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/*
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This file is part of cpp-ethereum.
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cpp-ethereum is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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cpp-ethereum is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with cpp-ethereum. If not, see <http://www.gnu.org/licenses/>.
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*/
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/** @file KeyManager.h
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* @author Gav Wood <i@gavwood.com>
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* @date 2014
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*/
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#pragma once
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#include <functional>
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#include <mutex>
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#include <libdevcore/FileSystem.h>
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#include <libdevcore/CommonData.h>
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#include <libdevcrypto/SecretStore.h>
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namespace dev
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{
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namespace eth
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{
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class PasswordUnknown: public Exception {};
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struct KeyInfo
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{
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KeyInfo() = default;
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KeyInfo(h256 const& _passHash, std::string const& _accountName): passHash(_passHash), accountName(_accountName) {}
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/// Hash of the password or h256() / UnknownPassword if unknown.
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h256 passHash;
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/// Name of the key, or JSON key info if begins with '{'.
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std::string accountName;
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};
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static h256 const UnknownPassword;
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/// Password query function that never returns a password.
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static auto const DontKnowThrow = [](){ throw PasswordUnknown(); return std::string(); };
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enum class SemanticPassword
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{
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Existing,
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Master
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};
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// TODO: This one is specifically for Ethereum, but we can make it generic in due course.
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// TODO: hidden-partition style key-store.
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/**
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* @brief High-level manager of password-encrypted keys for Ethereum.
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* Usage:
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*
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* Call exists() to check whether there is already a database. If so, get the master password from
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* the user and call load() with it. If not, get a new master password from the user (get them to type
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* it twice and keep some hint around!) and call create() with it.
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*
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* Uses a "key file" (and a corresponding .salt file) that contains encrypted information about the keys and
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* a directory called "secrets path" that contains a file for each key.
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*/
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class KeyManager
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{
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public:
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KeyManager(std::string const& _keysFile = defaultPath(), std::string const& _secretsPath = SecretStore::defaultPath());
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~KeyManager();
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void setKeysFile(std::string const& _keysFile) { m_keysFile = _keysFile; }
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std::string const& keysFile() const { return m_keysFile; }
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bool exists() const;
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void create(std::string const& _pass);
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bool load(std::string const& _pass);
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void save(std::string const& _pass) const { write(_pass, m_keysFile); }
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void notePassword(std::string const& _pass) { m_cachedPasswords[hashPassword(_pass)] = _pass; }
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void noteHint(std::string const& _pass, std::string const& _hint) { if (!_hint.empty()) m_passwordHint[hashPassword(_pass)] = _hint; }
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bool haveHint(std::string const& _pass) const { auto h = hashPassword(_pass); return m_cachedPasswords.count(h) && !m_cachedPasswords.at(h).empty(); }
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/// @returns the list of account addresses.
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Addresses accounts() const;
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/// @returns a hashset of all account addresses.
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AddressHash accountsHash() const { return AddressHash() + accounts(); }
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bool hasAccount(Address const& _address) const;
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/// @returns the human-readable name or json-encoded info of the account for the given address.
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std::string const& accountName(Address const& _address) const;
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/// @returns the password hint for the account for the given address;
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std::string const& passwordHint(Address const& _address) const;
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/// @returns the uuid of the key for the address @a _a or the empty hash on error.
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h128 uuid(Address const& _a) const;
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/// @returns the address corresponding to the key with uuid @a _uuid or the zero address on error.
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Address address(h128 const& _uuid) const;
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h128 import(Secret const& _s, std::string const& _accountName, std::string const& _pass, std::string const& _passwordHint);
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h128 import(Secret const& _s, std::string const& _accountName) { return import(_s, _accountName, defaultPassword(), std::string()); }
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SecretStore& store() { return m_store; }
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void importExisting(h128 const& _uuid, std::string const& _accountName, std::string const& _pass, std::string const& _passwordHint);
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void importExisting(h128 const& _uuid, std::string const& _accountName) { importExisting(_uuid, _accountName, defaultPassword(), std::string()); }
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void importExisting(h128 const& _uuid, std::string const& _accountName, Address const& _addr, h256 const& _passHash = h256(), std::string const& _passwordHint = std::string());
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/// @returns the secret key associated with an address provided the password query
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/// function @a _pass or the zero-secret key on error.
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Secret secret(Address const& _address, std::function<std::string()> const& _pass = DontKnowThrow) const;
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/// @returns the secret key associated with the uuid of a key provided the password query
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/// function @a _pass or the zero-secret key on error.
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Secret secret(h128 const& _uuid, std::function<std::string()> const& _pass = DontKnowThrow) const;
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bool recode(Address const& _address, SemanticPassword _newPass, std::function<std::string()> const& _pass = DontKnowThrow, KDF _kdf = KDF::Scrypt);
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bool recode(Address const& _address, std::string const& _newPass, std::string const& _hint, std::function<std::string()> const& _pass = DontKnowThrow, KDF _kdf = KDF::Scrypt);
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void kill(h128 const& _id) { kill(address(_id)); }
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void kill(Address const& _a);
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static std::string defaultPath() { return getDataDir("ethereum") + "/keys.info"; }
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/// Extracts the secret key from the presale wallet.
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KeyPair presaleSecret(std::string const& _json, std::function<std::string(bool)> const& _password);
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private:
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std::string getPassword(h128 const& _uuid, std::function<std::string()> const& _pass = DontKnowThrow) const;
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std::string getPassword(h256 const& _passHash, std::function<std::string()> const& _pass = DontKnowThrow) const;
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std::string defaultPassword(std::function<std::string()> const& _pass = DontKnowThrow) const { return getPassword(m_master, _pass); }
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h256 hashPassword(std::string const& _pass) const;
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/// Stores the password by its hash in the password cache.
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void cachePassword(std::string const& _password) const;
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// Only use if previously loaded ok.
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// @returns false if wasn't previously loaded ok.
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bool write() const { return write(m_keysFile); }
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bool write(std::string const& _keysFile) const;
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void write(std::string const& _pass, std::string const& _keysFile) const; // TODO: all passwords should be a secure string.
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void write(SecureFixedHash<16> const& _key, std::string const& _keysFile) const;
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// Ethereum keys.
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/// Mapping address -> key uuid.
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std::unordered_map<Address, h128> m_addrLookup;
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/// Mapping key uuid -> key info.
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std::unordered_map<h128, KeyInfo> m_keyInfo;
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/// Mapping password hash -> password hint.
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std::unordered_map<h256, std::string> m_passwordHint;
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// Passwords that we're storing. Mapping password hash -> password.
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mutable std::unordered_map<h256, std::string> m_cachedPasswords;
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// DEPRECATED.
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// Used to be the default password for keys in the keystore, stored in the keys file.
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// Now the default password is based off the key of the keys file directly, so this is redundant
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// except for the fact that people have existing keys stored with it. Leave for now until/unless
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// we have an upgrade strategy.
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std::string m_defaultPasswordDeprecated;
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mutable std::string m_keysFile;
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mutable SecureFixedHash<16> m_keysFileKey;
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mutable h256 m_master;
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SecretStore m_store;
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};
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}
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}
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