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Relay OP_RETURN data TxOut as standard transaction type
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parent
28f6b8dbad
commit
a79342479f
15
src/main.cpp
15
src/main.cpp
@ -497,17 +497,28 @@ bool IsStandardTx(const CTransaction& tx, string& reason)
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return false;
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return false;
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}
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}
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}
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}
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unsigned int nDataOut = 0;
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txnouttype whichType;
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BOOST_FOREACH(const CTxOut& txout, tx.vout) {
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BOOST_FOREACH(const CTxOut& txout, tx.vout) {
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if (!::IsStandard(txout.scriptPubKey)) {
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if (!::IsStandard(txout.scriptPubKey, whichType)) {
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reason = "scriptpubkey";
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reason = "scriptpubkey";
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return false;
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return false;
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}
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}
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if (txout.IsDust(CTransaction::nMinRelayTxFee)) {
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if (whichType == TX_NULL_DATA)
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nDataOut++;
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else if (txout.IsDust(CTransaction::nMinRelayTxFee)) {
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reason = "dust";
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reason = "dust";
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return false;
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return false;
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}
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}
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}
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}
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// only one OP_RETURN txout is permitted
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if (nDataOut > 1) {
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reason = "mucho-data";
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return false;
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}
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return true;
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return true;
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}
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}
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@ -79,6 +79,7 @@ const char* GetTxnOutputType(txnouttype t)
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case TX_PUBKEYHASH: return "pubkeyhash";
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case TX_PUBKEYHASH: return "pubkeyhash";
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case TX_SCRIPTHASH: return "scripthash";
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case TX_SCRIPTHASH: return "scripthash";
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case TX_MULTISIG: return "multisig";
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case TX_MULTISIG: return "multisig";
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case TX_NULL_DATA: return "nulldata";
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}
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}
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return NULL;
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return NULL;
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}
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}
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@ -220,6 +221,7 @@ const char* GetOpName(opcodetype opcode)
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// template matching params
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// template matching params
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case OP_PUBKEYHASH : return "OP_PUBKEYHASH";
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case OP_PUBKEYHASH : return "OP_PUBKEYHASH";
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case OP_PUBKEY : return "OP_PUBKEY";
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case OP_PUBKEY : return "OP_PUBKEY";
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case OP_SMALLDATA : return "OP_SMALLDATA";
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case OP_INVALIDOPCODE : return "OP_INVALIDOPCODE";
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case OP_INVALIDOPCODE : return "OP_INVALIDOPCODE";
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default:
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default:
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@ -1148,6 +1150,9 @@ bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, vector<vector<unsi
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// Sender provides N pubkeys, receivers provides M signatures
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// Sender provides N pubkeys, receivers provides M signatures
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mTemplates.insert(make_pair(TX_MULTISIG, CScript() << OP_SMALLINTEGER << OP_PUBKEYS << OP_SMALLINTEGER << OP_CHECKMULTISIG));
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mTemplates.insert(make_pair(TX_MULTISIG, CScript() << OP_SMALLINTEGER << OP_PUBKEYS << OP_SMALLINTEGER << OP_CHECKMULTISIG));
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// Empty, provably prunable, data-carrying output
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mTemplates.insert(make_pair(TX_NULL_DATA, CScript() << OP_RETURN << OP_SMALLDATA));
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}
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}
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// Shortcut for pay-to-script-hash, which are more constrained than the other types:
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// Shortcut for pay-to-script-hash, which are more constrained than the other types:
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@ -1232,6 +1237,12 @@ bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, vector<vector<unsi
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else
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else
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break;
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break;
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}
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}
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else if (opcode2 == OP_SMALLDATA)
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{
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// small pushdata, <= 80 bytes
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if (vch1.size() > 80)
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break;
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}
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else if (opcode1 != opcode2 || vch1 != vch2)
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else if (opcode1 != opcode2 || vch1 != vch2)
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{
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{
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// Others must match exactly
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// Others must match exactly
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@ -1294,6 +1305,7 @@ bool Solver(const CKeyStore& keystore, const CScript& scriptPubKey, uint256 hash
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switch (whichTypeRet)
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switch (whichTypeRet)
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{
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{
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case TX_NONSTANDARD:
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case TX_NONSTANDARD:
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case TX_NULL_DATA:
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return false;
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return false;
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case TX_PUBKEY:
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case TX_PUBKEY:
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keyID = CPubKey(vSolutions[0]).GetID();
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keyID = CPubKey(vSolutions[0]).GetID();
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@ -1325,6 +1337,8 @@ int ScriptSigArgsExpected(txnouttype t, const std::vector<std::vector<unsigned c
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{
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{
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case TX_NONSTANDARD:
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case TX_NONSTANDARD:
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return -1;
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return -1;
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case TX_NULL_DATA:
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return 1;
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case TX_PUBKEY:
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case TX_PUBKEY:
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return 1;
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return 1;
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case TX_PUBKEYHASH:
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case TX_PUBKEYHASH:
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@ -1339,10 +1353,9 @@ int ScriptSigArgsExpected(txnouttype t, const std::vector<std::vector<unsigned c
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return -1;
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return -1;
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}
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}
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bool IsStandard(const CScript& scriptPubKey)
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bool IsStandard(const CScript& scriptPubKey, txnouttype& whichType)
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{
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{
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vector<valtype> vSolutions;
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vector<valtype> vSolutions;
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txnouttype whichType;
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if (!Solver(scriptPubKey, whichType, vSolutions))
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if (!Solver(scriptPubKey, whichType, vSolutions))
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return false;
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return false;
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@ -1401,6 +1414,7 @@ bool IsMine(const CKeyStore &keystore, const CScript& scriptPubKey)
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switch (whichType)
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switch (whichType)
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{
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{
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case TX_NONSTANDARD:
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case TX_NONSTANDARD:
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case TX_NULL_DATA:
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return false;
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return false;
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case TX_PUBKEY:
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case TX_PUBKEY:
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keyID = CPubKey(vSolutions[0]).GetID();
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keyID = CPubKey(vSolutions[0]).GetID();
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@ -1462,6 +1476,8 @@ bool ExtractDestinations(const CScript& scriptPubKey, txnouttype& typeRet, vecto
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vector<valtype> vSolutions;
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vector<valtype> vSolutions;
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if (!Solver(scriptPubKey, typeRet, vSolutions))
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if (!Solver(scriptPubKey, typeRet, vSolutions))
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return false;
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return false;
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if (typeRet == TX_NULL_DATA)
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return true;
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if (typeRet == TX_MULTISIG)
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if (typeRet == TX_MULTISIG)
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{
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{
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@ -1677,6 +1693,7 @@ static CScript CombineSignatures(CScript scriptPubKey, const CTransaction& txTo,
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switch (txType)
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switch (txType)
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{
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{
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case TX_NONSTANDARD:
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case TX_NONSTANDARD:
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case TX_NULL_DATA:
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// Don't know anything about this, assume bigger one is correct:
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// Don't know anything about this, assume bigger one is correct:
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if (sigs1.size() >= sigs2.size())
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if (sigs1.size() >= sigs2.size())
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return PushAll(sigs1);
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return PushAll(sigs1);
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@ -46,6 +46,7 @@ enum txnouttype
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TX_PUBKEYHASH,
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TX_PUBKEYHASH,
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TX_SCRIPTHASH,
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TX_SCRIPTHASH,
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TX_MULTISIG,
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TX_MULTISIG,
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TX_NULL_DATA,
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};
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};
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class CNoDestination {
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class CNoDestination {
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@ -202,6 +203,7 @@ enum opcodetype
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// template matching params
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// template matching params
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OP_SMALLDATA = 0xf9,
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OP_SMALLINTEGER = 0xfa,
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OP_SMALLINTEGER = 0xfa,
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OP_PUBKEYS = 0xfb,
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OP_PUBKEYS = 0xfb,
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OP_PUBKEYHASH = 0xfd,
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OP_PUBKEYHASH = 0xfd,
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@ -683,7 +685,7 @@ bool IsCanonicalSignature(const std::vector<unsigned char> &vchSig, unsigned int
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bool EvalScript(std::vector<std::vector<unsigned char> >& stack, const CScript& script, const CTransaction& txTo, unsigned int nIn, unsigned int flags, int nHashType);
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bool EvalScript(std::vector<std::vector<unsigned char> >& stack, const CScript& script, const CTransaction& txTo, unsigned int nIn, unsigned int flags, int nHashType);
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bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, std::vector<std::vector<unsigned char> >& vSolutionsRet);
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bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, std::vector<std::vector<unsigned char> >& vSolutionsRet);
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int ScriptSigArgsExpected(txnouttype t, const std::vector<std::vector<unsigned char> >& vSolutions);
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int ScriptSigArgsExpected(txnouttype t, const std::vector<std::vector<unsigned char> >& vSolutions);
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bool IsStandard(const CScript& scriptPubKey);
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bool IsStandard(const CScript& scriptPubKey, txnouttype& whichType);
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bool IsMine(const CKeyStore& keystore, const CScript& scriptPubKey);
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bool IsMine(const CKeyStore& keystore, const CScript& scriptPubKey);
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bool IsMine(const CKeyStore& keystore, const CTxDestination &dest);
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bool IsMine(const CKeyStore& keystore, const CTxDestination &dest);
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void ExtractAffectedKeys(const CKeyStore &keystore, const CScript& scriptPubKey, std::vector<CKeyID> &vKeys);
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void ExtractAffectedKeys(const CKeyStore &keystore, const CScript& scriptPubKey, std::vector<CKeyID> &vKeys);
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@ -133,21 +133,23 @@ BOOST_AUTO_TEST_CASE(multisig_IsStandard)
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for (int i = 0; i < 4; i++)
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for (int i = 0; i < 4; i++)
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key[i].MakeNewKey(true);
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key[i].MakeNewKey(true);
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txnouttype whichType;
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CScript a_and_b;
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CScript a_and_b;
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a_and_b << OP_2 << key[0].GetPubKey() << key[1].GetPubKey() << OP_2 << OP_CHECKMULTISIG;
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a_and_b << OP_2 << key[0].GetPubKey() << key[1].GetPubKey() << OP_2 << OP_CHECKMULTISIG;
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BOOST_CHECK(::IsStandard(a_and_b));
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BOOST_CHECK(::IsStandard(a_and_b, whichType));
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CScript a_or_b;
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CScript a_or_b;
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a_or_b << OP_1 << key[0].GetPubKey() << key[1].GetPubKey() << OP_2 << OP_CHECKMULTISIG;
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a_or_b << OP_1 << key[0].GetPubKey() << key[1].GetPubKey() << OP_2 << OP_CHECKMULTISIG;
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BOOST_CHECK(::IsStandard(a_or_b));
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BOOST_CHECK(::IsStandard(a_or_b, whichType));
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CScript escrow;
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CScript escrow;
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escrow << OP_2 << key[0].GetPubKey() << key[1].GetPubKey() << key[2].GetPubKey() << OP_3 << OP_CHECKMULTISIG;
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escrow << OP_2 << key[0].GetPubKey() << key[1].GetPubKey() << key[2].GetPubKey() << OP_3 << OP_CHECKMULTISIG;
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BOOST_CHECK(::IsStandard(escrow));
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BOOST_CHECK(::IsStandard(escrow, whichType));
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CScript one_of_four;
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CScript one_of_four;
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one_of_four << OP_1 << key[0].GetPubKey() << key[1].GetPubKey() << key[2].GetPubKey() << key[3].GetPubKey() << OP_4 << OP_CHECKMULTISIG;
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one_of_four << OP_1 << key[0].GetPubKey() << key[1].GetPubKey() << key[2].GetPubKey() << key[3].GetPubKey() << OP_4 << OP_CHECKMULTISIG;
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BOOST_CHECK(!::IsStandard(one_of_four));
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BOOST_CHECK(!::IsStandard(one_of_four, whichType));
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CScript malformed[6];
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CScript malformed[6];
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malformed[0] << OP_3 << key[0].GetPubKey() << key[1].GetPubKey() << OP_2 << OP_CHECKMULTISIG;
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malformed[0] << OP_3 << key[0].GetPubKey() << key[1].GetPubKey() << OP_2 << OP_CHECKMULTISIG;
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@ -158,7 +160,7 @@ BOOST_AUTO_TEST_CASE(multisig_IsStandard)
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malformed[5] << OP_1 << key[0].GetPubKey() << key[1].GetPubKey();
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malformed[5] << OP_1 << key[0].GetPubKey() << key[1].GetPubKey();
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for (int i = 0; i < 6; i++)
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for (int i = 0; i < 6; i++)
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BOOST_CHECK(!::IsStandard(malformed[i]));
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BOOST_CHECK(!::IsStandard(malformed[i], whichType));
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}
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}
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BOOST_AUTO_TEST_CASE(multisig_Solver1)
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BOOST_AUTO_TEST_CASE(multisig_Solver1)
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@ -273,6 +273,20 @@ BOOST_AUTO_TEST_CASE(test_IsStandard)
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t.vout[0].scriptPubKey = CScript() << OP_1;
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t.vout[0].scriptPubKey = CScript() << OP_1;
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BOOST_CHECK(!IsStandardTx(t, reason));
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BOOST_CHECK(!IsStandardTx(t, reason));
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// 80-byte TX_NULL_DATA (standard)
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t.vout[0].scriptPubKey = CScript() << OP_RETURN << ParseHex("04678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef3804678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef38");
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BOOST_CHECK(IsStandardTx(t, reason));
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// 81-byte TX_NULL_DATA (non-standard)
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t.vout[0].scriptPubKey = CScript() << OP_RETURN << ParseHex("04678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef3804678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef3800");
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BOOST_CHECK(!IsStandardTx(t, reason));
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// Only one TX_NULL_DATA permitted
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t.vout.resize(2);
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t.vout[0].scriptPubKey = CScript() << OP_RETURN << ParseHex("04678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef3804678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef38");
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t.vout[1].scriptPubKey = CScript() << OP_RETURN << ParseHex("04678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef3804678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef38");
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BOOST_CHECK(!IsStandardTx(t, reason));
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}
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}
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BOOST_AUTO_TEST_SUITE_END()
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BOOST_AUTO_TEST_SUITE_END()
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