Bitcoin Core  29.1.0
P2P Digital Currency
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 std::optional<Coin> CCoinsView::GetCoin(const COutPoint& outpoint) const { return std::nullopt; }
18 std::vector<uint256> CCoinsView::GetHeadBlocks() const { return std::vector<uint256>(); }
19 bool CCoinsView::BatchWrite(CoinsViewCacheCursor& cursor, const uint256 &hashBlock) { return false; }
20 std::unique_ptr<CCoinsViewCursor> CCoinsView::Cursor() const { return nullptr; }
21 
22 bool CCoinsView::HaveCoin(const COutPoint &outpoint) const
23 {
24  return GetCoin(outpoint).has_value();
25 }
26 
28 std::optional<Coin> CCoinsViewBacked::GetCoin(const COutPoint& outpoint) const { return base->GetCoin(outpoint); }
29 bool CCoinsViewBacked::HaveCoin(const COutPoint &outpoint) const { return base->HaveCoin(outpoint); }
31 std::vector<uint256> CCoinsViewBacked::GetHeadBlocks() const { return base->GetHeadBlocks(); }
32 void CCoinsViewBacked::SetBackend(CCoinsView &viewIn) { base = &viewIn; }
33 bool CCoinsViewBacked::BatchWrite(CoinsViewCacheCursor& cursor, const uint256 &hashBlock) { return base->BatchWrite(cursor, hashBlock); }
34 std::unique_ptr<CCoinsViewCursor> CCoinsViewBacked::Cursor() const { return base->Cursor(); }
35 size_t CCoinsViewBacked::EstimateSize() const { return base->EstimateSize(); }
36 
37 CCoinsViewCache::CCoinsViewCache(CCoinsView* baseIn, bool deterministic) :
38  CCoinsViewBacked(baseIn), m_deterministic(deterministic),
39  cacheCoins(0, SaltedOutpointHasher(/*deterministic=*/deterministic), CCoinsMap::key_equal{}, &m_cache_coins_memory_resource)
40 {
41  m_sentinel.second.SelfRef(m_sentinel);
42 }
43 
46 }
47 
48 CCoinsMap::iterator CCoinsViewCache::FetchCoin(const COutPoint &outpoint) const {
49  const auto [ret, inserted] = cacheCoins.try_emplace(outpoint);
50  if (inserted) {
51  if (auto coin{base->GetCoin(outpoint)}) {
52  ret->second.coin = std::move(*coin);
53  cachedCoinsUsage += ret->second.coin.DynamicMemoryUsage();
54  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.
57  }
58  } else {
59  cacheCoins.erase(ret);
60  return cacheCoins.end();
61  }
62  }
63  return ret;
64 }
65 
66 std::optional<Coin> CCoinsViewCache::GetCoin(const COutPoint& outpoint) const
67 {
68  if (auto it{FetchCoin(outpoint)}; it != cacheCoins.end() && !it->second.coin.IsSpent()) return it->second.coin;
69  return std::nullopt;
70 }
71 
72 void CCoinsViewCache::AddCoin(const COutPoint &outpoint, Coin&& coin, bool possible_overwrite) {
73  assert(!coin.IsSpent());
74  if (coin.out.scriptPubKey.IsUnspendable()) return;
75  CCoinsMap::iterator it;
76  bool inserted;
77  std::tie(it, inserted) = cacheCoins.emplace(std::piecewise_construct, std::forward_as_tuple(outpoint), std::tuple<>());
78  bool fresh = false;
79  if (!inserted) {
80  cachedCoinsUsage -= it->second.coin.DynamicMemoryUsage();
81  }
82  if (!possible_overwrite) {
83  if (!it->second.coin.IsSpent()) {
84  throw std::logic_error("Attempted to overwrite an unspent coin (when possible_overwrite is false)");
85  }
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  fresh = !it->second.IsDirty();
100  }
101  it->second.coin = std::move(coin);
103  if (fresh) CCoinsCacheEntry::SetFresh(*it, m_sentinel);
104  cachedCoinsUsage += it->second.coin.DynamicMemoryUsage();
105  TRACEPOINT(utxocache, add,
106  outpoint.hash.data(),
107  (uint32_t)outpoint.n,
108  (uint32_t)it->second.coin.nHeight,
109  (int64_t)it->second.coin.out.nValue,
110  (bool)it->second.coin.IsCoinBase());
111 }
112 
114  cachedCoinsUsage += coin.DynamicMemoryUsage();
115  auto [it, inserted] = cacheCoins.try_emplace(std::move(outpoint), std::move(coin));
116  if (inserted) CCoinsCacheEntry::SetDirty(*it, m_sentinel);
117 }
118 
119 void AddCoins(CCoinsViewCache& cache, const CTransaction &tx, int nHeight, bool check_for_overwrite) {
120  bool fCoinbase = tx.IsCoinBase();
121  const Txid& txid = tx.GetHash();
122  for (size_t i = 0; i < tx.vout.size(); ++i) {
123  bool overwrite = check_for_overwrite ? cache.HaveCoin(COutPoint(txid, i)) : fCoinbase;
124  // Coinbase transactions can always be overwritten, in order to correctly
125  // deal with the pre-BIP30 occurrences of duplicate coinbase transactions.
126  cache.AddCoin(COutPoint(txid, i), Coin(tx.vout[i], nHeight, fCoinbase), overwrite);
127  }
128 }
129 
130 bool CCoinsViewCache::SpendCoin(const COutPoint &outpoint, Coin* moveout) {
131  CCoinsMap::iterator it = FetchCoin(outpoint);
132  if (it == cacheCoins.end()) return false;
133  cachedCoinsUsage -= it->second.coin.DynamicMemoryUsage();
134  TRACEPOINT(utxocache, spent,
135  outpoint.hash.data(),
136  (uint32_t)outpoint.n,
137  (uint32_t)it->second.coin.nHeight,
138  (int64_t)it->second.coin.out.nValue,
139  (bool)it->second.coin.IsCoinBase());
140  if (moveout) {
141  *moveout = std::move(it->second.coin);
142  }
143  if (it->second.IsFresh()) {
144  cacheCoins.erase(it);
145  } else {
147  it->second.coin.Clear();
148  }
149  return true;
150 }
151 
152 static const Coin coinEmpty;
153 
154 const Coin& CCoinsViewCache::AccessCoin(const COutPoint &outpoint) const {
155  CCoinsMap::const_iterator it = FetchCoin(outpoint);
156  if (it == cacheCoins.end()) {
157  return coinEmpty;
158  } else {
159  return it->second.coin;
160  }
161 }
162 
163 bool CCoinsViewCache::HaveCoin(const COutPoint &outpoint) const {
164  CCoinsMap::const_iterator it = FetchCoin(outpoint);
165  return (it != cacheCoins.end() && !it->second.coin.IsSpent());
166 }
167 
168 bool CCoinsViewCache::HaveCoinInCache(const COutPoint &outpoint) const {
169  CCoinsMap::const_iterator it = cacheCoins.find(outpoint);
170  return (it != cacheCoins.end() && !it->second.coin.IsSpent());
171 }
172 
174  if (hashBlock.IsNull())
176  return hashBlock;
177 }
178 
179 void CCoinsViewCache::SetBestBlock(const uint256 &hashBlockIn) {
180  hashBlock = hashBlockIn;
181 }
182 
183 bool CCoinsViewCache::BatchWrite(CoinsViewCacheCursor& cursor, const uint256 &hashBlockIn) {
184  for (auto it{cursor.Begin()}; it != cursor.End(); it = cursor.NextAndMaybeErase(*it)) {
185  // Ignore non-dirty entries (optimization).
186  if (!it->second.IsDirty()) {
187  continue;
188  }
189  CCoinsMap::iterator itUs = cacheCoins.find(it->first);
190  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  if (!(it->second.IsFresh() && it->second.coin.IsSpent())) {
194  // Create the coin in the parent cache, move the data up
195  // and mark it as dirty.
196  itUs = cacheCoins.try_emplace(it->first).first;
197  CCoinsCacheEntry& entry{itUs->second};
198  if (cursor.WillErase(*it)) {
199  // Since this entry will be erased,
200  // we can move the coin into us instead of copying it
201  entry.coin = std::move(it->second.coin);
202  } else {
203  entry.coin = it->second.coin;
204  }
205  cachedCoinsUsage += entry.coin.DynamicMemoryUsage();
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  if (it->second.IsFresh()) CCoinsCacheEntry::SetFresh(*itUs, m_sentinel);
211  }
212  } else {
213  // Found the entry in the parent cache
214  if (it->second.IsFresh() && !itUs->second.coin.IsSpent()) {
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  throw std::logic_error("FRESH flag misapplied to coin that exists in parent cache");
220  }
221 
222  if (itUs->second.IsFresh() && it->second.coin.IsSpent()) {
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  cachedCoinsUsage -= itUs->second.coin.DynamicMemoryUsage();
226  cacheCoins.erase(itUs);
227  } else {
228  // A normal modification.
229  cachedCoinsUsage -= itUs->second.coin.DynamicMemoryUsage();
230  if (cursor.WillErase(*it)) {
231  // Since this entry will be erased,
232  // we can move the coin into us instead of copying it
233  itUs->second.coin = std::move(it->second.coin);
234  } else {
235  itUs->second.coin = it->second.coin;
236  }
237  cachedCoinsUsage += itUs->second.coin.DynamicMemoryUsage();
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  }
244  }
245  }
246  hashBlock = hashBlockIn;
247  return true;
248 }
249 
251  auto cursor{CoinsViewCacheCursor(cachedCoinsUsage, m_sentinel, cacheCoins, /*will_erase=*/true)};
252  bool fOk = base->BatchWrite(cursor, hashBlock);
253  if (fOk) {
254  cacheCoins.clear();
255  ReallocateCache();
256  }
257  cachedCoinsUsage = 0;
258  return fOk;
259 }
260 
262 {
263  auto cursor{CoinsViewCacheCursor(cachedCoinsUsage, m_sentinel, cacheCoins, /*will_erase=*/false)};
264  bool fOk = base->BatchWrite(cursor, hashBlock);
265  if (fOk) {
266  if (m_sentinel.second.Next() != &m_sentinel) {
267  /* BatchWrite must clear flags of all entries */
268  throw std::logic_error("Not all unspent flagged entries were cleared");
269  }
270  }
271  return fOk;
272 }
273 
275 {
276  CCoinsMap::iterator it = cacheCoins.find(hash);
277  if (it != cacheCoins.end() && !it->second.IsDirty() && !it->second.IsFresh()) {
278  cachedCoinsUsage -= it->second.coin.DynamicMemoryUsage();
279  TRACEPOINT(utxocache, uncache,
280  hash.hash.data(),
281  (uint32_t)hash.n,
282  (uint32_t)it->second.coin.nHeight,
283  (int64_t)it->second.coin.out.nValue,
284  (bool)it->second.coin.IsCoinBase());
285  cacheCoins.erase(it);
286  }
287 }
288 
289 unsigned int CCoinsViewCache::GetCacheSize() const {
290  return cacheCoins.size();
291 }
292 
294 {
295  if (!tx.IsCoinBase()) {
296  for (unsigned int i = 0; i < tx.vin.size(); i++) {
297  if (!HaveCoin(tx.vin[i].prevout)) {
298  return false;
299  }
300  }
301  }
302  return true;
303 }
304 
306 {
307  // Cache should be empty when we're calling this.
308  assert(cacheCoins.size() == 0);
309  cacheCoins.~CCoinsMap();
310  m_cache_coins_memory_resource.~CCoinsMapMemoryResource();
312  ::new (&cacheCoins) CCoinsMap{0, SaltedOutpointHasher{/*deterministic=*/m_deterministic}, CCoinsMap::key_equal{}, &m_cache_coins_memory_resource};
313 }
314 
316 {
317  size_t recomputed_usage = 0;
318  size_t count_flagged = 0;
319  for (const auto& [_, entry] : cacheCoins) {
320  unsigned attr = 0;
321  if (entry.IsDirty()) attr |= 1;
322  if (entry.IsFresh()) attr |= 2;
323  if (entry.coin.IsSpent()) attr |= 4;
324  // Only 5 combinations are possible.
325  assert(attr != 2 && attr != 4 && attr != 7);
326 
327  // Recompute cachedCoinsUsage.
328  recomputed_usage += entry.coin.DynamicMemoryUsage();
329 
330  // Count the number of entries we expect in the linked list.
331  if (entry.IsDirty() || entry.IsFresh()) ++count_flagged;
332  }
333  // Iterate over the linked list of flagged entries.
334  size_t count_linked = 0;
335  for (auto it = m_sentinel.second.Next(); it != &m_sentinel; it = it->second.Next()) {
336  // Verify linked list integrity.
337  assert(it->second.Next()->second.Prev() == it);
338  assert(it->second.Prev()->second.Next() == it);
339  // Verify they are actually flagged.
340  assert(it->second.IsDirty() || it->second.IsFresh());
341  // Count the number of entries actually in the list.
342  ++count_linked;
343  }
344  assert(count_linked == count_flagged);
345  assert(recomputed_usage == cachedCoinsUsage);
346 }
347 
350 
351 const Coin& AccessByTxid(const CCoinsViewCache& view, const Txid& txid)
352 {
353  COutPoint iter(txid, 0);
354  while (iter.n < MAX_OUTPUTS_PER_BLOCK) {
355  const Coin& alternate = view.AccessCoin(iter);
356  if (!alternate.IsSpent()) return alternate;
357  ++iter.n;
358  }
359  return coinEmpty;
360 }
361 
362 template <typename ReturnType, typename Func>
363 static ReturnType ExecuteBackedWrapper(Func func, const std::vector<std::function<void()>>& err_callbacks)
364 {
365  try {
366  return func();
367  } catch(const std::runtime_error& e) {
368  for (const auto& f : err_callbacks) {
369  f();
370  }
371  LogError("Error reading from database: %s\n", e.what());
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  std::abort();
377  }
378 }
379 
380 std::optional<Coin> CCoinsViewErrorCatcher::GetCoin(const COutPoint& outpoint) const
381 {
382  return ExecuteBackedWrapper<std::optional<Coin>>([&]() { return CCoinsViewBacked::GetCoin(outpoint); }, m_err_callbacks);
383 }
384 
385 bool CCoinsViewErrorCatcher::HaveCoin(const COutPoint& outpoint) const
386 {
387  return ExecuteBackedWrapper<bool>([&]() { return CCoinsViewBacked::HaveCoin(outpoint); }, m_err_callbacks);
388 }
CoinsCachePair * NextAndMaybeErase(CoinsCachePair &current) noexcept
Return the next entry after current, possibly erasing current.
Definition: coins.h:284
uint256 GetBestBlock() const override
Retrieve the block hash whose state this CCoinsView currently represents.
Definition: coins.cpp:30
CCoinsViewCache(CCoinsView *baseIn, bool deterministic=false)
Definition: coins.cpp:37
bool IsSpent() const
Either this coin never existed (see e.g.
Definition: coins.h:81
static ReturnType ExecuteBackedWrapper(Func func, const std::vector< std::function< void()>> &err_callbacks)
Definition: coins.cpp:363
int ret
static const int WITNESS_SCALE_FACTOR
Definition: consensus.h:21
CoinsCachePair m_sentinel
Definition: coins.h:375
A Coin in one level of the coins database caching hierarchy.
Definition: coins.h:108
assert(!tx.IsCoinBase())
const Coin & AccessCoin(const COutPoint &output) const
Return a reference to Coin in the cache, or coinEmpty if not found.
Definition: coins.cpp:154
bool Flush()
Push the modifications applied to this cache to its base and wipe local state.
Definition: coins.cpp:250
void SetBackend(CCoinsView &viewIn)
Definition: coins.cpp:32
std::unordered_map< COutPoint, CCoinsCacheEntry, SaltedOutpointHasher, std::equal_to< COutPoint >, PoolAllocator< CoinsCachePair, sizeof(CoinsCachePair)+sizeof(void *) *4 > > CCoinsMap
PoolAllocator&#39;s MAX_BLOCK_SIZE_BYTES parameter here uses sizeof the data, and adds the size of 4 poin...
Definition: coins.h:229
A UTXO entry.
Definition: coins.h:32
CoinsCachePair * End() const noexcept
Definition: coins.h:281
static size_t DynamicUsage(const int8_t &v)
Dynamic memory usage for built-in types is zero.
Definition: memusage.h:31
virtual bool BatchWrite(CoinsViewCacheCursor &cursor, const uint256 &hashBlock)
Do a bulk modification (multiple Coin changes + BestBlock change).
Definition: coins.cpp:19
std::vector< std::function< void()> > m_err_callbacks
A list of callbacks to execute upon leveldb read error.
Definition: coins.h:525
CCoinsMapMemoryResource m_cache_coins_memory_resource
Definition: coins.h:373
bool BatchWrite(CoinsViewCacheCursor &cursor, const uint256 &hashBlock) override
Do a bulk modification (multiple Coin changes + BestBlock change).
Definition: coins.cpp:33
size_t GetSerializeSize(const T &t)
Definition: serialize.h:1103
size_t DynamicMemoryUsage() const
Calculate the size of the cache (in bytes)
Definition: coins.cpp:44
bool WillErase(CoinsCachePair &current) const noexcept
Definition: coins.h:300
std::vector< uint256 > GetHeadBlocks() const override
Retrieve the range of blocks that may have been only partially written.
Definition: coins.cpp:31
bool HaveCoinInCache(const COutPoint &outpoint) const
Check if we have the given utxo already loaded in this cache.
Definition: coins.cpp:168
void ReallocateCache()
Force a reallocation of the cache map.
Definition: coins.cpp:305
virtual bool HaveCoin(const COutPoint &outpoint) const
Just check whether a given outpoint is unspent.
Definition: coins.cpp:22
static const Coin coinEmpty
Definition: coins.cpp:152
consteval auto _(util::TranslatedLiteral str)
Definition: translation.h:79
bool HaveInputs(const CTransaction &tx) const
Check whether all prevouts of the transaction are present in the UTXO set represented by this view...
Definition: coins.cpp:293
std::optional< Coin > GetCoin(const COutPoint &outpoint) const override
Retrieve the Coin (unspent transaction output) for a given outpoint.
Definition: coins.cpp:66
CCoinsMap::allocator_type::ResourceType CCoinsMapMemoryResource
Definition: coins.h:231
bool IsCoinBase() const
Definition: transaction.h:356
const bool m_deterministic
Definition: coins.h:365
bool SpendCoin(const COutPoint &outpoint, Coin *moveto=nullptr)
Spend a coin.
Definition: coins.cpp:130
const std::vector< CTxIn > vin
Definition: transaction.h:306
bool Func(const std::string &str, Span< const char > &sp)
Parse a function call.
Definition: parsing.cpp:24
const Coin & AccessByTxid(const CCoinsViewCache &view, const Txid &txid)
Utility function to find any unspent output with a given txid.
Definition: coins.cpp:351
static const unsigned int MAX_BLOCK_WEIGHT
The maximum allowed weight for a block, see BIP 141 (network rule)
Definition: consensus.h:15
void SetBestBlock(const uint256 &hashBlock)
Definition: coins.cpp:179
void AddCoins(CCoinsViewCache &cache, const CTransaction &tx, int nHeight, bool check_for_overwrite)
Utility function to add all of a transaction&#39;s outputs to a cache.
Definition: coins.cpp:119
unsigned int GetCacheSize() const
Calculate the size of the cache (in number of transaction outputs)
Definition: coins.cpp:289
CCoinsMap cacheCoins
Definition: coins.h:376
void EmplaceCoinInternalDANGER(COutPoint &&outpoint, Coin &&coin)
Emplace a coin into cacheCoins without performing any checks, marking the emplaced coin as dirty...
Definition: coins.cpp:113
Abstract view on the open txout dataset.
Definition: coins.h:309
CCoinsView * base
Definition: coins.h:346
Cursor for iterating over the linked list of flagged entries in CCoinsViewCache.
Definition: coins.h:265
std::unique_ptr< CCoinsViewCursor > Cursor() const override
Get a cursor to iterate over the whole state.
Definition: coins.cpp:34
Txid hash
Definition: transaction.h:31
std::optional< Coin > GetCoin(const COutPoint &outpoint) const override
Retrieve the Coin (unspent transaction output) for a given outpoint.
Definition: coins.cpp:28
uint32_t n
Definition: transaction.h:32
const std::vector< CTxOut > vout
Definition: transaction.h:307
virtual std::vector< uint256 > GetHeadBlocks() const
Retrieve the range of blocks that may have been only partially written.
Definition: coins.cpp:18
An output of a transaction.
Definition: transaction.h:149
constexpr const std::byte * data() const
An outpoint - a combination of a transaction hash and an index n into its vout.
Definition: transaction.h:28
constexpr bool IsNull() const
Definition: uint256.h:48
TRACEPOINT_SEMAPHORE(utxocache, add)
unsigned int nHeight
CCoinsViewBacked(CCoinsView *viewIn)
Definition: coins.cpp:27
void AddCoin(const COutPoint &outpoint, Coin &&coin, bool possible_overwrite)
Add a coin.
Definition: coins.cpp:72
CoinsCachePair * Begin() const noexcept
Definition: coins.h:280
uint256 GetBestBlock() const override
Retrieve the block hash whose state this CCoinsView currently represents.
Definition: coins.cpp:173
bool HaveCoin(const COutPoint &outpoint) const override
Just check whether a given outpoint is unspent.
Definition: coins.cpp:29
256-bit opaque blob.
Definition: uint256.h:201
uint256 hashBlock
Make mutable so that we can "fill the cache" even from Get-methods declared as "const".
Definition: coins.h:372
static void SetDirty(CoinsCachePair &pair, CoinsCachePair &sentinel) noexcept
Definition: coins.h:177
virtual size_t EstimateSize() const
Estimate database size (0 if not implemented)
Definition: coins.h:338
#define LogError(...)
Definition: logging.h:358
#define TRACEPOINT(context,...)
Definition: trace.h:49
void Uncache(const COutPoint &outpoint)
Removes the UTXO with the given outpoint from the cache, if it is not modified.
Definition: coins.cpp:274
virtual uint256 GetBestBlock() const
Retrieve the block hash whose state this CCoinsView currently represents.
Definition: coins.cpp:17
virtual std::optional< Coin > GetCoin(const COutPoint &outpoint) const
Retrieve the Coin (unspent transaction output) for a given outpoint.
Definition: coins.cpp:16
bool BatchWrite(CoinsViewCacheCursor &cursor, const uint256 &hashBlock) override
Do a bulk modification (multiple Coin changes + BestBlock change).
Definition: coins.cpp:183
std::optional< Coin > GetCoin(const COutPoint &outpoint) const override
Retrieve the Coin (unspent transaction output) for a given outpoint.
Definition: coins.cpp:380
static const size_t MAX_OUTPUTS_PER_BLOCK
Definition: coins.cpp:349
size_t cachedCoinsUsage
Definition: coins.h:379
CCoinsMap::iterator FetchCoin(const COutPoint &outpoint) const
Definition: coins.cpp:48
virtual std::unique_ptr< CCoinsViewCursor > Cursor() const
Get a cursor to iterate over the whole state.
Definition: coins.cpp:20
The basic transaction that is broadcasted on the network and contained in blocks. ...
Definition: transaction.h:295
void SanityCheck() const
Run an internal sanity check on the cache data structure. */.
Definition: coins.cpp:315
CCoinsView backed by another CCoinsView.
Definition: coins.h:343
size_t EstimateSize() const override
Estimate database size (0 if not implemented)
Definition: coins.cpp:35
CCoinsView that adds a memory cache for transactions to another CCoinsView.
Definition: coins.h:362
static void SetFresh(CoinsCachePair &pair, CoinsCachePair &sentinel) noexcept
Definition: coins.h:178
bool HaveCoin(const COutPoint &outpoint) const override
Just check whether a given outpoint is unspent.
Definition: coins.cpp:385
static const size_t MIN_TRANSACTION_OUTPUT_WEIGHT
Definition: coins.cpp:348
bool Sync()
Push the modifications applied to this cache to its base while retaining the contents of this cache (...
Definition: coins.cpp:261
const Txid & GetHash() const LIFETIMEBOUND
Definition: transaction.h:343
Coin coin
Definition: coins.h:147
bool HaveCoin(const COutPoint &outpoint) const override
Just check whether a given outpoint is unspent.
Definition: coins.cpp:163