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hsf/ma5/rsa/rsa.rb

102 lines
1.4 KiB

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module RSA
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def self.egcd(a, b)
if a == 0 then
return b, 0, 1
else
g, y ,x = self.egcd(b % a, a)
return g, x - (b.to_i / a.to_i)*y, y
end
end
def self.modinv(a, m)
g, x, y = self.egcd(a, m)
if g != 1 then
raise "Mod inv does not exist"
else
return x % m
end
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end
class Key
def initialize(p1, p2)
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puts "Generating key pair..."
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@n = p1 * p2
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@phi = (p1-1)*(p2-1)
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enc = []
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(2...@phi).each do |e|
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dom = e.gcd(@phi)
if dom == 1 then
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enc << e
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end
end
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@e = enc.sample
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@d = RSA.modinv(@e, @phi)
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end
def pubkey
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return @e, @n
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end
def privkey
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return @d, @n
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end
end
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class Data
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attr_reader :data
def initialize(data)
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@data = data
if data.is_a? String then
@data = @data.split("").map do |c|
c.ord.to_i
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end
end
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end
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def raw
str = ""
@data.each do |byte|
str += "\\x#{byte.to_s 16}"
end
return str
end
def inspect(endchar="\n")
pattern = "c" * @data.length
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return "\'#{@data.pack(pattern)}\'#{endchar}"
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end
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def encrypt(pubkey)
e, n = pubkey
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crypt = []
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@data.each do |c|
cr = (c ** e) % n
crypt << cr
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end
return crypt
end
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def decrypt(privkey)
d, n = privkey
crypt = []
@data.each do |c|
cr = (c ** d) % n
crypt << cr
end
return crypt
end
def encrypt!(pubkey)
@data = self.encrypt(pubkey)
end
def decrypt!(privkey)
@data = self.decrypt(privkey)
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end
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end
end