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This is a commit in preparation for the next few commits. The functions are moved to methods to avoid their re-declaration for the purpose of passing in BlockManager options. The functions that were now moved into the BlockManager should no longer use the params as an argument, but instead use the member variable. In the moved ReadBlockFromDisk and UndoReadFromDisk, change the function signature to accept a reference to a CBlockIndex instead of a raw pointer. The pointer is expected to be non-null, so reflect that in the type. To allow for the move of functions to BlockManager methods all call sites require an instantiated BlockManager, or a callback to one.
157 lines
6.2 KiB
C++
157 lines
6.2 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 <consensus/validation.h>
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#include <index/txindex.h>
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#include <net.h>
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#include <net_processing.h>
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#include <node/blockstorage.h>
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#include <node/context.h>
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#include <txmempool.h>
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#include <validation.h>
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#include <validationinterface.h>
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#include <node/transaction.h>
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#include <future>
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namespace node {
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static TransactionError HandleATMPError(const TxValidationState& state, std::string& err_string_out)
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{
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err_string_out = state.ToString();
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if (state.IsInvalid()) {
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if (state.GetResult() == TxValidationResult::TX_MISSING_INPUTS) {
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return TransactionError::MISSING_INPUTS;
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}
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return TransactionError::MEMPOOL_REJECTED;
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} else {
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return TransactionError::MEMPOOL_ERROR;
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}
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}
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TransactionError BroadcastTransaction(NodeContext& node, const CTransactionRef tx, std::string& err_string, const CAmount& max_tx_fee, bool relay, bool wait_callback)
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{
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// BroadcastTransaction can be called by either sendrawtransaction RPC or the wallet.
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// chainman, mempool and peerman are initialized before the RPC server and wallet are started
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// and reset after the RPC sever and wallet are stopped.
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assert(node.chainman);
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assert(node.mempool);
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assert(node.peerman);
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std::promise<void> promise;
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uint256 txid = tx->GetHash();
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uint256 wtxid = tx->GetWitnessHash();
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bool callback_set = false;
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{
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LOCK(cs_main);
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// If the transaction is already confirmed in the chain, don't do anything
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// and return early.
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CCoinsViewCache &view = node.chainman->ActiveChainstate().CoinsTip();
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for (size_t o = 0; o < tx->vout.size(); o++) {
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const Coin& existingCoin = view.AccessCoin(COutPoint(txid, o));
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// IsSpent doesn't mean the coin is spent, it means the output doesn't exist.
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// So if the output does exist, then this transaction exists in the chain.
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if (!existingCoin.IsSpent()) return TransactionError::ALREADY_IN_CHAIN;
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}
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if (auto mempool_tx = node.mempool->get(txid); mempool_tx) {
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// There's already a transaction in the mempool with this txid. Don't
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// try to submit this transaction to the mempool (since it'll be
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// rejected as a TX_CONFLICT), but do attempt to reannounce the mempool
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// transaction if relay=true.
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//
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// The mempool transaction may have the same or different witness (and
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// wtxid) as this transaction. Use the mempool's wtxid for reannouncement.
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wtxid = mempool_tx->GetWitnessHash();
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} else {
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// Transaction is not already in the mempool.
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if (max_tx_fee > 0) {
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// First, call ATMP with test_accept and check the fee. If ATMP
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// fails here, return error immediately.
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const MempoolAcceptResult result = node.chainman->ProcessTransaction(tx, /*test_accept=*/ true);
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if (result.m_result_type != MempoolAcceptResult::ResultType::VALID) {
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return HandleATMPError(result.m_state, err_string);
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} else if (result.m_base_fees.value() > max_tx_fee) {
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return TransactionError::MAX_FEE_EXCEEDED;
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}
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}
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// Try to submit the transaction to the mempool.
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const MempoolAcceptResult result = node.chainman->ProcessTransaction(tx, /*test_accept=*/ false);
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if (result.m_result_type != MempoolAcceptResult::ResultType::VALID) {
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return HandleATMPError(result.m_state, err_string);
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}
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// Transaction was accepted to the mempool.
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if (relay) {
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// the mempool tracks locally submitted transactions to make a
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// best-effort of initial broadcast
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node.mempool->AddUnbroadcastTx(txid);
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}
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if (wait_callback) {
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// For transactions broadcast from outside the wallet, make sure
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// that the wallet has been notified of the transaction before
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// continuing.
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//
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// This prevents a race where a user might call sendrawtransaction
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// with a transaction to/from their wallet, immediately call some
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// wallet RPC, and get a stale result because callbacks have not
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// yet been processed.
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CallFunctionInValidationInterfaceQueue([&promise] {
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promise.set_value();
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});
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callback_set = true;
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}
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}
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} // cs_main
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if (callback_set) {
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// Wait until Validation Interface clients have been notified of the
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// transaction entering the mempool.
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promise.get_future().wait();
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}
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if (relay) {
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node.peerman->RelayTransaction(txid, wtxid);
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}
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return TransactionError::OK;
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}
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CTransactionRef GetTransaction(const CBlockIndex* const block_index, const CTxMemPool* const mempool, const uint256& hash, uint256& hashBlock, const BlockManager& blockman)
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{
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if (mempool && !block_index) {
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CTransactionRef ptx = mempool->get(hash);
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if (ptx) return ptx;
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}
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if (g_txindex) {
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CTransactionRef tx;
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uint256 block_hash;
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if (g_txindex->FindTx(hash, block_hash, tx)) {
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if (!block_index || block_index->GetBlockHash() == block_hash) {
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// Don't return the transaction if the provided block hash doesn't match.
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// The case where a transaction appears in multiple blocks (e.g. reorgs or
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// BIP30) is handled by the block lookup below.
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hashBlock = block_hash;
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return tx;
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}
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}
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}
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if (block_index) {
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CBlock block;
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if (blockman.ReadBlockFromDisk(block, *block_index)) {
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for (const auto& tx : block.vtx) {
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if (tx->GetHash() == hash) {
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hashBlock = block_index->GetBlockHash();
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return tx;
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}
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}
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}
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}
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return nullptr;
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}
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} // namespace node
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