/Users/eugenesiegel/btc/bitcoin/src/coins.cpp
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| 1 |  | // Copyright (c) 2012-2022 The Bitcoin Core developers | 
| 2 |  | // Distributed under the MIT software license, see the accompanying | 
| 3 |  | // file COPYING or http://www.opensource.org/licenses/mit-license.php. | 
| 4 |  |  | 
| 5 |  | #include <coins.h> | 
| 6 |  |  | 
| 7 |  | #include <consensus/consensus.h> | 
| 8 |  | #include <logging.h> | 
| 9 |  | #include <random.h> | 
| 10 |  | #include <util/trace.h> | 
| 11 |  |  | 
| 12 |  | TRACEPOINT_SEMAPHORE(utxocache, add); | 
| 13 |  | TRACEPOINT_SEMAPHORE(utxocache, spent); | 
| 14 |  | TRACEPOINT_SEMAPHORE(utxocache, uncache); | 
| 15 |  |  | 
| 16 | 0 | std::optional<Coin> CCoinsView::GetCoin(const COutPoint& outpoint) const { return std::nullopt; } | 
| 17 | 0 | uint256 CCoinsView::GetBestBlock() const { return uint256(); } | 
| 18 | 0 | std::vector<uint256> CCoinsView::GetHeadBlocks() const { return std::vector<uint256>(); } | 
| 19 | 0 | bool CCoinsView::BatchWrite(CoinsViewCacheCursor& cursor, const uint256 &hashBlock) { return false; } | 
| 20 | 0 | std::unique_ptr<CCoinsViewCursor> CCoinsView::Cursor() const { return nullptr; } | 
| 21 |  |  | 
| 22 |  | bool CCoinsView::HaveCoin(const COutPoint &outpoint) const | 
| 23 | 0 | { | 
| 24 | 0 |     return GetCoin(outpoint).has_value(); | 
| 25 | 0 | } | 
| 26 |  |  | 
| 27 | 2.45M | CCoinsViewBacked::CCoinsViewBacked(CCoinsView *viewIn) : base(viewIn) { } | 
| 28 | 1.21M | std::optional<Coin> CCoinsViewBacked::GetCoin(const COutPoint& outpoint) const { return base->GetCoin(outpoint); } | 
| 29 | 0 | bool CCoinsViewBacked::HaveCoin(const COutPoint &outpoint) const { return base->HaveCoin(outpoint); } | 
| 30 | 705k | uint256 CCoinsViewBacked::GetBestBlock() const { return base->GetBestBlock(); } | 
| 31 | 0 | std::vector<uint256> CCoinsViewBacked::GetHeadBlocks() const { return base->GetHeadBlocks(); } | 
| 32 | 1.30M | void CCoinsViewBacked::SetBackend(CCoinsView &viewIn) { base = &viewIn; } | 
| 33 | 4.58k | bool CCoinsViewBacked::BatchWrite(CoinsViewCacheCursor& cursor, const uint256 &hashBlock) { return base->BatchWrite(cursor, hashBlock); } | 
| 34 | 0 | std::unique_ptr<CCoinsViewCursor> CCoinsViewBacked::Cursor() const { return base->Cursor(); } | 
| 35 | 0 | size_t CCoinsViewBacked::EstimateSize() const { return base->EstimateSize(); } | 
| 36 |  |  | 
| 37 |  | CCoinsViewCache::CCoinsViewCache(CCoinsView* baseIn, bool deterministic) : | 
| 38 | 1.64M |     CCoinsViewBacked(baseIn), m_deterministic(deterministic), | 
| 39 | 1.64M |     cacheCoins(0, SaltedOutpointHasher(/*deterministic=*/deterministic), CCoinsMap::key_equal{}, &m_cache_coins_memory_resource) | 
| 40 | 1.64M | { | 
| 41 | 1.64M |     m_sentinel.second.SelfRef(m_sentinel); | 
| 42 | 1.64M | } | 
| 43 |  |  | 
| 44 | 2.21M | size_t CCoinsViewCache::DynamicMemoryUsage() const { | 
| 45 | 2.21M |     return memusage::DynamicUsage(cacheCoins) + cachedCoinsUsage; | 
| 46 | 2.21M | } | 
| 47 |  |  | 
| 48 | 82.3M | CCoinsMap::iterator CCoinsViewCache::FetchCoin(const COutPoint &outpoint) const { | 
| 49 | 82.3M |     const auto [ret, inserted] = cacheCoins.try_emplace(outpoint); | 
| 50 | 82.3M |     if (inserted) { | 
| 51 | 8.53M |         if (auto coin{base->GetCoin(outpoint)}) { | 
| 52 | 8.16M |             ret->second.coin = std::move(*coin); | 
| 53 | 8.16M |             cachedCoinsUsage += ret->second.coin.DynamicMemoryUsage(); | 
| 54 | 8.16M |             if (ret->second.coin.IsSpent()) { // TODO GetCoin cannot return spent coins | 
| 55 |  |                 // The parent only has an empty entry for this outpoint; we can consider our version as fresh. | 
| 56 | 0 |                 CCoinsCacheEntry::SetFresh(*ret, m_sentinel); | 
| 57 | 0 |             } | 
| 58 | 8.16M |         } else { | 
| 59 | 369k |             cacheCoins.erase(ret); | 
| 60 | 369k |             return cacheCoins.end(); | 
| 61 | 369k |         } | 
| 62 | 8.53M |     } | 
| 63 | 81.9M |     return ret; | 
| 64 | 82.3M | } | 
| 65 |  |  | 
| 66 |  | std::optional<Coin> CCoinsViewCache::GetCoin(const COutPoint& outpoint) const | 
| 67 | 8.21M | { | 
| 68 | 8.21M |     if (auto it{FetchCoin(outpoint)}; it != cacheCoins.end() && !it->second.coin.IsSpent()8.03M) return it->second.coin8.03M; | 
| 69 | 184k |     return std::nullopt; | 
| 70 | 8.21M | } | 
| 71 |  |  | 
| 72 | 16.6M | void CCoinsViewCache::AddCoin(const COutPoint &outpoint, Coin&& coin, bool possible_overwrite) { | 
| 73 | 16.6M |     assert(!coin.IsSpent()); | 
| 74 | 16.6M |     if (coin.out.scriptPubKey.IsUnspendable()) return25.0k; | 
| 75 | 16.6M |     CCoinsMap::iterator it; | 
| 76 | 16.6M |     bool inserted; | 
| 77 | 16.6M |     std::tie(it, inserted) = cacheCoins.emplace(std::piecewise_construct, std::forward_as_tuple(outpoint), std::tuple<>()); | 
| 78 | 16.6M |     bool fresh = false; | 
| 79 | 16.6M |     if (!inserted) { | 
| 80 | 0 |         cachedCoinsUsage -= it->second.coin.DynamicMemoryUsage(); | 
| 81 | 0 |     } | 
| 82 | 16.6M |     if (!possible_overwrite) { | 
| 83 | 16.6M |         if (!it->second.coin.IsSpent()) { | 
| 84 | 0 |             throw std::logic_error("Attempted to overwrite an unspent coin (when possible_overwrite is false)"); | 
| 85 | 0 |         } | 
| 86 |  |         // If the coin exists in this cache as a spent coin and is DIRTY, then | 
| 87 |  |         // its spentness hasn't been flushed to the parent cache. We're | 
| 88 |  |         // re-adding the coin to this cache now but we can't mark it as FRESH. | 
| 89 |  |         // If we mark it FRESH and then spend it before the cache is flushed | 
| 90 |  |         // we would remove it from this cache and would never flush spentness | 
| 91 |  |         // to the parent cache. | 
| 92 |  |         // | 
| 93 |  |         // Re-adding a spent coin can happen in the case of a re-org (the coin | 
| 94 |  |         // is 'spent' when the block adding it is disconnected and then | 
| 95 |  |         // re-added when it is also added in a newly connected block). | 
| 96 |  |         // | 
| 97 |  |         // If the coin doesn't exist in the current cache, or is spent but not | 
| 98 |  |         // DIRTY, then it can be marked FRESH. | 
| 99 | 16.6M |         fresh = !it->second.IsDirty(); | 
| 100 | 16.6M |     } | 
| 101 | 16.6M |     it->second.coin = std::move(coin); | 
| 102 | 16.6M |     CCoinsCacheEntry::SetDirty(*it, m_sentinel); | 
| 103 | 16.6M |     if (fresh) CCoinsCacheEntry::SetFresh(*it, m_sentinel)16.6M; | 
| 104 | 16.6M |     cachedCoinsUsage += it->second.coin.DynamicMemoryUsage(); | 
| 105 | 16.6M |     TRACEPOINT(utxocache, add, | 
| 106 | 16.6M |            outpoint.hash.data(), | 
| 107 | 16.6M |            (uint32_t)outpoint.n, | 
| 108 | 16.6M |            (uint32_t)it->second.coin.nHeight, | 
| 109 | 16.6M |            (int64_t)it->second.coin.out.nValue, | 
| 110 | 16.6M |            (bool)it->second.coin.IsCoinBase()); | 
| 111 | 16.6M | } | 
| 112 |  |  | 
| 113 | 0 | void CCoinsViewCache::EmplaceCoinInternalDANGER(COutPoint&& outpoint, Coin&& coin) { | 
| 114 | 0 |     cachedCoinsUsage += coin.DynamicMemoryUsage(); | 
| 115 | 0 |     auto [it, inserted] = cacheCoins.try_emplace(std::move(outpoint), std::move(coin)); | 
| 116 | 0 |     if (inserted) CCoinsCacheEntry::SetDirty(*it, m_sentinel); | 
| 117 | 0 | } | 
| 118 |  |  | 
| 119 | 16.6M | void AddCoins(CCoinsViewCache& cache, const CTransaction &tx, int nHeight, bool check_for_overwrite) { | 
| 120 | 16.6M |     bool fCoinbase = tx.IsCoinBase(); | 
| 121 | 16.6M |     const Txid& txid = tx.GetHash(); | 
| 122 | 33.3M |     for (size_t i = 0; i < tx.vout.size(); ++i16.6M) { | 
| 123 | 16.6M |         bool overwrite = check_for_overwrite ? cache.HaveCoin(COutPoint(txid, i))0: fCoinbase; | 
| 124 |  |         // Coinbase transactions can always be overwritten, in order to correctly | 
| 125 |  |         // deal with the pre-BIP30 occurrences of duplicate coinbase transactions. | 
| 126 | 16.6M |         cache.AddCoin(COutPoint(txid, i), Coin(tx.vout[i], nHeight, fCoinbase), overwrite); | 
| 127 | 16.6M |     } | 
| 128 | 16.6M | } | 
| 129 |  |  | 
| 130 | 16.9M | bool CCoinsViewCache::SpendCoin(const COutPoint &outpoint, Coin* moveout) { | 
| 131 | 16.9M |     CCoinsMap::iterator it = FetchCoin(outpoint); | 
| 132 | 16.9M |     if (it == cacheCoins.end()) return false0; | 
| 133 | 16.9M |     cachedCoinsUsage -= it->second.coin.DynamicMemoryUsage(); | 
| 134 | 16.9M |     TRACEPOINT(utxocache, spent, | 
| 135 | 16.9M |            outpoint.hash.data(), | 
| 136 | 16.9M |            (uint32_t)outpoint.n, | 
| 137 | 16.9M |            (uint32_t)it->second.coin.nHeight, | 
| 138 | 16.9M |            (int64_t)it->second.coin.out.nValue, | 
| 139 | 16.9M |            (bool)it->second.coin.IsCoinBase()); | 
| 140 | 16.9M |     if (moveout) { | 
| 141 | 414k |         *moveout = std::move(it->second.coin); | 
| 142 | 414k |     } | 
| 143 | 16.9M |     if (it->second.IsFresh()) { | 
| 144 | 10.4M |         cacheCoins.erase(it); | 
| 145 | 10.4M |     } else { | 
| 146 | 6.47M |         CCoinsCacheEntry::SetDirty(*it, m_sentinel); | 
| 147 | 6.47M |         it->second.coin.Clear(); | 
| 148 | 6.47M |     } | 
| 149 | 16.9M |     return true; | 
| 150 | 16.9M | } | 
| 151 |  |  | 
| 152 |  | static const Coin coinEmpty; | 
| 153 |  |  | 
| 154 | 22.5M | const Coin& CCoinsViewCache::AccessCoin(const COutPoint &outpoint) const { | 
| 155 | 22.5M |     CCoinsMap::const_iterator it = FetchCoin(outpoint); | 
| 156 | 22.5M |     if (it == cacheCoins.end()) { | 
| 157 | 0 |         return coinEmpty; | 
| 158 | 22.5M |     } else { | 
| 159 | 22.5M |         return it->second.coin; | 
| 160 | 22.5M |     } | 
| 161 | 22.5M | } | 
| 162 |  |  | 
| 163 | 34.6M | bool CCoinsViewCache::HaveCoin(const COutPoint &outpoint) const { | 
| 164 | 34.6M |     CCoinsMap::const_iterator it = FetchCoin(outpoint); | 
| 165 | 34.6M |     return (it != cacheCoins.end() && !it->second.coin.IsSpent()34.4M); | 
| 166 | 34.6M | } | 
| 167 |  |  | 
| 168 | 654k | bool CCoinsViewCache::HaveCoinInCache(const COutPoint &outpoint) const { | 
| 169 | 654k |     CCoinsMap::const_iterator it = cacheCoins.find(outpoint); | 
| 170 | 654k |     return (it != cacheCoins.end() && !it->second.coin.IsSpent()176k); | 
| 171 | 654k | } | 
| 172 |  |  | 
| 173 | 2.53M | uint256 CCoinsViewCache::GetBestBlock() const { | 
| 174 | 2.53M |     if (hashBlock.IsNull()) | 
| 175 | 782k |         hashBlock = base->GetBestBlock(); | 
| 176 | 2.53M |     return hashBlock; | 
| 177 | 2.53M | } | 
| 178 |  |  | 
| 179 | 329k | void CCoinsViewCache::SetBestBlock(const uint256 &hashBlockIn) { | 
| 180 | 329k |     hashBlock = hashBlockIn; | 
| 181 | 329k | } | 
| 182 |  |  | 
| 183 | 21.8k | bool CCoinsViewCache::BatchWrite(CoinsViewCacheCursor& cursor, const uint256 &hashBlockIn) { | 
| 184 | 136k |     for (auto it{cursor.Begin()}; it != cursor.End(); it = cursor.NextAndMaybeErase(*it)114k) { | 
| 185 |  |         // Ignore non-dirty entries (optimization). | 
| 186 | 114k |         if (!it->second.IsDirty()) { | 
| 187 | 0 |             continue; | 
| 188 | 0 |         } | 
| 189 | 114k |         CCoinsMap::iterator itUs = cacheCoins.find(it->first); | 
| 190 | 114k |         if (itUs == cacheCoins.end()) { | 
| 191 |  |             // The parent cache does not have an entry, while the child cache does. | 
| 192 |  |             // We can ignore it if it's both spent and FRESH in the child | 
| 193 | 68.2k |             if (!(it->second.IsFresh() && it->second.coin.IsSpent()46.4k)) { | 
| 194 |  |                 // Create the coin in the parent cache, move the data up | 
| 195 |  |                 // and mark it as dirty. | 
| 196 | 68.2k |                 itUs = cacheCoins.try_emplace(it->first).first; | 
| 197 | 68.2k |                 CCoinsCacheEntry& entry{itUs->second}; | 
| 198 | 68.2k |                 if (cursor.WillErase(*it)) { | 
| 199 |  |                     // Since this entry will be erased, | 
| 200 |  |                     // we can move the coin into us instead of copying it | 
| 201 | 68.2k |                     entry.coin = std::move(it->second.coin); | 
| 202 | 68.2k |                 } else { | 
| 203 | 0 |                     entry.coin = it->second.coin; | 
| 204 | 0 |                 } | 
| 205 | 68.2k |                 cachedCoinsUsage += entry.coin.DynamicMemoryUsage(); | 
| 206 | 68.2k |                 CCoinsCacheEntry::SetDirty(*itUs, m_sentinel); | 
| 207 |  |                 // We can mark it FRESH in the parent if it was FRESH in the child | 
| 208 |  |                 // Otherwise it might have just been flushed from the parent's cache | 
| 209 |  |                 // and already exist in the grandparent | 
| 210 | 68.2k |                 if (it->second.IsFresh()) CCoinsCacheEntry::SetFresh(*itUs, m_sentinel)46.4k; | 
| 211 | 68.2k |             } | 
| 212 | 68.2k |         } else { | 
| 213 |  |             // Found the entry in the parent cache | 
| 214 | 46.5k |             if (it->second.IsFresh() && !itUs->second.coin.IsSpent()0) { | 
| 215 |  |                 // The coin was marked FRESH in the child cache, but the coin | 
| 216 |  |                 // exists in the parent cache. If this ever happens, it means | 
| 217 |  |                 // the FRESH flag was misapplied and there is a logic error in | 
| 218 |  |                 // the calling code. | 
| 219 | 0 |                 throw std::logic_error("FRESH flag misapplied to coin that exists in parent cache"); | 
| 220 | 0 |             } | 
| 221 |  |  | 
| 222 | 46.5k |             if (itUs->second.IsFresh() && it->second.coin.IsSpent()406) { | 
| 223 |  |                 // The grandparent cache does not have an entry, and the coin | 
| 224 |  |                 // has been spent. We can just delete it from the parent cache. | 
| 225 | 406 |                 cachedCoinsUsage -= itUs->second.coin.DynamicMemoryUsage(); | 
| 226 | 406 |                 cacheCoins.erase(itUs); | 
| 227 | 46.1k |             } else { | 
| 228 |  |                 // A normal modification. | 
| 229 | 46.1k |                 cachedCoinsUsage -= itUs->second.coin.DynamicMemoryUsage(); | 
| 230 | 46.1k |                 if (cursor.WillErase(*it)) { | 
| 231 |  |                     // Since this entry will be erased, | 
| 232 |  |                     // we can move the coin into us instead of copying it | 
| 233 | 46.1k |                     itUs->second.coin = std::move(it->second.coin); | 
| 234 | 46.1k |                 } else { | 
| 235 | 0 |                     itUs->second.coin = it->second.coin; | 
| 236 | 0 |                 } | 
| 237 | 46.1k |                 cachedCoinsUsage += itUs->second.coin.DynamicMemoryUsage(); | 
| 238 | 46.1k |                 CCoinsCacheEntry::SetDirty(*itUs, m_sentinel); | 
| 239 |  |                 // NOTE: It isn't safe to mark the coin as FRESH in the parent | 
| 240 |  |                 // cache. If it already existed and was spent in the parent | 
| 241 |  |                 // cache then marking it FRESH would prevent that spentness | 
| 242 |  |                 // from being flushed to the grandparent. | 
| 243 | 46.1k |             } | 
| 244 | 46.5k |         } | 
| 245 | 114k |     } | 
| 246 | 21.8k |     hashBlock = hashBlockIn; | 
| 247 | 21.8k |     return true; | 
| 248 | 21.8k | } | 
| 249 |  |  | 
| 250 | 21.8k | bool CCoinsViewCache::Flush() { | 
| 251 | 21.8k |     auto cursor{CoinsViewCacheCursor(cachedCoinsUsage, m_sentinel, cacheCoins, /*will_erase=*/true)}; | 
| 252 | 21.8k |     bool fOk = base->BatchWrite(cursor, hashBlock); | 
| 253 | 21.8k |     if (fOk) { | 
| 254 | 21.8k |         cacheCoins.clear(); | 
| 255 | 21.8k |         ReallocateCache(); | 
| 256 | 21.8k |     } | 
| 257 | 21.8k |     cachedCoinsUsage = 0; | 
| 258 | 21.8k |     return fOk; | 
| 259 | 21.8k | } | 
| 260 |  |  | 
| 261 |  | bool CCoinsViewCache::Sync() | 
| 262 | 4.58k | { | 
| 263 | 4.58k |     auto cursor{CoinsViewCacheCursor(cachedCoinsUsage, m_sentinel, cacheCoins, /*will_erase=*/false)}; | 
| 264 | 4.58k |     bool fOk = base->BatchWrite(cursor, hashBlock); | 
| 265 | 4.58k |     if (fOk) { | 
| 266 | 4.58k |         if (m_sentinel.second.Next() != &m_sentinel) { | 
| 267 |  |             /* BatchWrite must clear flags of all entries */ | 
| 268 | 0 |             throw std::logic_error("Not all unspent flagged entries were cleared"); | 
| 269 | 0 |         } | 
| 270 | 4.58k |     } | 
| 271 | 4.58k |     return fOk; | 
| 272 | 4.58k | } | 
| 273 |  |  | 
| 274 |  | void CCoinsViewCache::Uncache(const COutPoint& hash) | 
| 275 | 480k | { | 
| 276 | 480k |     CCoinsMap::iterator it = cacheCoins.find(hash); | 
| 277 | 480k |     if (it != cacheCoins.end() && !it->second.IsDirty()319k&& !it->second.IsFresh()319k) { | 
| 278 | 319k |         cachedCoinsUsage -= it->second.coin.DynamicMemoryUsage(); | 
| 279 | 319k |         TRACEPOINT(utxocache, uncache, | 
| 280 | 319k |                hash.hash.data(), | 
| 281 | 319k |                (uint32_t)hash.n, | 
| 282 | 319k |                (uint32_t)it->second.coin.nHeight, | 
| 283 | 319k |                (int64_t)it->second.coin.out.nValue, | 
| 284 | 319k |                (bool)it->second.coin.IsCoinBase()); | 
| 285 | 319k |         cacheCoins.erase(it); | 
| 286 | 319k |     } | 
| 287 | 480k | } | 
| 288 |  |  | 
| 289 | 817k | unsigned int CCoinsViewCache::GetCacheSize() const { | 
| 290 | 817k |     return cacheCoins.size(); | 
| 291 | 817k | } | 
| 292 |  |  | 
| 293 |  | bool CCoinsViewCache::HaveInputs(const CTransaction& tx) const | 
| 294 | 17.2M | { | 
| 295 | 17.2M |     if (!tx.IsCoinBase()) { | 
| 296 | 34.5M |         for (unsigned int i = 0; i < tx.vin.size(); i++17.2M) { | 
| 297 | 17.2M |             if (!HaveCoin(tx.vin[i].prevout)) { | 
| 298 | 2.67k |                 return false; | 
| 299 | 2.67k |             } | 
| 300 | 17.2M |         } | 
| 301 | 17.2M |     } | 
| 302 | 17.2M |     return true; | 
| 303 | 17.2M | } | 
| 304 |  |  | 
| 305 |  | void CCoinsViewCache::ReallocateCache() | 
| 306 | 21.8k | { | 
| 307 |  |     // Cache should be empty when we're calling this. | 
| 308 | 21.8k |     assert(cacheCoins.size() == 0); | 
| 309 | 21.8k |     cacheCoins.~CCoinsMap(); | 
| 310 | 21.8k |     m_cache_coins_memory_resource.~CCoinsMapMemoryResource(); | 
| 311 | 21.8k |     ::new (&m_cache_coins_memory_resource) CCoinsMapMemoryResource{}; | 
| 312 | 21.8k |     ::new (&cacheCoins) CCoinsMap{0, SaltedOutpointHasher{/*deterministic=*/m_deterministic}, CCoinsMap::key_equal{}, &m_cache_coins_memory_resource}; | 
| 313 | 21.8k | } | 
| 314 |  |  | 
| 315 |  | void CCoinsViewCache::SanityCheck() const | 
| 316 | 0 | { | 
| 317 | 0 |     size_t recomputed_usage = 0; | 
| 318 | 0 |     size_t count_flagged = 0; | 
| 319 | 0 |     for (const auto& [_, entry] : cacheCoins) { | 
| 320 | 0 |         unsigned attr = 0; | 
| 321 | 0 |         if (entry.IsDirty()) attr |= 1; | 
| 322 | 0 |         if (entry.IsFresh()) attr |= 2; | 
| 323 | 0 |         if (entry.coin.IsSpent()) attr |= 4; | 
| 324 |  |         // Only 5 combinations are possible. | 
| 325 | 0 |         assert(attr != 2 && attr != 4 && attr != 7); | 
| 326 |  |  | 
| 327 |  |         // Recompute cachedCoinsUsage. | 
| 328 | 0 |         recomputed_usage += entry.coin.DynamicMemoryUsage(); | 
| 329 |  |  | 
| 330 |  |         // Count the number of entries we expect in the linked list. | 
| 331 | 0 |         if (entry.IsDirty() || entry.IsFresh()) ++count_flagged; | 
| 332 | 0 |     } | 
| 333 |  |     // Iterate over the linked list of flagged entries. | 
| 334 | 0 |     size_t count_linked = 0; | 
| 335 | 0 |     for (auto it = m_sentinel.second.Next(); it != &m_sentinel; it = it->second.Next()) { | 
| 336 |  |         // Verify linked list integrity. | 
| 337 | 0 |         assert(it->second.Next()->second.Prev() == it); | 
| 338 | 0 |         assert(it->second.Prev()->second.Next() == it); | 
| 339 |  |         // Verify they are actually flagged. | 
| 340 | 0 |         assert(it->second.IsDirty() || it->second.IsFresh()); | 
| 341 |  |         // Count the number of entries actually in the list. | 
| 342 | 0 |         ++count_linked; | 
| 343 | 0 |     } | 
| 344 | 0 |     assert(count_linked == count_flagged); | 
| 345 | 0 |     assert(recomputed_usage == cachedCoinsUsage); | 
| 346 | 0 | } | 
| 347 |  |  | 
| 348 |  | static const size_t MIN_TRANSACTION_OUTPUT_WEIGHT = WITNESS_SCALE_FACTOR * ::GetSerializeSize(CTxOut()); | 
| 349 |  | static const size_t MAX_OUTPUTS_PER_BLOCK = MAX_BLOCK_WEIGHT / MIN_TRANSACTION_OUTPUT_WEIGHT; | 
| 350 |  |  | 
| 351 |  | const Coin& AccessByTxid(const CCoinsViewCache& view, const Txid& txid) | 
| 352 | 0 | { | 
| 353 | 0 |     COutPoint iter(txid, 0); | 
| 354 | 0 |     while (iter.n < MAX_OUTPUTS_PER_BLOCK) { | 
| 355 | 0 |         const Coin& alternate = view.AccessCoin(iter); | 
| 356 | 0 |         if (!alternate.IsSpent()) return alternate; | 
| 357 | 0 |         ++iter.n; | 
| 358 | 0 |     } | 
| 359 | 0 |     return coinEmpty; | 
| 360 | 0 | } | 
| 361 |  |  | 
| 362 |  | template <typename ReturnType, typename Func> | 
| 363 |  | static ReturnType ExecuteBackedWrapper(Func func, const std::vector<std::function<void()>>& err_callbacks) | 
| 364 | 1.21M | { | 
| 365 | 1.21M |     try { | 
| 366 | 1.21M |         return func(); | 
| 367 | 1.21M |     } catch(const std::runtime_error& e) { | 
| 368 | 0 |         for (const auto& f : err_callbacks) { | 
| 369 | 0 |             f(); | 
| 370 | 0 |         } | 
| 371 | 0 |         LogError("Error reading from database: %s\n", e.what());| Line | Count | Source |  | 358 | 0 | #define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__) | Line | Count | Source |  | 350 | 0 | #define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(std::source_location::current(), category, level, should_ratelimit, __VA_ARGS__) | 
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 |         LogError("Error reading from database: %s\n", e.what());| Line | Count | Source |  | 358 | 0 | #define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__) | Line | Count | Source |  | 350 | 0 | #define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(std::source_location::current(), category, level, should_ratelimit, __VA_ARGS__) | 
 | 
 | 
| 372 |  |         // Starting the shutdown sequence and returning false to the caller would be | 
| 373 |  |         // interpreted as 'entry not found' (as opposed to unable to read data), and | 
| 374 |  |         // could lead to invalid interpretation. Just exit immediately, as we can't | 
| 375 |  |         // continue anyway, and all writes should be atomic. | 
| 376 | 0 |         std::abort(); | 
| 377 | 0 |     } | 
| 378 | 1.21M | } coins.cpp:_ZL20ExecuteBackedWrapperINSt3__18optionalI4CoinEEZNK22CCoinsViewErrorCatcher7GetCoinERK9COutPointE3$_0ET_T0_RKNS0_6vectorINS0_8functionIFvvEEENS0_9allocatorISE_EEEE| Line | Count | Source |  | 364 | 1.21M | { |  | 365 | 1.21M |     try { |  | 366 | 1.21M |         return func(); |  | 367 | 1.21M |     } catch(const std::runtime_error& e) { |  | 368 | 0 |         for (const auto& f : err_callbacks) { |  | 369 | 0 |             f(); |  | 370 | 0 |         } |  | 371 | 0 |         LogError("Error reading from database: %s\n", e.what());| Line | Count | Source |  | 358 | 0 | #define LogError(...) LogPrintLevel_(BCLog::LogFlags::ALL, BCLog::Level::Error, /*should_ratelimit=*/true, __VA_ARGS__) | Line | Count | Source |  | 350 | 0 | #define LogPrintLevel_(category, level, should_ratelimit, ...) LogPrintFormatInternal(std::source_location::current(), category, level, should_ratelimit, __VA_ARGS__) | 
 | 
 |  | 372 |  |         // Starting the shutdown sequence and returning false to the caller would be |  | 373 |  |         // interpreted as 'entry not found' (as opposed to unable to read data), and |  | 374 |  |         // could lead to invalid interpretation. Just exit immediately, as we can't |  | 375 |  |         // continue anyway, and all writes should be atomic. |  | 376 | 0 |         std::abort(); |  | 377 | 0 |     } |  | 378 | 1.21M | } | 
Unexecuted instantiation: coins.cpp:_ZL20ExecuteBackedWrapperIbZNK22CCoinsViewErrorCatcher8HaveCoinERK9COutPointE3$_0ET_T0_RKNSt3__16vectorINS7_8functionIFvvEEENS7_9allocatorISB_EEEE | 
| 379 |  |  | 
| 380 |  | std::optional<Coin> CCoinsViewErrorCatcher::GetCoin(const COutPoint& outpoint) const | 
| 381 | 1.21M | { | 
| 382 | 1.21M |     return ExecuteBackedWrapper<std::optional<Coin>>([&]() { return CCoinsViewBacked::GetCoin(outpoint); }, m_err_callbacks); | 
| 383 | 1.21M | } | 
| 384 |  |  | 
| 385 |  | bool CCoinsViewErrorCatcher::HaveCoin(const COutPoint& outpoint) const | 
| 386 | 0 | { | 
| 387 | 0 |     return ExecuteBackedWrapper<bool>([&]() { return CCoinsViewBacked::HaveCoin(outpoint); }, m_err_callbacks); | 
| 388 | 0 | } |