mirror of
https://github.com/dashpay/dash.git
synced 2024-12-30 14:25:53 +01:00
6f83cf2adb
Inspired by former implementations by Eric Lombrozo and Rusty Russell, and based on code by Jorge Timon.
390 lines
17 KiB
C++
390 lines
17 KiB
C++
// Copyright (c) 2011-2015 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 "chainparams.h"
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#include "coins.h"
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#include "consensus/consensus.h"
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#include "consensus/merkle.h"
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#include "consensus/validation.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 "script/standard.h"
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#include "txmempool.h"
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#include "uint256.h"
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#include "util.h"
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#include "utilstrencodings.h"
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#include "test/test_bitcoin.h"
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#include <boost/test/unit_test.hpp>
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BOOST_FIXTURE_TEST_SUITE(miner_tests, TestingSetup)
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static
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struct {
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unsigned char extranonce;
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unsigned int nonce;
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} blockinfo[] = {
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{4, 0xa4a3e223}, {2, 0x15c32f9e}, {1, 0x0375b547}, {1, 0x7004a8a5},
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{2, 0xce440296}, {2, 0x52cfe198}, {1, 0x77a72cd0}, {2, 0xbb5d6f84},
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{2, 0x83f30c2c}, {1, 0x48a73d5b}, {1, 0xef7dcd01}, {2, 0x6809c6c4},
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{2, 0x0883ab3c}, {1, 0x087bbbe2}, {2, 0x2104a814}, {2, 0xdffb6daa},
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{1, 0xee8a0a08}, {2, 0xba4237c1}, {1, 0xa70349dc}, {1, 0x344722bb},
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{3, 0xd6294733}, {2, 0xec9f5c94}, {2, 0xca2fbc28}, {1, 0x6ba4f406},
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{2, 0x015d4532}, {1, 0x6e119b7c}, {2, 0x43e8f314}, {2, 0x27962f38},
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{2, 0xb571b51b}, {2, 0xb36bee23}, {2, 0xd17924a8}, {2, 0x6bc212d9},
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{1, 0x630d4948}, {2, 0x9a4c4ebb}, {2, 0x554be537}, {1, 0xd63ddfc7},
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{2, 0xa10acc11}, {1, 0x759a8363}, {2, 0xfb73090d}, {1, 0xe82c6a34},
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{1, 0xe33e92d7}, {3, 0x658ef5cb}, {2, 0xba32ff22}, {5, 0x0227a10c},
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{1, 0xa9a70155}, {5, 0xd096d809}, {1, 0x37176174}, {1, 0x830b8d0f},
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{1, 0xc6e3910e}, {2, 0x823f3ca8}, {1, 0x99850849}, {1, 0x7521fb81},
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{1, 0xaacaabab}, {1, 0xd645a2eb}, {5, 0x7aea1781}, {5, 0x9d6e4b78},
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{1, 0x4ce90fd8}, {1, 0xabdc832d}, {6, 0x4a34f32a}, {2, 0xf2524c1c},
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{2, 0x1bbeb08a}, {1, 0xad47f480}, {1, 0x9f026aeb}, {1, 0x15a95049},
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{2, 0xd1cb95b2}, {2, 0xf84bbda5}, {1, 0x0fa62cd1}, {1, 0xe05f9169},
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{1, 0x78d194a9}, {5, 0x3e38147b}, {5, 0x737ba0d4}, {1, 0x63378e10},
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{1, 0x6d5f91cf}, {2, 0x88612eb8}, {2, 0xe9639484}, {1, 0xb7fabc9d},
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{2, 0x19b01592}, {1, 0x5a90dd31}, {2, 0x5bd7e028}, {2, 0x94d00323},
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{1, 0xa9b9c01a}, {1, 0x3a40de61}, {1, 0x56e7eec7}, {5, 0x859f7ef6},
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{1, 0xfd8e5630}, {1, 0x2b0c9f7f}, {1, 0xba700e26}, {1, 0x7170a408},
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{1, 0x70de86a8}, {1, 0x74d64cd5}, {1, 0x49e738a1}, {2, 0x6910b602},
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{0, 0x643c565f}, {1, 0x54264b3f}, {2, 0x97ea6396}, {2, 0x55174459},
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{2, 0x03e8779a}, {1, 0x98f34d8f}, {1, 0xc07b2b07}, {1, 0xdfe29668},
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{1, 0x3141c7c1}, {1, 0xb3b595f4}, {1, 0x735abf08}, {5, 0x623bfbce},
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{2, 0xd351e722}, {1, 0xf4ca48c9}, {1, 0x5b19c670}, {1, 0xa164bf0e},
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{2, 0xbbbeb305}, {2, 0xfe1c810a},
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};
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CBlockIndex CreateBlockIndex(int nHeight)
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{
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CBlockIndex index;
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index.nHeight = nHeight;
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index.pprev = chainActive.Tip();
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return index;
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}
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bool TestSequenceLocks(const CTransaction &tx, int flags)
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{
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LOCK(mempool.cs);
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return CheckSequenceLocks(tx, flags);
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}
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// NOTE: These tests rely on CreateNewBlock doing its own self-validation!
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BOOST_AUTO_TEST_CASE(CreateNewBlock_validity)
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{
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const CChainParams& chainparams = Params(CBaseChainParams::MAIN);
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CScript scriptPubKey = CScript() << ParseHex("04678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4cef38c4f35504e51ec112de5c384df7ba0b8d578a4c702b6bf11d5f") << OP_CHECKSIG;
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CBlockTemplate *pblocktemplate;
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CMutableTransaction tx,tx2;
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CScript script;
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uint256 hash;
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TestMemPoolEntryHelper entry;
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entry.nFee = 11;
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entry.dPriority = 111.0;
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entry.nHeight = 11;
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LOCK(cs_main);
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fCheckpointsEnabled = false;
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// Simple block creation, nothing special yet:
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BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
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// We can't make transactions until we have inputs
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// Therefore, load 100 blocks :)
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int baseheight = 0;
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std::vector<CTransaction*>txFirst;
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for (unsigned int i = 0; i < sizeof(blockinfo)/sizeof(*blockinfo); ++i)
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{
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CBlock *pblock = &pblocktemplate->block; // pointer for convenience
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pblock->nVersion = 1;
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pblock->nTime = chainActive.Tip()->GetMedianTimePast()+1;
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CMutableTransaction txCoinbase(pblock->vtx[0]);
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txCoinbase.nVersion = 1;
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txCoinbase.vin[0].scriptSig = CScript();
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txCoinbase.vin[0].scriptSig.push_back(blockinfo[i].extranonce);
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txCoinbase.vin[0].scriptSig.push_back(chainActive.Height());
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txCoinbase.vout[0].scriptPubKey = CScript();
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pblock->vtx[0] = CTransaction(txCoinbase);
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if (txFirst.size() == 0)
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baseheight = chainActive.Height();
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if (txFirst.size() < 4)
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txFirst.push_back(new CTransaction(pblock->vtx[0]));
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pblock->hashMerkleRoot = BlockMerkleRoot(*pblock);
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pblock->nNonce = blockinfo[i].nonce;
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CValidationState state;
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BOOST_CHECK(ProcessNewBlock(state, chainparams, NULL, pblock, true, NULL));
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BOOST_CHECK(state.IsValid());
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pblock->hashPrevBlock = pblock->GetHash();
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}
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delete pblocktemplate;
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// Just to make sure we can still make simple blocks
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BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
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delete pblocktemplate;
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// block sigops > limit: 1000 CHECKMULTISIG + 1
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tx.vin.resize(1);
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// NOTE: OP_NOP is used to force 20 SigOps for the CHECKMULTISIG
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tx.vin[0].scriptSig = CScript() << OP_0 << OP_0 << OP_0 << OP_NOP << OP_CHECKMULTISIG << OP_1;
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tx.vin[0].prevout.hash = txFirst[0]->GetHash();
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tx.vin[0].prevout.n = 0;
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tx.vout.resize(1);
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tx.vout[0].nValue = 5000000000LL;
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for (unsigned int i = 0; i < 1001; ++i)
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{
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tx.vout[0].nValue -= 1000000;
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hash = tx.GetHash();
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bool spendsCoinbase = (i == 0) ? true : false; // only first tx spends coinbase
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// If we don't set the # of sig ops in the CTxMemPoolEntry, template creation fails
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mempool.addUnchecked(hash, entry.Fee(1000000).Time(GetTime()).SpendsCoinbase(spendsCoinbase).FromTx(tx));
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tx.vin[0].prevout.hash = hash;
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}
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BOOST_CHECK_THROW(CreateNewBlock(chainparams, scriptPubKey), std::runtime_error);
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mempool.clear();
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tx.vin[0].prevout.hash = txFirst[0]->GetHash();
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tx.vout[0].nValue = 5000000000LL;
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for (unsigned int i = 0; i < 1001; ++i)
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{
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tx.vout[0].nValue -= 1000000;
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hash = tx.GetHash();
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bool spendsCoinbase = (i == 0) ? true : false; // only first tx spends coinbase
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// If we do set the # of sig ops in the CTxMemPoolEntry, template creation passes
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mempool.addUnchecked(hash, entry.Fee(1000000).Time(GetTime()).SpendsCoinbase(spendsCoinbase).SigOps(20).FromTx(tx));
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tx.vin[0].prevout.hash = hash;
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}
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BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
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delete pblocktemplate;
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mempool.clear();
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// block size > limit
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tx.vin[0].scriptSig = CScript();
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// 18 * (520char + DROP) + OP_1 = 9433 bytes
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std::vector<unsigned char> vchData(520);
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for (unsigned int i = 0; i < 18; ++i)
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tx.vin[0].scriptSig << vchData << OP_DROP;
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tx.vin[0].scriptSig << OP_1;
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tx.vin[0].prevout.hash = txFirst[0]->GetHash();
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tx.vout[0].nValue = 5000000000LL;
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for (unsigned int i = 0; i < 128; ++i)
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{
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tx.vout[0].nValue -= 10000000;
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hash = tx.GetHash();
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bool spendsCoinbase = (i == 0) ? true : false; // only first tx spends coinbase
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mempool.addUnchecked(hash, entry.Fee(1000000).Time(GetTime()).SpendsCoinbase(spendsCoinbase).FromTx(tx));
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tx.vin[0].prevout.hash = hash;
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}
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BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
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delete pblocktemplate;
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mempool.clear();
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// orphan in mempool, template creation fails
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(1000000).Time(GetTime()).FromTx(tx));
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BOOST_CHECK_THROW(CreateNewBlock(chainparams, scriptPubKey), std::runtime_error);
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mempool.clear();
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// child with higher priority than parent
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tx.vin[0].scriptSig = CScript() << OP_1;
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tx.vin[0].prevout.hash = txFirst[1]->GetHash();
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tx.vout[0].nValue = 4900000000LL;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(100000000LL).Time(GetTime()).SpendsCoinbase(true).FromTx(tx));
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tx.vin[0].prevout.hash = hash;
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tx.vin.resize(2);
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tx.vin[1].scriptSig = CScript() << OP_1;
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tx.vin[1].prevout.hash = txFirst[0]->GetHash();
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tx.vin[1].prevout.n = 0;
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tx.vout[0].nValue = 5900000000LL;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(400000000LL).Time(GetTime()).SpendsCoinbase(true).FromTx(tx));
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BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
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delete pblocktemplate;
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mempool.clear();
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// coinbase in mempool, template creation fails
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tx.vin.resize(1);
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tx.vin[0].prevout.SetNull();
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tx.vin[0].scriptSig = CScript() << OP_0 << OP_1;
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tx.vout[0].nValue = 0;
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hash = tx.GetHash();
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// give it a fee so it'll get mined
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mempool.addUnchecked(hash, entry.Fee(100000).Time(GetTime()).SpendsCoinbase(false).FromTx(tx));
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BOOST_CHECK_THROW(CreateNewBlock(chainparams, scriptPubKey), std::runtime_error);
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mempool.clear();
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// invalid (pre-p2sh) txn in mempool, template creation fails
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tx.vin[0].prevout.hash = txFirst[0]->GetHash();
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tx.vin[0].prevout.n = 0;
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tx.vin[0].scriptSig = CScript() << OP_1;
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tx.vout[0].nValue = 4900000000LL;
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script = CScript() << OP_0;
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tx.vout[0].scriptPubKey = GetScriptForDestination(CScriptID(script));
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(10000000L).Time(GetTime()).SpendsCoinbase(true).FromTx(tx));
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tx.vin[0].prevout.hash = hash;
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tx.vin[0].scriptSig = CScript() << std::vector<unsigned char>(script.begin(), script.end());
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tx.vout[0].nValue -= 1000000;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(1000000).Time(GetTime()).SpendsCoinbase(false).FromTx(tx));
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BOOST_CHECK_THROW(CreateNewBlock(chainparams, scriptPubKey), std::runtime_error);
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mempool.clear();
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// double spend txn pair in mempool, template creation fails
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tx.vin[0].prevout.hash = txFirst[0]->GetHash();
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tx.vin[0].scriptSig = CScript() << OP_1;
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tx.vout[0].nValue = 4900000000LL;
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tx.vout[0].scriptPubKey = CScript() << OP_1;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(100000000L).Time(GetTime()).SpendsCoinbase(true).FromTx(tx));
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tx.vout[0].scriptPubKey = CScript() << OP_2;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(100000000L).Time(GetTime()).SpendsCoinbase(true).FromTx(tx));
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BOOST_CHECK_THROW(CreateNewBlock(chainparams, scriptPubKey), std::runtime_error);
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mempool.clear();
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// subsidy changing
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int nHeight = chainActive.Height();
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// Create an actual 209999-long block chain (without valid blocks).
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while (chainActive.Tip()->nHeight < 209999) {
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CBlockIndex* prev = chainActive.Tip();
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CBlockIndex* next = new CBlockIndex();
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next->phashBlock = new uint256(GetRandHash());
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pcoinsTip->SetBestBlock(next->GetBlockHash());
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next->pprev = prev;
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next->nHeight = prev->nHeight + 1;
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next->BuildSkip();
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chainActive.SetTip(next);
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}
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BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
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delete pblocktemplate;
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// Extend to a 210000-long block chain.
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while (chainActive.Tip()->nHeight < 210000) {
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CBlockIndex* prev = chainActive.Tip();
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CBlockIndex* next = new CBlockIndex();
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next->phashBlock = new uint256(GetRandHash());
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pcoinsTip->SetBestBlock(next->GetBlockHash());
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next->pprev = prev;
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next->nHeight = prev->nHeight + 1;
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next->BuildSkip();
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chainActive.SetTip(next);
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}
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BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
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delete pblocktemplate;
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// Delete the dummy blocks again.
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while (chainActive.Tip()->nHeight > nHeight) {
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CBlockIndex* del = chainActive.Tip();
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chainActive.SetTip(del->pprev);
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pcoinsTip->SetBestBlock(del->pprev->GetBlockHash());
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delete del->phashBlock;
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delete del;
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}
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// non-final txs in mempool
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SetMockTime(chainActive.Tip()->GetMedianTimePast()+1);
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int flags = LOCKTIME_VERIFY_SEQUENCE|LOCKTIME_MEDIAN_TIME_PAST;
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// height map
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std::vector<int> prevheights;
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// relative height locked
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tx.nVersion = 2;
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tx.vin.resize(1);
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prevheights.resize(1);
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tx.vin[0].prevout.hash = txFirst[0]->GetHash(); // only 1 transaction
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tx.vin[0].prevout.n = 0;
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tx.vin[0].scriptSig = CScript() << OP_1;
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tx.vin[0].nSequence = chainActive.Tip()->nHeight + 1; // txFirst[0] is the 2nd block
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prevheights[0] = baseheight + 1;
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tx.vout.resize(1);
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tx.vout[0].nValue = 4900000000LL;
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tx.vout[0].scriptPubKey = CScript() << OP_1;
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tx.nLockTime = 0;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Fee(100000000L).Time(GetTime()).SpendsCoinbase(true).FromTx(tx));
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BOOST_CHECK(CheckFinalTx(tx, flags)); // Locktime passes
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BOOST_CHECK(!TestSequenceLocks(tx, flags)); // Sequence locks fail
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BOOST_CHECK(SequenceLocks(tx, flags, &prevheights, CreateBlockIndex(chainActive.Tip()->nHeight + 2))); // Sequence locks pass on 2nd block
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// relative time locked
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tx.vin[0].prevout.hash = txFirst[1]->GetHash();
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tx.vin[0].nSequence = CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG | (((chainActive.Tip()->GetMedianTimePast()+1-chainActive[1]->GetMedianTimePast()) >> CTxIn::SEQUENCE_LOCKTIME_GRANULARITY) + 1); // txFirst[1] is the 3rd block
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prevheights[0] = baseheight + 2;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Time(GetTime()).FromTx(tx));
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BOOST_CHECK(CheckFinalTx(tx, flags)); // Locktime passes
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BOOST_CHECK(!TestSequenceLocks(tx, flags)); // Sequence locks fail
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for (int i = 0; i < CBlockIndex::nMedianTimeSpan; i++)
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chainActive.Tip()->GetAncestor(chainActive.Tip()->nHeight - i)->nTime += 512; //Trick the MedianTimePast
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BOOST_CHECK(SequenceLocks(tx, flags, &prevheights, CreateBlockIndex(chainActive.Tip()->nHeight + 1))); // Sequence locks pass 512 seconds later
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for (int i = 0; i < CBlockIndex::nMedianTimeSpan; i++)
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chainActive.Tip()->GetAncestor(chainActive.Tip()->nHeight - i)->nTime -= 512; //undo tricked MTP
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// absolute height locked
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tx.vin[0].prevout.hash = txFirst[2]->GetHash();
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tx.vin[0].nSequence = CTxIn::SEQUENCE_FINAL - 1;
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prevheights[0] = baseheight + 3;
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tx.nLockTime = chainActive.Tip()->nHeight + 1;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Time(GetTime()).FromTx(tx));
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BOOST_CHECK(!CheckFinalTx(tx, flags)); // Locktime fails
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BOOST_CHECK(TestSequenceLocks(tx, flags)); // Sequence locks pass
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BOOST_CHECK(IsFinalTx(tx, chainActive.Tip()->nHeight + 2, chainActive.Tip()->GetMedianTimePast())); // Locktime passes on 2nd block
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// absolute time locked
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tx.vin[0].prevout.hash = txFirst[3]->GetHash();
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tx.nLockTime = chainActive.Tip()->GetMedianTimePast();
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prevheights.resize(1);
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prevheights[0] = baseheight + 4;
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hash = tx.GetHash();
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mempool.addUnchecked(hash, entry.Time(GetTime()).FromTx(tx));
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BOOST_CHECK(!CheckFinalTx(tx, flags)); // Locktime fails
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BOOST_CHECK(TestSequenceLocks(tx, flags)); // Sequence locks pass
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BOOST_CHECK(IsFinalTx(tx, chainActive.Tip()->nHeight + 2, chainActive.Tip()->GetMedianTimePast() + 1)); // Locktime passes 1 second later
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// mempool-dependent transactions (not added)
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tx.vin[0].prevout.hash = hash;
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prevheights[0] = chainActive.Tip()->nHeight + 1;
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tx.nLockTime = 0;
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tx.vin[0].nSequence = 0;
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BOOST_CHECK(CheckFinalTx(tx, flags)); // Locktime passes
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BOOST_CHECK(TestSequenceLocks(tx, flags)); // Sequence locks pass
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tx.vin[0].nSequence = 1;
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BOOST_CHECK(!TestSequenceLocks(tx, flags)); // Sequence locks fail
|
|
tx.vin[0].nSequence = CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG;
|
|
BOOST_CHECK(TestSequenceLocks(tx, flags)); // Sequence locks pass
|
|
tx.vin[0].nSequence = CTxIn::SEQUENCE_LOCKTIME_TYPE_FLAG | 1;
|
|
BOOST_CHECK(!TestSequenceLocks(tx, flags)); // Sequence locks fail
|
|
|
|
BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
|
|
|
|
// None of the of the absolute height/time locked tx should have made
|
|
// it into the template because we still check IsFinalTx in CreateNewBlock,
|
|
// but relative locked txs will if inconsistently added to mempool.
|
|
// For now these will still generate a valid template until BIP68 soft fork
|
|
BOOST_CHECK_EQUAL(pblocktemplate->block.vtx.size(), 3);
|
|
delete pblocktemplate;
|
|
// However if we advance height by 1 and time by 512, all of them should be mined
|
|
for (int i = 0; i < CBlockIndex::nMedianTimeSpan; i++)
|
|
chainActive.Tip()->GetAncestor(chainActive.Tip()->nHeight - i)->nTime += 512; //Trick the MedianTimePast
|
|
chainActive.Tip()->nHeight++;
|
|
SetMockTime(chainActive.Tip()->GetMedianTimePast() + 1);
|
|
|
|
BOOST_CHECK(pblocktemplate = CreateNewBlock(chainparams, scriptPubKey));
|
|
BOOST_CHECK_EQUAL(pblocktemplate->block.vtx.size(), 5);
|
|
delete pblocktemplate;
|
|
|
|
chainActive.Tip()->nHeight--;
|
|
SetMockTime(0);
|
|
mempool.clear();
|
|
|
|
BOOST_FOREACH(CTransaction *tx, txFirst)
|
|
delete tx;
|
|
|
|
fCheckpointsEnabled = true;
|
|
}
|
|
|
|
BOOST_AUTO_TEST_SUITE_END()
|