easy ciphers

Easy Ciphers Tools:
cryptography lectures
popular ciphers:

unfight

descendentaque

spicewood

protensively

procerusplanctum

sacellis

unadaptably

stevenage

animalculine

kojak

graniticoline

anatis

outings

landsberg

cherianne

gargiullo

fluorescences

hydromeningitis


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: upthrown
cipher variations:
vquispxo wrvjtqyp xswkurzq ytxlvsar zuymwtbs
avznxuct bwaoyvdu cxbpzwev dycqaxfw ezdrbygx
faesczhy gbftdaiz hcguebja idhvfckb jeiwgdlc
kfjxhemd lgkyifne mhlzjgof nimakhpg ojnbliqh
pkocmjri qlpdnksj rmqeoltk snrfpmul tosgqnvm

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: upthrown
Cipher: fkgsildm

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: upthrown
Cipher: BAABB ABBBA BAABA AABBB BAAAA ABBAB BABAA ABBAA

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: upthrown
cipher variations:
vquispxojugwarpoxyskitholceyqvzozgqmyxronkcagzjopsacwdtodwmqeflo
rayemhdofeksujvotiwgclnohmiuknfowrvjtqypkvhxbsqpyztljuipmdfzrwap
ahrnzyspoldbhakpqtbdxeupexnrfgmpsbzfniepgfltvkwpujxhdmopinjvlogp
xswkurzqlwiyctrqzaumkvjqnegasxbqbisoaztqpmeciblqruceyfvqfyosghnq
tcagojfqhgmuwlxqvkyienpqjokwmphqytxlvsarmxjzdusrabvnlwkrofhbtycr
cjtpbaurqnfdjcmrsvdfzgwrgzpthiorudbhpkgrihnvxmyrwlzjfoqrkplxnqir
zuymwtbsnykaevtsbcwomxlspgicuzdsdkuqcbvsrogekdnstwegahxshaquijps
veciqlhsjiowynzsxmakgprslqmyorjsavznxuctozlbfwutcdxpnymtqhjdvaet
elvrdcwtsphfleotuxfhbiytibrvjkqtwfdjrmitkjpxzoatynblhqstmrnzpskt
bwaoyvdupamcgxvudeyqoznurikewbfufmwsedxutqigmfpuvygicjzujcswklru
xgeksnjulkqyapbuzocmirtunsoaqtlucxbpzwevqbndhywvefzrpaovsjlfxcgv
gnxtfeyvurjhngqvwzhjdkavkdtxlmsvyhfltokvmlrzbqcvapdnjsuvotpbrumv
dycqaxfwrcoeizxwfgasqbpwtkmgydhwhoyugfzwvskiohrwxaikelbwleuymntw
zigmuplwnmsacrdwbqeoktvwpuqcsvnwezdrbygxsdpfjayxghbtrcqxulnhzeix
ipzvhgaxwtljpisxybjlfmcxmfvznouxajhnvqmxontbdsexcrfpluwxqvrdtwox
faesczhyteqgkbzyhicusdryvmoiafjyjqawihbyxumkqjtyzckmgndyngwaopvy
bkiowrnypoucetfydsgqmvxyrwseuxpygbftdaizufrhlcazijdvteszwnpjbgkz
krbxjiczyvnlrkuzadlnhoezohxbpqwzcljpxsozqpvdfugzethrnwyzsxtfvyqz
hcguebjavgsimdbajkewuftaxoqkchlalscykjdazwomslvabemoipfapiycqrxa
dmkqytparqwegvhafuisoxzatyugwzraidhvfckbwhtjnecbklfxvgubyprldimb
mtdzlkebaxpntmwbcfnpjqgbqjzdrsybenlrzuqbsrxfhwibgvjtpyabuzvhxasb
jeiwgdlcxiukofdclmgywhvczqsmejncnueamlfcbyqounxcdgoqkrhcrkaestzc
fomsavrctsygixjchwkuqzbcvawiybtckfjxhemdyjvlpgedmnhzxiwdartnfkod
ovfbnmgdczrpvoydehprlsidslbftuadgpntbwsdutzhjykdixlvracdwbxjzcud
lgkyifnezkwmqhfenoiayjxebsuoglpepwgconhedasqwpzefiqsmtjetmcguvbe
hqoucxtevuaikzlejymwsbdexcykadvemhlzjgofalxnrigfopjbzkyfctvphmqf
qxhdpoifebtrxqafgjrtnukfundhvwcfirpvdyufwvbjlamfkznxtcefydzlbewf
nimakhpgbmyosjhgpqkcalzgduwqinrgryieqpjgfcusyrbghksuovlgvoeiwxdg
jsqwezvgxwckmbnglaoyudfgzeamcfxgojnbliqhcnzptkihqrldbmahevxrjosh
szjfrqkhgdvtzschiltvpwmhwpfjxyehktrxfawhyxdlncohmbpzveghafbndgyh
pkocmjridoaquljirsmecnbifwyskptitakgsrlihewuatdijmuwqxnixqgkyzfi
lusygbxizyemodpincqawfhibgcoehziqlpdnksjepbrvmkjstnfdocjgxztlquj
ublhtsmjifxvbuejknvxryojyrhlzagjmvtzhcyjazfnpeqjodrbxgijchdpfiaj
rmqeoltkfqcswnlktuogepdkhyaumrvkvcmiutnkjgywcvfklowyszpkzsimabhk
nwuaidzkbagoqfrkpescyhjkdieqgjbksnrfpmulgrdtxomluvphfqelizbvnswl
wdnjvuolkhzxdwglmpxztaqlatjnbciloxvbjealcbhprgslqftdziklejfrhkcl
tosgqnvmhseuypnmvwqigrfmjacwotxmxeokwvpmliayexhmnqyaubrmbukocdjm
pywckfbmdciqshtmrgueajlmfkgsildmupthrownitfvzqonwxrjhsgnkbdxpuyn
yfplxwqnmjbzfyinorzbvcsncvlpdeknqzxdlgcnedjrtiunshvfbkmnglhtjmen

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: upthrown
Cipher: hcguebja

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: upthrown
Cipher: 5453443224432533

Extended Methods:
Method #1

Plaintext: upthrown
method variations:
zuynwtbsezdsbygxkeixgdmcpkocmirh

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
u p t h r o w n 
5 5 4 3 2 4 2 3 
4 3 4 2 4 3 5 3 
They are then read out in rows:
5543242343424353
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: upthrown
Cipher: zormoiop

Read more ...
Method #3

Plaintext: upthrown
method variations:
ysogthpx sogthpxy ogthpxys
gthpxyso thpxysog hpxysogt
pxysogth xysogthp

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: upthrown

first 5040 cipher variations(40320 total)
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urnwhtop urnwtohp urnwtoph urnwthop urnwthpo urnwtpho urnwtpoh urntpowh urntpohw urntpwoh urntpwho
urntphwo urntphow urntopwh urntophw urntowph urntowhp urntohwp urntohpw urntwoph urntwohp urntwpoh
urntwpho urntwhpo urntwhop urnthowp urnthopw urnthwop urnthwpo urnthpwo urnthpow uothrpwn uothrpnw
uothrwpn uothrwnp uothrnwp uothrnpw uothprwn uothprnw uothpwrn uothpwnr uothpnwr uothpnrw uothwprn
uothwpnr uothwrpn uothwrnp uothwnrp uothwnpr uothnpwr uothnprw uothnwpr uothnwrp uothnrwp uothnrpw
uotrhpwn uotrhpnw uotrhwpn uotrhwnp uotrhnwp uotrhnpw uotrphwn uotrphnw uotrpwhn uotrpwnh uotrpnwh
uotrpnhw uotrwphn uotrwpnh uotrwhpn uotrwhnp uotrwnhp uotrwnph uotrnpwh uotrnphw uotrnwph uotrnwhp
uotrnhwp uotrnhpw uotprhwn uotprhnw uotprwhn uotprwnh uotprnwh uotprnhw uotphrwn uotphrnw uotphwrn
uotphwnr uotphnwr uotphnrw uotpwhrn uotpwhnr uotpwrhn uotpwrnh uotpwnrh uotpwnhr uotpnhwr uotpnhrw
uotpnwhr uotpnwrh uotpnrwh uotpnrhw uotwrphn uotwrpnh uotwrhpn uotwrhnp uotwrnhp uotwrnph uotwprhn
uotwprnh uotwphrn uotwphnr uotwpnhr uotwpnrh uotwhprn uotwhpnr uotwhrpn uotwhrnp uotwhnrp uotwhnpr
uotwnphr uotwnprh uotwnhpr uotwnhrp uotwnrhp uotwnrph uotnrpwh uotnrphw uotnrwph uotnrwhp uotnrhwp
uotnrhpw uotnprwh uotnprhw uotnpwrh uotnpwhr uotnphwr uotnphrw uotnwprh uotnwphr uotnwrph uotnwrhp
uotnwhrp uotnwhpr uotnhpwr uotnhprw uotnhwpr uotnhwrp uotnhrwp uotnhrpw uohtrpwn uohtrpnw uohtrwpn
uohtrwnp uohtrnwp uohtrnpw uohtprwn uohtprnw uohtpwrn uohtpwnr uohtpnwr uohtpnrw uohtwprn uohtwpnr
uohtwrpn uohtwrnp uohtwnrp uohtwnpr uohtnpwr uohtnprw uohtnwpr uohtnwrp uohtnrwp uohtnrpw uohrtpwn
uohrtpnw uohrtwpn uohrtwnp uohrtnwp uohrtnpw uohrptwn uohrptnw uohrpwtn uohrpwnt uohrpnwt uohrpntw
uohrwptn uohrwpnt uohrwtpn uohrwtnp uohrwntp uohrwnpt uohrnpwt uohrnptw uohrnwpt uohrnwtp uohrntwp
uohrntpw uohprtwn uohprtnw uohprwtn uohprwnt uohprnwt uohprntw uohptrwn uohptrnw uohptwrn uohptwnr
uohptnwr uohptnrw uohpwtrn uohpwtnr uohpwrtn uohpwrnt uohpwnrt uohpwntr uohpntwr uohpntrw uohpnwtr
uohpnwrt uohpnrwt uohpnrtw uohwrptn uohwrpnt uohwrtpn uohwrtnp uohwrntp uohwrnpt uohwprtn uohwprnt
uohwptrn uohwptnr uohwpntr uohwpnrt uohwtprn uohwtpnr uohwtrpn uohwtrnp uohwtnrp uohwtnpr uohwnptr
uohwnprt uohwntpr uohwntrp uohwnrtp uohwnrpt uohnrpwt uohnrptw uohnrwpt uohnrwtp uohnrtwp uohnrtpw
uohnprwt uohnprtw uohnpwrt uohnpwtr uohnptwr uohnptrw uohnwprt uohnwptr uohnwrpt uohnwrtp uohnwtrp
uohnwtpr uohntpwr uohntprw uohntwpr uohntwrp uohntrwp uohntrpw uorhtpwn uorhtpnw uorhtwpn uorhtwnp
uorhtnwp uorhtnpw uorhptwn uorhptnw uorhpwtn uorhpwnt uorhpnwt uorhpntw uorhwptn uorhwpnt uorhwtpn
uorhwtnp uorhwntp uorhwnpt uorhnpwt uorhnptw uorhnwpt uorhnwtp uorhntwp uorhntpw uorthpwn uorthpnw
uorthwpn uorthwnp uorthnwp uorthnpw uortphwn uortphnw uortpwhn uortpwnh uortpnwh uortpnhw uortwphn
uortwpnh uortwhpn uortwhnp uortwnhp uortwnph uortnpwh uortnphw uortnwph uortnwhp uortnhwp uortnhpw
uorpthwn uorpthnw uorptwhn uorptwnh uorptnwh uorptnhw uorphtwn uorphtnw uorphwtn uorphwnt uorphnwt
uorphntw uorpwhtn uorpwhnt uorpwthn uorpwtnh uorpwnth uorpwnht uorpnhwt uorpnhtw uorpnwht uorpnwth
uorpntwh uorpnthw uorwtphn uorwtpnh uorwthpn uorwthnp uorwtnhp uorwtnph uorwpthn uorwptnh uorwphtn
uorwphnt uorwpnht uorwpnth uorwhptn uorwhpnt uorwhtpn uorwhtnp uorwhntp uorwhnpt uorwnpht uorwnpth
uorwnhpt uorwnhtp uorwnthp uorwntph uorntpwh uorntphw uorntwph uorntwhp uornthwp uornthpw uornptwh
uornpthw uornpwth uornpwht uornphwt uornphtw uornwpth uornwpht uornwtph uornwthp uornwhtp uornwhpt
uornhpwt uornhptw uornhwpt uornhwtp uornhtwp uornhtpw uophrtwn uophrtnw uophrwtn uophrwnt uophrnwt
uophrntw uophtrwn uophtrnw uophtwrn uophtwnr uophtnwr uophtnrw uophwtrn uophwtnr uophwrtn uophwrnt
uophwnrt uophwntr uophntwr uophntrw uophnwtr uophnwrt uophnrwt uophnrtw uoprhtwn uoprhtnw uoprhwtn
uoprhwnt uoprhnwt uoprhntw uoprthwn uoprthnw uoprtwhn uoprtwnh uoprtnwh uoprtnhw uoprwthn uoprwtnh
uoprwhtn uoprwhnt uoprwnht uoprwnth uoprntwh uoprnthw uoprnwth uoprnwht uoprnhwt uoprnhtw uoptrhwn
uoptrhnw uoptrwhn uoptrwnh uoptrnwh uoptrnhw uopthrwn uopthrnw uopthwrn uopthwnr uopthnwr uopthnrw
uoptwhrn uoptwhnr uoptwrhn uoptwrnh uoptwnrh uoptwnhr uoptnhwr uoptnhrw uoptnwhr uoptnwrh uoptnrwh
uoptnrhw uopwrthn uopwrtnh uopwrhtn uopwrhnt uopwrnht uopwrnth uopwtrhn uopwtrnh uopwthrn uopwthnr
uopwtnhr uopwtnrh uopwhtrn uopwhtnr uopwhrtn uopwhrnt uopwhnrt uopwhntr uopwnthr uopwntrh uopwnhtr
uopwnhrt uopwnrht uopwnrth uopnrtwh uopnrthw uopnrwth uopnrwht uopnrhwt uopnrhtw uopntrwh uopntrhw
uopntwrh uopntwhr uopnthwr uopnthrw uopnwtrh uopnwthr uopnwrth uopnwrht uopnwhrt uopnwhtr uopnhtwr
uopnhtrw uopnhwtr uopnhwrt uopnhrwt uopnhrtw uowhrptn uowhrpnt uowhrtpn uowhrtnp uowhrntp uowhrnpt
uowhprtn uowhprnt uowhptrn uowhptnr uowhpntr uowhpnrt uowhtprn uowhtpnr uowhtrpn uowhtrnp uowhtnrp
uowhtnpr uowhnptr uowhnprt uowhntpr uowhntrp uowhnrtp uowhnrpt uowrhptn uowrhpnt uowrhtpn uowrhtnp
uowrhntp uowrhnpt uowrphtn uowrphnt uowrpthn uowrptnh uowrpnth uowrpnht uowrtphn uowrtpnh uowrthpn
uowrthnp uowrtnhp uowrtnph uowrnpth uowrnpht uowrntph uowrnthp uowrnhtp uowrnhpt uowprhtn uowprhnt
uowprthn uowprtnh uowprnth uowprnht uowphrtn uowphrnt uowphtrn uowphtnr uowphntr uowphnrt uowpthrn
uowpthnr uowptrhn uowptrnh uowptnrh uowptnhr uowpnhtr uowpnhrt uowpnthr uowpntrh uowpnrth uowpnrht
uowtrphn uowtrpnh uowtrhpn uowtrhnp uowtrnhp uowtrnph uowtprhn uowtprnh uowtphrn uowtphnr uowtpnhr
uowtpnrh uowthprn uowthpnr uowthrpn uowthrnp uowthnrp uowthnpr uowtnphr uowtnprh uowtnhpr uowtnhrp
uowtnrhp uowtnrph uownrpth uownrpht uownrtph uownrthp uownrhtp uownrhpt uownprth uownprht uownptrh
uownpthr uownphtr uownphrt uowntprh uowntphr uowntrph uowntrhp uownthrp uownthpr uownhptr uownhprt
uownhtpr uownhtrp uownhrtp uownhrpt uonhrpwt uonhrptw uonhrwpt uonhrwtp uonhrtwp uonhrtpw uonhprwt
uonhprtw uonhpwrt uonhpwtr uonhptwr uonhptrw uonhwprt uonhwptr uonhwrpt uonhwrtp uonhwtrp uonhwtpr
uonhtpwr uonhtprw uonhtwpr uonhtwrp uonhtrwp uonhtrpw uonrhpwt uonrhptw uonrhwpt uonrhwtp uonrhtwp
uonrhtpw uonrphwt uonrphtw uonrpwht uonrpwth uonrptwh uonrpthw uonrwpht uonrwpth uonrwhpt uonrwhtp
uonrwthp uonrwtph uonrtpwh uonrtphw uonrtwph uonrtwhp uonrthwp uonrthpw uonprhwt uonprhtw uonprwht
uonprwth uonprtwh uonprthw uonphrwt uonphrtw uonphwrt uonphwtr uonphtwr uonphtrw uonpwhrt uonpwhtr
uonpwrht uonpwrth uonpwtrh uonpwthr uonpthwr uonpthrw uonptwhr uonptwrh uonptrwh uonptrhw uonwrpht
uonwrpth uonwrhpt uonwrhtp uonwrthp uonwrtph uonwprht uonwprth uonwphrt uonwphtr uonwpthr uonwptrh
uonwhprt uonwhptr uonwhrpt uonwhrtp uonwhtrp uonwhtpr uonwtphr uonwtprh uonwthpr uonwthrp uonwtrhp
uonwtrph uontrpwh uontrphw uontrwph uontrwhp uontrhwp uontrhpw uontprwh uontprhw uontpwrh uontpwhr
uontphwr uontphrw uontwprh uontwphr uontwrph uontwrhp uontwhrp uontwhpr uonthpwr uonthprw uonthwpr
uonthwrp uonthrwp uonthrpw uwthropn uwthronp uwthrpon uwthrpno uwthrnpo uwthrnop uwthorpn uwthornp
uwthoprn uwthopnr uwthonpr uwthonrp uwthporn uwthponr uwthpron uwthprno uwthpnro uwthpnor uwthnopr
uwthnorp uwthnpor uwthnpro uwthnrpo uwthnrop uwtrhopn uwtrhonp uwtrhpon uwtrhpno uwtrhnpo uwtrhnop
uwtrohpn uwtrohnp uwtrophn uwtropnh uwtronph uwtronhp uwtrpohn uwtrponh uwtrphon uwtrphno uwtrpnho
uwtrpnoh uwtrnoph uwtrnohp uwtrnpoh uwtrnpho uwtrnhpo uwtrnhop uwtorhpn uwtorhnp uwtorphn uwtorpnh
uwtornph uwtornhp uwtohrpn uwtohrnp uwtohprn uwtohpnr uwtohnpr uwtohnrp uwtophrn uwtophnr uwtoprhn
uwtoprnh uwtopnrh uwtopnhr uwtonhpr uwtonhrp uwtonphr uwtonprh uwtonrph uwtonrhp uwtprohn uwtpronh
uwtprhon uwtprhno uwtprnho uwtprnoh uwtporhn uwtpornh uwtpohrn uwtpohnr uwtponhr uwtponrh uwtphorn
uwtphonr uwtphron uwtphrno uwtphnro uwtphnor uwtpnohr uwtpnorh uwtpnhor uwtpnhro uwtpnrho uwtpnroh
uwtnroph uwtnrohp uwtnrpoh uwtnrpho uwtnrhpo uwtnrhop uwtnorph uwtnorhp uwtnoprh uwtnophr uwtnohpr
uwtnohrp uwtnporh uwtnpohr uwtnproh uwtnprho uwtnphro uwtnphor uwtnhopr uwtnhorp uwtnhpor uwtnhpro
uwtnhrpo uwtnhrop uwhtropn uwhtronp uwhtrpon uwhtrpno uwhtrnpo uwhtrnop uwhtorpn uwhtornp uwhtoprn
uwhtopnr uwhtonpr uwhtonrp uwhtporn uwhtponr uwhtpron uwhtprno uwhtpnro uwhtpnor uwhtnopr uwhtnorp
uwhtnpor uwhtnpro uwhtnrpo uwhtnrop uwhrtopn uwhrtonp uwhrtpon uwhrtpno uwhrtnpo uwhrtnop uwhrotpn
uwhrotnp uwhroptn uwhropnt uwhronpt uwhrontp uwhrpotn uwhrpont uwhrpton uwhrptno uwhrpnto uwhrpnot
uwhrnopt uwhrnotp uwhrnpot uwhrnpto uwhrntpo uwhrntop uwhortpn uwhortnp uwhorptn uwhorpnt uwhornpt
uwhorntp uwhotrpn uwhotrnp uwhotprn uwhotpnr uwhotnpr uwhotnrp uwhoptrn uwhoptnr uwhoprtn uwhoprnt
uwhopnrt uwhopntr uwhontpr uwhontrp uwhonptr uwhonprt uwhonrpt uwhonrtp uwhprotn uwhpront uwhprton
uwhprtno uwhprnto uwhprnot uwhportn uwhpornt uwhpotrn uwhpotnr uwhpontr uwhponrt uwhptorn uwhptonr
uwhptron uwhptrno uwhptnro uwhptnor uwhpnotr uwhpnort uwhpntor uwhpntro uwhpnrto uwhpnrot uwhnropt
uwhnrotp uwhnrpot uwhnrpto uwhnrtpo uwhnrtop uwhnorpt uwhnortp uwhnoprt uwhnoptr uwhnotpr uwhnotrp
uwhnport uwhnpotr uwhnprot uwhnprto uwhnptro uwhnptor uwhntopr uwhntorp uwhntpor uwhntpro uwhntrpo
uwhntrop uwrhtopn uwrhtonp uwrhtpon uwrhtpno uwrhtnpo uwrhtnop uwrhotpn uwrhotnp uwrhoptn uwrhopnt
uwrhonpt uwrhontp uwrhpotn uwrhpont uwrhpton uwrhptno uwrhpnto uwrhpnot uwrhnopt uwrhnotp uwrhnpot
uwrhnpto uwrhntpo uwrhntop uwrthopn uwrthonp uwrthpon uwrthpno uwrthnpo uwrthnop uwrtohpn uwrtohnp
uwrtophn uwrtopnh uwrtonph uwrtonhp uwrtpohn uwrtponh uwrtphon uwrtphno uwrtpnho uwrtpnoh uwrtnoph
uwrtnohp uwrtnpoh uwrtnpho uwrtnhpo uwrtnhop uwrothpn uwrothnp uwrotphn uwrotpnh uwrotnph uwrotnhp
uwrohtpn uwrohtnp uwrohptn uwrohpnt uwrohnpt uwrohntp uwrophtn uwrophnt uwropthn uwroptnh uwropnth
uwropnht uwronhpt uwronhtp uwronpht uwronpth uwrontph uwronthp uwrptohn uwrptonh uwrpthon uwrpthno
uwrptnho uwrptnoh uwrpothn uwrpotnh uwrpohtn uwrpohnt uwrponht uwrponth uwrphotn uwrphont uwrphton
uwrphtno uwrphnto uwrphnot uwrpnoht uwrpnoth uwrpnhot uwrpnhto uwrpntho uwrpntoh uwrntoph uwrntohp
uwrntpoh uwrntpho uwrnthpo uwrnthop uwrnotph uwrnothp uwrnopth uwrnopht uwrnohpt uwrnohtp uwrnpoth
uwrnpoht uwrnptoh uwrnptho uwrnphto uwrnphot uwrnhopt uwrnhotp uwrnhpot uwrnhpto uwrnhtpo uwrnhtop
uwohrtpn uwohrtnp uwohrptn uwohrpnt uwohrnpt uwohrntp uwohtrpn uwohtrnp uwohtprn uwohtpnr uwohtnpr
uwohtnrp uwohptrn uwohptnr uwohprtn uwohprnt uwohpnrt uwohpntr uwohntpr uwohntrp uwohnptr uwohnprt
uwohnrpt uwohnrtp uworhtpn uworhtnp uworhptn uworhpnt uworhnpt uworhntp uworthpn uworthnp uwortphn
uwortpnh uwortnph uwortnhp uworpthn uworptnh uworphtn uworphnt uworpnht uworpnth uworntph uwornthp
uwornpth uwornpht uwornhpt uwornhtp uwotrhpn uwotrhnp uwotrphn uwotrpnh uwotrnph uwotrnhp uwothrpn
uwothrnp uwothprn uwothpnr uwothnpr uwothnrp uwotphrn uwotphnr uwotprhn uwotprnh uwotpnrh uwotpnhr
uwotnhpr uwotnhrp uwotnphr uwotnprh uwotnrph uwotnrhp uwoprthn uwoprtnh uwoprhtn uwoprhnt uwoprnht
uwoprnth uwoptrhn uwoptrnh uwopthrn uwopthnr uwoptnhr uwoptnrh uwophtrn uwophtnr uwophrtn uwophrnt
uwophnrt uwophntr uwopnthr uwopntrh uwopnhtr uwopnhrt uwopnrht uwopnrth uwonrtph uwonrthp uwonrpth
uwonrpht uwonrhpt uwonrhtp uwontrph uwontrhp uwontprh uwontphr uwonthpr uwonthrp uwonptrh uwonpthr
uwonprth uwonprht uwonphrt uwonphtr uwonhtpr uwonhtrp uwonhptr uwonhprt uwonhrpt uwonhrtp uwphrotn
uwphront uwphrton uwphrtno uwphrnto uwphrnot uwphortn uwphornt uwphotrn uwphotnr uwphontr uwphonrt
uwphtorn uwphtonr uwphtron uwphtrno uwphtnro uwphtnor uwphnotr uwphnort uwphntor uwphntro uwphnrto
uwphnrot uwprhotn uwprhont uwprhton uwprhtno uwprhnto uwprhnot uwprohtn uwprohnt uwprothn uwprotnh
uwpronth uwpronht uwprtohn uwprtonh uwprthon uwprthno uwprtnho uwprtnoh uwprnoth uwprnoht uwprntoh
uwprntho uwprnhto uwprnhot uwporhtn uwporhnt uwporthn uwportnh uwpornth uwpornht uwpohrtn uwpohrnt
uwpohtrn uwpohtnr uwpohntr uwpohnrt uwpothrn uwpothnr uwpotrhn uwpotrnh uwpotnrh uwpotnhr uwponhtr
uwponhrt uwponthr uwpontrh uwponrth uwponrht uwptrohn uwptronh uwptrhon uwptrhno uwptrnho uwptrnoh
uwptorhn uwptornh uwptohrn uwptohnr uwptonhr uwptonrh uwpthorn uwpthonr uwpthron uwpthrno uwpthnro
uwpthnor uwptnohr uwptnorh uwptnhor uwptnhro uwptnrho uwptnroh uwpnroth uwpnroht uwpnrtoh uwpnrtho
uwpnrhto uwpnrhot uwpnorth uwpnorht uwpnotrh uwpnothr uwpnohtr uwpnohrt uwpntorh uwpntohr uwpntroh
uwpntrho uwpnthro uwpnthor uwpnhotr uwpnhort uwpnhtor uwpnhtro uwpnhrto uwpnhrot uwnhropt uwnhrotp
uwnhrpot uwnhrpto uwnhrtpo uwnhrtop uwnhorpt uwnhortp uwnhoprt uwnhoptr uwnhotpr uwnhotrp uwnhport
uwnhpotr uwnhprot uwnhprto uwnhptro uwnhptor uwnhtopr uwnhtorp uwnhtpor uwnhtpro uwnhtrpo uwnhtrop
uwnrhopt uwnrhotp uwnrhpot uwnrhpto uwnrhtpo uwnrhtop uwnrohpt uwnrohtp uwnropht uwnropth uwnrotph
uwnrothp uwnrpoht uwnrpoth uwnrphot uwnrphto uwnrptho uwnrptoh uwnrtoph uwnrtohp uwnrtpoh uwnrtpho
uwnrthpo uwnrthop uwnorhpt uwnorhtp uwnorpht uwnorpth uwnortph uwnorthp uwnohrpt uwnohrtp uwnohprt
uwnohptr uwnohtpr uwnohtrp uwnophrt uwnophtr uwnoprht uwnoprth uwnoptrh uwnopthr uwnothpr uwnothrp
uwnotphr uwnotprh uwnotrph uwnotrhp uwnproht uwnproth uwnprhot uwnprhto uwnprtho uwnprtoh uwnporht
uwnporth uwnpohrt uwnpohtr uwnpothr uwnpotrh uwnphort uwnphotr uwnphrot uwnphrto uwnphtro uwnphtor
uwnptohr uwnptorh uwnpthor uwnpthro uwnptrho uwnptroh uwntroph uwntrohp uwntrpoh uwntrpho uwntrhpo
uwntrhop uwntorph uwntorhp uwntoprh uwntophr uwntohpr uwntohrp uwntporh uwntpohr uwntproh uwntprho
uwntphro uwntphor uwnthopr uwnthorp uwnthpor uwnthpro uwnthrpo uwnthrop unthrowp unthropw unthrwop
unthrwpo unthrpwo unthrpow unthorwp unthorpw unthowrp unthowpr unthopwr unthoprw unthworp unthwopr
unthwrop unthwrpo unthwpro unthwpor unthpowr unthporw unthpwor unthpwro unthprwo unthprow untrhowp
untrhopw untrhwop untrhwpo untrhpwo untrhpow untrohwp untrohpw untrowhp untrowph untropwh untrophw
untrwohp untrwoph untrwhop untrwhpo untrwpho untrwpoh untrpowh untrpohw untrpwoh untrpwho untrphwo
untrphow untorhwp untorhpw untorwhp untorwph untorpwh untorphw untohrwp untohrpw untohwrp untohwpr
untohpwr untohprw untowhrp untowhpr untowrhp untowrph untowprh untowphr untophwr untophrw untopwhr
untopwrh untoprwh untoprhw untwrohp untwroph untwrhop untwrhpo untwrpho untwrpoh untworhp untworph
untwohrp untwohpr untwophr untwoprh untwhorp untwhopr untwhrop untwhrpo untwhpro untwhpor untwpohr
untwporh untwphor untwphro untwprho untwproh untprowh untprohw untprwoh untprwho untprhwo untprhow
untporwh untporhw untpowrh untpowhr untpohwr untpohrw untpworh untpwohr untpwroh untpwrho untpwhro
untpwhor untphowr untphorw untphwor untphwro untphrwo untphrow unhtrowp unhtropw unhtrwop unhtrwpo
unhtrpwo unhtrpow unhtorwp unhtorpw unhtowrp unhtowpr unhtopwr unhtoprw unhtworp unhtwopr unhtwrop
unhtwrpo unhtwpro unhtwpor unhtpowr unhtporw unhtpwor unhtpwro unhtprwo unhtprow unhrtowp unhrtopw
unhrtwop unhrtwpo unhrtpwo unhrtpow unhrotwp unhrotpw unhrowtp unhrowpt unhropwt unhroptw unhrwotp
unhrwopt unhrwtop unhrwtpo unhrwpto unhrwpot unhrpowt unhrpotw unhrpwot unhrpwto unhrptwo unhrptow
unhortwp unhortpw unhorwtp unhorwpt unhorpwt unhorptw unhotrwp unhotrpw unhotwrp unhotwpr unhotpwr
unhotprw unhowtrp unhowtpr unhowrtp unhowrpt unhowprt unhowptr unhoptwr unhoptrw unhopwtr unhopwrt
unhoprwt unhoprtw unhwrotp unhwropt unhwrtop unhwrtpo unhwrpto unhwrpot unhwortp unhworpt unhwotrp
unhwotpr unhwoptr unhwoprt unhwtorp unhwtopr unhwtrop unhwtrpo unhwtpro unhwtpor unhwpotr unhwport
unhwptor unhwptro unhwprto unhwprot unhprowt unhprotw unhprwot unhprwto unhprtwo unhprtow unhporwt
unhportw unhpowrt unhpowtr unhpotwr unhpotrw unhpwort unhpwotr unhpwrot unhpwrto unhpwtro unhpwtor
unhptowr unhptorw unhptwor unhptwro unhptrwo unhptrow unrhtowp unrhtopw unrhtwop unrhtwpo unrhtpwo
unrhtpow unrhotwp unrhotpw unrhowtp unrhowpt unrhopwt unrhoptw unrhwotp unrhwopt unrhwtop unrhwtpo
unrhwpto unrhwpot unrhpowt unrhpotw unrhpwot unrhpwto unrhptwo unrhptow unrthowp unrthopw unrthwop
unrthwpo unrthpwo unrthpow unrtohwp unrtohpw unrtowhp unrtowph unrtopwh unrtophw unrtwohp unrtwoph
unrtwhop unrtwhpo unrtwpho unrtwpoh unrtpowh unrtpohw unrtpwoh unrtpwho unrtphwo unrtphow unrothwp
unrothpw unrotwhp unrotwph unrotpwh unrotphw unrohtwp unrohtpw unrohwtp unrohwpt unrohpwt unrohptw
unrowhtp unrowhpt unrowthp unrowtph unrowpth unrowpht unrophwt unrophtw unropwht unropwth unroptwh
unropthw unrwtohp unrwtoph unrwthop unrwthpo unrwtpho unrwtpoh unrwothp unrwotph unrwohtp unrwohpt
unrwopht unrwopth unrwhotp unrwhopt unrwhtop unrwhtpo unrwhpto unrwhpot unrwpoht unrwpoth unrwphot
unrwphto unrwptho unrwptoh unrptowh unrptohw unrptwoh unrptwho unrpthwo unrpthow unrpotwh unrpothw
unrpowth unrpowht unrpohwt unrpohtw unrpwoth unrpwoht unrpwtoh unrpwtho unrpwhto unrpwhot unrphowt
unrphotw unrphwot unrphwto unrphtwo unrphtow unohrtwp unohrtpw unohrwtp unohrwpt unohrpwt unohrptw
unohtrwp unohtrpw unohtwrp unohtwpr unohtpwr unohtprw unohwtrp unohwtpr unohwrtp unohwrpt unohwprt
unohwptr unohptwr unohptrw unohpwtr unohpwrt unohprwt unohprtw unorhtwp unorhtpw unorhwtp unorhwpt
unorhpwt unorhptw unorthwp unorthpw unortwhp unortwph unortpwh unortphw unorwthp unorwtph unorwhtp
unorwhpt unorwpht unorwpth unorptwh unorpthw unorpwth unorpwht unorphwt unorphtw unotrhwp unotrhpw
unotrwhp unotrwph unotrpwh unotrphw unothrwp unothrpw unothwrp unothwpr unothpwr unothprw unotwhrp
unotwhpr unotwrhp unotwrph unotwprh unotwphr unotphwr unotphrw unotpwhr unotpwrh unotprwh unotprhw
unowrthp unowrtph unowrhtp unowrhpt unowrpht unowrpth unowtrhp unowtrph unowthrp unowthpr unowtphr
unowtprh unowhtrp unowhtpr unowhrtp unowhrpt unowhprt unowhptr unowpthr unowptrh unowphtr unowphrt
unowprht unowprth unoprtwh unoprthw unoprwth unoprwht unoprhwt unoprhtw unoptrwh unoptrhw unoptwrh
unoptwhr unopthwr unopthrw unopwtrh unopwthr unopwrth unopwrht unopwhrt unopwhtr unophtwr unophtrw
unophwtr unophwrt unophrwt unophrtw unwhrotp unwhropt unwhrtop unwhrtpo unwhrpto unwhrpot unwhortp
unwhorpt unwhotrp unwhotpr unwhoptr unwhoprt unwhtorp unwhtopr unwhtrop unwhtrpo unwhtpro unwhtpor
unwhpotr unwhport unwhptor unwhptro unwhprto unwhprot unwrhotp unwrhopt unwrhtop unwrhtpo unwrhpto
unwrhpot unwrohtp unwrohpt unwrothp unwrotph unwropth unwropht unwrtohp unwrtoph unwrthop unwrthpo
unwrtpho unwrtpoh unwrpoth unwrpoht unwrptoh unwrptho unwrphto unwrphot unworhtp unworhpt unworthp
unwortph unworpth unworpht unwohrtp unwohrpt unwohtrp unwohtpr unwohptr unwohprt unwothrp unwothpr
unwotrhp unwotrph unwotprh unwotphr unwophtr unwophrt unwopthr unwoptrh unwoprth unwoprht unwtrohp
unwtroph unwtrhop unwtrhpo unwtrpho unwtrpoh unwtorhp unwtorph unwtohrp unwtohpr unwtophr unwtoprh
unwthorp unwthopr unwthrop unwthrpo unwthpro unwthpor unwtpohr unwtporh unwtphor unwtphro unwtprho
unwtproh unwproth unwproht unwprtoh unwprtho unwprhto unwprhot unwporth unwporht unwpotrh unwpothr
unwpohtr unwpohrt unwptorh unwptohr unwptroh unwptrho unwpthro unwpthor unwphotr unwphort unwphtor
unwphtro unwphrto unwphrot unphrowt unphrotw unphrwot unphrwto unphrtwo unphrtow unphorwt unphortw
unphowrt unphowtr unphotwr unphotrw unphwort unphwotr unphwrot unphwrto unphwtro unphwtor unphtowr
unphtorw unphtwor unphtwro unphtrwo unphtrow unprhowt unprhotw unprhwot unprhwto unprhtwo unprhtow
unprohwt unprohtw unprowht unprowth unprotwh unprothw unprwoht unprwoth unprwhot unprwhto unprwtho
unprwtoh unprtowh unprtohw unprtwoh unprtwho unprthwo unprthow unporhwt unporhtw unporwht unporwth
unportwh unporthw unpohrwt unpohrtw unpohwrt unpohwtr unpohtwr unpohtrw unpowhrt unpowhtr unpowrht
unpowrth unpowtrh unpowthr unpothwr unpothrw unpotwhr unpotwrh unpotrwh unpotrhw unpwroht unpwroth
unpwrhot unpwrhto unpwrtho unpwrtoh unpworht unpworth unpwohrt unpwohtr unpwothr unpwotrh unpwhort
unpwhotr unpwhrot unpwhrto unpwhtro unpwhtor unpwtohr unpwtorh unpwthor unpwthro unpwtrho unpwtroh
unptrowh unptrohw unptrwoh unptrwho unptrhwo unptrhow unptorwh unptorhw unptowrh unptowhr unptohwr
unptohrw unptworh unptwohr unptwroh unptwrho unptwhro unptwhor unpthowr unpthorw unpthwor unpthwro
unpthrwo unpthrow

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History of cryptography
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