зеркало из https://github.com/github/ruby.git
Sat May 14 05:08:32 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
* ext/openssl/ossl_digest.c * ext/openssl/ossl_pkey.c * ext/openssl/ossl_pkey.h * test/openssl/pkey/test_pkey_rsa.rb Reverted premature commit. Sorry for the noise! Previous revision: 31555 git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@31556 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
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@ -1,3 +1,11 @@
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Sat May 14 05:08:32 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
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* ext/openssl/ossl_digest.c
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* ext/openssl/ossl_pkey.c
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* ext/openssl/ossl_pkey.h
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* test/openssl/pkey/test_pkey_rsa.rb
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Reverted premature commit. Sorry for the noise!
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Sat May 14 05:02:58 2011 Eric Hodel <drbrain@segment7.net>
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* lib/uri.rb: Add toplevel documentation. Patch by Vincent Batts.
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@ -239,8 +239,6 @@ Init_ossl_digest()
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mOSSL = rb_define_module("OpenSSL"); /* let rdoc know about mOSSL */
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#endif
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/* Allows you to compute cryptographic hashes of arbitrary data.
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*/
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cDigest = rb_define_class_under(mOSSL, "Digest", rb_path2class("Digest::Class"));
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eDigestError = rb_define_class_under(cDigest, "DigestError", eOSSLError);
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@ -18,9 +18,6 @@ VALUE cPKey;
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VALUE ePKeyError;
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ID id_private_q;
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#define reset_bio(b) (void)BIO_reset((b)); \
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(void)ERR_get_error();
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/*
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* callback for generating keys
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*/
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@ -68,50 +65,23 @@ ossl_pkey_new(EVP_PKEY *pkey)
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return Qnil; /* not reached */
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}
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/*
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* call-seq:
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* OpenSSL::PKey.read(string [, pwd ] ) -> PKey
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* OpenSSL::PKey.read(file [, pwd ]) -> PKey
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*
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* === Parameters
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* * +string+ is a DER- or PEM-encoded string containing an arbitrary private
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* or public key.
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* * +file+ is an instance of +File+ containing a DER- or PEM-encoded
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* arbitrary private or public key.
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* * +pwd+ is an optional password in case +string+ or +file+ is an encrypted
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* PEM resource.
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*/
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VALUE
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ossl_pkey_new_from_data(int argc, VALUE *argv, VALUE self)
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VALUE
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ossl_pkey_new_from_file(VALUE filename)
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{
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FILE *fp;
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EVP_PKEY *pkey;
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BIO *bio;
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VALUE data, pass;
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char *passwd = NULL;
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rb_scan_args(argc, argv, "11", &data, &pass);
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bio = ossl_obj2bio(data);
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if (!(pkey = d2i_PrivateKey_bio(bio, NULL))) {
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reset_bio(bio);
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if (!NIL_P(pass)) {
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passwd = StringValuePtr(pass);
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}
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if (!(pkey = PEM_read_bio_PrivateKey(bio, NULL, ossl_pem_passwd_cb, passwd))) {
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reset_bio(bio);
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if (!(pkey = d2i_PUBKEY_bio(bio, NULL))) {
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reset_bio(bio);
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if (!NIL_P(pass)) {
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passwd = StringValuePtr(pass);
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}
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pkey = PEM_read_bio_PUBKEY(bio, NULL, ossl_pem_passwd_cb, passwd);
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}
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}
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SafeStringValue(filename);
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if (!(fp = fopen(RSTRING_PTR(filename), "r"))) {
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ossl_raise(ePKeyError, "%s", strerror(errno));
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}
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BIO_free(bio);
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if (!pkey)
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ossl_raise(rb_eArgError, "Could not parse PKey");
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pkey = PEM_read_PrivateKey(fp, NULL, ossl_pem_passwd_cb, NULL);
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fclose(fp);
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if (!pkey) {
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ossl_raise(ePKeyError, NULL);
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}
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return ossl_pkey_new(pkey);
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}
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@ -251,8 +221,6 @@ Init_ossl_pkey()
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cPKey = rb_define_class_under(mPKey, "PKey", rb_cObject);
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rb_define_module_function(mPKey, "read", ossl_pkey_new_from_data, -1);
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rb_define_alloc_func(cPKey, ossl_pkey_alloc);
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rb_define_method(cPKey, "initialize", ossl_pkey_initialize, 0);
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@ -41,7 +41,7 @@ extern ID id_private_q;
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void ossl_generate_cb(int, int, void *);
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VALUE ossl_pkey_new(EVP_PKEY *);
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VALUE ossl_pkey_new_from_data(int, VALUE *, VALUE);
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VALUE ossl_pkey_new_from_file(VALUE);
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EVP_PKEY *GetPKeyPtr(VALUE);
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EVP_PKEY *DupPKeyPtr(VALUE);
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EVP_PKEY *GetPrivPKeyPtr(VALUE);
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@ -46,48 +46,6 @@ class OpenSSL::TestPKeyRSA < Test::Unit::TestCase
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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_read_private_key_der
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der = OpenSSL::TestUtils::TEST_KEY_RSA1024.to_der
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key = OpenSSL::PKey.read(der)
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assert(key.private?)
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assert_equal(der, key.to_der)
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end
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def test_read_private_key_pem
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pem = OpenSSL::TestUtils::TEST_KEY_RSA1024.to_pem
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key = OpenSSL::PKey.read(pem)
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assert(key.private?)
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assert_equal(pem, key.to_pem)
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end
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def test_read_public_key_der
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der = OpenSSL::TestUtils::TEST_KEY_RSA1024.public_key.to_der
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key = OpenSSL::PKey.read(der)
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assert(!key.private?)
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assert_equal(der, key.to_der)
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end
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def test_read_public_key_pem
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pem = OpenSSL::TestUtils::TEST_KEY_RSA1024.public_key.to_pem
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key = OpenSSL::PKey.read(pem)
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assert(!key.private?)
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assert_equal(pem, key.to_pem)
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end
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def test_read_private_key_pem_pw
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pem = OpenSSL::TestUtils::TEST_KEY_RSA1024.to_pem(OpenSSL::Cipher.new('AES-128-CBC'), 'secret')
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#callback form for password
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key = OpenSSL::PKey.read(pem) do
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'secret'
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end
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assert(key.private?)
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# pass password directly
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key = OpenSSL::PKey.read(pem, 'secret')
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assert(key.private?)
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#omit pem equality check, will be different due to cipher iv
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end
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end
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end
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