Store RPC SSL key/cert for consistent authentication between runs
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@ -265,6 +265,12 @@ namespace net_utils
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template<class t_callback>
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bool connect_async(const std::string& adr, const std::string& port, uint32_t conn_timeot, const t_callback &cb, const std::string& bind_ip = "0.0.0.0", epee::net_utils::ssl_support_t ssl_support = epee::net_utils::ssl_support_t::e_ssl_support_autodetect);
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boost::asio::ssl::context& get_ssl_context() noexcept
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{
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assert(m_state != nullptr);
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return m_state->ssl_context;
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}
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typename t_protocol_handler::config_type& get_config_object()
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{
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assert(m_state != nullptr); // always set in constructor
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@ -36,6 +36,7 @@
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#include <boost/utility/string_ref.hpp>
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#include <boost/asio/ip/tcp.hpp>
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#include <boost/asio/ssl.hpp>
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#include <boost/filesystem/path.hpp>
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#include <boost/system/error_code.hpp>
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#define SSL_FINGERPRINT_SIZE 32
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@ -144,6 +145,9 @@ namespace net_utils
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bool create_ec_ssl_certificate(EVP_PKEY *&pkey, X509 *&cert);
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bool create_rsa_ssl_certificate(EVP_PKEY *&pkey, X509 *&cert);
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//! Store private key for `ssl` at `base + ".key"` unencrypted and certificate for `ssl` at `base + ".crt"`.
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boost::system::error_code store_ssl_keys(boost::asio::ssl::context& ssl, const boost::filesystem::path& base);
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}
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}
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@ -29,6 +29,8 @@
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#include <string.h>
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#include <thread>
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#include <boost/asio/ssl.hpp>
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#include <boost/cerrno.hpp>
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#include <boost/filesystem/operations.hpp>
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#include <boost/lambda/lambda.hpp>
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#include <openssl/ssl.h>
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#include <openssl/pem.h>
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@ -567,6 +569,51 @@ bool ssl_support_from_string(ssl_support_t &ssl, boost::string_ref s)
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return true;
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}
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boost::system::error_code store_ssl_keys(boost::asio::ssl::context& ssl, const boost::filesystem::path& base)
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{
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EVP_PKEY* ssl_key = nullptr;
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X509* ssl_cert = nullptr;
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const auto ctx = ssl.native_handle();
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CHECK_AND_ASSERT_MES(ctx, boost::system::error_code(EINVAL, boost::system::system_category()), "Context is null");
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CHECK_AND_ASSERT_MES(base.has_filename(), boost::system::error_code(EINVAL, boost::system::system_category()), "Need filename");
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if (!(ssl_key = SSL_CTX_get0_privatekey(ctx)) || !(ssl_cert = SSL_CTX_get0_certificate(ctx)))
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return {EINVAL, boost::system::system_category()};
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using file_closer = int(std::FILE*);
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boost::system::error_code error{};
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std::unique_ptr<std::FILE, file_closer*> file{nullptr, std::fclose};
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// write key file unencrypted
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{
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const boost::filesystem::path key_file{base.string() + ".key"};
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file.reset(std::fopen(key_file.string().c_str(), "wb"));
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if (!file)
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return {errno, boost::system::system_category()};
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boost::filesystem::permissions(key_file, boost::filesystem::owner_read, error);
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if (error)
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return error;
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if (!PEM_write_PrivateKey(file.get(), ssl_key, nullptr, nullptr, 0, nullptr, nullptr))
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return boost::asio::error::ssl_errors(ERR_get_error());
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if (std::fclose(file.release()) != 0)
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return {errno, boost::system::system_category()};
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}
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// write certificate file in standard SSL X.509 unencrypted
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const boost::filesystem::path cert_file{base.string() + ".crt"};
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file.reset(std::fopen(cert_file.string().c_str(), "wb"));
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if (!file)
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return {errno, boost::system::system_category()};
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const auto cert_perms = (boost::filesystem::owner_read | boost::filesystem::group_read | boost::filesystem::others_read);
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boost::filesystem::permissions(cert_file, cert_perms, error);
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if (error)
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return error;
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if (!PEM_write_X509(file.get(), ssl_cert))
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return boost::asio::error::ssl_errors(ERR_get_error());
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if (std::fclose(file.release()) != 0)
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return {errno, boost::system::system_category()};
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return error;
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}
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} // namespace
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} // namespace
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@ -278,6 +278,7 @@ namespace cryptonote
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}
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}
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disable_rpc_ban = rpc_config->disable_rpc_ban;
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const std::string data_dir{command_line::get_arg(vm, cryptonote::arg_data_dir)};
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std::string address = command_line::get_arg(vm, arg_rpc_payment_address);
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if (!address.empty() && allow_rpc_payment)
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{
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@ -306,7 +307,7 @@ namespace cryptonote
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}
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m_rpc_payment_allow_free_loopback = command_line::get_arg(vm, arg_rpc_payment_allow_free_loopback);
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m_rpc_payment.reset(new rpc_payment(info.address, diff, credits));
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m_rpc_payment->load(command_line::get_arg(vm, cryptonote::arg_data_dir));
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m_rpc_payment->load(data_dir);
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m_p2p.set_rpc_credits_per_hash(RPC_CREDITS_PER_HASH_SCALE * (credits / (float)diff));
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}
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@ -333,12 +334,32 @@ namespace cryptonote
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if (m_rpc_payment)
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m_net_server.add_idle_handler([this](){ return m_rpc_payment->on_idle(); }, 60 * 1000);
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bool store_ssl_key = !restricted && rpc_config->ssl_options.auth.certificate_path.empty();
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const auto ssl_base_path = (boost::filesystem::path{data_dir} / "rpc_ssl").string();
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if (store_ssl_key && boost::filesystem::exists(ssl_base_path + ".crt"))
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{
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// load key from previous run, password prompted by OpenSSL
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store_ssl_key = false;
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rpc_config->ssl_options.auth =
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epee::net_utils::ssl_authentication_t{ssl_base_path + ".key", ssl_base_path + ".crt"};
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}
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auto rng = [](size_t len, uint8_t *ptr){ return crypto::rand(len, ptr); };
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return epee::http_server_impl_base<core_rpc_server, connection_context>::init(
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const bool inited = epee::http_server_impl_base<core_rpc_server, connection_context>::init(
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rng, std::move(port), std::move(bind_ip_str),
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std::move(bind_ipv6_str), std::move(rpc_config->use_ipv6), std::move(rpc_config->require_ipv4),
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std::move(rpc_config->access_control_origins), std::move(http_login), std::move(rpc_config->ssl_options)
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);
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if (store_ssl_key && inited)
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{
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// new keys were generated, store for next run
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const auto error = epee::net_utils::store_ssl_keys(m_net_server.get_ssl_context(), ssl_base_path);
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if (error)
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MFATAL("Failed to store HTTP SSL cert/key for " << (restricted ? "restricted " : "") << "RPC server: " << error.message());
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return !bool(error);
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}
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return inited;
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}
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//------------------------------------------------------------------------------------------------------------------------------
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bool core_rpc_server::check_payment(const std::string &client_message, uint64_t payment, const std::string &rpc, bool same_ts, std::string &message, uint64_t &credits, std::string &top_hash)
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