neobytes/src/test/pow_tests.cpp

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// Copyright (c) 2015 The Bitcoin Core developers
// Distributed under the MIT/X11 software license, see the accompanying
// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include "chain.h"
#include "chainparams.h"
#include "pow.h"
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#include "random.h"
#include "util.h"
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#include "test/test_dash.h"
#include <boost/test/unit_test.hpp>
using namespace std;
BOOST_FIXTURE_TEST_SUITE(pow_tests, BasicTestingSetup)
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/* Test calculation of next difficulty target with DGW */
BOOST_AUTO_TEST_CASE(get_next_work)
{
SelectParams(CBaseChainParams::MAIN);
const Consensus::Params& params = Params().GetConsensus();
// build the chain of 24 blocks
CBlockIndex blockIndexLast;
blockIndexLast.nHeight = 123456;
blockIndexLast.nTime = 1408732489;
blockIndexLast.nBits = 0x1b1418d4;
CBlockIndex blockIndexPrev1 = CBlockIndex();
blockIndexPrev1.nTime = 1408732257; // Block #123455
blockIndexPrev1.nBits = 0x1b13b83f;
blockIndexLast.pprev = &blockIndexPrev1;
CBlockIndex blockIndexPrev2 = CBlockIndex();
blockIndexPrev2.nTime = 1408732229; // Block #123454
blockIndexPrev2.nBits = 0x1b10460b;
blockIndexPrev1.pprev = &blockIndexPrev2;
CBlockIndex blockIndexPrev3 = CBlockIndex();
blockIndexPrev3.nTime = 1408731256; // Block #123453
blockIndexPrev3.nBits = 0x1b113ff1;
blockIndexPrev2.pprev = &blockIndexPrev3;
CBlockIndex blockIndexPrev4 = CBlockIndex();
blockIndexPrev4.nTime = 1408731242; // Block #123452
blockIndexPrev4.nBits = 0x1b0fed89;
blockIndexPrev3.pprev = &blockIndexPrev4;
CBlockIndex blockIndexPrev5 = CBlockIndex();
blockIndexPrev5.nTime = 1408730914; // Block #123451
blockIndexPrev5.nBits = 0x1b10b864;
blockIndexPrev4.pprev = &blockIndexPrev5;
CBlockIndex blockIndexPrev6 = CBlockIndex();
blockIndexPrev6.nTime = 1408730862; // Block #123450
blockIndexPrev6.nBits = 0x1b0dd168;
blockIndexPrev5.pprev = &blockIndexPrev6;
CBlockIndex blockIndexPrev7 = CBlockIndex();
blockIndexPrev7.nTime = 1408730179; // Block #123449
blockIndexPrev7.nBits = 0x1b0c03d6;
blockIndexPrev6.pprev = &blockIndexPrev7;
CBlockIndex blockIndexPrev8 = CBlockIndex();
blockIndexPrev8.nTime = 1408729678; // Block #123448
blockIndexPrev8.nBits = 0x1b0c9ab8;
blockIndexPrev7.pprev = &blockIndexPrev8;
CBlockIndex blockIndexPrev9 = CBlockIndex();
blockIndexPrev9.nTime = 1408729647; // Block #123447
blockIndexPrev9.nBits = 0x1b0dfaff;
blockIndexPrev8.pprev = &blockIndexPrev9;
CBlockIndex blockIndexPrev10 = CBlockIndex();
blockIndexPrev10.nTime = 1408729587; // Block #123446
blockIndexPrev10.nBits = 0x1b10e878;
blockIndexPrev9.pprev = &blockIndexPrev10;
CBlockIndex blockIndexPrev11 = CBlockIndex();
blockIndexPrev11.nTime = 1408729576; // Block #123445
blockIndexPrev11.nBits = 0x1b1063d0;
blockIndexPrev10.pprev = &blockIndexPrev11;
CBlockIndex blockIndexPrev12 = CBlockIndex();
blockIndexPrev12.nTime = 1408729474; // Block #123444
blockIndexPrev12.nBits = 0x1b104297;
blockIndexPrev11.pprev = &blockIndexPrev12;
CBlockIndex blockIndexPrev13 = CBlockIndex();
blockIndexPrev13.nTime = 1408729305; // Block #123443
blockIndexPrev13.nBits = 0x1b107556;
blockIndexPrev12.pprev = &blockIndexPrev13;
CBlockIndex blockIndexPrev14 = CBlockIndex();
blockIndexPrev14.nTime = 1408729179; // Block #123442
blockIndexPrev14.nBits = 0x1b110764;
blockIndexPrev13.pprev = &blockIndexPrev14;
CBlockIndex blockIndexPrev15 = CBlockIndex();
blockIndexPrev15.nTime = 1408729116; // Block #123441
blockIndexPrev15.nBits = 0x1b1141bf;
blockIndexPrev14.pprev = &blockIndexPrev15;
CBlockIndex blockIndexPrev16 = CBlockIndex();
blockIndexPrev16.nTime = 1408728950; // Block #123440
blockIndexPrev16.nBits = 0x1b1123f9;
blockIndexPrev15.pprev = &blockIndexPrev16;
CBlockIndex blockIndexPrev17 = CBlockIndex();
blockIndexPrev17.nTime = 1408728756; // Block #123439
blockIndexPrev17.nBits = 0x1b118d9c;
blockIndexPrev16.pprev = &blockIndexPrev17;
CBlockIndex blockIndexPrev18 = CBlockIndex();
blockIndexPrev18.nTime = 1408728744; // Block #123438
blockIndexPrev18.nBits = 0x1b11abac;
blockIndexPrev17.pprev = &blockIndexPrev18;
CBlockIndex blockIndexPrev19 = CBlockIndex();
blockIndexPrev19.nTime = 1408728608; // Block #123437
blockIndexPrev19.nBits = 0x1b11951e;
blockIndexPrev18.pprev = &blockIndexPrev19;
CBlockIndex blockIndexPrev20 = CBlockIndex();
blockIndexPrev20.nTime = 1408728495; // Block #123436
blockIndexPrev20.nBits = 0x1b121cf3;
blockIndexPrev19.pprev = &blockIndexPrev20;
CBlockIndex blockIndexPrev21 = CBlockIndex();
blockIndexPrev21.nTime = 1408728479; // Block #123435
blockIndexPrev21.nBits = 0x1b11a33c;
blockIndexPrev20.pprev = &blockIndexPrev21;
CBlockIndex blockIndexPrev22 = CBlockIndex();
blockIndexPrev22.nTime = 1408728332; // Block #123434
blockIndexPrev22.nBits = 0x1b10e09e;
blockIndexPrev21.pprev = &blockIndexPrev22;
CBlockIndex blockIndexPrev23 = CBlockIndex();
blockIndexPrev23.nTime = 1408728124; // Block #123433
blockIndexPrev23.nBits = 0x1b104be1;
blockIndexPrev22.pprev = &blockIndexPrev23;
CBlockHeader blockHeader;
blockHeader.nTime = 1408732505; // Block #123457
BOOST_CHECK_EQUAL(GetNextWorkRequired(&blockIndexLast, &blockHeader, params), 0x1b1441de); // Block #123457 has 0x1b1441de
}
/* Test the constraint on the upper bound for next work */
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// BOOST_AUTO_TEST_CASE(get_next_work_pow_limit)
// {
// SelectParams(CBaseChainParams::MAIN);
// const Consensus::Params& params = Params().GetConsensus();
// int64_t nLastRetargetTime = 1231006505; // Block #0
// CBlockIndex pindexLast;
// pindexLast.nHeight = 2015;
// pindexLast.nTime = 1233061996; // Block #2015
// pindexLast.nBits = 0x1d00ffff;
// BOOST_CHECK_EQUAL(CalculateNextWorkRequired(&pindexLast, nLastRetargetTime, params), 0x1d00ffff);
// }
/* 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)
// {
// SelectParams(CBaseChainParams::MAIN);
// const Consensus::Params& params = Params().GetConsensus();
// int64_t nLastRetargetTime = 1279008237; // Block #66528
// CBlockIndex pindexLast;
// pindexLast.nHeight = 68543;
// pindexLast.nTime = 1279297671; // Block #68543
// pindexLast.nBits = 0x1c05a3f4;
// BOOST_CHECK_EQUAL(CalculateNextWorkRequired(&pindexLast, nLastRetargetTime, params), 0x1c0168fd);
// }
/* 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)
// {
// SelectParams(CBaseChainParams::MAIN);
// const Consensus::Params& params = Params().GetConsensus();
// int64_t nLastRetargetTime = 1263163443; // NOTE: Not an actual block time
// CBlockIndex pindexLast;
// pindexLast.nHeight = 46367;
// pindexLast.nTime = 1269211443; // Block #46367
// pindexLast.nBits = 0x1c387f6f;
// BOOST_CHECK_EQUAL(CalculateNextWorkRequired(&pindexLast, nLastRetargetTime, params), 0x1d00e1fd);
// }
BOOST_AUTO_TEST_CASE(GetBlockProofEquivalentTime_test)
{
SelectParams(CBaseChainParams::MAIN);
const Consensus::Params& params = Params().GetConsensus();
std::vector<CBlockIndex> blocks(10000);
for (int i = 0; i < 10000; i++) {
blocks[i].pprev = i ? &blocks[i - 1] : NULL;
blocks[i].nHeight = i;
blocks[i].nTime = 1269211443 + i * params.nPowTargetSpacing;
blocks[i].nBits = 0x207fffff; /* target 0x7fffff000... */
blocks[i].nChainWork = i ? blocks[i - 1].nChainWork + GetBlockProof(blocks[i - 1]) : arith_uint256(0);
}
for (int j = 0; j < 1000; j++) {
CBlockIndex *p1 = &blocks[GetRand(10000)];
CBlockIndex *p2 = &blocks[GetRand(10000)];
CBlockIndex *p3 = &blocks[GetRand(10000)];
int64_t tdiff = GetBlockProofEquivalentTime(*p1, *p2, *p3, params);
BOOST_CHECK_EQUAL(tdiff, p1->GetBlockTime() - p2->GetBlockTime());
}
}
BOOST_AUTO_TEST_SUITE_END()