easy ciphers

Easy Ciphers Tools:
cryptography lectures
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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: whistly
cipher variations:
xijtumz yjkuvna zklvwob almwxpc bmnxyqd
cnoyzre dopzasf epqabtg fqrbcuh grscdvi
hstdewj ituefxk juvfgyl kvwghzm lwxhian
mxyijbo nyzjkcp ozakldq pablmer qbcmnfs
rcdnogt sdeophu tefpqiv ufgqrjw vghrskx

Decryption is performed similarly,

(There are different definitions for the modulo operation. In the above, the result is in the range 0...25. I.e., if x+n or x-n are not in the range 0...25, we have to subtract or add 26.)
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Atbash Cipher

Atbash is an ancient encryption system created in the Middle East. It was originally used in the Hebrew language.
The Atbash cipher is a simple substitution cipher that relies on transposing all the letters in the alphabet such that the resulting alphabet is backwards.
The first letter is replaced with the last letter, the second with the second-last, and so on.
An example plaintext to ciphertext using Atbash:
Plain: whistly
Cipher: dsrhgob

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: whistly

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Affine Cipher
In the affine cipher the letters of an alphabet of size m are first mapped to the integers in the range 0..m - 1. It then uses modular arithmetic to transform the integer that each plaintext letter corresponds to into another integer that correspond to a ciphertext letter. The encryption function for a single letter is

where modulus m is the size of the alphabet and a and b are the key of the cipher. The value a must be chosen such that a and m are coprime.
Considering the specific case of encrypting messages in English (i.e. m = 26), there are a total of 286 non-trivial affine ciphers, not counting the 26 trivial Caesar ciphers. This number comes from the fact there are 12 numbers that are coprime with 26 that are less than 26 (these are the possible values of a). Each value of a can have 26 different addition shifts (the b value) ; therefore, there are 12*26 or 312 possible keys.
Plaintext: whistly
cipher variations:

The decryption function is

where a - 1 is the modular multiplicative inverse of a modulo m. I.e., it satisfies the equation

The multiplicative inverse of a only exists if a and m are coprime. Hence without the restriction on a decryption might not be possible. It can be shown as follows that decryption function is the inverse of the encryption function,

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ROT13 Cipher
Applying ROT13 to a piece of text merely requires examining its alphabetic characters and replacing each one by the letter 13 places further along in the alphabet, wrapping back to the beginning if necessary. A becomes N, B becomes O, and so on up to M, which becomes Z, then the sequence continues at the beginning of the alphabet: N becomes A, O becomes B, and so on to Z, which becomes M. Only those letters which occur in the English alphabet are affected; numbers, symbols, whitespace, and all other characters are left unchanged. Because there are 26 letters in the English alphabet and 26 = 2 * 13, the ROT13 function is its own inverse:

ROT13(ROT13(x)) = x for any basic Latin-alphabet text x

An example plaintext to ciphertext using ROT13:

Plain: whistly
Cipher: juvfgyl

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Polybius Square

A Polybius Square is a table that allows someone to translate letters into numbers. To give a small level of encryption, this table can be randomized and shared with the recipient. In order to fit the 26 letters of the alphabet into the 25 spots created by the table, the letters i and j are usually combined.
1 2 3 4 5
1 A B C D E
2 F G H I/J K
3 L M N O P
4 Q R S T U
5 V W X Y Z

Basic Form:
Plain: whistly
Cipher: 25324234441345

Extended Methods:
Method #1

Plaintext: whistly
method variations:

Method #2
Bifid cipher
The message is converted to its coordinates in the usual manner, but they are written vertically beneath:
w h i s t l y 
2 3 4 3 4 1 4 
5 2 2 4 4 3 5 
They are then read out in rows:
Then divided up into pairs again, and the pairs turned back into letters using the square:
Plain: whistly
Cipher: modygtx

Read more ...
Method #3

Plaintext: whistly
method variations:
prmtdsk rmtdskp mtdskpr
tdskprm dskprmt skprmtd

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: whistly

all 5040 cipher variations:
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tlwshiy tlwshyi tlwsyhi tlwsyih tlwishy tlwisyh tlwihsy tlwihys tlwiyhs tlwiysh tlwhisy
tlwhiys tlwhsiy tlwhsyi tlwhysi tlwhyis tlwyihs tlwyish tlwyhis tlwyhsi tlwyshi tlwysih
tlhswiy tlhswyi tlhsiwy tlhsiyw tlhsyiw tlhsywi tlhwsiy tlhwsyi tlhwisy tlhwiys tlhwyis
tlhwysi tlhiwsy tlhiwys tlhiswy tlhisyw tlhiysw tlhiyws tlhywis tlhywsi tlhyiws tlhyisw
tlhysiw tlhyswi tlyswhi tlyswih tlyshwi tlyshiw tlysihw tlysiwh tlywshi tlywsih tlywhsi
tlywhis tlywihs tlywish tlyhwsi tlyhwis tlyhswi tlyhsiw tlyhisw tlyhiws tlyiwhs tlyiwsh
tlyihws tlyihsw tlyishw tlyiswh tyiswlh tyiswhl tyislwh tyislhw tyishlw tyishwl tyiwslh
tyiwshl tyiwlsh tyiwlhs tyiwhls tyiwhsl tyilwsh tyilwhs tyilswh tyilshw tyilhsw tyilhws
tyihwls tyihwsl tyihlws tyihlsw tyihslw tyihswl tysiwlh tysiwhl tysilwh tysilhw tysihlw
tysihwl tyswilh tyswihl tyswlih tyswlhi tyswhli tyswhil tyslwih tyslwhi tysliwh tyslihw
tyslhiw tyslhwi tyshwli tyshwil tyshlwi tyshliw tyshilw tyshiwl tywsilh tywsihl tywslih
tywslhi tywshli tywshil tywislh tywishl tywilsh tywilhs tywihls tywihsl tywlish tywlihs
tywlsih tywlshi tywlhsi tywlhis tywhils tywhisl tywhlis tywhlsi tywhsli tywhsil tylswih
tylswhi tylsiwh tylsihw tylshiw tylshwi tylwsih tylwshi tylwish tylwihs tylwhis tylwhsi
tyliwsh tyliwhs tyliswh tylishw tylihsw tylihws tylhwis tylhwsi tylhiws tylhisw tylhsiw
tylhswi tyhswli tyhswil tyhslwi tyhsliw tyhsilw tyhsiwl tyhwsli tyhwsil tyhwlsi tyhwlis
tyhwils tyhwisl tyhlwsi tyhlwis tyhlswi tyhlsiw tyhlisw tyhliws tyhiwls tyhiwsl tyhilws
tyhilsw tyhislw tyhiswl lhistwy lhistyw lhiswty lhiswyt lhisywt lhisytw lhitswy lhitsyw
lhitwsy lhitwys lhityws lhitysw lhiwtsy lhiwtys lhiwsty lhiwsyt lhiwyst lhiwyts lhiytws
lhiytsw lhiywts lhiywst lhiyswt lhiystw lhsitwy lhsityw lhsiwty lhsiwyt lhsiywt lhsiytw
lhstiwy lhstiyw lhstwiy lhstwyi lhstywi lhstyiw lhswtiy lhswtyi lhswity lhswiyt lhswyit
lhswyti lhsytwi lhsytiw lhsywti lhsywit lhsyiwt lhsyitw lhtsiwy lhtsiyw lhtswiy lhtswyi
lhtsywi lhtsyiw lhtiswy lhtisyw lhtiwsy lhtiwys lhtiyws lhtiysw lhtwisy lhtwiys lhtwsiy
lhtwsyi lhtwysi lhtwyis lhtyiws lhtyisw lhtywis lhtywsi lhtyswi lhtysiw lhwstiy lhwstyi
lhwsity lhwsiyt lhwsyit lhwsyti lhwtsiy lhwtsyi lhwtisy lhwtiys lhwtyis lhwtysi lhwitsy
lhwitys lhwisty lhwisyt lhwiyst lhwiyts lhwytis lhwytsi lhwyits lhwyist lhwysit lhwysti
lhystwi lhystiw lhyswti lhyswit lhysiwt lhysitw lhytswi lhytsiw lhytwsi lhytwis lhytiws
lhytisw lhywtsi lhywtis lhywsti lhywsit lhywist lhywits lhyitws lhyitsw lhyiwts lhyiwst
lhyiswt lhyistw lihstwy lihstyw lihswty lihswyt lihsywt lihsytw lihtswy lihtsyw lihtwsy
lihtwys lihtyws lihtysw lihwtsy lihwtys lihwsty lihwsyt lihwyst lihwyts lihytws lihytsw
lihywts lihywst lihyswt lihystw lishtwy lishtyw lishwty lishwyt lishywt lishytw listhwy
listhyw listwhy listwyh listywh listyhw liswthy liswtyh liswhty liswhyt liswyht liswyth
lisytwh lisythw lisywth lisywht lisyhwt lisyhtw litshwy litshyw litswhy litswyh litsywh
litsyhw lithswy lithsyw lithwsy lithwys lithyws lithysw litwhsy litwhys litwshy litwsyh
litwysh litwyhs lityhws lityhsw litywhs litywsh lityswh lityshw liwsthy liwstyh liwshty
liwshyt liwsyht liwsyth liwtshy liwtsyh liwthsy liwthys liwtyhs liwtysh liwhtsy liwhtys
liwhsty liwhsyt liwhyst liwhyts liwyths liwytsh liwyhts liwyhst liwysht liwysth liystwh
liysthw liyswth liyswht liyshwt liyshtw liytswh liytshw liytwsh liytwhs liythws liythsw
liywtsh liywths liywsth liywsht liywhst liywhts liyhtws liyhtsw liyhwts liyhwst liyhswt
liyhstw lsihtwy lsihtyw lsihwty lsihwyt lsihywt lsihytw lsithwy lsithyw lsitwhy lsitwyh
lsitywh lsityhw lsiwthy lsiwtyh lsiwhty lsiwhyt lsiwyht lsiwyth lsiytwh lsiythw lsiywth
lsiywht lsiyhwt lsiyhtw lshitwy lshityw lshiwty lshiwyt lshiywt lshiytw lshtiwy lshtiyw
lshtwiy lshtwyi lshtywi lshtyiw lshwtiy lshwtyi lshwity lshwiyt lshwyit lshwyti lshytwi
lshytiw lshywti lshywit lshyiwt lshyitw lsthiwy lsthiyw lsthwiy lsthwyi lsthywi lsthyiw
lstihwy lstihyw lstiwhy lstiwyh lstiywh lstiyhw lstwihy lstwiyh lstwhiy lstwhyi lstwyhi
lstwyih lstyiwh lstyihw lstywih lstywhi lstyhwi lstyhiw lswhtiy lswhtyi lswhity lswhiyt
lswhyit lswhyti lswthiy lswthyi lswtihy lswtiyh lswtyih lswtyhi lswithy lswityh lswihty
lswihyt lswiyht lswiyth lswytih lswythi lswyith lswyiht lswyhit lswyhti lsyhtwi lsyhtiw
lsyhwti lsyhwit lsyhiwt lsyhitw lsythwi lsythiw lsytwhi lsytwih lsytiwh lsytihw lsywthi
lsywtih lsywhti lsywhit lsywiht lsywith lsyitwh lsyithw lsyiwth lsyiwht lsyihwt lsyihtw
ltishwy ltishyw ltiswhy ltiswyh ltisywh ltisyhw ltihswy ltihsyw ltihwsy ltihwys ltihyws
ltihysw ltiwhsy ltiwhys ltiwshy ltiwsyh ltiwysh ltiwyhs ltiyhws ltiyhsw ltiywhs ltiywsh
ltiyswh ltiyshw ltsihwy ltsihyw ltsiwhy ltsiwyh ltsiywh ltsiyhw ltshiwy ltshiyw ltshwiy
ltshwyi ltshywi ltshyiw ltswhiy ltswhyi ltswihy ltswiyh ltswyih ltswyhi ltsyhwi ltsyhiw
ltsywhi ltsywih ltsyiwh ltsyihw lthsiwy lthsiyw lthswiy lthswyi lthsywi lthsyiw lthiswy
lthisyw lthiwsy lthiwys lthiyws lthiysw lthwisy lthwiys lthwsiy lthwsyi lthwysi lthwyis
lthyiws lthyisw lthywis lthywsi lthyswi lthysiw ltwshiy ltwshyi ltwsihy ltwsiyh ltwsyih
ltwsyhi ltwhsiy ltwhsyi ltwhisy ltwhiys ltwhyis ltwhysi ltwihsy ltwihys ltwishy ltwisyh
ltwiysh ltwiyhs ltwyhis ltwyhsi ltwyihs ltwyish ltwysih ltwyshi ltyshwi ltyshiw ltyswhi
ltyswih ltysiwh ltysihw ltyhswi ltyhsiw ltyhwsi ltyhwis ltyhiws ltyhisw ltywhsi ltywhis
ltywshi ltywsih ltywish ltywihs ltyihws ltyihsw ltyiwhs ltyiwsh ltyiswh ltyishw lwisthy
lwistyh lwishty lwishyt lwisyht lwisyth lwitshy lwitsyh lwithsy lwithys lwityhs lwitysh
lwihtsy lwihtys lwihsty lwihsyt lwihyst lwihyts lwiyths lwiytsh lwiyhts lwiyhst lwiysht
lwiysth lwsithy lwsityh lwsihty lwsihyt lwsiyht lwsiyth lwstihy lwstiyh lwsthiy lwsthyi
lwstyhi lwstyih lwshtiy lwshtyi lwshity lwshiyt lwshyit lwshyti lwsythi lwsytih lwsyhti
lwsyhit lwsyiht lwsyith lwtsihy lwtsiyh lwtshiy lwtshyi lwtsyhi lwtsyih lwtishy lwtisyh
lwtihsy lwtihys lwtiyhs lwtiysh lwthisy lwthiys lwthsiy lwthsyi lwthysi lwthyis lwtyihs
lwtyish lwtyhis lwtyhsi lwtyshi lwtysih lwhstiy lwhstyi lwhsity lwhsiyt lwhsyit lwhsyti
lwhtsiy lwhtsyi lwhtisy lwhtiys lwhtyis lwhtysi lwhitsy lwhitys lwhisty lwhisyt lwhiyst
lwhiyts lwhytis lwhytsi lwhyits lwhyist lwhysit lwhysti lwysthi lwystih lwyshti lwyshit
lwysiht lwysith lwytshi lwytsih lwythsi lwythis lwytihs lwytish lwyhtsi lwyhtis lwyhsti
lwyhsit lwyhist lwyhits lwyiths lwyitsh lwyihts lwyihst lwyisht lwyisth lyistwh lyisthw
lyiswth lyiswht lyishwt lyishtw lyitswh lyitshw lyitwsh lyitwhs lyithws lyithsw lyiwtsh
lyiwths lyiwsth lyiwsht lyiwhst lyiwhts lyihtws lyihtsw lyihwts lyihwst lyihswt lyihstw
lysitwh lysithw lysiwth lysiwht lysihwt lysihtw lystiwh lystihw lystwih lystwhi lysthwi
lysthiw lyswtih lyswthi lyswith lyswiht lyswhit lyswhti lyshtwi lyshtiw lyshwti lyshwit
lyshiwt lyshitw lytsiwh lytsihw lytswih lytswhi lytshwi lytshiw lytiswh lytishw lytiwsh
lytiwhs lytihws lytihsw lytwish lytwihs lytwsih lytwshi lytwhsi lytwhis lythiws lythisw
lythwis lythwsi lythswi lythsiw lywstih lywsthi lywsith lywsiht lywshit lywshti lywtsih
lywtshi lywtish lywtihs lywthis lywthsi lywitsh lywiths lywisth lywisht lywihst lywihts
lywhtis lywhtsi lywhits lywhist lywhsit lywhsti lyhstwi lyhstiw lyhswti lyhswit lyhsiwt
lyhsitw lyhtswi lyhtsiw lyhtwsi lyhtwis lyhtiws lyhtisw lyhwtsi lyhwtis lyhwsti lyhwsit
lyhwist lyhwits lyhitws lyhitsw lyhiwts lyhiwst lyhiswt lyhistw yhistlw yhistwl yhisltw
yhislwt yhiswlt yhiswtl yhitslw yhitswl yhitlsw yhitlws yhitwls yhitwsl yhiltsw yhiltws
yhilstw yhilswt yhilwst yhilwts yhiwtls yhiwtsl yhiwlts yhiwlst yhiwslt yhiwstl yhsitlw
yhsitwl yhsiltw yhsilwt yhsiwlt yhsiwtl yhstilw yhstiwl yhstliw yhstlwi yhstwli yhstwil
yhsltiw yhsltwi yhslitw yhsliwt yhslwit yhslwti yhswtli yhswtil yhswlti yhswlit yhswilt
yhswitl yhtsilw yhtsiwl yhtsliw yhtslwi yhtswli yhtswil yhtislw yhtiswl yhtilsw yhtilws
yhtiwls yhtiwsl yhtlisw yhtliws yhtlsiw yhtlswi yhtlwsi yhtlwis yhtwils yhtwisl yhtwlis
yhtwlsi yhtwsli yhtwsil yhlstiw yhlstwi yhlsitw yhlsiwt yhlswit yhlswti yhltsiw yhltswi
yhltisw yhltiws yhltwis yhltwsi yhlitsw yhlitws yhlistw yhliswt yhliwst yhliwts yhlwtis
yhlwtsi yhlwits yhlwist yhlwsit yhlwsti yhwstli yhwstil yhwslti yhwslit yhwsilt yhwsitl
yhwtsli yhwtsil yhwtlsi yhwtlis yhwtils yhwtisl yhwltsi yhwltis yhwlsti yhwlsit yhwlist
yhwlits yhwitls yhwitsl yhwilts yhwilst yhwislt yhwistl yihstlw yihstwl yihsltw yihslwt
yihswlt yihswtl yihtslw yihtswl yihtlsw yihtlws yihtwls yihtwsl yihltsw yihltws yihlstw
yihlswt yihlwst yihlwts yihwtls yihwtsl yihwlts yihwlst yihwslt yihwstl yishtlw yishtwl
yishltw yishlwt yishwlt yishwtl yisthlw yisthwl yistlhw yistlwh yistwlh yistwhl yislthw
yisltwh yislhtw yislhwt yislwht yislwth yiswtlh yiswthl yiswlth yiswlht yiswhlt yiswhtl
yitshlw yitshwl yitslhw yitslwh yitswlh yitswhl yithslw yithswl yithlsw yithlws yithwls
yithwsl yitlhsw yitlhws yitlshw yitlswh yitlwsh yitlwhs yitwhls yitwhsl yitwlhs yitwlsh
yitwslh yitwshl yilsthw yilstwh yilshtw yilshwt yilswht yilswth yiltshw yiltswh yilthsw
yilthws yiltwhs yiltwsh yilhtsw yilhtws yilhstw yilhswt yilhwst yilhwts yilwths yilwtsh
yilwhts yilwhst yilwsht yilwsth yiwstlh yiwsthl yiwslth yiwslht yiwshlt yiwshtl yiwtslh
yiwtshl yiwtlsh yiwtlhs yiwthls yiwthsl yiwltsh yiwlths yiwlsth yiwlsht yiwlhst yiwlhts
yiwhtls yiwhtsl yiwhlts yiwhlst yiwhslt yiwhstl ysihtlw ysihtwl ysihltw ysihlwt ysihwlt
ysihwtl ysithlw ysithwl ysitlhw ysitlwh ysitwlh ysitwhl ysilthw ysiltwh ysilhtw ysilhwt
ysilwht ysilwth ysiwtlh ysiwthl ysiwlth ysiwlht ysiwhlt ysiwhtl yshitlw yshitwl yshiltw
yshilwt yshiwlt yshiwtl yshtilw yshtiwl yshtliw yshtlwi yshtwli yshtwil yshltiw yshltwi
yshlitw yshliwt yshlwit yshlwti yshwtli yshwtil yshwlti yshwlit yshwilt yshwitl ysthilw
ysthiwl ysthliw ysthlwi ysthwli ysthwil ystihlw ystihwl ystilhw ystilwh ystiwlh ystiwhl
ystlihw ystliwh ystlhiw ystlhwi ystlwhi ystlwih ystwilh ystwihl ystwlih ystwlhi ystwhli
ystwhil yslhtiw yslhtwi yslhitw yslhiwt yslhwit yslhwti yslthiw yslthwi ysltihw ysltiwh
ysltwih ysltwhi yslithw yslitwh yslihtw yslihwt ysliwht ysliwth yslwtih yslwthi yslwith
yslwiht yslwhit yslwhti yswhtli yswhtil yswhlti yswhlit yswhilt yswhitl yswthli yswthil
yswtlhi yswtlih yswtilh yswtihl yswlthi yswltih yswlhti yswlhit yswliht yswlith yswitlh
yswithl yswilth yswilht yswihlt yswihtl ytishlw ytishwl ytislhw ytislwh ytiswlh ytiswhl
ytihslw ytihswl ytihlsw ytihlws ytihwls ytihwsl ytilhsw ytilhws ytilshw ytilswh ytilwsh
ytilwhs ytiwhls ytiwhsl ytiwlhs ytiwlsh ytiwslh ytiwshl ytsihlw ytsihwl ytsilhw ytsilwh
ytsiwlh ytsiwhl ytshilw ytshiwl ytshliw ytshlwi ytshwli ytshwil ytslhiw ytslhwi ytslihw
ytsliwh ytslwih ytslwhi ytswhli ytswhil ytswlhi ytswlih ytswilh ytswihl ythsilw ythsiwl
ythsliw ythslwi ythswli ythswil ythislw ythiswl ythilsw ythilws ythiwls ythiwsl ythlisw
ythliws ythlsiw ythlswi ythlwsi ythlwis ythwils ythwisl ythwlis ythwlsi ythwsli ythwsil
ytlshiw ytlshwi ytlsihw ytlsiwh ytlswih ytlswhi ytlhsiw ytlhswi ytlhisw ytlhiws ytlhwis
ytlhwsi ytlihsw ytlihws ytlishw ytliswh ytliwsh ytliwhs ytlwhis ytlwhsi ytlwihs ytlwish
ytlwsih ytlwshi ytwshli ytwshil ytwslhi ytwslih ytwsilh ytwsihl ytwhsli ytwhsil ytwhlsi
ytwhlis ytwhils ytwhisl ytwlhsi ytwlhis ytwlshi ytwlsih ytwlish ytwlihs ytwihls ytwihsl
ytwilhs ytwilsh ytwislh ytwishl ylisthw ylistwh ylishtw ylishwt yliswht yliswth ylitshw
ylitswh ylithsw ylithws ylitwhs ylitwsh ylihtsw ylihtws ylihstw ylihswt ylihwst ylihwts
yliwths yliwtsh yliwhts yliwhst yliwsht yliwsth ylsithw ylsitwh ylsihtw ylsihwt ylsiwht
ylsiwth ylstihw ylstiwh ylsthiw ylsthwi ylstwhi ylstwih ylshtiw ylshtwi ylshitw ylshiwt
ylshwit ylshwti ylswthi ylswtih ylswhti ylswhit ylswiht ylswith yltsihw yltsiwh yltshiw
yltshwi yltswhi yltswih yltishw yltiswh yltihsw yltihws yltiwhs yltiwsh ylthisw ylthiws
ylthsiw ylthswi ylthwsi ylthwis yltwihs yltwish yltwhis yltwhsi yltwshi yltwsih ylhstiw
ylhstwi ylhsitw ylhsiwt ylhswit ylhswti ylhtsiw ylhtswi ylhtisw ylhtiws ylhtwis ylhtwsi
ylhitsw ylhitws ylhistw ylhiswt ylhiwst ylhiwts ylhwtis ylhwtsi ylhwits ylhwist ylhwsit
ylhwsti ylwsthi ylwstih ylwshti ylwshit ylwsiht ylwsith ylwtshi ylwtsih ylwthsi ylwthis
ylwtihs ylwtish ylwhtsi ylwhtis ylwhsti ylwhsit ylwhist ylwhits ylwiths ylwitsh ylwihts
ylwihst ylwisht ylwisth ywistlh ywisthl ywislth ywislht ywishlt ywishtl ywitslh ywitshl
ywitlsh ywitlhs ywithls ywithsl ywiltsh ywilths ywilsth ywilsht ywilhst ywilhts ywihtls
ywihtsl ywihlts ywihlst ywihslt ywihstl ywsitlh ywsithl ywsilth ywsilht ywsihlt ywsihtl
ywstilh ywstihl ywstlih ywstlhi ywsthli ywsthil ywsltih ywslthi ywslith ywsliht ywslhit
ywslhti ywshtli ywshtil ywshlti ywshlit ywshilt ywshitl ywtsilh ywtsihl ywtslih ywtslhi
ywtshli ywtshil ywtislh ywtishl ywtilsh ywtilhs ywtihls ywtihsl ywtlish ywtlihs ywtlsih
ywtlshi ywtlhsi ywtlhis ywthils ywthisl ywthlis ywthlsi ywthsli ywthsil ywlstih ywlsthi
ywlsith ywlsiht ywlshit ywlshti ywltsih ywltshi ywltish ywltihs ywlthis ywlthsi ywlitsh
ywliths ywlisth ywlisht ywlihst ywlihts ywlhtis ywlhtsi ywlhits ywlhist ywlhsit ywlhsti
ywhstli ywhstil ywhslti ywhslit ywhsilt ywhsitl ywhtsli ywhtsil ywhtlsi ywhtlis ywhtils
ywhtisl ywhltsi ywhltis ywhlsti ywhlsit ywhlist ywhlits ywhitls ywhitsl ywhilts ywhilst
ywhislt ywhistl

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History of cryptography
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