350 lines
8.3 KiB
Plaintext
350 lines
8.3 KiB
Plaintext
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//
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// ssl/detail/impl/engine.ipp
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// ~~~~~~~~~~~~~~~~~~~~~~~~~~
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//
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// Copyright (c) 2003-2021 Christopher M. Kohlhoff (chris at kohlhoff dot com)
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//
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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#ifndef ASIO_SSL_DETAIL_IMPL_ENGINE_IPP
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#define ASIO_SSL_DETAIL_IMPL_ENGINE_IPP
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#if defined(_MSC_VER) && (_MSC_VER >= 1200)
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# pragma once
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#endif // defined(_MSC_VER) && (_MSC_VER >= 1200)
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#include "asio/detail/config.hpp"
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#include "asio/detail/throw_error.hpp"
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#include "asio/error.hpp"
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#include "asio/ssl/detail/engine.hpp"
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#include "asio/ssl/error.hpp"
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#include "asio/ssl/verify_context.hpp"
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#include "asio/detail/push_options.hpp"
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namespace asio {
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namespace ssl {
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namespace detail {
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engine::engine(SSL_CTX* context)
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: ssl_(::SSL_new(context))
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{
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if (!ssl_)
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{
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asio::error_code ec(
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static_cast<int>(::ERR_get_error()),
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asio::error::get_ssl_category());
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asio::detail::throw_error(ec, "engine");
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}
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#if (OPENSSL_VERSION_NUMBER < 0x10000000L)
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accept_mutex().init();
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#endif // (OPENSSL_VERSION_NUMBER < 0x10000000L)
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::SSL_set_mode(ssl_, SSL_MODE_ENABLE_PARTIAL_WRITE);
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::SSL_set_mode(ssl_, SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
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#if defined(SSL_MODE_RELEASE_BUFFERS)
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::SSL_set_mode(ssl_, SSL_MODE_RELEASE_BUFFERS);
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#endif // defined(SSL_MODE_RELEASE_BUFFERS)
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::BIO* int_bio = 0;
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::BIO_new_bio_pair(&int_bio, 0, &ext_bio_, 0);
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::SSL_set_bio(ssl_, int_bio, int_bio);
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}
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#if defined(ASIO_HAS_MOVE)
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engine::engine(engine&& other) ASIO_NOEXCEPT
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: ssl_(other.ssl_),
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ext_bio_(other.ext_bio_)
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{
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other.ssl_ = 0;
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other.ext_bio_ = 0;
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}
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#endif // defined(ASIO_HAS_MOVE)
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engine::~engine()
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{
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if (ssl_ && SSL_get_app_data(ssl_))
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{
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delete static_cast<verify_callback_base*>(SSL_get_app_data(ssl_));
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SSL_set_app_data(ssl_, 0);
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}
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if (ext_bio_)
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::BIO_free(ext_bio_);
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if (ssl_)
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::SSL_free(ssl_);
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}
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SSL* engine::native_handle()
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{
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return ssl_;
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}
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asio::error_code engine::set_verify_mode(
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verify_mode v, asio::error_code& ec)
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{
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::SSL_set_verify(ssl_, v, ::SSL_get_verify_callback(ssl_));
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ec = asio::error_code();
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return ec;
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}
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asio::error_code engine::set_verify_depth(
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int depth, asio::error_code& ec)
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{
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::SSL_set_verify_depth(ssl_, depth);
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ec = asio::error_code();
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return ec;
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}
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asio::error_code engine::set_verify_callback(
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verify_callback_base* callback, asio::error_code& ec)
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{
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if (SSL_get_app_data(ssl_))
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delete static_cast<verify_callback_base*>(SSL_get_app_data(ssl_));
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SSL_set_app_data(ssl_, callback);
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::SSL_set_verify(ssl_, ::SSL_get_verify_mode(ssl_),
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&engine::verify_callback_function);
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ec = asio::error_code();
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return ec;
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}
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int engine::verify_callback_function(int preverified, X509_STORE_CTX* ctx)
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{
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if (ctx)
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{
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if (SSL* ssl = static_cast<SSL*>(
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::X509_STORE_CTX_get_ex_data(
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ctx, ::SSL_get_ex_data_X509_STORE_CTX_idx())))
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{
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if (SSL_get_app_data(ssl))
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{
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verify_callback_base* callback =
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static_cast<verify_callback_base*>(
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SSL_get_app_data(ssl));
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verify_context verify_ctx(ctx);
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return callback->call(preverified != 0, verify_ctx) ? 1 : 0;
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}
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}
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}
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return 0;
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}
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engine::want engine::handshake(
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stream_base::handshake_type type, asio::error_code& ec)
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{
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return perform((type == asio::ssl::stream_base::client)
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? &engine::do_connect : &engine::do_accept, 0, 0, ec, 0);
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}
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engine::want engine::shutdown(asio::error_code& ec)
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{
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return perform(&engine::do_shutdown, 0, 0, ec, 0);
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}
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engine::want engine::write(const asio::const_buffer& data,
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asio::error_code& ec, std::size_t& bytes_transferred)
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{
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if (data.size() == 0)
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{
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ec = asio::error_code();
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return engine::want_nothing;
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}
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return perform(&engine::do_write,
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const_cast<void*>(data.data()),
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data.size(), ec, &bytes_transferred);
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}
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engine::want engine::read(const asio::mutable_buffer& data,
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asio::error_code& ec, std::size_t& bytes_transferred)
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{
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if (data.size() == 0)
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{
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ec = asio::error_code();
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return engine::want_nothing;
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}
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return perform(&engine::do_read, data.data(),
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data.size(), ec, &bytes_transferred);
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}
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asio::mutable_buffer engine::get_output(
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const asio::mutable_buffer& data)
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{
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int length = ::BIO_read(ext_bio_,
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data.data(), static_cast<int>(data.size()));
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return asio::buffer(data,
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length > 0 ? static_cast<std::size_t>(length) : 0);
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}
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asio::const_buffer engine::put_input(
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const asio::const_buffer& data)
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{
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int length = ::BIO_write(ext_bio_,
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data.data(), static_cast<int>(data.size()));
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return asio::buffer(data +
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(length > 0 ? static_cast<std::size_t>(length) : 0));
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}
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const asio::error_code& engine::map_error_code(
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asio::error_code& ec) const
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{
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// We only want to map the error::eof code.
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if (ec != asio::error::eof)
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return ec;
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// If there's data yet to be read, it's an error.
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if (BIO_wpending(ext_bio_))
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{
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ec = asio::ssl::error::stream_truncated;
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return ec;
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}
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// SSL v2 doesn't provide a protocol-level shutdown, so an eof on the
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// underlying transport is passed through.
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#if (OPENSSL_VERSION_NUMBER < 0x10100000L)
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if (SSL_version(ssl_) == SSL2_VERSION)
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return ec;
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#endif // (OPENSSL_VERSION_NUMBER < 0x10100000L)
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// Otherwise, the peer should have negotiated a proper shutdown.
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if ((::SSL_get_shutdown(ssl_) & SSL_RECEIVED_SHUTDOWN) == 0)
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{
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ec = asio::ssl::error::stream_truncated;
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}
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return ec;
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}
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#if (OPENSSL_VERSION_NUMBER < 0x10000000L)
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asio::detail::static_mutex& engine::accept_mutex()
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{
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static asio::detail::static_mutex mutex = ASIO_STATIC_MUTEX_INIT;
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return mutex;
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}
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#endif // (OPENSSL_VERSION_NUMBER < 0x10000000L)
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engine::want engine::perform(int (engine::* op)(void*, std::size_t),
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void* data, std::size_t length, asio::error_code& ec,
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std::size_t* bytes_transferred)
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{
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std::size_t pending_output_before = ::BIO_ctrl_pending(ext_bio_);
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::ERR_clear_error();
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int result = (this->*op)(data, length);
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int ssl_error = ::SSL_get_error(ssl_, result);
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int sys_error = static_cast<int>(::ERR_get_error());
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std::size_t pending_output_after = ::BIO_ctrl_pending(ext_bio_);
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if (ssl_error == SSL_ERROR_SSL)
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{
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ec = asio::error_code(sys_error,
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asio::error::get_ssl_category());
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return pending_output_after > pending_output_before
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? want_output : want_nothing;
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}
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if (ssl_error == SSL_ERROR_SYSCALL)
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{
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if (sys_error == 0)
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{
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ec = asio::ssl::error::unspecified_system_error;
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}
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else
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{
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ec = asio::error_code(sys_error,
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asio::error::get_ssl_category());
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}
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return pending_output_after > pending_output_before
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? want_output : want_nothing;
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}
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if (result > 0 && bytes_transferred)
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*bytes_transferred = static_cast<std::size_t>(result);
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if (ssl_error == SSL_ERROR_WANT_WRITE)
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{
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ec = asio::error_code();
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return want_output_and_retry;
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}
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else if (pending_output_after > pending_output_before)
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{
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ec = asio::error_code();
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return result > 0 ? want_output : want_output_and_retry;
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}
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else if (ssl_error == SSL_ERROR_WANT_READ)
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{
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ec = asio::error_code();
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return want_input_and_retry;
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}
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else if (ssl_error == SSL_ERROR_ZERO_RETURN)
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{
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ec = asio::error::eof;
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return want_nothing;
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}
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else if (ssl_error == SSL_ERROR_NONE)
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{
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ec = asio::error_code();
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return want_nothing;
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}
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else
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{
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ec = asio::ssl::error::unexpected_result;
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return want_nothing;
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}
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}
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int engine::do_accept(void*, std::size_t)
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{
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#if (OPENSSL_VERSION_NUMBER < 0x10000000L)
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asio::detail::static_mutex::scoped_lock lock(accept_mutex());
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#endif // (OPENSSL_VERSION_NUMBER < 0x10000000L)
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return ::SSL_accept(ssl_);
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}
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int engine::do_connect(void*, std::size_t)
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{
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return ::SSL_connect(ssl_);
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}
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int engine::do_shutdown(void*, std::size_t)
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{
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int result = ::SSL_shutdown(ssl_);
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if (result == 0)
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result = ::SSL_shutdown(ssl_);
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return result;
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}
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int engine::do_read(void* data, std::size_t length)
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{
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return ::SSL_read(ssl_, data,
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length < INT_MAX ? static_cast<int>(length) : INT_MAX);
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}
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int engine::do_write(void* data, std::size_t length)
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{
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return ::SSL_write(ssl_, data,
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length < INT_MAX ? static_cast<int>(length) : INT_MAX);
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}
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} // namespace detail
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} // namespace ssl
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} // namespace asio
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#include "asio/detail/pop_options.hpp"
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#endif // ASIO_SSL_DETAIL_IMPL_ENGINE_IPP
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