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Thu May 12 08:01:14 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
* ext/openssl/ossl_pkey_ec.c: Allow encryption when PEM-encoding Elliptic Curve private keys. [ruby-core:35329] [Bug #4423] Previous revision: 31525 git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@31526 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
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2 changed files with 39 additions and 34 deletions
10
ChangeLog
10
ChangeLog
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@ -1,3 +1,9 @@
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Thu May 12 08:01:14 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
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* ext/openssl/ossl_pkey_ec.c: Allow encryption when PEM-encoding
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Elliptic Curve private keys.
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[ruby-core:35329] [Bug #4423]
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Thu May 12 07:54:59 2011 Eric Hodel <drbrain@segment7.net>
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* object.c (rb_obj_equal): Add documentation. Patch by Vincent Batts.
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@ -11,13 +17,13 @@ Thu May 12 07:30:08 2011 Eric Hodel <drbrain@segment7.net>
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* Various .document files: Update .document files to match files which
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have documentation.
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Thu May 12 08:18:45 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
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Thu May 12 07:18:45 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
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* ext/openssl/ossl_pkey_dsa.c: Use generic X.509 SubjectPublicKeyInfo
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format for PEM-encoding DSA public keys.
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[ruby-core:35328] [Bug #4422]
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Thu May 12 07:27:31 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
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Thu May 12 06:27:31 2011 Martin Bosslet <Martin.Bosslet@googlemail.com>
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* ext/openssl/ossl_pkey_rsa.c: Use generic X.509 SubjectPublicKeyInfo
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format for encoding RSA public keys.
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@ -152,6 +152,7 @@ VALUE ossl_ec_new(EVP_PKEY *pkey)
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* OpenSSL::PKey::EC.new(ec_group)
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* OpenSSL::PKey::EC.new("secp112r1")
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* OpenSSL::PKey::EC.new(pem_string)
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* OpenSSL::PKey::EC.new(pem_string [, pwd])
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* OpenSSL::PKey::EC.new(der_string)
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*
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* See the OpenSSL documentation for:
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@ -163,6 +164,7 @@ static VALUE ossl_ec_key_initialize(int argc, VALUE *argv, VALUE self)
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EC_KEY *ec = NULL;
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VALUE arg, pass;
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VALUE group = Qnil;
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char *passwd = NULL;
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GetPKey(self, pkey);
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if (pkey->pkey.ec)
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@ -184,11 +186,14 @@ static VALUE ossl_ec_key_initialize(int argc, VALUE *argv, VALUE self)
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} else {
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BIO *in = ossl_obj2bio(arg);
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ec = PEM_read_bio_ECPrivateKey(in, NULL, NULL, NULL);
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if (!NIL_P(pass)) {
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passwd = StringValuePtr(pass);
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}
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ec = PEM_read_bio_ECPrivateKey(in, NULL, ossl_pem_passwd_cb, passwd);
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if (!ec) {
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(void)BIO_reset(in);
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(void)ERR_get_error();
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ec = PEM_read_bio_EC_PUBKEY(in, NULL, NULL, NULL);
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ec = PEM_read_bio_EC_PUBKEY(in, NULL, ossl_pem_passwd_cb, passwd);
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}
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if (!ec) {
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(void)BIO_reset(in);
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@ -461,16 +466,13 @@ static VALUE ossl_ec_key_is_private_key(VALUE self)
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return (EC_KEY_get0_private_key(ec) ? Qtrue : Qfalse);
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}
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static VALUE ossl_ec_key_to_string(VALUE self, int format)
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static VALUE ossl_ec_key_to_string(VALUE self, VALUE ciph, VALUE pass, int format)
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{
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EC_KEY *ec;
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BIO *out;
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int i = -1;
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int private = 0;
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#if 0 /* unused now */
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EVP_CIPHER *cipher = NULL;
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char *password = NULL;
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#endif
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VALUE str;
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Require_EC_KEY(self, ec);
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@ -490,37 +492,26 @@ static VALUE ossl_ec_key_to_string(VALUE self, int format)
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switch(format) {
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case EXPORT_PEM:
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if (private) {
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#if 0 /* unused now */
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if (cipher || password)
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/* BUG: finish cipher/password key export */
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rb_notimplement();
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const EVP_CIPHER *cipher;
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if (!NIL_P(ciph)) {
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cipher = GetCipherPtr(ciph);
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if (!NIL_P(pass)) {
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password = StringValuePtr(pass);
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}
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}
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else {
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cipher = NULL;
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}
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i = PEM_write_bio_ECPrivateKey(out, ec, cipher, NULL, 0, NULL, password);
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#endif
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i = PEM_write_bio_ECPrivateKey(out, ec, NULL, NULL, 0, NULL, NULL);
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} else {
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#if 0 /* unused now */
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if (cipher || password)
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rb_raise(rb_eArgError, "encryption is not supported when exporting this key type");
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#endif
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i = PEM_write_bio_EC_PUBKEY(out, ec);
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}
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break;
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case EXPORT_DER:
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if (private) {
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#if 0 /* unused now */
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if (cipher || password)
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rb_raise(rb_eArgError, "encryption is not supported when exporting this key type");
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#endif
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i = i2d_ECPrivateKey_bio(out, ec);
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} else {
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#if 0 /* unused now */
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if (cipher || password)
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rb_raise(rb_eArgError, "encryption is not supported when exporting this key type");
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#endif
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i = i2d_EC_PUBKEY_bio(out, ec);
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}
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@ -543,12 +534,20 @@ static VALUE ossl_ec_key_to_string(VALUE self, int format)
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/*
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* call-seq:
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* key.to_pem => String
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* key.to_pem(cipher, pass_phrase) => String
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*
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* Outputs the EC key in PEM encoding. If +cipher+ and +pass_phrase+ are
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* given they will be used to encrypt the key. +cipher+ must be an
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* OpenSSL::Cipher::Cipher instance. Note that encryption will only be
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* effective for a private key, public keys will always be encoded in plain
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* text.
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*
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* See the OpenSSL documentation for PEM_write_bio_ECPrivateKey()
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*/
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static VALUE ossl_ec_key_to_pem(VALUE self)
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static VALUE ossl_ec_key_to_pem(int argc, VALUE *argv, VALUE self)
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{
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return ossl_ec_key_to_string(self, EXPORT_PEM);
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VALUE cipher, passwd;
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rb_scan_args(argc, argv, "02", &cipher, &passwd);
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return ossl_ec_key_to_string(self, cipher, passwd, EXPORT_PEM);
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}
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/*
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@ -559,7 +558,7 @@ static VALUE ossl_ec_key_to_pem(VALUE self)
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*/
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static VALUE ossl_ec_key_to_der(VALUE self)
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{
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return ossl_ec_key_to_string(self, EXPORT_DER);
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return ossl_ec_key_to_string(self, Qnil, Qnil, EXPORT_DER);
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}
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/*
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@ -1530,7 +1529,7 @@ void Init_ossl_ec()
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rb_define_method(cEC, "dsa_verify_asn1", ossl_ec_key_dsa_verify_asn1, 2);
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/* do_sign/do_verify */
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rb_define_method(cEC, "to_pem", ossl_ec_key_to_pem, 0);
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rb_define_method(cEC, "to_pem", ossl_ec_key_to_pem, -1);
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rb_define_method(cEC, "to_der", ossl_ec_key_to_der, 0);
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rb_define_method(cEC, "to_text", ossl_ec_key_to_text, 0);
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