187 lines
5.8 KiB
C++
187 lines
5.8 KiB
C++
/****************************************************************************
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**
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** Copyright (C) 2015 Mikkel Krautz <mikkel@krautz.dk>
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** Copyright (C) 2016 Richard J. Moore <rich@kde.org>
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** Contact: https://www.qt.io/licensing/
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**
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** This file is part of the QtNetwork module of the Qt Toolkit.
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**
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** $QT_BEGIN_LICENSE:LGPL$
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** Commercial License Usage
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** Licensees holding valid commercial Qt licenses may use this file in
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** accordance with the commercial license agreement provided with the
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** Software or, alternatively, in accordance with the terms contained in
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** a written agreement between you and The Qt Company. For licensing terms
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** and conditions see https://www.qt.io/terms-conditions. For further
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** information use the contact form at https://www.qt.io/contact-us.
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**
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** GNU Lesser General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU Lesser
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** General Public License version 3 as published by the Free Software
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** Foundation and appearing in the file LICENSE.LGPL3 included in the
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** packaging of this file. Please review the following information to
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** ensure the GNU Lesser General Public License version 3 requirements
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** will be met: https://www.gnu.org/licenses/lgpl-3.0.html.
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**
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** GNU General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU
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** General Public License version 2.0 or (at your option) the GNU General
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** Public license version 3 or any later version approved by the KDE Free
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** Qt Foundation. The licenses are as published by the Free Software
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** Foundation and appearing in the file LICENSE.GPL2 and LICENSE.GPL3
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** included in the packaging of this file. Please review the following
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** information to ensure the GNU General Public License requirements will
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** be met: https://www.gnu.org/licenses/gpl-2.0.html and
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** https://www.gnu.org/licenses/gpl-3.0.html.
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**
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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include "qssldiffiehellmanparameters.h"
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#include "qssldiffiehellmanparameters_p.h"
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#include "qsslsocket_openssl_symbols_p.h"
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#include "qsslsocket.h"
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#include "qsslsocket_p.h"
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#include <QtCore/qatomic.h>
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#include <QtCore/qbytearray.h>
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#include <QtCore/qiodevice.h>
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#ifndef QT_NO_DEBUG_STREAM
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#include <QtCore/qdebug.h>
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#endif
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#include <openssl/bn.h>
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#include <openssl/dh.h>
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QT_BEGIN_NAMESPACE
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static bool isSafeDH(DH *dh)
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{
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int status = 0;
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int bad = 0;
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QSslSocketPrivate::ensureInitialized();
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// From https://wiki.openssl.org/index.php/Diffie-Hellman_parameters:
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//
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// The additional call to BN_mod_word(dh->p, 24)
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// (and unmasking of DH_NOT_SUITABLE_GENERATOR)
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// is performed to ensure your program accepts
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// IETF group parameters. OpenSSL checks the prime
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// is congruent to 11 when g = 2; while the IETF's
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// primes are congruent to 23 when g = 2.
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// Without the test, the IETF parameters would
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// fail validation. For details, see Diffie-Hellman
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// Parameter Check (when g = 2, must p mod 24 == 11?).
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#if QT_CONFIG(opensslv11)
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// Mark p < 1024 bits as unsafe.
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if (q_DH_bits(dh) < 1024)
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return false;
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if (q_DH_check(dh, &status) != 1)
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return false;
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const BIGNUM *p = nullptr;
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const BIGNUM *q = nullptr;
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const BIGNUM *g = nullptr;
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q_DH_get0_pqg(dh, &p, &q, &g);
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if (q_BN_is_word(const_cast<BIGNUM *>(g), DH_GENERATOR_2)) {
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long residue = q_BN_mod_word(p, 24);
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if (residue == 11 || residue == 23)
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status &= ~DH_NOT_SUITABLE_GENERATOR;
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}
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#else
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// Mark p < 1024 bits as unsafe.
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if (q_BN_num_bits(dh->p) < 1024)
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return false;
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if (q_DH_check(dh, &status) != 1)
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return false;
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if (q_BN_is_word(dh->g, DH_GENERATOR_2)) {
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long residue = q_BN_mod_word(dh->p, 24);
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if (residue == 11 || residue == 23)
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status &= ~DH_NOT_SUITABLE_GENERATOR;
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}
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#endif
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bad |= DH_CHECK_P_NOT_PRIME;
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bad |= DH_CHECK_P_NOT_SAFE_PRIME;
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bad |= DH_NOT_SUITABLE_GENERATOR;
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return !(status & bad);
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}
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void QSslDiffieHellmanParametersPrivate::decodeDer(const QByteArray &der)
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{
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if (der.isEmpty()) {
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error = QSslDiffieHellmanParameters::InvalidInputDataError;
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return;
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}
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const unsigned char *data = reinterpret_cast<const unsigned char *>(der.data());
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int len = der.size();
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QSslSocketPrivate::ensureInitialized();
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DH *dh = q_d2i_DHparams(NULL, &data, len);
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if (dh) {
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if (isSafeDH(dh))
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derData = der;
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else
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error = QSslDiffieHellmanParameters::UnsafeParametersError;
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} else {
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error = QSslDiffieHellmanParameters::InvalidInputDataError;
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}
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q_DH_free(dh);
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}
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void QSslDiffieHellmanParametersPrivate::decodePem(const QByteArray &pem)
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{
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if (pem.isEmpty()) {
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error = QSslDiffieHellmanParameters::InvalidInputDataError;
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return;
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}
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if (!QSslSocket::supportsSsl()) {
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error = QSslDiffieHellmanParameters::InvalidInputDataError;
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return;
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}
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QSslSocketPrivate::ensureInitialized();
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BIO *bio = q_BIO_new_mem_buf(const_cast<char *>(pem.data()), pem.size());
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if (!bio) {
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error = QSslDiffieHellmanParameters::InvalidInputDataError;
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return;
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}
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DH *dh = Q_NULLPTR;
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q_PEM_read_bio_DHparams(bio, &dh, 0, 0);
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if (dh) {
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if (isSafeDH(dh)) {
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char *buf = Q_NULLPTR;
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int len = q_i2d_DHparams(dh, reinterpret_cast<unsigned char **>(&buf));
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if (len > 0)
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derData = QByteArray(buf, len);
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else
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error = QSslDiffieHellmanParameters::InvalidInputDataError;
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} else {
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error = QSslDiffieHellmanParameters::UnsafeParametersError;
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}
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} else {
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error = QSslDiffieHellmanParameters::InvalidInputDataError;
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}
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q_DH_free(dh);
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q_BIO_free(bio);
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}
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QT_END_NAMESPACE
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