Bitcoin Core  29.1.0
P2P Digital Currency
ccoins_caching.cpp
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1 // Copyright (c) 2016-2022 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 <bench/bench.h>
6 #include <coins.h>
7 #include <consensus/amount.h>
8 #include <key.h>
9 #include <policy/policy.h>
10 #include <primitives/transaction.h>
11 #include <script/script.h>
12 #include <script/signingprovider.h>
14 
15 #include <cassert>
16 #include <vector>
17 
18 // Microbenchmark for simple accesses to a CCoinsViewCache database. Note from
19 // laanwj, "replicating the actual usage patterns of the client is hard though,
20 // many times micro-benchmarks of the database showed completely different
21 // characteristics than e.g. reindex timings. But that's not a requirement of
22 // every benchmark."
23 // (https://github.com/bitcoin/bitcoin/issues/7883#issuecomment-224807484)
24 static void CCoinsCaching(benchmark::Bench& bench)
25 {
27 
28  FillableSigningProvider keystore;
29  CCoinsView coinsDummy;
30  CCoinsViewCache coins(&coinsDummy);
31  std::vector<CMutableTransaction> dummyTransactions =
32  SetupDummyInputs(keystore, coins, {11 * COIN, 50 * COIN, 21 * COIN, 22 * COIN});
33 
35  t1.vin.resize(3);
36  t1.vin[0].prevout.hash = dummyTransactions[0].GetHash();
37  t1.vin[0].prevout.n = 1;
38  t1.vin[0].scriptSig << std::vector<unsigned char>(65, 0);
39  t1.vin[1].prevout.hash = dummyTransactions[1].GetHash();
40  t1.vin[1].prevout.n = 0;
41  t1.vin[1].scriptSig << std::vector<unsigned char>(65, 0) << std::vector<unsigned char>(33, 4);
42  t1.vin[2].prevout.hash = dummyTransactions[1].GetHash();
43  t1.vin[2].prevout.n = 1;
44  t1.vin[2].scriptSig << std::vector<unsigned char>(65, 0) << std::vector<unsigned char>(33, 4);
45  t1.vout.resize(2);
46  t1.vout[0].nValue = 90 * COIN;
47  t1.vout[0].scriptPubKey << OP_1;
48 
49  // Benchmark.
50  const CTransaction tx_1(t1);
51  bench.run([&] {
52  bool success{AreInputsStandard(tx_1, coins)};
53  assert(success);
54  });
55 }
56 
assert(!tx.IsCoinBase())
RAII class initializing and deinitializing global state for elliptic curve support.
Definition: key.h:321
ECC_Context ecc_context
std::vector< CTxIn > vin
Definition: transaction.h:379
static void CCoinsCaching(benchmark::Bench &bench)
Definition: script.h:83
bool AreInputsStandard(const CTransaction &tx, const CCoinsViewCache &mapInputs)
Check transaction inputs to mitigate two potential denial-of-service attacks:
Definition: policy.cpp:220
BENCHMARK(CCoinsCaching, benchmark::PriorityLevel::HIGH)
Bench & run(char const *benchmarkName, Op &&op)
Repeatedly calls op() based on the configuration, and performs measurements.
Definition: nanobench.h:1234
Abstract view on the open txout dataset.
Definition: coins.h:309
Fillable signing provider that keeps keys in an address->secret map.
std::vector< CMutableTransaction > SetupDummyInputs(FillableSigningProvider &keystoreRet, CCoinsViewCache &coinsRet, const std::array< CAmount, 4 > &nValues)
A mutable version of CTransaction.
Definition: transaction.h:377
Main entry point to nanobench&#39;s benchmarking facility.
Definition: nanobench.h:627
The basic transaction that is broadcasted on the network and contained in blocks. ...
Definition: transaction.h:295
CCoinsView that adds a memory cache for transactions to another CCoinsView.
Definition: coins.h:362
static constexpr CAmount COIN
The amount of satoshis in one BTC.
Definition: amount.h:15