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Separate CheckLockTime() and CheckSequence() logic
For the sake of a little repetition, make code more readable.
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@ -1157,33 +1157,27 @@ bool TransactionSignatureChecker::CheckSig(const vector<unsigned char>& vchSigIn
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return true;
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}
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static bool VerifyLockTime(int64_t txToLockTime, int64_t nThreshold, const CScriptNum& nLockTime)
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bool TransactionSignatureChecker::CheckLockTime(const CScriptNum& nLockTime) const
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{
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// There are two kinds of nLockTime: lock-by-blockheight
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// and lock-by-blocktime, distinguished by whether
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// nLockTime < nThreshold (either LOCKTIME_THRESHOLD or
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// CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG).
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// nLockTime < LOCKTIME_THRESHOLD.
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//
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// We want to compare apples to apples, so fail the script
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// unless the type of nLockTime being tested is the same as
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// the nLockTime in the transaction.
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if (!(
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(txToLockTime < nThreshold && nLockTime < nThreshold) ||
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(txToLockTime >= nThreshold && nLockTime >= nThreshold)
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(txTo->nLockTime < LOCKTIME_THRESHOLD && nLockTime < LOCKTIME_THRESHOLD) ||
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(txTo->nLockTime >= LOCKTIME_THRESHOLD && nLockTime >= LOCKTIME_THRESHOLD)
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))
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return false;
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// Now that we know we're comparing apples-to-apples, the
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// comparison is a simple numeric one.
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if (nLockTime > txToLockTime)
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if (nLockTime > (int64_t)txTo->nLockTime)
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return false;
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return true;
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}
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bool TransactionSignatureChecker::CheckLockTime(const CScriptNum& nLockTime) const
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{
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// The nLockTime feature can be disabled and thus
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// Finally the nLockTime feature can be disabled and thus
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// CHECKLOCKTIMEVERIFY bypassed if every txin has been
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// finalized by setting nSequence to maxint. The
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// transaction would be allowed into the blockchain, making
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@ -1196,9 +1190,6 @@ bool TransactionSignatureChecker::CheckLockTime(const CScriptNum& nLockTime) con
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if (CTxIn::SEQUENCE_FINAL == txTo->vin[nIn].nSequence)
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return false;
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if (!::VerifyLockTime((int64_t)txTo->nLockTime, LOCKTIME_THRESHOLD, nLockTime))
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return false;
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return true;
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}
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@ -1221,17 +1212,32 @@ bool TransactionSignatureChecker::CheckSequence(const CScriptNum& nSequence) con
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return false;
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// Mask off any bits that do not have consensus-enforced meaning
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// before doing the integer comparisons of ::VerifyLockTime.
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const uint32_t nLockTimeMask = CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG
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| CTxIn::SEQUENCE_LOCKTIME_MASK;
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// before doing the integer comparisons
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const uint32_t nLockTimeMask = CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG | CTxIn::SEQUENCE_LOCKTIME_MASK;
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const int64_t txToSequenceMasked = txToSequence & nLockTimeMask;
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const CScriptNum nSequenceMasked = nSequence & nLockTimeMask;
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if (!::VerifyLockTime(txToSequence & nLockTimeMask, CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG, nSequence & nLockTimeMask))
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// There are two kinds of nSequence: lock-by-blockheight
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// and lock-by-blocktime, distinguished by whether
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// nSequenceMasked < CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG.
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//
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// We want to compare apples to apples, so fail the script
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// unless the type of nSequenceMasked being tested is the same as
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// the nSequenceMasked in the transaction.
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if (!(
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(txToSequenceMasked < CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG && nSequenceMasked < CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG) ||
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(txToSequenceMasked >= CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG && nSequenceMasked >= CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG)
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))
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return false;
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// Now that we know we're comparing apples-to-apples, the
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// comparison is a simple numeric one.
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if (nSequenceMasked > txToSequenceMasked)
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return false;
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return true;
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}
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bool VerifyScript(const CScript& scriptSig, const CScript& scriptPubKey, unsigned int flags, const BaseSignatureChecker& checker, ScriptError* serror)
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{
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set_error(serror, SCRIPT_ERR_UNKNOWN_ERROR);
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