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-BEGIN VERIFY SCRIPT- ./contrib/devtools/copyright_header.py update ./ -END VERIFY SCRIPT-
185 lines
7 KiB
C++
185 lines
7 KiB
C++
// Copyright (c) 2015-2020 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 <chain.h>
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#include <chainparams.h>
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#include <pow.h>
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#include <test/util/setup_common.h>
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#include <boost/test/unit_test.hpp>
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BOOST_FIXTURE_TEST_SUITE(pow_tests, BasicTestingSetup)
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/* Test calculation of next difficulty target with no constraints applying */
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BOOST_AUTO_TEST_CASE(get_next_work)
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{
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const auto chainParams = CreateChainParams(*m_node.args, CBaseChainParams::MAIN);
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int64_t nLastRetargetTime = 1261130161; // Block #30240
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CBlockIndex pindexLast;
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pindexLast.nHeight = 32255;
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pindexLast.nTime = 1262152739; // Block #32255
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pindexLast.nBits = 0x1d00ffff;
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BOOST_CHECK_EQUAL(CalculateNextWorkRequired(&pindexLast, nLastRetargetTime, chainParams->GetConsensus()), 0x1d00d86aU);
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}
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/* Test the constraint on the upper bound for next work */
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BOOST_AUTO_TEST_CASE(get_next_work_pow_limit)
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{
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const auto chainParams = CreateChainParams(*m_node.args, CBaseChainParams::MAIN);
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int64_t nLastRetargetTime = 1231006505; // Block #0
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CBlockIndex pindexLast;
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pindexLast.nHeight = 2015;
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pindexLast.nTime = 1233061996; // Block #2015
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pindexLast.nBits = 0x1d00ffff;
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BOOST_CHECK_EQUAL(CalculateNextWorkRequired(&pindexLast, nLastRetargetTime, chainParams->GetConsensus()), 0x1d00ffffU);
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}
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/* Test the constraint on the lower bound for actual time taken */
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BOOST_AUTO_TEST_CASE(get_next_work_lower_limit_actual)
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{
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const auto chainParams = CreateChainParams(*m_node.args, CBaseChainParams::MAIN);
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int64_t nLastRetargetTime = 1279008237; // Block #66528
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CBlockIndex pindexLast;
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pindexLast.nHeight = 68543;
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pindexLast.nTime = 1279297671; // Block #68543
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pindexLast.nBits = 0x1c05a3f4;
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BOOST_CHECK_EQUAL(CalculateNextWorkRequired(&pindexLast, nLastRetargetTime, chainParams->GetConsensus()), 0x1c0168fdU);
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}
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/* Test the constraint on the upper bound for actual time taken */
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BOOST_AUTO_TEST_CASE(get_next_work_upper_limit_actual)
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{
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const auto chainParams = CreateChainParams(*m_node.args, CBaseChainParams::MAIN);
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int64_t nLastRetargetTime = 1263163443; // NOTE: Not an actual block time
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CBlockIndex pindexLast;
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pindexLast.nHeight = 46367;
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pindexLast.nTime = 1269211443; // Block #46367
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pindexLast.nBits = 0x1c387f6f;
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BOOST_CHECK_EQUAL(CalculateNextWorkRequired(&pindexLast, nLastRetargetTime, chainParams->GetConsensus()), 0x1d00e1fdU);
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}
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BOOST_AUTO_TEST_CASE(CheckProofOfWork_test_negative_target)
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{
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const auto consensus = CreateChainParams(*m_node.args, CBaseChainParams::MAIN)->GetConsensus();
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uint256 hash;
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unsigned int nBits;
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nBits = UintToArith256(consensus.powLimit).GetCompact(true);
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hash.SetHex("0x1");
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BOOST_CHECK(!CheckProofOfWork(hash, nBits, consensus));
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}
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BOOST_AUTO_TEST_CASE(CheckProofOfWork_test_overflow_target)
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{
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const auto consensus = CreateChainParams(*m_node.args, CBaseChainParams::MAIN)->GetConsensus();
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uint256 hash;
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unsigned int nBits = ~0x00800000;
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hash.SetHex("0x1");
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BOOST_CHECK(!CheckProofOfWork(hash, nBits, consensus));
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}
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BOOST_AUTO_TEST_CASE(CheckProofOfWork_test_too_easy_target)
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{
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const auto consensus = CreateChainParams(*m_node.args, CBaseChainParams::MAIN)->GetConsensus();
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uint256 hash;
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unsigned int nBits;
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arith_uint256 nBits_arith = UintToArith256(consensus.powLimit);
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nBits_arith *= 2;
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nBits = nBits_arith.GetCompact();
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hash.SetHex("0x1");
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BOOST_CHECK(!CheckProofOfWork(hash, nBits, consensus));
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}
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BOOST_AUTO_TEST_CASE(CheckProofOfWork_test_biger_hash_than_target)
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{
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const auto consensus = CreateChainParams(*m_node.args, CBaseChainParams::MAIN)->GetConsensus();
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uint256 hash;
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unsigned int nBits;
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arith_uint256 hash_arith = UintToArith256(consensus.powLimit);
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nBits = hash_arith.GetCompact();
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hash_arith *= 2; // hash > nBits
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hash = ArithToUint256(hash_arith);
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BOOST_CHECK(!CheckProofOfWork(hash, nBits, consensus));
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}
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BOOST_AUTO_TEST_CASE(CheckProofOfWork_test_zero_target)
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{
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const auto consensus = CreateChainParams(*m_node.args, CBaseChainParams::MAIN)->GetConsensus();
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uint256 hash;
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unsigned int nBits;
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arith_uint256 hash_arith{0};
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nBits = hash_arith.GetCompact();
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hash = ArithToUint256(hash_arith);
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BOOST_CHECK(!CheckProofOfWork(hash, nBits, consensus));
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}
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BOOST_AUTO_TEST_CASE(GetBlockProofEquivalentTime_test)
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{
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const auto chainParams = CreateChainParams(*m_node.args, CBaseChainParams::MAIN);
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std::vector<CBlockIndex> blocks(10000);
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for (int i = 0; i < 10000; i++) {
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blocks[i].pprev = i ? &blocks[i - 1] : nullptr;
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blocks[i].nHeight = i;
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blocks[i].nTime = 1269211443 + i * chainParams->GetConsensus().nPowTargetSpacing;
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blocks[i].nBits = 0x207fffff; /* target 0x7fffff000... */
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blocks[i].nChainWork = i ? blocks[i - 1].nChainWork + GetBlockProof(blocks[i - 1]) : arith_uint256(0);
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}
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for (int j = 0; j < 1000; j++) {
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CBlockIndex *p1 = &blocks[InsecureRandRange(10000)];
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CBlockIndex *p2 = &blocks[InsecureRandRange(10000)];
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CBlockIndex *p3 = &blocks[InsecureRandRange(10000)];
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int64_t tdiff = GetBlockProofEquivalentTime(*p1, *p2, *p3, chainParams->GetConsensus());
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BOOST_CHECK_EQUAL(tdiff, p1->GetBlockTime() - p2->GetBlockTime());
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}
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}
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void sanity_check_chainparams(const ArgsManager& args, std::string chainName)
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{
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const auto chainParams = CreateChainParams(args, chainName);
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const auto consensus = chainParams->GetConsensus();
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// hash genesis is correct
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BOOST_CHECK_EQUAL(consensus.hashGenesisBlock, chainParams->GenesisBlock().GetHash());
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// target timespan is an even multiple of spacing
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BOOST_CHECK_EQUAL(consensus.nPowTargetTimespan % consensus.nPowTargetSpacing, 0);
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// genesis nBits is positive, doesn't overflow and is lower than powLimit
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arith_uint256 pow_compact;
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bool neg, over;
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pow_compact.SetCompact(chainParams->GenesisBlock().nBits, &neg, &over);
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BOOST_CHECK(!neg && pow_compact != 0);
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BOOST_CHECK(!over);
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BOOST_CHECK(UintToArith256(consensus.powLimit) >= pow_compact);
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// check max target * 4*nPowTargetTimespan doesn't overflow -- see pow.cpp:CalculateNextWorkRequired()
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if (!consensus.fPowNoRetargeting) {
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arith_uint256 targ_max("0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF");
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targ_max /= consensus.nPowTargetTimespan*4;
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BOOST_CHECK(UintToArith256(consensus.powLimit) < targ_max);
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}
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}
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BOOST_AUTO_TEST_CASE(ChainParams_MAIN_sanity)
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{
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sanity_check_chainparams(*m_node.args, CBaseChainParams::MAIN);
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}
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BOOST_AUTO_TEST_CASE(ChainParams_REGTEST_sanity)
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{
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sanity_check_chainparams(*m_node.args, CBaseChainParams::REGTEST);
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}
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BOOST_AUTO_TEST_CASE(ChainParams_TESTNET_sanity)
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{
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sanity_check_chainparams(*m_node.args, CBaseChainParams::TESTNET);
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}
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BOOST_AUTO_TEST_CASE(ChainParams_SIGNET_sanity)
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{
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sanity_check_chainparams(*m_node.args, CBaseChainParams::SIGNET);
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}
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BOOST_AUTO_TEST_SUITE_END()
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