forked from Mirrorlandia_minetest/minetest
Much better API for auth.{cpp, h}
* No function overloading * Adhere coding style and with method names following lowercase_underscore_style * Use std::string in external API, handling these is much more fun
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bb2ee54d3b
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e0151d1054
@ -399,7 +399,7 @@ void Client::step(float dtime)
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memset(pName, 0, PLAYERNAME_SIZE * sizeof(char));
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memset(pPassword, 0, PASSWORD_SIZE * sizeof(char));
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std::string hashed_password = translatePassword(myplayer->getName(), m_password);
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std::string hashed_password = translate_password(myplayer->getName(), m_password);
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snprintf(pName, PLAYERNAME_SIZE, "%s", myplayer->getName());
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snprintf(pPassword, PASSWORD_SIZE, "%s", hashed_password.c_str());
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@ -1031,18 +1031,14 @@ void Client::startAuth(AuthMechanism chosen_auth_mechanism)
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switch (chosen_auth_mechanism) {
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case AUTH_MECHANISM_FIRST_SRP: {
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// send srp verifier to server
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std::string verifier;
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std::string salt;
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generate_srp_verifier_and_salt(getPlayerName(), m_password,
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&verifier, &salt);
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NetworkPacket resp_pkt(TOSERVER_FIRST_SRP, 0);
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char *salt, *bytes_v;
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std::size_t len_salt, len_v;
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salt = NULL;
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getSRPVerifier(getPlayerName(), m_password,
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&salt, &len_salt, &bytes_v, &len_v);
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resp_pkt
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<< std::string((char*)salt, len_salt)
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<< std::string((char*)bytes_v, len_v)
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<< (u8)((m_password == "") ? 1 : 0);
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free(salt);
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free(bytes_v);
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resp_pkt << salt << verifier << (u8)((m_password == "") ? 1 : 0);
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Send(&resp_pkt);
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break;
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}
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@ -1051,7 +1047,7 @@ void Client::startAuth(AuthMechanism chosen_auth_mechanism)
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u8 based_on = 1;
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if (chosen_auth_mechanism == AUTH_MECHANISM_LEGACY_PASSWORD) {
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m_password = translatePassword(getPlayerName(), m_password);
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m_password = translate_password(getPlayerName(), m_password);
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based_on = 0;
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}
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@ -1197,8 +1193,8 @@ void Client::sendChangePassword(const std::string &oldpassword,
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m_new_password = newpassword;
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startAuth(choseAuthMech(m_sudo_auth_methods));
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} else {
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std::string oldpwd = translatePassword(playername, oldpassword);
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std::string newpwd = translatePassword(playername, newpassword);
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std::string oldpwd = translate_password(playername, oldpassword);
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std::string newpwd = translate_password(playername, newpassword);
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NetworkPacket pkt(TOSERVER_PASSWORD_LEGACY, 2 * PASSWORD_SIZE);
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@ -261,9 +261,9 @@ void Server::handleCommand_Init(NetworkPacket* pkt)
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auth_mechs |= AUTH_MECHANISM_FIRST_SRP;
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} else {
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// Take care of default passwords.
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client->enc_pwd = getSRPVerifier(playerName, default_password);
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client->enc_pwd = get_encoded_srp_verifier(playerName, default_password);
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auth_mechs |= AUTH_MECHANISM_SRP;
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// Create auth, but only on successful login
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// Allocate player in db, but only on successful login.
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client->create_player_on_auth_success = true;
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}
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}
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@ -549,7 +549,7 @@ void Server::handleCommand_Init_Legacy(NetworkPacket* pkt)
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std::string raw_default_password =
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g_settings->get("default_password");
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std::string initial_password =
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translatePassword(playername, raw_default_password);
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translate_password(playername, raw_default_password);
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// If default_password is empty, allow any initial password
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if (raw_default_password.length() == 0)
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@ -1831,7 +1831,7 @@ void Server::handleCommand_FirstSrp(NetworkPacket* pkt)
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std::string initial_ver_key;
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initial_ver_key = encodeSRPVerifier(verification_key, salt);
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initial_ver_key = encode_srp_verifier(verification_key, salt);
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m_script->createAuth(playername, initial_ver_key);
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acceptAuth(pkt->getPeerId(), false);
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@ -1843,7 +1843,7 @@ void Server::handleCommand_FirstSrp(NetworkPacket* pkt)
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return;
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}
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m_clients.event(pkt->getPeerId(), CSE_SudoLeave);
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std::string pw_db_field = encodeSRPVerifier(verification_key, salt);
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std::string pw_db_field = encode_srp_verifier(verification_key, salt);
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bool success = m_script->setPassword(playername, pw_db_field);
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if (success) {
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actionstream << playername << " changes password" << std::endl;
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@ -1917,22 +1917,14 @@ void Server::handleCommand_SrpBytesA(NetworkPacket* pkt)
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client->chosen_mech = chosen;
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std::string bytes_s;
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std::string bytes_v;
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std::string salt;
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std::string verifier;
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if (based_on == 0) {
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char *p_bytes_s = 0;
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size_t len_s = 0;
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char *p_bytes_v = 0;
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size_t len_v = 0;
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getSRPVerifier(client->getName(), client->enc_pwd,
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&p_bytes_s, &len_s,
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&p_bytes_v, &len_v);
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bytes_s = std::string(p_bytes_s, len_s);
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bytes_v = std::string(p_bytes_v, len_v);
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free(p_bytes_s);
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free(p_bytes_v);
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} else if (!decodeSRPVerifier(client->enc_pwd, &bytes_s, &bytes_v)) {
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generate_srp_verifier_and_salt(client->getName(), client->enc_pwd,
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&verifier, &salt);
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} else if (!decode_srp_verifier_and_salt(client->enc_pwd, &verifier, &salt)) {
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// Non-base64 errors should have been catched in the init handler
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actionstream << "Server: User " << client->getName()
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<< " tried to log in, but srp verifier field"
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@ -1946,8 +1938,8 @@ void Server::handleCommand_SrpBytesA(NetworkPacket* pkt)
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client->auth_data = srp_verifier_new(SRP_SHA256, SRP_NG_2048,
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client->getName().c_str(),
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(const unsigned char *) bytes_s.c_str(), bytes_s.size(),
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(const unsigned char *) bytes_v.c_str(), bytes_v.size(),
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(const unsigned char *) salt.c_str(), salt.size(),
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(const unsigned char *) verifier.c_str(), verifier.size(),
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(const unsigned char *) bytes_A.c_str(), bytes_A.size(),
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NULL, 0,
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(unsigned char **) &bytes_B, &len_B, NULL, NULL);
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@ -1966,7 +1958,7 @@ void Server::handleCommand_SrpBytesA(NetworkPacket* pkt)
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}
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NetworkPacket resp_pkt(TOCLIENT_SRP_BYTES_S_B, 0, pkt->getPeerId());
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resp_pkt << bytes_s << std::string(bytes_B, len_B);
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resp_pkt << salt << std::string(bytes_B, len_B);
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Send(&resp_pkt);
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}
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@ -251,7 +251,7 @@ int ModApiUtil::l_get_password_hash(lua_State *L)
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NO_MAP_LOCK_REQUIRED;
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std::string name = luaL_checkstring(L, 1);
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std::string raw_password = luaL_checkstring(L, 2);
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std::string hash = translatePassword(name, raw_password);
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std::string hash = translate_password(name, raw_password);
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lua_pushstring(L, hash.c_str());
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return 1;
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}
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@ -1,6 +1,6 @@
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/*
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Minetest
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Copyright (C) 2015 est31 <MTest31@outlook.com>
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Copyright (C) 2015, 2016 est31 <MTest31@outlook.com>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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@ -31,7 +31,7 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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// their password. (Exception : if the password field is
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// blank, we send a blank password - this is for backwards
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// compatibility with password-less players).
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std::string translatePassword(const std::string &name,
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std::string translate_password(const std::string &name,
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const std::string &password)
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{
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if (password.length() == 0)
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@ -46,7 +46,11 @@ std::string translatePassword(const std::string &name,
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return pwd;
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}
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void getSRPVerifier(const std::string &name,
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// Call lower level SRP code to generate a verifier with the
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// given pointers. Contains the preparations, call parameters
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// and error checking common to all srp verifier generation code.
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// See docs of srp_create_salted_verification_key for more info.
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static inline void gen_srp_v(const std::string &name,
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const std::string &password, char **salt, size_t *salt_len,
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char **bytes_v, size_t *len_v)
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{
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@ -58,72 +62,76 @@ void getSRPVerifier(const std::string &name,
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FATAL_ERROR_IF(res != SRP_OK, "Couldn't create salted SRP verifier");
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}
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// Get a db-ready SRP verifier
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// If the salt param is NULL, one is automatically generated.
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// Please free() it afterwards. You shouldn't use it for other purposes,
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// as you will need the contents of salt_len too.
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inline static std::string getSRPVerifier(const std::string &name,
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const std::string &password, char ** salt, size_t salt_len)
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{
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char * bytes_v = NULL;
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size_t len_v;
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getSRPVerifier(name, password, salt, &salt_len,
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&bytes_v, &len_v);
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assert(*salt); // usually, srp_create_salted_verification_key promises us to return SRP_ERR when *salt == NULL
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std::string ret_val = encodeSRPVerifier(std::string(bytes_v, len_v),
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std::string(*salt, salt_len));
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free(bytes_v);
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return ret_val;
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}
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// Get a db-ready SRP verifier
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std::string getSRPVerifier(const std::string &name,
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const std::string &password)
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{
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char * salt = NULL;
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std::string ret_val = getSRPVerifier(name,
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password, &salt, 0);
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free(salt);
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return ret_val;
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}
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// Get a db-ready SRP verifier
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std::string getSRPVerifier(const std::string &name,
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/// Creates a verification key with given salt and password.
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std::string generate_srp_verifier(const std::string &name,
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const std::string &password, const std::string &salt)
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{
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// The implementation won't change the salt if its set,
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// therefore we can cast.
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char *salt_cstr = (char *)salt.c_str();
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return getSRPVerifier(name, password,
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&salt_cstr, salt.size());
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size_t salt_len = salt.size();
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// The API promises us that the salt doesn't
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// get modified if &salt_ptr isn't NULL.
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char *salt_ptr = (char *)salt.c_str();
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char *bytes_v = NULL;
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size_t verifier_len = 0;
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gen_srp_v(name, password, &salt_ptr, &salt_len, &bytes_v, &verifier_len);
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std::string verifier = std::string(bytes_v, verifier_len);
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free(bytes_v);
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return verifier;
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}
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// Make a SRP verifier db-ready
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std::string encodeSRPVerifier(const std::string &verifier,
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/// Creates a verification key and salt with given password.
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void generate_srp_verifier_and_salt(const std::string &name,
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const std::string &password, std::string *verifier,
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std::string *salt)
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{
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char *bytes_v = NULL;
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size_t verifier_len;
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char *salt_ptr = NULL;
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size_t salt_len;
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gen_srp_v(name, password, &salt_ptr, &salt_len, &bytes_v, &verifier_len);
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*verifier = std::string(bytes_v, verifier_len);
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*salt = std::string(salt_ptr, salt_len);
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free(bytes_v);
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free(salt_ptr);
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}
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/// Gets an SRP verifier, generating a salt,
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/// and encodes it as DB-ready string.
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std::string get_encoded_srp_verifier(const std::string &name,
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const std::string &password)
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{
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std::string verifier;
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std::string salt;
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generate_srp_verifier_and_salt(name, password, &verifier, &salt);
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return encode_srp_verifier(verifier, salt);
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}
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/// Converts the passed SRP verifier into a DB-ready format.
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std::string encode_srp_verifier(const std::string &verifier,
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const std::string &salt)
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{
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std::ostringstream ret_str;
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ret_str << "#1#"
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<< base64_encode((unsigned char*) salt.c_str(), salt.size()) << "#"
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<< base64_encode((unsigned char*) verifier.c_str(), verifier.size());
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<< base64_encode((unsigned char *)salt.c_str(), salt.size()) << "#"
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<< base64_encode((unsigned char *)verifier.c_str(), verifier.size());
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return ret_str.str();
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}
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bool decodeSRPVerifier(const std::string &enc_pwd,
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std::string *salt, std::string *bytes_v)
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/// Reads the DB-formatted SRP verifier and gets the verifier
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/// and salt components.
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bool decode_srp_verifier_and_salt(const std::string &encoded,
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std::string *verifier, std::string *salt)
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{
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std::vector<std::string> pwd_components = str_split(enc_pwd, '#');
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std::vector<std::string> components = str_split(encoded, '#');
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if ((pwd_components.size() != 4)
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|| (pwd_components[1] != "1") // 1 means srp
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|| !base64_is_valid(pwd_components[2])
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|| !base64_is_valid(pwd_components[3]))
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if ((components.size() != 4)
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|| (components[1] != "1") // 1 means srp
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|| !base64_is_valid(components[2])
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|| !base64_is_valid(components[3]))
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return false;
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std::string salt_str = base64_decode(pwd_components[2]);
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std::string bytes_v_str = base64_decode(pwd_components[3]);
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*salt = salt_str;
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*bytes_v = bytes_v_str;
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*salt = base64_decode(components[2]);
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*verifier = base64_decode(components[3]);
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return true;
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}
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@ -1,6 +1,6 @@
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/*
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Minetest
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Copyright (C) 2015 est31 <MTest31@outlook.com>
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Copyright (C) 2015, 2016 est31 <MTest31@outlook.com>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published by
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@ -20,18 +20,31 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#ifndef AUTH_H
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#define AUTH_H
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std::string translatePassword(const std::string &name,
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/// Gets the base64 encoded legacy password db entry.
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std::string translate_password(const std::string &name,
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const std::string &password);
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void getSRPVerifier(const std::string &name,
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const std::string &password, char **salt, size_t *salt_len,
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char **bytes_v, size_t *len_v);
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std::string getSRPVerifier(const std::string &name,
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const std::string &password);
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std::string getSRPVerifier(const std::string &name,
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/// Creates a verification key with given salt and password.
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std::string generate_srp_verifier(const std::string &name,
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const std::string &password, const std::string &salt);
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std::string encodeSRPVerifier(const std::string &verifier,
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/// Creates a verification key and salt with given password.
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void generate_srp_verifier_and_salt(const std::string &name,
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const std::string &password, std::string *verifier,
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std::string *salt);
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/// Gets an SRP verifier, generating a salt,
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/// and encodes it as DB-ready string.
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std::string get_encoded_srp_verifier(const std::string &name,
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const std::string &password);
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/// Converts the passed SRP verifier into a DB-ready format.
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std::string encode_srp_verifier(const std::string &verifier,
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const std::string &salt);
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bool decodeSRPVerifier(const std::string &enc_pwd,
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/// Reads the DB-formatted SRP verifier and gets the verifier
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/// and salt components.
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bool decode_srp_verifier_and_salt(const std::string &encoded,
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std::string *salt, std::string *bytes_v);
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#endif
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