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Replace CTxInUndo with Coin
The earlier CTxInUndo class now holds the same information as the Coin class. Instead of duplicating functionality, replace CTxInUndo with a serialization adapter for Coin.
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@ -17,7 +17,7 @@
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#include <boost/test/unit_test.hpp>
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int ApplyTxInUndo(const CTxInUndo& undo, CCoinsViewCache& view, const COutPoint& out);
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int ApplyTxInUndo(const Coin& undo, CCoinsViewCache& view, const COutPoint& out);
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void UpdateCoins(const CTransaction& tx, CCoinsViewCache& inputs, CTxUndo &txundo, int nHeight);
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namespace
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@ -371,7 +371,7 @@ BOOST_AUTO_TEST_CASE(updatecoins_simulation_test)
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// restore inputs
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if (!tx.IsCoinBase()) {
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const COutPoint &out = tx.vin[0].prevout;
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const CTxInUndo &undoin = undo.vprevout[0];
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const Coin &undoin = undo.vprevout[0];
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ApplyTxInUndo(undoin, *(stack.back()), out);
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}
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// Store as a candidate for reconnection
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77
src/undo.h
77
src/undo.h
@ -7,61 +7,90 @@
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#define BITCOIN_UNDO_H
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#include "compressor.h"
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#include "consensus/consensus.h"
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#include "primitives/transaction.h"
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#include "serialize.h"
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/** Undo information for a CTxIn
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*
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* Contains the prevout's CTxOut being spent, and its metadata as well
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* (coinbase or not, height). Earlier versions also stored the transaction
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* version.
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* (coinbase or not, height). The serialization contains a dummy value of
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* zero. This is be compatible with older versions which expect to see
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* the transaction version there.
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*/
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class CTxInUndo
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class TxInUndoSerializer
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{
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const Coin* txout;
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public:
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CTxOut txout; // the txout data before being spent
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bool fCoinBase; // if the outpoint was the last unspent: whether it belonged to a coinbase
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unsigned int nHeight; // if the outpoint was the last unspent: its height
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CTxInUndo() : txout(), fCoinBase(false), nHeight(0) {}
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CTxInUndo(const CTxOut &txoutIn, bool fCoinBaseIn = false, unsigned int nHeightIn = 0) : txout(txoutIn), fCoinBase(fCoinBaseIn), nHeight(nHeightIn) { }
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template<typename Stream>
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void Serialize(Stream &s) const {
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::Serialize(s, VARINT(nHeight*2+(fCoinBase ? 1 : 0)));
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if (nHeight > 0) {
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int nVersionDummy = 0;
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::Serialize(s, VARINT(nVersionDummy));
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::Serialize(s, VARINT(txout->nHeight * 2 + (txout->fCoinBase ? 1 : 0)));
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if (txout->nHeight > 0) {
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// Required to maintain compatibility with older undo format.
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::Serialize(s, (unsigned char)0);
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}
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::Serialize(s, CTxOutCompressor(REF(txout)));
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::Serialize(s, CTxOutCompressor(REF(txout->out)));
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}
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TxInUndoSerializer(const Coin* coin) : txout(coin) {}
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};
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class TxInUndoDeserializer
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{
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Coin* txout;
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public:
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template<typename Stream>
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void Unserialize(Stream &s) {
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unsigned int nCode = 0;
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::Unserialize(s, VARINT(nCode));
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nHeight = nCode / 2;
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fCoinBase = nCode & 1;
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if (nHeight > 0) {
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txout->nHeight = nCode / 2;
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txout->fCoinBase = nCode & 1;
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if (txout->nHeight > 0) {
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// Old versions stored the version number for the last spend of
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// a transaction's outputs. Non-final spends were indicated with
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// height = 0.
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int nVersionDummy;
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::Unserialize(s, VARINT(nVersionDummy));
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}
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::Unserialize(s, REF(CTxOutCompressor(REF(txout))));
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::Unserialize(s, REF(CTxOutCompressor(REF(txout->out))));
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}
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TxInUndoDeserializer(Coin* coin) : txout(coin) {}
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};
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static const size_t MAX_INPUTS_PER_BLOCK = MAX_BLOCK_BASE_SIZE / ::GetSerializeSize(CTxIn(), SER_NETWORK, PROTOCOL_VERSION);
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/** Undo information for a CTransaction */
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class CTxUndo
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{
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public:
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// undo information for all txins
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std::vector<CTxInUndo> vprevout;
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std::vector<Coin> vprevout;
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ADD_SERIALIZE_METHODS;
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template <typename Stream>
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void Serialize(Stream& s) const {
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// TODO: avoid reimplementing vector serializer
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uint64_t count = vprevout.size();
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::Serialize(s, COMPACTSIZE(REF(count)));
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for (const auto& prevout : vprevout) {
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::Serialize(s, REF(TxInUndoSerializer(&prevout)));
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}
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}
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template <typename Stream, typename Operation>
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inline void SerializationOp(Stream& s, Operation ser_action) {
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READWRITE(vprevout);
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template <typename Stream>
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void Unserialize(Stream& s) {
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// TODO: avoid reimplementing vector deserializer
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uint64_t count = 0;
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::Unserialize(s, COMPACTSIZE(count));
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if (count > MAX_INPUTS_PER_BLOCK) {
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throw std::ios_base::failure("Too many input undo records");
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}
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vprevout.resize(count);
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for (auto& prevout : vprevout) {
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::Unserialize(s, REF(TxInUndoDeserializer(&prevout)));
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}
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}
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};
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@ -1080,11 +1080,9 @@ void UpdateCoins(const CTransaction& tx, CCoinsViewCache& inputs, CTxUndo &txund
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if (nPos >= coins->vout.size() || coins->vout[nPos].IsNull())
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assert(false);
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// mark an outpoint spent, and construct undo information
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txundo.vprevout.push_back(CTxInUndo(coins->vout[nPos]));
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coins->Spend(nPos);
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CTxInUndo& undo = txundo.vprevout.back();
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undo.nHeight = coins->nHeight;
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undo.fCoinBase = coins->fCoinBase;
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txundo.vprevout.emplace_back(coins->vout[nPos], coins->nHeight, coins->fCoinBase);
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bool ret = coins->Spend(nPos);
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assert(ret);
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}
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}
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// add outputs
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@ -1252,13 +1250,13 @@ enum DisconnectResult
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};
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/**
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* Apply the undo operation of a CTxInUndo to the given chain state.
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* @param undo The undo object.
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* Restore the UTXO in a Coin at a given COutPoint
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* @param undo The Coin to be restored.
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* @param view The coins view to which to apply the changes.
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* @param out The out point that corresponds to the tx input.
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* @return A DisconnectResult as an int
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*/
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int ApplyTxInUndo(const CTxInUndo& undo, CCoinsViewCache& view, const COutPoint& out)
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int ApplyTxInUndo(const Coin& undo, CCoinsViewCache& view, const COutPoint& out)
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{
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bool fClean = true;
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@ -1279,7 +1277,7 @@ int ApplyTxInUndo(const CTxInUndo& undo, CCoinsViewCache& view, const COutPoint&
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if (coins->IsAvailable(out.n)) fClean = false; // overwriting existing output
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if (coins->vout.size() < out.n+1)
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coins->vout.resize(out.n+1);
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coins->vout[out.n] = undo.txout;
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coins->vout[out.n] = undo.out;
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return fClean ? DISCONNECT_OK : DISCONNECT_UNCLEAN;
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}
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@ -1335,7 +1333,7 @@ static DisconnectResult DisconnectBlock(const CBlock& block, const CBlockIndex*
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}
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for (unsigned int j = tx.vin.size(); j-- > 0;) {
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const COutPoint &out = tx.vin[j].prevout;
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const CTxInUndo &undo = txundo.vprevout[j];
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const Coin &undo = txundo.vprevout[j];
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int res = ApplyTxInUndo(undo, view, out);
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if (res == DISCONNECT_FAILED) return DISCONNECT_FAILED;
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fClean = fClean && res != DISCONNECT_UNCLEAN;
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