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185 lines
6.3 KiB
C++
185 lines
6.3 KiB
C++
// Copyright (c) 2010 Satoshi Nakamoto
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// Copyright (c) 2009-2021 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 <node/coinstats.h>
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#include <coins.h>
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#include <crypto/muhash.h>
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#include <hash.h>
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#include <index/coinstatsindex.h>
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#include <serialize.h>
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#include <uint256.h>
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#include <util/overflow.h>
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#include <util/system.h>
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#include <validation.h>
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#include <map>
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namespace node {
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// Database-independent metric indicating the UTXO set size
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uint64_t GetBogoSize(const CScript& script_pub_key)
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{
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return 32 /* txid */ +
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4 /* vout index */ +
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4 /* height + coinbase */ +
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8 /* amount */ +
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2 /* scriptPubKey len */ +
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script_pub_key.size() /* scriptPubKey */;
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}
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CDataStream TxOutSer(const COutPoint& outpoint, const Coin& coin) {
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CDataStream ss(SER_DISK, PROTOCOL_VERSION);
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ss << outpoint;
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ss << static_cast<uint32_t>(coin.nHeight * 2 + coin.fCoinBase);
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ss << coin.out;
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return ss;
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}
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//! Warning: be very careful when changing this! assumeutxo and UTXO snapshot
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//! validation commitments are reliant on the hash constructed by this
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//! function.
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//!
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//! If the construction of this hash is changed, it will invalidate
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//! existing UTXO snapshots. This will not result in any kind of consensus
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//! failure, but it will force clients that were expecting to make use of
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//! assumeutxo to do traditional IBD instead.
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//!
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//! It is also possible, though very unlikely, that a change in this
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//! construction could cause a previously invalid (and potentially malicious)
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//! UTXO snapshot to be considered valid.
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static void ApplyHash(CHashWriter& ss, const uint256& hash, const std::map<uint32_t, Coin>& outputs)
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{
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for (auto it = outputs.begin(); it != outputs.end(); ++it) {
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if (it == outputs.begin()) {
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ss << hash;
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ss << VARINT(it->second.nHeight * 2 + it->second.fCoinBase ? 1u : 0u);
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}
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ss << VARINT(it->first + 1);
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ss << it->second.out.scriptPubKey;
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ss << VARINT_MODE(it->second.out.nValue, VarIntMode::NONNEGATIVE_SIGNED);
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if (it == std::prev(outputs.end())) {
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ss << VARINT(0u);
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}
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}
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}
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static void ApplyHash(std::nullptr_t, const uint256& hash, const std::map<uint32_t, Coin>& outputs) {}
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static void ApplyHash(MuHash3072& muhash, const uint256& hash, const std::map<uint32_t, Coin>& outputs)
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{
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for (auto it = outputs.begin(); it != outputs.end(); ++it) {
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COutPoint outpoint = COutPoint(hash, it->first);
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Coin coin = it->second;
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muhash.Insert(MakeUCharSpan(TxOutSer(outpoint, coin)));
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}
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}
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static void ApplyStats(CCoinsStats& stats, const uint256& hash, const std::map<uint32_t, Coin>& outputs)
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{
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assert(!outputs.empty());
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stats.nTransactions++;
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for (auto it = outputs.begin(); it != outputs.end(); ++it) {
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stats.nTransactionOutputs++;
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if (stats.total_amount.has_value()) {
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stats.total_amount = CheckedAdd(*stats.total_amount, it->second.out.nValue);
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}
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stats.nBogoSize += GetBogoSize(it->second.out.scriptPubKey);
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}
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}
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//! Calculate statistics about the unspent transaction output set
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template <typename T>
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static bool GetUTXOStats(CCoinsView* view, BlockManager& blockman, CCoinsStats& stats, T hash_obj, const std::function<void()>& interruption_point, const CBlockIndex* pindex)
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{
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std::unique_ptr<CCoinsViewCursor> pcursor(view->Cursor());
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assert(pcursor);
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if (!pindex) {
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LOCK(cs_main);
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pindex = blockman.LookupBlockIndex(view->GetBestBlock());
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}
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stats.nHeight = Assert(pindex)->nHeight;
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stats.hashBlock = pindex->GetBlockHash();
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// Use CoinStatsIndex if it is requested and available and a hash_type of Muhash or None was requested
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if ((stats.m_hash_type == CoinStatsHashType::MUHASH || stats.m_hash_type == CoinStatsHashType::NONE) && g_coin_stats_index && stats.index_requested) {
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stats.index_used = true;
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return g_coin_stats_index->LookUpStats(pindex, stats);
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}
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PrepareHash(hash_obj, stats);
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uint256 prevkey;
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std::map<uint32_t, Coin> outputs;
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while (pcursor->Valid()) {
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interruption_point();
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COutPoint key;
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Coin coin;
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if (pcursor->GetKey(key) && pcursor->GetValue(coin)) {
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if (!outputs.empty() && key.hash != prevkey) {
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ApplyStats(stats, prevkey, outputs);
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ApplyHash(hash_obj, prevkey, outputs);
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outputs.clear();
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}
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prevkey = key.hash;
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outputs[key.n] = std::move(coin);
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stats.coins_count++;
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} else {
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return error("%s: unable to read value", __func__);
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}
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pcursor->Next();
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}
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if (!outputs.empty()) {
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ApplyStats(stats, prevkey, outputs);
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ApplyHash(hash_obj, prevkey, outputs);
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}
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FinalizeHash(hash_obj, stats);
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stats.nDiskSize = view->EstimateSize();
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return true;
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}
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bool GetUTXOStats(CCoinsView* view, BlockManager& blockman, CCoinsStats& stats, const std::function<void()>& interruption_point, const CBlockIndex* pindex)
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{
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switch (stats.m_hash_type) {
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case(CoinStatsHashType::HASH_SERIALIZED): {
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CHashWriter ss(SER_GETHASH, PROTOCOL_VERSION);
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return GetUTXOStats(view, blockman, stats, ss, interruption_point, pindex);
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}
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case(CoinStatsHashType::MUHASH): {
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MuHash3072 muhash;
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return GetUTXOStats(view, blockman, stats, muhash, interruption_point, pindex);
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}
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case(CoinStatsHashType::NONE): {
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return GetUTXOStats(view, blockman, stats, nullptr, interruption_point, pindex);
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}
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} // no default case, so the compiler can warn about missing cases
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assert(false);
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}
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// The legacy hash serializes the hashBlock
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static void PrepareHash(CHashWriter& ss, const CCoinsStats& stats)
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{
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ss << stats.hashBlock;
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}
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// MuHash does not need the prepare step
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static void PrepareHash(MuHash3072& muhash, CCoinsStats& stats) {}
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static void PrepareHash(std::nullptr_t, CCoinsStats& stats) {}
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static void FinalizeHash(CHashWriter& ss, CCoinsStats& stats)
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{
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stats.hashSerialized = ss.GetHash();
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}
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static void FinalizeHash(MuHash3072& muhash, CCoinsStats& stats)
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{
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uint256 out;
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muhash.Finalize(out);
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stats.hashSerialized = out;
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}
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static void FinalizeHash(std::nullptr_t, CCoinsStats& stats) {}
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} // namespace node
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