core_rpc_server: new file: rpc_ssl.fingerprint
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@ -151,6 +151,33 @@ 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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/**
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* @brief Create a human-readable X509 certificate fingerprint
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*
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* Example output: "12:A3:92:19:87:D2:A2:A5:77:94:82:29:B9:5A:91:01:AB:5F:75:16:9A:BA:CD:3D:D3:69:3D:6A:87:DC:E8:0E"
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*
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* @param[in] cert The certificate which will be used to create the fingerprint
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* @param[in] fdig The digest algorithm to use, defaults to SHA-256 b/c that is what ssl_options_t uses
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* @return The human-readable fingerprint string
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*
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* @throw boost::system_error if there is an OpenSSL error
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*/
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std::string get_hr_ssl_fingerprint(const X509 *cert, const EVP_MD *fdig = EVP_sha256());
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/**
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* @brief Create a human-readable fingerprint from the contents of an X509 certificate
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*
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* Should be equivalent to the command `openssl x509 -in <cert file> -fingerprint -sha256 -noout`
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* Example output: "12:A3:92:19:87:D2:A2:A5:77:94:82:29:B9:5A:91:01:AB:5F:75:16:9A:BA:CD:3D:D3:69:3D:6A:87:DC:E8:0E"
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*
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* @param[in] cert_path The path to an X509 certificate which will be used to create the fingerprint
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* @param[in] fdig The digest algorithm to use, defaults to SHA-256 b/c that is what ssl_options_t uses
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* @return The human-readable fingerprint string
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*
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* @throw boost::system_error if there is an OpenSSL error or file I/O error
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*/
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std::string get_hr_ssl_fingerprint_from_file(const std::string& cert_path, const EVP_MD *fdig = EVP_sha256());
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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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@ -643,6 +643,56 @@ bool ssl_options_t::handshake(
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return true;
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}
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std::string get_hr_ssl_fingerprint(const X509 *cert, const EVP_MD *fdig)
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{
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unsigned int j;
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unsigned int n;
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unsigned char md[EVP_MAX_MD_SIZE];
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std::string fingerprint;
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CHECK_AND_ASSERT_THROW_MES(cert && fdig, "Pointer args to get_hr_ssl_fingerprint cannot be null");
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if (!X509_digest(cert, fdig, md, &n))
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{
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const unsigned long ssl_err_val = static_cast<int>(ERR_get_error());
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const boost::system::error_code ssl_err_code = boost::asio::error::ssl_errors(static_cast<int>(ssl_err_val));
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MERROR("Failed to create SSL fingerprint: " << ERR_reason_error_string(ssl_err_val));
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throw boost::system::system_error(ssl_err_code, ERR_reason_error_string(ssl_err_val));
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}
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fingerprint.resize(n * 3 - 1);
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char *out = &fingerprint[0];
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for (j = 0; j < n; ++j)
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{
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snprintf(out, 3 + (j + 1 < n), "%02X%s", md[j], (j + 1 == n) ? "" : ":");
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out += 3;
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}
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return fingerprint;
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}
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std::string get_hr_ssl_fingerprint_from_file(const std::string& cert_path, const EVP_MD *fdig) {
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// Open file for reading
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FILE* fp = fopen(cert_path.c_str(), "r");
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if (!fp)
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{
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const boost::system::error_code err_code(errno, boost::system::system_category());
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throw boost::system::system_error(err_code, "Failed to open certificate file '" + cert_path + "'");
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}
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std::unique_ptr<FILE, decltype(&fclose)> file(fp, &fclose);
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// Extract certificate structure from file
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X509* ssl_cert_handle = PEM_read_X509(file.get(), NULL, NULL, NULL);
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if (!ssl_cert_handle) {
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const unsigned long ssl_err_val = static_cast<int>(ERR_get_error());
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const boost::system::error_code ssl_err_code = boost::asio::error::ssl_errors(static_cast<int>(ssl_err_val));
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MERROR("OpenSSL error occurred while loading certificate at '" + cert_path + "'");
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throw boost::system::system_error(ssl_err_code, ERR_reason_error_string(ssl_err_val));
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}
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std::unique_ptr<X509, decltype(&X509_free)> ssl_cert(ssl_cert_handle, &X509_free);
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// Get the fingerprint from X509 structure
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return get_hr_ssl_fingerprint(ssl_cert.get(), fdig);
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}
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bool ssl_support_from_string(ssl_support_t &ssl, boost::string_ref s)
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{
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if (s == "enabled")
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@ -707,6 +757,29 @@ boost::system::error_code store_ssl_keys(boost::asio::ssl::context& ssl, const b
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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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// write SHA-256 fingerprint file
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const boost::filesystem::path fp_file{base.string() + ".fingerprint"};
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file.reset(std::fopen(fp_file.string().c_str(), "w"));
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if (!file)
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return {errno, boost::system::system_category()};
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const auto fp_perms = (boost::filesystem::owner_read | boost::filesystem::group_read | boost::filesystem::others_read);
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boost::filesystem::permissions(fp_file, fp_perms, error);
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if (error)
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return error;
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try
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{
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const std::string fingerprint = get_hr_ssl_fingerprint(ssl_cert);
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if (fingerprint.length() != fwrite(fingerprint.c_str(), sizeof(char), fingerprint.length(), file.get()))
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return {errno, boost::system::system_category()};
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}
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catch (const boost::system::system_error& fperr)
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{
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return fperr.code();
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}
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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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@ -65,29 +65,6 @@ namespace
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const command_line::arg_descriptor<bool> arg_prompt_for_passphrase = {"prompt-for-passphrase", gencert::tr("Prompt for a passphrase with which to encrypt the private key"), false};
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}
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// adapted from openssl's apps/x509.c
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static std::string get_fingerprint(X509 *cert, const EVP_MD *fdig)
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{
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unsigned int j;
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unsigned int n;
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unsigned char md[EVP_MAX_MD_SIZE];
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std::string fingerprint;
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if (!X509_digest(cert, fdig, md, &n))
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{
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tools::fail_msg_writer() << tr("Failed to create fingerprint: ") << ERR_reason_error_string(ERR_get_error());
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return fingerprint;
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}
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fingerprint.resize(n * 3 - 1);
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char *out = &fingerprint[0];
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for (j = 0; j < n; ++j)
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{
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snprintf(out, 3 + (j + 1 < n), "%02X%s", md[j], (j + 1 == n) ? "" : ":");
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out += 3;
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}
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return fingerprint;
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}
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int main(int argc, char* argv[])
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{
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TRY_ENTRY();
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@ -246,7 +223,7 @@ int main(int argc, char* argv[])
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tools::success_msg_writer() << tr("New certificate created:");
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tools::success_msg_writer() << tr("Certificate: ") << certificate_filename;
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tools::success_msg_writer() << tr("SHA-256 Fingerprint: ") << get_fingerprint(cert, EVP_sha256());
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tools::success_msg_writer() << tr("SHA-256 Fingerprint: ") << epee::net_utils::get_hr_ssl_fingerprint(cert);
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tools::success_msg_writer() << tr("Private key: ") << private_key_filename << " (" << (private_key_passphrase.empty() ? "unencrypted" : "encrypted") << ")";
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return 0;
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@ -352,6 +352,7 @@ namespace cryptonote
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const auto ssl_base_path = (boost::filesystem::path{data_dir} / "rpc_ssl").string();
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const bool ssl_cert_file_exists = boost::filesystem::exists(ssl_base_path + ".crt");
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const bool ssl_pkey_file_exists = boost::filesystem::exists(ssl_base_path + ".key");
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const bool ssl_fp_file_exists = boost::filesystem::exists(ssl_base_path + ".fingerprint");
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if (store_ssl_key)
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{
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// .key files are often given different read permissions as their corresponding .crt files.
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@ -361,13 +362,39 @@ namespace cryptonote
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MFATAL("Certificate (.crt) and private key (.key) files must both exist or both not exist at path: " << ssl_base_path);
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return false;
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}
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else if (!ssl_cert_file_exists && ssl_fp_file_exists) // only fingerprint file is present
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{
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MFATAL("Fingerprint file is present while certificate (.crt) and private key (.key) files are not at path: " << ssl_base_path);
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return false;
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}
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else if (ssl_cert_file_exists) { // and ssl_pkey_file_exists
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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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// Since the .fingerprint file was added afterwards, sometimes the other 2 are present, and .fingerprint isn't
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// In that case, generate the .fingerprint file from the existing .crt file
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if (!ssl_fp_file_exists)
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{
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try
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{
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std::string fingerprint = epee::net_utils::get_hr_ssl_fingerprint_from_file(ssl_base_path + ".crt");
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if (!epee::file_io_utils::save_string_to_file(ssl_base_path + ".fingerprint", fingerprint))
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{
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MWARNING("Could not save SSL fingerprint to file '" << ssl_base_path << ".fingerprint'");
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}
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const auto fp_perms = boost::filesystem::owner_read | boost::filesystem::group_read | boost::filesystem::others_read;
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boost::filesystem::permissions(ssl_base_path + ".fingerprint", fp_perms);
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}
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catch (const std::exception& e)
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{
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// Do nothing. The fingerprint file is helpful, but not at all necessary.
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MWARNING("While trying to store SSL fingerprint file, got error (ignoring): " << e.what());
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}
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}
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}
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}
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} // if (store_ssl_key)
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auto rng = [](size_t len, uint8_t *ptr){ return crypto::rand(len, ptr); };
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const bool inited = epee::http_server_impl_base<core_rpc_server, connection_context>::init(
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