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c9dc0164b8
* NEWS, {ext,test,sample}/openssl: Import Ruby/OpenSSL 2.0.0.beta.1. ext/openssl is now converted into a default gem. The full commit history since r55538 can be found at: https://github.com/ruby/openssl/compare/08e1881f5663...v2.0.0.beta.1 [Feature #9612] git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@56027 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
237 lines
7.8 KiB
Ruby
237 lines
7.8 KiB
Ruby
# frozen_string_literal: false
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require_relative 'utils'
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require 'base64'
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if defined?(OpenSSL::TestUtils)
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class OpenSSL::TestPKeyRSA < OpenSSL::PKeyTestCase
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RSA1024 = OpenSSL::TestUtils::TEST_KEY_RSA1024
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def test_padding
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key = OpenSSL::PKey::RSA.new(512, 3)
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# Need right size for raw mode
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plain0 = "x" * (512/8)
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cipher = key.private_encrypt(plain0, OpenSSL::PKey::RSA::NO_PADDING)
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plain1 = key.public_decrypt(cipher, OpenSSL::PKey::RSA::NO_PADDING)
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assert_equal(plain0, plain1)
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# Need smaller size for pkcs1 mode
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plain0 = "x" * (512/8 - 11)
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cipher1 = key.private_encrypt(plain0, OpenSSL::PKey::RSA::PKCS1_PADDING)
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plain1 = key.public_decrypt(cipher1, OpenSSL::PKey::RSA::PKCS1_PADDING)
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assert_equal(plain0, plain1)
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cipherdef = key.private_encrypt(plain0) # PKCS1_PADDING is default
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plain1 = key.public_decrypt(cipherdef)
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assert_equal(plain0, plain1)
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assert_equal(cipher1, cipherdef)
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# Failure cases
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assert_raise(ArgumentError){ key.private_encrypt() }
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assert_raise(ArgumentError){ key.private_encrypt("hi", 1, nil) }
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assert_raise(OpenSSL::PKey::RSAError){ key.private_encrypt(plain0, 666) }
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end
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def test_private
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key = OpenSSL::PKey::RSA.new(512, 3)
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assert(key.private?)
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key2 = OpenSSL::PKey::RSA.new(key.to_der)
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assert(key2.private?)
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key3 = key.public_key
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assert(!key3.private?)
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key4 = OpenSSL::PKey::RSA.new(key3.to_der)
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assert(!key4.private?)
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end
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def test_new
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key = OpenSSL::PKey::RSA.new 512
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pem = key.public_key.to_pem
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OpenSSL::PKey::RSA.new pem
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assert_equal([], OpenSSL.errors)
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end
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def test_new_exponent_default
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assert_equal(65537, OpenSSL::PKey::RSA.new(512).e)
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end
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def test_new_with_exponent
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1.upto(30) do |idx|
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e = (2 ** idx) + 1
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key = OpenSSL::PKey::RSA.new(512, e)
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assert_equal(e, key.e)
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end
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end
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def test_new_break
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assert_nil(OpenSSL::PKey::RSA.new(1024) { break })
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assert_raise(RuntimeError) do
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OpenSSL::PKey::RSA.new(1024) { raise }
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end
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end
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def test_digest_state_irrelevant_sign
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key = RSA1024
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digest1 = OpenSSL::Digest::SHA1.new
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digest2 = OpenSSL::Digest::SHA1.new
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data = 'Sign me!'
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digest1 << 'Change state of digest1'
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sig1 = key.sign(digest1, data)
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sig2 = key.sign(digest2, data)
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assert_equal(sig1, sig2)
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end
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def test_digest_state_irrelevant_verify
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key = RSA1024
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digest1 = OpenSSL::Digest::SHA1.new
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digest2 = OpenSSL::Digest::SHA1.new
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data = 'Sign me!'
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sig = key.sign(digest1, data)
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digest1.reset
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digest1 << 'Change state of digest1'
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assert(key.verify(digest1, sig, data))
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assert(key.verify(digest2, sig, data))
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end
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def test_RSAPrivateKey
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asn1 = OpenSSL::ASN1::Sequence([
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OpenSSL::ASN1::Integer(0),
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OpenSSL::ASN1::Integer(RSA1024.n),
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OpenSSL::ASN1::Integer(RSA1024.e),
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OpenSSL::ASN1::Integer(RSA1024.d),
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OpenSSL::ASN1::Integer(RSA1024.p),
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OpenSSL::ASN1::Integer(RSA1024.q),
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OpenSSL::ASN1::Integer(RSA1024.dmp1),
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OpenSSL::ASN1::Integer(RSA1024.dmq1),
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OpenSSL::ASN1::Integer(RSA1024.iqmp)
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])
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key = OpenSSL::PKey::RSA.new(asn1.to_der)
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assert_predicate key, :private?
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assert_same_rsa RSA1024, key
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pem = <<~EOF
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-----BEGIN RSA PRIVATE KEY-----
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MIICXgIBAAKBgQDLwsSw1ECnPtT+PkOgHhcGA71nwC2/nL85VBGnRqDxOqjVh7Cx
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aKPERYHsk4BPCkE3brtThPWc9kjHEQQ7uf9Y1rbCz0layNqHyywQEVLFmp1cpIt/
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Q3geLv8ZD9pihowKJDyMDiN6ArYUmZczvW4976MU3+l54E6lF/JfFEU5hwIDAQAB
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AoGBAKSl/MQarye1yOysqX6P8fDFQt68VvtXkNmlSiKOGuzyho0M+UVSFcs6k1L0
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maDE25AMZUiGzuWHyaU55d7RXDgeskDMakD1v6ZejYtxJkSXbETOTLDwUWTn618T
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gnb17tU1jktUtU67xK/08i/XodlgnQhs6VoHTuCh3Hu77O6RAkEA7+gxqBuZR572
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74/akiW/SuXm0SXPEviyO1MuSRwtI87B02D0qgV8D1UHRm4AhMnJ8MCs1809kMQE
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JiQUCrp9mQJBANlt2ngBO14us6NnhuAseFDTBzCHXwUUu1YKHpMMmxpnGqaldGgX
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sOZB3lgJsT9VlGf3YGYdkLTNVbogQKlKpB8CQQDiSwkb4vyQfDe8/NpU5Not0fII
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8jsDUCb+opWUTMmfbxWRR3FBNu8wnym/m19N4fFj8LqYzHX4KY0oVPu6qvJxAkEA
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wa5snNekFcqONLIE4G5cosrIrb74sqL8GbGb+KuTAprzj5z1K8Bm0UW9lTjVDjDi
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qRYgZfZSL+x1P/54+xTFSwJAY1FxA/N3QPCXCjPh5YqFxAMQs2VVYTfg+t0MEcJD
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dPMQD5JX6g5HKnHFg2mZtoXQrWmJSn7p8GJK8yNTopEErA==
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-----END RSA PRIVATE KEY-----
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EOF
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key = OpenSSL::PKey::RSA.new(pem)
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assert_same_rsa RSA1024, key
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assert_equal asn1.to_der, RSA1024.to_der
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assert_equal pem, RSA1024.export
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end
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def test_RSAPrivateKey_encrypted
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# key = abcdef
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pem = <<~EOF
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-----BEGIN RSA PRIVATE KEY-----
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Proc-Type: 4,ENCRYPTED
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DEK-Info: AES-128-CBC,733F5302505B34701FC41F5C0746E4C0
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zgJniZZQfvv8TFx3LzV6zhAQVayvQVZlAYqFq2yWbbxzF7C+IBhKQle9IhUQ9j/y
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/jkvol550LS8vZ7TX5WxyDLe12cdqzEvpR6jf3NbxiNysOCxwG4ErhaZGP+krcoB
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ObuL0nvls/+3myy5reKEyy22+0GvTDjaChfr+FwJjXMG+IBCLscYdgZC1LQL6oAn
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9xY5DH3W7BW4wR5ttxvtN32TkfVQh8xi3jrLrduUh+hV8DTiAiLIhv0Vykwhep2p
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WZA+7qbrYaYM8GLLgLrb6LfBoxeNxAEKiTpl1quFkm+Hk1dKq0EhVnxHf92x0zVF
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jRGZxAMNcrlCoE4f5XK45epVZSZvihdo1k73GPbp84aZ5P/xlO4OwZ3i4uCQXynl
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jE9c+I+4rRWKyPz9gkkqo0+teJL8ifeKt/3ab6FcdA0aArynqmsKJMktxmNu83We
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YVGEHZPeOlyOQqPvZqWsLnXQUfg54OkbuV4/4mWSIzxFXdFy/AekSeJugpswMXqn
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oNck4qySNyfnlyelppXyWWwDfVus9CVAGZmJQaJExHMT/rQFRVchlmY0Ddr5O264
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gcjv90o1NBOc2fNcqjivuoX7ROqys4K/YdNQ1HhQ7usJghADNOtuLI8ZqMh9akXD
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Eqp6Ne97wq1NiJj0nt3SJlzTnOyTjzrTe0Y+atPkVKp7SsjkATMI9JdhXwGhWd7a
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qFVl0owZiDasgEhyG2K5L6r+yaJLYkPVXZYC/wtWC3NEchnDWZGQcXzB4xROCQkD
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OlWNYDkPiZioeFkA3/fTMvG4moB2Pp9Q4GU5fJ6k43Ccu1up8dX/LumZb4ecg5/x
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-----END RSA PRIVATE KEY-----
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EOF
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key = OpenSSL::PKey::RSA.new(pem, "abcdef")
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assert_same_rsa RSA1024, key
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key = OpenSSL::PKey::RSA.new(pem) { "abcdef" }
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assert_same_rsa RSA1024, key
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cipher = OpenSSL::Cipher.new("aes-128-cbc")
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exported = RSA1024.to_pem(cipher, "abcdef\0\1")
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assert_same_rsa RSA1024, OpenSSL::PKey::RSA.new(exported, "abcdef\0\1")
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assert_raise(OpenSSL::PKey::RSAError) {
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OpenSSL::PKey::RSA.new(exported, "abcdef")
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}
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end
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def test_RSAPublicKey
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asn1 = OpenSSL::ASN1::Sequence([
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OpenSSL::ASN1::Integer(RSA1024.n),
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OpenSSL::ASN1::Integer(RSA1024.e)
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])
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key = OpenSSL::PKey::RSA.new(asn1.to_der)
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assert_not_predicate key, :private?
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assert_same_rsa dup_public(RSA1024), key
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pem = <<~EOF
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-----BEGIN RSA PUBLIC KEY-----
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MIGJAoGBAMvCxLDUQKc+1P4+Q6AeFwYDvWfALb+cvzlUEadGoPE6qNWHsLFoo8RF
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geyTgE8KQTduu1OE9Zz2SMcRBDu5/1jWtsLPSVrI2ofLLBARUsWanVyki39DeB4u
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/xkP2mKGjAokPIwOI3oCthSZlzO9bj3voxTf6XngTqUX8l8URTmHAgMBAAE=
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-----END RSA PUBLIC KEY-----
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EOF
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key = OpenSSL::PKey::RSA.new(pem)
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assert_same_rsa dup_public(RSA1024), key
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end
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def test_PUBKEY
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asn1 = OpenSSL::ASN1::Sequence([
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OpenSSL::ASN1::Sequence([
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OpenSSL::ASN1::ObjectId("rsaEncryption"),
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OpenSSL::ASN1::Null(nil)
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]),
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OpenSSL::ASN1::BitString(
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OpenSSL::ASN1::Sequence([
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OpenSSL::ASN1::Integer(RSA1024.n),
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OpenSSL::ASN1::Integer(RSA1024.e)
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]).to_der
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)
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])
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key = OpenSSL::PKey::RSA.new(asn1.to_der)
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assert_not_predicate key, :private?
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assert_same_rsa dup_public(RSA1024), key
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pem = <<~EOF
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-----BEGIN PUBLIC KEY-----
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MIGfMA0GCSqGSIb3DQEBAQUAA4GNADCBiQKBgQDLwsSw1ECnPtT+PkOgHhcGA71n
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wC2/nL85VBGnRqDxOqjVh7CxaKPERYHsk4BPCkE3brtThPWc9kjHEQQ7uf9Y1rbC
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z0layNqHyywQEVLFmp1cpIt/Q3geLv8ZD9pihowKJDyMDiN6ArYUmZczvW4976MU
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3+l54E6lF/JfFEU5hwIDAQAB
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-----END PUBLIC KEY-----
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EOF
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key = OpenSSL::PKey::RSA.new(pem)
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assert_same_rsa dup_public(RSA1024), key
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assert_equal asn1.to_der, dup_public(RSA1024).to_der
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assert_equal pem, dup_public(RSA1024).export
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end
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def test_dup
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key = OpenSSL::PKey::RSA.generate(256, 17)
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key2 = key.dup
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assert_equal key.params, key2.params
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key2.set_key(key2.n, 3, key2.d)
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assert_not_equal key.params, key2.params
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end
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private
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def assert_same_rsa(expected, key)
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check_component(expected, key, [:n, :e, :d, :p, :q, :dmp1, :dmq1, :iqmp])
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end
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end
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end
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