2010-12-15 14:50:00 -05:00
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require_relative 'utils'
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2005-09-07 03:40:55 -04:00
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if defined?(OpenSSL)
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class OpenSSL::TestPKCS7 < Test::Unit::TestCase
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def setup
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@rsa1024 = OpenSSL::TestUtils::TEST_KEY_RSA1024
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@rsa2048 = OpenSSL::TestUtils::TEST_KEY_RSA2048
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ca = OpenSSL::X509::Name.parse("/DC=org/DC=ruby-lang/CN=CA")
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ee1 = OpenSSL::X509::Name.parse("/DC=org/DC=ruby-lang/CN=EE1")
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ee2 = OpenSSL::X509::Name.parse("/DC=org/DC=ruby-lang/CN=EE2")
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now = Time.now
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ca_exts = [
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["basicConstraints","CA:TRUE",true],
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["keyUsage","keyCertSign, cRLSign",true],
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["subjectKeyIdentifier","hash",false],
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["authorityKeyIdentifier","keyid:always",false],
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]
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@ca_cert = issue_cert(ca, @rsa2048, 1, now, now+3600, ca_exts,
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nil, nil, OpenSSL::Digest::SHA1.new)
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ee_exts = [
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["keyUsage","Non Repudiation, Digital Signature, Key Encipherment",true],
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["authorityKeyIdentifier","keyid:always",false],
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["extendedKeyUsage","clientAuth, emailProtection, codeSigning",false],
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]
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@ee1_cert = issue_cert(ee1, @rsa1024, 2, now, now+1800, ee_exts,
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@ca_cert, @rsa2048, OpenSSL::Digest::SHA1.new)
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@ee2_cert = issue_cert(ee2, @rsa1024, 3, now, now+1800, ee_exts,
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@ca_cert, @rsa2048, OpenSSL::Digest::SHA1.new)
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end
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2009-03-05 22:56:38 -05:00
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def issue_cert(*args)
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OpenSSL::TestUtils.issue_cert(*args)
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end
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def test_signed
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store = OpenSSL::X509::Store.new
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store.add_cert(@ca_cert)
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ca_certs = [@ca_cert]
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data = "aaaaa\r\nbbbbb\r\nccccc\r\n"
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tmp = OpenSSL::PKCS7.sign(@ee1_cert, @rsa1024, data, ca_certs)
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p7 = OpenSSL::PKCS7.new(tmp.to_der)
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certs = p7.certificates
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signers = p7.signers
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assert(p7.verify([], store))
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assert_equal(data, p7.data)
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assert_equal(2, certs.size)
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assert_equal(@ee1_cert.subject.to_s, certs[0].subject.to_s)
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assert_equal(@ca_cert.subject.to_s, certs[1].subject.to_s)
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assert_equal(1, signers.size)
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assert_equal(@ee1_cert.serial, signers[0].serial)
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assert_equal(@ee1_cert.issuer.to_s, signers[0].issuer.to_s)
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# Normaly OpenSSL tries to translate the supplied content into canonical
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# MIME format (e.g. a newline character is converted into CR+LF).
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# If the content is a binary, PKCS7::BINARY flag should be used.
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data = "aaaaa\nbbbbb\nccccc\n"
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flag = OpenSSL::PKCS7::BINARY
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tmp = OpenSSL::PKCS7.sign(@ee1_cert, @rsa1024, data, ca_certs, flag)
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p7 = OpenSSL::PKCS7.new(tmp.to_der)
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certs = p7.certificates
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signers = p7.signers
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assert(p7.verify([], store))
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assert_equal(data, p7.data)
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assert_equal(2, certs.size)
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assert_equal(@ee1_cert.subject.to_s, certs[0].subject.to_s)
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assert_equal(@ca_cert.subject.to_s, certs[1].subject.to_s)
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assert_equal(1, signers.size)
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assert_equal(@ee1_cert.serial, signers[0].serial)
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assert_equal(@ee1_cert.issuer.to_s, signers[0].issuer.to_s)
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2009-03-05 22:56:38 -05:00
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# A signed-data which have multiple signatures can be created
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# through the following steps.
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# 1. create two signed-data
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# 2. copy signerInfo and certificate from one to another
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tmp1 = OpenSSL::PKCS7.sign(@ee1_cert, @rsa1024, data, [], flag)
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tmp2 = OpenSSL::PKCS7.sign(@ee2_cert, @rsa1024, data, [], flag)
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tmp1.add_signer(tmp2.signers[0])
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tmp1.add_certificate(@ee2_cert)
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p7 = OpenSSL::PKCS7.new(tmp1.to_der)
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certs = p7.certificates
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signers = p7.signers
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assert(p7.verify([], store))
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assert_equal(data, p7.data)
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assert_equal(2, certs.size)
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assert_equal(2, signers.size)
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assert_equal(@ee1_cert.serial, signers[0].serial)
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assert_equal(@ee1_cert.issuer.to_s, signers[0].issuer.to_s)
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assert_equal(@ee2_cert.serial, signers[1].serial)
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assert_equal(@ee2_cert.issuer.to_s, signers[1].issuer.to_s)
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end
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def test_detached_sign
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store = OpenSSL::X509::Store.new
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store.add_cert(@ca_cert)
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ca_certs = [@ca_cert]
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data = "aaaaa\nbbbbb\nccccc\n"
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flag = OpenSSL::PKCS7::BINARY|OpenSSL::PKCS7::DETACHED
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tmp = OpenSSL::PKCS7.sign(@ee1_cert, @rsa1024, data, ca_certs, flag)
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p7 = OpenSSL::PKCS7.new(tmp.to_der)
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assert_nothing_raised do
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OpenSSL::ASN1.decode(p7)
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end
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certs = p7.certificates
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signers = p7.signers
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assert(!p7.verify([], store))
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assert(p7.verify([], store, data))
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assert_equal(data, p7.data)
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assert_equal(2, certs.size)
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assert_equal(@ee1_cert.subject.to_s, certs[0].subject.to_s)
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assert_equal(@ca_cert.subject.to_s, certs[1].subject.to_s)
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assert_equal(1, signers.size)
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assert_equal(@ee1_cert.serial, signers[0].serial)
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assert_equal(@ee1_cert.issuer.to_s, signers[0].issuer.to_s)
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end
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def test_enveloped
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2005-09-12 07:55:25 -04:00
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if OpenSSL::OPENSSL_VERSION_NUMBER <= 0x0090704f
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# PKCS7_encrypt() of OpenSSL-0.9.7d goes to SEGV.
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# http://www.mail-archive.com/openssl-dev@openssl.org/msg17376.html
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return
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end
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2005-09-07 03:40:55 -04:00
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certs = [@ee1_cert, @ee2_cert]
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cipher = OpenSSL::Cipher::AES.new("128-CBC")
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data = "aaaaa\nbbbbb\nccccc\n"
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tmp = OpenSSL::PKCS7.encrypt(certs, data, cipher, OpenSSL::PKCS7::BINARY)
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p7 = OpenSSL::PKCS7.new(tmp.to_der)
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recip = p7.recipients
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assert_equal(:enveloped, p7.type)
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assert_equal(2, recip.size)
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assert_equal(@ca_cert.subject.to_s, recip[0].issuer.to_s)
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assert_equal(2, recip[0].serial)
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assert_equal(data, p7.decrypt(@rsa1024, @ee1_cert))
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assert_equal(@ca_cert.subject.to_s, recip[1].issuer.to_s)
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assert_equal(3, recip[1].serial)
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assert_equal(data, p7.decrypt(@rsa1024, @ee2_cert))
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end
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2012-03-28 21:27:17 -04:00
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def test_graceful_parsing_failure #[ruby-core:43250]
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contents = File.read(__FILE__)
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assert_raise(ArgumentError) { OpenSSL::PKCS7.new(contents) }
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end
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end
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end
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