilnd
airoildn airlodni airlodin airlondi airlonid airloind airloidn airldoni airldoin airldnoi airldnio
airldino airldion airlndoi airlndio airlnodi airlnoid airlniod airlnido airlidno airlidon airlindo
airlinod airliond airliodn airdloni airdloin airdlnoi airdlnio airdlino airdlion airdolni airdolin
airdonli airdonil airdoinl airdoiln airdnoli airdnoil airdnloi airdnlio airdnilo airdniol airdionl
airdioln airdinol airdinlo airdilno airdilon airnldoi airnldio airnlodi airnloid airnliod airnlido
airndloi airndlio airndoli airndoil airndiol airndilo airnodli airnodil airnoldi airnolid airnoild
airnoidl airnidol airnidlo airniodl airniold airnilod airnildo airildno airildon airilndo airilnod
airilond airilodn airidlno airidlon airidnlo airidnol airidonl airidoln airindlo airindol airinldo
airinlod airinold airinodl airiodnl airiodln airiondl airionld airiolnd airioldn aiioldrn aiioldnr
aiiolrdn aiiolrnd aiiolnrd aiiolndr aiiodlrn aiiodlnr aiiodrln aiiodrnl aiiodnrl aiiodnlr aiiordln
aiiordnl aiiorldn aiiorlnd aiiornld aiiorndl aiiondrl aiiondlr aiionrdl aiionrld aiionlrd aiionldr
aiilodrn aiilodnr aiilordn aiilornd aiilonrd aiilondr aiildorn aiildonr aiildron aiildrno aiildnro
aiildnor aiilrdon aiilrdno aiilrodn aiilrond aiilrnod aiilrndo aiilndro aiilndor aiilnrdo aiilnrod
aiilnord aiilnodr aiidlorn aiidlonr aiidlron aiidlrno aiidlnro aiidlnor aiidolrn aiidolnr aiidorln
aiidornl aiidonrl aiidonlr aiidroln aiidronl aiidrlon aiidrlno aiidrnlo aiidrnol aiidnorl aiidnolr
aiidnrol aiidnrlo aiidnlro aiidnlor aiirldon aiirldno aiirlodn aiirlond aiirlnod aiirlndo aiirdlon
aiirdlno aiirdoln aiirdonl aiirdnol aiirdnlo aiirodln aiirodnl aiiroldn aiirolnd aiironld aiirondl
aiirndol aiirndlo aiirnodl aiirnold aiirnlod aiirnldo aiinldro aiinldor aiinlrdo aiinlrod aiinlord
aiinlodr aiindlro aiindlor aiindrlo aiindrol aiindorl aiindolr aiinrdlo aiinrdol aiinrldo aiinrlod
aiinrold aiinrodl aiinodrl aiinodlr aiinordl aiinorld aiinolrd aiinoldr ainoldir ainoldri ainolidr
ainolird ainolrid ainolrdi ainodlir ainodlri ainodilr ainodirl ainodril ainodrli ainoidlr ainoidrl
ainoildr ainoilrd ainoirld ainoirdl ainordil ainordli ainoridl ainorild ainorlid ainorldi ainlodir
ainlodri ainloidr ainloird ainlorid ainlordi ainldoir ainldori ainldior ainldiro ainldrio ainldroi
ainlidor ainlidro ainliodr ainliord ainlirod ainlirdo ainlrdio ainlrdoi ainlrido ainlriod ainlroid
ainlrodi aindloir aindlori aindlior aindliro aindlrio aindlroi aindolir aindolri aindoilr aindoirl
aindoril aindorli aindiolr aindiorl aindilor aindilro aindirlo aindirol aindroil aindroli aindriol
aindrilo aindrlio aindrloi ainildor ainildro ainilodr ainilord ainilrod ainilrdo ainidlor ainidlro
ainidolr ainidorl ainidrol ainidrlo ainiodlr ainiodrl ainioldr ainiolrd ainiorld ainiordl ainirdol
ainirdlo ainirodl ainirold ainirlod ainirldo ainrldio ainrldoi ainrlido ainrliod ainrloid ainrlodi
ainrdlio ainrdloi ainrdilo ainrdiol ainrdoil ainrdoli ainridlo ainridol ainrildo ainrilod ainriold
ainriodl ainrodil ainrodli ainroidl ainroild ainrolid ainroldi aionldir aionldri aionlidr aionlird
aionlrid aionlrdi aiondlir aiondlri aiondilr aiondirl aiondril aiondrli aionidlr aionidrl aionildr
aionilrd aionirld aionirdl aionrdil aionrdli aionridl aionrild aionrlid aionrldi aiolndir aiolndri
aiolnidr aiolnird aiolnrid aiolnrdi aioldnir aioldnri aioldinr aioldirn aioldrin aioldrni aiolidnr
aiolidrn aiolindr aiolinrd aiolirnd aiolirdn aiolrdin aiolrdni aiolridn aiolrind aiolrnid aiolrndi
aiodlnir aiodlnri aiodlinr aiodlirn aiodlrin aiodlrni aiodnlir aiodnlri aiodnilr aiodnirl aiodnril
aiodnrli aiodinlr aiodinrl aiodilnr aiodilrn aiodirln aiodirnl aiodrnil aiodrnli aiodrinl aiodriln
aiodrlin aiodrlni aioildnr aioildrn aioilndr aioilnrd aioilrnd aioilrdn aioidlnr aioidlrn aioidnlr
aioidnrl aioidrnl aioidrln aioindlr aioindrl aioinldr aioinlrd aioinrld aioinrdl aioirdnl aioirdln
aioirndl aioirnld aioirlnd aioirldn aiorldin aiorldni aiorlidn aiorlind aiorlnid aiorlndi aiordlin
aiordlni aiordiln aiordinl aiordnil aiordnli aioridln aioridnl aiorildn aiorilnd aiorinld aiorindl
aiorndil aiorndli aiornidl aiornild aiornlid aiornldi ailondir ailondri ailonidr ailonird ailonrid
ailonrdi ailodnir ailodnri ailodinr ailodirn ailodrin ailodrni ailoidnr ailoidrn ailoindr ailoinrd
ailoirnd ailoirdn ailordin ailordni ailoridn ailorind ailornid ailorndi ailnodir ailnodri ailnoidr
ailnoird ailnorid ailnordi ailndoir ailndori ailndior ailndiro ailndrio ailndroi ailnidor ailnidro
ailniodr ailniord ailnirod ailnirdo ailnrdio ailnrdoi ailnrido ailnriod ailnroid ailnrodi aildnoir
aildnori aildnior aildniro aildnrio aildnroi aildonir aildonri aildoinr aildoirn aildorin aildorni
aildionr aildiorn aildinor aildinro aildirno aildiron aildroin aildroni aildrion aildrino aildrnio
aildrnoi ailindor ailindro ailinodr ailinord ailinrod ailinrdo ailidnor ailidnro ailidonr ailidorn
ailidron ailidrno ailiodnr ailiodrn ailiondr ailionrd ailiornd ailiordn ailirdon ailirdno ailirodn
ailirond ailirnod ailirndo ailrndio ailrndoi ailrnido ailrniod ailrnoid ailrnodi ailrdnio ailrdnoi
ailrdino ailrdion ailrdoin ailrdoni ailridno ailridon ailrindo ailrinod ailriond ailriodn ailrodin
ailrodni ailroidn ailroind ailronid ailrondi aidolnir aidolnri aidolinr aidolirn aidolrin aidolrni
aidonlir aidonlri aidonilr aidonirl aidonril aidonrli aidoinlr aidoinrl aidoilnr aidoilrn aidoirln
aidoirnl aidornil aidornli aidorinl aidoriln aidorlin aidorlni aidlonir aidlonri aidloinr aidloirn
aidlorin aidlorni aidlnoir aidlnori aidlnior aidlniro aidlnrio aidlnroi aidlinor aidlinro aidlionr
aidliorn aidliron aidlirno aidlrnio aidlrnoi aidlrino aidlrion aidlroin aidlroni aidnloir aidnlori
aidnlior aidnliro aidnlrio aidnlroi aidnolir aidnolri aidnoilr aidnoirl aidnoril aidnorli aidniolr
aidniorl aidnilor aidnilro aidnirlo aidnirol aidnroil aidnroli aidnriol aidnrilo aidnrlio aidnrloi
aidilnor aidilnro aidilonr aidilorn aidilron aidilrno aidinlor aidinlro aidinolr aidinorl aidinrol
aidinrlo aidionlr aidionrl aidiolnr aidiolrn aidiorln aidiornl aidirnol aidirnlo aidironl aidiroln
aidirlon aidirlno aidrlnio aidrlnoi aidrlino aidrlion aidrloin aidrloni aidrnlio aidrnloi aidrnilo
aidrniol aidrnoil aidrnoli aidrinlo aidrinol aidrilno aidrilon aidrioln aidrionl aidronil aidronli
aidroinl aidroiln aidrolin aidrolni aiioldnr aiioldrn aiiolndr aiiolnrd aiiolrnd aiiolrdn aiiodlnr
aiiodlrn aiiodnlr aiiodnrl aiiodrnl aiiodrln aiiondlr aiiondrl aiionldr aiionlrd aiionrld aiionrdl
aiiordnl aiiordln aiiorndl aiiornld aiiorlnd aiiorldn aiilodnr aiilodrn aiilondr aiilonrd aiilornd
aiilordn aiildonr aiildorn aiildnor aiildnro aiildrno aiildron aiilndor aiilndro aiilnodr aiilnord
aiilnrod aiilnrdo aiilrdno aiilrdon aiilrndo aiilrnod aiilrond aiilrodn aiidlonr aiidlorn aiidlnor
aiidlnro aiidlrno aiidlron aiidolnr aiidolrn aiidonlr aiidonrl aiidornl aiidorln aiidnolr aiidnorl
aiidnlor aiidnlro aiidnrlo aiidnrol aiidronl aiidroln aiidrnol aiidrnlo aiidrlno aiidrlon aiinldor
aiinldro aiinlodr aiinlord aiinlrod aiinlrdo aiindlor aiindlro aiindolr aiindorl aiindrol aiindrlo
aiinodlr aiinodrl aiinoldr aiinolrd aiinorld aiinordl aiinrdol aiinrdlo aiinrodl aiinrold aiinrlod
aiinrldo aiirldno aiirldon aiirlndo aiirlnod aiirlond aiirlodn aiirdlno aiirdlon aiirdnlo aiirdnol
aiirdonl aiirdoln aiirndlo aiirndol aiirnldo aiirnlod aiirnold aiirnodl aiirodnl aiirodln aiirondl
aiironld aiirolnd aiiroldn airoldin airoldni airolidn airolind airolnid airolndi airodlin airodlni
airodiln airodinl airodnil airodnli airoidln airoidnl airoildn airoilnd airoinld airoindl airondil
airondli aironidl aironild aironlid aironldi airlodin airlodni airloidn airloind airlonid airlondi
airldoin airldoni airldion airldino airldnio airldnoi airlidon airlidno airliodn airliond airlinod
airlindo airlndio airlndoi airlnido airlniod airlnoid airlnodi airdloin airdloni airdlion airdlino
airdlnio airdlnoi airdolin airdolni airdoiln airdoinl airdonil airdonli airdioln airdionl airdilon
airdilno airdinlo airdinol airdnoil airdnoli airdniol airdnilo airdnlio airdnloi airildon airildno
airilodn airilond airilnod airilndo airidlon airidlno airidoln airidonl airidnol airidnlo airiodln
airiodnl airioldn airiolnd airionld airiondl airindol airindlo airinodl airinold airinlod airinldo
airnldio airnldoi airnlido airnliod airnloid airnlodi airndlio airndloi airndilo airndiol airndoil
airndoli airnidlo airnidol airnildo airnilod airniold airniodl airnodil airnodli airnoidl airnoild
airnolid airnoldi

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History of cryptography
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