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https://github.com/ethereum/solidity
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Signatures working.
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parent
e5d733fbb4
commit
9eb90ebbd9
65
main.cpp
65
main.cpp
@ -7,35 +7,15 @@
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using namespace std;
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using namespace eth;
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std::string randomWord()
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{
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static std::mt19937_64 s_eng(0);
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std::string ret(uniform_int_distribution<int>(4, 10)(s_eng), ' ');
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char const n[] = "qwertyuiopasdfghjklzxcvbnmQWERTYUIOPASDFGHJKLZXCVBNM1234567890";
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uniform_int_distribution<int> d(0, sizeof(n) - 2);
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for (char& c: ret)
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c = n[d(s_eng)];
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return ret;
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}
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int main()
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{
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secp256k1_start();
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bytes pubkey(65);
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int pubkeylen = 65;
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{
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cout << "SEC: " << asHex(sha256("123", false)) << endl;
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int ret = secp256k1_ecdsa_pubkey_create(pubkey.data(), &pubkeylen, (byte const*)sha256("123", false).data(), 1);
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pubkey.resize(pubkeylen);
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cout << "PUB: " << ret << " " << pubkeylen << " " << asHex(pubkey) << endl;
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}
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bytes tx = fromUserHex("88005401010101010101010101010101010101010101011f0de0b6b3a76400001ce8d4a5100080181c373130a009ba1f10285d4e659568bfcfec85067855c5a3c150100815dad4ef98fd37cf0593828c89db94bd6c64e210a32ef8956eaa81ea9307194996a3b879441f5d");
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cout << "TX: " << RLP(tx) << endl;
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Transaction t(tx);
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std::string sig64 = toBigEndianString(t.vrs.r) + toBigEndianString(t.vrs.s);
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cout << "SENDER: " << hex << t.sender() << endl;
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bytes sig64 = toBigEndian(t.vrs.r) + toBigEndian(t.vrs.s);
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cout << "SIG: " << sig64.size() << " " << asHex(sig64) << " " << t.vrs.v << endl;
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auto msg = t.rlp(false);
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@ -44,30 +24,45 @@ int main()
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std::string hmsg = sha256(t.rlpString(false), false);
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cout << "SHA256(RLP(TX w/o SIG)): 0x" << asHex(hmsg) << endl;
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bytes privkey = sha256Bytes("123");
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secp256k1_start();
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{
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bytes pubkey(65);
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int pubkeylen = 65;
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int ret = secp256k1_ecdsa_seckey_verify(privkey.data());
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cout << "SEC: " << dec << ret << " " << asHex(privkey) << endl;
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ret = secp256k1_ecdsa_pubkey_create(pubkey.data(), &pubkeylen, privkey.data(), 1);
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pubkey.resize(pubkeylen);
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int good = secp256k1_ecdsa_pubkey_verify(pubkey.data(), pubkey.size());
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cout << "PUB: " << dec << ret << " " << pubkeylen << " " << asHex(pubkey) << (good ? " GOOD" : " BAD") << endl;
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}
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// Test roundtrip...
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{
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bytes sig(64);
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u256 nonce = 0;
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int v = 0;
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int ret = secp256k1_ecdsa_sign_compact((byte const*)hmsg.data(), hmsg.size(), sig.data(), (byte const*)sha256("123", false).data(), (byte const*)&nonce, &v);
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int ret = secp256k1_ecdsa_sign_compact((byte const*)hmsg.data(), hmsg.size(), sig.data(), privkey.data(), (byte const*)&nonce, &v);
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cout << "MYSIG: " << dec << ret << " " << sig.size() << " " << asHex(sig) << " " << v << endl;
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ret = secp256k1_ecdsa_recover_compact((byte const*)hmsg.data(), hmsg.size(), (byte const*)sig.data(), pubkey.data(), &pubkeylen, 1, (int)t.vrs.v);
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bytes pubkey(65);
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int pubkeylen = 65;
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ret = secp256k1_ecdsa_recover_compact((byte const*)hmsg.data(), hmsg.size(), (byte const*)sig.data(), pubkey.data(), &pubkeylen, 0, v);
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pubkey.resize(pubkeylen);
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cout << "MYREC: " << dec << ret << " " << pubkeylen << " " << asHex(pubkey) << endl;
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}
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{
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pubkey.resize(65);
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int ret = secp256k1_ecdsa_recover_compact((byte const*)hmsg.data(), hmsg.size(), (byte const*)sig64.data(), pubkey.data(), &pubkeylen, 1, (int)t.vrs.v);
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bytes pubkey(65);
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int pubkeylen = 65;
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int ret = secp256k1_ecdsa_recover_compact((byte const*)hmsg.data(), hmsg.size(), (byte const*)sig64.data(), pubkey.data(), &pubkeylen, 0, (int)t.vrs.v - 27);
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pubkey.resize(pubkeylen);
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cout << "REC: " << dec << ret << " " << pubkeylen << " " << asHex(pubkey) << endl;
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cout << hex << sha256(pubkey) << endl;
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pubkey.resize(65);
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ret = secp256k1_ecdsa_recover_compact((byte const*)hmsg.data(), hmsg.size(), (byte const*)sig64.data(), pubkey.data(), &pubkeylen, 0, (int)t.vrs.v);
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pubkey.resize(pubkeylen);
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cout << "REC+: " << dec << ret << " " << pubkeylen << " " << asHex(pubkey) << endl;
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cout << hex << sha256(pubkey) << endl;
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cout << "RECPUB: " << dec << ret << " " << pubkeylen << " " << asHex(pubkey) << endl;
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cout << "SENDER: " << hex << low160(eth::sha256(bytesConstRef(&pubkey).cropped(1))) << endl;
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}
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{
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