55ed321a1c
Change-Id: I9d92837dd35c5386222c2644ece9693d7bbb1535 Signed-off-by: Gleb Popov <6yearold@gmail.com>
344 lines
11 KiB
C++
344 lines
11 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4; fill-column: 100 -*- */
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/*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/.
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*/
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#include <config.h>
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#include <assert.h>
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#include <unistd.h>
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#include "Ssl.hpp"
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#ifdef __FreeBSD__
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#include <pthread_np.h>
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#endif
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#include <sys/syscall.h>
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#include <Util.hpp>
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extern "C"
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{
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// Multithreading support for OpenSSL.
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// Not needed in recent (1.x?) versions.
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struct CRYPTO_dynlock_value
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{
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public:
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void lock() { _mutex.lock(); }
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void unlock() { _mutex.unlock(); }
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private:
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std::mutex _mutex;
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};
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}
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std::unique_ptr<SslContext> SslContext::Instance(nullptr);
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SslContext::SslContext(const std::string& certFilePath,
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const std::string& keyFilePath,
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const std::string& caFilePath,
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const std::string& cipherList) :
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_ctx(nullptr)
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{
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const std::vector<char> rand = Util::rng::getBytes(512);
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RAND_seed(&rand[0], rand.size());
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// Initialize multi-threading support.
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for (int x = 0; x < CRYPTO_num_locks(); ++x)
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{
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_mutexes.emplace_back(new std::mutex);
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}
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#if OPENSSL_VERSION_NUMBER >= 0x0907000L && OPENSSL_VERSION_NUMBER < 0x10100003L
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OPENSSL_config(nullptr);
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#endif
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#if OPENSSL_VERSION_NUMBER >= 0x10100003L
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OPENSSL_init_ssl(OPENSSL_INIT_LOAD_CONFIG, nullptr);
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#else
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SSL_library_init();
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SSL_load_error_strings();
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OpenSSL_add_all_algorithms();
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#endif
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CRYPTO_set_locking_callback(&SslContext::lock);
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CRYPTO_set_id_callback(&SslContext::id);
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CRYPTO_set_dynlock_create_callback(&SslContext::dynlockCreate);
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CRYPTO_set_dynlock_lock_callback(&SslContext::dynlock);
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CRYPTO_set_dynlock_destroy_callback(&SslContext::dynlockDestroy);
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// Create the Context. We only have one,
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// as we don't expect/support different servers in same process.
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#if OPENSSL_VERSION_NUMBER >= 0x10100000L
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_ctx = SSL_CTX_new(TLS_method());
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SSL_CTX_set_min_proto_version(_ctx, TLS1_VERSION);
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#else
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_ctx = SSL_CTX_new(SSLv23_method());
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SSL_CTX_set_options(_ctx, SSL_OP_NO_SSLv3);
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#endif
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// SSL_CTX_set_default_passwd_cb(_ctx, &privateKeyPassphraseCallback);
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ERR_clear_error();
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SSL_CTX_set_options(_ctx, SSL_OP_ALL);
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try
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{
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int errCode = 0;
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if (!caFilePath.empty())
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{
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errCode = SSL_CTX_load_verify_locations(_ctx, caFilePath.c_str(), nullptr);
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if (errCode != 1)
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{
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std::string msg = getLastErrorMsg();
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throw std::runtime_error(std::string("Cannot load CA file/directory at ") + caFilePath + " (" + msg + ')');
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}
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}
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if (!keyFilePath.empty())
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{
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errCode = SSL_CTX_use_PrivateKey_file(_ctx, keyFilePath.c_str(), SSL_FILETYPE_PEM);
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if (errCode != 1)
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{
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std::string msg = getLastErrorMsg();
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throw std::runtime_error(std::string("Error loading private key from file ") + keyFilePath + " (" + msg + ')');
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}
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}
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if (!certFilePath.empty())
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{
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errCode = SSL_CTX_use_certificate_chain_file(_ctx, certFilePath.c_str());
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if (errCode != 1)
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{
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std::string msg = getLastErrorMsg();
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throw std::runtime_error(std::string("Error loading certificate from file ") + certFilePath + " (" + msg + ')');
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}
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}
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SSL_CTX_set_verify(_ctx, SSL_VERIFY_NONE, nullptr /*&verifyServerCallback*/);
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SSL_CTX_set_cipher_list(_ctx, cipherList.c_str());
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SSL_CTX_set_verify_depth(_ctx, 9);
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// The write buffer may re-allocate, and we don't mind partial writes.
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SSL_CTX_set_mode(_ctx, SSL_MODE_ENABLE_PARTIAL_WRITE |
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SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
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SSL_CTX_set_session_cache_mode(_ctx, SSL_SESS_CACHE_OFF);
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initDH();
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initECDH();
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}
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catch (...)
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{
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SSL_CTX_free(_ctx);
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_ctx = nullptr;
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throw;
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}
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}
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SslContext::~SslContext()
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{
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SSL_CTX_free(_ctx);
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EVP_cleanup();
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ERR_free_strings();
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CRYPTO_set_locking_callback(0);
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CRYPTO_set_id_callback(0);
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CONF_modules_free();
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_mutexes.clear();
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}
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void SslContext::uninitialize()
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{
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assert (Instance);
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Instance.reset();
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}
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void SslContext::lock(int mode, int n, const char* /*file*/, int /*line*/)
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{
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assert(n < CRYPTO_num_locks());
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if (Instance)
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{
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if (mode & CRYPTO_LOCK)
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{
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Instance->_mutexes[n]->lock();
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}
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else
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{
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Instance->_mutexes[n]->unlock();
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}
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}
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}
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unsigned long SslContext::id()
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{
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#ifdef __linux__
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return syscall(SYS_gettid);
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#elif defined(__FreeBSD__)
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return pthread_getthreadid_np();
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#else
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#error Implement for your platform
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#endif
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}
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CRYPTO_dynlock_value* SslContext::dynlockCreate(const char* /*file*/, int /*line*/)
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{
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return new CRYPTO_dynlock_value;
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}
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void SslContext::dynlock(int mode, struct CRYPTO_dynlock_value* lock, const char* /*file*/, int /*line*/)
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{
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if (mode & CRYPTO_LOCK)
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{
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lock->lock();
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}
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else
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{
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lock->unlock();
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}
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}
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void SslContext::dynlockDestroy(struct CRYPTO_dynlock_value* lock, const char* /*file*/, int /*line*/)
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{
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delete lock;
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}
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void SslContext::initDH()
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{
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#ifndef OPENSSL_NO_DH
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// 2048-bit MODP Group with 256-bit prime order subgroup (RFC5114)
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static const unsigned char dh2048_p[] =
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{
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0x87,0xA8,0xE6,0x1D,0xB4,0xB6,0x66,0x3C,0xFF,0xBB,0xD1,0x9C,
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0x65,0x19,0x59,0x99,0x8C,0xEE,0xF6,0x08,0x66,0x0D,0xD0,0xF2,
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0x5D,0x2C,0xEE,0xD4,0x43,0x5E,0x3B,0x00,0xE0,0x0D,0xF8,0xF1,
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0xD6,0x19,0x57,0xD4,0xFA,0xF7,0xDF,0x45,0x61,0xB2,0xAA,0x30,
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0x16,0xC3,0xD9,0x11,0x34,0x09,0x6F,0xAA,0x3B,0xF4,0x29,0x6D,
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0x83,0x0E,0x9A,0x7C,0x20,0x9E,0x0C,0x64,0x97,0x51,0x7A,0xBD,
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0x5A,0x8A,0x9D,0x30,0x6B,0xCF,0x67,0xED,0x91,0xF9,0xE6,0x72,
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0x5B,0x47,0x58,0xC0,0x22,0xE0,0xB1,0xEF,0x42,0x75,0xBF,0x7B,
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0x6C,0x5B,0xFC,0x11,0xD4,0x5F,0x90,0x88,0xB9,0x41,0xF5,0x4E,
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0xB1,0xE5,0x9B,0xB8,0xBC,0x39,0xA0,0xBF,0x12,0x30,0x7F,0x5C,
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0x4F,0xDB,0x70,0xC5,0x81,0xB2,0x3F,0x76,0xB6,0x3A,0xCA,0xE1,
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0xCA,0xA6,0xB7,0x90,0x2D,0x52,0x52,0x67,0x35,0x48,0x8A,0x0E,
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0xF1,0x3C,0x6D,0x9A,0x51,0xBF,0xA4,0xAB,0x3A,0xD8,0x34,0x77,
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0x96,0x52,0x4D,0x8E,0xF6,0xA1,0x67,0xB5,0xA4,0x18,0x25,0xD9,
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0x67,0xE1,0x44,0xE5,0x14,0x05,0x64,0x25,0x1C,0xCA,0xCB,0x83,
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0xE6,0xB4,0x86,0xF6,0xB3,0xCA,0x3F,0x79,0x71,0x50,0x60,0x26,
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0xC0,0xB8,0x57,0xF6,0x89,0x96,0x28,0x56,0xDE,0xD4,0x01,0x0A,
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0xBD,0x0B,0xE6,0x21,0xC3,0xA3,0x96,0x0A,0x54,0xE7,0x10,0xC3,
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0x75,0xF2,0x63,0x75,0xD7,0x01,0x41,0x03,0xA4,0xB5,0x43,0x30,
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0xC1,0x98,0xAF,0x12,0x61,0x16,0xD2,0x27,0x6E,0x11,0x71,0x5F,
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0x69,0x38,0x77,0xFA,0xD7,0xEF,0x09,0xCA,0xDB,0x09,0x4A,0xE9,
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0x1E,0x1A,0x15,0x97,
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};
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static const unsigned char dh2048_g[] =
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{
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0x3F,0xB3,0x2C,0x9B,0x73,0x13,0x4D,0x0B,0x2E,0x77,0x50,0x66,
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0x60,0xED,0xBD,0x48,0x4C,0xA7,0xB1,0x8F,0x21,0xEF,0x20,0x54,
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0x07,0xF4,0x79,0x3A,0x1A,0x0B,0xA1,0x25,0x10,0xDB,0xC1,0x50,
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0x77,0xBE,0x46,0x3F,0xFF,0x4F,0xED,0x4A,0xAC,0x0B,0xB5,0x55,
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0xBE,0x3A,0x6C,0x1B,0x0C,0x6B,0x47,0xB1,0xBC,0x37,0x73,0xBF,
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0x7E,0x8C,0x6F,0x62,0x90,0x12,0x28,0xF8,0xC2,0x8C,0xBB,0x18,
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0xA5,0x5A,0xE3,0x13,0x41,0x00,0x0A,0x65,0x01,0x96,0xF9,0x31,
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0xC7,0x7A,0x57,0xF2,0xDD,0xF4,0x63,0xE5,0xE9,0xEC,0x14,0x4B,
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0x77,0x7D,0xE6,0x2A,0xAA,0xB8,0xA8,0x62,0x8A,0xC3,0x76,0xD2,
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0x82,0xD6,0xED,0x38,0x64,0xE6,0x79,0x82,0x42,0x8E,0xBC,0x83,
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0x1D,0x14,0x34,0x8F,0x6F,0x2F,0x91,0x93,0xB5,0x04,0x5A,0xF2,
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0x76,0x71,0x64,0xE1,0xDF,0xC9,0x67,0xC1,0xFB,0x3F,0x2E,0x55,
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0xA4,0xBD,0x1B,0xFF,0xE8,0x3B,0x9C,0x80,0xD0,0x52,0xB9,0x85,
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0xD1,0x82,0xEA,0x0A,0xDB,0x2A,0x3B,0x73,0x13,0xD3,0xFE,0x14,
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0xC8,0x48,0x4B,0x1E,0x05,0x25,0x88,0xB9,0xB7,0xD2,0xBB,0xD2,
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0xDF,0x01,0x61,0x99,0xEC,0xD0,0x6E,0x15,0x57,0xCD,0x09,0x15,
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0xB3,0x35,0x3B,0xBB,0x64,0xE0,0xEC,0x37,0x7F,0xD0,0x28,0x37,
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0x0D,0xF9,0x2B,0x52,0xC7,0x89,0x14,0x28,0xCD,0xC6,0x7E,0xB6,
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0x18,0x4B,0x52,0x3D,0x1D,0xB2,0x46,0xC3,0x2F,0x63,0x07,0x84,
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0x90,0xF0,0x0E,0xF8,0xD6,0x47,0xD1,0x48,0xD4,0x79,0x54,0x51,
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0x5E,0x23,0x27,0xCF,0xEF,0x98,0xC5,0x82,0x66,0x4B,0x4C,0x0F,
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0x6C,0xC4,0x16,0x59,
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};
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DH* dh = DH_new();
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if (!dh)
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{
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std::string msg = getLastErrorMsg();
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throw std::runtime_error("Error creating Diffie-Hellman parameters: " + msg);
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}
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#if OPENSSL_VERSION_NUMBER >= 0x10100003L
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// OpenSSL v1.1.0 has public API changes
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// p, g and length of the Diffie-Hellman param can't be set directly anymore,
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// instead DH_set0_pqg and DH_set_length are used
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BIGNUM* p = BN_bin2bn(dh2048_p, sizeof(dh2048_p), nullptr);
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BIGNUM* g = BN_bin2bn(dh2048_g, sizeof(dh2048_g), nullptr);
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if ((DH_set0_pqg(dh, p, nullptr, g) == 0) || (DH_set_length(dh, 256) == 0))
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#else
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dh->p = BN_bin2bn(dh2048_p, sizeof(dh2048_p), 0);
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dh->g = BN_bin2bn(dh2048_g, sizeof(dh2048_g), 0);
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dh->length = 256;
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if ((!dh->p) || (!dh->g))
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#endif
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{
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DH_free(dh);
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throw std::runtime_error("Error creating Diffie-Hellman parameters");
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}
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SSL_CTX_set_tmp_dh(_ctx, dh);
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SSL_CTX_set_options(_ctx, SSL_OP_SINGLE_DH_USE);
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DH_free(dh);
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#endif
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}
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void SslContext::initECDH()
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{
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#ifndef OPENSSL_NO_ECDH
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#if OPENSSL_VERSION_NUMBER >= 0x10100003L
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#if OPENSSL_VERSION_NUMBER >= 0x10200000L
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#define DEFAULT_TLS_GROUPS "X448:X25519:P-521:P-384:P-256:ffdhe2048:ffdhe3072:ffdhe4096:ffdhe6144:ffdhe8192"
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#elif OPENSSL_VERSION_NUMBER < 0x10101000L
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#define SSL_CTX_set1_groups_list SSL_CTX_set1_curves_list
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#define DEFAULT_TLS_GROUPS "P-521:P-384:P-256"
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#else
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#define DEFAULT_TLS_GROUPS "X448:X25519:P-521:P-384:P-256"
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#endif
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if (SSL_CTX_set1_groups_list(_ctx, DEFAULT_TLS_GROUPS) == 0)
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{
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throw std::runtime_error("Cannot set ECDH groups: " DEFAULT_TLS_GROUPS);
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}
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SSL_CTX_set_options(_ctx, SSL_OP_SINGLE_ECDH_USE);
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#elif OPENSSL_VERSION_NUMBER >= 0x0090800fL
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const int nid = OBJ_sn2nid("prime256v1");
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if (nid == 0)
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{
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throw std::runtime_error("Unknown ECDH curve name: prime256v1");
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}
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EC_KEY* ecdh = EC_KEY_new_by_curve_name(nid);
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if (!ecdh)
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{
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throw std::runtime_error("Cannot create ECDH curve");
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}
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SSL_CTX_set_tmp_ecdh(_ctx, ecdh);
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SSL_CTX_set_options(_ctx, SSL_OP_SINGLE_ECDH_USE);
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EC_KEY_free(ecdh);
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#endif
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#endif
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}
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std::string SslContext::getLastErrorMsg()
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{
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const unsigned long errCode = ERR_get_error();
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if (errCode != 0)
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{
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char buf[256];
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ERR_error_string_n(errCode, buf, sizeof(buf));
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return std::string(buf);
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}
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return "Success";
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}
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/* vim:set shiftwidth=4 softtabstop=4 expandtab: */
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