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Remove ModifyCoins/ModifyNewCoins
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961e483979
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@ -60,12 +60,7 @@ size_t CCoinsViewBacked::EstimateSize() const { return base->EstimateSize(); }
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SaltedTxidHasher::SaltedTxidHasher() : k0(GetRand(std::numeric_limits<uint64_t>::max())), k1(GetRand(std::numeric_limits<uint64_t>::max())) {}
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CCoinsViewCache::CCoinsViewCache(CCoinsView *baseIn) : CCoinsViewBacked(baseIn), hasModifier(false), cachedCoinsUsage(0) { }
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CCoinsViewCache::~CCoinsViewCache()
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{
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assert(!hasModifier);
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}
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CCoinsViewCache::CCoinsViewCache(CCoinsView *baseIn) : CCoinsViewBacked(baseIn), cachedCoinsUsage(0) { }
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size_t CCoinsViewCache::DynamicMemoryUsage() const {
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return memusage::DynamicUsage(cacheCoins) + cachedCoinsUsage;
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@ -98,62 +93,6 @@ bool CCoinsViewCache::GetCoins(const uint256 &txid, CCoins &coins) const {
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return false;
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}
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CCoinsModifier CCoinsViewCache::ModifyCoins(const uint256 &txid) {
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assert(!hasModifier);
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std::pair<CCoinsMap::iterator, bool> ret = cacheCoins.insert(std::make_pair(txid, CCoinsCacheEntry()));
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size_t cachedCoinUsage = 0;
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if (ret.second) {
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if (!base->GetCoins(txid, ret.first->second.coins)) {
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// The parent view does not have this entry; mark it as fresh.
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ret.first->second.coins.Clear();
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ret.first->second.flags = CCoinsCacheEntry::FRESH;
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} else if (ret.first->second.coins.IsPruned()) {
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// The parent view only has a pruned entry for this; mark it as fresh.
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ret.first->second.flags = CCoinsCacheEntry::FRESH;
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}
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} else {
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cachedCoinUsage = ret.first->second.coins.DynamicMemoryUsage();
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}
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// Assume that whenever ModifyCoins is called, the entry will be modified.
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ret.first->second.flags |= CCoinsCacheEntry::DIRTY;
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return CCoinsModifier(*this, ret.first, cachedCoinUsage);
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}
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/* ModifyNewCoins allows for faster coin modification when creating the new
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* outputs from a transaction. It assumes that BIP 30 (no duplicate txids)
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* applies and has already been tested for (or the test is not required due to
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* BIP 34, height in coinbase). If we can assume BIP 30 then we know that any
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* non-coinbase transaction we are adding to the UTXO must not already exist in
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* the utxo unless it is fully spent. Thus we can check only if it exists DIRTY
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* at the current level of the cache, in which case it is not safe to mark it
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* FRESH (b/c then its spentness still needs to flushed). If it's not dirty and
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* doesn't exist or is pruned in the current cache, we know it either doesn't
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* exist or is pruned in parent caches, which is the definition of FRESH. The
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* exception to this is the two historical violations of BIP 30 in the chain,
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* both of which were coinbases. We do not mark these fresh so we we can ensure
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* that they will still be properly overwritten when spent.
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*/
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CCoinsModifier CCoinsViewCache::ModifyNewCoins(const uint256 &txid, bool coinbase) {
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assert(!hasModifier);
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std::pair<CCoinsMap::iterator, bool> ret = cacheCoins.insert(std::make_pair(txid, CCoinsCacheEntry()));
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if (!coinbase) {
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// New coins must not already exist.
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if (!ret.first->second.coins.IsPruned())
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throw std::logic_error("ModifyNewCoins should not find pre-existing coins on a non-coinbase unless they are pruned!");
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if (!(ret.first->second.flags & CCoinsCacheEntry::DIRTY)) {
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// If the coin is known to be pruned (have no unspent outputs) in
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// the current view and the cache entry is not dirty, we know the
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// coin also must be pruned in the parent view as well, so it is safe
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// to mark this fresh.
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ret.first->second.flags |= CCoinsCacheEntry::FRESH;
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}
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}
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ret.first->second.coins.Clear();
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ret.first->second.flags |= CCoinsCacheEntry::DIRTY;
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return CCoinsModifier(*this, ret.first, 0);
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}
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void CCoinsViewCache::AddCoin(const COutPoint &outpoint, Coin&& coin, bool possible_overwrite) {
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assert(!coin.IsPruned());
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if (coin.out.scriptPubKey.IsUnspendable()) return;
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@ -257,7 +196,6 @@ void CCoinsViewCache::SetBestBlock(const uint256 &hashBlockIn) {
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}
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bool CCoinsViewCache::BatchWrite(CCoinsMap &mapCoins, const uint256 &hashBlockIn) {
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assert(!hasModifier);
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for (CCoinsMap::iterator it = mapCoins.begin(); it != mapCoins.end();) {
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if (it->second.flags & CCoinsCacheEntry::DIRTY) { // Ignore non-dirty entries (optimization).
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CCoinsMap::iterator itUs = cacheCoins.find(it->first);
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@ -366,25 +304,6 @@ bool CCoinsViewCache::HaveInputs(const CTransaction& tx) const
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return true;
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}
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CCoinsModifier::CCoinsModifier(CCoinsViewCache& cache_, CCoinsMap::iterator it_, size_t usage) : cache(cache_), it(it_), cachedCoinUsage(usage) {
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assert(!cache.hasModifier);
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cache.hasModifier = true;
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}
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CCoinsModifier::~CCoinsModifier()
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{
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assert(cache.hasModifier);
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cache.hasModifier = false;
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it->second.coins.Cleanup();
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cache.cachedCoinsUsage -= cachedCoinUsage; // Subtract the old usage
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if ((it->second.flags & CCoinsCacheEntry::FRESH) && it->second.coins.IsPruned()) {
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cache.cacheCoins.erase(it);
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} else {
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// If the coin still exists after the modification, add the new usage
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cache.cachedCoinsUsage += it->second.coins.DynamicMemoryUsage();
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}
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}
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CCoinsViewCursor::~CCoinsViewCursor()
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{
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}
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47
src/coins.h
47
src/coins.h
@ -405,36 +405,10 @@ public:
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};
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class CCoinsViewCache;
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/**
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* A reference to a mutable cache entry. Encapsulating it allows us to run
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* cleanup code after the modification is finished, and keeping track of
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* concurrent modifications.
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*/
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class CCoinsModifier
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{
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private:
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CCoinsViewCache& cache;
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CCoinsMap::iterator it;
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size_t cachedCoinUsage; // Cached memory usage of the CCoins object before modification
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CCoinsModifier(CCoinsViewCache& cache_, CCoinsMap::iterator it_, size_t usage);
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public:
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CCoins* operator->() { return &it->second.coins; }
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CCoins& operator*() { return it->second.coins; }
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~CCoinsModifier();
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friend class CCoinsViewCache;
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};
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/** CCoinsView that adds a memory cache for transactions to another CCoinsView */
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class CCoinsViewCache : public CCoinsViewBacked
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{
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protected:
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/* Whether this cache has an active modifier. */
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bool hasModifier;
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/**
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* Make mutable so that we can "fill the cache" even from Get-methods
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* declared as "const".
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@ -447,7 +421,6 @@ protected:
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public:
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CCoinsViewCache(CCoinsView *baseIn);
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~CCoinsViewCache();
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// Standard CCoinsView methods
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bool GetCoins(const uint256 &txid, CCoins &coins) const;
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@ -479,24 +452,6 @@ public:
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*/
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const Coin AccessCoin(const COutPoint &output) const;
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/**
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* Return a modifiable reference to a CCoins. If no entry with the given
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* txid exists, a new one is created. Simultaneous modifications are not
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* allowed.
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*/
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CCoinsModifier ModifyCoins(const uint256 &txid);
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/**
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* Return a modifiable reference to a CCoins. Assumes that no entry with the given
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* txid exists and creates a new one. This saves a database access in the case where
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* the coins were to be wiped out by FromTx anyway. This should not be called with
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* the 2 historical coinbase duplicate pairs because the new coins are marked fresh, and
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* in the event the duplicate coinbase was spent before a flush, the now pruned coins
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* would not properly overwrite the first coinbase of the pair. Simultaneous modifications
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* are not allowed.
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*/
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CCoinsModifier ModifyNewCoins(const uint256 &txid, bool coinbase);
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/**
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* Add a coin. Set potential_overwrite to true if a non-pruned version may
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* already exist.
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@ -544,8 +499,6 @@ public:
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const CTxOut &GetOutputFor(const CTxIn& input) const;
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friend class CCoinsModifier;
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private:
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CCoinsMap::iterator FetchCoins(const uint256 &txid) const;
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