491 lines
17 KiB
C#
491 lines
17 KiB
C#
/*
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* Copyright (c) 2007, Cameron Rich
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*
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* All rights reserved.
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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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* * 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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* * 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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* * Neither the name of the axTLS project nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
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* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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* PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
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* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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/**
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* A wrapper around the unmanaged interface to give a semi-decent C# API
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*/
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using System;
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using System.Runtime.InteropServices;
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using System.Net.Sockets;
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/**
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* @defgroup csharp_api C# API.
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*
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* Ensure that the appropriate Dispose() methods are called when finished with
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* various objects - otherwise memory leaks will result.
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* @{
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*/
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namespace axTLS
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{
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/**
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* @class SSL
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* @ingroup csharp_api
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* @brief A representation of an SSL connection.
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*/
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public class SSL
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{
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public IntPtr m_ssl; /**< A pointer to the real SSL type */
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/**
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* @brief Store the reference to an SSL context.
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* @param ip [in] A reference to an SSL object.
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*/
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public SSL(IntPtr ip)
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{
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m_ssl = ip;
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}
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/**
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* @brief Free any used resources on this connection.
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*
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* A "Close Notify" message is sent on this connection (if possible).
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* It is up to the application to close the socket.
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*/
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public void Dispose()
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{
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axtls.ssl_free(m_ssl);
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}
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/**
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* @brief Return the result of a handshake.
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* @return SSL_OK if the handshake is complete and ok.
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* @see ssl.h for the error code list.
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*/
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public int HandshakeStatus()
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{
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return axtls.ssl_handshake_status(m_ssl);
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}
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/**
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* @brief Return the SSL cipher id.
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* @return The cipher id which is one of:
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* - SSL_AES128_SHA (0x2f)
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* - SSL_AES256_SHA (0x35)
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* - SSL_RC4_128_SHA (0x05)
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* - SSL_RC4_128_MD5 (0x04)
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*/
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public byte GetCipherId()
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{
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return axtls.ssl_get_cipher_id(m_ssl);
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}
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/**
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* @brief Get the session id for a handshake.
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*
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* This will be a 32 byte sequence and is available after the first
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* handshaking messages are sent.
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* @return The session id as a 32 byte sequence.
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* @note A SSLv23 handshake may have only 16 valid bytes.
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*/
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public byte[] GetSessionId()
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{
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IntPtr ptr = axtls.ssl_get_session_id(m_ssl);
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byte sess_id_size = axtls.ssl_get_session_id_size(m_ssl);
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byte[] result = new byte[sess_id_size];
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Marshal.Copy(ptr, result, 0, sess_id_size);
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return result;
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}
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/**
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* @brief Retrieve an X.509 distinguished name component.
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*
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* When a handshake is complete and a certificate has been exchanged,
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* then the details of the remote certificate can be retrieved.
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*
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* This will usually be used by a client to check that the server's
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* common name matches the URL.
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*
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* A full handshake needs to occur for this call to work.
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*
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* @param component [in] one of:
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* - SSL_X509_CERT_COMMON_NAME
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* - SSL_X509_CERT_ORGANIZATION
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* - SSL_X509_CERT_ORGANIZATIONAL_NAME
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* - SSL_X509_CA_CERT_COMMON_NAME
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* - SSL_X509_CA_CERT_ORGANIZATION
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* - SSL_X509_CA_CERT_ORGANIZATIONAL_NAME
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* @return The appropriate string (or null if not defined)
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*/
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public string GetCertificateDN(int component)
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{
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return axtls.ssl_get_cert_dn(m_ssl, component);
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}
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}
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/**
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* @class SSLUtil
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* @ingroup csharp_api
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* @brief Some global helper functions.
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*/
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public class SSLUtil
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{
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/**
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* @brief Return the build mode of the axTLS project.
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* @return The build mode is one of:
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* - SSL_BUILD_SERVER_ONLY
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* - SSL_BUILD_ENABLE_VERIFICATION
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* - SSL_BUILD_ENABLE_CLIENT
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* - SSL_BUILD_FULL_MODE
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*/
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public static int BuildMode()
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{
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return axtls.ssl_get_config(axtls.SSL_BUILD_MODE);
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}
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/**
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* @brief Return the number of chained certificates that the
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* client/server supports.
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* @return The number of supported server certificates.
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*/
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public static int MaxCerts()
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{
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return axtls.ssl_get_config(axtls.SSL_MAX_CERT_CFG_OFFSET);
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}
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/**
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* @brief Return the number of CA certificates that the client/server
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* supports.
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* @return The number of supported CA certificates.
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*/
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public static int MaxCACerts()
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{
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return axtls.ssl_get_config(axtls.SSL_MAX_CA_CERT_CFG_OFFSET);
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}
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/**
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* @brief Indicate if PEM is supported.
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* @return true if PEM supported.
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*/
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public static bool HasPEM()
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{
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return axtls.ssl_get_config(axtls.SSL_HAS_PEM) > 0 ? true : false;
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}
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/**
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* @brief Display the text string of the error.
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* @param error_code [in] The integer error code.
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*/
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public static void DisplayError(int error_code)
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{
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axtls.ssl_display_error(error_code);
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}
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/**
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* @brief Return the version of the axTLS project.
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*/
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public static string Version()
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{
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return axtls.ssl_version();
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}
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}
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/**
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* @class SSLCTX
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* @ingroup csharp_api
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* @brief A base object for SSLServer/SSLClient.
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*/
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public class SSLCTX
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{
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/**
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* @brief A reference to the real client/server context.
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*/
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protected IntPtr m_ctx;
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/**
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* @brief Establish a new client/server context.
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*
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* This function is called before any client/server SSL connections are
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* made. If multiple threads are used, then each thread will have its
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* own SSLCTX context. Any number of connections may be made with a
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* single context.
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*
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* Each new connection will use the this context's private key and
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* certificate chain. If a different certificate chain is required,
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* then a different context needs to be be used.
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*
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* @param options [in] Any particular options. At present the options
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* supported are:
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* - SSL_SERVER_VERIFY_LATER (client only): Don't stop a handshake if
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* the server authentication fails. The certificate can be
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* authenticated later with a call to VerifyCert().
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* - SSL_CLIENT_AUTHENTICATION (server only): Enforce client
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* authentication i.e. each handshake will include a "certificate
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* request" message from the server.
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* - SSL_DISPLAY_BYTES (full mode build only): Display the byte
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* sequences during the handshake.
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* - SSL_DISPLAY_STATES (full mode build only): Display the state
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* changes during the handshake.
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* - SSL_DISPLAY_CERTS (full mode build only): Display the
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* certificates that are passed during a handshake.
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* - SSL_DISPLAY_RSA (full mode build only): Display the RSA key
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* details that are passed during a handshake.
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* @param num_sessions [in] The number of sessions to be used for
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* session caching. If this value is 0, then there is no session
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* caching.
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* @return A client/server context.
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*/
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protected SSLCTX(uint options, int num_sessions)
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{
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m_ctx = axtls.ssl_ctx_new(options, num_sessions);
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}
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/**
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* @brief Remove a client/server context.
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*
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* Frees any used resources used by this context. Each connection will
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* be sent a "Close Notify" alert (if possible).
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*/
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public void Dispose()
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{
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axtls.ssl_ctx_free(m_ctx);
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}
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/**
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* @brief Read the SSL data stream.
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* @param ssl [in] An SSL object reference.
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* @param in_data [out] After a successful read, the decrypted data
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* will be here. It will be null otherwise.
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* @return The number of decrypted bytes:
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* - if > 0, then the handshaking is complete and we are returning the
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* number of decrypted bytes.
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* - SSL_OK if the handshaking stage is successful (but not yet
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* complete).
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* - < 0 if an error.
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* @see ssl.h for the error code list.
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* @note Use in_data before doing any successive ssl calls.
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*/
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public int Read(SSL ssl, out byte[] in_data)
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{
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IntPtr ptr = IntPtr.Zero;
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int ret = axtls.ssl_read(ssl.m_ssl, ref ptr);
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if (ret > axtls.SSL_OK)
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{
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in_data = new byte[ret];
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Marshal.Copy(ptr, in_data, 0, ret);
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}
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else
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{
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in_data = null;
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}
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return ret;
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}
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/**
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* @brief Write to the SSL data stream.
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* @param ssl [in] An SSL obect reference.
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* @param out_data [in] The data to be written
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* @return The number of bytes sent, or if < 0 if an error.
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* @see ssl.h for the error code list.
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*/
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public int Write(SSL ssl, byte[] out_data)
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{
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return axtls.ssl_write(ssl.m_ssl, out_data, out_data.Length);
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}
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/**
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* @brief Write to the SSL data stream.
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* @param ssl [in] An SSL obect reference.
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* @param out_data [in] The data to be written
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* @param out_len [in] The number of bytes to be written
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* @return The number of bytes sent, or if < 0 if an error.
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* @see ssl.h for the error code list.
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*/
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public int Write(SSL ssl, byte[] out_data, int out_len)
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{
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return axtls.ssl_write(ssl.m_ssl, out_data, out_len);
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}
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/**
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* @brief Find an ssl object based on a Socket reference.
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*
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* Goes through the list of SSL objects maintained in a client/server
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* context to look for a socket match.
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* @param s [in] A reference to a <A HREF="http://msdn.microsoft.com/library/default.asp?url=/library/en-us/cpref/html/frlrfsystemnetsocketssocketclasstopic.asp">Socket</A> object.
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* @return A reference to the SSL object. Returns null if the object
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* could not be found.
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*/
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public SSL Find(Socket s)
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{
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int client_fd = s.Handle.ToInt32();
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return new SSL(axtls. ssl_find(m_ctx, client_fd));
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}
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/**
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* @brief Authenticate a received certificate.
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*
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* This call is usually made by a client after a handshake is complete
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* and the context is in SSL_SERVER_VERIFY_LATER mode.
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* @param ssl [in] An SSL object reference.
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* @return SSL_OK if the certificate is verified.
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*/
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public int VerifyCert(SSL ssl)
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{
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return axtls.ssl_verify_cert(ssl.m_ssl);
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}
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/**
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* @brief Force the client to perform its handshake again.
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*
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* For a client this involves sending another "client hello" message.
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* For the server is means sending a "hello request" message.
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*
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* This is a blocking call on the client (until the handshake
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* completes).
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* @param ssl [in] An SSL object reference.
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* @return SSL_OK if renegotiation instantiation was ok
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*/
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public int Renegotiate(SSL ssl)
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{
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return axtls.ssl_renegotiate(ssl.m_ssl);
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}
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/**
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* @brief Load a file into memory that is in binary DER or ASCII PEM
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* format.
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*
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* These are temporary objects that are used to load private keys,
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* certificates etc into memory.
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* @param obj_type [in] The format of the file. Can be one of:
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* - SSL_OBJ_X509_CERT (no password required)
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* - SSL_OBJ_X509_CACERT (no password required)
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* - SSL_OBJ_RSA_KEY (AES128/AES256 PEM encryption supported)
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* - SSL_OBJ_P8 (RC4-128 encrypted data supported)
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* - SSL_OBJ_P12 (RC4-128 encrypted data supported)
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*
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* PEM files are automatically detected (if supported).
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* @param filename [in] The location of a file in DER/PEM format.
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* @param password [in] The password used. Can be null if not required.
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* @return SSL_OK if all ok
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*/
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public int ObjLoad(int obj_type, string filename, string password)
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{
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return axtls.ssl_obj_load(m_ctx, obj_type, filename, password);
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}
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/**
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* @brief Transfer binary data into the object loader.
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*
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* These are temporary objects that are used to load private keys,
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* certificates etc into memory.
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* @param obj_type [in] The format of the memory data.
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* @param data [in] The binary data to be loaded.
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* @param len [in] The amount of data to be loaded.
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* @param password [in] The password used. Can be null if not required.
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* @return SSL_OK if all ok
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*/
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public int ObjLoad(int obj_type, byte[] data, int len, string password)
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{
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return axtls.ssl_obj_memory_load(m_ctx, obj_type,
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data, len, password);
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}
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}
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/**
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* @class SSLServer
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* @ingroup csharp_api
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* @brief The server context.
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*
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* All server connections are started within a server context.
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*/
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public class SSLServer : SSLCTX
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{
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/**
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* @brief Start a new server context.
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*
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* @see SSLCTX for details.
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*/
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public SSLServer(uint options, int num_sessions) :
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base(options, num_sessions) {}
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/**
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* @brief Establish a new SSL connection to an SSL client.
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*
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* It is up to the application to establish the initial socket
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* connection.
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*
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* Call Dispose() when the connection is to be removed.
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* @param s [in] A reference to a <A HREF="http://msdn.microsoft.com/library/default.asp?url=/library/en-us/cpref/html/frlrfsystemnetsocketssocketclasstopic.asp">Socket</A> object.
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* @return An SSL object reference.
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*/
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public SSL Connect(Socket s)
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{
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int client_fd = s.Handle.ToInt32();
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return new SSL(axtls.ssl_server_new(m_ctx, client_fd));
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}
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}
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/**
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* @class SSLClient
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* @ingroup csharp_api
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* @brief The client context.
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*
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* All client connections are started within a client context.
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*/
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public class SSLClient : SSLCTX
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{
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/**
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* @brief Start a new client context.
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*
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* @see SSLCTX for details.
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*/
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public SSLClient(uint options, int num_sessions) :
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base(options, num_sessions) {}
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/**
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* @brief Establish a new SSL connection to an SSL server.
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*
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* It is up to the application to establish the initial socket
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* connection.
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*
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* This is a blocking call - it will finish when the handshake is
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* complete (or has failed).
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*
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* Call Dispose() when the connection is to be removed.
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* @param s [in] A reference to a <A HREF="http://msdn.microsoft.com/library/default.asp?url=/library/en-us/cpref/html/frlrfsystemnetsocketssocketclasstopic.asp">Socket</A> object.
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* @param session_id [in] A 32 byte session id for session resumption.
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* This can be null if no session resumption is not required.
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* @return An SSL object reference. Use SSL.handshakeStatus() to check
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* if a handshake succeeded.
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*/
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public SSL Connect(Socket s, byte[] session_id)
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{
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int client_fd = s.Handle.ToInt32();
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byte sess_id_size = (byte)(session_id != null ?
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session_id.Length : 0);
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return new SSL(axtls.ssl_client_new(m_ctx, client_fd, session_id,
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sess_id_size));
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}
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}
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}
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/** @} */
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