Unit test doublespends in new blocks
As suggested by Greg Maxwell-- unit test to make sure a block with a double-spend in it doesn't pass validation if half of the double-spend is already in the memory pool (so full-blown transaction validation is skipped) when the block is received.
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@ -73,6 +73,7 @@ BITCOIN_TESTS =\
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test/test_bitcoin.h \
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test/timedata_tests.cpp \
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test/transaction_tests.cpp \
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test/txvalidationcache_tests.cpp \
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test/uint256_tests.cpp \
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test/univalue_tests.cpp \
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test/util_tests.cpp
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@ -19,3 +19,15 @@ uint256_tests.cpp.
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For further reading, I found the following website to be helpful in
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explaining how the boost unit test framework works:
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[http://www.alittlemadness.com/2009/03/31/c-unit-testing-with-boosttest/](http://www.alittlemadness.com/2009/03/31/c-unit-testing-with-boosttest/).
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test_bitcoin has some built-in command-line arguments; for
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example, to run just the getarg_tests verbosely:
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test_bitcoin --log_level=all --run_test=getarg_tests
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... or to run just the doubledash test:
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test_bitcoin --run_test=getarg_tests/doubledash
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Run test_bitcoin --help for the full list.
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@ -7,8 +7,12 @@
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#include "test_bitcoin.h"
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#include "chainparams.h"
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#include "consensus/consensus.h"
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#include "consensus/validation.h"
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#include "key.h"
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#include "main.h"
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#include "miner.h"
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#include "pubkey.h"
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#include "random.h"
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#include "txdb.h"
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#include "ui_interface.h"
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@ -28,20 +32,22 @@ CWallet* pwalletMain;
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extern bool fPrintToConsole;
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extern void noui_connect();
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BasicTestingSetup::BasicTestingSetup()
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BasicTestingSetup::BasicTestingSetup(CBaseChainParams::Network network)
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{
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ECC_Start();
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SetupEnvironment();
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fPrintToDebugLog = false; // don't want to write to debug.log file
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fCheckBlockIndex = true;
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SelectParams(CBaseChainParams::MAIN);
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SelectParams(network);
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noui_connect();
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}
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BasicTestingSetup::~BasicTestingSetup()
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{
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ECC_Stop();
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}
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TestingSetup::TestingSetup()
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TestingSetup::TestingSetup(CBaseChainParams::Network network) : BasicTestingSetup(network)
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{
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#ifdef ENABLE_WALLET
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bitdb.MakeMock();
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@ -87,6 +93,51 @@ TestingSetup::~TestingSetup()
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boost::filesystem::remove_all(pathTemp);
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}
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TestChain100Setup::TestChain100Setup() : TestingSetup(CBaseChainParams::REGTEST)
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{
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// Generate a 100-block chain:
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coinbaseKey.MakeNewKey(true);
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CScript scriptPubKey = CScript() << ToByteVector(coinbaseKey.GetPubKey()) << OP_CHECKSIG;
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for (int i = 0; i < COINBASE_MATURITY; i++)
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{
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std::vector<CMutableTransaction> noTxns;
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CBlock b = CreateAndProcessBlock(noTxns, scriptPubKey);
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coinbaseTxns.push_back(b.vtx[0]);
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}
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}
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//
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// Create a new block with just given transactions, coinbase paying to
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// scriptPubKey, and try to add it to the current chain.
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//
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CBlock
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TestChain100Setup::CreateAndProcessBlock(const std::vector<CMutableTransaction>& txns, const CScript& scriptPubKey)
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{
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CBlockTemplate *pblocktemplate = CreateNewBlock(scriptPubKey);
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CBlock& block = pblocktemplate->block;
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// Replace mempool-selected txns with just coinbase plus passed-in txns:
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block.vtx.resize(1);
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BOOST_FOREACH(const CMutableTransaction& tx, txns)
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block.vtx.push_back(tx);
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// IncrementExtraNonce creates a valid coinbase and merkleRoot
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unsigned int extraNonce = 0;
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IncrementExtraNonce(&block, chainActive.Tip(), extraNonce);
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while (!CheckProofOfWork(block.GetHash(), block.nBits, Params(CBaseChainParams::REGTEST).GetConsensus())) ++block.nNonce;
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CValidationState state;
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ProcessNewBlock(state, NULL, &block, true, NULL);
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CBlock result = block;
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delete pblocktemplate;
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return result;
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}
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TestChain100Setup::~TestChain100Setup()
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{
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}
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void Shutdown(void* parg)
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{
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exit(0);
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@ -1,6 +1,8 @@
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#ifndef BITCOIN_TEST_TEST_BITCOIN_H
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#define BITCOIN_TEST_TEST_BITCOIN_H
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#include "chainparamsbase.h"
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#include "key.h"
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#include "txdb.h"
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#include <boost/filesystem.hpp>
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@ -10,7 +12,7 @@
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* This just configures logging and chain parameters.
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*/
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struct BasicTestingSetup {
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BasicTestingSetup();
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BasicTestingSetup(CBaseChainParams::Network network = CBaseChainParams::MAIN);
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~BasicTestingSetup();
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};
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@ -23,8 +25,30 @@ struct TestingSetup: public BasicTestingSetup {
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boost::filesystem::path pathTemp;
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boost::thread_group threadGroup;
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TestingSetup();
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TestingSetup(CBaseChainParams::Network network = CBaseChainParams::MAIN);
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~TestingSetup();
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};
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class CBlock;
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struct CMutableTransaction;
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class CScript;
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//
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// Testing fixture that pre-creates a
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// 100-block REGTEST-mode block chain
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//
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struct TestChain100Setup : public TestingSetup {
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TestChain100Setup();
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// Create a new block with just given transactions, coinbase paying to
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// scriptPubKey, and try to add it to the current chain.
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CBlock CreateAndProcessBlock(const std::vector<CMutableTransaction>& txns,
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const CScript& scriptPubKey);
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~TestChain100Setup();
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std::vector<CTransaction> coinbaseTxns; // For convenience, coinbase transactions
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CKey coinbaseKey; // private/public key needed to spend coinbase transactions
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};
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#endif
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86
src/test/txvalidationcache_tests.cpp
Normal file
86
src/test/txvalidationcache_tests.cpp
Normal file
@ -0,0 +1,86 @@
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// Copyright (c) 2011-2014 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include "consensus/validation.h"
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#include "key.h"
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#include "main.h"
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#include "miner.h"
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#include "pubkey.h"
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#include "txmempool.h"
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#include "random.h"
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#include "script/standard.h"
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#include "test/test_bitcoin.h"
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#include "utiltime.h"
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#include <boost/test/unit_test.hpp>
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BOOST_AUTO_TEST_SUITE(tx_validationcache_tests)
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static bool
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ToMemPool(CMutableTransaction& tx)
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{
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LOCK(cs_main);
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CValidationState state;
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return AcceptToMemoryPool(mempool, state, tx, false, NULL, false);
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}
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BOOST_FIXTURE_TEST_CASE(tx_mempool_block_doublespend, TestChain100Setup)
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{
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// Make sure skipping validation of transctions that were
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// validated going into the memory pool does not allow
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// double-spends in blocks to pass validation when they should not.
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CScript scriptPubKey = CScript() << ToByteVector(coinbaseKey.GetPubKey()) << OP_CHECKSIG;
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// Create a double-spend of mature coinbase txn:
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std::vector<CMutableTransaction> spends;
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spends.resize(2);
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for (int i = 0; i < 2; i++)
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{
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spends[i].vin.resize(1);
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spends[i].vin[0].prevout.hash = coinbaseTxns[0].GetHash();
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spends[i].vin[0].prevout.n = 0;
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spends[i].vout.resize(1);
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spends[i].vout[0].nValue = 11*CENT;
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spends[i].vout[0].scriptPubKey = scriptPubKey;
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// Sign:
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std::vector<unsigned char> vchSig;
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uint256 hash = SignatureHash(scriptPubKey, spends[i], 0, SIGHASH_ALL);
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BOOST_CHECK(coinbaseKey.Sign(hash, vchSig));
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vchSig.push_back((unsigned char)SIGHASH_ALL);
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spends[i].vin[0].scriptSig << vchSig;
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}
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CBlock block;
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// Test 1: block with both of those transactions should be rejected.
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block = CreateAndProcessBlock(spends, scriptPubKey);
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BOOST_CHECK(chainActive.Tip()->GetBlockHash() != block.GetHash());
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// Test 2: ... and should be rejected if spend1 is in the memory pool
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BOOST_CHECK(ToMemPool(spends[0]));
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block = CreateAndProcessBlock(spends, scriptPubKey);
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BOOST_CHECK(chainActive.Tip()->GetBlockHash() != block.GetHash());
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mempool.clear();
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// Test 3: ... and should be rejected if spend2 is in the memory pool
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BOOST_CHECK(ToMemPool(spends[1]));
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block = CreateAndProcessBlock(spends, scriptPubKey);
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BOOST_CHECK(chainActive.Tip()->GetBlockHash() != block.GetHash());
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mempool.clear();
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// Final sanity test: first spend in mempool, second in block, that's OK:
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std::vector<CMutableTransaction> oneSpend;
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oneSpend.push_back(spends[0]);
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BOOST_CHECK(ToMemPool(spends[1]));
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block = CreateAndProcessBlock(oneSpend, scriptPubKey);
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BOOST_CHECK(chainActive.Tip()->GetBlockHash() == block.GetHash());
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// spends[1] should have been removed from the mempool when the
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// block with spends[0] is accepted:
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BOOST_CHECK_EQUAL(mempool.size(), 0);
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}
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BOOST_AUTO_TEST_SUITE_END()
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