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https://github.com/dashpay/dash.git
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Refactor: Remove using namespace <xxx> from script/
This commit is contained in:
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f3c264e9a6
commit
8cbfc4e472
@ -13,9 +13,7 @@
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#include "script/script.h"
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#include "uint256.h"
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using namespace std;
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typedef vector<unsigned char> valtype;
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typedef std::vector<unsigned char> valtype;
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namespace {
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@ -56,10 +54,10 @@ bool CastToBool(const valtype& vch)
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*/
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#define stacktop(i) (stack.at(stack.size()+(i)))
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#define altstacktop(i) (altstack.at(altstack.size()+(i)))
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static inline void popstack(vector<valtype>& stack)
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static inline void popstack(std::vector<valtype>& stack)
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{
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if (stack.empty())
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throw runtime_error("popstack(): stack empty");
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throw std::runtime_error("popstack(): stack empty");
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stack.pop_back();
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}
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@ -194,7 +192,7 @@ bool static IsDefinedHashtypeSignature(const valtype &vchSig) {
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return true;
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}
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bool CheckSignatureEncoding(const vector<unsigned char> &vchSig, unsigned int flags, ScriptError* serror) {
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bool CheckSignatureEncoding(const std::vector<unsigned char> &vchSig, unsigned int flags, ScriptError* serror) {
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// Empty signature. Not strictly DER encoded, but allowed to provide a
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// compact way to provide an invalid signature for use with CHECK(MULTI)SIG
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if (vchSig.size() == 0) {
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@ -245,7 +243,7 @@ bool static CheckMinimalPush(const valtype& data, opcodetype opcode) {
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return true;
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}
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bool EvalScript(vector<vector<unsigned char> >& stack, const CScript& script, unsigned int flags, const BaseSignatureChecker& checker, SigVersion sigversion, ScriptError* serror)
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bool EvalScript(std::vector<std::vector<unsigned char> >& stack, const CScript& script, unsigned int flags, const BaseSignatureChecker& checker, SigVersion sigversion, ScriptError* serror)
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{
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static const CScriptNum bnZero(0);
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static const CScriptNum bnOne(1);
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@ -260,8 +258,8 @@ bool EvalScript(vector<vector<unsigned char> >& stack, const CScript& script, un
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CScript::const_iterator pbegincodehash = script.begin();
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opcodetype opcode;
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valtype vchPushValue;
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vector<bool> vfExec;
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vector<valtype> altstack;
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std::vector<bool> vfExec;
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std::vector<valtype> altstack;
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set_error(serror, SCRIPT_ERR_UNKNOWN_ERROR);
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if (script.size() > MAX_SCRIPT_SIZE)
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return set_error(serror, SCRIPT_ERR_SCRIPT_SIZE);
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@ -1250,14 +1248,14 @@ bool TransactionSignatureChecker::VerifySignature(const std::vector<unsigned cha
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return pubkey.Verify(sighash, vchSig);
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}
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bool TransactionSignatureChecker::CheckSig(const vector<unsigned char>& vchSigIn, const vector<unsigned char>& vchPubKey, const CScript& scriptCode, SigVersion sigversion) const
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bool TransactionSignatureChecker::CheckSig(const std::vector<unsigned char>& vchSigIn, const std::vector<unsigned char>& vchPubKey, const CScript& scriptCode, SigVersion sigversion) const
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{
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CPubKey pubkey(vchPubKey);
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if (!pubkey.IsValid())
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return false;
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// Hash type is one byte tacked on to the end of the signature
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vector<unsigned char> vchSig(vchSigIn);
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std::vector<unsigned char> vchSig(vchSigIn);
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if (vchSig.empty())
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return false;
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int nHashType = vchSig.back();
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@ -1355,7 +1353,7 @@ bool TransactionSignatureChecker::CheckSequence(const CScriptNum& nSequence) con
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static bool VerifyWitnessProgram(const CScriptWitness& witness, int witversion, const std::vector<unsigned char>& program, unsigned int flags, const BaseSignatureChecker& checker, ScriptError* serror)
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{
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vector<vector<unsigned char> > stack;
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std::vector<std::vector<unsigned char> > stack;
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CScript scriptPubKey;
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if (witversion == 0) {
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@ -1420,7 +1418,7 @@ bool VerifyScript(const CScript& scriptSig, const CScript& scriptPubKey, const C
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return set_error(serror, SCRIPT_ERR_SIG_PUSHONLY);
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}
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vector<vector<unsigned char> > stack, stackCopy;
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std::vector<std::vector<unsigned char> > stack, stackCopy;
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if (!EvalScript(stack, scriptSig, flags, checker, SIGVERSION_BASE, serror))
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// serror is set
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return false;
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@ -1558,7 +1556,7 @@ size_t CountWitnessSigOps(const CScript& scriptSig, const CScript& scriptPubKey,
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if (scriptPubKey.IsPayToScriptHash() && scriptSig.IsPushOnly()) {
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CScript::const_iterator pc = scriptSig.begin();
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vector<unsigned char> data;
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std::vector<unsigned char> data;
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while (pc < scriptSig.end()) {
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opcodetype opcode;
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scriptSig.GetOp(pc, opcode, data);
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@ -13,11 +13,9 @@
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#include <boost/foreach.hpp>
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using namespace std;
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typedef std::vector<unsigned char> valtype;
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typedef vector<unsigned char> valtype;
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unsigned int HaveKeys(const vector<valtype>& pubkeys, const CKeyStore& keystore)
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unsigned int HaveKeys(const std::vector<valtype>& pubkeys, const CKeyStore& keystore)
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{
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unsigned int nResult = 0;
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BOOST_FOREACH(const valtype& pubkey, pubkeys)
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@ -49,7 +47,7 @@ isminetype IsMine(const CKeyStore &keystore, const CTxDestination& dest, bool& i
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isminetype IsMine(const CKeyStore &keystore, const CScript& scriptPubKey, bool& isInvalid, SigVersion sigversion)
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{
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vector<valtype> vSolutions;
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std::vector<valtype> vSolutions;
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txnouttype whichType;
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if (!Solver(scriptPubKey, whichType, vSolutions)) {
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if (keystore.HaveWatchOnly(scriptPubKey))
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@ -132,7 +130,7 @@ isminetype IsMine(const CKeyStore &keystore, const CScript& scriptPubKey, bool&
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// partially owned (somebody else has a key that can spend
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// them) enable spend-out-from-under-you attacks, especially
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// in shared-wallet situations.
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vector<valtype> keys(vSolutions.begin()+1, vSolutions.begin()+vSolutions.size()-1);
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std::vector<valtype> keys(vSolutions.begin()+1, vSolutions.begin()+vSolutions.size()-1);
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if (sigversion != SIGVERSION_BASE) {
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for (size_t i = 0; i < keys.size(); i++) {
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if (keys[i].size() != 33) {
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@ -8,8 +8,6 @@
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#include "tinyformat.h"
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#include "utilstrencodings.h"
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using namespace std;
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const char* GetOpName(opcodetype opcode)
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{
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switch (opcode)
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@ -186,7 +184,7 @@ unsigned int CScript::GetSigOpCount(const CScript& scriptSig) const
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// get the last item that the scriptSig
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// pushes onto the stack:
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const_iterator pc = scriptSig.begin();
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vector<unsigned char> vData;
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std::vector<unsigned char> vData;
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while (pc < scriptSig.end())
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{
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opcodetype opcode;
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@ -14,8 +14,6 @@
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#include <boost/foreach.hpp>
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using namespace std;
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typedef std::vector<unsigned char> valtype;
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TransactionSignatureCreator::TransactionSignatureCreator(const CKeyStore* keystoreIn, const CTransaction* txToIn, unsigned int nInIn, const CAmount& amountIn, int nHashTypeIn) : BaseSignatureCreator(keystoreIn), txTo(txToIn), nIn(nInIn), nHashType(nHashTypeIn), amount(amountIn), checker(txTo, nIn, amountIn) {}
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@ -39,14 +37,14 @@ bool TransactionSignatureCreator::CreateSig(std::vector<unsigned char>& vchSig,
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static bool Sign1(const CKeyID& address, const BaseSignatureCreator& creator, const CScript& scriptCode, std::vector<valtype>& ret, SigVersion sigversion)
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{
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vector<unsigned char> vchSig;
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std::vector<unsigned char> vchSig;
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if (!creator.CreateSig(vchSig, address, scriptCode, sigversion))
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return false;
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ret.push_back(vchSig);
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return true;
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}
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static bool SignN(const vector<valtype>& multisigdata, const BaseSignatureCreator& creator, const CScript& scriptCode, std::vector<valtype>& ret, SigVersion sigversion)
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static bool SignN(const std::vector<valtype>& multisigdata, const BaseSignatureCreator& creator, const CScript& scriptCode, std::vector<valtype>& ret, SigVersion sigversion)
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{
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int nSigned = 0;
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int nRequired = multisigdata.front()[0];
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@ -73,7 +71,7 @@ static bool SignStep(const BaseSignatureCreator& creator, const CScript& scriptP
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uint160 h160;
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ret.clear();
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vector<valtype> vSolutions;
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std::vector<valtype> vSolutions;
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if (!Solver(scriptPubKey, whichTypeRet, vSolutions))
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return false;
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@ -125,7 +123,7 @@ static bool SignStep(const BaseSignatureCreator& creator, const CScript& scriptP
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}
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}
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static CScript PushAll(const vector<valtype>& values)
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static CScript PushAll(const std::vector<valtype>& values)
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{
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CScript result;
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BOOST_FOREACH(const valtype& v, values) {
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@ -228,12 +226,12 @@ bool SignSignature(const CKeyStore &keystore, const CTransaction& txFrom, CMutab
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return SignSignature(keystore, txout.scriptPubKey, txTo, nIn, txout.nValue, nHashType);
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}
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static vector<valtype> CombineMultisig(const CScript& scriptPubKey, const BaseSignatureChecker& checker,
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const vector<valtype>& vSolutions,
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const vector<valtype>& sigs1, const vector<valtype>& sigs2, SigVersion sigversion)
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static std::vector<valtype> CombineMultisig(const CScript& scriptPubKey, const BaseSignatureChecker& checker,
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const std::vector<valtype>& vSolutions,
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const std::vector<valtype>& sigs1, const std::vector<valtype>& sigs2, SigVersion sigversion)
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{
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// Combine all the signatures we've got:
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set<valtype> allsigs;
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std::set<valtype> allsigs;
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BOOST_FOREACH(const valtype& v, sigs1)
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{
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if (!v.empty())
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@ -249,7 +247,7 @@ static vector<valtype> CombineMultisig(const CScript& scriptPubKey, const BaseSi
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assert(vSolutions.size() > 1);
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unsigned int nSigsRequired = vSolutions.front()[0];
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unsigned int nPubKeys = vSolutions.size()-2;
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map<valtype, valtype> sigs;
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std::map<valtype, valtype> sigs;
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BOOST_FOREACH(const valtype& sig, allsigs)
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{
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for (unsigned int i = 0; i < nPubKeys; i++)
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@ -306,7 +304,7 @@ struct Stacks
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}
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static Stacks CombineSignatures(const CScript& scriptPubKey, const BaseSignatureChecker& checker,
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const txnouttype txType, const vector<valtype>& vSolutions,
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const txnouttype txType, const std::vector<valtype>& vSolutions,
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Stacks sigs1, Stacks sigs2, SigVersion sigversion)
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{
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switch (txType)
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@ -340,7 +338,7 @@ static Stacks CombineSignatures(const CScript& scriptPubKey, const BaseSignature
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CScript pubKey2(spk.begin(), spk.end());
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txnouttype txType2;
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vector<vector<unsigned char> > vSolutions2;
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std::vector<std::vector<unsigned char> > vSolutions2;
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Solver(pubKey2, txType2, vSolutions2);
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sigs1.script.pop_back();
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sigs2.script.pop_back();
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@ -360,7 +358,7 @@ static Stacks CombineSignatures(const CScript& scriptPubKey, const BaseSignature
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// Recur to combine:
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CScript pubKey2(sigs1.witness.back().begin(), sigs1.witness.back().end());
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txnouttype txType2;
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vector<valtype> vSolutions2;
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std::vector<valtype> vSolutions2;
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Solver(pubKey2, txType2, vSolutions2);
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sigs1.witness.pop_back();
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sigs1.script = sigs1.witness;
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@ -383,7 +381,7 @@ SignatureData CombineSignatures(const CScript& scriptPubKey, const BaseSignature
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const SignatureData& scriptSig1, const SignatureData& scriptSig2)
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{
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txnouttype txType;
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vector<vector<unsigned char> > vSolutions;
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std::vector<std::vector<unsigned char> > vSolutions;
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Solver(scriptPubKey, txType, vSolutions);
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return CombineSignatures(scriptPubKey, checker, txType, vSolutions, Stacks(scriptSig1), Stacks(scriptSig2), SIGVERSION_BASE).Output();
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@ -12,9 +12,7 @@
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#include <boost/foreach.hpp>
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using namespace std;
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typedef vector<unsigned char> valtype;
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typedef std::vector<unsigned char> valtype;
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bool fAcceptDatacarrier = DEFAULT_ACCEPT_DATACARRIER;
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unsigned nMaxDatacarrierBytes = MAX_OP_RETURN_RELAY;
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@ -40,20 +38,20 @@ const char* GetTxnOutputType(txnouttype t)
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/**
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* Return public keys or hashes from scriptPubKey, for 'standard' transaction types.
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*/
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bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, vector<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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{
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// Templates
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static multimap<txnouttype, CScript> mTemplates;
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static std::multimap<txnouttype, CScript> mTemplates;
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if (mTemplates.empty())
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{
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// Standard tx, sender provides pubkey, receiver adds signature
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mTemplates.insert(make_pair(TX_PUBKEY, CScript() << OP_PUBKEY << OP_CHECKSIG));
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mTemplates.insert(std::make_pair(TX_PUBKEY, CScript() << OP_PUBKEY << OP_CHECKSIG));
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// Bitcoin address tx, sender provides hash of pubkey, receiver provides signature and pubkey
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mTemplates.insert(make_pair(TX_PUBKEYHASH, CScript() << OP_DUP << OP_HASH160 << OP_PUBKEYHASH << OP_EQUALVERIFY << OP_CHECKSIG));
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mTemplates.insert(std::make_pair(TX_PUBKEYHASH, CScript() << OP_DUP << OP_HASH160 << OP_PUBKEYHASH << OP_EQUALVERIFY << OP_CHECKSIG));
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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(std::make_pair(TX_MULTISIG, CScript() << OP_SMALLINTEGER << OP_PUBKEYS << OP_SMALLINTEGER << OP_CHECKMULTISIG));
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}
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vSolutionsRet.clear();
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@ -63,7 +61,7 @@ bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, vector<vector<unsi
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if (scriptPubKey.IsPayToScriptHash())
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{
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typeRet = TX_SCRIPTHASH;
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vector<unsigned char> hashBytes(scriptPubKey.begin()+2, scriptPubKey.begin()+22);
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std::vector<unsigned char> hashBytes(scriptPubKey.begin()+2, scriptPubKey.begin()+22);
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vSolutionsRet.push_back(hashBytes);
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return true;
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}
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@ -102,7 +100,7 @@ bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, vector<vector<unsi
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vSolutionsRet.clear();
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opcodetype opcode1, opcode2;
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vector<unsigned char> vch1, vch2;
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std::vector<unsigned char> vch1, vch2;
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// Compare
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CScript::const_iterator pc1 = script1.begin();
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@ -181,7 +179,7 @@ bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, vector<vector<unsi
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bool ExtractDestination(const CScript& scriptPubKey, CTxDestination& addressRet)
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{
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vector<valtype> vSolutions;
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std::vector<valtype> vSolutions;
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txnouttype whichType;
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if (!Solver(scriptPubKey, whichType, vSolutions))
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return false;
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@ -209,11 +207,11 @@ bool ExtractDestination(const CScript& scriptPubKey, CTxDestination& addressRet)
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return false;
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}
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bool ExtractDestinations(const CScript& scriptPubKey, txnouttype& typeRet, vector<CTxDestination>& addressRet, int& nRequiredRet)
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bool ExtractDestinations(const CScript& scriptPubKey, txnouttype& typeRet, std::vector<CTxDestination>& addressRet, int& nRequiredRet)
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{
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addressRet.clear();
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typeRet = TX_NONSTANDARD;
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vector<valtype> vSolutions;
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std::vector<valtype> vSolutions;
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if (!Solver(scriptPubKey, typeRet, vSolutions))
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return false;
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if (typeRet == TX_NULL_DATA){
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