28e2075280
trunk/talk git-svn-id: http://webrtc.googlecode.com/svn/trunk@4318 4adac7df-926f-26a2-2b94-8c16560cd09d
343 lines
10 KiB
C++
343 lines
10 KiB
C++
/*
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* libjingle
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* Copyright 2004--2008, Google Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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* 3. The name of the author may not be used to endorse or promote products
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* derived from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
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* EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
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* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
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* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#if HAVE_OPENSSL_SSL_H
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#include "talk/base/opensslidentity.h"
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// Must be included first before openssl headers.
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#include "talk/base/win32.h" // NOLINT
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#include <openssl/ssl.h>
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#include <openssl/bio.h>
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#include <openssl/err.h>
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#include <openssl/pem.h>
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#include <openssl/bn.h>
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#include <openssl/rsa.h>
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#include <openssl/crypto.h>
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#include "talk/base/helpers.h"
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#include "talk/base/logging.h"
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#include "talk/base/openssldigest.h"
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namespace talk_base {
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// We could have exposed a myriad of parameters for the crypto stuff,
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// but keeping it simple seems best.
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// Strength of generated keys. Those are RSA.
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static const int KEY_LENGTH = 1024;
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// Random bits for certificate serial number
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static const int SERIAL_RAND_BITS = 64;
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// Certificate validity lifetime
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static const int CERTIFICATE_LIFETIME = 60*60*24*365; // one year, arbitrarily
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// Certificate validity window.
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// This is to compensate for slightly incorrect system clocks.
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static const int CERTIFICATE_WINDOW = -60*60*24;
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// Generate a key pair. Caller is responsible for freeing the returned object.
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static EVP_PKEY* MakeKey() {
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LOG(LS_INFO) << "Making key pair";
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EVP_PKEY* pkey = EVP_PKEY_new();
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#if OPENSSL_VERSION_NUMBER < 0x00908000l
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// Only RSA_generate_key is available. Use that.
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RSA* rsa = RSA_generate_key(KEY_LENGTH, 0x10001, NULL, NULL);
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if (!EVP_PKEY_assign_RSA(pkey, rsa)) {
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EVP_PKEY_free(pkey);
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RSA_free(rsa);
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return NULL;
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}
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#else
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// RSA_generate_key is deprecated. Use _ex version.
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BIGNUM* exponent = BN_new();
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RSA* rsa = RSA_new();
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if (!pkey || !exponent || !rsa ||
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!BN_set_word(exponent, 0x10001) || // 65537 RSA exponent
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!RSA_generate_key_ex(rsa, KEY_LENGTH, exponent, NULL) ||
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!EVP_PKEY_assign_RSA(pkey, rsa)) {
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EVP_PKEY_free(pkey);
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BN_free(exponent);
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RSA_free(rsa);
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return NULL;
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}
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// ownership of rsa struct was assigned, don't free it.
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BN_free(exponent);
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#endif
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LOG(LS_INFO) << "Returning key pair";
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return pkey;
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}
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// Generate a self-signed certificate, with the public key from the
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// given key pair. Caller is responsible for freeing the returned object.
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static X509* MakeCertificate(EVP_PKEY* pkey, const char* common_name) {
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LOG(LS_INFO) << "Making certificate for " << common_name;
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X509* x509 = NULL;
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BIGNUM* serial_number = NULL;
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X509_NAME* name = NULL;
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if ((x509=X509_new()) == NULL)
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goto error;
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if (!X509_set_pubkey(x509, pkey))
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goto error;
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// serial number
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// temporary reference to serial number inside x509 struct
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ASN1_INTEGER* asn1_serial_number;
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if ((serial_number = BN_new()) == NULL ||
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!BN_pseudo_rand(serial_number, SERIAL_RAND_BITS, 0, 0) ||
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(asn1_serial_number = X509_get_serialNumber(x509)) == NULL ||
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!BN_to_ASN1_INTEGER(serial_number, asn1_serial_number))
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goto error;
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if (!X509_set_version(x509, 0L)) // version 1
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goto error;
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// There are a lot of possible components for the name entries. In
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// our P2P SSL mode however, the certificates are pre-exchanged
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// (through the secure XMPP channel), and so the certificate
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// identification is arbitrary. It can't be empty, so we set some
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// arbitrary common_name. Note that this certificate goes out in
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// clear during SSL negotiation, so there may be a privacy issue in
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// putting anything recognizable here.
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if ((name = X509_NAME_new()) == NULL ||
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!X509_NAME_add_entry_by_NID(name, NID_commonName, MBSTRING_UTF8,
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(unsigned char*)common_name, -1, -1, 0) ||
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!X509_set_subject_name(x509, name) ||
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!X509_set_issuer_name(x509, name))
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goto error;
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if (!X509_gmtime_adj(X509_get_notBefore(x509), CERTIFICATE_WINDOW) ||
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!X509_gmtime_adj(X509_get_notAfter(x509), CERTIFICATE_LIFETIME))
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goto error;
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if (!X509_sign(x509, pkey, EVP_sha1()))
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goto error;
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BN_free(serial_number);
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X509_NAME_free(name);
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LOG(LS_INFO) << "Returning certificate";
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return x509;
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error:
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BN_free(serial_number);
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X509_NAME_free(name);
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X509_free(x509);
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return NULL;
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}
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// This dumps the SSL error stack to the log.
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static void LogSSLErrors(const std::string& prefix) {
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char error_buf[200];
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unsigned long err;
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while ((err = ERR_get_error()) != 0) {
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ERR_error_string_n(err, error_buf, sizeof(error_buf));
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LOG(LS_ERROR) << prefix << ": " << error_buf << "\n";
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}
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}
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OpenSSLKeyPair* OpenSSLKeyPair::Generate() {
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EVP_PKEY* pkey = MakeKey();
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if (!pkey) {
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LogSSLErrors("Generating key pair");
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return NULL;
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}
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return new OpenSSLKeyPair(pkey);
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}
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OpenSSLKeyPair::~OpenSSLKeyPair() {
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EVP_PKEY_free(pkey_);
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}
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void OpenSSLKeyPair::AddReference() {
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CRYPTO_add(&pkey_->references, 1, CRYPTO_LOCK_EVP_PKEY);
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}
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#ifdef _DEBUG
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// Print a certificate to the log, for debugging.
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static void PrintCert(X509* x509) {
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BIO* temp_memory_bio = BIO_new(BIO_s_mem());
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if (!temp_memory_bio) {
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LOG_F(LS_ERROR) << "Failed to allocate temporary memory bio";
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return;
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}
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X509_print_ex(temp_memory_bio, x509, XN_FLAG_SEP_CPLUS_SPC, 0);
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BIO_write(temp_memory_bio, "\0", 1);
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char* buffer;
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BIO_get_mem_data(temp_memory_bio, &buffer);
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LOG(LS_VERBOSE) << buffer;
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BIO_free(temp_memory_bio);
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}
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#endif
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OpenSSLCertificate* OpenSSLCertificate::Generate(
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OpenSSLKeyPair* key_pair, const std::string& common_name) {
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std::string actual_common_name = common_name;
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if (actual_common_name.empty())
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// Use a random string, arbitrarily 8chars long.
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actual_common_name = CreateRandomString(8);
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X509* x509 = MakeCertificate(key_pair->pkey(), actual_common_name.c_str());
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if (!x509) {
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LogSSLErrors("Generating certificate");
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return NULL;
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}
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#ifdef _DEBUG
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PrintCert(x509);
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#endif
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return new OpenSSLCertificate(x509);
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}
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OpenSSLCertificate* OpenSSLCertificate::FromPEMString(
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const std::string& pem_string) {
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BIO* bio = BIO_new_mem_buf(const_cast<char*>(pem_string.c_str()), -1);
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if (!bio)
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return NULL;
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(void)BIO_set_close(bio, BIO_NOCLOSE);
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BIO_set_mem_eof_return(bio, 0);
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X509 *x509 = PEM_read_bio_X509(bio, NULL, NULL,
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const_cast<char*>("\0"));
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BIO_free(bio);
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if (x509)
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return new OpenSSLCertificate(x509);
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else
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return NULL;
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}
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bool OpenSSLCertificate::ComputeDigest(const std::string &algorithm,
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unsigned char *digest,
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std::size_t size,
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std::size_t *length) const {
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return ComputeDigest(x509_, algorithm, digest, size, length);
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}
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bool OpenSSLCertificate::ComputeDigest(const X509 *x509,
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const std::string &algorithm,
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unsigned char *digest,
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std::size_t size,
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std::size_t *length) {
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const EVP_MD *md;
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unsigned int n;
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if (!OpenSSLDigest::GetDigestEVP(algorithm, &md))
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return false;
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if (size < static_cast<size_t>(EVP_MD_size(md)))
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return false;
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X509_digest(x509, md, digest, &n);
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*length = n;
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return true;
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}
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OpenSSLCertificate::~OpenSSLCertificate() {
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X509_free(x509_);
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}
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std::string OpenSSLCertificate::ToPEMString() const {
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BIO* bio = BIO_new(BIO_s_mem());
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if (!bio)
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return NULL;
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if (!PEM_write_bio_X509(bio, x509_)) {
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BIO_free(bio);
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return NULL;
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}
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BIO_write(bio, "\0", 1);
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char* buffer;
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BIO_get_mem_data(bio, &buffer);
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std::string ret(buffer);
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BIO_free(bio);
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return ret;
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}
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void OpenSSLCertificate::AddReference() const {
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CRYPTO_add(&x509_->references, 1, CRYPTO_LOCK_X509);
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}
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OpenSSLIdentity* OpenSSLIdentity::Generate(const std::string& common_name) {
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OpenSSLKeyPair *key_pair = OpenSSLKeyPair::Generate();
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if (key_pair) {
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OpenSSLCertificate *certificate =
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OpenSSLCertificate::Generate(key_pair, common_name);
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if (certificate)
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return new OpenSSLIdentity(key_pair, certificate);
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delete key_pair;
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}
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LOG(LS_INFO) << "Identity generation failed";
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return NULL;
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}
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SSLIdentity* OpenSSLIdentity::FromPEMStrings(
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const std::string& private_key,
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const std::string& certificate) {
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scoped_ptr<OpenSSLCertificate> cert(
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OpenSSLCertificate::FromPEMString(certificate));
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if (!cert) {
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LOG(LS_ERROR) << "Failed to create OpenSSLCertificate from PEM string.";
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return NULL;
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}
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BIO* bio = BIO_new_mem_buf(const_cast<char*>(private_key.c_str()), -1);
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if (!bio) {
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LOG(LS_ERROR) << "Failed to create a new BIO buffer.";
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return NULL;
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}
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(void)BIO_set_close(bio, BIO_NOCLOSE);
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BIO_set_mem_eof_return(bio, 0);
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EVP_PKEY *pkey = PEM_read_bio_PrivateKey(bio, NULL, NULL,
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const_cast<char*>("\0"));
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BIO_free(bio);
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if (!pkey) {
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LOG(LS_ERROR) << "Failed to create the private key from PEM string.";
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return NULL;
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}
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return new OpenSSLIdentity(new OpenSSLKeyPair(pkey),
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cert.release());
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}
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bool OpenSSLIdentity::ConfigureIdentity(SSL_CTX* ctx) {
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// 1 is the documented success return code.
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if (SSL_CTX_use_certificate(ctx, certificate_->x509()) != 1 ||
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SSL_CTX_use_PrivateKey(ctx, key_pair_->pkey()) != 1) {
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LogSSLErrors("Configuring key and certificate");
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return false;
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}
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return true;
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}
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} // namespace talk_base
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#endif // HAVE_OPENSSL_SSL_H
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