54 LIMITED_WHILE(good_data && fuzzed_data_provider.ConsumeBool(), 10'000)
62 Coin coin = random_coin;
63 bool expected_code_path =
false;
64 const bool possible_overwrite = fuzzed_data_provider.ConsumeBool();
66 coins_view_cache.AddCoin(random_out_point, std::move(coin), possible_overwrite);
67 expected_code_path =
true;
68 }
catch (
const std::logic_error& e) {
69 if (e.what() == std::string{
"Attempted to overwrite an unspent coin (when possible_overwrite is false)"}) {
70 assert(!possible_overwrite);
71 expected_code_path =
true;
74 assert(expected_code_path);
77 (void)coins_view_cache.Flush();
80 (void)coins_view_cache.Sync();
83 coins_view_cache.SetBestBlock(
ConsumeUInt256(fuzzed_data_provider));
87 (void)coins_view_cache.SpendCoin(random_out_point, fuzzed_data_provider.ConsumeBool() ? &move_to :
nullptr);
90 coins_view_cache.Uncache(random_out_point);
93 if (fuzzed_data_provider.ConsumeBool()) {
96 coins_view_cache.SetBackend(backend_coins_view);
100 if (!opt_out_point) {
104 random_out_point = *opt_out_point;
112 random_coin = *opt_coin;
116 if (!opt_mutable_transaction) {
120 random_mutable_transaction = *opt_mutable_transaction;
124 sentinel.second.SelfRef(sentinel);
128 LIMITED_WHILE(good_data && fuzzed_data_provider.ConsumeBool(), 10'000)
131 const auto flags{fuzzed_data_provider.ConsumeIntegral<uint8_t>()};
132 if (fuzzed_data_provider.ConsumeBool()) {
133 coins_cache_entry.
coin = random_coin;
140 coins_cache_entry.
coin = *opt_coin;
142 auto it{coins_map.emplace(random_out_point, std::move(coins_cache_entry)).first};
144 usage += it->second.coin.DynamicMemoryUsage();
146 bool expected_code_path =
false;
149 coins_view_cache.BatchWrite(cursor, fuzzed_data_provider.ConsumeBool() ?
ConsumeUInt256(fuzzed_data_provider) : coins_view_cache.GetBestBlock());
150 expected_code_path =
true;
151 }
catch (
const std::logic_error& e) {
152 if (e.what() == std::string{
"FRESH flag misapplied to coin that exists in parent cache"}) {
153 expected_code_path =
true;
156 assert(expected_code_path);
161 const Coin& coin_using_access_coin = coins_view_cache.AccessCoin(random_out_point);
162 const bool exists_using_access_coin = !(coin_using_access_coin == EMPTY_COIN);
163 const bool exists_using_have_coin = coins_view_cache.HaveCoin(random_out_point);
164 const bool exists_using_have_coin_in_cache = coins_view_cache.HaveCoinInCache(random_out_point);
165 Coin coin_using_get_coin;
166 const bool exists_using_get_coin = coins_view_cache.GetCoin(random_out_point, coin_using_get_coin);
167 if (exists_using_get_coin) {
168 assert(coin_using_get_coin == coin_using_access_coin);
170 assert((exists_using_access_coin && exists_using_have_coin_in_cache && exists_using_have_coin && exists_using_get_coin) ||
171 (!exists_using_access_coin && !exists_using_have_coin_in_cache && !exists_using_have_coin && !exists_using_get_coin));
173 const bool exists_using_have_coin_in_backend = backend_coins_view.
HaveCoin(random_out_point);
174 if (!coin_using_access_coin.
IsSpent() && exists_using_have_coin_in_backend) {
175 assert(exists_using_have_coin);
177 Coin coin_using_backend_get_coin;
178 if (backend_coins_view.
GetCoin(random_out_point, coin_using_backend_get_coin)) {
179 assert(exists_using_have_coin_in_backend);
183 assert(!exists_using_have_coin_in_backend);
188 bool expected_code_path =
false;
190 (void)coins_view_cache.Cursor();
191 }
catch (
const std::logic_error&) {
192 expected_code_path =
true;
194 assert(expected_code_path);
195 (void)coins_view_cache.DynamicMemoryUsage();
196 (void)coins_view_cache.EstimateSize();
197 (void)coins_view_cache.GetBestBlock();
198 (void)coins_view_cache.GetCacheSize();
199 (void)coins_view_cache.GetHeadBlocks();
200 (void)coins_view_cache.HaveInputs(
CTransaction{random_mutable_transaction});
204 std::unique_ptr<CCoinsViewCursor> coins_view_cursor = backend_coins_view.
Cursor();
205 assert(!coins_view_cursor);
211 if (fuzzed_data_provider.ConsumeBool()) {
213 fuzzed_data_provider,
215 const CTransaction transaction{random_mutable_transaction};
216 bool is_spent =
false;
217 for (
const CTxOut& tx_out : transaction.vout) {
218 if (
Coin{tx_out, 0, transaction.IsCoinBase()}.
IsSpent()) {
227 bool expected_code_path =
false;
228 const int height{int(fuzzed_data_provider.ConsumeIntegral<uint32_t>() >> 1)};
229 const bool possible_overwrite = fuzzed_data_provider.ConsumeBool();
231 AddCoins(coins_view_cache, transaction, height, possible_overwrite);
232 expected_code_path =
true;
233 }
catch (
const std::logic_error& e) {
234 if (e.what() == std::string{
"Attempted to overwrite an unspent coin (when possible_overwrite is false)"}) {
235 assert(!possible_overwrite);
236 expected_code_path =
true;
239 assert(expected_code_path);
247 const CTransaction transaction{random_mutable_transaction};
258 if (
Consensus::CheckTxInputs(transaction, state, coins_view_cache, fuzzed_data_provider.ConsumeIntegralInRange<
int>(0, std::numeric_limits<int>::max()), tx_fee_out)) {
263 const CTransaction transaction{random_mutable_transaction};
272 const CTransaction transaction{random_mutable_transaction};
278 const auto flags{fuzzed_data_provider.ConsumeIntegral<uint32_t>()};
A Coin in one level of the coins database caching hierarchy.
void AddFlags(uint8_t flags, CoinsCachePair &self, CoinsCachePair &sentinel) noexcept
Adding a flag also requires a self reference to the pair that contains this entry in the CCoinsCache ...