Bitcoin Core 28.0.0
P2P Digital Currency
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validation_block_tests.cpp
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1// Copyright (c) 2018-2022 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 <boost/test/unit_test.hpp>
6
7#include <chainparams.h>
8#include <consensus/merkle.h>
10#include <node/miner.h>
11#include <pow.h>
12#include <random.h>
13#include <test/util/random.h>
14#include <test/util/script.h>
16#include <util/time.h>
17#include <validation.h>
18#include <validationinterface.h>
19
20#include <thread>
21
23
26 std::shared_ptr<CBlock> Block(const uint256& prev_hash);
27 std::shared_ptr<const CBlock> GoodBlock(const uint256& prev_hash);
28 std::shared_ptr<const CBlock> BadBlock(const uint256& prev_hash);
29 std::shared_ptr<CBlock> FinalizeBlock(std::shared_ptr<CBlock> pblock);
30 void BuildChain(const uint256& root, int height, const unsigned int invalid_rate, const unsigned int branch_rate, const unsigned int max_size, std::vector<std::shared_ptr<const CBlock>>& blocks);
31};
32} // namespace validation_block_tests
33
34BOOST_FIXTURE_TEST_SUITE(validation_block_tests, MinerTestingSetup)
35
36struct TestSubscriber final : public CValidationInterface {
38
39 explicit TestSubscriber(uint256 tip) : m_expected_tip(tip) {}
40
41 void UpdatedBlockTip(const CBlockIndex* pindexNew, const CBlockIndex* pindexFork, bool fInitialDownload) override
42 {
43 BOOST_CHECK_EQUAL(m_expected_tip, pindexNew->GetBlockHash());
44 }
45
46 void BlockConnected(ChainstateRole role, const std::shared_ptr<const CBlock>& block, const CBlockIndex* pindex) override
47 {
48 BOOST_CHECK_EQUAL(m_expected_tip, block->hashPrevBlock);
49 BOOST_CHECK_EQUAL(m_expected_tip, pindex->pprev->GetBlockHash());
50
51 m_expected_tip = block->GetHash();
52 }
53
54 void BlockDisconnected(const std::shared_ptr<const CBlock>& block, const CBlockIndex* pindex) override
55 {
56 BOOST_CHECK_EQUAL(m_expected_tip, block->GetHash());
57 BOOST_CHECK_EQUAL(m_expected_tip, pindex->GetBlockHash());
58
59 m_expected_tip = block->hashPrevBlock;
60 }
61};
62
63std::shared_ptr<CBlock> MinerTestingSetup::Block(const uint256& prev_hash)
64{
65 static int i = 0;
66 static uint64_t time = Params().GenesisBlock().nTime;
67
68 BlockAssembler::Options options;
69 auto ptemplate = BlockAssembler{m_node.chainman->ActiveChainstate(), m_node.mempool.get(), options}.CreateNewBlock(CScript{} << i++ << OP_TRUE);
70 auto pblock = std::make_shared<CBlock>(ptemplate->block);
71 pblock->hashPrevBlock = prev_hash;
72 pblock->nTime = ++time;
73
74 // Make the coinbase transaction with two outputs:
75 // One zero-value one that has a unique pubkey to make sure that blocks at the same height can have a different hash
76 // Another one that has the coinbase reward in a P2WSH with OP_TRUE as witness program to make it easy to spend
77 CMutableTransaction txCoinbase(*pblock->vtx[0]);
78 txCoinbase.vout.resize(2);
79 txCoinbase.vout[1].scriptPubKey = P2WSH_OP_TRUE;
80 txCoinbase.vout[1].nValue = txCoinbase.vout[0].nValue;
81 txCoinbase.vout[0].nValue = 0;
82 txCoinbase.vin[0].scriptWitness.SetNull();
83 // Always pad with OP_0 at the end to avoid bad-cb-length error
84 txCoinbase.vin[0].scriptSig = CScript{} << WITH_LOCK(::cs_main, return m_node.chainman->m_blockman.LookupBlockIndex(prev_hash)->nHeight + 1) << OP_0;
85 pblock->vtx[0] = MakeTransactionRef(std::move(txCoinbase));
86
87 return pblock;
88}
89
90std::shared_ptr<CBlock> MinerTestingSetup::FinalizeBlock(std::shared_ptr<CBlock> pblock)
91{
92 const CBlockIndex* prev_block{WITH_LOCK(::cs_main, return m_node.chainman->m_blockman.LookupBlockIndex(pblock->hashPrevBlock))};
93 m_node.chainman->GenerateCoinbaseCommitment(*pblock, prev_block);
94
95 pblock->hashMerkleRoot = BlockMerkleRoot(*pblock);
96
97 while (!CheckProofOfWork(pblock->GetHash(), pblock->nBits, Params().GetConsensus())) {
98 ++(pblock->nNonce);
99 }
100
101 // submit block header, so that miner can get the block height from the
102 // global state and the node has the topology of the chain
103 BlockValidationState ignored;
104 BOOST_CHECK(Assert(m_node.chainman)->ProcessNewBlockHeaders({pblock->GetBlockHeader()}, true, ignored));
105
106 return pblock;
107}
108
109// construct a valid block
110std::shared_ptr<const CBlock> MinerTestingSetup::GoodBlock(const uint256& prev_hash)
111{
112 return FinalizeBlock(Block(prev_hash));
113}
114
115// construct an invalid block (but with a valid header)
116std::shared_ptr<const CBlock> MinerTestingSetup::BadBlock(const uint256& prev_hash)
117{
118 auto pblock = Block(prev_hash);
119
120 CMutableTransaction coinbase_spend;
121 coinbase_spend.vin.emplace_back(COutPoint(pblock->vtx[0]->GetHash(), 0), CScript(), 0);
122 coinbase_spend.vout.push_back(pblock->vtx[0]->vout[0]);
123
124 CTransactionRef tx = MakeTransactionRef(coinbase_spend);
125 pblock->vtx.push_back(tx);
126
127 auto ret = FinalizeBlock(pblock);
128 return ret;
129}
130
131// NOLINTNEXTLINE(misc-no-recursion)
132void MinerTestingSetup::BuildChain(const uint256& root, int height, const unsigned int invalid_rate, const unsigned int branch_rate, const unsigned int max_size, std::vector<std::shared_ptr<const CBlock>>& blocks)
133{
134 if (height <= 0 || blocks.size() >= max_size) return;
135
136 bool gen_invalid = InsecureRandRange(100) < invalid_rate;
137 bool gen_fork = InsecureRandRange(100) < branch_rate;
138
139 const std::shared_ptr<const CBlock> pblock = gen_invalid ? BadBlock(root) : GoodBlock(root);
140 blocks.push_back(pblock);
141 if (!gen_invalid) {
142 BuildChain(pblock->GetHash(), height - 1, invalid_rate, branch_rate, max_size, blocks);
143 }
144
145 if (gen_fork) {
146 blocks.push_back(GoodBlock(root));
147 BuildChain(blocks.back()->GetHash(), height - 1, invalid_rate, branch_rate, max_size, blocks);
148 }
149}
150
151BOOST_AUTO_TEST_CASE(processnewblock_signals_ordering)
152{
153 // build a large-ish chain that's likely to have some forks
154 std::vector<std::shared_ptr<const CBlock>> blocks;
155 while (blocks.size() < 50) {
156 blocks.clear();
157 BuildChain(Params().GenesisBlock().GetHash(), 100, 15, 10, 500, blocks);
158 }
159
160 bool ignored;
161 // Connect the genesis block and drain any outstanding events
162 BOOST_CHECK(Assert(m_node.chainman)->ProcessNewBlock(std::make_shared<CBlock>(Params().GenesisBlock()), true, true, &ignored));
163 m_node.validation_signals->SyncWithValidationInterfaceQueue();
164
165 // subscribe to events (this subscriber will validate event ordering)
166 const CBlockIndex* initial_tip = nullptr;
167 {
168 LOCK(cs_main);
169 initial_tip = m_node.chainman->ActiveChain().Tip();
170 }
171 auto sub = std::make_shared<TestSubscriber>(initial_tip->GetBlockHash());
172 m_node.validation_signals->RegisterSharedValidationInterface(sub);
173
174 // create a bunch of threads that repeatedly process a block generated above at random
175 // this will create parallelism and randomness inside validation - the ValidationInterface
176 // will subscribe to events generated during block validation and assert on ordering invariance
177 std::vector<std::thread> threads;
178 threads.reserve(10);
179 for (int i = 0; i < 10; i++) {
180 threads.emplace_back([&]() {
181 bool ignored;
182 FastRandomContext insecure;
183 for (int i = 0; i < 1000; i++) {
184 auto block = blocks[insecure.randrange(blocks.size() - 1)];
185 Assert(m_node.chainman)->ProcessNewBlock(block, true, true, &ignored);
186 }
187
188 // to make sure that eventually we process the full chain - do it here
189 for (const auto& block : blocks) {
190 if (block->vtx.size() == 1) {
191 bool processed = Assert(m_node.chainman)->ProcessNewBlock(block, true, true, &ignored);
192 assert(processed);
193 }
194 }
195 });
196 }
197
198 for (auto& t : threads) {
199 t.join();
200 }
201 m_node.validation_signals->SyncWithValidationInterfaceQueue();
202
203 m_node.validation_signals->UnregisterSharedValidationInterface(sub);
204
205 LOCK(cs_main);
206 BOOST_CHECK_EQUAL(sub->m_expected_tip, m_node.chainman->ActiveChain().Tip()->GetBlockHash());
207}
208
226BOOST_AUTO_TEST_CASE(mempool_locks_reorg)
227{
228 bool ignored;
229 auto ProcessBlock = [&](std::shared_ptr<const CBlock> block) -> bool {
230 return Assert(m_node.chainman)->ProcessNewBlock(block, /*force_processing=*/true, /*min_pow_checked=*/true, /*new_block=*/&ignored);
231 };
232
233 // Process all mined blocks
234 BOOST_REQUIRE(ProcessBlock(std::make_shared<CBlock>(Params().GenesisBlock())));
235 auto last_mined = GoodBlock(Params().GenesisBlock().GetHash());
236 BOOST_REQUIRE(ProcessBlock(last_mined));
237
238 // Run the test multiple times
239 for (int test_runs = 3; test_runs > 0; --test_runs) {
240 BOOST_CHECK_EQUAL(last_mined->GetHash(), WITH_LOCK(Assert(m_node.chainman)->GetMutex(), return m_node.chainman->ActiveChain().Tip()->GetBlockHash()));
241
242 // Later on split from here
243 const uint256 split_hash{last_mined->hashPrevBlock};
244
245 // Create a bunch of transactions to spend the miner rewards of the
246 // most recent blocks
247 std::vector<CTransactionRef> txs;
248 for (int num_txs = 22; num_txs > 0; --num_txs) {
250 mtx.vin.emplace_back(COutPoint{last_mined->vtx[0]->GetHash(), 1}, CScript{});
251 mtx.vin[0].scriptWitness.stack.push_back(WITNESS_STACK_ELEM_OP_TRUE);
252 mtx.vout.push_back(last_mined->vtx[0]->vout[1]);
253 mtx.vout[0].nValue -= 1000;
254 txs.push_back(MakeTransactionRef(mtx));
255
256 last_mined = GoodBlock(last_mined->GetHash());
257 BOOST_REQUIRE(ProcessBlock(last_mined));
258 }
259
260 // Mature the inputs of the txs
261 for (int j = COINBASE_MATURITY; j > 0; --j) {
262 last_mined = GoodBlock(last_mined->GetHash());
263 BOOST_REQUIRE(ProcessBlock(last_mined));
264 }
265
266 // Mine a reorg (and hold it back) before adding the txs to the mempool
267 const uint256 tip_init{last_mined->GetHash()};
268
269 std::vector<std::shared_ptr<const CBlock>> reorg;
270 last_mined = GoodBlock(split_hash);
271 reorg.push_back(last_mined);
272 for (size_t j = COINBASE_MATURITY + txs.size() + 1; j > 0; --j) {
273 last_mined = GoodBlock(last_mined->GetHash());
274 reorg.push_back(last_mined);
275 }
276
277 // Add the txs to the tx pool
278 {
279 LOCK(cs_main);
280 for (const auto& tx : txs) {
281 const MempoolAcceptResult result = m_node.chainman->ProcessTransaction(tx);
283 }
284 }
285
286 // Check that all txs are in the pool
287 {
288 BOOST_CHECK_EQUAL(m_node.mempool->size(), txs.size());
289 }
290
291 // Run a thread that simulates an RPC caller that is polling while
292 // validation is doing a reorg
293 std::thread rpc_thread{[&]() {
294 // This thread is checking that the mempool either contains all of
295 // the transactions invalidated by the reorg, or none of them, and
296 // not some intermediate amount.
297 while (true) {
298 LOCK(m_node.mempool->cs);
299 if (m_node.mempool->size() == 0) {
300 // We are done with the reorg
301 break;
302 }
303 // Internally, we might be in the middle of the reorg, but
304 // externally the reorg to the most-proof-of-work chain should
305 // be atomic. So the caller assumes that the returned mempool
306 // is consistent. That is, it has all txs that were there
307 // before the reorg.
308 assert(m_node.mempool->size() == txs.size());
309 continue;
310 }
311 LOCK(cs_main);
312 // We are done with the reorg, so the tip must have changed
313 assert(tip_init != m_node.chainman->ActiveChain().Tip()->GetBlockHash());
314 }};
315
316 // Submit the reorg in this thread to invalidate and remove the txs from the tx pool
317 for (const auto& b : reorg) {
318 ProcessBlock(b);
319 }
320 // Check that the reorg was eventually successful
321 BOOST_CHECK_EQUAL(last_mined->GetHash(), WITH_LOCK(Assert(m_node.chainman)->GetMutex(), return m_node.chainman->ActiveChain().Tip()->GetBlockHash()));
322
323 // We can join the other thread, which returns when the reorg was successful
324 rpc_thread.join();
325 }
326}
327
328BOOST_AUTO_TEST_CASE(witness_commitment_index)
329{
330 LOCK(Assert(m_node.chainman)->GetMutex());
331 CScript pubKey;
332 pubKey << 1 << OP_TRUE;
333 BlockAssembler::Options options;
334 auto ptemplate = BlockAssembler{m_node.chainman->ActiveChainstate(), m_node.mempool.get(), options}.CreateNewBlock(pubKey);
335 CBlock pblock = ptemplate->block;
336
337 CTxOut witness;
339 witness.scriptPubKey[0] = OP_RETURN;
340 witness.scriptPubKey[1] = 0x24;
341 witness.scriptPubKey[2] = 0xaa;
342 witness.scriptPubKey[3] = 0x21;
343 witness.scriptPubKey[4] = 0xa9;
344 witness.scriptPubKey[5] = 0xed;
345
346 // A witness larger than the minimum size is still valid
347 CTxOut min_plus_one = witness;
349
350 CTxOut invalid = witness;
351 invalid.scriptPubKey[0] = OP_VERIFY;
352
353 CMutableTransaction txCoinbase(*pblock.vtx[0]);
354 txCoinbase.vout.resize(4);
355 txCoinbase.vout[0] = witness;
356 txCoinbase.vout[1] = witness;
357 txCoinbase.vout[2] = min_plus_one;
358 txCoinbase.vout[3] = invalid;
359 pblock.vtx[0] = MakeTransactionRef(std::move(txCoinbase));
360
362}
int ret
node::NodeContext m_node
const CChainParams & Params()
Return the currently selected parameters.
#define Assert(val)
Identity function.
Definition check.h:77
uint32_t nTime
Definition block.h:28
Definition block.h:69
std::vector< CTransactionRef > vtx
Definition block.h:72
The block chain is a tree shaped structure starting with the genesis block at the root,...
Definition chain.h:141
CBlockIndex * pprev
pointer to the index of the predecessor of this block
Definition chain.h:147
uint256 GetBlockHash() const
Definition chain.h:243
const CBlock & GenesisBlock() const
Definition chainparams.h:98
An outpoint - a combination of a transaction hash and an index n into its vout.
Definition transaction.h:29
Serialized script, used inside transaction inputs and outputs.
Definition script.h:414
An output of a transaction.
CScript scriptPubKey
Implement this to subscribe to events generated in validation and mempool.
Fast randomness source.
Definition random.h:377
I randrange(I range) noexcept
Generate a random integer in the range [0..range), with range > 0.
Definition random.h:254
Generate a new block, without valid proof-of-work.
Definition miner.h:140
std::unique_ptr< CBlockTemplate > CreateNewBlock(const CScript &scriptPubKeyIn)
Construct a new block template with coinbase to scriptPubKeyIn.
Definition miner.cpp:109
void resize(size_type new_size)
Definition prevector.h:330
256-bit opaque blob.
Definition uint256.h:178
static constexpr size_t MINIMUM_WITNESS_COMMITMENT
Minimum size of a witness commitment structure.
Definition validation.h:18
int GetWitnessCommitmentIndex(const CBlock &block)
Compute at which vout of the block's coinbase transaction the witness commitment occurs,...
Definition validation.h:164
static const int COINBASE_MATURITY
Coinbase transaction outputs can only be spent after this number of new blocks (network rule)
Definition consensus.h:19
RecursiveMutex cs_main
Mutex to guard access to validation specific variables, such as reading or changing the chainstate.
Definition cs_main.cpp:8
BOOST_AUTO_TEST_SUITE_END()
ChainstateRole
This enum describes the various roles a specific Chainstate instance can take.
Definition chain.h:25
uint256 BlockMerkleRoot(const CBlock &block, bool *mutated)
Definition merkle.cpp:65
#define BOOST_CHECK_EQUAL(v1, v2)
Definition object.cpp:18
#define BOOST_CHECK(expr)
Definition object.cpp:17
bool CheckProofOfWork(uint256 hash, unsigned int nBits, const Consensus::Params &params)
Check whether a block hash satisfies the proof-of-work requirement specified by nBits.
Definition pow.cpp:137
static CTransactionRef MakeTransactionRef(Tx &&txIn)
std::shared_ptr< const CTransaction > CTransactionRef
@ OP_TRUE
Definition script.h:83
@ OP_VERIFY
Definition script.h:109
@ OP_0
Definition script.h:75
@ OP_RETURN
Definition script.h:110
A mutable version of CTransaction.
std::vector< CTxOut > vout
std::vector< CTxIn > vin
Validation result for a transaction evaluated by MemPoolAccept (single or package).
Definition validation.h:128
const ResultType m_result_type
Result type.
Definition validation.h:137
Identical to TestingSetup, but chain set to regtest.
void BlockDisconnected(const std::shared_ptr< const CBlock > &block, const CBlockIndex *pindex) override
Notifies listeners of a block being disconnected Provides the block that was disconnected.
void BlockConnected(ChainstateRole role, const std::shared_ptr< const CBlock > &block, const CBlockIndex *pindex) override
Notifies listeners of a block being connected.
void UpdatedBlockTip(const CBlockIndex *pindexNew, const CBlockIndex *pindexFork, bool fInitialDownload) override
Notifies listeners when the block chain tip advances.
std::unique_ptr< ValidationSignals > validation_signals
Issues calls about blocks and transactions.
Definition context.h:85
std::unique_ptr< CTxMemPool > mempool
Definition context.h:65
std::unique_ptr< ChainstateManager > chainman
Definition context.h:69
std::shared_ptr< const CBlock > BadBlock(const uint256 &prev_hash)
std::shared_ptr< CBlock > Block(const uint256 &prev_hash)
std::shared_ptr< const CBlock > GoodBlock(const uint256 &prev_hash)
void BuildChain(const uint256 &root, int height, const unsigned int invalid_rate, const unsigned int branch_rate, const unsigned int max_size, std::vector< std::shared_ptr< const CBlock > > &blocks)
std::shared_ptr< CBlock > FinalizeBlock(std::shared_ptr< CBlock > pblock)
#define LOCK(cs)
Definition sync.h:257
#define WITH_LOCK(cs, code)
Run code while locking a mutex.
Definition sync.h:301
static uint64_t InsecureRandRange(uint64_t range)
Definition random.h:45
static const std::vector< uint8_t > WITNESS_STACK_ELEM_OP_TRUE
Definition script.h:11
static const CScript P2WSH_OP_TRUE
Definition script.h:12
assert(!tx.IsCoinBase())
BOOST_AUTO_TEST_CASE(processnewblock_signals_ordering)