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117 lines
3.5 KiB
117 lines
3.5 KiB
/*
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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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Foobar 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 Foobar. If not, see <http://www.gnu.org/licenses/>.
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*/
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/** @file Transaction.cpp
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* @author Gav Wood <i@gavwood.com>
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* @date 2014
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*/
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#include <secp256k1.h>
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#include "vector_ref.h"
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#include "Exceptions.h"
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#include "Transaction.h"
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using namespace std;
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using namespace eth;
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Transaction::Transaction(bytesConstRef _rlpData)
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{
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RLP rlp(_rlpData);
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nonce = rlp[0].toInt<u256>(RLP::StrictlyInt);
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receiveAddress = rlp[1].toHash<Address>();
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value = rlp[2].toInt<u256>(RLP::StrictlyInt);
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fee = rlp[3].toInt<u256>(RLP::StrictlyInt);
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data.reserve(rlp[4].itemCountStrict());
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for (auto const& i: rlp[4])
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data.push_back(i.toInt<u256>(RLP::StrictlyInt));
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vrs = Signature{ rlp[5].toInt<byte>(RLP::StrictlyInt), rlp[6].toInt<u256>(RLP::StrictlyInt), rlp[7].toInt<u256>(RLP::StrictlyInt) };
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}
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Address Transaction::sender() const
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{
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secp256k1_start();
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h256 sig[2] = { vrs.r, vrs.s };
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h256 msg = sha3(false);
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byte pubkey[65];
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int pubkeylen = 65;
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if (!secp256k1_ecdsa_recover_compact(msg.data(), 32, sig[0].data(), pubkey, &pubkeylen, 0, (int)vrs.v - 27))
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throw InvalidSignature();
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// TODO: check right160 is correct and shouldn't be left160.
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auto ret = right160(eth::sha3(bytesConstRef(&(pubkey[1]), 64)));
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#if ETH_ADDRESS_DEBUG
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cout << "---- RECOVER -------------------------------" << endl;
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cout << "MSG: " << msg << endl;
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cout << "R S V: " << sig[0] << " " << sig[1] << " " << (int)(vrs.v - 27) << "+27" << endl;
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cout << "PUB: " << asHex(bytesConstRef(&(pubkey[1]), 64)) << endl;
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cout << "ADR: " << ret << endl;
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#endif
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return ret;
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}
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void Transaction::sign(Secret _priv)
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{
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int v = 0;
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secp256k1_start();
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h256 msg = sha3(false);
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h256 sig[2];
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h256 nonce = kFromMessage(msg, _priv);
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if (!secp256k1_ecdsa_sign_compact(msg.data(), 32, sig[0].data(), _priv.data(), nonce.data(), &v))
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throw InvalidSignature();
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#if ETH_ADDRESS_DEBUG
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cout << "---- SIGN -------------------------------" << endl;
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cout << "MSG: " << msg << endl;
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cout << "SEC: " << _priv << endl;
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cout << "NON: " << nonce << endl;
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cout << "R S V: " << sig[0] << " " << sig[1] << " " << v << "+27" << endl;
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#endif
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vrs.v = (byte)(v + 27);
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vrs.r = (u256)sig[0];
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vrs.s = (u256)sig[1];
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}
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void Transaction::fillStream(RLPStream& _s, bool _sig) const
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{
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_s.appendList(_sig ? 8 : 5);
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_s << nonce << receiveAddress << value << fee << data;
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if (_sig)
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_s << vrs.v << vrs.r << vrs.s;
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}
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// If the h256 return is an integer, store it in bigendian (i.e. u256 ret; ... return (h256)ret; )
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h256 Transaction::kFromMessage(h256 _msg, h256 _priv)
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{
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// TODO!
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/*
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v = '\x01' * 32
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k = '\x00' * 32
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priv = encode_privkey(priv,'bin')
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msghash = encode(hash_to_int(msghash),256,32)
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k = hmac.new(k, v+'\x00'+priv+msghash, hashlib.sha256).digest()
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v = hmac.new(k, v, hashlib.sha256).digest()
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k = hmac.new(k, v+'\x01'+priv+msghash, hashlib.sha256).digest()
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v = hmac.new(k, v, hashlib.sha256).digest()
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return decode(hmac.new(k, v, hashlib.sha256).digest(),256)
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*/
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return _msg ^ _priv;
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}
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